[0001] The present invention relates to a washing machine wherein the measurement of water
level and unbalanced load is performed, known, for instance, from
EP-A-1 293 595.
[0002] In washing machines, the level of the water received in the machine is determined
by measuring the pressure of the air compressed inside the air trap, which is connected
to the tub, as the manometric height of the water, rising in the tub, increases, and
by comparing this pressure with the reference pressure value in the situation when
the tub is empty.
[0003] On the other hand, in horizontal-axis washing machines, in order that the spin-drying
step can be efficiently performed, the laundry is required to be distributed to the
drum wall equally in every direction. In the situation that the laundry cannot be
distributed equally, the vibration in the washing machine increases at high speeds
in the spin-drying step and this causes the dynamic and structural system of the machine
to be damaged. Therefore, in horizontal-axis washing machines, unbalanced load detection
methods are present. By means of these methods, the maximum amount of unbalanced load,
which can exist inside the machine in the spin-drying step, is determined and depending
on the determined value, various distribution algorithms are applied for the distribution
of the laundry on the drum wall if required. Furthermore, again by these methods,
the situations wherein the tub gets close to the resonance frequency are determined
and the spin-drying process is stopped. Thus, the risk that the tub resonates at very
high speeds and as a result of this, hits the body of the washing machine is eliminated.
[0004] In the state of the art, in order to minimize the usage of additional elements for
unbalanced load detection, embodiments, aimed at commonizing the elements used for
water level detection and for unbalanced load detection, have been developed.
[0005] A state of the art embodiment is explained in the German Patent Application No
DE19616635. In this application, a system is described, which measures the fluctuations, occurring
due to the imbalance, with regard to the pressure data.
[0006] In the state of the art European Patent Application No
EP0967318, a system, which measures the oscillations, that is, the imbalance occurring in the
tub by means of the pressure difference, is explained. In an embodiment explained
in the said application, the tube coming from the air trap and the tube coming from
the vibration sensor are joined together by a T element and are connected to the pressure
sensor by a single tube.
[0007] In another embodiment, the tube coming from the air trap and the tube coming from
the vibration sensor are connected to the pressure sensor separately. In this embodiment,
a valve, which enables the tube coming from the air trap to be cut off when desired,
is situated on the tube coming from the air trap.
[0008] In another state of the art document, the European Patent Application No
EP0750065, a method, which relates to the interpretation of the data, received by the pressure
sensor from the air trap, to be used for unbalanced load detection, is explained.
[0009] The European patent application number
EP1293595A1 discloses a method of detecting an unbalanced load in a washing machine and further
of determining a rotational velocity to be provided of a tub of the washing machine
in dependence of a difference of pressures measured at two different rotational velocities.
In that step of determining, a particular matrix is made use of.
[0010] However, in these state of the art embodiments, while the measurement of the water
level and of the unbalanced load is desired to be performed by means of a single pressure
sensor, the desired level of accuracy of the unbalanced load measurements, performed
as a result of commonizing, cannot be provided and therefore, the tub sometimes cannot
be prevented from hitting the body of the washing machine by reaching the resonance
frequency.
[0011] The aim of the present invention is the realization of a washing machine wherein
the measurement of the water level and of the unbalanced load amount is performed
with low cost, and the risk of which being damaged by resonating due to unbalanced
load is minimized.
[0012] The washing machine realized in order to attain the aim of the present invention
is explicated in the claims.
[0013] The washing machine comprises an air trap which is used for performing the water
level detection, a vibration transmitter which is used for performing the unbalanced
load detection, a pressure sensor which detects the pressure values created by the
air that is compressed in the air trap and in the vibration transmitter, and a control
unit which controls the washing algorithms in accordance with the data received from
the pressure sensor. The control unit, used in the washing machine of the present
invention, increases the drum speed step by step during spin-drying. The control unit
calculates the ratio of the pressure value, transmitted from the vibration transmitter
to the pressure sensor at each speed, to the pressure value, transmitted at the previous
speed, and, by comparing the calculated ratio with the threshold ratio saved to its
memory by the manufacturer, foresees the amount of displacement the tub will perform
while resonating.
[0014] If the foreseen amount of displacement is equal to, or greater than the amount of
displacement which causes the tub to hit the body, the control unit stops the spin-drying
process. However, if the calculated amount of displacement is smaller than the displacement
which causes the tub to hit the body, the spin-drying process is continued.
[0015] In an embodiment of the present invention, a single threshold ratio is saved in the
control unit memory for all speeds whereat a comparison is performed between the ratio
and the threshold ratio.
