Washing module and clothing processing equipment
By setting up a diversion structure in the washing module and using centrifugal water flow to guide the washing water back into the washing drum, a turbulent water flow is formed, which solves the problem of poor cleaning effect of existing clothing processing equipment when dealing with difficult-to-remove stains and achieves a deep cleaning effect.
Patent Information
- Application Number
- CN202410367020.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-03-28
- Publication Date
- 2025-09-26
- Estimated Expiration
- 2044-03-28
AI Technical Summary
Existing clothing treatment equipment has poor cleaning effect and low water flow utilization when dealing with difficult stains, and cannot achieve deep cleaning.
A diversion structure is set in the washing module, and the centrifugal water flow is used to drive the water flow in the water flow channel through the rotation of the washing drum. The washing water is guided back into the washing drum through the diversion structure to form an agitated water flow to improve the cleaning effect.
Through the design of the diversion structure, deep cleaning of the laundry is achieved and the cleaning effect is improved.
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Figure CN118110009B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of clothing processing equipment, and in particular to a washing module and clothing processing equipment. Background Art
[0002] Currently available clothes processing equipment removes stains on the laundry by utilizing the friction and flushing effect of water flow and the laundry, which can basically meet the washing effect of the laundry.
[0003] However, the utilization rate of water flow is low, and the washing water cannot be used to deeply clean the laundry. When the stains on the laundry are difficult to handle, the conventional method of washing the laundry by friction and flushing of water flow and laundry cannot completely remove the difficult stains. Summary of the Invention
[0004] In order to overcome the problem that the clothing processing equipment in the related art has poor cleaning effect on the laundry with stains that are difficult to handle, the embodiments of the present invention propose a washing module and a clothing processing equipment, which provides a diversion structure in the washing module. When the centrifugal water flow drives the water in the water flow channel to flow upward through the diversion structure through the rotation of the washing drum, the washing water can be returned to the washing drum under the diversion action of the diversion structure, that is, the water in the washing drum is guided upward and then falls back into the washing drum, thereby causing surging water flow in the washing drum, thereby achieving the purpose of deep cleaning the washing drum and improving the cleaning effect of the laundry.
[0005] A first aspect of an embodiment of the present invention provides a washing module, comprising:
[0006] a module body, the module body forming a washing tub installation cavity with a top opening; and
[0007] A washing drum with a clothes loading port at the top and water-permeable holes around the circumference is rotatably mounted in the washing drum installation cavity, and a water flow channel with a drain port at the top is formed between the outer wall of the washing drum and the cavity wall of the washing drum installation cavity;
[0008] A guide structure is provided above the drain outlet of the water flow channel. The guide structure is used to guide the water flow that rises centrifugally to the drain outlet in the water flow channel into the washing drum when the washing drum rotates, so as to agitate the water flow in the washing drum.
[0009] In the above technical solution, an annular water flow channel with an annular drain port at the top is formed between the outer wall of the washing tub and the wall of the washing tub installation cavity;
[0010] The diversion structure comprises diversion plates which are arranged above the drain outlet and distributed around the circumference.
[0011] In the above technical solution, the guide plate includes an arc-shaped plate with the concave surface facing downward;
[0012] One end of the arc-shaped guide plate is arranged close to the washing tub installation cavity, and the other end extends toward the inner curved surface of the washing tub.
[0013] In the above technical solution, the washing module further includes an upper cover seat provided on the top of the module body for opening or closing the clothing loading port, and the upper cover seat includes:
[0014] An upper cover body that is circumferentially clamped to the top of the washing tub installation cavity; and
[0015] An upper cover seat opening is formed in the middle of the upper cover seat body and is opposite to the clothing loading port; and
[0016] An upper cover hinged at the opening of the upper cover seat for opening or closing the upper cover seat opening;
[0017] The upper cover seat is provided with guide plates around the opening position of the upper cover seat.
