A laundry treating apparatus

By adopting a wireless power supply component and conductive wire routing port design in the garment processing equipment, the problem of electrical components not being able to be directly placed inside the rotating drum is solved, achieving highly reliable and accurate garment status detection and improving equipment performance.

CN224678384UActive Publication Date: 2026-08-25WUXI LITTLE SWAN ELECTRIC CO LTD
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Patent Information

Application Number
CN202422730530.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-08
Publication Date
2026-08-25
Estimated Expiration
2034-11-08

AI Technical Summary

Technical Problem

In existing garment processing equipment, electrical components cannot be directly placed inside the rotating garment processing drum, resulting in low accuracy in detecting the garment's condition and the inability to perform specific functions.

Method used

It adopts a wireless power supply component, and realizes the transmission of electrical energy and signals through electromagnetic induction between the transmitting module and the receiving module. The electrical components can be set inside the clothing processing drum and electrically connected by conductive wires and the wiring port of the bracket, reducing the difficulty of wiring.

Benefits of technology

It improves the reliability of electrical components and the accuracy of garment condition detection, reduces wiring complexity, and enhances the overall performance of garment processing equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application relates to the clothes processing technical field and provides a clothes processing device, which comprises a box body, a clothes processing drum and a wireless power supply assembly. The clothes processing drum has a clothes processing cavity. The wireless power supply assembly comprises a support and a conductive wire. The support is arranged on at least one of the clothes processing drum and the box body and is used for supporting at least a part of the conductive wire. At least one of the supports is formed with a wire passing opening for the conductive wire to pass through. The wireless power supply assembly can realize power transmission without being connected with a wire, and the reliability is high. The wire passing opening is provided with the conductive wire, so that the energized device in the wireless power supply assembly is electrically connected with the conductive wire, the winding and other conditions in the conductive wire arrangement process are reduced, and the wiring difficulty is reduced.
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Description

Technical Field

[0001] This application relates to the field of clothing processing technology, and more particularly to a clothing processing device. Background Technology

[0002] In related technologies, taking a clothes dryer as an example, since the clothes processing drum is in a rotating state, considering the issues of power supply and signal transmission, electrical components such as units that detect the status of clothes and units that perform specific functions cannot be directly placed inside the clothes processing drum. If it is necessary to determine whether the clothes are completely dried, the unit that detects the status of clothes can only be placed at the air inlet and outlet of the clothes processing drum. The difference in airflow at the air inlet and outlet is used to determine whether the clothes are dried. This method has low detection accuracy, and the electrical components cannot sense the status of clothes at close range and perform specific functions. Utility Model Content

[0003] In view of this, the present application aims to provide a clothing processing device that transmits electrical energy through a wireless power supply component, thereby increasing the reliability of the clothing processing device.

[0004] This application provides a garment processing device, including:

[0005] Box;

[0006] A garment processing drum with a garment processing chamber;

[0007] A wireless power supply component includes a bracket and a conductive wire. The bracket is disposed at least one of the clothing processing drum and the housing, and the bracket is used to support at least a portion of the conductive wire. At least one of the brackets has a cable routing opening for the conductive wire to pass through.

[0008] In some embodiments, the wireless power supply component includes a transmitting module with a transmitting coil, the bracket includes a first bracket, the conductive wire includes a first conductive wire, the wiring port includes a first wiring port formed in the first bracket, and the first conductive wire passes through the first wiring port to connect to the transmitting coil.

[0009] In some embodiments, the transmitting module includes a transmitting circuit board, the transmitting coil and the transmitting circuit board are located on opposite sides of the first bracket, and the first conductive line passes through the first wiring port to connect the transmitting coil and the transmitting circuit board.

[0010] In some embodiments, the housing includes a rear panel, the transmitting circuit board is disposed on the side of the rear panel away from the clothing processing drum, the first bracket is disposed on the side of the rear panel close to the clothing processing drum, and the transmitting coil is disposed on the side of the first bracket close to the clothing processing drum.

[0011] In some embodiments, the first bracket includes an annular body and a wire guard connected to the annular body, the first wire outlet is formed in the wire guard, the transmitting coil is disposed on the side of the annular body near the garment processing drum, and a portion of the first conductive wire passes through the first wire outlet and is located on the side of the wire guard away from the garment processing drum.

[0012] In some embodiments, a thread guard groove is formed on the side of the thread guard portion away from the garment processing drum, and a portion of the first conductive wire is located in the thread guard groove.

[0013] In some embodiments, the wireless power supply component includes a transmitting module and a receiving module, the receiving module being used to receive electromagnetic signals emitted by the transmitting module and generate induced current, and at least one of the transmitting module and the receiving module being electrically connected to the conductive wire.

[0014] In some embodiments, the transmitting module includes a transmitting coil, and the receiving module includes a receiving coil. The receiving coil is used to receive electromagnetic signals emitted by the transmitting coil and generate induced current. At least one of the transmitting coil and the receiving coil is electrically connected to the conductive wire, and the transmitting coil and the receiving coil are arranged at a relative interval.

[0015] In some embodiments, the transmitting coil, the receiving coil, and the clothing processing tube are arranged coaxially.

[0016] In some embodiments, the garment processing device includes electrical components disposed within the garment processing chamber, the wireless power supply component includes a receiving module, the conductive wire includes a second conductive wire, the garment processing tube forms a through-hole, the second conductive wire passes through the through-hole, and electrically connects the receiving module and at least one of the electrical components.

[0017] The garment processing device provided in this application embodiment has several advantages. First, the wireless power supply component enables power transmission without the need for wires, resulting in high reliability. Furthermore, the electrical components of the garment processing device can be housed within the garment processing drum, powered by the wireless power supply component. This facilitates meeting the power requirements of the electrical components and allows for close-range sensing of the garment's condition, improving the overall performance of the garment processing device. Second, at least one bracket has a wiring port through which a conductive wire is threaded, allowing at least one energized device in the wireless power supply component to connect electrically with the conductive wire. This reduces the likelihood of wire tangling during wiring and lowers the complexity of the cabling process. Attached Figure Description

[0018] Figure 1 This is an exploded view of a partial structure of a garment processing device according to an embodiment of this application;

[0019] Figure 2 for Figure 1 An explosion diagram of the structure shown from another perspective;

[0020] Figure 3 This is a schematic diagram of the assembly of the first bracket and the first conductive wire according to an embodiment of this application;

[0021] Figure 4 This is a schematic diagram of a transmitting coil, a first support, and a first conductive wire according to an embodiment of this application;

[0022] Figure 5 This is a schematic diagram of the structure of the second support in one embodiment of this application;

[0023] Figure 6 This is a schematic diagram of the structure of the second bracket according to another embodiment of this application;

[0024] Figure 7 for Figure 6 The diagram shows the assembly of the second bracket, receiving coil, second conductive wire, and back cover.

