[0001] The present invention relates to the field of electric appliances, and in particular,
to a clothes washing method, a clothes processing device and a control apparatus.
[0002] The washing procedure of a clothes processing device generally adopts a conventional
washing heating mode, in which a washing heating tube arranged between a drum and
a tub is used for heating enough water to transfer heat to a load to achieve the purpose
of heating the load.
[0003] A method to control a washing machine and a washing machine is disclosed in
EP 3 241 938 A1 whereby the washing machine comprises a tub and a drum being rotatably mounted inside
the tub and apt to contain laundry to be washed. The disclosed method comprises steps
for setting a washing cycle among a plurality of washing cycles, calculating a first
and second weight of the laundry, comparing the first weight with a threshold, determining
parameter of the set washing cycle based on said second weight, independently from
the first weight and washing and/or rinsing the laundry.
[0004] However, such a single washing heating mode cannot be adapted to different application
scenarios of the clothes processing device, and thus has lower efficiency in aspects
such as heating energy consumption and washing time.
[0005] An objective of embodiments of the present invention is to provide an improved clothes
washing method, a clothes processing device and a control apparatus comprising a storage
medium.
[0006] The embodiments of the present invention provide a clothes washing method, including:
detecting mass of a load put in a clothes processing device; and determining whether
the mass of the load is greater than a first threshold; if yes, executing a first
heating washing mode; and if not, executing a second heating washing mode.
[0007] The clothes processing device includes a rotatable drum configured to accommodate
the load and a tub sleeved outside the drum; the first heating washing mode is a mode
in which the load and free water are heated by means of a washing heating tube in
water in a state where the free water is provided in the tub and the load is in contact
with the free water, and then washing is carried out; and the second heating washing
mode is a mode in which the wetted load is heated with hot air in a state where no
free water is provided in the tub, and then washing is carried out.
[0008] Optionally, a ratio of the first threshold to a rated capacity of the clothes processing
device is within a range of greater than or equal to 30% and less than or equal to
60%.
[0009] Optionally, the first threshold is within a range of greater than or equal to 3 kg
and less than or equal to 6 kg.
[0010] Optionally, the executing a first heating washing mode includes the following steps:
providing a first volume of water to the clothes processing device, replenishing water
until the load is completely wetted and free water in contact with the load is provided
in the tub; heating the free water by means of the washing heating tube so as to heat
the load; and maintaining a certain amount of the free water to wash the load.
[0011] Optionally, the executing a second heating washing mode includes the following steps:
supplying water to the tub and the drum and fully wetting the load, and then draining
the free water in the tub; heating the wetted load with the hot air; and then washing
the load.
[0012] The embodiments of the present invention may further provide another clothes washing
method step, including that the step of supplying water to the tub and the drum and
fully wetting the load, especially used for wetting the load for the second heating
washing mode, comprises: providing a certain volume of water to a clothes processing
device; increasing a rotational speed of a drum to a set rotational speed; turning
on a circulating pump to spray water onto a load in the clothes processing device
to wet the load; determining whether the load is fully wetted, and if not, replenishing
water and repeating the spraying step until the load is completely wetted. This method
step of supplying water may be used either within the first heating mode or within
the second heating mode but preferably, this method step of supplying water is used
within the second heating mode which will be run if the second heating mode is determined
(in case the mass of the load is less than or equal to the first threshold).
[0013] Further, the certain volume of water and/or the set rotational speed may also depend
on the mass of load.
[0014] Optionally, the supplying water to the tub and the drum and fully wetting the load
may further includes: the certain volume of water is set as a second volume of water
and the set rotational speed is set as a first rotational speed to form a load ring,
turning on a circulating pump to spray water onto the load ring to wet the load, determining
whether the load is fully wetted, and if not, replenishing water and repeating the
spraying and determining steps until the load is completely wetted. This method step
of supplying water may also be called as a first sub-mode in the following.
[0015] Optionally, the first rotational speed is a minimum rotational speed that maintains
the load in a centrifugal state.
[0016] Optionally, the first rotational speed is within a range of greater than or equal
to 130 r/min and less than or equal to 600 r/min.
[0017] Optionally, the executing a second heating washing mode includes determining whether
the mass of the load is less than or equal to a second threshold, and if yes, executing
a sub-mode (also called as a second-sub-mode in the following), where the second threshold
is less than the first threshold. If the mass of the load is greater than the second
threshold, and preferably less than or equal to the first threshold, the above mentioned
first sub-mode will be executed.
[0018] Optionally, a ratio of the second threshold to a rated capacity of the clothes processing
device is within a range of greater than or equal to 10% and less than or equal to
30%.
[0019] Optionally, the second threshold is within a range of greater than or equal to 1
kg and less than or equal to 3 kg.
[0020] Optionally, the executing the sub-mode (second sub-mode) includes: providing a third
volume of water to the clothes processing device; increasing the rotational speed
of the drum to a second rotational speed that is less than a centrifugal rotational
speed; turning on the circulating pump to spray water onto the load to wet the load;
determining whether the load is fully wetted; if not, replenishing water and repeating
the spraying and determining steps until the load is completely wetted; turning on
a draining pump to drain free water; opening the air heating tube to heat air; turning
on the fan to make the heated air flow to form hot air, and make the hot air pass
through and heat the load; and washing the load.
[0021] Optionally, the second rotational speed is within a range of less than or equal to
50 r/min. Optionally, the draining the free water in the tub comprises turning on
a draining pump to drain free water.
[0022] Optionally, the heating the wetted load with the hot air includes opening an air
heating tube to heat air, and turning on a fan to make the heated air flow to form
hot air, and make the hot air pass through and heat the load.
[0023] The embodiments of the present invention further provide a readable storage medium,
which is in particular a non-volatile storage medium or a non-transient storage medium,
having at least one program instruction stored thereon, where steps of the clothes
washing method are executed when running the program instruction.
[0024] The embodiments of the present invention further provide a clothes processing device,
including a rotatable drum configured to accommodate a load and a tub sleeved outside
the drum and in fluid communication with the drum, and further including: a washing
heating tube, located at the bottom of the tub and adapted to heat free water in the
tub; a circulating pump, adapted to circularly spray water from the bottom of the
tub onto the load; an air heating tube, adapted to heat air; a fan, adapted to make
the heated air flow to form hot air, and make the hot air pass through and heat the
load; and the control apparatus, including the readable storage medium and a processor,
where the at least one program instruction stored in the readable storage medium is
executable on the processor, and steps of the clothes washing method are executed
when the processor runs the program instruction.
[0025] Optionally, the clothes processing device is a drum washing machine.
[0026] The embodiments of the present invention may further provide other clothes washing
method steps, as far not mentioned above, whereby the other method steps may be combined
with any of the before mentioned method options.
