Shoe washing assembly and washing machine having the same
By designing the shoe-washing components of the support frame and the brushing mechanism, the problems of deformation and wear of shoes during the washing process are solved, the shoes are fully washed, and the washing efficiency and user experience are improved.
Patent Information
- Application Number
- CN202211716260.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-12-29
- Publication Date
- 2025-09-23
- Estimated Expiration
- 2042-12-29
AI Technical Summary
Existing washing methods cause deformation and wear of shoes, and insufficient contact between washing water and shoes results in incomplete and inadequate washing.
A shoe washing assembly is designed, including a support frame and a brushing mechanism. The support frame is formed with a first and a second mounting cavity. The brushing mechanism is rotatably arranged in the second mounting cavity. The shoe is arranged in the first mounting cavity. The brushing mechanism rotates relative to the shoe to brush. The support frame and the brushing mechanism are connected by a transmission mechanism to achieve automatic brushing.
The shoes are not easily deformed during the washing process, have little wear, and the washing water is in full contact with the shoes, so the washing is thorough and sufficient, which improves the cleaning ratio and the use experience.
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Figure CN115868899B_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of shoe washing, and in particular relates to a shoe washing assembly and a washing machine having the same. Background Art
[0002] In recent years, the development of the washing machine industry has shown a diversified trend. With the improvement of people's living standards, healthy and precise washing methods have gradually developed into the core concept of washing machine product research and development. In order to meet the growing demand of consumers for healthy washing, various companies have put the research and development of small multifunctional washing machines on the agenda. In the existing technology, shoes are washed by impellers, drums or hand washing, but conventional washing methods will cause deformation and wear of shoes during the washing process, and the washing water cannot fully contact the shoes, resulting in weak washing power, incomplete and insufficient washing. Summary of the Invention
[0003] In view of this, the present invention provides a shoe washing assembly and a washing machine having the same, so as to solve the problems that conventional washing methods may cause deformation and wear of shoes during the washing process, and that washing water cannot fully contact with shoes, resulting in incomplete and insufficient washing.
[0004] The present invention provides a shoe washing assembly, comprising:
[0005] The support frame is formed with a first mounting cavity and a second mounting cavity, wherein the first mounting cavity is used to place shoes to be washed;
[0006] The brushing mechanism is rotatably arranged in the second installation cavity and is used for brushing the shoes arranged in the first installation cavity.
[0007] Further optionally, the support frame is formed with two oppositely arranged first mounting cavities, and the second mounting cavity is located between the two first mounting cavities; the two first mounting cavities are respectively located on both radial sides of the rotation axis of the brushing mechanism, and a shoe can be placed in each first mounting cavity.
[0008] Further optionally, the brushing mechanism includes a brushing frame, the outer side of which is provided with a brushing layer; the shoe washing assembly further includes a transmission shaft, which is in transmission connection with the brushing frame;
[0009] When washing shoes, the transmission shaft can drive the brush rack to rotate, and the brush layer contacts and washes the shoe surface.
[0010] Further optionally, the scrubbing frame includes an intermediate frame and two hemispherical frames; the intermediate frame is a cylindrical structure, and is formed with an intermediate frame hole, and the intermediate frame hole extends along the diameter direction of the intermediate frame; the transmission shaft is passed through the intermediate frame hole and is transmission-connected to the intermediate frame;
[0011] The two hemispherical frames are respectively arranged on the two end surfaces of the intermediate frame, and a brushing layer is sleeved on the outer side of each hemispherical frame; the transmission shaft can drive the intermediate frame and the two hemispherical frames to rotate.