[0025] Figure 8 This is an assembly diagram of the lifting rib and detection unit according to an embodiment of this application;

[0026] Figure 9 This is a schematic diagram of the detection electrode in one embodiment of this application;

[0027] Figure 10 This is a schematic diagram showing the cooperative positions of the transmitting module and the receiving module of the clothing processing device in another embodiment of this application;

[0028] Figure 11 This is a schematic diagram showing the cooperative positions of the transmitting module and the receiving module of the clothing processing device in another embodiment of this application;

[0029] Figure 12 This is a schematic diagram showing the cooperative positions of the transmitting module and the receiving module of the clothing processing device in another embodiment of this application.

[0030] Explanation of reference numerals in the attached figures

[0031] 1-Clothing processing equipment;

[0032] 10-Clothes handling drum; 10a-Clothes handling chamber; 101-Drum body; 102-Rear cover; 10b-Threading hole;

[0033] 11-Box body; 111-Rear panel;

[0034] 12-Transmitting module; 121-Transmitting coil; 122-First bracket; 1221-Annular body; 1221a-First annular groove; 1222-Connecting ear; 1223-Wire protection part; 1223a-Wire protection groove; 123-Transmitting circuit board 123;

[0035] 13-Receiver module; 131-Receiver coil; 132-Second bracket; 1321-Annular part; 1321a-Second annular groove; 1322-Connecting part; 1323-Extension structure; 133-Receiver circuit board;

[0036] 14-Lifting rib;

[0037] 15-Detection unit; 151-Detection electrode; 1511-First connection structure; 1512-First tooth; 1513-Second connection structure; 1514-Second tooth;

[0038] 16-Base; 17-Rear cover; 18-Conical cap; 1a-Cable port; 1aa-First cable port; 19-Conductive wire; 19a-First conductive wire; 19b-Second conductive wire; 20-Bracket. Detailed Implementation

[0039] To make the objectives, technical solutions, and advantages of this application clearer, the following detailed description is provided in conjunction with the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative and not intended to limit the scope of this application.

[0040] The specific technical features described in the specific embodiments can be combined in any suitable manner without contradiction. For example, different combinations of specific technical features can form different embodiments and technical solutions. To avoid unnecessary repetition, the various possible combinations of the specific technical features in this application will not be described separately.

[0041] In the following description, the terms "first," "second," etc., are used merely to distinguish different objects and do not indicate that the objects have the sameness or relationship. It should be understood that the directional descriptions "above," "below," "outside," and "inside" refer to the orientation under normal use conditions, while "left" and "right" refer to the left and right directions shown in the corresponding diagrams, which may or may not be the left and right directions under normal use conditions.

[0042] It should be noted that the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus. Unless otherwise specified, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes that element. "A plurality of" means two or more.

[0043] In the embodiments of this application, please refer to Figures 1 to 12 The type of clothing processing device 1 is not limited; it can be a dryer or a washer-dryer combo, etc., and is not restricted here. Exemplarily, this application embodiment uses a dryer as an example for illustration.

[0044] Please see Figure 1 The garment processing cylinder 10 can be a single-cylinder structure, meaning that the garment processing device 1 has only one cylinder, the garment processing cylinder 10. Of course, in other examples, the garment processing device 1 may also include an outer cylinder, which is located circumferentially outside the garment processing cylinder 10.

[0045] This application describes an example of a garment processing device 1 with a single-tube structure.

[0046] For example, the garment processing drum 10 is generally hollow and cylindrical. The garment processing drum 10 may be made of metal, such as stainless steel, etc., and there is no limitation on this.

[0047] This application provides a garment processing device 1, please refer to... Figures 1 to 7 The garment processing device 1 includes a housing 11, a garment processing cylinder 10, and a wireless power supply component.

[0048] Please see Figures 1 to 2 The clothing processing cylinder 10 has a clothing processing chamber 10a.

[0049] The garment handling chamber 10a is used for placing and drying clothes, and the garment handling drum 10 can rotate the clothes. Taking a tumble dryer as an example, the rotation axis of the garment handling drum 10 is horizontal, and the front of the garment handling drum 10 has a garment inlet, through which the user puts or takes out the garment handling chamber 10a. During the rotation of the garment handling drum 10, the clothes are moved from bottom to top, and under the action of gravity, the clothes fall from top to bottom. In this way, the clothes are dispersed, shaken, and their posture is changed under the combined action of the garment handling drum 10 and gravity.

[0050] Please see Figures 1 to 7 The wireless power supply component includes a bracket 20 and a conductive wire 19. The bracket 20 is disposed on at least one of the clothing handling tube 10 and the housing 11, and the bracket 20 is used to support at least a portion of the conductive wire 19. At least one bracket 20 has a cable passage 1a for the conductive wire 19 to pass through.

[0051] The bracket 20 being provided in at least one of the clothing processing drum 10 and the box 11 means that only the clothing processing drum 10 may be provided with the bracket 20; only the box 11 may be provided with the bracket 20; or both the clothing processing drum 10 and the box 11 may be provided with the bracket 20.

[0052] The bracket 20 is used to support at least a portion of the conductive wire 19, meaning that at least a portion of the conductive wire 19 is located on the bracket 20, and the bracket 20 can provide support for the conductive wire 19 located thereon.

[0053] At least one bracket 20 has a cable routing port 1a formed on it. For example, one bracket 20 may have a cable routing port 1a formed on it, or multiple brackets 20 may have a cable routing port 1a formed on them.

[0054] A wireless power supply component is a structure that provides power to the electrical components of a garment processing device wirelessly.

[0055] For example, in some embodiments, please refer to Figures 1 to 7 The wireless power supply component includes a transmitter module 12 and a receiver module 13. The receiver module 13 is used to receive electromagnetic signals emitted by the transmitter module 12 and generate induced current. At least one of the transmitter module 12 and the receiver module 13 is electrically connected to the conductive wire 19.

[0056] At least one of the transmitting module 12 and the receiving module 13 is electrically connected to the conductive line 19, which means, for example, only the transmitting module 12 may be electrically connected to the conductive line 19, or only the receiving module 13 may be electrically connected to the conductive line 19, or both the transmitting module 12 and the receiving module 13 may be electrically connected to the conductive line 19.

[0057] Thus, the conductive line 19 transmits electrical energy and / or signals. For example, if the transmitting module 12 is electrically connected to the conductive line 19, the transmitting module 12 can receive electrical energy and / or signals through the conductive line 19. As another example, if the receiving module 13 is electrically connected to the conductive line 19, the receiving module 13 can transmit electrical energy and / or signals to electrical components through the conductive line 19.