[0027] Optionally, the other method steps include: providing a certain volume of water to
a clothes processing device; increasing a rotational speed of a drum to a set rotational
speed; turning on a circulating pump to spray water onto a load in the clothes processing
device to wet the load; determining whether the load is fully wetted, and if not,
replenishing water and repeating the spraying step until the load is completely wetted;
turning on a draining pump to drain free water; opening an air heating tube to heat
air; turning on a fan to make the heated air flow to form hot air, and make the hot
air pass through and heat the load; and washing the load.
[0028] Optionally, the other method steps include: detecting mass of a load before providing
a certain volume of water to a clothes processing device; and determining whether
the mass of the load is greater than a threshold, if yes, executing a first sub-mode,
and if not, executing a second sub-mode.
[0029] Optionally, a ratio of the threshold to a rated capacity of the clothes processing
device is within a range of greater than or equal to 10% and less than or equal to
30%.
[0030] Optionally, the threshold is within a range of greater than or equal to 1 kg and
less than or equal to 3 kg.
[0031] Optionally, the executing the first sub-mode includes: providing the second volume
of water to the clothes processing device; increasing the rotational speed of the
drum to a first rotational speed to form a load ring; turning on the circulating pump
to spray water onto the load ring to wet the load; determining whether the load is
fully wetted; if not, replenishing water and repeating the spraying and determining
steps until the load is completely wetted; turning on the draining pump to drain free
water; opening the air heating tube to heat air; turning on the fan to make the heated
air flow to form hot air, and make the hot air pass through and heat the load; and
washing the load.
[0032] Optionally, the first rotational speed is a minimum rotational speed that enables
the load to reach and maintain in a centrifugal state.
[0033] Optionally, the first rotational speed is within a range of greater than or equal
to 130 r/min and less than or equal to 600 r/min.
[0034] Optionally, the executing the second sub-mode includes: providing the third volume
of water to the clothes processing device; increasing the rotational speed of the
drum to a second rotational speed that is less than a centrifugal rotational speed;
turning on the circulating pump to spray water onto the load to wet the load; determining
whether the load is fully wetted; if not, replenishing water and repeating the spraying
and determining steps until the load is completely wetted; turning on the draining
pump to drain free water; opening the air heating tube to heat air; turning on the
fan to make the heated air flow to form hot air, and make the hot air pass through
and heat the load; and washing the load.
[0035] Optionally, the second rotational speed is within a range of less than or equal to
50 r/min.
[0036] The embodiments of the present invention further provide another readable storage
medium, which is in particular a non-volatile storage medium or a non-transient storage
medium, having at least one program instruction stored thereon, where steps of the
other clothes washing method steps are executed when running the program instruction.
[0037] The embodiments of the present invention further provide another clothes processing
device, including a drum configured to accommodate a load and a tub sleeved outside
the drum and in fluid communication with the drum, and further including: a circulating
pump, adapted to circularly spray water from the bottom of the tub onto the load;
an air heating tube, adapted to heat air; a fan, adapted to make the heated air flow
to form hot air, and make the hot air pass through and heat the load; and the control
apparatus, including readable storage medium and a processor, where the at least one
program instruction stored in the readable storage medium running on the processor,
and steps of the other clothes washing method steps are executed when the processor
runs the computer instruction.
[0038] Optionally, the other clothes processing device is a drum washing machine.
[0039] Compared with the prior art, the technical solutions of the embodiments of the present
invention have the following beneficial effects. For example, different heating washing
modes are selected according to the mass of the load, which may complete the washing
process efficiently. Moreover, by using a steam thermal washing mode, the wet and
hot load may be fully contacted and beaten with the drum of the clothes processing
device, thereby efficiently completing the heating washing process.
FIG. 1 is an overall flowchart of a clothes washing method according to an embodiment
of the present invention, where a first heating washing mode or a second heating washing
mode is selectively executed in the method;
FIG. 2 is a detailed flowchart of a clothes washing method according to an embodiment
of the present invention, where the second heating washing mode includes a sub-mode;
FIG. 3 is a schematic diagram of a clothes processing device according to an embodiment
of the present invention;
FIG. 4 is a flowchart of a clothes washing method using a steam thermal washing mode
according to an embodiment of the present invention; and
FIG. 5 is a schematic diagram of another clothes processing device according to an
embodiment of the present invention.
[0040] To make the objectives, features, and beneficial effects of the embodiments of the
present invention more comprehensible, the specific embodiments of the present invention
are described in detail with reference to the accompanying drawings.
[0041] FIG. 1 is an overall flowchart of a clothes washing method 100 according to an embodiment
of the present invention, and FIG. 2 is a detailed flowchart 200 of a clothes washing
method according to an embodiment of the present invention, where a second heating
washing mode includes a sub-mode.
[0042] The method 100 includes: detecting mass of a load put in a clothes processing device
(S110); determining whether the mass of the load is greater than a first threshold
(S120); if yes, executing a first heating washing mode (S130); and if not, executing
a second heating washing mode (S140). The clothes processing device may include a
rotatable drum configured to accommodate the load and a tub sleeved outside the drum.
[0043] In execution of step S110, mass of a load put in a clothes processing device is detected.
Detecting the mass of the load is a conventional measure in the art. For example,
the mass of the load is calculated by detecting a signal of a motor (e.g., a signal
of electric energy consumed to drive the load).
[0044] In execution of step S120, whether the mass of the load is greater than a first threshold
is determined. In one embodiment, the first threshold is within a range of greater
than or equal to 3 kg and less than or equal to 6 kg. In another embodiment, a ratio
of the first threshold to a rated capacity of the clothes processing device is within
a range of greater than or equal to 30% and less than or equal to 60%, where the rated
capacity is a maximum mass of dry clothes that may be washed by the clothes processing
device.
[0045] In execution of step S130, a first heating washing mode is executed. The first heating
washing mode may be a conventional heating washing mode, that is, a load and free
water are heated by means of a washing heating tube in water in a state where free
water is provided in a tub and the load is in contact with the free water, and then
washing is carried out. The free water is water freely flowing in the drum or the
tub of the clothes processing device.
[0046] In execution of step S140, a second heating washing mode is executed. The second
heating washing mode may be a steam thermal washing mode, that is, the wetted load
is heated with hot air in a state where no free water is provided in the tub, and
then washing is carried out.
[0047] In the technical solutions of the embodiments of the present invention, the first
heating washing mode or the second heating washing mode can be selectively executed
according to comparison between the detected mass of the load and the first threshold,
where the first heating washing mode may be a conventional washing heating mode, and
the second heating washing mode may be a steam thermal washing mode. For example,
it is automatically switched to the steam thermal heating mode of higher heating efficiency
when the detected mass of the load is less than or equal to the first threshold, that
is, the hot air only heats the fully wetted load, without heating excess free water,
and a state without free water in the subsequent washing process is maintained, so
that the wet and hot load is fully contacted and beaten with the drum, thereby completing
the heating washing process more efficiency. In a case where the detected mass of
the load is greater than the first threshold, the conventional washing heating mode
is still used, thereby ensuring the washing effect. These two heating washing modes
are automatically switched according to the mass of the load, so that a more efficient
mode is always adopted for washing, which not only improves the washing performance,
but also saves energy consumption and time.
