CN109763292B - Pulsator washing machine - Google Patents

Pulsator washing machine Download PDF

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Publication number
CN109763292B
CN109763292B CN201711096292.3A CN201711096292A CN109763292B CN 109763292 B CN109763292 B CN 109763292B CN 201711096292 A CN201711096292 A CN 201711096292A CN 109763292 B CN109763292 B CN 109763292B
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barrel
small
water containing
dewatering
impeller
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CN109763292A (en
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陈文�
余德涛
徐堂新
张鑫磊
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Wuxi Little Swan Electric Co Ltd
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Wuxi Little Swan Electric Co Ltd
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Abstract

The invention provides a pulsator washing machine, which comprises: the large washing barrel assembly comprises a large water containing barrel, a large dewatering barrel and a large impeller, the large dewatering barrel is arranged in the large water containing barrel and can rotate relative to the large water containing barrel, and the large impeller is arranged at the bottom of the large dewatering barrel and can rotate relative to the large dewatering barrel; the driving motor is used for driving the large dehydration barrel and the large wave wheel to rotate; the small washing barrel assembly comprises a small water containing barrel and a small impeller, the small impeller is fixedly arranged at the bottom of the small water containing barrel, and the small water containing barrel is installed in the large dewatering barrel and is fixed with the large dewatering barrel. The impeller type washing machine provided by the scheme adopts a structure that a large washing barrel is sleeved with a small washing barrel, clothes can be classified and washed, so that the time spent on washing the clothes and the consumed electric energy can be reduced, the large washing barrel and the small washing barrel only need to be driven by one driving motor, the product structure is simple and ingenious, and the production cost is low.

Description

Pulsator washing machine
Technical Field
The invention relates to the field of washing machines, in particular to a pulsator washing machine.
Background
When the washing machine is used for washing clothes, the clothes with different colors are washed together, so that the light-colored clothes are easily dyed, and the conditions of cross infection and the like can be caused by washing the close-fitting clothes together with different types of clothes such as outer garments, bed sheets and the like, so that the user experience is influenced. However, most of the conventional washing machines only have one washing tub, and in order to separately wash different types of clothes, people often need to separate the clothes and wash the clothes for multiple times, which not only greatly prolongs the washing time, but also needs to consume more electric energy.
Disclosure of Invention
The present invention is directed to solving at least one of the problems of the prior art.
To this end, an object of the present invention is to provide a pulsator washing machine capable of washing laundry in a classified manner.
In order to achieve the above object, an embodiment of the present invention provides a pulsator washing machine, including: the large washing barrel assembly comprises a large water containing barrel, a large dewatering barrel and a large impeller, the large dewatering barrel is mounted in the large water containing barrel and can rotate relative to the large water containing barrel, and the large impeller is mounted at the bottom of the large dewatering barrel and can rotate relative to the large dewatering barrel; the driving motor is connected with the large dehydration barrel and the large impeller and is used for driving the large dehydration barrel and the large impeller to rotate; the small washing barrel assembly comprises a small water containing barrel and a small impeller, the small impeller is fixedly arranged at the bottom of the small water containing barrel, the small water containing barrel is installed in the large dewatering barrel and is fixed with the large dewatering barrel, so that the small water containing barrel and the small impeller can rotate along with the large dewatering barrel.
The impeller type washing machine provided by the scheme adopts a structure that a large washing barrel is sleeved with a small washing barrel, clothes can be classified and washed, so that the time spent on washing the clothes and the consumed electric energy can be reduced, wherein a large impeller and a large dewatering barrel in a large washing barrel assembly are driven by a driving motor, a small washing barrel assembly is driven by a large dewatering barrel, and the large washing barrel and the small washing barrel are driven by only one driving motor.
In the above technical solution, preferably, the small tub and the large dehydration tub are detachably connected.
