Dropping assembly and clothes treatment equipment

By designing multi-path delivery components in the clothing processing equipment, including detergent boxes and spray heads, the problem of excessive accumulation of detergent mixed solution is solved, safe and reliable detergent delivery is achieved, and the safety and operational reliability of the equipment are improved.

CN223281068UActive Publication Date: 2025-08-29WUXI MEIZHI ELECTRIC CO LTD
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Patent Information

Application Number
CN202422115391.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-29
Publication Date
2025-08-29
Estimated Expiration
2034-08-29

AI Technical Summary

Technical Problem

In existing clothing treatment equipment, the detergent delivery path is single, which can easily lead to excessive accumulation of detergent mixed solution and lack of safety protection measures.

Method used

A delivery component is designed, including a detergent box and a spray head, forming a first water path and an overflow water path. The detergent mixed solution is transported through the first water path. When the liquid level is higher than the overflow liquid level, it overflows to the overflow water path and enters the clothing treatment chamber, realizing multi-path delivery, and timely discharges the excess solution through the overflow water path.

Benefits of technology

It enriches the delivery path of the detergent mixed solution, improves the safety of the equipment, avoids excessive accumulation of the detergent mixed solution, and improves the safety and reliability of the operation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of clothes treatment, and provides a putting assembly and clothes treatment equipment, the putting assembly is arranged on a workbench, the putting assembly comprises a detergent box and a spray head, and an overflow water path is formed in the detergent box; the nozzle is located on one side outside the detergent box, the detergent box and the nozzle are both constructed as a part of the first water path, the first water path is used for conveying a detergent mixed solution, and the overflow water path is used for receiving the detergent mixed solution overflowing from the first water path. The first water path and the overflow water path are both used for putting the detergent mixed solution into the clothes processing cavity, and the putting path of the detergent mixed solution is enriched.
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Description

Technical Field

[0001] The present application relates to the technical field of clothing processing, and in particular to a dispensing component and a clothing processing device. Background Art

[0002] This section is intended to provide a background or context for the embodiments of the present application. No description herein is admitted to be prior art by virtue of its inclusion in this section.

[0003] For laundry processing equipment with a workbench, the workbench's clothing loading port is used to place or remove laundry from the clothing processing equipment. In related art, the workbench is equipped with a nozzle body for dispensing liquids such as detergent. The nozzle body installed on the workbench has a water outlet, through which detergent is dispensed into the laundry processing chamber of the clothing processing equipment. Utility Model Content

[0004] In view of this, the present application hopes to provide a dispensing component and a clothing processing device, wherein the first water channel and the overflow water channel are both used to dispense a detergent mixed solution into the clothing processing chamber, thereby enriching the dispensing path of the detergent mixed solution.

[0005] An embodiment of the present application provides a delivery component, which is disposed on a workbench and includes:

[0006] The detergent box is formed with an overflow water channel;

[0007] The nozzle is located on one side of the outside of the detergent box. The detergent box and the nozzle are both constructed as part of a first water channel. The first water channel is used to transport the detergent mixed solution, and the overflow water channel is used to receive the detergent mixed solution overflowing from the first water channel.

[0008] In some embodiments, the delivery assembly includes a second water channel and a mixing space, the second water channel is used to transport water, and the water outlet end of the first water channel and the water outlet end of the second water channel are both connected to the mixing space.

[0009] In some embodiments, the delivery assembly includes a cannula, the cannula forming at least a portion of the second waterway, and at least a portion of the cannula being inserted into the first waterway.

[0010] In some embodiments, the nozzle is formed with a liquid outlet channel, the liquid outlet channel is a part of the first water channel, and at least a portion of the cannula is inserted into the liquid outlet channel.

[0011] In some embodiments, the second water channel is provided with a pressurizing structure and / or a turbulent flow structure, wherein the pressurizing structure is used to increase the flow velocity of the fluid in the second water channel, and the turbulent flow structure is used to provide a circumferential velocity component to the fluid in the second water channel.

[0012] In some embodiments, a partition is provided on the lower side of the workbench, and the partition and the workbench together define the spray head.

[0013] In some embodiments, at least a portion of the detergent box is formed by the worktop.

[0014] In some embodiments, the dispensing assembly includes a dispenser box that can be inserted and removed from the detergent box, the dispenser box forms a detergent dispensing chamber for containing detergent, the detergent box forms a mixing chamber connected to the detergent dispensing chamber, and the detergent dispensing chamber and the mixing chamber are both part of the first water channel.