[0012] Further optionally, the shoe washing assembly further comprises a plug-in rack, the plug-in rack being arranged on the support rack and forming a mounting hole; a through hole being formed in the hole wall of the mounting hole, a shaft sleeve being arranged in the through hole; a shaft sleeve being formed in the shaft sleeve hole, the shaft sleeve hole being communicated with the intermediate rack hole; the intermediate rack being rotatably arranged in the mounting hole, one end of the transmission shaft sequentially passing through the shaft sleeve hole and the intermediate rack hole to be transmission-connected to the scrubbing rack; the two first mounting cavities being symmetrically arranged relative to the plug-in rack;
[0013] The transmission shaft can drive the intermediate frame and the hemispherical frame to rotate relative to the plug-in frame.
[0014] Further optionally, the plug-in frame is further formed with an avoidance hole, which is communicated with the mounting hole; the avoidance hole allows the intermediate frame and the hemispherical frame to rotate 360° relative to the plug-in frame within the avoidance hole and the mounting hole.
[0015] Further optionally, the shoe washing assembly further includes a bottom plate, the bottom plate being used to cooperate with the bottom wall of the washing tub; the plug-in rack is arranged on the bottom plate and the plug-in rack is further formed with a plug-in column, and the plug-in column is located on one side of the mounting hole;
[0016] The support frame is arranged on the bottom plate and is formed with a plug-in slot; the plug-in column and the plug-in slot both extend along the axial direction of the washing tub, and the plug-in column is embedded in the plug-in slot to connect the plug-in frame to the support frame.
[0017] Further optionally, the support frame includes a support frame side wall, a support frame top beam and two support frame bottom walls; the support frame side wall includes two, the two support frame side walls are arranged to form a cylindrical structure, and the cylindrical structure includes a first installation cavity and a second installation cavity; the support frame bottom wall includes two, the two support frame bottom walls are arranged at an interval, and each support frame bottom wall is arranged at the bottom of the corresponding support frame side wall; the support frame bottom wall and the support frame side wall are both formed with a hollow structure;
[0018] The support frame top beam is arranged on the top of the support frame side wall, and the support frame top beam connects the two support frame side walls; the support frame top beam is formed with an operating part, and operating the operating part can separate the support frame from the scrubbing frame.
[0019] The present invention further provides a washing machine, comprising a washing tub, a transmission mechanism, and any one of the above-described shoe-washing components; the shoe-washing component is detachably disposed within the washing tub; a first axial hole and a second axial hole are formed on the bottom wall of the washing tub; a bottom plate of the shoe-washing component is formed with a bottom plate hole, and both ends of the bottom plate hole are respectively connected to the first axial hole and the shaft sleeve hole;
[0020] The transmission mechanism includes a washing shaft and a dehydration shaft. One end of the washing shaft passes through the first shaft hole and the bottom plate hole in sequence to the shaft sleeve hole and is transmission connected to one end of the transmission shaft; one end of the dehydration shaft passes through the second shaft hole and is transmission connected to the bottom plate.
[0021] Further optionally, the transmission mechanism further includes a main pulley, a slave pulley and a clutch, wherein the main pulley and the slave pulley are connected by a belt; the clutch includes an input end, a first output end and a second output end; the input end is coaxially connected to the slave pulley, the first output end is connected to the washing shaft via a one-way bearing, and the second output end is connected to the dehydration shaft;
[0022] When the first output end rotates, the first output end drives the scrubbing mechanism to rotate through the washing shaft and the transmission shaft;
[0023] When the second output end rotates, the second output end drives the bottom plate, the plug-in rack and the support rack to rotate synchronously through the dehydration shaft.
[0024] Compared with the prior art, the beneficial effects of the present invention are mainly:
[0025] (1) The brushing mechanism is rotatably arranged in the second mounting cavity, and the shoe is arranged in the first mounting cavity and remains in a fixed position, with the shoe upper facing the brushing mechanism. The brushing mechanism rotates relative to the shoe and brushes the shoe upper, so that the shoe is not easily deformed and has little wear. The washing water is in full contact with the shoe, and the washing is thorough and sufficient. This solves the problem that the existing washing method is not suitable for washing shoes, and that the shoes are easily deformed and wear greatly during the washing process, and solves the problem that the shoes are easy to move during the washing process, resulting in incomplete, insufficient and low-efficiency shoe washing.
