Laundry treating apparatus

By introducing a combination of magnetic stirring and rotating components into the garment processing device, and using a drive motor to drive the rotating components, the problem of slow detergent dissolution speed is solved, achieving thorough mixing and efficient dissolution of detergent and water.

CN224531296UActive Publication Date: 2026-07-21HISENSE(SHANDONG)REFRIGERATOR CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HISENSE(SHANDONG)REFRIGERATOR CO LTD
Filing Date
2025-07-28
Publication Date
2026-07-21

AI Technical Summary

Technical Problem

In existing garment processing devices, detergent dissolves slowly, especially when the inlet water pressure is low and the stirring effect is weak, resulting in low detergent dissolution efficiency.

Method used

It adopts a combination structure of magnetic stirring component and rotating component. The rotating component is driven by a drive motor to rotate, and the magnetic force of the rotating component drives the stirring component to rotate in the dispensing chamber, so as to achieve full mixing of detergent and water and improve the dissolution speed.

Benefits of technology

The magnetic stirring element significantly improves the dissolution speed and efficiency of detergent, ensuring thorough mixing of detergent and water and reducing residue.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a kind of clothes processing devices, and the clothes processing device includes box, cylinder subassembly and drop assembly;Drop assembly includes drop assembly including water inlet box, detergent box, stirring piece, rotating piece and drive motor;Detergent box is located inside water inlet box with push-pull, and detergent box is equipped with drop cavity;Stirring piece is movably located in drop cavity, and stirring piece has magnetism;Rotating piece is rotatably located in water inlet box, and rotating piece is located below the bottom of detergent box and below stirring piece, and rotating piece has magnetism;Drive motor is connected with rotating piece, and drive motor is used to drive rotating piece rotation;When drive motor drives rotating piece rotation, the magnetic force of rotating piece can drive stirring piece to rotate in drop cavity, so that stirring piece stirs liquid in drop cavity, so that detergent and water are fully mixed, improve the dissolution speed and dissolution efficiency of detergent.
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Description

Technical Field

[0001] This utility model relates to the field of clothing processing technology, and in particular to a clothing processing device. Background Technology

[0002] Front-loading washing machines and top-loading washing machines are clothing processing devices that use electrical energy to generate mechanical rotation to wash clothes, and they are very common.

[0003] The relevant garment handling device typically includes a cabinet and a drum assembly housed within the cabinet, with the drum assembly containing a garment handling chamber. The cabinet usually also includes a dispensing assembly, which consists of a water inlet box and a detergent dispenser within the water inlet box. When garments need washing, detergent from the detergent dispenser can be dispensed into the garment handling chamber.

[0004] In related garment processing devices, water from the inlet tank flows into the detergent dispenser, where the detergent mixes and dissolves with the water. However, this reliance on the water flow for detergent dissolution has significant drawbacks. For example, when the water pressure is low, the agitation effect of the water flow weakens considerably, resulting in slower detergent dissolution. Utility Model Content

[0005] The purpose of this invention is to provide a clothing treatment device that optimizes the structure of the dispensing component and improves the dissolution rate of detergent.

[0006] To solve the above-mentioned technical problems, the present invention adopts the following technical solution: According to one aspect of the present invention, a clothing processing device is provided, comprising: a housing configured as an outer shell of the clothing processing device; a tubular assembly disposed within the housing, the tubular assembly having a washing chamber formed therein; a dispensing assembly comprising: a water inlet box disposed within the housing; a detergent box slidably disposed within the water inlet box, the detergent box having a dispensing chamber for dispensing detergent; a stirring member movably disposed in the bottom region of the dispensing chamber, the stirring member being magnetic; a rotating member rotatably disposed within the water inlet box, the rotating member being disposed below the bottom of the detergent box and below the stirring member, the rotating member being magnetic; and a drive motor disposed at the bottom of the water inlet box, the output shaft of the drive motor being connected to the rotating member, the drive motor being used to drive the rotating member to rotate; when the drive motor drives the rotating member to rotate, the magnetic force of the rotating member can drive the stirring member to rotate within the dispensing chamber, thereby causing the stirring member to stir the liquid within the dispensing chamber.

[0007] The above technical solution has the following advantages or beneficial effects: by driving the rotating part to rotate by the drive motor, the magnetic properties of the rotating part and the stirring part are combined, and the magnetic force of the rotating part is used to drive the stirring part to rotate in the dispensing chamber. This allows the stirring part to stir the liquid in the dispensing chamber, such as a mixture of detergent and water, so that the detergent and water are fully mixed, thereby improving the dissolution speed and efficiency of the detergent.