[0048] The conventional washing heating mode has a simple mechanical structure design, mature
technology and a simple control program, and it is a washing mode commonly used in
almost all drum washing machines. However, when a small amount of load (for example,
a load whose washing mass is less than or equal to the first threshold) needs to be
washed, if the conventional washing heating mode is used, in a case where the temperature
is heated to a high temperature (for example, 80°C or more), the energy consumption
for heating is higher and the washing time is longer; and if the steam thermal washing
mode described in the embodiment of the present invention is adopted, the higher the
temperature (for example, 80°C or more) is, the more energy consumption saved is,
and the washing time may be saved.
[0049] For a washing scene of 3 kg of standard cotton load and an ultra-high temperature
of 90°C, it is found through experiment that compared with the conventional heating
washing mode, the steam thermal washing mode improves the washing performance (clean
ratio) by 5%, in addition to saving 30% of washing energy consumption and 12% of washing
time.
[0050] For each mass of load, the same existing design such as drainage, dehydration, and
rinsing may be adopted after the washing process, and a drying stage may be included
as well.
[0051] The executing the first heating washing mode S130 may include providing a first volume
of water to the clothes processing device. The first volume of water may be obtained
on the basis of the mass of the load, for example, 7 L, for rinsing washing powder
or laundry detergent.
[0052] The executing the first heating washing mode S130 may include replenishing water.
For example, water is replenished by means of the conventional pressure value or water
level control method until the load is completely wetted, and free water in contact
with the load is provided in the tub. The conventional pressure value control method
controls a pressure value within a range, for example, of 300-900 Pa (Pascal). The
water level control method is a method adopted in most of the conventional washing
procedures at present, that is, the pressure value in a drum is fixed (for example,
maintained at 300 Pa), and the water level (e.g., 10 cm) in the drum is always unchanged.
After the water level drops due to water absorption of the load, a water inlet valve
automatically opens to replenish water, so that the water level does not drop, which
ensures that there is always water available for the load to absorb; the water level
does not drop when the load is completely wetted and no longer absorbs water after
a certain period of time, and the water inlet valve does not open to replenish water.
[0053] The executing the first heating washing mode S130 may include: maintaining a certain
amount of the free water, and heating the free water by means of the washing heating
tube to heat the load.
[0054] The executing the first heating washing mode S130 may further include washing the
load. In the washing process, a certain amount of free water is always maintained
by means of water level control.
[0055] The executing a second heating washing mode S140 may include supplying water to the
tub and the drum and fully wetting the load. For example, a second volume of water
is provided to the clothes processing device. The second volume of water may be obtained
based on the mass of the load, for example, 4-5 L, for rinsing washing powder or laundry
detergent.
[0056] The executing the second heating washing mode S140 may include increasing a rotational
speed of the drum to a first rotational speed to form a load ring, and turning on
a circulating pump to spray water onto the load ring to wet the load. The first rotational
speed is a minimum rotational speed that maintains the load in a centrifugal state,
where the first rotational speed should not be too high, so that as little water as
possible in the load is thrown out, that is, as much water as possible is maintained
in the load. In one embodiment, the first rotational speed is within a range of greater
than or equal to 130 r/min and less than or equal to 600 r/min. The formation of the
load ring enables the load that is located in a load pile and close to a rear wall
of the drum to be fully wetted.
[0057] The executing the second heating washing mode S140 may include determining whether
the load is fully wetted, and if not, replenishing water and repeating the spraying
and determining steps until the load is completely wetted. For example, water replenishing
is controlled in a mode of determining whether the load is fully wetted by detecting
a pressure value, until the load is completely wetted.
[0058] The executing the second heating washing mode S140 may include draining the free
water in the tub after the load is completely wetted.
[0059] The executing the second heating washing mode S140 may include heating the wetted
load with hot air. In one embodiment, an air heating tube is opened to heat air, a
fan is turned on to make the heated air flow to form hot air, and make the hot air
pass through and heat the load. The air heating tube may be located in a drying channel
of the clothes processing device.
[0060] The executing a second heating washing mode S140 may further include washing the
load. In the washing process, water replenishing is stopped, and the wetted load is
always washed.
[0061] In some embodiment, the executing a second heating washing mode S140 includes determining
whether the mass of the load is less than or equal to a second threshold, and if yes,
executing a sub-mode, where the second threshold is less than the first threshold.
In one embodiment, the second threshold is within a range of greater than or equal
to 1 kg and less than or equal to 3 kg. In another embodiment, a ratio of the second
threshold to a rated capacity of the clothes processing device is within a range of
greater than or equal to 10% and less than or equal to 30%, where the rated capacity
is a maximum mass of dry clothes that can be washed by the clothes processing device.
[0062] The executing the sub-mode, in particular the second sub-mode, may include providing
a third volume of water to the clothes processing device. The third volume of water
may be obtained on the basis of the mass of load, for example 4 L, for rinsing washing
powder or laundry detergent.
[0063] The executing the sub-mode, in particular the second sub-mode, may include increasing
the rotational speed of the drum to a second rotational speed that is less than a
centrifugal rotational speed, and turning on the circulating pump to spray water onto
the load to wet the load. The rotational speed is a minimum rotational speed that
maintains the load in a centrifugal state. In one embodiment, the second rotational
speed is within a range of less than or equal to 50 r/min.
[0064] The executing the sub-mode, in particular the first and/or second sub-mode, may include
determining whether the load is fully wetted, and if not, replenishing water and repeating
the spraying and determining steps until the load is completely wetted. For example,
water replenishing is controlled in a mode of determining whether the load is fully
wetted by detecting a pressure value, until the load is completely wetted.
[0065] The executing the sub-mode, in particular the first and/or second sub-mode, may include
turning on a draining pump to drain free water in the tub after the load is completely
wetted. The free water is water freely flowing in the drum or the tub of the clothes
processing device.
[0066] The executing the sub-mode, in particular the first and/or second sub-mode, may further
include opening the air heating tube to heat air; turning on the fan to make the heated
air flow to form hot air, and make the hot air pass through and heat the load; and
washing the load.
[0067] The second threshold is further provided on the basis of the first threshold, so
that the sub-mode, in particular the second sub-mode, is executed when the mass of
the load is less than the second threshold, thereby saving energy consumption and
time more efficiently.
[0068] The embodiments of the present invention further disclose a readable storage medium
or a control apparatus comprising the readable storage medium, which is a non-volatile
storage medium or a non-transient storage medium, having a program instruction stored
thereon, where steps of the method as shown in FIG. 1 and FIG. 2 are executed when
running the program instruction.
