CN214271363U - Centrifugal squeezing drum washing machine - Google Patents
Centrifugal squeezing drum washing machine Download PDFInfo
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- CN214271363U CN214271363U CN202021769794.5U CN202021769794U CN214271363U CN 214271363 U CN214271363 U CN 214271363U CN 202021769794 U CN202021769794 U CN 202021769794U CN 214271363 U CN214271363 U CN 214271363U
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Abstract
A drum washing machine comprises a water bucket and an elution cylinder, wherein the drum washing machine does not comprise a balancing weight, and the height of removing a lifting rib or enabling the lifting rib to protrude out of the inner wall of the elution cylinder is less than 2 CM; the drum washing machine further includes: the water tank comprises a water inlet tank fixed above the water containing barrel and a water drainage tank fixed below the water containing barrel, wherein the water drainage tank is used for containing waste water discharged when the water containing barrel is dehydrated. Therefore, the abrasion of clothes during washing is reduced, the clothes are easy to be uniformly distributed on the inner wall of the washing drum in the shaking-up link of the dewatering process, the generated eccentric value is reduced, and the cost of the whole machine is reduced.
Description
Technical Field
The invention relates to the technical field of electric appliances. And more particularly to a washing machine, including domestic and industrial washing machines.
Background
At present, common washing machines in the washing machine market are a drum washing machine, a pulsator washing machine and a stirring washing machine according to a washing mode; according to the application field: for domestic and industrial use; according to the design mode of the washing barrel: vertical cylinder (barrel) and horizontal cylinder (barrel), rotary drum washing machine and agitator washing machine are vertical cylinder (barrel), and drum washing machine is horizontal cylinder (barrel), and drum washing machine divide into again: a horizontal transverse cylinder and an inclined transverse cylinder; some pulsator washing machines have waterfall washing functions, the theory of waterfall washing is that an elution barrel is used for driving clothes to rotate, water in the clothes is thrown into an interlayer between a water containing barrel and the elution barrel by centrifugal force, the water is sprayed from an upper opening of the elution barrel after being gathered to a certain amount, the water penetrates the clothes again to enter the interlayer between the water containing barrel and the elution barrel under the operation of the centrifugal force, and the washing is carried out in a circulating way, the abrasion of the clothes by spraying washing is nearly zero, however, the washing efficiency is very low, the washing is not uniform, and the washing is penetrating washing and is not extrusion washing;
the basic configuration of the drum washing machine (including a horizontal drum and an inclined drum) comprises: the washing machine comprises a shell, a water containing barrel, an elution barrel, a damping device, a driving device, an electric control device, a washing powder box, a water supply device, a drainage device, a lifting rib (or lifting rib), a balancing weight, a clothes feeding opening and a sealing door; the method comprises the following steps: heating device, illumination, drying device, disinfection, clean elution section of thick bamboo etc. functional configuration. The drum washing machine automatically controls the washing and spin-drying processes: the clothes to be washed are put into the elution barrel from the putting-in opening, the sealing door is closed, the washing powder (or the washing liquid) and the softener are put into the washing powder box, the set automatic program is started, the electric door is locked (the alarm and the stop are not locked), the drainage pump is started to drain accumulated water in the pipe (the drainage valve is not started by adopting lower drainage), the clothes are automatically weighed, the set automatic water supply liquid level value is automatically selected according to the weighing result after the weighing is finished, the water inlet valve is opened, water firstly enters the washing powder box and is fused into the water containing barrel, the wet clothes enter the elution barrel through the barrel wall holes of the elution barrel, the water inlet valve is closed when the preset liquid level is reached, the lifting ribs arranged in the elution barrel and the barrel are arranged according to the set rotating speed, the centrifugal force F generated by the rotating speed is less than the weight M of the clothes (the lifting ribs are fixed in the elution barrel and are generally arranged by 3), the clothes are driven to be naturally dropped from the lower position to the higher position, then the clothes are driven from the lower part to the higher part again, then the clothes fall down naturally, the washing is repeated, after the washing procedure is finished, the washing drum stops rotating, the drainage pump (or the electromagnetic valve) works, the water in the water containing drum is drained, the centrifugal dehydration procedure is carried out, after the dehydration is finished, the first rinsing, the dehydration, the second rinsing and the dehydration (spin-drying) are carried out; the rinsing process is similar to the washing process, and some washing machines have a rinsing function, so that third rinsing, fourth rinsing and even more rinsing can be realized; most drum washing machines have the functions of fault detection, alarm, defoaming and automatic heating according to set temperature. The prior drum washing machine adopts the method that water in a water bucket is drained firstly when the water is dewatered in washing and rinsing procedures, then the washing drum rotates at a low speed to make the clothes shake up and accelerate to a certain speed, the speed generates centrifugal force F > weight M of the clothes (the centrifugal force F is the