When the user does not need to wash clothes in a classified manner, the small washing barrel assembly can be detached from the large dewatering barrel, so that the capacity of the large dewatering barrel is improved, the user can conveniently put the clothes into the large dewatering barrel or take the clothes out of the large dewatering barrel, and the use feeling of the user is improved.
In any of the above technical solutions, preferably, one of the small water bucket and the large dewatering bucket is provided with a hook, and the other one of the small water bucket and the large dewatering bucket is provided with a fastening position adapted to the hook, and the small water bucket and the large dewatering bucket are detachably connected by the cooperation of the hook and the fastening position.
In this scheme, little water-holding bucket and big dehydration bucket pass through the pothook and detain the position joint and realize detachably and be connected, and the assembly structure between little water-holding bucket of design and big dehydration bucket like this is simple, and the production and processing degree of difficulty is low, can reduce the manufacturing cost of product, and the dismouting easy operation of little water-holding bucket and big dehydration bucket, can promote user's use impression.
In any of the above technical solutions, preferably, the small washing tub assembly further includes: the small dewatering barrel is installed in the small water containing barrel, a through hole used for containing the small impeller is formed in the bottom of the small dewatering barrel, and the small water containing barrel can rotate relative to the small dewatering barrel.
In the scheme, the small washing barrel assembly further comprises a small dewatering barrel, the small dewatering barrel is installed in the small water containing barrel, the small dewatering barrel is static in the clothes washing process, the small dewatering barrel and the small impeller rotate relatively to improve the washing effect, and the small dewatering barrel rotates along with the small water containing barrel and the small impeller to spin-dry the clothes in the clothes drying process.
In any one of the above technical solutions, preferably, the pulsator washing machine further includes: the washing machine comprises a box body and a door cover, wherein the large washing barrel assembly is arranged in the box body, an opening is formed in the position, opposite to the large water containing barrel, of the top of the box body, and the door cover is arranged at the opening and can move relative to the opening so as to open or close the opening.
In any of the above technical solutions, preferably, a clamping rib is provided on a lower surface of the door, and the clamping rib can clamp and fix the small dewatering barrel, so that the small dewatering barrel can rotate relative to the small dewatering barrel.
The scheme is that the clamping convex ribs are arranged on the lower surface of the door cover, the small dewatering barrel is clamped by the clamping convex ribs after the small washing barrel assembly is installed in the large washing barrel assembly and the door cover is closed, and in the process of washing clothes by the small washing barrel, the small dewatering barrel is fixed by friction between the clamping convex ribs and the small dewatering barrel, so that relative rotation is formed between the small dewatering barrel and the small impeller, and the washing effect is improved.
In any of the above technical solutions, preferably, a roller is installed at the bottom of the small dewatering barrel, and the roller abuts against the small water barrel.
In the scheme, the roller is installed at the bottom of the small dehydration barrel, and the roller can greatly reduce the friction force between the bottom of the small dehydration barrel and the bottom of the small water barrel, so that the relative rotation between the small dehydration barrel and the small impeller in the washing process can be ensured under the combined action of the roller and the clamping convex rib.
In any of the above technical solutions, preferably, a locking mechanism is disposed between the small dewatering barrel and the small water barrel, the locking mechanism has a locked state and an unlocked state, in the unlocked state, the small water barrel can rotate relative to the small dewatering barrel, and in the locked state, the locking mechanism circumferentially limits the small dewatering barrel so that the small dewatering barrel can rotate along with the small water barrel.
In the scheme, the locking mechanism is arranged between the small dehydration barrel and the small water barrel and is in an unlocking state when clothes are washed so as to ensure that the small dehydration barrel and the small impeller can rotate relatively in the washing process and further improve the washing effect.
In any one of the above technical solutions, preferably, the locking mechanism includes a buoyancy rod and a limiting portion, the buoyancy rod is installed at the bottom of the small dewatering barrel, the buoyancy rod can be opposite under the action of buoyancy to move along the vertical direction of the small dewatering barrel, the limiting portion is arranged at the bottom of the small water containing barrel, the limiting portion is a limiting hole or a limiting lug, wherein the bottom end of the buoyancy rod is higher than the top end of the limiting portion in the unlocking state, the bottom end of the buoyancy rod is lower than the top end of the limiting portion, so that the side portion of the buoyancy rod is abutted against the limiting portion, and the small dewatering barrel can rotate along with the small water containing barrel.
