Clothes processing equipment
By arranging lifting ribs in the clothes drum of the clothing processing device to cover the wire holes and passing the cables through the wire holes into the lifting ribs, the cable arrangement problems and airflow leakage problems are solved, and the reliability and ease of use of the equipment are improved.
Patent Information
- Application Number
- CN202422692508.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-05
- Publication Date
- 2025-09-09
- Estimated Expiration
- 2034-11-05
AI Technical Summary
In a clothes processing device, especially in a rotating clothes drum, it is difficult to arrange cables, and airflow easily leaks through the cable holes, affecting the reliability of the device.
By setting lifting ribs in the clothes drum to cover the wire holes, and passing the cables through the wire holes into the lifting ribs, the cable arrangement problem is solved. At the same time, the lifting ribs protect the wire holes to prevent air leakage.
The cable can be conveniently arranged in the clothes drum, the risk of air leakage is reduced, and the reliability and ease of use of the equipment are improved.
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Figure CN223316955U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of clothing processing, and in particular to a clothing processing device. Background Art
[0002] This section is intended to provide a background or context for the embodiments of the present application. No description herein is admitted to be prior art by virtue of its inclusion in this section.
[0003] In the related art, a clothes processing device is taken as an example of a clothes dryer. The clothes processing device has a clothes drum. During the process of drying clothes, the clothes drum is in a rotating state and there is a drying airflow in the clothes drum. Therefore, it is difficult to arrange cables in the clothes drum. Utility Model Content
[0004] In view of this, the present application hopes to provide a clothing processing device that reduces the difficulty of arranging cables in the clothes drum through the wire holes, and the lifting ribs can provide protection for the wire holes.
[0005] An embodiment of the present application provides a clothes processing device, comprising:
[0006] A clothes holding drum having a clothes holding cavity and a wire hole, wherein the wire hole communicates with the clothes holding cavity and the outside of the clothes holding drum;
[0007] A lifting rib is provided in the clothing holding cavity, and the lifting rib covers the thread hole;
[0008] A cable, at least a portion of which passes through the cable hole and extends into the clothing storage cavity.
[0009] In some embodiments, the clothes processing device includes electrical components, at least a portion of at least one of the electrical components is disposed in or on the lifting ribs, and the cable is electrically connected to the electrical component.
[0010] In some embodiments, the clothes processing device includes a wireless power receiving module, the wireless power receiving module is disposed in the clothes drum and is located outside the clothes drum, and the cable connects the wireless power receiving module and at least one of the electrical components.
[0011] In some embodiments, the wireless power receiving module is disposed at a rear portion of the clothes holding drum along a front-to-back direction, and the wire hole is formed on a side wall or an end wall of the rear portion of the clothes holding drum.
[0012] In some embodiments, the clothes processing device includes a wireless power transmitting module, and the wireless power receiving module is used to receive the electromagnetic signal transmitted by the wireless power transmitting module and generate an induced current.
[0013] In some embodiments, the lifting rib includes a main body and an extension portion, the main body is arranged on the circumferential surface of the clothing holding cavity, the extension portion is connected to the rear end of the main body and is arranged on the rear surface of the clothing holding cavity, the wire hole is formed on the rear end wall of the clothing holding barrel, and the extension portion covers the wire hole.
[0014] In some embodiments, the rearward surface of the extension portion fits into the rear surface of the clothing holding cavity.
[0015] In some embodiments, a communication channel extending along the length direction is formed in the lifting rib, and a portion of the cable is located in the communication channel.
[0016] In some embodiments, the laundry processing apparatus includes a conductivity detection device, and at least a portion of the conductivity detection device is disposed on an outer surface of the lifting rib.
[0017] In some embodiments, at least a portion of the conductivity detection device is located on an outer side surface of the lifting rib along the circumferential direction.
[0018] In the clothing processing device provided in the embodiment of the present application, at least part of the cable is passed through the wire hole, which reduces the difficulty of arranging the cable in the clothes drum. The wire hole is shielded by the lifting ribs, which can reduce the risk of fluid in the clothes chamber, such as air flow, leaking to the outside through the wire hole. The lifting ribs can be used to move the clothes in the clothes chamber and can also be reused to provide a shielding protection function for the wire hole, thereby protecting the wire hole from contact with the clothes to a certain extent, thereby improving reliability. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 Schematic diagram of the structure of a clothes processing device in one embodiment of the present application;
[0020] Figure 2 for Figure 1 The exploded schematic diagram of the structure in which the back plate is omitted;
[0021] Figure 3 Schematic diagram of the structure of the clothes drum, wireless power receiving module and cable in one embodiment of the present application;
[0022] Figure 4 Schematic diagram of the structure of the lifting rib and the conductivity detection device in one embodiment of the present application;
[0023] Figure 5 for Figure 4 a schematic diagram of another perspective of the structure shown;
[0024] Figure 6 for Figure 4 A schematic diagram of the structure shown in another perspective, wherein the electrical components are schematically shown;
[0025] Figure 7 for Figure 4 A schematic diagram of the structure shown in another perspective;
[0026] Figure 8 This is a structural diagram of a first conductivity detection device in an embodiment of the present application;
[0027] Figure 9 for Figure 8 A schematic diagram of the first conductivity detection device from another perspective;
[0028] Figure 10 Schematic diagram of the structure of a second conductivity detection device in one embodiment of the present application.
[0029] Description of Reference Numerals
[0030] 1. Clothes drum; 1a. Clothes chamber; 11. Rear end wall of clothes drum 1; 11a. Thread hole; 12. Side wall of clothes drum 1; 101. Drum body; 102. Rear end cover;
[0031] 2. Lifting rib; 2a. Connecting channel; 2aa. First sub-groove; 2ab. Second sub-groove; 21. Extension portion; 22. Main body; 221. Side plate; 222. Top plate; 223. End plate; 201. Partition plate; 202. Fixing portion; 203. Reinforcement rib;
[0032] 3. Electrical components; 4. Cables; 5. Wireless power receiving module; 7. Wireless power transmitting module; 8. Back panel;
[0033] 6. Conductivity detection device; 61. First electrode member; 611. First connecting portion; 612. First tooth; 6121. First protrusion; 62. Second electrode member; 621. Second connecting portion; 622. Second tooth; 6221. Second protrusion; 63. Fixed terminal; 64. First terminal; 65. Second terminal. DETAILED DESCRIPTION
[0034] In the absence of conflict, the embodiments and technical features in the embodiments of this application can be combined with each other. The detailed description in the specific implementation method should be understood as an explanation of the purpose of this application and should not be regarded as an improper limitation on this application.