angular speed W weight M), the clothes are distributed on the inner wall of the elution barrel as uniformly as possible, whether the eccentricity value of the elution barrel is in the design range is checked through the current change condition of the motor, if the eccentricity value is larger than the set eccentricity threshold value, the elution cylinder is decelerated to a certain speed (the generated fraction F is less than M), is accelerated to a certain speed (the generated fraction F is more than M) after being continuously shaken for a certain time, whether the eccentricity value is within the design range or not is checked, if the eccentricity value is larger than the set eccentricity threshold value, repeating the shaking dispersion until the eccentricity value is smaller than the set threshold value, and accelerating the elution cylinder to a preset speed to rotate so as to separate water from clothes; the eccentric threshold values set in the dehydration programs of different manufacturers are different, the smaller the eccentric threshold value is, the smaller the generated jitter and noise are relatively small, but the smaller the eccentric threshold value is, the longer the jitter time is possibly caused, and even the dehydration can not be realized, and on the contrary, the larger the eccentric threshold value is, the shorter the jitter time is, and the larger the jitter and noise are. In addition to the eccentricity generated by the clothes in the washing and dewatering cylinder is controlled in the process of procedure to reduce dewatering shaking and noise, a heavy balancing weight is added outside the water containing cylinder, the balancing weight is generally poured into a preset block by adopting cement or cast iron, shaking of the water containing cylinder during dewatering of the washing and dewatering cylinder is reduced by utilizing the principle of inertia of the balancing weight, the heavier the balancing weight is, the smaller shaking and noise generated relatively is, but the transportation is inconvenient, and conversely, the lighter the balancing weight is, the bigger shaking and noise are, but the lighter the weight of the machine body is, and the transportation is easy. The washing procedure comprises: washing-dewatering-first rinsing-dewatering-second rinsing-dewatering.
The technical problem is as follows: the abrasion of the drum washing machine to clothes is relatively low compared with that of a stirring washing machine and a pulsator washing machine, the abrasion rate is 10%, and the abrasion is still high; the washing time is very long, several hours are needed to achieve the washing of 1.03, and the washing efficiency is low; the shaking and noise are still large during dehydration (spin-drying); the whole machine is heavy, which causes inconvenient transportation.
Disclosure of Invention
In the basic configuration of the existing drum washing machine (including a horizontal drum and an inclined drum), lifting ribs (or lifting ribs) are removed or the lifting ribs protrude out of the inner wall of an elution drum, and the height of the lifting ribs is less than 2CM, so that the selection can be configured as required. The washing machine has the effects of reducing the abrasion of clothes during washing, facilitating the uniform distribution of the clothes on the inner wall of the washing drum in the shaking and scattering link of the dehydration process, reducing the generated eccentricity value and reducing the cost of the whole machine.
The automatic washing process comprises the following steps: washing-dewatering-rinsing 1-dewatering-rinsing 2-dewatering. During the washing or rinsing process, after the clothes are wetted, the washing and squeezing drum rotates at a low speed (the speed of the washing and squeezing drum rotates at a centrifugal force F < the weight M of the clothes) to realize the beating and washing for a period of time, then accelerates to a certain speed (the speed of the washing and squeezing drum rotates at a centrifugal force F < the weight M of the clothes) to realize the squeezing and dewatering for a period of time, decelerates to the low speed (the speed of the washing and squeezing drum rotates at a centrifugal force F < the weight M of the clothes) to realize the water absorption and beating and washing for a period of time, accelerates to a certain speed (the speed of the washing and squeezing drum rotates at a centrifugal force F > the weight M of the clothes) to realize the squeezing and dewatering for a period of time, and then reduces to the low speed to realize the beating and squeezing and washing in such a cycle; the effect is as follows: reduce the abrasion to the clothes during washing and improve the washing efficiency (washing ratio) of the clothes.
After washing or rinsing, the washing and rinsing drum is accelerated to a certain speed (the speed of the washing and rinsing drum generates centrifugal force F to the clothes and the weight M of the clothes) and rotated for a period of time, whether the eccentricity value of the washing and rinsing drum is smaller than a set eccentricity threshold value is checked, if the eccentricity value of the washing and rinsing drum is larger than the threshold value, the washing and rinsing drum is decelerated to a certain speed (the speed of the washing and rinsing drum generates centrifugal force F to the clothes and the weight M of the clothes) and rotated for a period of time to shake off the clothes, and then accelerated to a certain speed (the speed of the washing and rinsing drum generates centrifugal force F to the clothes and the weight M of the clothes) and rotated for a period of time, whether the eccentricity value of the washing and rinsing drum is smaller than the set eccentricity threshold value is checked, if the eccentricity value of the washing and rinsing drum is larger than the preset eccentricity threshold value, the water in the washing and rinsing drum is drained, and accelerated to enter high-speed dewatering (spin-drying). The effect is as follows: the shaking and noise of the washing machine are reduced, and the dewatering time is reduced.