[0008] In some embodiments of this application, the detergent box is provided with an isolation cover, the isolation cover is provided on the bottom surface of the dispensing cavity, an isolation cavity is formed inside the isolation cover, and the isolation cavity communicates with the dispensing cavity; the stirring element is movably disposed in the isolation cavity.

[0009] The above technical solution has the following advantages or beneficial effects: the range of motion of the agitator can be limited by the isolation cover. When external water enters the dispensing chamber and mixes with the detergent in the dispensing chamber, the water and detergent will enter the isolation chamber inside the isolation cover. The agitator will rotate and stir to ensure that the detergent and water are fully mixed. The mixed detergent and water can then flow back into the dispensing chamber and then into the washing chamber.

[0010] In some embodiments of this application, the outer wall of the isolation cover is provided with a connecting hole, which connects the isolation cavity and the delivery cavity.

[0011] The above technical solution has the following advantages or beneficial effects: the water and detergent in the dispensing chamber can enter the isolation chamber through the connecting hole, be mixed by the stirring element, and then flow back into the dispensing chamber through the connecting hole.

[0012] In some embodiments of this application, multiple connecting holes are provided, and the multiple connecting holes are arranged at intervals on the outer peripheral wall of the isolation cover.

[0013] The above-mentioned technical solution has the following advantages or beneficial effects: Multiple connecting holes can improve the liquid inlet and outlet efficiency within the isolation chamber. Water and detergent in the dispensing chamber can enter the isolation chamber through some of the connecting holes, be mixed by the agitator, and then flow back into the dispensing chamber through another set of connecting holes.

[0014] In some embodiments of this application, the bottom surface of the water inlet box is provided with an installation groove, and the rotating component is rotatably disposed in the installation groove.

[0015] The above-mentioned technical solution has the following advantages or beneficial effects: the mounting groove can provide installation space for the rotating parts, avoid the rotating parts from contacting water and detergent in the cavity, and improve the stability and reliability of the rotating parts.

[0016] In some embodiments of this application, the drive motor is disposed in the mounting groove, and the rotating component is disposed above the drive motor; the output shaft of the drive motor is arranged upward and connected to the rotating component.

[0017] The above-mentioned technical solution has the following advantages or beneficial effects: by installing the drive motor and the rotating part in the mounting slot respectively, the space utilization efficiency inside the water inlet box can be improved, the installation can be facilitated, and the stability of the connection between the output shaft of the drive motor and the rotating part can be improved.

[0018] In some embodiments of this application, the rotating component includes: a turntable rotatably disposed on the output shaft of the drive motor; a first magnet and a second magnet disposed at intervals on the turntable and symmetrically disposed on opposite sides of the output shaft of the drive motor; the magnetic poles of the first magnet and the second magnet facing the top surface of the turntable are opposite.

[0019] The above-mentioned technical solution has the following advantages or beneficial effects: When the output shaft of the drive motor rotates, it can drive the turntable to rotate synchronously. When the output shaft of the drive motor drives the turntable to rotate synchronously, the first magnet and the second magnet can rotate synchronously with the turntable, thereby forming a rotating magnetic field above the turntable. This magnetic field can drive the magnetic stirring component to rotate in the dispensing chamber, thereby realizing the stirring function of the detergent and improving the dissolution rate of the detergent.

[0020] In some embodiments of this application, the top magnetic poles of the first magnet and the second magnet are exposed on the top surface of the turntable.

[0021] The above-described technical solution has the following advantages or beneficial effects: By having the top magnetic poles of the first and second magnets exposed on the top surface of the turntable, the first and second magnets can be easily installed on the top surface of the turntable. Compared to a solution where the first and second magnets are embedded inside the turntable, this solution can reduce the distance between the first and second magnets and the stirring components, thereby improving the magnetic effect of the first and second magnets on the stirring components.

[0022] In some embodiments of this application, the magnetic poles at the bottom of the first magnet and the second magnet are opposite, and the bottom magnetic poles of the first magnet and the second magnet are exposed on the bottom surface of the turntable.

[0023] The above-mentioned technical solution has the following advantages or beneficial effects: by having the bottom magnetic poles of the first magnet and the second magnet exposed on the bottom surface of the turntable, and the top magnetic poles of the first magnet and the second magnet exposed on the top surface of the turntable, the first magnet and the second magnet can be arranged to penetrate the turntable from top to bottom, which makes it convenient for the top or bottom surface of the turntable to be installed downwards on the output shaft of the drive motor. This helps to simplify the installation difficulty of the rotating parts and improve the installation efficiency of the rotating parts.