[0016] In an embodiment of the present invention, a different threshold ratio is saved in
the control unit memory for each speed whereat a comparison is performed between the
ratio and the threshold ratio. Thus, the risk of hitting is provided to be prevented
more effectively.
[0017] In an embodiment of the present invention, since the pressure ratio is not possible
to be calculated as no previously performed measurement is present at the first speed
whereat a measurement will be performed, the amount of displacement that corresponds
to the first pressure value transmitted from the vibration transmitter to the pressure
sensor is compared with the maximum amount of displacement that can be allowed for
the tub to perform. Thus, beginning from the first speed, the unbalanced load conditions,
wherein excessive displacement occurs, are prevented from being overlooked.
[0018] The model embodiments that relate to the washing machine realized in order to attain
the aim of the present invention are illustrated in the attached figures, where:
[0019] Figure 1 - is the front schematic view of a washing machine.
[0020] The elements illustrated in the figures are numbered as follows:
- 1. Washing machine
- 2. Drum
- 3. Tub
- 4. Air trap
- 5. Vibration transmitter
- 6. Pressure sensor
- 7. Control unit
[0021] The washing machine (1) comprises a drum (2) wherein laundry is disposed, a tub (3)
wherein the drum (2) moves, an air trap (4) wherein the air is compressed as the amount
of water taken into the tub (3) increases, a vibration transmitter (5) wherein the
air is compressed depending on the vibration of the tub (3), a pressure sensor (6)
which reads the pressure that is created by the air compressed in the air trap (4)
and in the vibration transmitter (5), and a control unit (7) which determines the
water level and the unbalanced load amount by interpreting the data it receives from
the pressure sensor (6) (Figure 1).
[0022] The washing machine (1) of the present invention applies a washing algorithm which
preferably comprises water intake, washing, discharge and spin-drying steps.
[0023] The control unit (7) increases the drum (2) speed (n) step by step in the spin-drying
step and calculates the ratio (d
i= P
i/ P
i-1) of the pressure value (P
i), transmitted from the vibration transmitter (5) to the pressure sensor (6) at each
speed (n
i), to the pressure value (P
i-1) transmitted at the previous speed (n
i-1). If the calculated ratio (d
i) is equal to, or greater than a threshold ratio (d
tr) predetermined by the manufacturer, the control unit (7) stops the spin-drying process
by deciding that the amount of displacement (Δx
r) the tub (3) will perform when the resonance is reached, is equal to, or greater
than the maximum amount of displacement (Δx
tr) which is determined by the manufacturer and which can be allowed for the tub (3)
to perform.
[0024] If the calculated ratio (d
i) is smaller than a threshold ratio (d
tr) predetermined by the manufacturer, the control unit (7) continues the spin-drying
process by deciding that the amount of displacement (Δx
r) the tub (3) will perform when the resonance is reached, is smaller than the maximum
amount of displacement (Δx
tr) which is determined by the manufacturer and which can be allowed for the tub (3)
to perform.
[0025] Thus, the decision, given for stopping the spin-drying process, is provided to be
given independently of the noise which occurs in the pressure values as a result of
reading the data, received both from the vibration transmitter (5) and from the air
trap (4), by a single pressure sensor (6).
[0026] Since the transmission of the vibration increases as the resonance speed is approached
(n
r), the calculated ratio (d
i), also, increases gradually. The failures, which are present in the pressure values
(P
i-1, P
i, ...) that are read by the pressure sensor (6) due to the pressure sensor (6) also being
connected to the air trap (4) when the ratio (d
i) is used for determining the hitting condition, are prevented from affecting the
decision to be given.
[0027] In an embodiment of the present invention, a single threshold ratio (d
tr) is saved in the control unit (7) memory for all speeds (n
i-1, n
i,...) whereat a comparison is performed between the ratio (d
i) and the threshold ratio (d
tr).
[0028] In an embodiment of the present invention, a different threshold ratio (d
tri) is saved in the control unit (7) memory for each speed (n
i) whereat a comparison is performed between the ratio (d
i) and the threshold ratio (d
tr). Thus, the risk of hitting is provided to be prevented more effectively.
[0029] Since no previously performed measurement is present at the first speed (n
1) whereat a measurement is performed, the ratio (d
i) cannot be calculated to be compared with the threshold ratio (d
tr). In an embodiment of the present invention, at the first speed (n
1), the amount of displacement (Δx) that corresponds to the first pressure value (P
1) transmitted from the vibration transmitter (5) to the pressure sensor (6) is compared
with the maximum amount of displacement (Δx
tr) which is saved in the control unit (7) memory and which can be allowed for the tub
(3) to perform. Thus, beginning from the first speed, also the unbalanced load conditions,
wherein excessive displacement is encountered, are provided to be detected and the
risk of hitting, which will be encountered right at the beginning of the spin-drying
step, is minimized.