[0026] (2) A hemispherical frame is respectively provided on the two end faces of the middle frame, and the transmission shaft is connected to the middle frame. The transmission shaft drives the middle frame and the two hemispherical frames to rotate, and the scrubbing layer washes the corresponding shoes, which is conducive to automatic scrubbing of shoes and improves the cleaning ratio; the middle frame and the hemispherical frame rotate 360 degrees relative to the plug-in frame, which improves the freedom of the scrubbing frame and ensures that the scrubbing frame can provide sufficient and all-round scrubbing force to the shoes; the bottom wall and the side wall of the support frame are formed with a hollow structure, which is conducive to full contact between the washing water and the shoes during washing, and can avoid the washing water from remaining in the support frame during dehydration; the operating part can separate the support frame from the scrubbing frame, which is easy to operate and has a high user experience;
[0027] (3) The input end of the clutch is coaxially connected to the pulley, the first output end of the clutch is connected to the washing shaft through a one-way bearing, and the second output end of the clutch is connected to the dehydration shaft; when the first output end rotates, the washing shaft and the transmission shaft drive the brushing mechanism to rotate, thereby washing the shoes; when the second output end rotates, the dehydration shaft drives the bottom plate, the plug-in rack and the support rack to rotate synchronously, thereby dehydrating. It has a simple structure, diverse functions and a wide range of uses. BRIEF DESCRIPTION OF THE DRAWINGS
[0028] To more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for the embodiments or the description of the prior art. Obviously, the drawings described below are merely exemplary, and those skilled in the art can, without inventive effort, derive other implementation drawings based on the provided drawings.
[0029] The structures, proportions, sizes, etc. illustrated in this specification are intended only to complement the contents disclosed herein and to facilitate understanding and reading by persons familiar with the art. They are not intended to limit the conditions under which the present invention may be implemented and therefore have no substantive technical significance. Any structural modifications, changes in proportions, or adjustments in sizes, without affecting the efficacy and objectives of the present invention, shall still fall within the scope of the technical contents disclosed herein.
[0030] Figure 1a and Figure 1b This is a schematic diagram of the exploded structure of an embodiment of a washing machine provided by the present invention;
[0031] Figure 2 This is a schematic diagram of the assembly structure of a washing machine embodiment provided by the present invention;
[0032] Figure 3a and Figure 3b A schematic cross-sectional view of a washing machine embodiment provided by the present invention;
[0033] Figure 4a A schematic diagram of the assembly structure of the brushing mechanism, support frame and plug-in frame provided by the present invention;
[0034] Figure 4b A schematic cross-sectional view of an embodiment of the scrubbing mechanism, support frame, and plug-in frame provided by the present invention;
[0035] Figure 5a This is an exploded structural diagram of an embodiment of the scrubbing mechanism, support frame, plug-in frame and bottom plate provided by the present invention;
[0036] Figure 5b This is a schematic diagram of the assembly structure of the brushing mechanism, support frame, plug-in frame and bottom plate embodiment provided by the present invention;
[0037] Figure 6a and Figure 6b A schematic diagram of an embodiment of the rotation direction of the scrubbing mechanism relative to the support frame provided by the present invention;
[0038] Figure 7a and Figure 7b A schematic structural diagram of an embodiment of the plug-in rack and scrubbing mechanism provided by the present invention;
[0039] Figure 8a and Figure 8b A schematic structural diagram of an embodiment of a support frame provided by the present invention;
[0040] In the picture:
[0041] 11-washing tub; 12-transmission mechanism; 121-main pulley; 122-slave pulley; 123-belt; 124-clutch; 125-drive shaft; 126-sleeve; 127-dehydration shaft; 128-washing shaft; 13-drive motor;
[0042] 21-Support frame; 211-Support frame side wall; 212-Support frame bottom wall; 213-Support frame top beam; 214-Plug-in slot; 215-Hollow structure; 216-Operating portion; 22-Plug-in frame; 221-Mounting hole; 222-Through hole; 223-Plug-in column; 224-Avoidance hole; 23-Bottom plate; 231-Bottom plate hole;
[0043] 3- brushing mechanism; 31- brushing rack; 311- hemispherical rack; 312- middle rack; 32- brushing layer. DETAILED DESCRIPTION
[0044] The following describes the implementation of the present invention using specific embodiments. Those skilled in the art will readily understand the other advantages and benefits of the present invention from the disclosure herein. Obviously, the embodiments described are only a portion of the present invention, not all of it. All other embodiments derived by persons of ordinary skill in the art based on the embodiments of the present invention without inventive effort are intended to fall within the scope of protection of the present invention.