[0015] In some embodiments, the detergent delivery chamber is located above the mixing chamber, and a filter hole is formed on the upper side wall of the mixing chamber.

[0016] An embodiment of the present application provides a clothes processing device, comprising:

[0017] laundry processing chamber;

[0018] Workbench;

[0019] In any one of the above-mentioned dispensing components, the detergent mixed solution in the first water channel and the detergent mixed solution in the overflow water channel both enter the clothing processing chamber.

[0020] The dispensing assembly provided in the embodiment of the present application is formed with an overflow waterway and a part of the first waterway in the detergent box, and the nozzle forms a part of the first waterway. In this way, the detergent mixed solution can be diverted in the detergent box, with a part of the detergent mixed solution entering the nozzle and the other part of the detergent mixed solution entering the overflow waterway. When the liquid level of the detergent mixed solution in the first waterway is higher than the overflow liquid level, the excess detergent mixed solution in the first waterway overflows into the overflow waterway and enters the clothing processing chamber through the overflow waterway. The overflow waterway can play a safety protection role and can promptly discharge the excess detergent mixed solution in the first waterway. Compared with the solution of only one water outlet for dispensing detergent in the related art, the first waterway and the overflow waterway of the present application are both used to dispense the detergent mixed solution into the clothing processing chamber, enriching the dispensing path of the detergent mixed solution. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] Figure 1 This is a structural diagram of the workbench and the dispenser box in the embodiment of the present application;

[0022] Figure 2 for Figure 1 a schematic diagram of another perspective of the structure shown;

[0023] Figure 3This is a schematic structural diagram of a workbench from one perspective in one embodiment of the present application, wherein the dotted arrows schematically show the direction of fluid flow;

[0024] Figure 4 for Figure 3 A schematic cross-sectional view of the workbench shown;

[0025] Figure 5 for Figure 3 A schematic diagram of another perspective of the workbench;

[0026] Figure 6 for Figure 5 Schematic diagram of the middle workbench omitting the filter plate, showing the water inlet valve;

[0027] Figure 7 This is a schematic structural diagram of an intubation tube in one embodiment of the present application;

[0028] Figure 8 for Figure 7 Cross-sectional view in the middle DD direction;

[0029] Figure 9 for Figure 1 A schematic structural diagram of a distributor box;

[0030] Figure 10 for Figure 3 Another schematic cross-sectional view of the workbench shown;

[0031] Figure 11 for Figure 10 Enlarged schematic diagram at point G in the middle.

[0032] Description of Reference Numerals

[0033] 20a, mixing space; 20ab, liquid outlet; 21, turbulent flow structure; 120, pressurizing structure; 22, reduced diameter section; 23, constant diameter section; 30, detergent box; 30c, overflow chamber; 30d, mixing chamber; 30e, accommodating chamber; 40A, first waterway; 50A, second waterway; 90, water inlet valve; 80, workbench; 80a, clothing loading port; 80b, pumping port; 130, nozzle; 130a, liquid flow channel ; 50Aa, the water outlet end of the liquid flow channel 130a; 130b, the liquid outlet channel; 40Aa, the water outlet end of the liquid outlet channel 130b; 130ba, the guide surface; 131, the insert tube; 1311, the horizontal section; 1312, the bending section; 140, the dispenser box; 140a, the detergent delivery chamber; 140b, the discharge port; 150, the partition member; 160, the filter plate; 160a, the filter hole; 180A, the overflow waterway. DETAILED DESCRIPTION

[0034] In the absence of conflict, the embodiments and technical features in the embodiments of this application can be combined with each other. The detailed description in the specific implementation method should be understood as an explanation of the purpose of this application and should not be regarded as an improper limitation on this application.

[0035] It should be noted that, in the embodiment of the present application, down refers to the direction of the ground, and up is opposite to down; front refers to the direction toward the user, and back is opposite to front; left is the side where the left hand of the user is located when the user is in front of the clothing processing device, and right is opposite to left; the up and down directions, the front and back directions, and the left and right directions are perpendicular to each other. In the embodiment of the present application, the orientation or positional relationship of "up", "down", "front", "back", "left", and "right" is based on the orientation or positional relationship shown in the accompanying drawings. It should be understood that these orientation terms are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on the present application. The present application will be further described in detail below in conjunction with the accompanying drawings and specific embodiments.