[0069] The embodiments of the present invention further disclose a clothes processing device
300, as shown in FIG. 3, including, in a housing 301, a drum 303 configured to accommodate
a load 302 and a tub 304 sleeved outside the drum 303 and in fluid communication with
the drum 303; a washing heating tube 305 located at the bottom of the tub 304 and
adapted to heat free water in the tub 304; a circulating pump 306 adapted to circularly
spray water (for example, by means of a water circulating channel 307) from the bottom
of the tub 304 onto the load 302; an air heating tube 308 located in a drying channel
309 and adapted to heat air; and a fan 310 adapted to make the heated air flow to
form hot air and make the hot air pass through and heat the load 302.
[0070] The clothes processing device 300 further includes a control apparatus 311, including
the readable storage medium and a processor, where the readable storage medium stores
a program instruction running on the processor, and steps of the method as shown in
FIG. 1 and FIG. 2 are executed when the processor runs the program instruction.
[0071] The clothes processing device 300 may further include a pressure sensor 312, a material
box 313, and a draining pump 316. The pressure sensor 312 is provided at the bottom
of the tub 304 for detecting pressure of the free water. The material box 313 is adapted
to provide washing powder or laundry detergent. A water supply tube 314 supplies water
to the material box 313. A water inlet valve 315 is provided on the water supply tube
314. The draining pump 316 is connected to a draining channel 317 for draining the
free water.
[0072] In some embodiments, the clothes processing device 300 may be a drum washing machine.
[0073] FIG. 4 is a flowchart of a clothes washing method 400 using a steam thermal washing
mode according to an embodiment of the present invention.
[0074] The method 400 includes: providing a certain volume of water to a clothes processing
device (S410); increasing a rotational speed of a drum to a set rotational speed (S420);
turning on a circulating pump to spray water onto a load in the clothes processing
device to wet the load (S430); determining whether the load is fully wetted (S440);
if not, replenishing water and repeating step S430 until the load is completely wetted;
if yes, turning on a draining pump to drain free water (S450); opening an air heating
tube to heat air (S460); turning on a fan to make the heated air flow to form hot
air, and make the hot air pass through and heat the load (S470); and washing the load
(S480).
[0075] The technical solution of the embodiment of the present invention may be based on
a steam thermal washing mode. When clothes are washed in this mode, the hot air only
heats the fully wetted load, without heating excess free water, and a state without
free water in the subsequent washing process is maintained, so that the wet and hot
load is fully contacted and beaten with the drum, thereby completing the heating washing
process more efficiency. Moreover, when the steam thermal washing mode described in
the embodiment of the present invention is adopted, the higher the temperature (for
example, 80°C or more) is, the more energy consumption saved is, and the washing time
may be saved.
[0076] The mass of the load is detected before providing a certain volume of water to a
clothes processing device S410, and whether the mass of the load is greater than a
threshold, in particular is greater than the second threshold, is determined, if yes,
a first sub-mode is executed, and if not, a second sub-mode is executed. In one embodiment,
the threshold is within a range of greater than or equal to 1 kg and less than or
equal to 3 kg. In another embodiment, a ratio of the threshold to a rated capacity
of the clothes processing device is within a range of greater than or equal to 10%
and less than or equal to 30%, where the rated capacity is a maximum mass of dry clothes
that can be washed by the clothes processing device. Detecting the mass of the load
is a conventional measure in the art.
[0077] For example, the mass of the load is calculated by detecting a signal of a motor
(e.g., a signal of electric energy consumed to drive the load).
[0078] The technical solution of the embodiment of the present invention selectively executes
the first sub-mode or the second sub-mode according to the comparison of the detected
mass of the load and the threshold, so as to save energy consumption and time more
efficiently.
[0079] For each mass of load, the same existing design such as drainage, dehydration, and
rinsing may be adopted after the washing process, and a drying stage may be included
as well.
[0080] The executing the first sub-mode may include providing a second volume of water to
the clothes processing device. The second volume of water may be obtained on the basis
of the mass of the load, for example, 5 L, for rinsing washing powder or laundry detergent.
[0081] The executing the first sub-mode may include increasing a rotational speed of the
drum to a first rotational speed to form a load ring, and turning on a circulating
pump to spray water onto the load ring to wet the load. The first rotational speed
is a minimum rotational speed that enables the load to reach and maintain in a centrifugal
state to form a load ring, where the first rotational speed should not be too high,
so that as little water as possible in the load is thrown out, that is, as much water
as possible is maintained in the load. In one embodiment, the first rotational speed
is within a range of greater than or equal to 130 r/min and less than or equal to
600 r/min. The formation of the load ring enables the load that is located in a load
pile and close to a rear wall of the drum to be fully wetted.
[0082] The executing the first sub-mode may include determining whether the load is fully
wetted, and if not, replenishing water and repeating the spraying and determining
steps until the load is completely wetted. For example, water replenishing is controlled
in a mode of determining whether the load is fully wetted by detecting a pressure
value, until the load is completely wetted.
[0083] The executing the first sub-mode may include draining free water after the load is
completely wetted, for example, turning on a draining pump to drain free water in
the tub.
[0084] The executing the first sub-mode may include opening the air heating tube to heat
air; and turning on the fan to make the heated air flow to form hot air, and make
the hot air pass through and heat the load. The air heating tube may be located in
a drying channel of the clothes processing device.
[0085] The executing the first sub-mode may further include washing the load. In the washing
process, water replenishing is stopped, and the wetted load is always washed.
[0086] The executing the second sub-mode may include providing a third volume of water to
the clothes processing device. The third volume of water may be obtained on the basis
of the mass of load, for example 4 L, for rinsing washing powder or laundry detergent.
[0087] The executing a second sub-mode includes increasing the rotational speed of the drum
to a second rotational speed that is less than a centrifugal rotational speed, and
turning on the circulating pump to spray water onto the load to wet the load. The
rotational speed is a minimum rotational speed that maintains the load in a centrifugal
state. In one embodiment, the second rotational speed is within a range of less than
or equal to 50 r/mi. Since the mass of the load in the second sub-mode is relatively
small, a problem that water cannot reach the load wrapped inside usually does not
occur, and thus the formation of the load ring is not required.
[0088] The executing a second sub-mode includes determining whether the load is fully wetted,
and if not, replenishing water and repeating the spraying and determining steps until
the load is completely wetted. For example, water replenishing is controlled in a
mode of determining whether the load is fully wetted by detecting a pressure value,
until the load is completely wetted.
[0089] The executing a second sub-mode includes turning on the draining pump to drain free
water, for example, turning on the draining pump to drain free water in the tub.
[0090] The executing a second sub-mode includes opening the air heating tube to heat air;
and turning on the fan to make the heated air flow to form hot air, and make the hot
air pass through and heat the load. The air heating tube may be located in a drying
channel of the clothes processing device.