[0045] The terms used in the embodiments of the present invention are for the purpose of describing specific embodiments only and are not intended to limit the present invention. The singular forms "a," "the," and "the" used in the embodiments of the present invention and the appended claims are also intended to include plural forms, unless the context clearly indicates otherwise. "A plurality" generally includes at least two, but does not exclude the inclusion of at least one.
[0046] It should be understood that the term "and / or" as used herein is merely a description of the relationship between associated objects, indicating that three possible relationships exist. For example, "A and / or B" can represent: A exists alone, A and B exist simultaneously, or B exists alone. Furthermore, the character " / " in this document generally indicates that the associated objects are in an "or" relationship.
[0047] It should also be noted that the terms "include," "comprises," or any other variations thereof are intended to encompass non-exclusive inclusion, such that a product or system comprising a series of elements includes not only those elements but also other elements not explicitly listed, or elements inherent to such product or system. In the absence of further limitations, an element defined by the phrase "comprises a..." does not exclude the presence of other identical elements in the product or system comprising the element.
[0048] In existing washing machines, shoes are washed by pulsator, drum or hand washing. However, conventional washing methods can cause deformation and wear of shoes during the washing process, and the washing water cannot fully contact the shoes, resulting in weak washing power, incomplete and inadequate washing;
[0049] The present invention creatively provides a shoe washing assembly, including a support frame and a brushing mechanism, the support frame is formed with a first mounting cavity and a second mounting cavity, and the brushing mechanism is rotatably arranged in the second mounting cavity; when washing shoes, the shoes are arranged in the first mounting cavity, and the first mounting cavity limits the shoes to prevent the shoes from moving during the washing process, and the shoe uppers face the brushing mechanism, and the brushing mechanism rotates relative to the shoes and brushes the shoe uppers; the shoes are not easily deformed and have little wear, the washing water is in full contact with the shoes, and the washing is thorough and sufficient; the problem that the existing washing method is not suitable for shoe washing, and the shoes are easily deformed and wear a lot during the washing process is solved, and the problem that the shoes are easy to move during the washing process, resulting in incomplete, insufficient and low efficiency of shoe washing is solved.
[0050] like Figures 1a to 8b As shown, this embodiment provides a shoe washing assembly, comprising:
[0051] The support frame 21 is formed with a first mounting cavity and a second mounting cavity, wherein the first mounting cavity is used to place shoes to be washed;
[0052] a brushing mechanism 3, which is rotatably disposed in the second mounting cavity and is used to brush the shoes disposed in the first mounting cavity;
[0053] The support frame 21 is formed with two first mounting cavities arranged opposite to each other, and the second mounting cavity is located between the two first mounting cavities.
[0054] The two first mounting cavities are respectively located on both sides of the radial direction of the rotation axis of the brushing mechanism 3, and a shoe can be set in each first mounting cavity 5;
[0055] When washing shoes, two shoes are respectively placed in the two first installation cavities, and the upper of each shoe faces the brushing mechanism 3. The brushing mechanism 3 rotates relative to the shoe and brushes the upper. The brushing mechanism 3 can rotate 360 degrees to cover the upper. The brushing mechanism 3 is in full contact with the upper and can provide sufficient washing power to the upper.