[0058] Taking the bracket 20, which includes a first bracket 122 and a second bracket 132, as an example, at least a portion of the transmitting module 12 is disposed on the first bracket 122, which is a component outside the clothing processing tube 10. The second bracket 132 is disposed on the clothing processing tube 10, and at least a portion of the receiving module 13 is disposed on the second bracket 132. At least one of the first bracket 122 and the second bracket 132 forms a wiring port 1a. At least one of the transmitting module 12 and the receiving module 13 is provided with a conductive wire 19.

[0059] The fact that at least a portion of the transmitting module 12 is disposed on the first support 122 means that a portion of the structure of the transmitting module 12 is disposed on the first support 122; or, the entire structure of the transmitting module 12 is disposed on the first support 122.

[0060] The fact that at least a portion of the receiving module 13 is disposed on the second support 132 means that a portion of the structure of the receiving module 13 is disposed on the second support 132; or, the entire structure of the receiving module 13 is disposed on the second support 132.

[0061] At least one of the first bracket 122 and the second bracket 132 has a wiring port 1a. For example, the first bracket 122 has a wiring port 1a, while the second bracket 132 does not have a wiring port 1a; or the first bracket 122 does not have a wiring port 1a, while the second bracket 132 has a wiring port 1a; or both the first bracket 122 and the second bracket 132 have wiring ports 1a.

[0062] At least one of the transmitting module 12 and the receiving module 13 is provided with a conductive line 19. The number of conductive lines 19 may be the same as or different from the number of both transmitting module 12 and receiving module 13. For example, one of the transmitting module 12 and receiving module 13 is provided with a conductive line 19, or both of the transmitting module 12 and receiving module 13 are provided with conductive lines 19. The conductive lines 19 can improve the stability and anti-interference capability of power and / or signal transmission.

[0063] It should be noted that the components other than the clothing processing cylinder 10 refer to components that are independent of the clothing processing cylinder 10 and are located outside the clothing processing cylinder 10. When the clothing processing cylinder 10 rotates, the transmitting module 12 remains stationary relative to the clothing processing cylinder 10. For example, it can be the housing 11, the base 16 located below the housing 11, etc., and there are no restrictions here.

[0064] For example, the first bracket 122 is a component located outside the clothing processing tube 10, such as the first bracket 122 being located on the box body 11 or the base 16, etc.

[0065] The transmitting module 12 and the receiving module 13 can achieve wireless connection through electromagnetic induction.

[0066] Exemplarily, the transmitting module 12 can be electrically connected to the main control board of the clothing processing device 1. The main control board is used to control the operation of the clothing processing device 1 and supply power to various parts within the clothing processing device 1, enabling the circuits of each part to work normally, so as to realize functions such as drying control. Exemplarily, the transmitting module 12 is electrically connected to the main control board via a cable to receive the power supplied by the main control board, thereby enabling it to transmit electromagnetic signals to the receiving module 13.

[0067] The transmitting module 12 is wirelessly connected to the receiving module 13, meaning that the transmitting module 12 can wirelessly transmit power to the receiving module 13. Thus, the electrical components installed in the clothing handling drum 10 can be electrically connected to the receiving module 13, which supplies power to the components to meet their power needs.

[0068] It should be noted that an electrical component can be a structural element capable of performing an electrical function and / or used in a circuit to perform at least one electrical function. The number of electrical components can be one, two, three, or more.

[0069] The electrical components can be units for detecting the condition of the clothing, as well as other units that can have specific functions to improve drying performance. For example, the unit for detecting the condition of the clothing can be for detecting the temperature, conductivity, etc. of the clothing.

[0070] For example, at least a portion of the receiving module 13 is mounted on the garment processing drum 10 via the second bracket 132. Electrical components, such as units for detecting the state of the garments, can be mounted inside the garment processing drum 10 and electrically connected to the receiving module 13 to obtain electrical energy. When the garment processing drum 10 rotates, the receiving module 13 and the electrical components rotate synchronously. The electrical connection between the receiving module 13 and the electrical components is relatively stable, and the receiving module 13 can also receive electrical energy transmitted from the transmitting module 12 during rotation. Thus, the electrical components mounted inside the garment processing drum 10 can sense the state of the garments at close range and perform specific functions, thereby improving the working performance of the garment processing device 1. For example, this can improve the judgment performance of the garment processing device 1.

[0071] The clothing processing device 1 provided in this application embodiment has several advantages. First, the wireless power supply component enables power transmission without the need for wires, resulting in high reliability. Furthermore, the electrical components of the clothing processing device 1 can be housed within the clothing processing drum 10, powered by the wireless power supply component. This facilitates meeting the power requirements of the electrical components and allows for close-range sensing of the clothing's condition, thereby improving the overall performance of the clothing processing device 1. Second, at least one bracket 20 has a wiring port 1a through which a conductive wire 19 is threaded. This allows for electrical connection between the energized components in the wireless power supply component and the conductive wire 19, reducing the likelihood of wire tangling during the wiring process and simplifying the cabling process.

[0072] Understandably, in some examples, the transmitting module 12 and the receiving module 13 can transmit signals in addition to transmitting electrical energy. That is, the clothing information detected by the electrical components can be transmitted to the receiving module 13, and the receiving module 13 can then transmit the information to the transmitting module 12.

[0073] Of course, in other embodiments, the transmitting module 12 and the receiving module 13 may only transmit electrical energy. The clothing processing device 1 may be equipped with a wireless transmission unit. The receiving module 13 can provide electrical energy to the wireless transmission unit, and the wireless transmission unit can receive clothing information detected by electrical components and transmit it wirelessly.

[0074] The form of trace opening 1a is not limited. Trace opening 1a can be a part of the solid structure that is missing to form a gap. Trace opening 1a can also be a through hole formed in the solid structure.

[0075] In some embodiments, please refer to Figures 1 to 7 The wireless power supply component includes a transmitter module 12 with a transmitter coil 121, a bracket 20 including a first bracket 122, a conductive wire 19 including a first conductive wire 19a, and a wiring port 1a including a first wiring port 1aa formed in the first bracket 122. The first conductive wire 19a passes through the first wiring port 1aa and connects to the transmitter coil 121.

[0076] In this embodiment, the transmitting coil 121 is electrically connected to the first conductive line 19a. The first conductive line 19a can improve the stability and anti-interference capability of power and / or signal transmission, so that power and / or signal can be stably transmitted to the transmitting coil 121.

[0077] In some embodiments, please refer to Figures 1 to 4 The transmitting module 12 includes a transmitting circuit board 123, a transmitting coil 121 and a transmitting circuit board 123 located on opposite sides of a first bracket 122, and a first conductive line 19a passing through a first wiring port 1aa to connect the transmitting coil 121 and the transmitting circuit board 123.

[0078] For example, the transmitting circuit board 123 includes a modem circuit and a power supply circuit. The modem circuit can convert signals, and the power supply circuit can transmit electrical energy to the receiving module 13. The transmitting module 12 can be electrically connected to the main control board through the transmitting circuit board 123.