[0035] It should be noted that in the embodiments of the present application, down refers to the direction of the ground, and up is opposite to down; front refers to the direction toward the user, and back is opposite to front. The up and down directions are perpendicular to the front and back directions. In the embodiments of the present application, the orientations or positional relationships of "up", "down", "front", and "back" are based on the orientations or positional relationships shown in the accompanying drawings. It should be understood that these orientation terms are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on the present application. The present application will be further described in detail below in conjunction with the accompanying drawings and specific embodiments.
[0036] The types of clothing processing devices provided in the embodiments of this application are not limited. The clothing processing device can be a clothes dryer or a washer-dryer. A clothes dryer is a device with a drying function. A washer-dryer is a device that integrates drying and washing functions, and the clothing chamber 1a can be used for both washing and drying. The washing function can include cleaning and dehydration. For example, the embodiments of this application are described using a clothes dryer as an example.
[0037] See also Figures 1 to 3 The clothing processing device provided in the embodiment of the present application includes a clothing drum 1, a cable 4 and a lifting rib 2.
[0038] The clothes holding drum 1 has a clothes holding cavity 1a and a thread hole 11a, which connects the clothes holding cavity 1a with the outside of the clothes holding drum 1. In other words, the thread hole 11a passes through the wall of the clothes holding drum 1.
[0039] The clothing storage cavity 1a can be used to place loads such as clothing. The clothing storage drum 1 can rotate, and the lifting ribs 2 can contact the clothing in the clothing storage cavity 1a and drive the clothing to rotate along with the clothing storage drum 1.
[0040] The lifting rib 2 is provided in the clothing storage cavity 1a, and the lifting rib 2 covers the wire hole 11a. At least a portion of the cable 4 is passed through the wire hole 11a and extends into the clothing storage cavity 1a.
[0041] In the clothing processing device provided in the embodiment of the present application, at least a portion of the cable 4 is passed through the wire hole 11a. The wire hole 11a reduces the difficulty of arranging the cable 4 in the clothing drum 1. The lifting ribs 2 are used to shield the wire hole 11a, which can reduce the risk of fluid in the clothing cavity 1a, such as air flow, leaking to the outside through the wire hole 11a. The lifting ribs 2 can be used to move the clothes in the clothing cavity 1a and can be reused to provide a shielding protection function for the wire hole 11a, thereby protecting the wire hole 11a from contact with the clothes to a certain extent, thereby improving reliability.
[0042] In some embodiments, at least a portion of the cable 4 is passed through the cable hole 11 a and extends into the lifting rib 2. For example, a portion of the cable 4 is located outside the clothes drum 1, and another portion of the cable 4 passes through the cable hole 11 a and extends into the lifting rib 2.
[0043] It can be understood that the cables 4 located in the clothing chamber 1a can be shielded by the lifting ribs 2. In other words, the cables 4 located in the clothing chamber 1a can extend into the lifting ribs 2.
[0044] In this embodiment, at least a portion of the cable 4 is hidden within the lifting ribs 2, which reduces the risk of clothing in the clothing chamber 1a contacting and abrading the cable 4, thereby resolving the difficulty in routing the cable 4 within the clothing drum 1. The lifting ribs 2 can also serve to provide shielding and protection for the cable 4, protecting it from contact with clothing to a certain extent and improving reliability.
[0045] For some examples, see Figure 1 、 Figure 3 and Figure 6 The clothing processing device includes an electrical component 3 , at least a portion of at least one electrical component 3 is disposed in or on the lifting rib 2 , and a cable 4 is electrically connected to the electrical component 3 .
[0046] The electrical component 3 may be a structural component that can realize at least one electrical function and / or is used in a circuit to realize at least one electrical function.
[0047] At least part of the electrical component 3 is disposed in the lifting rib 2 . The electrical component 3 may be entirely located in the lifting rib 2 , or part of the electrical component 3 may be located in the lifting rib 2 .
[0048] At least part of the electrical component 3 is arranged on the lifting rib 2 , the entire electrical component 3 may be located on the lifting rib 2 , or part of the electrical component 3 may be located on the lifting rib 2 .
[0049] The number of the electrical components 3 can be one, two, three or more.
[0050] In this embodiment, at least a portion of at least one electrical component 3 is disposed within the lifting rib 2, which provides a mounting location and protection for the at least one electrical component 3. A cable 4 is electrically connected to the electrical component 3, and the cable 4 can transmit electrical energy and / or electrical signals to the electrical component 3.
[0051] In some embodiments, the electrical component 3 includes at least one of a control board and a wireless receiving circuit board.
[0052] For example, the control board may be located in the lifting rib 2 ; or the wireless receiving circuit board may be located in the lifting rib 2 ; or both the control board and the wireless receiving circuit board may be located in the lifting rib 2 .
[0053] The control board can be used to implement input functions such as signal acquisition and processing, as well as output functions such as issuing control instructions to control the operation of actuators. For example, the control board can control the power supply on and off. The control board can also enable or disable the power transmission of the wireless power receiving module 5. The control board can also be used to implement other control functions.
[0054] The wireless receiving circuit board may include at least one of a modulation and demodulation circuit and a power output circuit. The modulation and demodulation circuit can realize signal conversion. The power output circuit can realize power output.
[0055] In this embodiment, at least one of the control board and the wireless receiving circuit board is disposed in the lifting rib 2 to protect the control board and / or the wireless receiving circuit board from contacting clothing, thereby reducing the risk of damage.
[0056] In some embodiments, the control board may include an MCU, ie, a Microcontroller Unit.
[0057] For some examples, see Figure 1 、 Figure 3 and Figure 6 The laundry processing device includes a wireless power receiving module 5, which is disposed on and outside the laundry drum 1. A cable 4 connects the wireless power receiving module 5 and at least one electrical component 3. In other words, a portion of the cable 4 is located outside the laundry drum 1, and another portion of the cable 4 is located within the laundry cavity 1a, for example, within the lifting ribs 2.
[0058] The wireless power receiving module 5 receives electrical energy wirelessly, and the cable 4 connects the wireless power receiving module 5 and at least one electrical component 3. The cable 4 can transmit the electrical energy of the wireless power receiving module 5 to the electrical component 3, that is, the wireless power receiving module 5 can provide electrical energy for the electrical component 3.