[0030] By means of the present invention, in washing machines (1) wherein a single pressure
sensor (6) is used for water level detection and for unbalanced load detection, the
damages, which will occur as a result of not accurately determining the tub speed
whereat the resonance condition will occur, are prevented.
[0031] It is to be understood that the present invention is not limited to the embodiments
disclosed above and a person skilled in the art can easily introduce different embodiments.
1. A washing machine (1) comprising a drum (2) wherein laundry is disposed, a tub (3)
wherein the drum (2) moves, an air trap (4) wherein the air is compressed as the amount
of water taken into the tub (3) increases, a vibration transmitter (5) wherein the
air is compressed depending on the vibration of the tub (3), a pressure sensor (6)
which reads the pressure that is created by the air compressed in the air trap (4)
and in the vibration transmitter (5), and a control unit (7) which determines the
water level and the unbalanced load amount by interpreting the data it receives from
the pressure sensor (6), characterized in that the control unit (7) is adapted to initiate a spin-drying process in which it increases
the drum (2) speed (n) step by step and calculates the ratio di= Pi/ Pi-1 of the pressure value (Pi), transmitted from the vibration transmitter (5) to the pressure sensor (6) at each
speed (ni), to the pressure value (Pi-1) transmitted at the previous speed (ni-1), and which compares the calculated ratio (di) with a threshold ratio (dtr) that is saved to its memory by the manufacturer, and that said control unit (7)
is further adapted to stop the spin-drying process if the calculated ratio (di) is equal to, or greater than the threshold ratio (dtr), by deciding that the amount of displacement (Δxr) the tub (3) will perform when the resonance is reached, is equal to, or greater
than the maximum amount of displacement (Δxtr) that is determined by the manufacturer and that can be allowed for the tub (3) to
perform, and else to continue the spin-drying process.
2. A washing machine (1) as in Claim 1 , characterized by the control unit (7), in the memory of which a single threshold ratio (dtr) is saved for all speeds (ni-1,ni,...) whereat a comparison is performed between the ratio (di) and the threshold ratio (dtr).
3. A washing machine (1) as in Claim 1, characterized by the control unit (7), in the memory of which a different threshold ratio (dtri) is saved for each speed (ni) whereat a comparison is performed between the ratio (di) and the threshold ratio (dtr).
4. A washing machine (1) as in any one of the above Claims, characterized by the control unit (7) which, at the first speed (n1) whereat a measurement is performed, compares the amount of displacement (Δx) that
corresponds to the first pressure value (P1) transmitted from the vibration transmitter (5) to the pressure sensor (6) with the
maximum amount of displacement (Δxtr) that is saved in the control unit (7) memory and that can be allowed for the tub
(3) to perform.
1. Waschmaschine (1), umfassend eine Trommel (2), in die Wäsche gegeben wird, einen Waschbehälter (3), in dem sich
die Trommel (2) bewegt, eine Luftfalle (4), in der mit zunehmender Menge des in den
Waschbehälters (3) aufgenommenen Wassers die Luft verdichtet wird, einen Vibrationsüberträger
(5), in dem die Luft abhängig von der Vibration des Waschbehälters (3) verdichtet
wird, einen Drucksensor (6), der den Druck ausliest, der von der in der Luftfalle
(4) und im Vibrationsüberträger (5) verdichteten Luft erzeugt wird, und eine Steuereinheit
(7), die den Wasserpegel und die Menge unausgeglichener Beladung bestimmt, indem sie
die Daten interpretiert, die sie vom Drucksensor (6) empfängt, und dadurch gekennzeichnet, dass die Steuereinheit (7) dazu ausgebildet ist, einen Schleudertrocknungsvorgang einzuleiten,
wobei sie die Drehzahl (n) der Trommel (2) Schritt für Schritt erhöht und das Verhältnis
di=Pi/ Pi-1 des Druckwertes (Pi), der bei einer jeweiligen Drehzahl (ni) von dem Vibrationsüberträger (5) an den Drucksensor (6) übertragen wird, zu dem
Druckwert (Pi-1) berechnet, der bei der vorherigen Drehzahl (ni-1) übertragen wurde, und die das berechnete Verhältnis (di) mit einem Schwellenverhältnis (dtr) vergleicht, das vom Hersteller in ihrem Speicher gespeichert wurde, wobei die Steuereinheit
(7) ferner dazu ausgebildet ist, den Schleudertrocknungsvorgang anzuhalten, wenn das
berechnete Verhältnis (di) gleich oder größer als das Schwellenverhältnis (dtr) ist, indem sie feststellt, dass die Menge der Verdrängung (Δxr), die der Waschbehälter (3) ausführt, wenn die Resonanz erreicht wird, gleich oder
größer als die maximale Verdrängungsmenge (Δxtr) ist, die vom Hersteller festgelegt wird und die für einen Betrieb des Waschbehälters
(3) zugelassen werden kann, und den Schleudertrocknungsvorgang anderenfalls fortzusetzen.