[0056] The washing is thorough and sufficient, which improves the washing efficiency; the shoes maintain their original shape during the washing process and are not easily deformed. 0 Further, the brushing mechanism 3 includes a brushing frame 31, and the outer side of the brushing frame 31 is provided with a brushing layer 32;
[0057] The scrubbing layer 32 is made of a flexible material, and a scrubbing protrusion is formed on the outer side of the scrubbing layer 32; when washing shoes, the scrubbing protrusion contacts the shoe surface and scrubs the shoe surface; the shoe washing assembly further includes a transmission shaft 125, which is transmission-connected to the scrubbing frame 31;
[0058] When washing shoes, the transmission shaft 125 can drive the brush rack 31 to rotate, and the brush layer 32 contacts and washes the shoe surface. 5 In view of the problem that the shoe washing assembly in the prior art cannot wash two shoes at the same time, this embodiment proposes:
[0059] The scrubbing frame 31 includes two hemispherical frames 311, and a scrubbing layer 32 is provided on the outer side of each hemispherical frame 311; the support frame 21 includes a support frame side wall 211, and the support frame side wall 211 includes two support frame side walls 211, which are arranged to form a cylindrical structure, and the cylindrical structure includes a first installation cavity and a second installation cavity; the support frame
[0060] The side wall 211 acts as a limit for the shoe, so that the shoe is set in a semicircular shape, the sole contacts the inner wall surface of the support frame side wall 211, and the shoe surface faces the brushing mechanism 3; this prevents the shoe from moving during the washing process, resulting in incomplete washing.
[0061] The deformation of shoes during washing is effectively reduced; the two shoes are arranged on the outside of the brushing mechanism 3, and the brushing mechanism 3 rotates and brushes the uppers of the two shoes; it is conducive to automatic brushing of shoes and improves the cleaning ratio; the shoes are placed in the first installation cavity, which is convenient for users to take and put shoes, greatly improving the user experience.
[0062] Furthermore, the scrubbing frame 31 further includes an intermediate frame 312, which is a cylindrical structure; the intermediate frame 312 is formed with an intermediate frame hole, which extends along the diameter direction of the intermediate frame 312; the transmission shaft 125
[0063] It is inserted into the hole of the intermediate frame and is in transmission connection with the intermediate frame 312;
[0064] The two hemispherical frames 311 are respectively arranged on the two end surfaces of the middle frame 312, and a brush layer 32 is sleeved on the outer side of each hemispherical frame 311; the transmission shaft 125 drives the middle frame 312 and the two hemispherical frames 311 to rotate, and then the brush layer 32 washes the corresponding shoes.
[0065] In order to solve the problem of complex component structure required for setting the brushing mechanism 3, the present embodiment proposes that the shoe washing assembly 5 further includes a plug-in rack 22, which is arranged on the support rack 21 and has a mounting hole 221; a through hole 222 is formed in the wall of the mounting hole 221, and a shaft sleeve 126 is provided in the through hole 222; the shaft sleeve 126 has a shaft sleeve hole, which is connected to the intermediate rack hole; the intermediate rack 312 is rotatably arranged in the mounting hole 221, and one end of the transmission shaft 125 passes through the shaft sleeve hole and the intermediate rack hole in sequence and is transmission-connected to the brushing rack 31; the two first mounting cavities are symmetrically arranged relative to the plug-in rack 22;
[0066] The transmission shaft 125 can drive the intermediate frame 312 and the hemispherical frame 311 to rotate relative to the plug-in frame 22.
[0067] In order to solve the problem that the rotation range of the brushing mechanism 3 is small, resulting in insufficient brushing and low brushing efficiency, this embodiment proposes that the plug-in frame 22 is further formed with an avoidance hole 224, which is connected to the mounting hole 221; the avoidance hole 224 allows the intermediate frame 312 and the hemispherical frame 311 to be mutually aligned in the avoidance hole 224 and the mounting hole 221.
