[0001] The present invention relates to a fan of a laundry dryer.
[0002] A high temperature is generally produced on some parts in an operation process of
a laundry dryer. For example, a temperature of a motor driving a drying barrel to
rotate rises, an air heating channel heating air causes temperatures of surrounding
parts to rise, a temperature of a fan motor driving air flow rises, and a temperature
of a circuit board rises after operation for a long time. Excessively high temperatures
of these parts may affect performance and lives of the parts. Therefore, cooling or
heat insulation for these parts needs to be considered by designers. In addition,
it is also desired by designers to cool walls of a drying chamber so that the drying
chamber itself has a condensation effect to some extent.
[0003] These cooling or heat insulation measures above may be implemented by means of providing
a heat insulation pad or additionally providing a fan. However, the heat insulation
pad does not have a desirable effect, and cannot be used for some parts. It is also
undesirable to provide a fan dedicatedly for a cooling purpose inside a body of the
dryer. A fan occupies a relatively large space, consequently increasing a size of
the dryer and increasing great costs at the same time.
[0004] An objective of the present invention is to modify a fan in a laundry dryer, so that
the fan can provide an additional cooling function without changes of an original
function and performance of the fan.
[0005] For the foregoing objective, the present invention provides a laundry dryer as claimed
in the independent claim. Preferred facultative embodiments of the invention are claimed
in dependent claims, described in the subsequent disclosure and exhibited in the attached
drawing. The invention also includes combinations of such preferred embodiments as
disclosed as further facultative preferred embodiments.
[0006] Accordingly the present invention provides a laundry dryer with a fan, including
a cabinet and a drying chamber, and the fan having a primary air channel formed by
a housing, where the housing is covered by a cover outside, a secondary air channel
having an inlet and an outlet is formed between the cover and the housing, impellers
rotating with a rotator of a motor are provided in the secondary air channel, the
impellers are disposed such that when the impellers rotate with the rotator, air is
driven to enter the secondary air channel from the inlet of the secondary air channel
and exit from the outlet of the secondary air channel, the inlet and the outlet of
the secondary air channel respectively extend by using a first pipe and a second pipe,
and an outlet of the second pipe is close to an apparatus that needs to be cooled
in the cabinet.
[0007] The fan in the present invention has both the primary air channel and the secondary
air channel. The primary air channel can fulfill an original function, and the secondary
air channel can guide an airflow to the apparatus that needs to be cooled. In addition,
when flowing through the secondary air channel, the air further cools the motor of
the fan itself. In the present invention, modification to the fan is minor, costs
are low, the newly added parts occupy a small space, and the cabinet and other parts
of the laundry dryer do not need to be modified.
[0008] Preferably, the inlet of the secondary air channel introduces ambient air from the
outside of the cabinet through the first pipe. In this way, not only air in the cabinet
is not unnecessarily disturbed, but also a temperature of the ambient air is usually
lower than a temperature of the air in the cabinet.
[0009] The apparatus that needs to be cooled includes at least one of a circuit system,
an outer wall of the drying chamber, and a detergent adding apparatus, where the detergent
adding apparatus is installed closely to a heat source.
[0010] The detergent adding apparatus includes an accommodating chamber adapted to store
a detergent for multiple washing processes, and the outlet of the second pipe faces
the accommodating chamber. Air from the secondary air channel removes heat of the
accommodating chamber, reduces a temperature in the accommodating chamber, thereby
avoiding deterioration of the detergent or a decrease in chemical performance of the
detergent due to a high temperature.
[0011] The fan is disposed neighboring an air heating channel that heats air entering the
drying chamber, and the inlet and the outlet of the secondary air channel of the fan
are isolated from an ambient space in which the air heating channel is located. In
this way, rotation of the impellers does not disturb ambient air of the air heating
channel, thereby avoiding a heat loss of the air heating channel arising therefrom.
[0012] At least a part of the rotator of the motor of the fan is located in the secondary
air channel between the housing and the cover, and the impellers are disposed in a
peripheral direction of the part of the rotator of the motor that is located in the
secondary air channel. In such a setting manner, an occupied space is small, a structure
is simple, and manufacturing costs are low.
[0013] The present invention is further described below with reference to the accompanying
drawing.
[0014] The disclosure will become more fully understood from the detailed description of
preferred embodiments exhibited in the drawing, given herein below for illustration
only, and thus are not limitative of the disclosure. In the drawing:
- FIG. 1
- is a schematic structural diagram of a dryer; and
- FIG. 2
- is three-dimensional diagrams of a housing and a cover of a fan in a separate state.
[0015] As shown in FIG. 1, a laundry dryer 100 has a cabinet 1. A drying chamber 2 is provided
in the cabinet 1. The drying chamber 2 includes a rotatable drum 3 and a tub 4 located
outside the drum 3. Spaces of the drum 3 and the tub 4 communicate. Pieces of laundry
are dried in the drum 3. The tub 4 sequentially connects to a condensation channel
5, a fan 6, and an air heating channel 7. An outlet of the air heating channel 7 communicates
with the space of the tub 4 again. After the fan 6 is started, air is driven to sequentially
circulate in a direction of the fan 6, the air heating channel 7, the drying chamber
2, the condensation channel 5, and the fan 6.