When washing clothing, the water level in the little water-holding bucket is higher, buoyancy pole on the little dehydration bucket floats under the effect of buoyancy, the bottom that makes buoyancy pole is higher than the top of spacing portion on the little water-holding bucket, buoyancy pole and spacing looks contactless mutually, consequently little dehydration bucket can not rotate along with little water-holding bucket, when the clothing of spin-drying, little water-holding bucket discharges inside water, the buoyancy pole falls because of the influence of gravity, the bottom that makes buoyancy pole is less than the top of spacing portion, along with little water-holding bucket rotates, spacing portion can contradict with the lateral part of buoyancy pole, thereby promote little dehydration bucket and rotate.
In any of the above technical solutions, preferably, the bottom end of the small water containing barrel is connected with a flow guide pipe, one end of the flow guide pipe is communicated with the inside of the small water containing barrel, and the other end of the flow guide pipe extends into the large dehydration barrel.
In this scheme, the bottom of little steel ladle is connected with the honeycomb duct, the honeycomb duct diameter is less, when categorised washing clothing, all need be preserved more water yield in big steel ladle and the little steel ladle, under this state, the honeycomb duct inserts the aquatic in the big steel ladle, because the honeycomb duct diameter is less, can cause capillary phenomenon, make the water in the big steel ladle rise along the honeycomb duct, form the water column in the honeycomb duct, to prevent that the water in the little steel ladle is discharged by the honeycomb duct, even liquid level position is lower in the big steel ladle like this, also can guarantee to have enough water yield in the little steel ladle. When the clothes are dried, the large washing barrel discharges the water inside, so that the bottom of the flow guide pipe is suspended, and the water in the small water containing barrel flows into the large water containing barrel from the water of the flow guide pipe and is discharged from the large water containing barrel.
Additional aspects and advantages of the invention will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of the invention.
Drawings
The above and/or additional aspects and advantages of the present invention will become apparent and readily appreciated from the following description of the embodiments, taken in conjunction with the accompanying drawings of which:
fig. 1 is a schematic cross-sectional structural view of a pulsator washing machine according to an embodiment of the present invention;
FIG. 2 is a schematic structural view of the assembled large dehydration tub and large pulsator in FIG. 1;
fig. 3 is a schematic structural view of the assembled small tub and small pulsator of fig. 1;
fig. 4 is a schematic sectional structure view of the assembled small tub and small pulsator of fig. 3;
FIG. 5 is a schematic view of the structure of the door shown in FIG. 1;
FIG. 6 is a schematic structural view of the small dehydration barrel shown in FIG. 1;
FIG. 7 is a schematic sectional view showing the structure of the small dehydration barrel shown in FIG. 6;
fig. 8 is a schematic structural diagram of a locking mechanism provided by an embodiment of the present invention.
Wherein, the correspondence between the reference numbers and the component names in fig. 1 to 8 is:
1 box body, 2 door covers, 21 clamping convex ribs, 3 large water holding barrels, 4 large dehydration barrels, 41 ribs, 411 arc sections, 412 connecting sections, 5 large impellers, 6 small water holding barrels, 61 guide pipes, 62 clamping hooks, 63 limiting holes, 7 small dehydration barrels, 71 buoyancy rods, 72 rollers and 8 small impellers.
Detailed Description
In order that the above objects, features and advantages of the present invention can be more clearly understood, a more particular description of the invention will be rendered by reference to the appended drawings. It should be noted that the embodiments and features of the embodiments of the present application may be combined with each other without conflict.
In the following description, numerous specific details are set forth in order to provide a thorough understanding of the present invention, however, the present invention may be practiced otherwise than as specifically described herein, and thus the scope of the present invention is not limited by the specific embodiments disclosed below.