[0091] The executing the second sub-mode may further include washing the load. In the washing
process, water replenishing is stopped, and the wetted load is always washed.
[0092] The embodiments of the present invention further disclose another readable storage
medium or a control apparatus comprising the readable storage medium, which is a non-volatile
storage medium or a non-transient storage medium, having a program instruction stored
thereon, where steps of the method as shown in FIG. 4 are executed when running the
program instruction.
[0093] The embodiments of the present invention further disclose another clothes processing
device 500, as shown in FIG. 5, including, in a housing 501, a drum 503 configured
to accommodate a load 502 and a tub 504 sleeved outside the drum 503 and in fluid
communication with the drum 503; a washing heating tube 505 located at the bottom
of the tub 504 and adapted to heat free water in the tub 504; a circulating pump 506
adapted to circularly spray water (for example, by means of a water circulating channel
507) from the bottom of the tub 504 onto the load 502; an air heating tube 508 located
in a drying channel 509 and adapted to heat air; and a fan 510 adapted to make the
heated air flow to form hot air and make the hot air pass through and heat the load
502.
[0094] The clothes processing device 500 further includes a control apparatus 511, including
the readable storage medium and a processor, where the readable storage medium stores
a program instruction running on the processor, and steps of the method as shown in
FIG. 4 are executed when the processor runs the program instruction.
[0095] The clothes processing device 500 may further include a pressure sensor 512, a material
box 513, and a draining pump 516. The pressure sensor 512 is provided at the bottom
of the tub 504 for detecting pressure of the free water. The material box 513 is adapted
to provide washing powder or laundry detergent. A water supply tube 514 supplies water
to the material box 513. A water inlet valve 514 is provided on the water supply tube
515. The draining pump 516 is connected to a draining channel 517 for draining the
free water. In some embodiments, the clothes processing device 500 may be a drum washing
machine.
[0096] Although specific implementations have been described above, the implementations
are not intended to limit the scope of the present invention, even if only one implementation
is described with respect to specific features. The feature examples provided in the
present invention are intended to be illustrative rather than limiting, unless otherwise
stated. In a specific implementation, technical features of one or more dependent
claims and technical features of independent claims are combined according to actual
requirements and in a feasible technology. Technical features from corresponding independent
claims may be combined by any suitable manner rather than only by a specific combination
exemplified in the claims.
1. A clothes washing method (100, 200, 400) of a clothes processing device (300, 500)
comprising a rotatable drum (303, 503) configured to accommodate a load (302, 502)
and a tub (304, 504) sleeved outside the drum (303, 503), whereby the method (100,
200, 400) comprises steps for:
detecting mass of a load put in a clothes processing device (300, 500) (S110) and
determining whether the mass of the load is greater than a first threshold (S120);
if yes, executing a first heating washing mode (S130), which is a mode in which the
load (302, 502) and free water are heated by means of a washing heating tube (305,
505) in water in a state where the free water is provided in the tub (304, 504) and
the load (302, 502) is in contact with the free water, then washing is carried
and if not, executing a second heating washing mode (S140), which is a mode in which
the wetted load (302, 502) is heated with hot air in a state where no free water is
provided in the tub (304, 504), and then washing is carried out.
2. The method (100, 200, 400) according to claim 1, characterized in that a ratio of the first threshold to a rated capacity of the clothes processing device
(300, 500) is within a range of greater than or equal to 30% and less than or equal
to 60%, in particular the first threshold is within a range of greater than or equal
to 3 kg and less than or equal to 6 kg.
3. The method (100, 200, 400) according to claim 1 or 2, characterized in that the executing the first heating washing mode (S130) comprises the following steps:
providing a first volume of water to the clothes processing device (300, 500), replenishing
water until the load (302, 502) is completely wetted and free water in contact with
the load (302, 502) is provided in the tub (304, 504); heating the free water by means
of the washing heating tube (305, 505) so as to heat the load (302, 502); and maintaining
a certain amount of the free water to wash the load (302, 502).
4. The method (100, 200, 400) according to any of claims 1 to 3, characterized in that the executing the second heating washing mode (S140) comprises the following steps:
supplying water to the tub (304, 504) and the drum (303, 503) and fully wetting the
load (302, 502), and then draining the free water in the tub (304, 504); heating the
wetted load (302, 502) with the hot air; and then washing the load (302, 502).
5. The method (100, 200, 400) according to claim 4,
characterized in that the step of supplying water to the tub (304, 504) and the drum (303, 503) and fully
wetting the load (302, 502) comprises:
providing a certain volume of water to a clothes processing device (300, 500) (S410);
and increasing a rotational speed of a drum (303, 503) to a set rotational speed (S420);
turning on a circulating pump (306, 506) to spray water onto a load (302, 502) in
the clothes processing device (300, 500) to wet the load (302, 502) (S430);
determining whether the load (302, 502) is fully wetted (S440), and if not, replenishing
water and repeating the spraying step (S430) until the load (302, 502) is completely
wetted.
6. The method (100, 200, 400) according to claim 5, characterized in that the certain volume of water is set as a second volume of water and the set rotational
speed is set as a first rotational speed to form a load ring, turning on a circulating
pump (306, 506) to spray water onto the load ring to wet the load (302, 502), determining
whether the load (302, 502) is fully wetted, and if not, replenishing water and repeating
the spraying and determining steps until the load (302, 502) is completely wetted.
7. The method (100, 200, 400) according to claim 5 or 6, characterized in that the first rotational speed is a minimum rotational speed that maintains the load
(302, 502) in a centrifugal state, in particular the first rotational speed is within
a range of greater than or equal to 130 r/min and less than or equal to 600 r/min.
8. The method (100, 200, 400) according to claims 5, characterized in that the executing the second heating washing mode (S140) comprises determining whether
the mass of the load is less than or equal to a second threshold before the supplying
water to the tub (304, 504) and the drum (303, 503) is executed, and if yes, executing
a sub-mode, wherein the second threshold is less than the first threshold.
9. The method (100, 200, 400) according to claim 8, characterized in that a ratio of the second threshold to a rated capacity of the clothes processing device
(300, 500) is within a range of greater than or equal to 10% and less than or equal
to 30%, in particular the second threshold is within a range of greater than or equal
to 1 kg and less than or equal to 3 kg.
10. The method (100, 200, 400) according to claim 8 or 9, characterized in that the executing the sub-mode comprises: setting the certain volume of water as a third
volume of water to the clothes processing device (300, 500) and setting the rotational
speed of the drum (303, 503) to a second rotational speed that is less than a centrifugal
rotational speed, in particular the second rotational speed is within a range of less
than or equal to 50 r/min.
11. The method (100, 200, 400) according to any of claims 1 to 10, characterized in that the method (100, 200, 400) further comprises: draining the free water in the tub
(304, 504) comprises turning on a draining pump (316, 516) to drain free water.