2. Waschmaschine (1) nach Anspruch 1, dadurch gekennzeichnet, dass im Speicher der Steuereinheit (7) ein einzelnes Schwellenverhältnis (dtr) für die alle Drehzahlen (ni-1,ni,...) gespeichert ist, wobei ein Vergleich zwischen dem Verhältnis (di) und dem Schwellenverhältnis (dtr) durchgeführt wird.
3. Waschmaschine (1) nach Anspruch 1, dadurch gekennzeichnet, dass im Speicher der Steuereinheit (7) ein jeweils anderes Schwellenverhältnis (dtri) für die jeweiligen Drehzahlen (ni) gespeichert ist, wobei ein Vergleich zwischen dem Verhältnis (di) und dem Schwellenverhältnis (dtr) durchgeführt wird.
4. Waschmaschine (1) nach einem der vorangehenden Ansprüche, dadurch gekennzeichnet, dass die Steuereinheit (7) bei der ersten Drehzahl (ni), bei der eine Messung durchgeführt wird, die Menge der Verdrängung (Δx), die dem
ersten Druckwert (P1) entspricht, der von dem Vibrationsüberträger (5) an den Drucksensor (6) übertragen
wird, mit der maximalen Verdrängungsmenge (Δxtr) vergleicht, die im Speicher der Steuereinheit (7) gespeichert ist und die für einen
Betrieb des Waschbehälters (3) zugelassen werden kann.
1. Une machine à laver (1) comprenant un tambour (2) où le linge est placé, une cuve (3) où le tambour (2) se déplace,
un piège à air (4) où l'air est comprimé en tant que la quantité d'eau prise dans
la cuve (3) augmente, un transmetteur de vibrations (5) où l'air est comprimé selon
la vibration de la cuve (3), un capteur de pression (6) qui détecte la pression générée
par l'air comprimé dans le piège à air (4) et dans le transmetteur de vibrations (5),
et une unité de commande (7) qui détermine le niveau d'eau et la quantité de la charge
déséquilibrée en évaluant les données reçues du capteur de pression (6), caractérisée en ce que l'unité de commande (7) est adaptée à commencer un processus d'essorage dans lequel
elle augmente la vitesse (n) du tambour (2) pas à pas et calcule le rapport di=Pi/ Pi-1 de la valeur de pression (Pi), transmise par le transmetteur de vibrations (5) au capteur de pression (6) à chaque
vitesse (ni), à la valeur de pression (Pi-1) transmise à la vitesse précédente (ni-1), en comparant le rapport calculé (di) avec un rapport de seuil (dtr) qui est enregistré dans sa mémoire par le fabricant, et que ladite unité de commande
(7) est en outre adaptée à arrêter le processus d'essorage si le rapport calculé (di) est égal au ou supérieur au rapport de seuil (dtr) en décidant que la quantité de déplacement (Δxr), que la cuve (3) se produira lorsque la résonance est atteinte, est égale à ou supérieure
à la quantité maximale de déplacement (Δxtr) déterminée par le fabricant et que la cuve (3) peut faire, et adaptée à continuer
le processus d'essorage.
2. Une machine à laver (1) selon la Revendication 1, caractérisée par l'unité de commande (7), dans la mémoire de laquelle un seul rapport de seuil (dtr) est enregistré pour toutes les vitesses (ni-1,ni,...), où une comparaison est effectuée entre le rapport (di) et le rapport de seuil (dtr).
3. Une machine à laver (1) selon la Revendication 1, caractérisée par l'unité de commande (7), dans la mémoire de laquelle un rapport de seuil différent
(dtri) est enregistré pour chaque vitesse (ni), où une comparaison est effectuée entre le rapport (di) et le rapport de seuil (dtr).
4. Une machine à laver (1) selon l'une quelconque des revendications précédentes, caractérisée par l'unité de commande (7) qui, à la première vitesse (n1) où une mesure est effectuée, compare la quantité de déplacement (Δx) qui correspond
à la première valeur de pression (P1) transmise du transmetteur de vibrations (5) au capteur de pression (6) avec la quantité
maximale de déplacement (Δxtr) qui est enregistrée dans la mémoire de l'unité de commande (7) et que la cuve (3)
est permise de réaliser.