An embodiment of the present invention provides a pulsator washing machine, as shown in fig. 1 to 7, including: the washing machine comprises a large washing barrel assembly, a small washing barrel assembly, a driving motor (not shown in the figure), a box body 1 and a door cover 2, wherein an opening is formed in the top of the box body 1, and the door cover 2 is installed at the opening of the box body 1 and can move relative to the opening so as to open or close the opening of the box body 1. Big washtub subassembly includes big water-holding bucket 3, big dehydration bucket 4 and big impeller 5, big water-holding bucket 3 is installed in box 1, big water-holding bucket 3 top is opened and is relative with the opening of box 1, and big water-holding bucket 3 is linked together through the drain valve with the drainage channel, the top and the bottom of big dehydration bucket 4 are opened, big dehydration bucket 4 is installed in big water-holding bucket 3 and can be rotated by big water-holding bucket 3 relatively, big impeller 5 is installed in the bottom opening position of big dehydration bucket 4, and can rotate by big dehydration bucket 4 relatively, and be equipped with evenly distributed's wash port on big dehydration bucket 4 and the big impeller 5. The driving motor is connected with the large dewatering barrel 4 and the large impeller 5 and is used for driving the large dewatering barrel 4 and the large impeller 5 to rotate. The small washing barrel assembly comprises a small water containing barrel 6, a small dewatering barrel 7 and a small impeller 8, the top of the large water containing barrel 3 is opened, the small impeller 8 is fixedly arranged at the bottom of the small water containing barrel 6, the small water containing barrel 6 is installed in the large dewatering barrel 4 and is fixed with the large dewatering barrel 4, so that the small water containing barrel 6 and the small impeller 8 can rotate along with the large dewatering barrel 4, the small dewatering barrel 7 is installed in the small water containing barrel 6 and can rotate relative to the small water containing barrel 6, the top of the small dewatering barrel 7 is opened, the bottom is provided with a through hole for accommodating the small impeller 8, and the small dewatering barrel 7 and the small impeller 8 are provided with drain holes which are uniformly distributed.
The impeller type washing machine provided by the scheme adopts a structure that a large washing barrel is sleeved with a small washing barrel, clothes can be classified and washed, so that the time spent on washing the clothes and the consumed electric energy can be reduced, wherein a large impeller 5 and a large dewatering barrel 4 in a large washing barrel assembly are driven by a driving motor, the small washing barrel assembly is driven by the large dewatering barrel 4, and the large washing barrel part and the small washing barrel part only need to be driven by one driving motor, so that the product is simple and ingenious in structure, and low in production cost.
Wherein, little water bucket 6 can be connected with big dehydration bucket 4 with dismantling, when the user does not need categorised washing clothing, can pull down little washing bucket subassembly from big dehydration bucket 4 in to promote big dehydration bucket 4's capacity, and convenience of customers puts in or takes out the clothing from big dehydration bucket 4 in to big dehydration bucket 4, with the use impression that promotes the user.
Specifically, as shown in fig. 3 and 4, two hooks 62 protruding outward are disposed at the top of the small tub 6, and the two hooks 62 are opposite in position, as shown in fig. 2, two ribs 41 are disposed at the top end of the inner wall of the large dehydration tub 4 to form a fastening position adapted to the hooks 62, each rib 41 is bent to form an arc-shaped section 411 adapted to the hooks 62 and a connection section 412 extending from two ends of the arc-shaped section 411 to the inner wall of the large dehydration tub 4, and the connection section 412 of the rib 41 is fixedly connected to the large dehydration tub 4. When little water-holding bucket 6 is installed in big dehydration bucket 4, two pothooks on little water-holding bucket 6 are hung respectively on the segmental arc 411 of two ribs 41 on big dehydration bucket 4, and the both ends of pothook are contradicted with the linkage segment 412 at segmental arc 411 both ends, thereby it is fixed with big dehydration bucket 4 with little water-holding bucket 6, the assembly structure between little water-holding bucket 6 of design and big dehydration bucket 4 like this is simple, the production and processing degree of difficulty is low, can reduce the manufacturing cost of product, and the dismouting easy operation of little water-holding bucket 6 and big dehydration bucket 4, can promote user's use impression.