[0024] In some embodiments of this application, the stirring element is a capsule body, and the magnetic poles at both ends of the capsule body along its length are opposite.

[0025] The above-mentioned technical solution has the following advantages or beneficial effects: the agitator adopts a capsule structure, which can effectively prevent detergent from entering the interior of the agitator. When the rotating component drives the capsule to rotate, the magnetic poles at both ends of the capsule along its length are opposite, allowing the capsule to rotate more smoothly and synchronously with the rotating component, which is beneficial to improving the stirring efficiency of the detergent and increasing the dissolution rate of the detergent. Attached Figure Description

[0026] Figure 1 This is a front view of a clothing processing device according to some embodiments of the present invention.

[0027] Figure 2 yes Figure 1 Partial structural diagram.

[0028] Figure 3 yes Figure 2 Structural diagram of the middle frame.

[0029] Figure 4 yes Figure 3 The structure diagram of the delivery component.

[0030] Figure 5 yes Figure 4 A decomposed structure diagram.

[0031] Figure 6 yes Figure 5 A structural diagram from another perspective.

[0032] Figure 7 yes Figure 3 A sectional view.

[0033] Figure 8 yes Figure 5 An exploded view of the detergent dispenser.

[0034] Figure 9 yes Figure 5 An exploded view of the water inlet box.

[0035] Figure 10 yes Figure 8 Structural diagram of the central isolation hood and stirring components.

[0036] Figure 11 yes Figure 7 A magnified view of the local structure.

[0037] Figure 12 yes Figure 11 Structural diagram of the drive motor, rotating parts and stirring parts.

[0038] The reference numerals in the attached drawings are explained as follows: 1. Cabinet; 10. Clothes inlet; 11. Frame; 12. Door cover; 2. Drum assembly; 20. Washing chamber; 21. Outer drum; 22. Inner drum; 3. Dispensing assembly; 31. Water inlet box; 310. Receiving chamber; 3101. Liquid outlet; 3102. Liquid channel; 311. Water distribution plate; 3111. Spray nozzle; 312. Water inlet channel; 313. Boss; 314. Mounting groove; 32. Detergent box; 320. Dispensing chamber; 321. Siphon tube; 3211. Siphon port; 33. Agitator; 34. Isolation cover; 340. Isolation chamber; 341. Connecting hole; 35. Rotating component; 351. Turntable; 352. First magnet; 353. Second magnet; 36. Drive motor; 361. Output shaft. Detailed Implementation

[0039] Typical embodiments embodying the features and advantages of this utility model will be described in detail in the following description. It should be understood that this utility model can have various variations in different embodiments, all of which do not depart from the scope of this utility model, and the descriptions and illustrations therein are for illustrative purposes only and not intended to limit this utility model.

[0040] In the description of this application, it should be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are used only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this application.

[0041] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of the stated features. In the description of this application, "a plurality of" means two or more, unless otherwise explicitly specified.

[0042] In the description of this application, it should be noted that, unless otherwise expressly specified and limited, the terms "installation," "connection," and "linking" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection between two components. Those skilled in the art can understand the specific meaning of the above terms in this application based on the specific circumstances.

[0043] Figure 1 This is a front view of a clothing processing device according to some embodiments of the present invention. Figure 2 yes Figure 1 Partial structural diagram.

[0044] like Figure 1 and Figure 2 As shown, the garment processing device provided in this embodiment of the present invention may include a housing 1. The housing 1 has a rectangular hollow structure and serves as the outer shell of the garment processing device; its external shape can be designed as needed. The internal space of the housing 1 can provide installation space for other components of the garment processing device.

[0045] In some embodiments, a clothing inlet 10 may be provided on the top side wall of the housing 1. The clothing inlet 10 can connect to the internal space of the housing 1. Clothes can be placed into the housing 1 through the clothing inlet 10 for washing.

[0046] like Figures 1 to 2 As shown, in some embodiments, a door cover 12 may be provided on the top surface of the box body 1. The door cover 12 can be used to open and close the clothing loading port 10 on the top surface of the box body 1, and thus the space inside the box body 1 can be opened and closed through the door cover 12.

[0047] In some embodiments, the door cover 12 is rotatably disposed on the top of the housing 1. The rear edge of the door cover 12 is rotatably connected to the top of the housing 1. The rear edge of the door cover 12 is rotatably connected to the rear edge of the clothing loading port 10. Therefore, the front end of the door cover 12 can rotate around its rear end. It should be noted that in some other embodiments, the door cover 12 may also be rotatably connected to the top of the housing 1 via other side edges.