The balancing weight is replaced by a water inlet tank and a water drainage tank; the effect is as follows: the weight of the whole machine is reduced, the cost is reduced, and the transportation is facilitated.
Drawings
In order to more clearly illustrate the technical solutions in the embodiments of the present invention, the drawings needed for the embodiments or the prior art descriptions will be briefly described below, and it is obvious that the drawings in the following description are only some embodiments of the present invention, and it is obvious for those skilled in the art to obtain other drawings without creative efforts.
FIG. 1 is a schematic view of the front and rear planing surfaces of a drum washing machine
FIG. 2 is a schematic view of the structure of the left and right planes of the drum washing machine
FIG. 3 is a schematic view of the front and rear shaving surfaces of the centrifugal squeeze drum washing machine of the present invention
FIG. 4 is a schematic view of the left and right shaving surfaces of the centrifugal squeeze drum washing machine of the present invention
Detailed description of the invention
In order to make the objects, technical solutions and advantages of the present invention more apparent, the present invention is described in further detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the invention and are not intended to limit the invention.
It will be understood that when an element is referred to as being "secured to" or "disposed on" another element, it can be directly or indirectly secured to the other element. When an element is referred to as being "connected to" another element, it can be directly or indirectly connected to the other element. The terms "upper", "lower", "left", "right", and the like, indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, and are only for convenience of description, but do not indicate or imply that the referred devices or elements must have a specific orientation, be constructed and operated in a specific orientation, and thus, should not be construed as limiting the patent. The terms "first", "second" and "first" are used merely for descriptive purposes and are not to be construed as indicating or implying relative importance or implicitly indicating the number of technical features. The meaning of "plurality" is two or more unless specifically limited otherwise.
The drum washing machine (including horizontal drum and inclined drum) shown in fig. 1 and 2 comprises the following basic configurations: the housing includes: the cabinet 1 and the base 14, the tub 10, and the elution column include: elution cartridge 6 and drive shaft 19, the damping means comprising: damping extension spring 3 and damping support 13, drive arrangement includes: the washing machine comprises a motor 15, a small belt pulley 16, a belt 18, a large belt pulley 20, an electric control device 4 and a washing powder box 2, wherein a water supply device comprises an electromagnetic valve 23, a liquid level meter 22 and a plurality of connecting water pipes, and a water drainage device comprises a drainage pump (valve) 11, a drainage pipe 12, a lifting rib (or lifting rib) 8, a balancing weight 5, a sealing ring 7 and a door 9; the method comprises the following steps: a heating pipe and temperature sensor 17 and a drying device 21.
Referring to fig. 3 and 4, the centrifugal pressing drum washing machine of the present invention is mainly different from the drum washing machine: the drum washing machine is provided with a lifting rib (or lifting rib) 8 and a balancing weight 5; the centrifugal extrusion drum washing machine has no lifting rib (or lifting rib) 8, the water inlet tank 26 and the water discharge tank 27 replace the counterweight 5, and the water inlet tank liquid level sensor 24 and the water discharge tank electromagnetic valve 28 are added.
The elution column 6 in the specific example of the invention is directly 50CM, depending on the centrifugal force F-angular velocity W-weight M, angular velocity W-rotation angle R/2 pi-column diameter 2R; and F-M is the rotation speed of the elution cylinder of 60 x 2-120 revolutions per minute, 60 revolutions per minute is set as beating washing, and 390 revolutions per minute is set as centrifugal extrusion washing. The control program is arranged in the electric control device 4 in advance, and the motor 15 is controlled according to the set program to drive the elution barrel 6 to rotate at the speed of: stop (8 seconds) -60 revolutions/minute (forward rotation 6 seconds) -390 revolutions/minute (forward rotation 2 seconds) -stop (8 seconds) -60 revolutions/minute (reverse rotation 6 seconds) -390 revolutions/minute (reverse rotation 2 seconds) - - - - - - - - - - - - -so repeatedly complete the washing or rinsing.