[0018] In the above technical solution, the guide vane includes a plurality of arc-shaped guide vane units distributed around the opening position of the upper cover seat;
[0019] The guide vane unit includes a hinged end hinged at the opening of the upper cover seat, and a free end opposite to the hinged end;
[0020] The plurality of guide vane units can be controlled to rotate simultaneously or individually to change the guide angles of the guide vane units.
[0021] In the above technical solution, multiple guide vane units are fitted end to end in the circumferential direction of the upper cover seat opening when the guide angles are the same, so as to form an annular guide vane unit group arranged along the circumference of the upper cover seat opening.
[0022] In the above technical solution, a sealing rib is formed on the upper cover body, and the upper cover body is clamped on the top of the washing tub installation cavity through the sealing rib;
[0023] The washing module further includes a sealing ring sandwiched between the sealing rib and the top of the washing tub installation cavity to seal the connection position between the upper cover seat body and the washing tub installation cavity.
[0024] In the above technical solution, the washing module further includes:
[0025] A driving structure for driving the washing drum to rotate, the driving structure comprising:
[0026] A drive motor fixedly mounted on the module body; and
[0027] A speed reducer connected to the bottom of the washing tub and belt-driven to the drive motor;
[0028] The washing module also includes:
[0029] A brush assembly is provided on the inner wall and / or the bottom wall of the washing drum and can rotate with the washing drum, and the brush assembly is used to brush the laundry in the washing drum when the washing drum rotates;
[0030] The washing module also includes:
[0031] The water inlet pipe and the drain pipe are used to inject washing water into the washing tub and / or the water flow channel, and the drain pipe is used to discharge the washing water in the washing tub and / or the water flow channel.
[0032] In the above technical solution, the module body is a rectangular drawer with slide rails and / or pulleys on the outer peripheral side, and the module body can be withdrawably installed in the casing of the clothing processing device through the slide rails.
[0033] A second aspect of the embodiments of the present invention provides a laundry processing device, which includes the above-mentioned washing module.
[0034] In the above technical solution, the clothes processing device includes a rectangular casing with an installation cavity formed therein, and the washing module is retractably installed in the installation cavity of the casing;
[0035] A connector is also provided on the top of the casing, and the connector is used to fixedly connect the clothing processing device to an external component.
[0036] In the above technical solution, the clothing processing device is a shoe washing machine.
[0037] After adopting the above technical solution, the present invention has the following beneficial effects compared with the prior art:
[0038] In the embodiment of the present invention, a guide structure is provided in the washing module. When the centrifugal water flow drives the water in the water flow channel to flow upward through the guide structure through the rotation of the washing drum, the washing water can be returned to the washing drum under the guidance of the guide structure. That is, the water in the washing drum is guided upward and then falls back into the washing drum, thereby causing surging water flow in the washing drum, thereby achieving the purpose of deep cleaning of the washing drum and improving the cleaning effect of the laundry. BRIEF DESCRIPTION OF THE DRAWINGS
[0039] The accompanying drawings, which are incorporated in and constitute a part of this specification, illustrate embodiments consistent with the invention and, together with the description, serve to explain the principles of the invention.
[0040] Figure 1 Schematic diagram of the structure of the washing module in the embodiment of the present invention when the upper cover is removed;
[0041] Figure 2 Schematic diagram of the structure of the washing module according to the present invention when viewed from above;
[0042] Figure 3 Based Figure 2 A schematic cross-sectional view of the AA surface in the embodiment;
[0043] Figure 4 for Figure 3 A schematic diagram of the enlarged structure of point B in the embodiment;
[0044] Figure 5 This is a schematic diagram of the explosion structure of an embodiment of a washing module of the present invention;
[0045] Figure 6 Schematic diagram of the structure of the washing module in the embodiment of the clothes processing device of the present invention when it is pushed together;
[0046] Figure 7 Schematic diagram of the structure of the washing module in the embodiment of the clothes processing device of the present invention when it is pulled out.