[0048] Figure 3 yes Figure 2 Structural diagram of the middle frame 11.

[0049] like Figure 1 , Figure 2 and Figure 3 As shown, in some embodiments, the top of the housing 1 may be provided with a frame 11. The frame 11 may be a rectangular frame structure. The clothing inlet 10 may be located at the center of the frame 11. The rear end of the door cover 12 is rotatably disposed on the frame 11. The rear end of the door cover 12 may rotate relative to the frame 11, thereby causing the front end of the door cover 12 to cover or open the clothing inlet 10, realizing the opening and closing of the door cover 12, and thus opening and closing the clothing inlet 10 on the frame 11.

[0050] like Figure 2As shown, in some embodiments, the washing machine may include a drum assembly 2. The drum assembly 2 may be disposed inside the housing 1. The drum assembly 2 may be arranged vertically in the up-down direction. A washing chamber 20 may be formed inside the drum assembly 2. A drum opening (not shown in the figure) may be formed on the top surface of the drum assembly 2. The drum opening of the drum assembly 2 may communicate with the interior of the washing chamber 20. The drum opening of the drum assembly 2 is directly opposite the clothes inlet 10 at the top of the housing 1, so that the clothes inlet 10 may communicate with the interior of the washing chamber 20. When the door cover 12 is rotated and the front end of the door cover 12 is lifted, the clothes inlet 10 may be opened, and clothes may be sequentially placed into the washing chamber 20 inside the drum assembly 2 through the clothes inlet 10 of the housing 1 and the drum opening at the top of the drum assembly 2 for washing, spin-drying, and other operations. When the door cover 12 is rotated and the front end of the door cover 12 is lowered, the clothes inlet 10 may be closed by the door cover 12, and the door cover 12 may simultaneously close the clothes inlet 10 and the washing chamber 20.

[0051] In some embodiments, the tub assembly 2 may include an outer tub 21. The outer tub 21 may be disposed inside the housing 1. The outer tub 21 is configured to hold washing water, that is, the internal space of the outer tub 21 can be used to hold washing liquids, such as water, detergent, fabric softener, etc.

[0052] In some embodiments, the tubular assembly 2 may include an inner tubing 22. The inner tubing 22 is disposed inside the outer tubing 21. A washing chamber 20 may be formed inside the inner tubing 22. The washing chamber 20 within the inner tubing 22 is used to hold clothes to be washed. A water passage hole (not shown in the figure) may be provided on the peripheral wall of the inner tubing 22. The washing chamber 20 can connect the space between the inner tubing 22 and the outer tubing 21 through the water passage hole. The washing liquid in the outer tubing 21 can enter the washing chamber 20 within the inner tubing 22 through the water passage hole, that is, the washing liquid in the space between the inner tubing 22 and the outer tubing 21 can enter the washing chamber 20 within the inner tubing 22 through the water passage hole.

[0053] In some embodiments, the inner drum 22 is rotatably disposed inside the outer drum 21. When the inner drum 22 rotates relative to the outer drum 21, the inner drum 22 can drive the clothes to rotate relative to the outer drum 21, thereby realizing the washing function of the clothes in the washing chamber 20 of the inner drum 22 and improving the uniformity of washing and dehydration of the clothes. It should be noted that in other embodiments, the washing chamber 20 can also be used to dry clothes, such as in a washer-dryer combo.

[0054] In some embodiments, the outer cylinder 21 and the inner cylinder 22 may be arranged coaxially. The top ends of the outer cylinder 21 and the inner cylinder 22 may be provided with openings arranged opposite to each other. The top openings of the outer cylinder 21 and the top openings of the inner cylinder 22 may be combined to form the opening of the cylinder assembly 2.

[0055] Please see Figure 2As shown, in some embodiments, a drive device (not shown in the figure), such as a drive motor 36, may be provided inside the housing 1. The drive device may be located outside the outer drum 21. The drive device may also be located inside the housing 1. The output end of the drive device may extend into the outer drum 21 and be connected to the inner drum 22 for transmission. When the drive device can drive the inner drum 22 to rotate relative to the outer drum 21, the washing or dehydration function of the washing chamber 20 in the inner drum 22 can be realized. It should be noted that in some other embodiments, the output end of the drive device may also be connected to the inner drum 22 for transmission via a transmission device.

[0056] Figure 4 yes Figure 3 The structural diagram of component 3 in the middle.