[0079] In this embodiment, the transmitting coil 121 and the transmitting circuit board 123 are electrically connected through the first conductive line 19a. Since the transmitting coil 121 and the transmitting circuit board 123 are located on opposite sides of the first bracket 122, the first wiring port 1aa improves the wiring convenience of the first conductive line 19a. The first conductive line 19a can pass directly through the first wiring port 1aa without needing to be wound around the outer periphery of the first bracket 122, reducing the probability of the first conductive line 19a being wound and reducing the wiring difficulty.

[0080] In some embodiments, please refer to Figures 1 to 4The housing 11 includes a rear plate 111, a transmitting circuit board 123 disposed on the side of the rear plate 111 away from the clothes processing tube 10, a first bracket 122 disposed on the side of the rear plate 111 close to the clothes processing tube 10, and a transmitting coil 121 disposed on the side of the first bracket 122 close to the clothes processing tube 10.

[0081] Specifically, the housing 11 is an external component of the clothing processing equipment 1, which can protect the internal clothing processing drum 10.

[0082] It should be noted that the rear panel 111 refers to the component of the housing 11 located on the rear side of the garment processing equipment 1 in the front-to-back direction. The rear side is the side of the garment processing equipment 1 that is furthest from the user after installation.

[0083] The clothing processing tube 10 is rotatably installed inside the box 11.

[0084] The first bracket 122 is located on the side of the back plate 111 near the clothes handling cylinder 10, that is, the first bracket 122 is located on the front side of the back plate 111.

[0085] The transmitting coil 121 is located on the side of the first bracket 122 near the clothes handling tube 10, that is, the transmitting coil 121 is located on the front side of the first bracket 122.

[0086] The transmitting circuit board 123 is located on the side of the rear plate 111 away from the clothes handling drum 10. The rear plate 111 provides some protection for the transmitting circuit board 123, reducing the impact of airflow on it and decreasing the likelihood of lint and other impurities carried by the airflow adhering to it, thus increasing the installation safety of the transmitting circuit board 123. It also facilitates wired connection between the transmitting circuit board 123 and the main control board.

[0087] In this embodiment, the transmitting coil 121 is disposed on the side of the first bracket 122 near the clothing processing drum 10. The distance between the transmitting coil 121 and the receiving coil 131 is relatively close to facilitate energy transmission. The transmitting circuit board 123 and the first bracket 122 are respectively located on opposite sides of the rear plate 111. The transmitting coil 121 is located on the side of the first bracket 122 away from the transmitting circuit board 123. The distance between the transmitting coil 121 and the transmitting circuit board 123 is relatively far. The first wiring port 1aa of the first bracket 122 facilitates the threading of the first conductive wire 19a, reducing the possibility of the first conductive wire 19a becoming longer due to winding.

[0088] In some embodiments, the transmitting circuit board 123 can be connected to the rear plate 111 by means of screw connection, welding or other connection methods, which increases the installation stability of the transmitting circuit board 123.

[0089] In some embodiments, the first conductive line 19a may pass through the air outlet of the rear panel 111 and then be connected to the transmitter circuit board 123 located on the rear side of the rear panel 111.

[0090] In some embodiments, the transmitting circuit board 123 may also be disposed on the first bracket 122. The first conductive line 19a may not be disposed between the transmitting circuit board 123 and the transmitting coil 121.

[0091] In some embodiments, please refer to Figure 1 , Figures 5 to 7 The receiving module 13 includes a receiving coil 131, and the clothing processing tube 10 includes a tube body 101 and a rear cover 102. The rear cover 102 is located at the rear end of the tube body 101, and the receiving coil 131 is located on the side of the rear cover 102 away from the tube body 101.

[0092] For example, the receiving coil 131 is used to receive the electromagnetic signal emitted by the transmitting coil 121 and generate an induced current. Specifically, the transmitting coil 121 generates a changing magnetic field, and the receiving coil 131 generates an induced current through electromagnetic induction, receives the electrical energy transmission from the transmitting coil 121, and outputs electrical energy.

[0093] Specifically, the front of the tube body 101 is open to form a clothing loading port, and the rear end cooperates with the rear cover 102. The tube body 101 and the rear cover 102 together define the clothing processing chamber 10a. Exemplarily, the rear end of the tube body 101 can be detachably connected to the rear cover 102.

[0094] It is understandable that the side of the rear cover 102 away from the cylinder body 101 is sealed to the rear plate 111, and the rear cover 102 can rotate relative to the rear plate 111 to form a dynamic sealing connection.

[0095] In this embodiment, the transmitting coil 121 and the receiving coil 131 can transmit electrical energy without contact, realizing the transmission of electrical energy between the relatively rotating clothing processing drum 10 and the relatively stationary housing 11, such as the back panel 111. This electrical energy transmission can be achieved without wire connections, resulting in high reliability. The receiving coil 131 is located on the side of the back cover 102 away from the drum body 101, which reduces the probability of clothing inside the clothing processing cavity 10a coming into contact with the receiving coil 131.

[0096] It should be noted that the first conductive line 19a refers to the conductive line 19 electrically connected to the transmitting module 12. The term "first conductive line 19a" is a designation used for ease of description, and it is one type of conductive line 19. The first wiring port 1aa refers to the wiring port 1a of the first bracket 122. The first wiring port 1aa is one type of wiring port 1a, and it is a designation used for ease of description.

[0097] In some embodiments, please refer to Figures 1 to 4The first support 122 includes an annular body 1221 and a wire guard 1223 connected to the annular body 1221. A first wire outlet 1aa is formed in the wire guard 1223. A transmitting coil 121 is disposed on the side of the annular body 1221 near the clothes processing drum 10. A portion of the first conductive wire 19a passes through the first wire outlet 1aa and is located on the side of the wire guard 1223 away from the clothes processing drum 10.

[0098] Specifically, the first conductive line 19a can be electrically connected to the transmitting circuit board 123.

[0099] In this embodiment, the other end of the first conductive wire 19a passes through the first wiring port 1aa and is located on the side of the wire protection part 1223 away from the clothing processing drum 10. The wire protection part 1223 can isolate the first conductive wire 19a from the clothing processing drum 10. The wire protection part 1223 can shield the first conductive wire 19a to reduce the risk of the first conductive wire 19a contacting the clothing processing drum 10.

[0100] In some embodiments, please refer to Figures 1 to 4 A wire protection groove 1223a is formed on the side of the wire protection part 1223 away from the clothing processing tube 10, and a portion of the first conductive wire 19a is located in the wire protection groove 1223a.

[0101] In this embodiment, the groove wall of the wire guard groove 1223a can not only limit the first conductive wire 19a from shifting and play a positioning role, but also prevent the rear plate 111 from pressing the first conductive wire 19a to a certain extent.