[0068] The plug-in rack 22 can rotate 360 degrees, and the brushing mechanism 3 can rotate 360 degrees, which improves the freedom of the brushing rack 315 and ensures that the brushing rack 31 can provide sufficient and all-round washing power to the shoes.
[0069] In view of the problem that the installation process of the support frame 21, the plug-in frame 22 and the brushing mechanism 3 is complicated, this embodiment proposes that the shoe washing assembly also includes a bottom plate 23, which is used to cooperate with the bottom wall of the washing bucket 11; the plug-in frame 22 is set on the bottom plate 23 and is rigidly connected to the bottom plate 23; the plug-in frame 22 also forms a plug-in
[0070] The connecting post 223 is located on one side of the mounting hole 221; the connecting post 223 includes two connecting posts 223, which are respectively arranged on both sides of the mounting hole 221;
[0071] The support frame 21 is disposed on the bottom plate 23 and is formed with a plug-in slot 214 . The plug-in slot 214 is located between the two support frame side walls 211 . The plug-in slot 214 includes two;
[0072] The plug-in posts 223 and the plug-in slots 214 both extend along the axial direction of the washing tub 11 . The plug-in posts 223 are embedded in the corresponding plug-in slots 214 , so that the plug-in frame 22 is connected to the support frame 21 .
[0073] 5 Furthermore, the support frame 21 further includes a support frame top beam 213 and two support frame bottom walls 212.
[0074] The support frame bottom walls 212 are arranged at intervals, and each support frame bottom wall 212 is arranged at the bottom of the corresponding support frame side wall 211 and connected to the corresponding support frame side wall 211; the support frame bottom wall 212 and the support frame side wall 211 are both formed with a hollow structure 215; the hollow structure 215 facilitates full contact between washing water and shoes during washing, and prevents washing water from remaining in the support frame 21 during dehydration;
[0075] The support frame top beam 213 is set on the top of the support frame side wall 211, and the support frame top beam 213 connects the two support frame side walls 211; the support frame top beam 213 is formed with an operating part 216; operating the operating part 216 can separate the support frame 21 from the plug-in frame 22, which is easy to operate.
[0076] This embodiment further provides a washing machine, comprising a washing tub 11, a transmission mechanism 12, and any one of the above-described shoe-washing components; the shoe-washing component is detachably disposed within the washing tub 11, the rotation axis of the scrubbing mechanism 3 being the same as the rotation axis of the washing tub 11; a first axial hole and a second axial hole being formed on the bottom wall of the washing tub 11; a bottom plate 23 of the shoe-washing component having a bottom plate hole 231 formed therein, the two ends of the bottom plate hole 231 being in communication with the first axial hole and the shaft sleeve hole, respectively;
[0077] The transmission mechanism 12 includes a washing shaft 128 and a dehydration shaft 127. One end of the washing shaft 128 passes through the first shaft hole and the bottom plate hole 231 in sequence to the sleeve hole and is transmission-connected to one end of the transmission shaft 125; one end of the dehydration shaft 127 passes through the second shaft hole and is transmission-connected to the bottom plate 23.
[0078] Furthermore, the transmission mechanism 12 further includes a main pulley 121, a slave pulley 122, and a clutch 124. The main pulley 121 and the slave pulley 122 are connected by a belt 123. The clutch 124 includes an input end, a first output end, and a second output end. The input end is coaxially connected to the slave pulley 122, the first output end is connected to the washing shaft 128 via a one-way bearing, and the second output end is connected to the dehydration shaft 127. The main pulley 121 is drivingly connected to the drive motor 13.