[0057] like Figure 2 , Figure 3 and Figure 4 As shown, in some embodiments, the garment handling device may include a dispensing component 3. The dispensing component 3 may be located inside the housing 1. The dispensing component 3 may be located above the top of the drum assembly 2. The dispensing component 3 can be used to add detergents such as laundry detergent, fabric softener, or water. The user can dispense detergents such as laundry detergent, fabric softener, or water into the dispensing component 3, allowing the detergent to flow into the garment handling chamber along the dispensing component 3. When it is time to wash clothes, the dispensing component 3 can deliver detergents (such as laundry detergent, fabric softener, etc.) into the garment handling chamber via a water flow.

[0058] Figure 5 yes Figure 4 A decomposed structure diagram.

[0059] like Figure 4 and Figure 5 As shown, in some embodiments, the dispensing component 3 may include a water inlet box 31, which may be located on the top of the housing 1. The water inlet box 31 may be located on the frame 11. The water inlet box 31 may be located around the clothing dispensing port 10. The water inlet box 31 may have a hollow box-like structure. The interior of the water inlet box 31 may have a receiving cavity 310. The receiving cavity 310 can communicate with the washing chamber 20. External water can enter the water inlet box 31 and then enter the washing chamber 20 through the receiving cavity 310, thereby adding water to the washing chamber 20.

[0060] Figure 6 yes Figure 5 A structural diagram from another perspective. Figure 7 yes Figure 3 A sectional view.

[0061] like Figure 6 and Figure 7As shown, in some embodiments, the front end of the receiving cavity 310 may be provided with an opening. The front opening of the receiving cavity 310 may form a liquid outlet 3101. The liquid outlet 3101 may be located inside the clothing loading port 10. The liquid outlet 3101 may be located above the top of the washing cavity 20. The liquid outlet 3101 may communicate with the washing cavity 20. After water in the water inlet box 31 enters the receiving cavity 310, it can flow downward into the washing cavity 20 through the liquid outlet 3101.

[0062] Figure 8 yes Figure 5 An exploded view of the detergent dispenser 32.

[0063] like Figure 5 and Figure 8 As shown, in some embodiments, the dispensing component 3 may include a detergent dispenser 32. The detergent dispenser 32 may be located on the top of the housing 1. The detergent dispenser 32 may have a box-shaped structure with an open top. The detergent dispenser 32 may have a dispensing cavity 320 inside. The dispensing cavity 320 may be used to dispense detergent, such as laundry liquid or fabric softener.

[0064] In some embodiments, the detergent dispenser 32 may be disposed within the water inlet box 31. The detergent dispenser 32 may be arranged within the receiving cavity 310. After an external water source enters the water inlet box 31, it can enter the detergent dispenser 32, where the water mixes and dissolves with the detergent in the dispensing cavity 320 before entering the receiving cavity 310 and flowing into the washing cavity 20 through the outlet 3101 at the front end of the receiving cavity 310.

[0065] In some embodiments, the detergent dispenser 32 may be slidably disposed within the water inlet box 31. The detergent dispenser 32 may be slidably extended into the receiving cavity 310 through the front opening of the receiving cavity 310, so that the user can pull out the detergent dispenser 32 to refill the detergent.

[0066] like Figure 7 As shown, in some embodiments, a liquid channel 3102 may be formed between the bottom of the detergent dispenser 32 and the bottom surface of the receiving cavity 310. An outlet 3101 may be located at the front end of the liquid channel 3102. The outlet 3101 may be formed between the front opening of the receiving cavity 310 and the bottom of the front end of the detergent dispenser 32. After the detergent and water in the dispensing cavity 320 are mixed, the mixture can flow into the liquid channel 3102, flow along the liquid channel 3102 to the outlet 3101, and finally flow into the washing cavity 20 through the outlet 3101.

[0067] like Figure 7As shown, in some embodiments, the liquid channel 3102 may be arranged to extend downward at an angle toward the outlet 3101. The bottom surface of the receiving cavity 310 may also be arranged to extend downward at an angle. After the detergent in the dispensing cavity 320 is mixed with water, it can flow into the liquid channel 3102 and flow along the inclined bottom surface of the receiving cavity 310 toward the outlet 3101.

[0068] like Figure 7 and Figure 8 As shown, in some embodiments, a siphon tube 321 may be provided inside the dispensing chamber 320. The siphon tube 321 may extend upward from the bottom surface of the dispensing chamber 320. A siphon opening 3211 may be formed inside the siphon tube 321. The upper end of the siphon tube 321 may be connected to the dispensing chamber 320. The lower end of the siphon tube 321 may be connected to the liquid channel 3102. After the water and detergent enter the dispensing chamber 320 and mix, they can flow through the siphon tube 321 and the siphon opening 3211 into the liquid channel 3102, and then flow into the washing chamber 20 through the liquid outlet 3101.