[0102] In some embodiments, the wire guard portion 1223 may together with the rear plate 111 define a wire guard cavity, and a portion of the first conductive wire 19a is located within the wire guard cavity.

[0103] For example, the back plate 111 may form a groove-shaped structure, and the wire protection part 1223 may cover the groove-shaped structure to jointly define the wire protection cavity. The wire protection part 1223 may be a flat plate structure.

[0104] For example, the wire protection part 1223 may form a wire protection groove 1223a, and the rear plate 111 may form a groove-shaped structure. The wire protection groove 1223a and the groove-shaped structure may be engaged to form a wire protection cavity.

[0105] In this embodiment, the wall surface of the wire protection cavity not only restricts the displacement of the first conductive wire 19a, thus playing a positioning role, but also, to a certain extent, prevents the rear plate 111 from pressing on the first conductive wire 19a. For some embodiments, please refer to... Figures 1 to 12The transmitting module 12 includes a transmitting coil 121, and the receiving module 13 includes a receiving coil 131. The receiving coil 131 is used to receive the electromagnetic signal emitted by the transmitting coil 121 and generate an induced current. At least one of the transmitting coil 121 and the receiving coil 131 is electrically connected to the conductive wire 19. The transmitting coil 121 and the receiving coil 131 are arranged at intervals relative to each other.

[0106] It should be noted that the relative spacing between the transmitting coil 121 and the receiving coil 131 means that there is a certain gap between the transmitting coil 121 and the receiving coil 131, and that the projection of the transmitting coil 121 and the receiving coil 131 overlap at least partially with the projection of the plane perpendicular to the front-back direction.

[0107] In this embodiment, the transmitting coil 121 and the receiving coil 131 are arranged at a relative interval, which can reduce the impact of the rotating clothes handling drum 10 on the transmitting coil 121 and increase installation safety.

[0108] For example, the transmitting coil 121 and the receiving coil 131 can always remain coaxial and relative to each other, that is, no matter where the clothes handling drum 10 rotates to, the transmitting coil 121 and the receiving coil 131 always remain coaxial and relative to each other. The transmitting coil 121 and the receiving coil 131 can also be coaxial and relative to each other at a specific position, that is, the receiving coil 131 can move to the set position and be coaxial and relative to the transmitting coil 121 as the clothes handling drum 10 rotates.

[0109] In some embodiments, for example, the transmitting coil 121 and the receiving coil 131 are generally in a ring-shaped structure.

[0110] In some embodiments, the transmitting coil 121, the receiving coil 131, and the clothing handling tube 10 are arranged coaxially.

[0111] In this embodiment, during the rotation of the clothing processing drum 10, regardless of the position of the receiving coil 131 as it rotates with the clothing processing drum 10, the receiving coil 131 and the transmitting coil 121 always maintain a relative state. This allows the receiving coil 131 to continuously and stably receive the electrical energy transmitted by the transmitting coil 121, thereby continuously providing power to the electrical components of the clothing processing drum 10. In other words, during the rotation of the clothing processing drum 10, the receiving coil 131 can always provide effective and sufficient power to the electrical components, eliminating the need for additional auxiliary power supply structures and increasing the power supply reliability of the clothing processing device 1.

[0112] Please see Figure 1 , Figure 2 and Figure 7 The transmitting module 12 is disposed on the rear panel 111, and at least a portion of the receiving module 13 is disposed on the rear cover 102.

[0113] It should be noted that the transmitter module 12 is disposed on the rear plate 111. This can be because the transmitter module 12 is an integrated component and is disposed on the side of the rear plate 111 facing the rear cover 102 or on the side of the rear plate 111 away from the rear cover 102. Alternatively, the various components of the transmitter module 12 can be distributed in different parts of the rear plate 111. For example, some components are disposed on the side of the rear plate 111 facing the rear cover 102, while other components are disposed on the side of the rear plate 111 away from the rear cover 102.

[0114] It should be noted that at least a portion of the receiving module 13 is disposed on the rear cover 102. In this case, the entire structure of the receiving module 13 may be disposed on the rear cover 102, and the receiving module 13 may be disposed on the side of the rear cover 102 facing the rear plate 111 or the side of the rear cover 102 facing the cylinder body 101. Alternatively, a portion of the receiving module 13 may be disposed on the rear cover 102, and this portion may be disposed on the side of the rear cover 102 facing the rear plate 111 or the side of the rear cover 102 facing the cylinder body 101. The other portion of the receiving module 13 may be disposed inside the cylinder body 101 or in other locations, without any restrictions.

[0115] In this embodiment, the transmitting module 12 is disposed on the rear plate 111, and at least a portion of the receiving module 13 is disposed on the rear cover 102. While providing sufficient installation space and installation safety for the transmitting module 12, the distance between the transmitting module 12 and the receiving module 13 can be shortened, increasing the reliability of power transmission. At the same time, it can also reduce the probability of interference between the electrical connection between the transmitting module 12 and the main control board and the clothing handling tube 10, increasing the reliability of the electrical connection between the transmitting module 12 and the main control board.

[0116] The transmitting coil 121 is disposed on the rear plate 111. Specifically, the transmitting coil 121 can be disposed on the side of the rear plate 111 facing the rear cover 102, or it can be disposed on the side of the rear plate 111 away from the rear cover 102.

[0117] The receiving coil 131 is disposed on the rear cover 102. For example, the receiving coil 131 may be disposed on the side of the rear cover 102 facing the cylinder body 101 or on the side of the rear cover 102 facing the rear plate 111.

[0118] In some embodiments, please refer to Figures 10 to 12 The receiving module 13 includes a receiving circuit board 133, which is electrically connected to the receiving coil 131.

[0119] For example, the receiving circuit board 133 includes a modulation / demodulation circuit and a power output circuit. The modulation / demodulation circuit can realize signal conversion, and the power output circuit can realize the output of electrical energy.

[0120] In some embodiments, the receiving circuit board 133 and the receiving coil 131 can be electrically connected via a conductive line 19. For example, the conductive line 19 includes a second conductive line 19b, and the wiring port 1a includes a second wiring port formed in the second bracket 132. The second conductive line 19b, which is electrically connected to the receiving circuit board 133, passes through the second wiring port of the second bracket 132.

[0121] In some embodiments, the receiving circuit board 133 and the receiving coil 131 can be electrically connected by a conductive line 19, the second bracket 132 may not have a wiring port 1a, and the conductive line 19 electrically connected to the receiving circuit board 133 may be routed without through holes.

[0122] It should be noted that the second conductive line 19b refers to the conductive line 19 electrically connected to the receiving module. The term "second conductive line 19b" is used for ease of description and is one type of conductive line 19. The second wiring port refers to the wiring port 1a of the second bracket 132. The second wiring port is one type of wiring port 1a and is used for ease of description.