[0047] Among them: 1-module body; 11-washing drum installation cavity; 12-slide rail; 2-washing drum; 3-water flow channel; 4-guide plate; 5-upper cover seat; 51-upper cover seat body; 52-upper cover seat opening; 53-upper cover; 531-sealing rib; 6-sealing ring; 7-drive structure; 71-drive motor; 72-belt; 73-reducer; 8-brush assembly; 9-housing; 91-connector; 100-water inlet pipe; 200-drain pipe. DETAILED DESCRIPTION
[0048] Exemplary embodiments will be described in detail herein, examples of which are illustrated in the accompanying drawings. In the following description, when referring to the drawings, like numbers in different figures represent the same or similar elements unless otherwise indicated. The embodiments described in the following exemplary embodiments are not intended to represent all possible embodiments consistent with the present invention. Rather, they are merely examples of apparatus and methods consistent with certain aspects of the present invention as detailed in the appended claims.
[0049] Existing laundry treatment devices currently have poor cleaning effects on laundry with difficult-to-clean stains. Embodiments of the present invention provide a washing module and laundry treatment device. By providing a diversion structure within the washing module, when centrifugal water flows through the rotational motion of the washing tub, driving water in the water flow channel upward and passing through the diversion structure, the diversion structure guides the washing water back into the washing tub. This guide guides the water upward and then back into the tub, thereby causing a turbulent flow within the tub, thereby achieving a deep clean of the tub and improving the cleaning effect on the laundry.
[0050] The following is combined with Figure 1 -Attached Figure 7The technical solution of this embodiment is described in detail. The following implementation methods and embodiments can be combined with each other unless there is any conflict.
[0051] Example
[0052] like Figure 1-Figure 7 As shown, a first aspect of an embodiment of the present invention provides a washing module, comprising:
[0053] A module body 1 is formed with a washing tub installation cavity 11 with an open top; and
[0054] A washing tub 2 having a clothes loading port at the top and water-permeable holes around the circumference is rotatably mounted within a washing tub mounting cavity 11, and a water flow channel 3 having a drain port at the top is formed between the outer wall of the washing tub 2 and the wall of the washing tub mounting cavity 11;
[0055] A guide structure is provided above the drain outlet of the water flow channel 3 to guide the water flow that rises centrifugally to the drain outlet in the water flow channel 3 into the washing tub 2 when the washing tub 2 rotates, so as to agitate the water flow in the washing tub 2.
[0056] In the embodiment of the present invention, a guide structure is provided in the washing module. When the centrifugal water flow drives the water in the water flow channel 3 to flow upward through the guide structure through the rotation of the washing drum, the washing water can be returned to the washing drum 2 under the guidance of the guide structure. That is, the water in the washing drum is guided upward and then falls back into the washing drum, thereby causing turbulent water flow in the washing drum 2, thereby achieving the purpose of deep cleaning of the washing drum 2 and improving the cleaning effect of the laundry in the washing drum 2.
[0057] Specifically, such as Figure 1-Figure 5 As shown, an annular water flow channel 3 with an annular drain port at the top is formed between the outer wall of the washing tub 2 and the wall of the washing tub installation cavity 11;
[0058] The diversion structure includes diversion plates 4 which are arranged above the drain outlet and distributed around the circumference.
[0059] That is, when the washing tub 2 rotates, the centrifugal rising water flow in the water flow channel 3 can be guided into the washing tub 2 from the top edge of the washing tub 2 through the guide plate 4, thereby forming an agitated water flow and improving the cleaning effect of the laundry in the washing tub 2.
[0060] Further, such as Figure 3 and Figure 4 As shown, the guide plate includes an arc-shaped plate with the concave surface facing downward;
[0061] One end of the arc-shaped guide plate 4 is arranged close to the washing tub installation cavity 11 and the other end extends toward the inner curved surface of the washing tub 2 .