[0036] In the embodiments of the present application, "a plurality" refers to a number including two or more, and "at least two" refers to a number including two or more.

[0037] The embodiment of the present application provides a clothes processing device, which includes a housing and a workbench 80. The workbench 80 is arranged on the housing. The housing provides support for the workbench 80.

[0038] The workbench 80 can be arranged at the upper part of the box. It is understood that, with the plane perpendicular to the front-back direction as the projection plane and the straight line extending in the horizontal direction and bisecting the projection of the box as the bisector, the upper part of the box can be the part of the box located above the bisector.

[0039] In some embodiments, the box may be substantially in the shape of a hexahedron, for example, a cube or a cuboid.

[0040] The clothes processing device includes a clothes processing chamber, a workbench 80 and a housing together define a placement chamber, and the clothes processing chamber is located in the placement chamber. The clothes processing chamber is used to place clothes.

[0041] The laundry processing device may be a pulsator washing machine, wherein the laundry processing chamber of the pulsator washing machine rotates around an axis extending in an up-down direction.

[0042] The clothes processing device comprises a barrel assembly, wherein the barrel assembly has a clothes processing cavity, and the barrel assembly is placed in the placement cavity.

[0043] See also Figure 1The workbench 80 is formed with a clothing insertion opening 80a, which extends through both upper and lower surfaces of the workbench 80 and communicates with the clothing processing chamber. Clothes can be placed into or removed from the clothing processing chamber through the clothing insertion opening 80a. The workbench 80 may constitute the exterior of the clothing processing apparatus.

[0044] The laundry processing device includes a door body that can selectively open or close the laundry inlet 80a. For example, one end of the door body can be rotatably connected to the workbench 80. In this way, the convenience of operation can be improved.

[0045] The workbench 80 can also be used to install components such as a control panel, which can be used to control the operation of the clothing processing device.

[0046] In some embodiments, the drum assembly includes a rotatable inner drum. The inner drum has an access opening that can face upward. A user can insert or remove clothing from the inner drum from above through the clothing insertion opening 80a and the access opening. The inner drum can be used to hold loads such as clothing. The inner drum can rotate, for example, so that clothing, liquids, detergents, etc. rotate with the inner drum. This allows the clothing to continuously change position within the inner drum, and fluids such as liquids and detergents to change direction as they flow.

[0047] The space within the inner drum can be a clothing processing chamber, the axis of the drum assembly can extend in the vertical direction, and the workbench 80 can be arranged above the drum assembly. A rotatable impeller can be arranged in the clothing processing chamber, such as the inner drum, to stir the clothing, water, detergent, etc. in the drum assembly.

[0048] In some embodiments, the inner cylinder may be substantially in the shape of a hollow cylinder.

[0049] In some embodiments, the drum assembly includes an outer tub, and the inner tub can be disposed in the outer tub. The outer tub can be used to hold water for washing clothes, and the inner tub is used to hold clothes.

[0050] In this embodiment, the outer tub holds water, and the inner tub can also be called a perforated inner tub. The space within the inner tub forms part of the laundry processing chamber. Fluid can flow between the space between the outer tub and the inner tub and the space within the inner tub through the flow holes in the inner tub.

[0051] In some embodiments, the outer barrel may be substantially in the shape of a hollow cylinder.

[0052] It should be noted that, for ease of understanding, the Figure 4 , the first water channel 40A, the second water channel 50A and the overflow water channel 180A of the present application are schematically shown in the form of dotted arrows.

[0053] See also Figures 1 to 11An embodiment of the present application provides a dispensing assembly, which is arranged on a workbench 80. The dispensing assembly includes a detergent box 30 and a nozzle 130. The detergent box 30 is formed with an overflow waterway 180A. The nozzle 130 is located on one side of the outside of the detergent box 30. The detergent box 30 and the nozzle 130 are both constructed as part of a first waterway 40A. The first waterway 40A is used to transport a detergent mixed solution, and the overflow waterway 180A is used to receive the detergent mixed solution overflowing from the first waterway 40A.

[0054] The workbench 80 provides support and installation location for the delivery assembly.