As shown in fig. 1 and 5, two clamping ribs 21 are oppositely disposed on the lower surface of the door 2, as shown in fig. 8, a locking mechanism is disposed between the small dewatering tub 7 and the small water tub 6, the locking mechanism includes a buoyancy rod 71 and a limiting hole 63, the buoyancy rod 71 is mounted at the bottom of the small dewatering tub 7, the buoyancy rod 71 can move in the up-and-down direction relative to the small dewatering tub 7 under the action of buoyancy, and the limiting hole 63 is disposed at the bottom of the small water tub 6. When the impeller washing machine is used for cleaning clothes in a classified mode, the small washing barrel assembly is installed in the large washing barrel assembly, after the door cover 2 is closed, the top end of the small dewatering barrel 7 is inserted into the position between the two clamping convex ribs 21, so that the two clamping convex ribs 21 clamp the small dewatering barrel 7, in the clothes washing process, more water is reserved in the large water containing barrel 3 and the small water containing barrel 6, the driving motor drives the large impeller 5 and the large dewatering barrel 4 to rotate forwards and reversely, and the large impeller 5 and the large dewatering barrel 4 are guaranteed to rotate in opposite directions all the time, so that water flow formed in the large dewatering barrel 4 washes the clothes; because the small water barrel 6 is fixed with the large dewatering barrel 4, and the small impeller 8 is fixed with the small water barrel 6, the small water barrel 6 and the small impeller 8 can rotate along with the large dewatering barrel 4, the water level in the small dewatering barrel 7 is higher, the buoyancy rod 71 on the small dewatering barrel 7 floats under the action of buoyancy, the bottom end of the buoyancy rod 71 is higher than the top end of the limiting hole 63 on the small water barrel 6, the buoyancy rod 71 is not contacted with the limiting hole 63, the locking mechanism keeps an unlocking state, the small dewatering barrel 7 is fixed by the friction force between the small dewatering barrel 7 and the clamping convex rib 21, the small dewatering barrel 7 does not rotate along with the small water barrel 6, and therefore water flow in the small dewatering barrel 7 is formed to wash clothes. After washing, the drain valve connected with the large water containing barrel 3 is opened to drain the water in the large water containing barrel 3, and along with the reduction of the water level in the large water containing barrel 3, the water in the small water containing barrel 6 flows into the large water containing barrel 3 from the water outlet at the bottom of the small water containing barrel 6 and is drained from the large water containing barrel 3. In the process of spin-drying clothes, the large impeller 5 and the large dewatering barrel 4 are fixed, the large impeller 5 and the large dewatering barrel 4 are driven by the driving motor to rotate at a high speed together, so that the clothes in the large dewatering barrel 4 are driven to rotate at a high speed, water in the clothes is thrown out, and the thrown water enters the large water containing barrel 3 from the large dewatering barrel 4 and the water discharge holes on the large impeller 5 and then is discharged from the large water containing barrel 3; in the small washing barrel assembly, the small water barrel 6 and the small impeller 8 rotate at a high speed along with the large dewatering barrel 4, because the water in the small dewatering barrel 7 is drained, the buoyancy rod 71 on the small dewatering barrel 7 falls down due to the action of gravity, and rotates along with the small water barrel 6, when the limiting hole 63 on the small water barrel 6 reaches the position opposite to the buoyancy rod 71, the bottom end of the buoyancy rod 71 is inserted into the limiting hole 63, so that the locking mechanism keeps a locked state, the hole wall of the limiting hole 63 is abutted against the side part of the buoyancy rod 71, the acting force of the small water barrel 6 on the small dewatering barrel 7 is larger than the maximum static friction force between the small dewatering barrel 7 and the clamping convex rib 21, the small dewatering barrel 7 rotates at a high speed along with the small water barrel 6, the clothes in the small dewatering barrel 7 are driven to rotate at a high speed, the water in the clothes is thrown out, and the thrown water enters the small water barrel 6 through the drainage holes on the small dewatering barrel 7 and the, then flows into the large water barrel 3 from the water outlet at the bottom of the small water barrel 6, and finally is discharged from the large water barrel 3.