[0062] In the embodiment of the present invention, by setting the guide plate into an arc shape, on the one hand, the washing water rising to the drain position can be re-introduced into the washing tub 2, and on the other hand, it can also avoid the washing water rising to the drain position from splashing when it contacts the guide plate 4.
[0063] In any of the above embodiments, Figure 3-Figure 5 As shown, the washing module further includes an upper cover 5 provided on the top of the module body 1 for opening or closing the clothing loading port, and the upper cover 5 includes:
[0064] The upper cover body 51 is clamped around the top of the washing tub installation cavity 11; and
[0065] An upper cover opening 52 formed in the middle of the upper cover body 51 and opposite to the clothing loading port; and
[0066] An upper cover 53 hinged at the upper cover opening 52 for opening or closing the upper cover opening 52;
[0067] The upper cover seat 5 is provided with guide plates 4 around the upper cover seat opening 52 .
[0068] Specifically, such as Figure 5 As shown, the guide vane 4 in the embodiment of the present invention is an annular guide vane integrally formed in the circumferential direction of the upper cover seat opening 52 .
[0069] Of course, in some embodiments not shown in the figures, the guide vane 4 may also be a plurality of arc-shaped guide vane units distributed around the upper cover opening 52.
[0070] The guide vane unit includes a hinged end hinged at the opening 52 of the upper cover seat, and a free end opposite to the hinged end;
[0071] The plurality of guide vane units can be controlled to rotate simultaneously or individually to change the guide angles of the guide vane units.
[0072] Specifically, when the guide vane is a plurality of guide vane units, the plurality of guide vane units are fitted end to end in the circumferential direction of the upper cover seat opening 52 when the guide angles are the same, so as to form an annular guide vane unit group arranged along the circumference of the upper cover seat opening 52 .
[0073] It is worth noting that when the guide plate is composed of multiple guide plate units, the cleaning effect of the inner wall of the washing drum 2 can be achieved by controlling the diversion angles of the multiple guide plate units. For example, the diversion angle of the guide plate unit on the left can be adjusted so that the washing water passing through the left guide plate unit is guided to the inner wall of the washing drum 2 on the right side, thereby achieving the cleaning effect of the inner wall of the washing drum 2. Similarly, when it is necessary to clean the inner wall of the washing drum 2 on the left side, the diversion angle of the guide plate unit on the right side can also be adjusted.
[0074] That is, the guide plate 4 in the embodiment of the present invention can improve the cleaning effect of the laundry when washing the laundry, and at the same time, the washing tub 2 can be cleaned after washing by changing the guide angle of the guide plate 4.
[0075] It should be noted that when the diversion angle of the guide vane unit needs to be adjusted, the diversion angle adjustment of the guide vane unit can be achieved through one or a combination of a gear drive mechanism, a connecting rod drive mechanism, a cylinder, and an electric push rod. The specific drive mechanism form is not limited in the embodiment of the present invention.
[0076] In any of the above embodiments, in order to improve the sealing effect when the upper cover 5 is placed on the washing tub 2, a sealing rib 531 is further formed on the upper cover body 51 in the embodiment of the present invention. The upper cover body 51 is clamped to the top of the washing tub installation cavity 11 through the sealing rib 531.
[0077] The washing module further includes a sealing ring 6 sandwiched between the sealing rib 531 and the top of the washing tub installation cavity 11 to seal the connection between the upper cover body 51 and the washing tub installation cavity 11 .