12. The method (100, 200, 400) according to any one of claim 1 to 11 characterized in that the method (100, 200, 400) further comprises: heating the wetted load (302, 502)
with the hot air comprises opening an air heating tube (308, 508) to heat air, and
turning on a fan (310, 510) to make the heated air flow to form hot air, and make
the hot air pass through and heat the load (302, 502).
13. A control apparatus (311, 511) comprising a readable storage medium, which is in particular
a non-volatile storage medium or a non-transient storage medium, having at least one
program instruction stored thereon, characterized in that steps of the method (100, 200, 400) according to any one of claims 1 to 12 are executed
when running the program instruction.
14. A clothes processing device (300, 500), in particular a drum washing machine, comprising
a rotatable drum (303, 503) configured to accommodate a load (302, 502) and a tub
(304, 504) sleeved outside the drum (303, 503) and in fluid communication with the
drum (303, 503), whereby further comprising:
a washing heating tube (305, 505), located at the bottom of the tub (304, 504) and
adapted to heat free water in the tub (304, 504);
a circulating pump (306, 506), adapted to circularly spray water from the bottom of
the tub (304, 504) onto the load (302, 502);
an air heating tube (308, 508), adapted to heat air;
a fan (310, 510), adapted to make the heated air flow to form hot air, and make the
hot air pass through and heat the load (302, 502); and
a control apparatus (311, 511) according to claim 13; and comprising a processor,
wherein the at least one program instruction stored in the readable storage medium
is executable on the processor and steps of the method (100 200, 400) according to
any one of claims 1 to 12 are executed when the processor runs the program instruction.
1. Wäschewaschverfahren (100, 200, 400) eines Wäschebearbeitungsgeräts (300, 500) mit
einer drehbaren Trommel (303, 503), die so konfiguriert ist, dass sie eine Ladung
(302, 502) aufnimmt, und einem die Trommel (303, 503) außen umgebenden Laugenbehälter
(304, 504), wobei das Verfahren (100, 200, 400) folgende Schritte umfasst:
Erkennen der Masse einer Ladung, die in ein Wäschebearbeitungsgerät (300, 500) gelegt
wurde (S110), und
Ermitteln, ob die Masse der Ladung einen ersten Grenzwert übersteigt (S120),
wenn dies der Fall ist, Ausführen eines ersten Aufheizwaschmodus (S130), bei dem es
sich um einen Modus handelt, bei dem die Ladung (302, 502) und verfügbares Wasser
mithilfe eines Waschheizrohrs (305, 505) in Wasser in einem Zustand erwärmt wird,
in dem das verfügbare Wasser in dem Laugenbehälter (304, 504) bereitgestellt ist und
sich die Ladung (302, 502) mit dem verfügbaren Wasser in Kontakt befindet, und dann
ein Waschen erfolgt,
und wenn dies nicht der Fall ist, Ausführen eines zweiten Aufheizwaschmodus (S140),
bei dem es sich um einen Modus handelt, in dem die befeuchtete Ladung (302, 502) in
einem Zustand, in dem in dem Laugenbehälter (304, 504) kein verfügbares Wasser bereitgestellt
ist, mit Heißluft erwärmt wird und dann ein Waschen erfolgt.
2. Verfahren (100, 200, 400) nach Anspruch 1, dadurch gekennzeichnet, dass ein Verhältnis des ersten Grenzwerts zu einer Nennkapazität des Wäschebearbeitungsgeräts
(300, 500) innerhalb eines Bereichs von mindestens 30% und höchstens 60% liegt, wobei
der erste Grenzwert insbesondere innerhalb eines Bereichs von mindestens 3 kg und
höchstens 6 kg liegt.
3. Verfahren (100, 200, 400) nach Anspruch 1 oder 2, dadurch gekennzeichnet, dass das Ausführen des ersten Aufheizwaschmodus (S130) die folgenden Schritte umfasst:
Bereitstellen eines ersten Wasservolumens für das Wäschebearbeitungsgerät (300, 500),
Nachfüllen von Wasser, bis die Ladung (302, 502) vollständig befeuchtet ist und mit
der Ladung (302, 502) in Kontakt befindliches verfügbares Wasser in dem Laugenbehälter
(304, 504) bereitgestellt wird, Erwärmen des verfügbaren Wassers mithilfe des Waschheizrohrs
(305, 505) zwecks Erwärmens der Ladung (302, 502) und Beibehalten einer bestimmten
Menge verfügbaren Wassers zum Waschen der Ladung (302, 502).
4. Verfahren (100, 200, 400) nach einem der Ansprüche 1 bis 3, dadurch gekennzeichnet, dass das Ausführen des zweiten Aufheizwaschmodus (S140) die folgenden Schritte umfasst:
Zuführen von Wasser zum Laugenbehälter (304, 504) und zur Trommel (303, 503) und vollständiges
Befeuchten der Ladung (302, 502) und dann Ablassen des verfügbaren Wassers im Laugenbehälter
(304, 504), Erwärmen der befeuchteten Ladung (302, 502) mit der Heißluft und dann
Waschen der Ladung (302, 502).
5. Verfahren (100, 200, 400) nach Anspruch 4,
dadurch gekennzeichnet, dass das Zuführen von Wasser zum Laugenbehälter (304, 504) und zur Trommel (303, 503)
und das vollständige Befeuchten der Ladung (302, 502) Folgendes umfasst:
Bereitstellen eines bestimmten Wasservolumens für ein Wäschebearbeitungsgerät (300,
500) (S410) und
Erhöhen einer Drehzahl einer Trommel (303, 503) auf eine festgelegte Drehzahl (S420),
Einschalten einer Umwälzpumpe (306, 506) zum Sprühen von Wasser auf eine Ladung (302,
502) in dem Wäschebearbeitungsgerät (302, 502) zwecks Befeuchtens der Ladung (302,
502) (S430),
Ermitteln, ob die Ladung (302, 502) vollständig befeuchtet ist (S440), und wenn dies
nicht der Fall ist, Nachfüllen von Wasser und Wiederholen des Sprühens (S430), bis
die Ladung (302, 502) vollständig befeuchtet ist.
6. Verfahren (100, 200, 400) nach Anspruch 5, dadurch gekennzeichnet, dass zum Bilden eines Wäscherings das bestimmte Wasservolumen als zweites Wasservolumen
und die festgelegte Drehzahl als erste Drehzahl festgelegt wird, zum Sprühen von Wasser
auf den Wäschering zwecks Befeuchtens der Ladung (302, 502) eine Umwälzpumpe (306,
506) eingeschaltet wird, ermittelt wird, ob die Ladung (302, 502) vollständig befeuchtet
ist, und wenn dies nicht der Fall ist, Wasser nachgefüllt wird und das Besprühen und
Ermitteln wiederholt wird, bis die Ladung (302, 502) vollständig befeuchtet ist.