[0055] The overflow water channel 180A is used to receive the detergent mixed solution overflowing from the first water channel 40A, which means that: when the liquid level of the detergent mixed solution in the first water channel 40A is not higher than the overflow liquid level, the detergent mixed solution is basically transported to the clothing processing chamber through the first water channel 40A; when the liquid level of the detergent mixed solution in the first water channel 40A is higher than the overflow liquid level, the excess detergent mixed solution in the first water channel 40A overflows into the overflow water channel 180A and enters the clothing processing chamber through the overflow water channel 180A.

[0056] It is understandable that the overflow liquid level can be set according to demand and is not limited in this application.

[0057] The detergent box 30 and the spray head 130 both form a part of the first water channel 40A. That is, the detergent box 30 and the spray head 130 both have channels for circulating the detergent mixed solution. The detergent mixed solution in the first water channel 40A flows through the detergent box 30 and the spray head 130.

[0058] It should be noted that the detergent box 30 in the present application can also be referred to as a nozzle body.

[0059] In the dispensing assembly provided in the embodiment of the present application, the detergent box 30 is formed with an overflow waterway 180A and a portion of the first waterway 40A, and the nozzle 130 forms a portion of the first waterway 40A. In this way, the detergent mixture solution can be divided in the detergent box 30, with a portion of the detergent mixture solution entering the nozzle 130 and another portion entering the overflow waterway 180A. When the detergent mixture solution level in the first waterway 40A exceeds the overflow level, the excess detergent mixture solution in the first waterway 40A overflows into the overflow waterway 180A and enters the clothing treatment chamber through the overflow waterway 180A. The overflow waterway 180A can serve as a safety protection, allowing the excess detergent mixture solution in the first waterway 40A to be promptly discharged. Compared to the solution of the related art that only uses a single outlet for dispensing detergent, the first waterway 40A and the overflow waterway 180A of the present application are both used to dispense the detergent mixture solution into the clothing treatment chamber, enriching the dispensing path of the detergent mixture solution.

[0060] It should be noted that the detergent mixed solution mentioned in this application is merely for convenience of description and refers to a mixed solution in which detergent is dissolved. The mass percentage concentration is not limited, and the detergent mixed solution is not limited to a solution in which the detergent is completely dissolved. In some embodiments, the detergent mixed solution can be a user-added detergent stock solution. In other embodiments, the detergent mixed solution can be a mixture of detergent and a fluid from a water source.

[0061] The functions of detergents are not limited. For example, the functions of detergents include but are not limited to cleaning, softening or adding fragrance.

[0062] The type of detergent is not limited, and the detergent includes but is not limited to detergent, softener and / or fragrance, etc.

[0063] The form of the detergent is not limited, and it can be powdered laundry detergent or flowable laundry liquid.

[0064] The delivery assembly is arranged on the workbench 80, and at least part of the components of the delivery assembly may be fixed to the workbench 80, and the fixing method includes but is not limited to detachable connection, non-detachable connection or one-piece molding, etc.

[0065] An embodiment of the present application provides a clothing processing device, which includes a clothing processing chamber, a workbench 80 and a dispensing component in any embodiment of the present application. The detergent mixed solution in the first water channel 40A and the detergent mixed solution in the overflow water channel 180A both enter the clothing processing chamber.

[0066] In the laundry processing device provided by the embodiment of the present application, when the liquid level of the detergent mixed solution in the first water channel 40A exceeds the overflow level, the excess detergent mixed solution in the first water channel 40A overflows into the overflow water channel 180A and enters the laundry processing chamber through the overflow water channel 180A. The overflow water channel 180A can serve as a safety protection, and can promptly drain the excess detergent mixed solution in the first water channel 40A. Compared to the solution of the related art that only uses a single water outlet to dispense detergent, the first water channel 40A and the overflow water channel 180A of the present application are both used to dispense the detergent mixed solution into the laundry processing chamber, enriching the dispensing path of the detergent mixed solution.

[0067] In some embodiments, the spray head 130 is located on the left or right side of the detergent box 30. The spray head 130 and the detergent box 30 are arranged in the left-right direction, which can reduce the size occupied by the spray head 130 and the detergent box 30 in the vertical direction, thereby avoiding excessively increasing the overall height of the workbench 80 in the vertical direction.

[0068] For some examples, see Figures 1 to 11The delivery component includes a second water channel 50A and a mixing space 20a. The second water channel 50A is used to transport water. The water outlet end of the first water channel 40A and the water outlet end of the second water channel 50A are both connected to the mixing space 20a.