[0059] In this embodiment, the wireless power receiving module 5 is located outside the laundry drum 1 to prevent clothing and other loads within the laundry chamber 1a from contacting the wireless power receiving module 5, enhancing safety. The wireless power receiving module 5 receives power wirelessly, eliminating the need for conductive wires to connect to an external power source, thus preventing interference with the conductive wires during the rotation of the laundry drum 1. The wireless power receiving module 5, electrical components 3, and cables 4 all move synchronously with the laundry drum 1, ensuring that the rotation of the laundry drum 1 does not cause the cables 4 to become tangled or otherwise entangled.
[0060] In some embodiments, the wireless receiving circuit board can be disposed on the cable 4 between the control board and the wireless power receiving module 5. That is, the cable 4 can be divided into two sections, one of which connects the wireless power receiving module 5 and the wireless receiving circuit board, and the other connects the wireless receiving circuit board and the control board. The wireless receiving circuit board can process the electrical signal from the wireless power receiving module 5 and transmit it to the control board. For example, if the voltage of the control board is relatively low, the wireless receiving circuit board can reduce the voltage from the wireless power receiving module 5 to 12V or 5V before transmitting it to the control board.
[0061] It should be noted that the unit "V" is volt.
[0062] For some examples, see Figures 1 to 3 The wireless power receiving module 5 is arranged at the rear portion of the clothes drum 1 along the front-to-back direction, and the wire hole 11 a is formed on the side wall or end wall of the rear portion of the clothes drum 1 .
[0063] The rear portion of the clothes drum 1 refers to: the clothes drum 1 has a center line extending in the front-to-back direction and coinciding with the rotation axis, and the rear portion of the clothes drum 1 is a portion away from the clothing inlet with the midpoint of the center line of the clothes drum 1 as the dividing point.
[0064] The thread-passing hole 11 a is formed on the side wall of the rear portion of the clothes-containing drum 1 , which means that the thread-passing hole 11 a is formed on the wall surface surrounding the center line of the rear portion of the clothes-containing drum 1 .
[0065] The thread-passing hole 11 a is formed on the end wall of the rear portion of the clothes-containing drum 1 , which means that the thread-passing hole 11 a is formed on the wall of the rear portion of the clothes-containing drum 1 facing the rear side.
[0066] For example, the wireless power receiving module 5 is arranged outside the rear end wall 11 of the clothes drum 1, and the wire hole 11a is formed in the rear end wall 11 of the clothes drum 1. The wireless power receiving module 5 is arranged on the rear side of the clothes drum 1, and the wireless power receiving module 5 and the wire hole 11a are relatively close.
[0067] Exemplarily, the wireless power receiving module 5 is located in the central area of the rear end wall 11 of the clothes drum 1 .
[0068] In this embodiment, both the wireless power receiving module 5 and the wire passing hole 11a are located at the rear part of the clothes drum 1. For example, the wireless power receiving module 5 is arranged on the outer surface of the clothes drum 1 facing the rear side. The wireless power receiving module 5 and the wire passing hole 11a are relatively close to each other. One end of the cable 4 is connected to the wireless power receiving module 5, and the other end of the cable 4 passes through the wire passing hole 11a and enters the lifting rib 2, which can reduce the situation of cable 4 being entangled.
[0069] For some examples, see Figures 1 to 3The clothing processing device includes a wireless power transmitting module 7, and the wireless power receiving module 5 is used to receive the electromagnetic signal transmitted by the wireless power transmitting module 7 and generate an induced current.
[0070] The wireless power transmitting module 7 and the wireless power receiving module 5 transmit electric energy contactlessly, that is, the wireless power transmitting module 7 and the wireless power receiving module 5 transmit electric energy wirelessly, and the wireless power transmitting module 7 and the wireless power receiving module 5 can realize electric energy transmission without being connected by conductive wires.
[0071] In this embodiment, wireless power transmitting module 7 and wireless power receiving module 5 transmit power without contact, enabling power transmission between the relatively rotating laundry drum 1 and a relatively stationary component outside the laundry drum 1. This allows power transmission without wires, resulting in high reliability. Wireless power receiving module 5 can supply the received power to the electrical components 3 within the lifting ribs 2, meeting their power needs and improving the overall performance of the clothing processing device.
[0072] It is understood that in some examples, the wireless power transmitting module 7 and the wireless power receiving module 5 can not only transmit electrical energy, but also transmit signals. That is, the clothing information detected by the electrical components can be transmitted to the wireless power receiving module 5, and the wireless power receiving module 5 then transmits the information to the wireless power transmitting module 7.
[0073] Of course, in other embodiments, the wireless power transmitting module 7 and the wireless power receiving module 5 may also only transmit electrical energy. The clothing processing device may be provided with a wireless transmission unit. The wireless power receiving module 5 can provide electrical energy for the wireless transmission unit. The wireless transmission unit can receive clothing information detected by the electrical components and transmit it wirelessly.
[0074] In some embodiments, the clothes processing device includes a box body, the clothes holding drum 1 is rotatably disposed in the box body, and the wireless power transmission module 7 is disposed in the box body.
[0075] The box body is an exterior component of the clothes processing device, and can protect the structural components such as the clothes drum 1 inside the box body.
[0076] In this embodiment, the box remains stationary, and when the clothes drum 1 is in a rotating state, the wireless power transmitting module 7 and the wireless power receiving module 5 can still provide high-power electric energy to the electrical component 3 to meet the power demand.
[0077] For some examples, see Figures 1 to 6 , the lifting ribs 2 protrude from the inner surface of the clothes holding barrel 1. In other words, the lifting ribs 2 protrude from the surface of the clothes holding cavity 1a.
[0078] In some embodiments, the lifting ribs 2 protrude from the inner surface of the clothes drum 1, and the lifting ribs 2 are in a structure that is interrupted along the axial direction of the clothes drum 1. That is, in the axial direction of the clothes drum 1, the lifting ribs 2 are in a structure that is spaced apart in multiple sections.
[0079] For some examples, see Figures 1 to 6 , the lifting rib 2 is a structure that extends continuously along the axial direction of the clothes drum 1. That is to say, in the axial direction of the clothes drum 1, the lifting rib 2 is not interrupted.