[0079] When the driving motor 13 drives the main pulley 121 to rotate, the slave pulley 122 drives the first output end of the clutch 124 to rotate, and the first output end drives the brushing mechanism 3 to rotate through the washing shaft 128 and the transmission shaft 125, thereby washing the shoes;
[0080] When the driving motor 13 drives the main pulley 121 to rotate, the slave pulley 122 drives the second output end of the clutch 124 to rotate, and the second output end drives the bottom plate 23, the plug-in rack 22 and the support rack 21 to rotate synchronously through the dehydration shaft 127, thereby achieving dehydration; the structure is simple, the functions are diverse, and the range of use is wide.
[0081] The installation process of the plug-in frame 22, the support frame 21, the bottom plate 23 and the scrubbing mechanism 3 is as follows:
[0082] M222890CNI
[0083] First, install the scrubbing frame 31 at the mounting hole 221 of the plug-in frame 22, pass one end of the transmission shaft 125 through the shaft sleeve hole and the intermediate frame hole in sequence, and connect it to the intermediate frame 312; and sleeve the scrubbing layer 32 on the outer side of the hemispherical frame 311;
[0084] Secondly, the plug-in rack 22 and the scrubbing mechanism 3 are integrally arranged on the bottom plate 23;
[0085] Next, the support frame 21 is placed on the bottom plate 23 , and the bottom wall 212 of the support frame is connected to the bottom plate 23 , and the plug-in slot 214 is matched with the plug-in column 223 ;
[0086] Finally, the other end of the transmission shaft 125 is connected to the washing shaft 128 in a transmission manner.
[0087] While the exemplary embodiments of the present disclosure have been specifically illustrated and described above, it should be understood that the present disclosure is not limited to the detailed structures, configurations, or implementations described herein; rather, the present disclosure is intended to encompass various modifications and equivalent configurations within the spirit and scope of the appended claims.
Claims
1. A shoe washing assembly, characterized in that: The shoe washing assembly comprises: A support frame (21) includes two support frame side walls (211), wherein the two support frame side walls (211) are arranged to form a cylindrical structure; the cylindrical structure is formed with a first installation cavity and a second installation cavity, wherein the first installation cavity is used to place shoes to be washed; the support frame side walls (211) enable the shoes to be arranged in a semicircular shape; A brushing mechanism (3) is rotatably arranged in the second installation cavity and is used for brushing shoes arranged in the first installation cavity; the brushing mechanism (3) includes a brushing frame (31), and the brushing frame (31) includes an intermediate frame (312) and two hemispherical frames (311); the intermediate frame (312) is a cylindrical structure, and the intermediate frame (312) is formed with an intermediate frame hole, and the intermediate frame hole extends along the diameter direction of the intermediate frame (312); the two hemispherical frames (311) are respectively arranged on the two end faces of the intermediate frame (312), and the outer side of each hemispherical frame (311) is provided with a brushing layer (32); A transmission shaft (125) is inserted into the hole of the intermediate frame and is in transmission connection with the intermediate frame (312); When washing shoes, the transmission shaft (125) can drive the intermediate frame (312) and the two hemispherical frames (311) to rotate, and the scrubbing layer (32) contacts and washes the shoe surface.
2. The shoe washing assembly according to claim 1, characterized in that: The support frame (21) is formed with two first mounting cavities arranged opposite to each other, and the second mounting cavity is located between the two first mounting cavities; the two first mounting cavities are respectively located on both radial sides of the rotation axis of the brushing mechanism (3), and a shoe can be placed in each first mounting cavity.
3. The shoe washing assembly according to claim 2, characterized in that: The shoe washing assembly further comprises a plug-in frame (22), the plug-in frame (22) being arranged on the support frame (21) and the plug-in frame (22) being formed with a mounting hole (221); a hole wall of the mounting hole (221) being formed with a through hole (222), a shaft sleeve (126) being arranged in the through hole (222); the shaft sleeve (126) being formed with a shaft sleeve hole, the shaft sleeve hole being communicated with the intermediate frame hole; the intermediate frame (312) being rotatably arranged in the mounting hole (221), one end of the transmission shaft (125) sequentially passing through the shaft sleeve hole and the intermediate frame hole to be transmission-connected with the brushing frame (31); the two first mounting cavities being symmetrically arranged relative to the plug-in frame (22); The transmission shaft (125) can drive the intermediate frame (312) and the hemispherical frame (311) to rotate relative to the plug-in frame (22).