[0069] Figure 9 yes Figure 5 An exploded view of the water inlet box 31.

[0070] like Figure 7 and Figure 9 As shown, in some embodiments, a water distribution plate 311 may be provided inside the water inlet box 31, and the water distribution plate 311 is disposed on the top wall of the receiving cavity 310. A water inlet channel 312 may be provided inside the water inlet box 31, and the water inlet channel 312 may be formed between the top surface of the water distribution plate 311 and the top wall of the water inlet box 31. Multiple spray nozzles 3111 communicating with the water inlet channel 312 may be provided on the water distribution plate 311, and the spray nozzles 3111 are arranged downwards. The spray nozzles 3111 may be arranged above the top of the dispensing cavity 320. After external water enters the water inlet channel 312, it can be sprayed and rinsed into the dispensing cavity 320 simultaneously through multiple spray nozzles 3111, which can improve the water output efficiency and uniformity inside the water inlet box 31, thereby improving the dissolution efficiency of the detergent in the dispensing cavity 320.

[0071] like Figure 8 As shown, in some embodiments, the dispensing component 3 may include a stirring element 33, which may be movably disposed in the bottom region of the detergent dispenser 32. The stirring element 33 may also be movably disposed in the bottom region of the dispensing cavity 320; for example, the stirring element 33 may rotate within the dispensing cavity 320. By rotating the stirring element 33, it can be used to stir the detergent-water mixture within the receiving cavity 310, ensuring thorough mixing of the detergent and water, thereby improving the dissolution rate and efficiency of the detergent.

[0072] Figure 10 yes Figure 8Structural diagram of the central isolation cover 34 and the stirring component 33.

[0073] like Figure 8 and Figure 10 As shown, in some embodiments, the detergent dispenser 32 is provided with an isolation cover 34, which can cover the bottom surface of the dispensing chamber 320. An isolation cavity 340 is formed within the isolation cover 34, and the isolation cavity 340 can be formed between the isolation cover 34 and the bottom surface of the dispensing chamber 320. The isolation cavity 340 can communicate with the dispensing chamber 320. A stirring member 33 is movably disposed within the isolation cavity 340. The isolation cover 34 can limit the range of motion of the stirring member 33. When an external water source enters the water inlet box 31, the water enters the dispensing chamber 320 through the water inlet channel 312 and the spray nozzle 3111. After mixing with the detergent in the dispensing chamber 320, the water and detergent enter the isolation chamber 340 in the isolation cover 34. The liquid is stirred by the rotating agitator 33, so that the detergent and water are fully mixed. The mixed detergent and water can flow back into the dispensing chamber 320, and then flow into the liquid channel 3102 through the siphon tube 321 and the siphon port 3211, and then flow into the washing chamber 20 through the liquid outlet 3101.

[0074] In some embodiments, the outer wall of the isolation cover 34 may be provided with a connecting hole 341, which connects the isolation cavity 340 and the dispensing cavity 320. Water and detergent in the dispensing cavity 320 can enter the isolation cavity 340 through the connecting hole 341, be mixed by the stirring member 33, and then flow back to the dispensing cavity 320 through the connecting hole 341.

[0075] In some embodiments, the outer wall of the isolation cover 34 may be provided with a plurality of connecting holes 341, which are arranged at intervals on the outer peripheral wall of the isolation cover 34. The plurality of connecting holes 341 can improve the liquid inlet efficiency and liquid outlet efficiency in the isolation chamber 340. Water and detergent in the dispensing chamber 320 can enter the isolation chamber 340 through some of the connecting holes 341, be mixed by the agitator 33, and then flow back into the dispensing chamber 320 through another part of the connecting holes 341.

[0076] like Figure 10 As shown, in some embodiments, the connecting hole 341 can be an elongated hole, which can extend along the height direction of the isolation cover 34. The elongated connecting hole 341 can improve the liquid inlet and outlet efficiency within the isolation cavity 340. It should be noted that in other embodiments, the connecting hole 341 can also adopt other forming structures, which are not limited here.

[0077] Figure 11 yes Figure 7 A magnified view of the local structure.

[0078] like Figure 7 and Figure 11As shown, in some embodiments, the dispensing component 3 may include a rotating member 35, which is rotatably disposed within the water inlet box 31. The rotating member 35 is located below the bottom of the detergent box 32 and below the stirring member 33. The stirring member 33 is magnetic, and the rotating member 35 is also magnetic. When the rotating member 35 rotates, its magnetic force interacts with the magnetic force of the stirring member 33, thereby causing the stirring member 33 above it to rotate synchronously. This allows the stirring member 33 to rotate and stir the detergent and water in the isolation chamber 340 and the dispensing chamber 320, ensuring thorough mixing of the detergent and water, improving the dissolution rate and efficiency of the detergent, and thus reducing detergent residue.