[0078] In any of the above embodiments, Figure 1-Figure 5 As shown, the washing module also includes:
[0079] A driving structure 7 is used to drive the washing tub 2 to rotate. The driving structure 7 includes:
[0080] A drive motor 71 fixedly mounted on the module body 1; and
[0081] A speed reducer 73 connected to the bottom of the washing tub 2 and driven by a belt 72 of a driving motor 71;
[0082] The washing module also includes:
[0083] A brush assembly 8 is provided on the inner wall and / or the bottom wall of the washing tub 2 and can rotate along with the washing tub 2. The brush assembly 8 is used to brush the laundry in the washing tub 2 when the washing tub 2 rotates;
[0084] The washing module also includes:
[0085] The water inlet pipe 100 and the drain pipe 200 are used to inject washing water into the washing tub 1 and discharge the washing water in the washing tub 2.
[0086] In any of the above embodiments, Figure 1-Figure 5 As shown, the module body 1 mentioned above is a rectangular drawer with a slide rail 12 on the outer peripheral side. The module body 1 can be withdrawably installed in the housing of the clothing processing device through the slide rail 12.
[0087] A second aspect of the embodiments of the present invention further provides a laundry processing device, which includes the above-mentioned washing module.
[0088] Specifically, such as Figure 6 and Figure 7 As shown, the clothes processing device includes a rectangular housing 9 with an installation cavity formed therein, and the washing module can be pulled out and installed in the installation cavity of the housing 9;
[0089] A connector 91 is further provided on the top of the housing 9, and the connector 91 is used to securely connect the clothing processing device to external components.
[0090] Preferably, the above-mentioned clothing processing equipment is a shoe washing machine.
[0091] The following is an example of a shoe washing machine. Figure 1-Figure 7 The above-mentioned clothes processing equipment is described in detail:
[0092] The drive motor 71 and the reducer 73 are mounted on the drawer (i.e. the module body 1 mentioned above) by screw fastening, and are connected together by a belt 72 for power transmission. Figure 2 shown.
[0093] The lower end of the reducer 73 is connected to the belt 72, and the upper end of the reducer matches the concave and convex surface of the washing tub 2, and then is tightened by screws. This transmits the power of the belt 72 to the washing tub 2, and the washing tub 2 can rotate and move inside the drawer. The washing tub 2 is equipped with multiple brush assemblies 8, which are fixed to the washing tub 2 by means of buckles or screws. Figure 1 and Figure 5 shown.
[0094] The drive motor 71 is activated to rotate the belt 72, which in turn rotates the reducer 73. The reducer 73 can reduce the speed transmitted by the drive motor 71 to a preset value. The reducer 73 is tightly connected to the washing tub 2, and the washing tub 2 and the brush assembly 8 are also rotated by the reducer 72, and the rotation of the brush assembly 8 is used to achieve the purpose of washing.
[0095] It is worth mentioning that in the entire washing stage, after washing for a period of time, the centrifugal water flow stage is carried out {no washing is carried out at this time}, and the washing stage is carried out again after the centrifugal water flow ends, and this is interspersed, one or more times. When the shoe washing machine performs the centrifugal water flow stage washing, the driving motor 71 performs unidirectional rotational motion, thereby driving the washing tub 2 to perform unidirectional rotational motion. At this time, the washing tub installation cavity 11 inside the drawer and the water inside the washing tub 2 are also driven. Under this action, the water flow performs centrifugal motion along the water flow channel 3 formed between the washing tub installation 11 and the washing tub 2. The water flow flows upward along the water flow channel 3, passes through the guide plate 4 on the upper cover seat 5, and returns to the washing tub 2 under the guidance of the guide plate 4, guiding the water in the washing tub 2 upward, and then falls back into the washing tub 2, causing turbulent water flow in the washing tub 2, thereby achieving the purpose of deep cleaning the inside of the shoes. There are sealing ribs 531 on the upper cover seat 5, which are used in conjunction with the sealing ring 6 to play the role of centrifugal water flow sealing, such as Figure 3 and Figure 4 shown.
[0096] In addition, the upper end surface of the housing 9 of the shoe washing machine can be used to place other washing machines or to combine them with products to save space. It can also be used alone, and the usage is flexible and changeable.
[0097] The upper end of the casing 9 is provided with parts for fixed connection with other washing machines, which can be connected by means of screws, slot limiting and buckle connection methods.