[0123] In some embodiments, the receiving circuit board 133 and the receiving coil 131 can be directly electrically connected, that is, there is no conductive line 19 between the receiving circuit board 133 and the receiving coil 131.

[0124] In some embodiments, please refer to Figure 11 The receiving circuit board 133 is disposed within the lifting rib 14.

[0125] Specifically, the lifting rib 14 can contact the clothes inside the clothes processing chamber 10a and drive the clothes to rotate with the clothes processing cylinder 10. For example, the clothes move upward under the action of the lifting rib 14, and then move downward under the action of gravity and centrifugal force, so that the clothes continuously change their posture inside the clothes processing chamber 10a.

[0126] In this embodiment, the lifting rib 14 provides mounting space for the receiving circuit board 133, reducing the chance of the receiving circuit board 133 coming into contact with clothing and increasing the installation reliability of the receiving circuit board 133. Of course, electrical components can also be housed within the lifting rib 14, and there are no restrictions on this.

[0127] For example, in some embodiments, please refer to Figures 1 to 7 The garment processing device 1 includes electrical components disposed within the garment processing chamber 10a. The wireless power supply component includes a receiving module 13. The conductive wire 19 includes a second conductive wire 19b. The garment processing tube 10 forms a wire hole 10b, through which the second conductive wire 19b passes and is electrically connected to the receiving module 13 and at least one electrical component.

[0128] Specifically, the garment processing tube 10 may be provided with a threading hole 10b, the receiving coil 131 may be provided outside the garment processing tube 10, the receiving circuit board 133 and the detection unit 15 are both provided inside the garment processing cavity 10a, and the second conductive wire 19b may be passed through the threading hole 10b and electrically connected to the receiving circuit board 133, the receiving coil 131 and the electrical components.

[0129] Specifically, a wire hole 10b may be formed on the back cover 102.

[0130] In this embodiment, the second bracket 132 may not have a wiring port 1a. The conductive wire 19, which is electrically connected to the receiving circuit board 133, can be threaded through the wire hole 10b to allow the clothes processing tube 10 to be threaded inside and outside, so that the second conductive wire 19b can be electrically connected to the receiving circuit board 133, the receiving coil 131 and the electrical components.

[0131] In some embodiments, please refer to Figure 10 The garment processing device 1 includes a conical cap 18, one end of which is connected to the side of the rear cover 102 near the cylinder 101, and the receiving circuit board 133 is located inside the conical cap 18.

[0132] Specifically, a conical cap 18 is disposed on the clothes processing drum 10. One end of the conical cap 18 is connected to the side of the rear cover 102 near the drum body 101, and the other end extends toward the inside of the drum body 101. The conical cap 18 can disperse the clothes during the rotation of the clothes processing drum 10, reducing the chance of clothes tangling or knotting, making the drying of clothes more uniform and improving the drying effect of clothes.

[0133] For example, the conical cap 18 can be connected to the portion of the rear cover 102 that is approximately at the center.

[0134] In this embodiment, the receiving circuit board 133 is disposed inside the conical cap 18. The conical cap 18 provides installation space for the receiving circuit board 133, and the conical cap 18 can reduce the probability of the receiving circuit board 133 coming into contact with clothing to a certain extent, thereby increasing the installation reliability of the receiving circuit board 133.

[0135] In some embodiments, please refer to Figure 6 and Figure 12 The receiving circuit board 133 is integrated into the second bracket 132.

[0136] In this embodiment, the receiving coil 131 and the receiving circuit board 133 are integrated by the second bracket 132. No conductive wire 19 needs to be provided between the receiving coil 131 and the receiving circuit board 133. This eliminates the need to connect the receiving coil 131 and the receiving circuit board 133 with wires, reducing the high assembly complexity caused by intertwined wires, facilitating power transmission, reducing filtering losses and electromagnetic interference. Since the receiving coil 131 and the receiving circuit board 133 are disposed on the same plane, the overall structure of the receiving module 13 is simple and compact, and the installation and maintenance of each component are highly convenient. The second bracket 132 provides mounting support for the receiving coil 131 and the receiving circuit board 133, increasing the installation stability of the receiving coil 131 and the receiving circuit board 133.

[0137] In some embodiments, please refer to Figure 1 , Figure 8 and Figure 9 The garment processing device 1 includes a detection unit 15, which is used to detect the electrical conductivity of the garments in the garment processing chamber 10a. The detection unit 15 is electrically connected to the receiving module 13. Specifically, the detection unit 15 is disposed in the garment processing cylinder 10.

[0138] It is understood that the detection unit 15 is one of the aforementioned electrical components.

[0139] The detection unit 15 can detect the conductivity of the load, such as clothing, within the clothing processing chamber 10a. The clothing processing equipment 1 can determine the degree of drying based on the conductivity detected by the detection unit 15. For example, the detection principle of the detection unit 15 can be as follows: the load, such as clothing, within the clothing processing chamber 10a contacts the two detection electrodes 151 of the detection unit 15, causing the detection circuit of the detection unit 15 to conduct. The resistance values ​​of the load, such as clothing, have different levels of moisture; that is, the degree of moisture of the load, such as clothing, is related to its conductivity, and the degree of drying is determined based on the conductivity.

[0140] In this embodiment, the detection unit 15 is disposed inside the clothing processing drum 10, and the receiving module 13 provides power to the detection unit 15. The detection electrode 151 of the detection unit 15 can contact the clothing and other loads in the clothing processing chamber 10a, thereby sensing the degree of drying of the clothing at close range and effectively improving the accuracy of judging the degree of drying of the clothing and other loads in the clothing processing drum 10.

[0141] The installation position of the detection unit 15 inside the garment processing drum 10 is not limited.

[0142] In some embodiments, please refer to Figure 1 , Figure 8 and Figure 9The garment processing device 1 includes a lifting rib 14, which protrudes radially from the circumferential inner wall of the garment processing cylinder 10. The detection unit 15 includes a detection electrode 151 and a detection circuit that are electrically connected to each other. The detection electrode 151 is disposed on the outer surface of the lifting rib 14, and the detection circuit is disposed inside the lifting rib 14. The detection circuit is electrically connected to the receiving module 13.

[0143] Specifically, the detection electrode 151 is disposed on the outer surface of the lifting rib 14, which facilitates close contact with loads such as clothing. The detection circuit is disposed inside the lifting rib 14. That is, while the lifting rib 14 can be used to move the clothing in the clothing processing cavity 10a, it can also provide installation space for the detection circuit, thereby reducing the probability of the detection circuit contacting the clothing to a certain extent and increasing the installation and working reliability of the detection unit 15.

[0144] For example, the receiving circuit board 133 may have a detection circuit, and the receiving circuit board 133 may be disposed within the lifting rib 14.