[0079] In some embodiments, the dispensing component 3 may include a drive motor 36. The drive motor 36 is located at the bottom of the water inlet box 31. The output shaft 361 of the drive motor 36 is connected to the rotating component 35. The drive motor 36 is used to drive the rotating component 35 to rotate. When the drive motor 36 drives the rotating component 35 to rotate, the magnetic force of the rotating component 35 can drive the stirring component 33 to rotate within the dispensing chamber 320, so that the stirring component 33 stirs the detergent within the dispensing chamber 320, allowing the detergent to mix thoroughly with the water, thereby improving the dissolution rate and efficiency of the detergent.

[0080] like Figure 6 , Figure 7 and Figure 11 As shown, in some embodiments, a mounting groove 314 may be provided on the bottom surface of the water inlet box 31, and the mounting groove 314 is isolated from the receiving cavity 310. The rotating component 35 is rotatably disposed in the mounting groove 314. The mounting groove 314 can provide mounting space for the rotating component 35, avoid contact between the rotating component 35 and the water or detergent in the receiving cavity 310, and improve the stability and reliability of the rotating component 35.

[0081] like Figure 9 and Figure 11 As shown, in some embodiments, a boss 313 may be provided at the bottom of the receiving cavity 310. A mounting groove 314 may be formed inside the boss 313. The boss 313 may be arranged in the liquid channel 3102 below the detergent box 32. The boss 313 can improve the space utilization rate of the water inlet box 31 without occupying additional space in the receiving cavity 310.

[0082] In some embodiments, the drive motor 36 can be disposed within the mounting slot 314, thereby fixing the drive motor 36 inside the water inlet box 31. The rotating member 35 can be disposed above the drive motor 36. The output shaft 361 of the drive motor 36 is arranged upward and connected to the rotating member 35. By installing the drive motor 36 and the rotating member 35 respectively within the mounting slot 314, the space utilization efficiency inside the water inlet box 31 can be improved, installation can be facilitated, and the stability of the connection between the output shaft 361 of the drive motor 36 and the rotating member 35 can be improved.

[0083] Figure 12 yes Figure 11 Structural diagram of drive motor 36, rotating component 35 and stirring component 33.

[0084] like Figure 11 and Figure 12 As shown, in some embodiments, the rotating member 35 may include a turntable 351, which is mounted on the output shaft 361 of the drive motor 36. The center of the turntable 351 may be located on the output shaft 361 of the drive motor 36. Thus, when the output shaft 361 of the drive motor 36 rotates, the output shaft 361 of the drive motor 36 can drive the turntable 351 to rotate synchronously.

[0085] In some embodiments, the rotating member 35 may include a first magnet 352 and a second magnet 353, which are spaced apart on the turntable 351 and symmetrically arranged on opposite sides of the output shaft 361 of the drive motor 36. The first magnet 352 and the second magnet 353 may be symmetrically arranged on opposite sides of the turntable 351. The magnetic poles of the first magnet 352 and the second magnet 353 facing the top surface of the turntable 351 are opposite. Thus, the magnetic poles of the first magnet 352 and the second magnet 353 facing the stirring member 33 may be magnetically opposite. When the output shaft 361 of the drive motor 36 drives the turntable 351 to rotate synchronously, the first magnet 352 and the second magnet 353 can rotate synchronously with the turntable 351, thereby forming a rotating magnetic field above the turntable 351. This magnetic field can drive the magnetic stirring member 33 to rotate within the dispensing chamber 320, achieving the stirring function of the detergent and improving the dissolution rate of the detergent.

[0086] like Figure 11 and Figure 12As shown, in some embodiments, the top magnetic poles of the first magnet 352 and the second magnet 353 can be exposed on the top surface of the turntable 351. By having the top magnetic poles of the first magnet 352 and the second magnet 353 exposed on the top surface of the turntable 351, it is easier to mount the first magnet 352 and the second magnet 353 on the top surface of the turntable 351. Compared to a solution where the first magnet 352 and the second magnet 353 are embedded inside the turntable 351, this solution can reduce the distance between the first magnet 352 and the second magnet 353 and the stirring element 33, thereby increasing the magnetic effect of the first magnet 352 and the second magnet 353 on the stirring element 33.