[0080] It is understandable that the number of the lifting rib 2 can be one. The number of the lifting rib 2 can also be multiple, and the multiple lifting ribs 2 are arranged at intervals along the circumference of the clothes drum 1.
[0081] For some examples, see Figures 1 to 6 The lifting rib 2 includes a main body 22 and an extension 21. The main body 22 is arranged on the circumferential surface of the clothing cavity 1a. The extension 21 is connected to the rear end of the main body 22 and is arranged on the rear surface of the clothing cavity 1a. The wire hole 11a is formed on the rear end wall 11 of the clothing barrel 1, and the extension 21 covers the wire hole 11a.
[0082] Exemplarily, taking a plane perpendicular to the front-to-back direction as a projection plane, the projection of the wire hole 11 a may be located within the projection range of the extension portion 21 .
[0083] In this embodiment, without increasing the radial dimension of the lifting rib 2 as a whole, the extension portion 21 is arranged on the rear surface of the clothing cavity 1a to increase the volume inside the lifting rib 2, thereby accommodating structures such as the cable 4 and the electrical components 3. The extension portion 21 can also cover the wire hole 11a, thereby shielding the wire hole 11a.
[0084] For some examples, see Figures 1 to 5 The rearward surface of the extension 21 is in contact with the rear surface of the garment holding cavity 1a. In this way, the gap between the extension 21 and the rear surface of the garment holding cavity 1a can be reduced, reducing the risk of hair scraps in the garment holding cavity 1a entering the lifting rib 2 through the gap.
[0085] In the related art, the internal space of the lifting rib has many reinforcing ribs and a complex internal structure. For example, multiple reinforcing ribs isolate the internal space of the lifting rib into multiple chambers distributed along the length of the lifting rib. The volume of each chamber is very small and it is difficult to place electrical components or other structural parts.
[0086] For some examples, see Figure 1 、 Figure 3 、 Figure 5 and Figure 6 A communication channel 2a extending along the length direction is formed in the lifting rib 2, and part of the cable 4 is located in the communication channel 2a.
[0087] Specifically, the communication channel 2a extends along the length direction of the lifting rib 2, that is, the length direction of the communication channel 2a is consistent with the length direction of the lifting rib 2. The communication channel 2a is uninterrupted along the length direction of the lifting rib 2, and the communication channel 2a can be a channel that passes through along the length direction.
[0088] In this embodiment, a communication channel 2a extending along the length is formed within the lifting rib 2. This allows for a larger lengthwise dimension of the communication channel 2a, facilitating placement of the electrical component 3 or other structural components. The communication channel 2a provides a mounting location for the electrical component 3 or other structural components. The electrical component 3 or other structural components within the communication channel 2a can move with the laundry drum 1, thus facilitating assembly of the electrical component 3.
[0089] In one embodiment, please refer to Figure 1 、 Figure 2 and Figure 6 At least a portion of at least one electrical component 3 is disposed in the communicating channel 2a.
[0090] At least part of the electrical component 3 is disposed in the communication channel 2a. The electrical component 3 may be entirely located in the communication channel 2a, or only part of the electrical component 3 may be located in the communication channel 2a.
[0091] In this embodiment, at least a portion of the at least one electrical component 3 is disposed in the communication channel 2 a so as to provide an installation location for the at least one electrical component 3 .
[0092] In one embodiment, the rotation axis of the clothes drum 1 may be in a horizontal direction, that is, the clothes treating apparatus may be a drum-type clothes treating apparatus.
[0093] For example, if the rotation axis of the clothes drum 1 is horizontal, the front of the clothes drum 1 has a clothing access opening, allowing users to place clothes into or remove clothes from the clothing chamber 1a. As the clothes drum 1 rotates, it moves the clothes from the bottom to the top; under the action of gravity, the clothes fall from the top to the bottom. Thus, the clothes are dispersed, thrown, and changed in position by the combined effects of the clothes drum 1 and gravity.
[0094] For some examples, see Figure 2 The clothes holding tube 1 is roughly in the shape of a hollow cylinder.
[0095] In one embodiment, the clothes drum 1 may be a single drum structure. That is, the clothes processing device has only one drum body, the clothes drum 1.
[0096] In one embodiment, an outer barrel may be provided outside the clothes holding drum 1. In other words, the clothes processing device has two barrels.
[0097] The clothes holding drum 1 can be made of metal, such as stainless steel.
[0098] In one embodiment, please refer to Figure 3 and Figure 6 The control board is located within communication channel 2a. The wireless power receiving module 5, control board, and cable 4 all move synchronously with the clothes drum 1. Rotation of the clothes drum 1 prevents cable 4 from becoming tangled or tangled. Cable 4 transmits power from the wireless power receiving module 5 to the control board, ensuring high reliability.
[0099] For example, the wireless power transmission module 7 includes a transmitting coil, and the wireless power receiving module 5 includes a receiving coil. Energy can be transferred between the transmitting coil and the receiving coil via a magnetic field. For example, the transmitting coil can generate a changing magnetic field, and the receiving coil can generate a current through electromagnetic induction, thereby achieving energy transfer.
[0100] In this embodiment, when the clothes drum 1 is in the rotating state, the wireless power transmitting module 7 and the wireless power receiving module 5 can still provide high-power electric energy to the electrical devices such as the conductivity detection device 6 to meet the power demand.
[0101] In one embodiment, please refer to Figures 1 to 3 The wireless power transmission module 7 can be set on the back plate 8 of the box.
[0102] In some embodiments, the wireless power transmitter module 7 can be located on the front side of the back panel 8 of the cabinet. For example, the wireless power transmitter module 7 can be located at a location on the back panel 8 corresponding to the center of the clothes drum 1. The wireless power transmitter module 7 can be aligned with the wireless power receiver module 5. With a plane perpendicular to the front-to-back direction as the projection plane, the projection of the wireless power transmitter module 7 and the projection of the wireless power receiver module 5 at least partially overlap.
[0103] Exemplarily, the wireless power receiving module 5 includes a housing, which is annular in shape and contains a receiving coil, and the housing can be used to protect the receiving coil.
[0104] In some embodiments, the control board may be located in the communication channel 2a. In some embodiments, the wireless receiving circuit board may be located in the communication channel 2a. In some embodiments, both the control board and the wireless receiving circuit board may be located in the communication channel 2a.