[0145] In this embodiment, the detection circuit can be disposed within the lifting rib 14, and the lifting rib 14, including the detection circuit, is not affected by the clothing or other loads within the clothing processing cavity 10a. The detection electrode 151 is disposed on the outer surface of the lifting rib 14 so that the detection electrode 151 can contact the clothing.

[0146] For example, in some embodiments, the detection electrode 151 may be entirely located on the outer surface of the lifting rib 14 along the circumferential direction, while in other embodiments, a portion of the detection electrode 151 may be located on one outer side of the lifting rib 14 along the circumferential direction, and another portion may be located on the top side of the lifting rib 14 radially away from the peripheral sidewall of the clothing processing tube 10.

[0147] The specific structure of the detection electrode 151 is not limited.

[0148] For example, please refer to Figure 8 and Figure 9 The detection electrode 151 includes a first electrode and a second electrode, both located on the outer surface of the lifting rib 14. The first electrode includes a first connecting structure 1511 and at least two first teeth 1512 connected to the first connecting structure 1511. The second electrode includes a second connecting structure 1513 and at least two second teeth 1514 connected to the second connecting structure 1513. The first teeth 1512 and the second teeth 1514 are arranged alternately. That is, there is one second tooth 1514 between any two adjacent first teeth 1512, and the distance between the first teeth 1512 and the second teeth 1514 is greater than zero.

[0149] In this embodiment, the first tooth 1512 and the second tooth 1514 are arranged alternately to form an interdigitated structure. One first tooth 1512 and one second tooth 1514 constitute an electrode pair. The detection electrode 151 has at least two electrode pairs. The clothing contacts at least two electrode pairs. The conduction between each electrode pair can be regarded as a resistor. At least two electrode pairs can be regarded as at least two resistors in parallel, thereby making the detection of changes in conductivity more sensitive, improving the detection accuracy and sensitivity of the detection electrode 151, reducing problems such as incomplete drying or over-drying to a certain extent, and improving drying performance.

[0150] The specific structural form of the first tooth 1512 is not limited; it can be plate-shaped or columnar, etc. The specific structural form of the second tooth 1514 is not limited; it can be plate-shaped or columnar, etc. Among them, the cross-sectional shape of the columnar shape is not limited; it can be circular or polygonal, etc. Polygons include quadrilaterals, pentagons, etc. It can be understood that polygons can include rounded polygons.

[0151] Both the first electrode and the second electrode are made of conductive materials; for example, both the first electrode and the second electrode are made of metal.

[0152] In some embodiments, the first electrode element can be a one-piece molded structure. That is, the first connecting structure 1511 and the first tooth 1512, etc., can be manufactured as a single piece.

[0153] In some embodiments, the second electrode can be a one-piece molded structure. That is, the second connecting structure 1513 and the second tooth 1514, etc., can be manufactured as a single piece.

[0154] The specific structure of the first support 122 is not limited.

[0155] In some embodiments, please refer to Figure 1 , Figure 3 and Figure 4 The first bracket 122 includes a connecting ear 1222 connected to the annular body 1221, a transmitting coil 121 disposed on the annular body 1221, and the connecting ear 1222 connected to the rear plate 111.

[0156] In this embodiment, the annular body 1221 provides installation space for the transmitting coil 121, and the connecting ear 1222 is connected to the rear plate 111. The annular body 1221 and the connecting ear 1222 stabilize the installation position of the transmitting coil 121 in the clothing processing equipment 1, reduce the probability of damage to the transmitting coil 121, and increase the working stability of the transmitting coil 121.

[0157] In some embodiments, please refer to Figure 1 , Figure 3 and Figure 4The annular body 1221 has a first annular groove 1221a, which is open on the side facing the clothing processing tube 10, and the transmitting coil 121 is housed in the first annular groove 1221a.

[0158] Specifically, the first annular groove 1221a is an annular space defined by the structure of the annular body 1221 itself. The side of the first annular groove 1221a facing the clothing processing drum 10 is open, which facilitates the relative arrangement of the transmitting coil 121 and the receiving coil 131, and realizes effective power transmission. The side of the first annular groove 1221a facing the rear plate 111 can be closed to provide support for the transmitting coil 121 and reduce the probability of the transmitting coil 121 detaching from the first annular groove 1221a.

[0159] The connecting ear 1222 can be detachably connected to the rear plate 111. For example, the connecting ear 1222 can be connected to the rear plate 111 by screws, which is not limited here.

[0160] The specific structure of the second support 132 is not limited.

[0161] In some embodiments, please refer to Figure 5 and Figure 6 The second bracket 132 includes an annular portion 1321 and a connecting portion 1322. The connecting portion 1322 is connected to the annular portion 1321. The receiving coil 131 is disposed on the annular portion 1321. The connecting portion 1322 is connected to the rear cover 102.

[0162] In some embodiments, please refer to Figure 1 , Figure 2 and Figure 6 The second bracket 132 includes an extension structure 1323, which is connected to the annular portion 1321. The receiving circuit board 133 is disposed on the extension structure 1323. The extension structure 1323 provides mounting space for the receiving circuit board 133.

[0163] In some embodiments, please refer to Figure 1 , Figure 2 and Figure 6 The annular portion 1321 has a second annular groove 1321a, which is open on the side facing the rear plate 111, and the receiving coil 131 is housed in the second annular groove 1321a.

[0164] Specifically, the second annular groove 1321a is an annular space defined by the structure of the annular portion 1321 itself. The side of the second annular groove 1321a facing the rear plate 111 is open, which facilitates the relative arrangement of the receiving coil 131 and the transmitting coil 121, thereby achieving effective power transmission. The side of the second annular groove 1321a facing the rear cover 102 can be closed to provide support for the receiving coil 131 and reduce the probability of the receiving coil 131 detaching from the second annular groove 1321a.

[0165] The connecting part 1322 can be detachably connected to the rear cover 102. For example, the connecting part 1322 can be connected to the rear cover 102 by screws, which is not limited here.

[0166] In some embodiments, please refer to Figures 10 to 12 The garment processing device 1 includes a rear cover 17, which covers the rear surface of the rear plate 111 and together with the rear plate 111 defines an air supply channel. The rear plate 111 has an air outlet, and the rear cover 102 has an air inlet. The airflow in the air supply channel flows to the garment processing chamber 10a through the air outlet and the air inlet.

[0167] Exemplarily, the garment processing drum 10 also has an air outlet, and the garment processing chamber 10a connects the air inlet and the air outlet. Dry hot air enters the garment processing chamber 10a from the air inlet, and humid hot air leaves the garment processing chamber 10a from the air outlet. The rear plate 111 has a return air inlet, the height of which is lower than the height of the air supply inlet. The rear cover 17 covers the area around the air supply inlet and the return air inlet, and together with the rear plate 111, defines an air supply channel. The air supply channel connects the return air inlet and the air supply inlet, and the dry hot air enters the garment processing chamber 10a through the return air inlet, the air supply channel, and the air supply inlet to dry the clothes.