[0098] It is worth noting that the above-mentioned drawer is mounted on the housing 9 by means of a slide rail or a pulley, and can be slid out of the drawer {ie the above-mentioned module body 1}, wherein Figure 6 The drawer is retracted. Figure 7 The drawer is pulled out.
[0099] The upper end of the drawer is fastened with a cover seat 5 by means of buckles and screws. The cover seat body 51 is connected to the cover 53 by means of a rotating shaft. The cover 53 can be rotated to open. Figure 7 The upper cover 2 is in the open state.
[0100] The front end of the drawer is assembled with the operating panel assembly by means of screws and snaps. One end of the water inlet pipe 100 is connected to the water inlet valve (not shown in the figure), and the other end is sealed with the water inlet pipe connecting pipe on the drawer, where the water inlet pipe connecting pipe is a feature on the drawer and is located at the upper part of the drawer. Figure 1 shown.
[0101] One end of the drain pipe 200 is sealed to the bottom of the drawer, and the other end is sealed to the drain pump. Figure 2 shown.
[0102] The overall working process of the shoe washing machine is as follows: the shoe washing machine operates according to the steps of water intake, washing, centrifugal water flow washing the inside of the shoes, drainage, and dehydration.
[0103] The above steps of washing and centrifugal water washing the inside of the shoes have been described. The remaining steps of water intake, drainage and dehydration are as follows: The shoe washing machine controller and display are installed on the operation panel assembly, and the user can perform preset functions and operations on the operation panel assembly.
[0104] Specifically, the user pulls out the drawer {such as Figure 6 Then put the shoes into the inner chamber of the washing tub 2 and push the drawer back {as shown}. Figure 7 shown}.
[0105] Under the control of the water inlet valve, tap water flows through the water inlet pipe 100 and the water inlet connecting pipe into the water flow channel 3 and the interior of the washing tub 2. The internal chamber wall of the washing tub 2 is provided with multiple permeable holes, allowing liquid to flow in and out freely. When the water reaches a preset level, the water inflow stops, completing the water inflow step. The drain pump then starts to drain the water from the washing tub 2 and water flow channel 3 through the drain pipe 200. After the drain pump runs for a period of time, the drainage step is complete.
[0106] During this phase, the drive motor 71 moves unidirectionally, for example, forward or reverse, thereby driving the washing tub 2 in unidirectional motion. Since the washing tub 2 is empty, the washing tub 2 can drive the shoes in unidirectional motion, which shakes out the water from the shoes. After the drive motor 71 continues unidirectional motion for a period of time, the dehydration step is complete. During this phase, the drain pump also operates to remove the water.
[0107] Other embodiments of the present invention will readily occur to those skilled in the art after considering the specification and practicing the embodiments disclosed herein. This application is intended to cover any variations, uses, or adaptations of the present invention that follow from the general principles of the invention and include common knowledge or customary techniques in the art not disclosed herein. The specification and examples are to be considered as exemplary only, with the true scope and spirit of the invention being indicated by the following claims.
[0108] It should be understood that the present invention is not limited to the exact construction described above and shown in the drawings, and that various modifications and changes may be made without departing from the scope thereof. The scope of the present invention is limited only by the appended claims.