4. The shoe washing assembly according to claim 3, characterized in that: The plug-in frame (22) is further formed with an avoidance hole (224), which is communicated with the mounting hole (221); the avoidance hole (224) enables the intermediate frame (312) and the hemispherical frame (311) to rotate 360 degrees relative to the plug-in frame (22) within the avoidance hole (224) and the mounting hole (221).
5. The shoe washing assembly according to claim 3, characterized in that: The shoe washing assembly further comprises a bottom plate (23), the bottom plate (23) being used to cooperate with the bottom wall of the washing bucket; the plug-in rack (22) is arranged on the bottom plate (23) and the plug-in rack (22) is further formed with a plug-in column (223), and the plug-in column (223) is located on one side of the mounting hole (221); The support frame (21) is arranged on the bottom plate (23) and is formed with a plug-in slot (214); the plug-in column (223) and the plug-in slot (214) both extend along the axial direction of the washing tub (11); the plug-in column (223) is embedded in the plug-in slot (214), so that the plug-in frame (22) is connected to the support frame (21).
6. The shoe washing assembly according to claim 1, characterized in that: The support frame (21) includes a support frame side wall (211), a support frame top beam (213) and two support frame bottom walls (212); the support frame side wall (211) includes two, and the two support frame side walls (211) are arranged to form a cylindrical structure, and the cylindrical structure includes a first installation cavity and a second installation cavity; the support frame bottom wall (212) includes two, and the two support frame bottom walls (212) are arranged at intervals, and each support frame bottom wall (212) is arranged at the bottom of the corresponding support frame side wall (211); the support frame bottom wall (212) and the support frame side wall (211) are both formed with a hollow structure; The support frame top beam (213) is arranged on the top of the support frame side wall (211), and the support frame top beam (213) connects the two support frame side walls (211); the support frame top beam (213) is formed with an operating portion (216), and operating the operating portion (216) can separate the support frame (21) from the scrubbing frame (31).
7. A washing machine, characterized in that: The washing machine comprises a washing tub (11), a transmission mechanism, and a shoe-washing assembly according to any one of claims 1 to 6, wherein the shoe-washing assembly is detachably arranged in the washing tub (11); a first axial hole and a second axial hole are formed on the bottom wall of the washing tub (11); a bottom plate (23) of the shoe-washing assembly is formed with a bottom plate hole (231), and both ends of the bottom plate hole (231) are respectively connected to the first axial hole and the shaft sleeve hole; The transmission mechanism comprises a washing shaft (128) and a dehydration shaft (127); one end of the washing shaft (128) passes through the first shaft hole and the bottom plate hole (231) in sequence to the shaft sleeve hole and is transmission-connected to one end of the transmission shaft (125); one end of the dehydration shaft (127) passes through the second shaft hole and is transmission-connected to the bottom plate (23).
8. The washing machine according to claim 7, characterized in that The transmission mechanism further comprises a main pulley (121), a slave pulley (122) and a clutch (124); the main pulley (121) and the slave pulley (122) are connected via a belt (123); the clutch (124) comprises an input end, a first output end and a second output end; the input end is coaxially connected to the slave pulley (122); the first output end is connected to a washing shaft (128) via a one-way bearing; and the second output end is connected to a dehydration shaft (127); When the first output end rotates, the first output end drives the scrubbing mechanism (3) to rotate via the washing shaft (128) and the transmission shaft (125); When the second output end rotates, the second output end drives the bottom plate (23), the plug-in frame (22) and the support frame (21) to rotate synchronously through the dehydration shaft (127).
Citation Information
Patent Citations
Washing machine with shoe washing barrel
CN210684228U