[0168] For example, please refer to Figure 12 The garment processing equipment 1 may also include a base 16, which has a drying tunnel, an air supply channel and a drying tunnel together to form a circulating air duct. The drying tunnel is located upstream of the air supply channel along the airflow direction in the circulating air duct. The drying tunnel is connected to the air outlet. The airflow after heat and moisture exchange with the garment can enter the drying tunnel through the air outlet, complete condensation dehumidification and heating in the drying tunnel, and form a new dry hot airflow. The new dry hot airflow then enters the garment processing chamber 10a through the return air port, the air supply channel and the air supply port.

[0169] There is no limit to the number of air outlets; there can be one or more air outlets, for example, two, three, four, or five air outlets.

[0170] In some embodiments, the garment processing device 1 further includes a heat exchange component located within the drying tunnel. The heat exchange component is used to exchange heat with the airflow within the drying tunnel, thereby dehumidifying and heating. The humid and hot airflow within the garment processing cylinder 10 can enter the drying tunnel through the air outlet and exchange heat with the heat exchange component, transforming into dry and hot airflow. The dry and hot airflow enters the air supply channel through the return air inlet and then flows back into the garment processing chamber 10a through the air supply outlet and air inlet.

[0171] In some embodiments, the heat exchange assembly includes a condenser and an evaporator. The clothing processing device 1 also 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 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 humid hot airflow from the clothing processing chamber 10a into a dry cold airflow; the condenser heats the dry cold airflow into a dry hot airflow and returns it to the clothing processing chamber 10a.

[0172] The working principle of a heat pump system is as follows: The compressor draws in low-pressure gaseous refrigerant and compresses it into high-pressure gaseous state before discharging it. The discharged high-pressure gaseous refrigerant enters the condenser, where it transfers heat to the airflow, causing it to condense into a high-pressure liquid. The high-pressure liquid refrigerant is then throttled and depressurized by a throttling device, becoming a low-pressure, low-temperature gas-liquid two-phase mixture that enters the evaporator. The refrigerant in the evaporator absorbs heat from the airflow, becoming a low-pressure gaseous state, which is then drawn back into the compressor. This cycle repeats, achieving heat exchange. In other words, the evaporator cools and dehumidifies the humid airflow from the clothing processing chamber 10a, forming a dry, cool airflow. The condenser heats the dry, cool airflow into a dry, hot airflow, which then flows back into the clothing processing chamber 10a. The dry, hot airflow returning to the clothing processing chamber 10a comes into contact with the damp clothing, forming a humid, hot airflow again, completing one drying cycle. By repeatedly running the drying cycle, circulating airflow is continuously supplied to the clothing processing chamber 10a to dry the clothes.

[0173] For example, both the evaporator and the condenser can be finned tube heat exchangers.

[0174] For example, throttling devices include, but are not limited to, electronic expansion valves.

[0175] In some examples, the garment handling apparatus 1 also includes an impeller for driving airflow. Exemplarily, the impeller is located within the drying duct and between the heat exchange components and the return air vent. During the drying process, the impeller drives the airflow passing through the garments sequentially through the evaporator and condenser before being blown back onto the garments to create a circulating airflow. The impeller can accelerate airflow and improve drying efficiency.

[0176] In the description of this application, the terms "one embodiment," "some embodiments," "example," "specific example," or "some examples," etc., refer to specific features, structures, materials, or characteristics described in connection with that embodiment or example, which are included in at least one embodiment or example of the embodiments of this application. In this application, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples. Furthermore, without contradiction, those skilled in the art can combine different embodiments or examples described in this application, as well as features of different embodiments or examples.

[0177] The above description is merely a preferred embodiment of this application and is not intended to limit the application. Various modifications and variations can be made to this application by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this application should be included within the scope of protection of this application.

Claims

1. A garment processing device, characterized in that, include: Box; A garment processing drum with a garment processing chamber; A wireless power supply component includes a bracket and a conductive wire. The bracket is disposed at least one of the clothing processing drum and the housing, and the bracket is used to support at least a portion of the conductive wire. At least one of the brackets has a cable routing opening for the conductive wire to pass through.

2. The garment processing equipment according to claim 1, characterized in that, The wireless power supply component includes a transmitting module with a transmitting coil, the bracket includes a first bracket, the conductive wire includes a first conductive wire, the wiring port includes a first wiring port formed in the first bracket, and the first conductive wire passes through the first wiring port to connect to the transmitting coil.

3. The garment processing equipment according to claim 2, characterized in that, The transmitting module includes a transmitting circuit board, the transmitting coil and the transmitting circuit board are located on opposite sides of the first bracket, and the first conductive line passes through the first wiring port to connect the transmitting coil and the transmitting circuit board.

4. The garment processing equipment according to claim 3, characterized in that, The housing includes a rear panel, the transmitting circuit board is disposed on the side of the rear panel away from the clothing processing drum, the first bracket is disposed on the side of the rear panel close to the clothing processing drum, and the transmitting coil is disposed on the side of the first bracket close to the clothing processing drum.

5. The garment processing equipment according to claim 2, characterized in that, The first bracket includes an annular body and a wire guard connected to the annular body. The first wire outlet is formed in the wire guard. The transmitting coil is disposed on the side of the annular body near the clothing processing drum. A portion of the first conductive wire passes through the first wire outlet and is located on the side of the wire guard away from the clothing processing drum.

6. The garment processing equipment according to claim 5, characterized in that, The side of the wire protection section away from the clothing processing drum forms a wire protection groove, and a portion of the first conductive wire is located in the wire protection groove.

7. The garment processing equipment according to claim 1, characterized in that, The wireless power supply component includes a transmitting module and a receiving module. The receiving module is used to receive electromagnetic signals emitted by the transmitting module and generate induced current. At least one of the transmitting module and the receiving module is electrically connected to the conductive wire.

8. The garment processing equipment according to claim 7, characterized in that, The transmitting module includes a transmitting coil, and the receiving module includes a receiving coil. The receiving coil is used to receive the electromagnetic signal emitted by the transmitting coil and generate an induced current. At least one of the transmitting coil and the receiving coil is electrically connected to the conductive wire, and the transmitting coil and the receiving coil are arranged at a relative interval.

9. The garment processing equipment according to claim 8, characterized in that, The transmitting coil, the receiving coil, and the clothing processing tube are arranged coaxially.

10. The garment processing equipment according to claim 1, characterized in that, The garment processing device includes electrical components disposed within the garment processing chamber. The wireless power supply component includes a receiving module. The conductive wire includes a second conductive wire. The garment processing tube forms a wire-passing hole. The second conductive wire passes through the wire-passing hole and is electrically connected to the receiving module and at least one of the electrical components.