When the set time of the washing and rinsing programs is up, the washing and rinsing are finished, the dewatering program is started: and (3) accelerating the rotation speed of the elution barrel to 60 revolutions per minute, keeping for 6 seconds, accelerating to 390 revolutions per minute, keeping for 2 seconds, carrying out balance check, repeating the previous control program if the eccentricity value is larger than the set eccentricity threshold value until the eccentricity value is smaller than the set eccentricity threshold value, opening the drain valve 28 to drain the water in the water barrel 10, accelerating to 800 revolutions per minute, keeping for 120 seconds, and stopping dewatering. Therefore, the shaking times can be effectively reduced, and the dehydration time is shortened.
The water inlet of the washing machine is directly connected with a tap water interface, the tap water interface is basically a tap with the length of 4 minutes, and the water inlet time is longer, a water inlet tank 26 is fixed on the water containing barrel 10, the inlet of a water inlet electromagnetic valve 23 is connected with a tap water pipe, the outlet of the water inlet electromagnetic valve is connected with a water inlet tank 26 hose, the water inlet tank 26 is connected with a washing powder box 2 hose through a water pump 25, and the washing powder box 2 is connected with the water containing barrel 10 hose; the liquid level sensor 24 detects the water level of the water inlet tank 26 and transmits a signal to the electric control device 4, the electric control device controls the on-off of the electromagnetic valve 23 according to the liquid level value of the liquid level sensor 24 to control the water quantity of the water inlet tank 26, water is stored in the water inlet tank 26 before washing and rinsing, when the washing and rinsing are performed, the electric control device 4 controls the large-flow water pump 25 to be on or off to feed water into the water containing barrel 10 according to the liquid level value of the water containing barrel 10 detected by the liquid level sensor 22, the water feeding time is shortened, the washing barrel 6 can ensure that the water inlet tank 26 is full when being dehydrated, the effect of a balancing weight is achieved, the water in the water inlet tank 26 can be emptied before carrying, the weight of the whole machine can be reduced, and the transportation is convenient.
Entering a dehydration procedure: the rotation speed of the elution cylinder is accelerated to 60 r/min and then kept for 6 seconds, and then accelerated to 390 r/min and kept for 2 seconds, the balance check is carried out, if the eccentricity value is larger than the set eccentricity threshold value, the previous control is repeated until the eccentricity value is smaller than the set eccentricity threshold value, the drain valve 28 is opened to drain the water in the water bucket 10 to the drain tank 27, the rotation speed is accelerated to 800 r/min and then kept for 120 seconds, the drain pump (valve) 11 is started after the dehydration is stopped, and the water in the drain tank 27 is drained to a sewer. The drain tank 27 is fixed below the water containing barrel 10, when the washing machine is used for dewatering, the weight of the waste water after the drain tank 27 is filled with washing water is increased, the drain tank 27 plays a role of a balancing weight to reduce shaking and noise of the washing machine, after washing is completed, all water in the drain tank 27 is drained, the weight is lightest, and transportation is convenient.
The above is only a preferred embodiment of the present invention, and is not intended to limit the present invention. Various modifications and alterations to this invention will become apparent to those skilled in the art. Any modification, equivalent replacement, or improvement made within the spirit and principle of the present invention should be included in the scope of the claims of the present invention.
Claims (3)
1. A drum washing machine comprising a water bucket and an elution bucket, characterized in that: the drum washing machine does not comprise a balancing weight, and a lifting rib is removed or the height of the lifting rib protruding out of the inner wall of the elution barrel is less than 2 CM; the drum washing machine further includes: the water tank comprises a water inlet tank fixed above the water containing barrel and a water drainage tank fixed below the water containing barrel, wherein the water drainage tank is used for containing waste water discharged when the water containing barrel is dehydrated.
2. A drum washing machine according to claim 1, characterized in that: further comprising: the water inlet electromagnetic valve is connected with a tap water pipe, the outlet of the water inlet electromagnetic valve is connected with the water inlet tank hose, the water inlet tank is connected with the laundry powder box hose through a water pump, and the laundry powder box is connected with the water containing barrel hose.
3. A drum washing machine according to claim 2, characterized in that: further comprising: the water inlet tank liquid level sensor detects the water level of the water inlet tank and transmits a signal to the electric control device, and the electric control device controls the on-off of the electromagnetic valve according to the liquid level value of the water inlet tank liquid level sensor to control the water quantity of the water inlet tank.
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CN114164605A (en) * | 2020-08-23 | 2022-03-11 | 龙港乐家创新科技(深圳)有限责任公司 | Centrifugal squeezing drum washing machine and control method thereof |
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CN114164605A (en) * | 2020-08-23 | 2022-03-11 | 龙港乐家创新科技(深圳)有限责任公司 | Centrifugal squeezing drum washing machine and control method thereof |
CN114164605B (en) * | 2020-08-23 | 2024-09-13 | 龙港乐家创新科技(深圳)有限责任公司 | Centrifugal extrusion drum washing machine and control method thereof |
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