[0069] The fluid from the first water channel 40A and the fluid from the second water channel 50A both enter the mixing space 20a and enter the laundry treatment chamber through the mixing space 20a to participate in laundry treatment.

[0070] In this embodiment, the fluid from the second water channel 50A and the fluid from the first water channel 40A both enter the mixing space 20a to converge and mix, thereby improving the mixing effect and allowing detergent, such as washing powder, to be more fully dissolved.

[0071] The outlet end of the first water channel 40A refers to the location where the fluid in the first water channel 40A leaves the first water channel 40A. The outlet end of the second water channel 50A refers to the location where the fluid in the second water channel 50A leaves the second water channel 50A.

[0072] For some examples, see Figures 1 to 11 The delivery assembly includes a cannula 131, which defines at least a portion of the second waterway 50A. At least a portion of cannula 131 is inserted into first waterway 40A. This insertion of cannula 131 into first waterway 40A can involve either a portion of cannula 131 or the entire cannula. Partial insertion of cannula 131 into first waterway 40A facilitates connection of the portion of cannula 131 outside first waterway 40A to other pipes, valves, and the like.

[0073] At least a portion of the insertion of the insert tube 131 into the first water channel 40A may be achieved by the insert tube 131 and the first water channel 40A being sleeved together. The connection between the two is simple and easy to operate, which can reduce the difficulty of assembly.

[0074] In this embodiment, the outlet end of the cannula 131 serves as the outlet end of the second water channel 50A. The space within the cannula 131 forms at least a portion of the second water channel 50A, resulting in a simple structure and ease of manufacture. Inserting at least a portion of the cannula 131 into the first water channel 40A facilitates the flow of water in the cannula 131 into the first water channel 40A, thereby impacting the detergent mixture in the first water channel 40A and further diluting the detergent.

[0075] For some examples, see Figures 4 to 11Spray head 130 is formed with a liquid outlet channel 130b, which is a portion of first water channel 40A. Insert tube 131 is at least partially inserted into liquid outlet channel 130b. That is, outlet end 40Aa of liquid outlet channel 130b is the outlet end of first water channel 40A. Insert tube 131 is inserted into spray head 130. Liquid from insert tube 131 can easily and quickly mix with detergent in liquid outlet channel 130b and then be sprayed into the laundry treatment chamber through spray head 130.

[0076] For some examples, see Figures 1 to 11 A partition member 150 is provided on the underside of the workbench 80. Together, the partition member 150 and the workbench 80 define the spray head 130. In other words, at least a portion of the solid structure of the partition member 150 and a portion of the solid structure of the workbench 80 constitute the spray head 130. Together, the partition member 150 and the workbench 80 enclose a channel for circulating the detergent mixed solution. By using the partition member 150 and the workbench 80 to define the spray head 130, the number of components on the workbench 80 can be reduced, simplifying the layout and reducing manufacturing complexity.

[0077] In one embodiment, the cannula 131 is inserted into the workbench 80. That is, the workbench 80 is formed with a socket into which the cannula 131 is inserted. This design utilizes the workbench 80 to provide a mounting location for the cannula 131, simplifying the cannula 131 installation process and improving production efficiency.

[0078] In one embodiment, the partition member 150 forms an insertion hole, and the insertion tube 131 is inserted into the insertion hole.

[0079] In some embodiments, the gap between the cannula 131 and the insertion hole can be sealed by a sealing structure. For example, the gap between the cannula 131 and the insertion hole can be sealed by a sealing ring.

[0080] The sealing structure may be a flexible structure that utilizes elastic deformation of the sealing structure to seal the gap at the connection between the second water channel 50A and the first water channel 40A. For example, the sealing structure may be a flexible structure made of rubber and / or silicone.

[0081] The partition member 150 and the workbench 80 can be connected in a detachable or non-detachable manner. In some embodiments, the partition member 150 and the workbench 80 can be welded or bonded. In some embodiments, the partition member 150 and the workbench 80 can be connected by snapping, screwing, or bolting.

[0082] The connection between the partition member 150 and the workbench 80 can be sealed. In this way, fluid leakage at the connection between the partition member 150 and the workbench 80 is avoided.

[0083] For example, the connection between the partition member 150 and the workbench 80 can be sealed by welding, gluing, or by a sealant. The sealant can be a flexible structure that utilizes elastic deformation to seal the gap between the partition member 150 and the workbench 80. For example, the sealant can be a flexible structure made of rubber and / or silicone.