Wherein preferably, as shown in fig. 7, the roller 72 is installed at the bottom of the small dehydration tub 7, and the roller 72 is abutted against the small tub 6.
In the scheme, the roller 72 is arranged at the bottom of the small dewatering barrel 7, and the roller 72 can greatly reduce the friction force between the bottom of the small dewatering barrel 7 and the bottom of the small water barrel 6, so that the relative rotation between the small dewatering barrel 7 and the small impeller 8 in the washing process can be ensured under the combined action of the roller 72 and the clamping convex rib 21.
In the above embodiment, as shown in fig. 1, 3 and 4, the water outlet of the bottom end of the small tub 6 is connected with the flow guide pipe 61, one end of the flow guide pipe 61 is communicated with the inside of the small tub 6, and the other end thereof extends into the large spin-drying tub 4.
In this scheme, 6 delivery ports of little ladle are connected with honeycomb duct 61, honeycomb duct 61 diameter is less, when categorised washing clothing, all need to keep a lot of water yield in big ladle 3 and the little ladle 6, under this state, honeycomb duct 61 inserts the aquatic in the big ladle 3, because honeycomb duct 61 diameter is less, can cause capillary phenomenon, make the water in the big ladle 3 rise along honeycomb duct 61, form the water column in honeycomb duct 61, in order to prevent that the water in the little ladle 6 from being discharged by honeycomb duct 61, even the liquid level position is lower in the big ladle 3 like this, also can guarantee to have enough water yield in the little ladle 6. When the clothes are dried, the large washing tub discharges the water inside, so that the bottom of the guide pipe 61 is suspended, and the water in the small water containing tub 6 flows into the large water containing tub 3 through the guide pipe 61 and is discharged from the large water containing tub 3.
Preferably, a balance ring is installed at the top of the large dehydration barrel to ensure balance and stability in the dehydration process, and a filter plate for collecting fine hair of the flock and a waterfall spraying plate for reinforcing waterfall water flow are installed in the large dehydration barrel.
In the description of the invention, the description of the terms "one embodiment," "some embodiments," "specific embodiments," etc., means that a particular feature, structure, material, or characteristic described in connection with the embodiment or example is included in at least one embodiment or example of the invention. In this specification, the schematic representations of the terms used above do not necessarily refer to the same embodiment or example. Furthermore, the particular features, structures, materials, or characteristics described may be combined in any suitable manner in any one or more embodiments or examples.
In the description of the present invention, the terms "connect", "mount", "fix", etc. should be interpreted broadly, for example, the term "connect" may be a fixed connection, a detachable connection, or an integral connection; may be directly connected or indirectly connected through an intermediate. The specific meanings of the above terms in the present invention can be understood by those skilled in the art according to specific situations.
The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention, and various modifications and changes may be made by 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 protection scope of the present invention.