[0105] In this embodiment, at least one of the control board and the wireless receiving circuit board is disposed in the communication channel 2a to protect the control board and / or the wireless receiving circuit board from contacting clothing, thereby reducing the risk of damage.
[0106] In related technologies, the dryness of clothes is judged by using sensors. The sensors are set at the air outlet of the clothes drum. Taking a dryer as an example, the sensor is set on the front support of the clothes processing equipment. The front support is located on the front side of the clothes drum. The sensor is relatively far away from the load such as clothes in the clothes chamber, which makes it easy to make inaccurate judgments.
[0107] In one embodiment, please refer to Figure 1 and Figure 4 The clothing processing device includes a conductivity detection device 6 , at least part of which is arranged on the outer surface of the lifting rib 2 .
[0108] The conductivity detection device 6 can detect the conductivity of the load, such as clothing, within the clothing chamber 1a. The clothing processing device can determine the degree of dryness based on the conductivity detected by the conductivity detection device 6. As an example, the principle of the conductivity detection device 6 can be as follows: the load within the clothing chamber 1a contacts the two electrodes of the conductivity detection device 6, causing the conductivity detection circuit to conduct. Loads with different moisture levels exhibit different resistance values. In other words, the moisture level of the load is correlated with the conductivity, and the degree of dryness can be determined based on the conductivity.
[0109] In this embodiment, the conductivity detection device 6 is arranged on the outer surface of the lifting rib 2. The conductivity detection device 6 can contact the load such as clothes in the clothing chamber 1a, so as to sense the drying degree of the clothes at close range, effectively improving the accuracy of judging the dryness degree of the clothes in the clothing drum 1.
[0110] In one embodiment, please refer to Figures 1 to 4 At least part of the conductivity detection device 6 is located on an outer side surface of the lifting rib 2 along the circumferential direction.
[0111] For example, the entire conductivity detection device 6 is located on one circumferential outer side surface of the lifting rib 2. In another example, a portion of the conductivity detection device 6 is located on one circumferential outer side surface of the lifting rib 2, and another portion of the conductivity detection device 6 is located on the top side surface of the lifting rib 2 radially away from the circumferential side wall 12 of the clothes holding drum 1.
[0112] In this embodiment, during the rotation of the clothes drum 1, when the clothes and the lifting ribs 2 move relative to each other, the clothes are likely to rub against the top side of the lifting ribs 2. Since the diameter of the clothes holding cavity 1a is limited, the size of the lifting ribs 2 is limited, the area of the top side of the lifting ribs 2 is small, and the area of the outer side of the lifting ribs 2 along the circumferential direction is relatively large, which is convenient for arranging the conductivity detection device 6. At least part of the conductivity detection device 6 is located on the outer side of the lifting ribs 2 along the circumferential direction. The size of the conductivity detection device 6 can be larger to improve the detection accuracy and reduce the wear between the clothes and the conductivity detection device 6.
[0113] In related technologies, sensors typically consist of two metal strips. A damp load contacts the two strips to complete the circuit, thereby determining the dryness of the clothes. The two strips can be considered to be a single resistor, and the conductivity detection sensitivity of the two strips is low, which can easily lead to problems in dryness determination in some scenarios. For example, if the load is coral fleece, it may not dry properly. Another example is that if the load is a mixed load of cotton, linen, and synthetic fibers, the cotton and linen may be over-dried due to the different conductivity values of the two fibers during drying.
[0114] In one embodiment, please refer to Figures 4 to 10 The conductivity detection device 6 includes a first electrode member 61 and a second electrode member 62. Both the first electrode member 61 and the second electrode member 62 are located on the outer surface of the lifting rib 2. The first electrode member 61 includes a first connecting portion 611 and at least two first teeth 612 connected to the first connecting portion 611. The second electrode member 62 includes a second connecting portion 621 and at least two second teeth 622 connected to the second connecting portion 621. The first teeth 612 and the second teeth 622 are arranged alternately. In other words, there is a second tooth 622 between any two adjacent first teeth 612, and the distance between the first teeth 612 and the second teeth 622 is greater than zero.
[0115] In this embodiment, the first teeth 612 and the second teeth 622 are alternately arranged to form a fork structure, a first tooth 612 and a second tooth 622 constitute an electrode pair, the conductivity detection device 6 has at least two electrode pairs, the clothes are in contact with at least two electrode pairs, each electrode pair is conductive and can be regarded as a resistor, at least two electrode pairs can be regarded as at least two resistors in parallel, so that the detection of conductivity changes is more sensitive, which improves the accuracy and sensitivity of the conductivity detection device 6, can avoid problems such as under-drying or over-drying to a certain extent, and improve the drying performance.
[0116] The specific structural form of the first teeth 612 is not limited and can be in the form of a sheet or a column. The specific structural form of the second teeth 622 is not limited and can be in the form of a sheet or a column. The cross-sectional shape of the column is not limited and can be circular or polygonal, such as a quadrilateral or pentagon. It is understood that the polygon can include a rounded polygon.
[0117] In one embodiment, please refer to Figures 8 to 10, the first connecting portion 611 and the second connecting portion 621 extend linearly and in parallel, and all the first teeth 612 and all the second teeth 622 are located between the first connecting portion 611 and the second connecting portion 621. In other words, the first connecting portion 611 and the second connecting portion 621 can both be substantially linear or curved. For example, the shape of the first tooth 612 is substantially the same as that of the second tooth 622, the first tooth 612 is substantially parallel to the second tooth 622, and the first connecting portion 611 and the second connecting portion 621 are both linear and substantially parallel.
[0118] In this embodiment, the first electrode member 61 and the second electrode member 62 have a simple and compact structure and a neat and beautiful appearance.
[0119] In one embodiment, please refer to Figure 1 、 Figures 8 to 10 The first electrode member 61 and the second electrode member 62 are substantially in the same plane. Thus, the first electrode member 61 and the second electrode member 62 are both substantially flat, occupying a smaller space, thus saving space in the clothing storage cavity 1a.
[0120] The first electrode member 61 and the second electrode member 62 are both made of conductive material. For example, the first electrode member 61 and the second electrode member 62 are both made of metal.
[0121] In one embodiment, please refer to Figure 4 、 Figure 7 and Figure 10 The first teeth 612 are partially protruded away from the lifting rib 2 to form a first protrusion 6121. The first protrusion 6121 not only enhances the structural strength of the first teeth 612, but also facilitates contact with clothing and increases the contact area with clothing.