[0084] For some examples, see Figures 1 to 6 , at least a portion of the detergent box 30 is formed by the workbench 80 .

[0085] At least a portion of the detergent box 30 is formed on the workbench 80, which means that part of the physical structure of the workbench 80 constitutes at least a portion of the physical structure of the detergent box 30. For example, at least a portion of the detergent box 30 can be integrally formed with the workbench 80. For example, at least a portion of the detergent box 30 and the workbench 80 can be integrally injection molded.

[0086] In this embodiment, at least a portion of the detergent box 30 is formed on the workbench 80, and part of the structure of the workbench 80 is reused as at least a portion of the detergent box 30, which can reduce the number of parts, simplify the structure, and save costs.

[0087] For some examples, see Figures 1 to 11 The dispensing component includes a dispenser box 140 that is movably arranged in the detergent box 30. The dispenser box 140 forms a detergent dispensing chamber 140a for containing detergent. The detergent box 30 forms a mixing chamber 30d that is connected to the detergent dispensing chamber 140a. The detergent dispensing chamber 140a and the mixing chamber 30d are both part of the first water channel 40A.

[0088] The detergent delivery chamber 140a may be suitable for accommodating powdered laundry detergent. Of course, the detergent delivery chamber 140a may also be suitable for accommodating detergents with flow characteristics, such as laundry liquid.

[0089] The detergent dispensing chamber 140a has a discharge port 140b, which communicates with the mixing chamber 30d. The discharge port 140b is used to discharge fluid, such as detergent, from the detergent dispensing chamber 140a. The discharge port 140b connects the detergent dispensing chamber 140a with the mixing chamber 30d. The mixing chamber 30d is located downstream of the detergent dispensing chamber 140a. The detergent in the detergent dispensing chamber 140a flows through the discharge port 140b into the mixing chamber 30d. The mixing chamber 30d is used to hold a mixed detergent solution.

[0090] The fluid in the mixing chamber 30d enters the laundry processing chamber. In other words, the detergent mixed solution in the mixing chamber 30d eventually enters the laundry processing chamber to process the laundry.

[0091] In this embodiment, the detergent in the detergent dispensing chamber 140a enters the mixing chamber 30d for further mixing. The mixing chamber 30d provides space for further dissolution of the detergent, thereby improving the uniformity of the detergent mixed solution. The dispenser box 140 is removably disposed in the detergent box 30, meaning that the dispenser box 140 can be inserted into or removed from the detergent box 30. In this manner, the dispenser box 140 can move relative to the detergent box 30 to facilitate dispensing detergent into the detergent dispensing chamber 140a.

[0092] The number of detergent dispensing chambers 140a is not limited, and the number of detergent dispensing chambers 140a can be one or more. Taking multiple detergent dispensing chambers 140a as an example, the multiple detergent dispensing chambers 140a can be arranged in a direction perpendicular to the vertical direction. For example, the multiple detergent dispensing chambers 140a can be arranged in a left-right direction or a front-back direction. Each detergent dispensing chamber 140a can dispense detergents with different functions or the same function.

[0093] In some embodiments, an addition port communicating with the detergent delivery chamber 140a is formed on the upper surface of the dispenser box 140. A user can add detergent to the detergent delivery chamber 140a through the addition port from above.

[0094] In some embodiments, the detergent delivery chamber 140a can be flushed with water so that the detergent in the detergent delivery chamber 140a enters the mixing chamber 30d. For example, the water spray port can spray water into the detergent delivery chamber 140a, and the water flow impacts the detergent in the delivery chamber to produce a detergent mixed solution, which then enters the mixing chamber 30d through the discharge port 140b.

[0095] In some embodiments, a water spray port may be formed on the workbench 80 .

[0096] In one embodiment, the water spray port may be located above the detergent delivery chamber 140a.

[0097] In one embodiment, the dispenser box 140 can be pulled out of the detergent box 30. For example, at least a portion of the dispenser box 140 is pulled out to the outside of the detergent box 30, and the user can put the detergent into the detergent dispensing cavity 140a. When the dispensing is completed or the clothes need to be washed, the dispenser box 140 can be put into, for example, the detergent box 30.