[0016] In the specific implementation shown in FIG. 1, the laundry dryer 100 further includes
a detergent adding apparatus 8. The detergent adding apparatus 8 includes an accommodating
chamber 9 adapted to store a detergent for multiple washing processes. The detergent
adding apparatus 8 is disposed neighboring the air heating channel 7. Therefore, heat
radiating from the air heating channel 7 causes a temperature of the detergent adding
apparatus 8 to increase.
[0017] With reference to FIG. 1 in combination with FIG. 2, the fan 6 has a primary air
channel 11 formed by a housing 10. The primary air channel 11 is in fluid communication
with the drying chamber 2 and the air heating channel 7. The housing 10 is covered
by a cover 12 outside. A secondary air channel 15 having an inlet 13 and an outlet
14 is formed between the cover 12 and the housing 10. The inlet 13 and the outlet
14 of the secondary air channel 15 respectively extend by using a first pipe 16 and
a second pipe 17. At least a part of a rotator 61 of a motor of the fan 6 is located
in the secondary air channel 15 between the housing 10 and the cover 12. Impellers
62 are provided in a peripheral direction of the part of the rotator 61 of the motor
that is located in the secondary air channel 15. When the impellers 62 rotate with
the rotator 61, air is driven to enter the secondary air channel 15 from the inlet
13 of the secondary air channel 15 and exit from the outlet 14 of the secondary air
channel 15.
[0018] The inlet 13 of the secondary air channel 15 connects to the outside of the cabinet
1 by using the first pipe 16, so as to introduce ambient air with a lower temperature
from the outside of the cabinet 1.
[0019] An end of the second pipe 17 connecting to the outlet 14 of the secondary air channel
15 connects to a frame 19 provided around a detergent accommodating chamber 9. An
outlet 18 of the second pipe 17 faces the accommodating chamber 9. Therefore, after
ambient air with a lower temperature enters the secondary air channel 15, some heat
of the fan 6 is removed, and the ambient air continues flowing and blows into the
detergent accommodating chamber 9, thereby cooling the detergent accommodating chamber
9. The outlet 14 of the secondary air channel 15 is isolated by using the fame 19
from an ambient space in which the air heating channel 7 is located.
[0020] In another implementation not shown in FIG. 1, the outlet 18 of the second pipe 17
may be close to another apparatus that needs to be cooled, for example, a circuit
system or an outer wall of the drying chamber 2. However, when the circuit system
or the drying chamber 2 is cooled, the outlet 18 of the second pipe 17 is preferably
far away from the ambient space in which the air heating channel 7 is located, and
is better isolated therefrom in space.
REFERENCE NUMERALS
[0021]
- 1
- Cabinet
- 2
- Drying chamber
- 3
- Drum
- 4
- Tub
- 5
- Condensation channel
- 6
- Fan
- 7
- Air heating channel
- 8
- Detergent adding apparatus
- 9
- Accommodating chamber
- 10
- Housing
- 11
- Primary air channel
- 12
- Cover
- 13
- Inlet
- 14
- Outlet
- 15
- Secondary air channel
- 16
- First pipe
- 17
- Second pipe
- 18
- Outlet
- 19
- Frame
- 61
- Rotator
- 62
- Impeller
- 100
- Laundry dryer
1. A laundry dryer (100) with a fan (6), comprising a cabinet (1) and a drying chamber
(2), and the fan (6) having a primary air channel (11) formed by a housing (10), characterized in that the housing (10) is covered by a cover (12) outside, a secondary air channel (15)
having an inlet (13) and an outlet (14) is formed between the cover (12) and the housing
(10), impellers (62) rotating with a rotator (61) of a motor are provided in the secondary
air channel (15), the impellers (62) are such disposed that when the impellers (62)
rotate with the rotator (61), air is driven to enter the secondary air channel (15)
from the inlet (13) of the secondary air channel (15) and exit from the outlet (14)
of the secondary air channel (15), the inlet (13) and the outlet (14) of the secondary
air channel (15) respectively extend by using a first pipe (16) and a second pipe
(17), and an outlet (14) of the second pipe (17) is close to an apparatus (2, 8) that
needs to be cooled in the cabinet (1).
2. The laundry dryer (100) according to claim 1, characterized in that the inlet (13) of the secondary air channel (15) introduces ambient air from the
outside of the cabinet (1) through the first pipe (16).
3. The laundry dryer (100) according to claim 1, characterized in that the apparatus (2, 8) that needs to be cooled comprises at least one of a circuit
system, an outer wall of the drying chamber (2), and a detergent adding apparatus
(8), wherein the detergent adding apparatus (8) is installed closely to a heat source.
4. The laundry dryer (100) according to claim 3, characterized in that the detergent adding apparatus (8) comprises an accommodating chamber (9) adapted
to store a detergent for multiple washing processes, and the outlet (14) of the second
pipe (17) faces the accommodating chamber (9).
5. The laundry dryer (100) according to claim 1, characterized in that the fan (6) is disposed neighboring an air heating channel (7) that heats air entering
the drying chamber (2), and the inlet (13) and the outlet (14) of the secondary air
channel (15) of the fan (6) are isolated from an ambient space in which the air heating
channel (8) is located.
6. The laundry dryer (100) according to claim 1, characterized in that at least a part of the rotator (61) of the motor of the fan (6) is located in the
secondary air channel (15) between the housing (10) and the cover (12), and the impellers
(62) are disposed in a peripheral direction of the part of the rotator (61 ) of the
motor that is located in the secondary air channel (15).