[0122] In one embodiment, please refer to Figure 4 、 Figure 7 and Figure 10 The second teeth 622 are partially protruded away from the lifting rib 2 to form a second protrusion 6221. The second protrusion 6221 not only enhances the structural strength of the second teeth 622, but also facilitates contact with clothing and increases the contact area with clothing.
[0123] In one embodiment, please refer to Figure 4 、 Figure 7 and Figure 10 The surface of the first tooth 612 away from the lifting rib 2 is an arc surface. The surface of the first tooth 612 away from the lifting rib 2 needs to contact the clothes, and the arc surface can avoid hooking the clothes to a certain extent, reducing the mutual wear between the clothes and the first tooth 612.
[0124] In one embodiment, please refer to Figure 4 、 Figure 7 and Figure 10 The surface of the second teeth 622 away from the lifting rib 2 is an arc surface. The surface of the second teeth 622 away from the lifting rib 2 needs to contact the clothes, and the arc surface can avoid hooking the clothes to a certain extent, reducing the mutual wear between the clothes and the second teeth 622.
[0125] In one embodiment, the first protrusion 6121 may be in a convex arc shape. The surface of the first protrusion 6121 away from the lifting rib 2 is in an arc shape.
[0126] In one embodiment, the second protrusion 6221 may be in a convex arc shape. The surface of the second protrusion 6221 away from the lifting rib 2 is in an arc shape.
[0127] In one embodiment, please refer to Figure 5 ,as well as Figures 8 to 10 The conductivity detection device 6 includes a fixed terminal 63, which is connected to the first connecting portion 611, and the clothes drum 1 is connected to the fixed terminal 63. When the fixed terminal 63 is connected to the clothes drum 1, when the first electrode member 61 and the second electrode member 62 are conductive, the clothes drum 1 can be used as a part of the first electrode member 61, thereby reducing measurement errors caused by polarization.
[0128] The fixed terminal 63 may be made of a conductive material, for example, the fixed terminal 63 may be made of a metal material.
[0129] In one embodiment, please refer to Figures 5 to 10 The conductivity detection device 6 includes a first terminal 64 and a second terminal 65. The first terminal 64 is connected to the first electrode member 61, and the second terminal 65 is connected to the second electrode member 62. The first terminal 64 and the second terminal 65 both extend into the connecting channel 2a and are connected to the control board.
[0130] For example, the first terminal 64 is connected to one of the first teeth 612 , and the second terminal 65 is connected to one of the second teeth 622 .
[0131] In this embodiment, the first terminal 64 and the second terminal 65 are connected to the control board to form an electrical circuit. The first terminal 64, the second terminal 65, and the control board are all located in the communication channel 2a, which minimizes contact between the first terminal 64, the second terminal 65, and the control board, thereby improving safety.
[0132] In some embodiments, the first electrode member 61 may be an integrally formed structure, that is, the first connecting portion 611 and the first teeth 612 may be integrally formed.
[0133] In some embodiments, the first electrode member 61 , the first terminal 64 and the fixed terminal 63 may be an integrally formed structure.
[0134] In some embodiments, the second electrode member 62 may be an integrally formed structure, that is, the second connecting portion 621 and the second teeth 622 may be integrally formed.
[0135] In some embodiments, the second electrode member 62 and the second terminal 65 may be an integrally formed structure.
[0136] It should be understood that, unless otherwise specified, the circumferential direction in the embodiments of the present application refers to the direction surrounding the rotational axis of the laundry drum 1, and the radial direction refers to the direction along the radius of the laundry drum 1. The circumferential sidewall 12 of the laundry drum 1 is the sidewall surrounding the rotational axis of the laundry drum 1. The circumferential surface of the laundry chamber 1a is the surface circumferentially surrounding the rotational axis of the laundry chamber 1a.
[0137] In one embodiment, please refer to Figure 1 、 Figure 2 、 Figure 4 and Figure 5 The communication channel 2a extends from the main body 22 to the extension portion 21. For example, the communication channel 2a can extend from the main body 22 to the extension portion 21 without interruption. The space in the main body 22 and the space in the extension portion 21 are both the communication channel 2a.
[0138] In this embodiment, without increasing the radial dimension of the lifting rib 2 as a whole, the extension portion 21 is arranged on the rear surface of the clothing holding cavity 1a to increase the volume of the connecting channel 2a, thereby accommodating structures such as the cable 4 and the control panel; the extension portion 21 can cover a partial area of the rear surface of the clothing holding cavity 1a, so as to shield structures such as the wire hole 11a of the rear end wall 11 of the clothing holding drum 1.
[0139] In one embodiment, please refer to Figures 4 to 7 ,as well as Figure 10 At least a portion of the conductivity detection device 6 is located on a side surface of the main body 22 along the circumferential direction. The area of the side surface of the main body 22 along the circumferential direction is relatively large, which facilitates the layout of the conductivity detection device 6. At least a portion of the conductivity detection device 6 is located on the side surface of the main body 22 along the circumferential direction. The size of the conductivity detection device 6 can be larger, and the number and density of the first teeth 612 and the second teeth 622 can be increased to improve detection accuracy and reduce wear between clothing and the first electrode member 61 and the second electrode member 62.
[0140] In one embodiment, please refer to Figure 1 ,as well as Figures 5 to 7 The extension portion 21 has an opening toward the rear side, and the rear surface of the clothing storage chamber 1 a can shield the opening of the extension portion 21 toward the rear side.
[0141] In one embodiment, please refer to Figure 1 、 Figure 2 and Figure 4The extension portion 21 can extend toward the rotation axis of the clothes drum 1. In the radial direction of the clothes drum 1, the vertex of the extension portion 21 protrudes from the vertex of the main body portion 22. In other words, the outer contours of the main body portion 22 and the extension portion 21 are substantially L-shaped.
[0142] In one embodiment, please refer to Figure 1 ,as well as Figures 4 to 7 The main body 22 includes two side panels 221, a top panel 222, and an end panel 223. The side panels 221 are spaced apart circumferentially. The bottom ends of the two side panels 221 are connected to the circumferential sidewalls 12 of the laundry tub 1. The top panel 222 is connected to the top ends of the two side panels 221. The end panel 223 is connected to the front ends of the two side panels 221. The internal space defined by the top panel 222, the end panel 223, and the two side panels 221 constitutes the communicating channel 2a. The first and second electrode members 61, 62 are both located on the outer surfaces of the side panels 221. The first and second electrode members 61, 62 are approximately in the same plane to facilitate contact with the side panels 221.