Claims (9)

1. A pulsator washing machine, comprising:
the large washing barrel assembly comprises a large water containing barrel (3), a large dewatering barrel (4) and a large impeller (5), the large dewatering barrel (4) is installed in the large water containing barrel (3) and can rotate relative to the large water containing barrel (3), and the large impeller (5) is installed at the bottom of the large dewatering barrel (4) and can rotate relative to the large dewatering barrel (4);
the driving motor is connected with the large dehydration barrel (4) and the large impeller (5) and is used for driving the large dehydration barrel (4) and the large impeller (5) to rotate;
the small washing barrel assembly comprises a small water containing barrel (6) and a small impeller (8), the small impeller (8) is fixedly arranged at the bottom of the small water containing barrel (6), the small water containing barrel (6) is installed in the large dewatering barrel (4) and is fixed with the large dewatering barrel (4), so that the small water containing barrel (6) and the small impeller (8) can rotate along with the large dewatering barrel (4);
the small washing tub assembly further includes: a small dehydration barrel (7);
a locking mechanism is arranged between the small dehydration barrel (7) and the small water barrel (6), and the locking mechanism has a locking state and an unlocking state;
the locking mechanism comprises a buoyancy rod (71) and a limiting part, the buoyancy rod (71) is installed at the bottom of the small dewatering barrel (7), the buoyancy rod (71) can move up and down relative to the small dewatering barrel (7) under the action of buoyancy, the limiting part is arranged at the bottom of the small dewatering barrel (6), the limiting part is a limiting hole (63) or a limiting lug,
wherein, under the unblock state, the bottom of buoyancy pole (71) is higher than the top of spacing portion under the lock state, the bottom of buoyancy pole (71) is less than the top of spacing portion, makes the lateral part of buoyancy pole (71) with spacing portion contradicts, so that little spin-drying tub (7) can be followed little water holding tub (6) rotate.
2. The pulsator washing machine according to claim 1,
the small water containing barrel (6) is detachably connected with the large dewatering barrel (4).
3. The pulsator washing machine according to claim 2,
one of the small water containing barrel (6) and the large dewatering barrel (4) is provided with a clamping hook (62), the other one of the small water containing barrel and the large dewatering barrel is provided with a buckling position matched with the clamping hook (62), and the small water containing barrel (6) and the large dewatering barrel (4) are detachably connected through the matching of the clamping hook (62) and the buckling position.
4. The pulsator washing machine according to any one of claims 1 to 3,
the small dehydration barrel (7) is installed in the small dehydration barrel (6), a through hole used for containing the small impeller (8) is formed in the bottom of the small dehydration barrel (7), and the small dehydration barrel (6) can rotate relative to the small dehydration barrel (7).
5. The pulsator washing machine according to claim 4,
the pulsator washing machine further comprises: the washing machine comprises a box body (1) and a door cover (2), wherein the large washing barrel assembly is installed in the box body (1), an opening is formed in the position, opposite to the large water containing barrel (3), of the top of the box body (1), and the door cover (2) is installed at the opening and can move relative to the opening to open or close the opening.
6. The pulsator washing machine according to claim 5,
the lower surface of the door cover (2) is provided with a clamping convex rib (21), the clamping convex rib (21) can clamp and fix the small dehydration barrel (7), so that the small dehydration barrel (6) can rotate relative to the small dehydration barrel (7).
7. The pulsator washing machine according to claim 6,
the bottom of the small dehydration barrel (7) is provided with a roller (72), and the roller (72) is abutted against the small water barrel (6).
8. The pulsator washing machine according to claim 4,
under the unlocking state, the small water containing barrel (6) can rotate relative to the small dewatering barrel (7), and under the locking state, the locking mechanism is used for limiting the small dewatering barrel (7) in the circumferential direction, so that the small dewatering barrel (7) can rotate along with the small water containing barrel (6).
9. The pulsator washing machine as claimed in claim 4,
the bottom end of the small water containing barrel (6) is connected with a guide pipe (61), one end of the guide pipe (61) is communicated with the inside of the small water containing barrel (6), and the other end of the guide pipe extends into the large dewatering barrel (4).
CN201711096292.3A 2017-11-09 2017-11-09 Pulsator washing machine Active CN109763292B (en)

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Application Number Priority Date Filing Date Title
CN201711096292.3A CN109763292B (en) 2017-11-09 2017-11-09 Pulsator washing machine

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CN109763292B true CN109763292B (en) 2021-03-16

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CN114164603B (en) * 2021-12-17 2023-03-28 珠海格力电器股份有限公司 Washing machine and control method thereof

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