7. Verfahren (100, 200, 400) nach Anspruch 5 oder 6, dadurch gekennzeichnet, dass es sich bei der ersten Drehzahl um eine Mindestdrehzahl handelt, bei der die Ladung
(302, 502) in einem Fliehkraftzustand bleibt, dass die erste Drehzahl insbesondere
in einem Bereich von mindestens 130 U/min und höchstens 600 U/min liegt.
8. Verfahren (100, 200, 400) nach Anspruch 5, dadurch gekennzeichnet, dass das Ausführen des zweiten Aufheizwaschmodus (S140) das Ermitteln umfasst, ob die
Masse der Ladung höchstens einem zweiten Grenzwert entspricht, bevor dem Laugenbehälter
(304, 504) und der Trommel (303, 503) Wasser zugeführt wird, und, wenn dies der Fall
ist, ein Ausführen eines Teilmodus umfasst, wobei der zweite Grenzwert unter dem ersten
Grenzwert liegt.
9. Verfahren (100, 200, 400) nach Anspruch 8, dadurch gekennzeichnet, dass ein Verhältnis des zweiten Grenzwerts zu einer Nennkapazität des Wäschebearbeitungsgeräts
(300, 500) innerhalb eines Bereichs von mindestens 10% und höchstens 30% liegt, wobei
der zweite Grenzwert insbesondere innerhalb eines Bereichs von mindestens 1 kg und
höchstens 3 kg liegt.
10. Verfahren (100, 200, 400) nach Anspruch 8 oder 9, dadurch gekennzeichnet, dass das Ausführen des Teilmodus Folgendes umfasst: Einstellen des bestimmten Wasservolumens
als drittes Wasservolumen für das Wäschebearbeitungsgerät (300, 500) und Einstellen
der Drehzahl für die Trommel (303, 503) auf eine zweite Drehzahl, die geringer ist
als eine Fliehkraftdrehzahl, wobei die zweite Drehzahl insbesondere in einem Bereich
von maximal 50 U/min liegt.
11. Verfahren (100, 200, 400) nach einem der Ansprüche 1 bis 10, dadurch gekennzeichnet, dass es ferner Folgendes umfasst: Ablassen des verfügbaren Wassers aus dem Laugenbehälter
(304, 504), was das Einschalten einer Laugenpumpe (316, 516) zum Ablassen des verfügbaren
Wassers umfasst.
12. Verfahren (100, 200, 400) nach einem der Ansprüche 1 bis 11, dadurch gekennzeichnet, dass es ferner Folgendes umfasst: Erwärmen der befeuchteten Ladung (302, 502) mit der
Heißluft, was das Öffnen eines Luftheizrohrs (308, 508) zum Erwärmen von Luft und
das Einschalten eines Gebläses (310, 510) umfasst, damit die erwärmte Luft strömt
und so Heißluft bildet und die Heißluft durch die Ladung (302, 502) strömt und diese
erwärmt.
13. Steuervorrichtung (311, 511) mit einem lesbaren Speichermedium, bei dem es sich insbesondere
um ein nichtflüchtiges oder ein dauerhaftes Speichermedium handelt, in dem mindestens
eine Programmanweisung gespeichert ist, dadurch gekennzeichnet, dass Schritte gemäß dem Verfahren (100, 200, 400) nach einem der Ansprüche 1 bis 12 durchgeführt
werden, wenn die Programmanweisung ausgeführt wird.
14. Wäschebearbeitungsgerät (300, 500), insbesondere Trommelwaschmaschine, das eine drehbare
Trommel (303, 503), die so konfiguriert ist, dass sie eine Ladung (302, 502) aufnimmt,
und einen die Trommel (303, 503) umgebenden Laugenbehälter (304, 504) umfasst und
sich mit der Trommel (303, 503) in Fluidverbindung befindet, wobei es ferner Folgendes
umfasst:
ein Waschheizrohr (305, 505), das sich im unteren Bereich des Laugenbehälters (304,
504) befindet und so ausgelegt ist, dass es verfügbares Wasser im Laugenbehälter (304,
504) erwärmt,
eine Umwälzpumpe (306, 506), die so ausgelegt ist, dass sie Wasser aus dem unteren
Bereich des Laugenbehälters (304, 504) zyklisch auf die Ladung (302, 502) sprüht,
ein Luftheizrohr (308, 508), das so ausgelegt ist, dass es Luft erwärmt,
ein Gebläse (310, 510), das so ausgelegt ist, dass es bewirkt, dass die erwärmte Luft
strömt und so Heißluft bildet und die Heißluft durch die Ladung (302, 502) strömt
und diese erwärmt, und
eine Steuervorrichtung (311, 511) nach Anspruch 13 mit einem Prozessor, wobei die
mindestens eine in dem lesbaren Speichermedium gespeicherte Programmanweisung auf
dem Prozessor ausführbar ist und Schritte des Verfahrens (100, 200, 400) nach einem
der Ansprüche 1 bis 12 ausgeführt werden, wenn der Prozessor die Programmanweisung
ausführt.
1. Procédé de lavage du linge (100, 200, 400) d'un dispositif de traitement du linge
(300, 500) comprenant un tambour rotatif (303, 503) configuré pour recevoir une charge
(302, 502) et une cuve (304, 504) chemisée à l'extérieur du tambour (303, 503), dans
lequel le procédé (100, 200, 400) comprend les étapes suivantes :
détection d'une masse de charge introduite dans un dispositif de traitement du linge
(300, 500) (S110) et détermination si la masse de la charge est supérieure à un premier
seuil (S120) ;
si oui, exécution d'un premier mode de lavage chauffant (S130), qui est un mode dans
lequel la charge (302, 502) et de l'eau libre sont chauffées au moyen d'un tube chauffant
de lavage (305, 505) dans de l'eau dans un état où de l'eau libre est fournie dans
la cuve (304, 504) et la charge (302, 502) est en contact avec l'eau libre, puis le
lavage est effectué, et
si non, exécution d'un deuxième mode de lavage chauffant (S140), qui est un mode dans
lequel la charge trempée (302, 502) est chauffée avec de l'air chaud dans un état
où aucune eau libre n'est fournie dans la cuve (304, 504), puis le lavage est effectué.
2. Procédé (100, 200, 400) selon la revendication 1, caractérisé en ce qu'un rapport du premier seuil à une capacité nominale du dispositif de traitement du
linge (300, 500) est supérieur ou égal à 30 % et inférieur ou égal à 60 %, en particulier
en ce que le premier seuil est supérieur ou égal à 3 kg et inférieur ou égal à 6 kg.