[0143] In one embodiment, please refer to Figures 5 to 7 The distance between the top ends of the two side panels 221 is smaller than the distance between the bottom ends of the two side panels 221. That is, with the plane perpendicular to the front-to-back direction as the projection surface, the projection outline of the main body 22 is roughly trapezoidal.
[0144] In one embodiment, please refer to Figure 2 and Figure 3 The clothes drum 1 includes a drum body 101 and a rear end cover 102. The front side of the drum body 101 has a clothing access opening, and the rear end cover 102 closes the rear end opening of the drum body 101. The wire hole 11a can be formed in the rear end cover 102, and the wireless power receiving module 5 can be arranged on the rear side of the rear end cover 102.
[0145] In one embodiment, please refer to Figures 1 to 6 The lifting rib 2 includes a partition plate 201 located within the connecting channel 2a. The partition plate 201 divides the connecting channel 2a into a first sub-groove 2aa and a second sub-groove 2ab. The first sub-groove 2aa is located on the side of the second sub-groove 2ab radially away from the circumferential wall 12 of the laundry drum 1. For example, the first sub-groove 2aa can be a through-groove extending in the longitudinal direction. At least one electrical component 3 is located within the first sub-groove 2aa. In other words, the first sub-groove 2aa is located on the side of the second sub-groove 2ab closer to the rotation axis of the laundry drum 1.
[0146] In this embodiment, the partition plate 201 divides the communication channel 2a into a first sub-groove 2aa and a second sub-groove 2ab distributed radially, rather than multiple sub-grooves distributed in the front-to-back direction. The first sub-groove 2aa can extend from the front end of the lifting rib 2 to the rear end of the lifting rib 2, so that the first sub-groove 2aa can accommodate a long electrical component 3 or other structural parts.
[0147] In one embodiment, please refer to Figures 1 to 6 The lifting rib 2 includes a fixing portion 202, which is located in the second sub-groove 2ab and connected to the partition plate 201. The fastener is provided through the fixing portion 202 and the peripheral side wall 12 of the clothes holding drum 1. The fastener is provided through the fixing portion 202 and the peripheral side wall 12 of the clothes holding drum 1. The fixing portion 202 is located in the second sub-groove 2ab, which can prevent the fastener and the fixing portion 202 from interfering with the layout of the electrical components 3.
[0148] In one embodiment, please refer to Figure 1 、 Figure 2 、 Figure 5 and Figure 6 The partition plate 201 may be substantially parallel to the rotation axis of the clothes drum 1, thereby dividing the communication channel 2a into a first sub-groove 2aa and a second sub-groove 2ab distributed radially along the clothes drum 1. The partition plate 201 may connect the groove wall surface of the communication channel 2a along the circumferential direction.
[0149] Compared to related art designs in which the internal space within the lifting rib is divided into multiple sub-grooves distributed along the front-to-back direction, in this embodiment, the volume of the first sub-groove 2aa can be larger to facilitate the placement of the electrical components 3 and other structural parts. The volume of the second sub-groove 2ab can be larger to facilitate the placement of fasteners and the fixing portion 202. The second sub-groove 2ab is close to the peripheral side wall 12 of the clothes drum 1, reducing assembly difficulty.
[0150] Fasteners include but are not limited to screws or bolts, etc.
[0151] In one embodiment, please refer to Figure 5 and Figure 6 The lifting rib 2 includes a reinforcing rib 203 located in the second sub-groove 2ab, the reinforcing rib 203 connecting the partition plate 201 and the groove wall of the second sub-groove 2ab. The reinforcing rib 203 is used to further increase the structural strength of the lifting rib 2.
[0152] For some examples, see Figure 5 There can be multiple partition plates 201, which are spaced apart along the front-to-back direction. This effectively increases the structural strength of the lifting rib 2 at multiple locations along the front-to-back direction, and facilitates the placement or removal of the electrical components 3 and other structural parts in the first sub-groove 2aa.
[0153] In one embodiment, the lifting ribs 2 can be in sealing contact with the surface of the clothing holding cavity 1a. For example, the extension portion 21 is in sealing contact with the surface of the clothing holding cavity 1a, and the main body portion 22 is in sealing contact with the surface of the clothing holding cavity 1a. Specifically, the two side panels 221 and one end panel 223 are in sealing contact with the circumferential surface of the clothing holding cavity 1a. With such a design, the connecting channel 2a is roughly a sealed chamber. In the case where the clothing processing device is a washing and drying device, the probability of water and the like entering the connecting channel 2a is reduced to avoid affecting electrical components such as the first terminal 64, the second terminal 65, the cable 4 and the control panel in the connecting channel 2a.
[0154] In some embodiments, the cable 4 can be sealed and passed through the cable hole 11a. In other words, the gap between the cable 4 and the wall of the cable hole 11a can be sealed. For example, a sealing ring or other sealing structure can be used to seal the gap between the cable 4 and the wall of the cable hole 11a. In this way, if the laundry processing device is a washer-dryer, water or air leakage between the cable 4 and the wall of the cable hole 11a can be prevented.
[0155] In one embodiment, the clothing processing apparatus includes a circulating air duct. The rear end wall 11 of the laundry drum 1 is formed with at least one air inlet communicating with the laundry chamber 1a. The circulating air duct connects the air inlet and the air outlet of the laundry chamber 1a. For example, the rear end cover 102 is formed with an air inlet. The circulating air duct is configured to provide a circulating airflow that repeatedly flows through the laundry chamber 1a. Airflow in the circulating air duct can enter the laundry chamber 1a through the air inlet, and air within the laundry chamber 1a can enter the circulating air duct through the air outlet. Air can circulate between the circulating air duct and the laundry chamber 1a.
[0156] It is understandable that the number of the air inlets may be one or more, for example, two, three, four or five, etc.