[0087] In some embodiments, the magnetic poles at the bottom of the first magnet 352 and the second magnet 353 are opposite, and the bottom magnetic poles of the first magnet 352 and the second magnet 353 are exposed on the bottom surface of the turntable 351. By having the bottom magnetic poles of the first magnet 352 and the second magnet 353 exposed on the bottom surface of the turntable 351, and the top magnetic poles of the first magnet 352 and the second magnet 353 exposed on the top surface of the turntable 351, the first magnet 352 and the second magnet 353 can be arranged to penetrate the turntable 351 vertically, respectively. This facilitates the downward mounting of either the top or bottom surface of the turntable 351 onto the output shaft 361 of the drive motor 36, which helps to simplify the installation difficulty of the rotating component 35 and improve the installation efficiency of the rotating component 35.

[0088] In some embodiments, the stirring element 33 is a capsule body with an elongated structure and opposite magnetic poles at its two ends along its length. This capsule structure effectively prevents detergent from entering the stirring element 33. When the rotating element 35 drives the capsule body to rotate, the opposite magnetic poles at both ends along the length of the capsule body allow it to rotate more smoothly and synchronously with the rotating element 35, which improves the stirring efficiency and dissolution rate of the detergent.

[0089] Although the present invention has been described with reference to several typical embodiments, it should be understood that the terminology used is descriptive and exemplary, and not restrictive. Since the present invention can be embodied in many forms without departing from the spirit or essence of the invention, it should be understood that the above embodiments are not limited to any of the foregoing details, but should be interpreted broadly within the spirit and scope defined by the appended claims. Therefore, all variations and modifications falling within the scope of the claims or their equivalents should be covered by the appended claims.

Claims

1. A garment processing device, characterized in that, include: The housing is configured as the outer shell of the garment handling device; A cylindrical assembly is disposed within the housing, and a washing chamber is formed within the cylindrical assembly; The delivery component includes: A water inlet box is located inside the box. A detergent dispenser is slidably installed inside the water inlet box, and the detergent dispenser has a dispensing cavity for dispensing detergent. A stirring element is movably disposed in the bottom region of the dispensing cavity, and the stirring element is magnetic; A rotating component is rotatably disposed inside the water inlet box. The rotating component is located below the bottom of the detergent box and below the stirring component. The rotating component is magnetic. A drive motor is located at the bottom of the water inlet box. The output shaft of the drive motor is connected to the rotating component, and the drive motor is used to drive the rotating component to rotate. When the drive motor drives the rotating component to rotate, the magnetic force of the rotating component can drive the stirring component to rotate in the dispensing chamber, so that the stirring component stirs the liquid in the dispensing chamber.

2. The garment processing apparatus as described in claim 1, characterized in that, The detergent dispenser is equipped with an isolation cover, which covers the bottom surface of the dispensing chamber. An isolation cavity is formed inside the isolation cover and communicates with the dispensing chamber. The stirring element is movably disposed within the isolation chamber.

3. The garment processing apparatus as described in claim 2, characterized in that, The outer wall of the isolation cover is provided with a connecting hole, which connects the isolation cavity and the delivery cavity.

4. The garment processing apparatus as described in claim 3, characterized in that, The communication holes are provided in multiple ways, and the multiple communication holes are arranged at intervals on the outer peripheral wall of the isolation cover.

5. The garment processing apparatus as described in claim 1, characterized in that, The bottom surface of the water inlet box is provided with an installation groove, and the rotating component is rotatably disposed in the installation groove.

6. The garment processing apparatus as described in claim 5, characterized in that, The drive motor is located in the mounting slot, and the rotating component is located above the drive motor; the output shaft of the drive motor is arranged upward and connected to the rotating component.

7. The garment processing apparatus as described in claim 1, characterized in that, The rotating component includes: A turntable is mounted on the output shaft of the drive motor; The first magnet and the second magnet are disposed at intervals on the turntable and symmetrically disposed on opposite sides of the output shaft of the drive motor; The first magnet and the second magnet have opposite magnetic poles facing the top surface of the turntable.

8. The garment processing apparatus as described in claim 7, characterized in that, The top magnetic poles of the first magnet and the second magnet are exposed on the top surface of the turntable.

9. The garment processing apparatus as described in claim 8, characterized in that, The magnetic poles at the bottom of the first magnet and the second magnet are opposite, and the bottom magnetic poles of the first magnet and the second magnet are exposed on the bottom surface of the turntable.

10. The garment processing apparatus as described in claim 7, characterized in that, The stirring element is a capsule, and the magnetic poles at both ends of the capsule along its length are opposite.