3. Procédé (100, 200, 400) selon la revendication 1 ou 2, caractérisé en ce que l'exécution du premier mode de lavage chauffant (S130) comprend les étapes suivantes
: fourniture d'un premier volume d'eau dans le dispositif de traitement du linge (300,
500), réapprovisionnement de l'eau jusqu'à ce que la charge (302, 502) soit complètement
trempée et que de l'eau libre en contact avec la charge (302, 502) soit fournie dans
la cuve (304, 504) ; chauffage de l'eau libre au moyen du tube chauffant de lavage
(305, 505) de façon à chauffer la charge (302, 502) ; et maintien d'une certaine quantité
d'eau libre pour laver la charge (302, 502).
4. Procédé (100, 200, 400) selon l'une quelconque des revendications 1 à 3, caractérisé en ce que l'exécution du deuxième mode de lavage chauffant (S140) comprend les étapes suivantes
:
alimentation d'eau dans la cuve (304, 504) et le tambour (303, 503) et trempage complet
de la charge (302, 502), puis évacuation de l'eau libre dans la cuve (304, 504) ;
chauffage de la charge trempée (302, 502) avec de l'air chaud ; et lavage de la charge
(302, 502).
5. Procédé (100, 200, 400) selon la revendication 4,
caractérisé en ce que l'étape d'alimentation d'eau dans la cuve (304, 504) et le tambour (303, 503) et
de trempage complet de la charge (302, 502) comprend :
la fourniture d'un certain volume d'eau dans un dispositif de traitement du linge
(300, 500) (S410) ; et l'augmentation d'une vitesse de rotation d'un tambour (303,
503) jusqu'à une vitesse de rotation définie (S420) ;
la mise en rotation d'une pompe de circulation (306, 506) pour pulvériser de l'eau
sur une charge (302, 502) dans le dispositif de traitement du linge (300, 500) afin
de tremper la charge (302, 502) (S430) ; et
la détermination si la charge (302, 502) est entièrement trempée (S440), et si tel
n'est pas le cas, le réapprovisionnement d'eau et la répétition de l'étape de pulvérisation
(S430) jusqu'à ce que la charge (302, 502) soit entièrement trempée.
6. Procédé (100, 200, 400) selon la revendication 5, caractérisé en ce que le certain volume d'eau est défini à titre de deuxième volume d'eau et la vitesse
de rotation définie est définie à titre de première vitesse de rotation pour former
un anneau de charge, et comprenant :
l'activation d'une pompe de circulation (306, 506) pour pulvériser de l'eau sur l'anneau
de charge afin de tremper la charge (302, 502), la détermination si la charge (302,
502) est entièrement trempée, et si non, le réapprovisionnement d'eau et la répétition
des étapes de pulvérisation et de détermination jusqu'à ce que la charge (302, 502)
soit complètement trempée.
7. Procédé (100, 200, 400) selon la revendication 5 ou 6, caractérisé en ce que la première vitesse de rotation est une vitesse minimale de rotation qui maintient
la charge (302, 502) dans un état centrifuge, en particulier la première vitesse de
rotation est supérieure ou égale à 130 t/min. et inférieure ou égale à 600 t/min.
8. Procédé (100, 200, 400) selon la revendication 5, caractérisé en ce que l'exécution du deuxième mode de lavage chauffant (S140) comprend la détermination
si la masse de la charge est inférieure ou égale à un deuxième seuil avant que l'alimentation
d'eau dans la cuve (304, 504) et le tambour (303, 503) ne soit exécutée, et si oui,
l'exécution d'un sous-mode, le deuxième seuil étant inférieur au premier seuil.
9. Procédé (100, 200, 400) selon la revendication 8, caractérisé en ce qu'un rapport du deuxième seuil à une capacité nominale du dispositif de traitement de
linge (300, 500) est supérieur ou égal à 10 % et inférieur ou égal à 30 %, en particulier
le deuxième seuil est compris entre 1 kg et 3 kg.
10. Procédé (100, 200, 400) selon la revendication 8 ou 9, caractérisé en ce que l'exécution du sous-mode comprend : la définition du certain volume d'eau à titre
de troisième volume d'eau fourni au dispositif de traitement du linge (300, 500) et
le réglage de la vitesse de rotation du tambour (303, 503) à une deuxième vitesse
de rotation qui est inférieure à une vitesse de rotation centrifuge, en particulier
où la deuxième vitesse de rotation est inférieure ou égale à 50 t/min.
11. Procédé (100, 200, 400) selon l'une quelconque des revendications 1 à 10, caractérisé en ce que le procédé (100, 200, 400) comprend en outre :
l'évacuation de l'eau libre dans la cuve (304, 504) en faisant tourner une pompe de
vidange (316, 516) pour vidanger l'eau libre.
12. Procédé (100, 200, 400) selon l'une quelconque des revendications 1 à 11, caractérisé en ce que le procédé (100, 200, 400) comprend en outre :
le chauffage de la charge trempée (302, 502) avec de l'air chaud comprenant l'ouverture
d'un tube de chauffage d'air (308, 508) pour réchauffer l'air, et la mise en marche
d'un ventilateur (310, 510) pour amener le courant d'air chauffé à former de l'air
chaud, et amener l'air chaud à passer à travers la charge (302, 502) et la réchauffer.
13. Dispositif de commande (311, 511) comprenant un support de stockage lisible, qui est
en particulier un support de stockage non volatile ou un support de stockage non transitoire,
comprenant au moins une instruction de programme stockée sur celui-ci, caractérisé en ce que les étapes du procédé (100, 200, 400) selon l'une quelconque des revendications 1
à 12 sont exécutées lors de l'exécution de l'instruction de programme.
14. Dispositif de traitement du linge (300, 500), en particulier machine à laver à tambour,
comprenant un tambour rotatif (303, 503) configuré pour recevoir une charge (302,
502) et une cuve (304, 504) chemisée à l'extérieur du tambour (303, 503) et en communication
fluidique avec le tambour (303, 503),
caractérisé en ce qu'il comprend en outre :
un tube chauffant de lavage (305, 505) situé au fond de la cuve (304, 504) et adapté
pour chauffer de l'eau libre dans la cuve (304, 504) ;
une pompe de circulation (306, 506) adaptée pour pulvériser de façon circulaire de
l'eau à partir du fond de la cuve (304, 504) sur la charge (302, 502) ;
un tube de chauffage d'air (308, 508) adapté pour chauffer l'air ;
un ventilateur (310, 510), adapté pour amener le courant d'air chauffé à former de
l'air chaud, et amener l'air chaud à passer à travers la charge (302, 502) et à la
chauffer ; et
un dispositif de commande (311, 511) selon la revendication 13 ; et comprenant un
processeur, dans lequel l'au moins une instruction de programme stockée dans le support
de stockage lisible peut être exécutée sur le processeur et les étapes du procédé
(100, 200, 400) selon l'une quelconque des revendications 1 à 12 sont exécutées lorsque
le processeur exécute l'instruction de programme.