[0157] In one embodiment, the clothing processing device includes an air hood and a base. The base is located in a housing and below the clothes drum 1. The rear side wall of the housing is formed with a return air port and an air supply port connected to the air inlet. The height of the return air port is lower than that of the air supply port. The base is formed with a heat exchange channel. The two ends of the heat exchange channel are respectively connected to the air outlet and the return air port. The air hood is arranged around the air supply port and the return air port, and together with the rear side wall of the housing, defines the air supply channel. The heat exchange channel and the air supply channel together constitute a circulating air duct. The heat exchange channel is located upstream of the air supply channel along the direction of air flow in the circulating air duct. The air flow flows through the air outlet, the heat exchange channel, the return air port, the air supply channel, the air supply port and the air inlet in sequence.
[0158] The number of air supply outlets is not limited, and the air supply outlet can be one or more, for example, there can be two, three, four or five air supply outlets, etc.
[0159] In one embodiment, the clothing processing apparatus includes a heat exchange component located within a heat exchange channel. The heat exchange component is configured to exchange heat with the airflow within the heat exchange channel, thereby achieving dehumidification and heating. The hot and humid airflow within the clothing storage chamber 1a enters the heat exchange channel through the air outlet, exchanges heat and mass with the heat exchange component, and is converted into a dry and hot airflow. The dry and hot airflow then enters the air supply channel through the return air outlet, and then flows back into the clothing storage chamber 1a through the air supply outlet and air inlet.
[0160] In some embodiments, the heat exchange assembly includes a condenser and an evaporator, and the clothing processing device further includes a compressor and a throttling device. The compressor, condenser, throttling device, and evaporator are connected by pipes to form a heat pump system, and the refrigerant can circulate within the heat pump system. The airflow in the circulating air duct exchanges heat with the refrigerant in the evaporator and condenser to form a dry hot airflow. The evaporator is used to cool and dehumidify the hot and humid airflow from the clothing storage chamber 1a into a dry cold airflow; the condenser heats the dry cold airflow into a dry hot airflow that flows back into the clothing storage chamber 1a.
[0161] The heat pump system works as follows: the compressor draws in low-pressure gaseous refrigerant and compresses it to high pressure before discharging it. The discharged high-pressure refrigerant enters the condenser, where it transfers heat to the airflow, condensing it into a high-pressure liquid. The high-pressure liquid refrigerant flows through a throttling device, reducing the pressure and transforming into a low-pressure, low-temperature gas-liquid two-phase mixture before entering the evaporator. The refrigerant in the evaporator absorbs heat from the airflow and transforms into a low-pressure gas. The low-pressure gaseous refrigerant is then drawn back into the compressor. This cycle repeats, achieving heat exchange. Specifically, the evaporator cools and dehumidifies the hot and humid airflow from the clothing storage chamber 1a, forming a dry, cold airflow. The condenser heats the dry, cold airflow into a dry, hot airflow, which then flows back into the clothing storage chamber 1a. This dry, hot airflow returns to the clothing storage chamber 1a, where it comes into contact with the damp clothes, forming a humid, hot airflow again, completing a drying cycle. By repeatedly running the drying cycle, circulating airflow is continuously supplied to the clothing storage chamber 1a, drying the clothes.
[0162] For example, both the evaporator and the condenser may be fin-tube heat exchangers.
[0163] Exemplarily, the throttling device includes but is not limited to an electronic expansion valve and the like.
[0164] In one embodiment, the clothing processing device includes a fan for driving airflow. Exemplarily, the fan is located within the heat exchange channel, between the heat exchange assembly and the return air vent. During the drying process, the fan drives the airflow through the clothing, passing through the evaporator and condenser, and then blowing toward the clothing to form a circulating airflow. This fan accelerates airflow and improves drying efficiency.
[0165] In the description of this application, the reference terms "in one embodiment", "in some embodiments" or "exemplary" etc. mean that the specific features, structures, materials or characteristics described in conjunction with the embodiment or example are included in at least one embodiment or example of the embodiments of the present application. In this application, the schematic representations of the above terms do not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in an appropriate manner in any one or more embodiments or examples. In addition, those skilled in the art can combine different embodiments or examples described in this application and features of different embodiments or examples without contradiction.
[0166] The above description is merely a preferred embodiment of the present application and is not intended to limit the present application. Those skilled in the art will readily appreciate that various modifications and variations are possible. Any modifications, equivalent substitutions, or improvements made within the spirit and principles of the present application are intended to be within the scope of protection of the present application.
Claims
1. A clothes processing device, characterized in that: include: A clothes holding drum having a clothes holding cavity and a wire hole, wherein the wire hole communicates with the clothes holding cavity and the outside of the clothes holding drum; A lifting rib is provided in the clothing holding cavity, and the lifting rib covers the thread hole; A cable, at least a portion of which passes through the cable hole and extends into the clothing storage cavity.
2. The clothes processing device according to claim 1, characterized in that The clothes processing device includes electrical components, at least a portion of at least one of the electrical components is disposed in or on the lifting ribs, and the cable is electrically connected to the electrical component.
3. The clothes processing device according to claim 2, characterized in that: The clothes processing device includes a wireless power receiving module, which is arranged in the clothes drum and located outside the clothes drum. The cable connects the wireless power receiving module and at least one of the electrical components.
4. The clothes processing device according to claim 3, characterized in that: The wireless power receiving module is arranged at the rear portion of the clothes holding drum along the front-to-back direction, and the wire hole is formed on the side wall or end wall of the rear portion of the clothes holding drum.
5. The clothes processing device according to claim 3, characterized in that: The clothes processing device includes a wireless power transmitting module, and the wireless power receiving module is used to receive the electromagnetic signal transmitted by the wireless power transmitting module and generate an induced current.
6. The clothes processing device according to claim 1, characterized in that: The lifting rib includes a main body and an extension portion, the main body is arranged on the circumferential surface of the clothing holding cavity, the extension portion is connected to the rear end of the main body and is arranged on the rear surface of the clothing holding cavity, the wire hole is formed on the rear end wall of the clothing holding barrel, and the extension portion covers the wire hole.
7. The clothes processing device according to claim 6, characterized in that: The rearward surface of the extension portion is in contact with the rear surface of the clothing storage cavity.
8. The clothes processing device according to claim 1, characterized in that: A communication channel extending along the length direction is formed in the lifting rib, and a portion of the cable is located in the communication channel.
9. The clothes processing device according to any one of claims 1 to 8, characterized in that: The laundry processing device includes a conductivity detection device, at least part of which is disposed on an outer surface of the lifting rib.
10. The clothes processing device according to claim 9, characterized in that: At least a portion of the conductivity detection device is located on an outer side surface of the lifting rib along the circumferential direction.