Claims
1. A washing module, characterized in that: include: A module body (1), wherein the module body (1) is formed with a washing drum installation cavity (11) with a top opening; as well as A washing drum (2) having a clothing inlet at the top and water-permeable holes around the circumference, the washing drum (2) being rotatably sleeved in the washing drum installation cavity (11), and a water flow channel (3) having a water outlet at the top being formed between the outer wall of the washing drum (2) and the cavity wall of the washing drum installation cavity (11); A guide structure is provided above the drain outlet of the water flow channel (3), and the guide structure is used to guide the water flow centrifugally rising to the drain outlet in the water flow channel (3) into the washing tub (2) when the washing tub (2) rotates, so as to agitate the water flow in the washing tub (2); An annular water flow channel (3) having an annular drain outlet at the top is formed between the outer wall of the washing tub (2) and the wall of the washing tub installation cavity (11); The diversion structure comprises diversion plates (4) arranged above the drain outlet and distributed around the circumference; The washing module further comprises an upper cover seat (5) provided on the top of the module body (1) for opening or closing the clothing loading port, wherein the upper cover seat (5) comprises: The upper cover seat body (51) is circumferentially clamped to the top of the washing tub installation cavity (11); and An upper cover seat opening (52) formed in the middle of the upper cover seat body (51) and opposite to the clothing loading port; and An upper cover (53) hinged at the upper cover seat opening (52) for opening or closing the upper cover seat opening (52); The upper cover seat (5) is provided with the guide plate (4) around the upper cover seat opening (52); The guide plate (4) is an annular guide plate integrally formed in the circumferential direction of the upper cover seat opening (52); The guide plate (4) comprises a plurality of arc-shaped guide plate units distributed around the upper cover seat opening (52); The guide plate unit comprises a hinged end hinged at the upper cover seat opening (52), and a free end opposite to the hinged end; wherein the plurality of guide vane units can be controlled to rotate simultaneously or individually to change the guide angle of the guide vane unit; When the guide vane units have the same guide angle, they are fitted end to end in the circumferential direction of the upper cover seat opening (52) to form an annular guide vane unit group arranged along the circumference of the upper cover seat opening (52).
2. The washing module according to claim 1, characterized in that The guide plate comprises an arc-shaped plate with the concave surface facing downward; One end of the arc-shaped guide plate (4) is arranged close to the washing tub installation cavity (11), and the other end extends toward the inner curved surface of the washing tub (2).
3. The washing module according to claim 1, characterized in that A sealing rib (531) is formed on the upper cover seat body (51), and the upper cover seat body (51) is clamped to the top of the washing tub installation cavity (11) via the sealing rib (531); The washing module further comprises a sealing ring (6) sandwiched between the sealing rib (531) and the top of the washing tub installation cavity (11) to seal the connection position between the upper cover seat body (51) and the washing tub installation cavity (11).
4. The washing module according to claim 1, characterized in that The washing module further comprises: A driving structure (7) for driving the washing tub (2) to rotate, the driving structure (7) comprising: a drive motor (71) fixedly mounted on the module body (1); and A speed reducer (73) connected to the bottom of the washing tub (2) and driven by a belt (72) of the driving motor (71); The washing module further comprises: a brush assembly (8) provided on the inner wall and / or the bottom wall of the washing drum (2) and capable of rotating along with the washing drum (2), the brush assembly (8) being used to brush the laundry in the washing drum (2) when the washing drum (2) rotates; The washing module further comprises: A water inlet pipe (100) and a drain pipe (200), wherein the water inlet pipe (100) is used to inject washing water into the washing tub (2) and / or the water flow channel (3), and the drain pipe (200) is used to discharge the washing water in the washing tub (2) and / or the water flow channel.
5. The washing module according to claim 1, characterized in that: The module body (1) is a rectangular drawer having a slide rail (12) and / or a pulley on the outer peripheral side, and the module body (1) can be withdrawably installed in the housing of the clothing processing device via the slide rail (12).
6. A laundry processing device comprising the washing module according to any one of claims 1 to 5.
7. The clothes processing device according to claim 6, characterized in that: The laundry processing device comprises a rectangular casing (9) with an installation cavity formed therein, and the washing module is detachably installed in the installation cavity of the casing (9); A connecting piece (91) is also provided on the top of the housing (9), and the connecting piece (91) is used to fixedly connect the clothes processing device and an external component.
8. The clothes processing device according to claim 6, characterized in that: The clothing processing device is a shoe washing machine.
Citation Information
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