[0098] In one embodiment, the dispensing assembly includes a water retaining rib and a detergent box 30, the detergent box 30 has a cavity, at least part of which is formed on the workbench 80, the water retaining rib extends upward from the wall of the cavity to separate the cavity into a sub-cavity and an overflow cavity 30c, the sub-cavity is part of the first water channel 40A, and the overflow cavity 30c is part of the overflow water channel 180A.

[0099] In this embodiment, the height of the water retaining rib in the vertical direction is the height of the overflow liquid level. The upper surface of the water retaining rib is spaced from the surface of the cavity; that is, there is a gap between the upper surface of the water retaining rib and the surface of the cavity. The level of the detergent mixture in the sub-cavity is higher than the height of the water retaining rib in the vertical direction. The detergent mixture in the sub-cavity flows over the upper surface of the water retaining rib and enters the overflow cavity 30c through the gap between the upper surface of the water retaining rib and the surface of the cavity.

[0100] In one embodiment, please refer to Figures 1 to 6 Part of the partition member 150 and the workbench 80 define a portion of the detergent box 30, and another portion of the partition member 150 and the workbench 80 define the spray head 130. Exemplarily, with a plane perpendicular to the up-down direction as a projection plane, when the dispenser box 140 is stored in the detergent box 30, the projection of the dispenser box 140 at least partially overlaps with the projection of the detergent box 30, and the projection of the dispenser box 140 is spaced apart from the projection of the spray head 130.

[0101] In some embodiments, the workbench 80 forms an open slot opening downward, and the partition member 150 closes the downward opening of the open slot to form the liquid outlet channel 130 b of the spray head 130 and the mixing chamber 30 d of the detergent box 30 .

[0102] In one embodiment, please refer to Figures 1 to 11 The detergent delivery chamber 140a is located above the mixing chamber 30d, and a filter hole 160a is formed on the upper side wall of the mixing chamber 30d.

[0103] The filter holes 160a are used to limit the particle size of the circulating particles, thereby playing a filtering role.

[0104] In this embodiment, the fluid in the detergent delivery chamber 140a is filtered through the filter hole 160a and then enters the mixing chamber 30d. Taking the detergent as washing powder as an example, the water flow impacts and initially dissolves the washing powder in the detergent delivery chamber 140a. Since the time for the water flow to impact the washing powder in the detergent delivery chamber 140a is relatively short, the problem of insufficient dissolution of the washing powder is likely to occur. The filter hole 160a can temporarily retain particles larger than or equal to the aperture of the filter hole 160a on the upper side wall of the mixing chamber 30d, while particles smaller than the aperture of the filter hole 160a can enter the mixing chamber 30d and then enter the clothing processing chamber. During the washing process, the fluid from the washing delivery chamber can repeatedly rinse the washing powder on the upper side wall of the mixing chamber 30d, so that the washing powder dissolves again and then enters the mixing chamber 30d. This design makes the washing powder dissolve better, and the particles of washing powder entering the clothing processing chamber are relatively small, thereby improving the cleaning effect.

[0105] It is understood that the pore size and shape of the filter hole 160a can be set as needed. The shape of the filter hole 160a includes but is not limited to circular, elliptical, polygonal or irregular shapes, etc. Irregular shapes refer to irregular shapes.

[0106] In one embodiment, please refer to Figures 1 to 11 A pumping port 80b is formed on the surface of the workbench 80 facing the clothing loading port 80a, and the pumping port 80b is connected to the cavity of the detergent box 30. The sub-cavity is located on the side of the water retaining rib away from the pumping port 80b, and the overflow chamber 30c is located on the side of the water retaining rib close to the pumping port 80b.

[0107] An overflow waterway 180A is formed between the overflow chamber 30c and the pumping port 80b. The detergent mixture solution overflowing from the sub-chamber passes over the water retaining rib and enters the overflow chamber 30c, and then directly enters the clothing processing chamber through the pumping port 80b.

[0108] The detergent dispensing chamber 140a, its sub-chamber, and the liquid outlet channel 130b constitute the first water channel 40A. The sub-chamber includes a holding chamber 30e and a mixing chamber 30d. The holding chamber 30e is located above the mixing chamber 30d, and the upper sidewall of the mixing chamber 30d forms a filter hole 160a. The detergent mixed solution in the detergent dispensing chamber 140a enters the holding chamber 30e, then passes through the mixing chamber 30d and enters the liquid outlet channel 130b of the nozzle 130.

[0109] The dispenser box 140 enters and exits the detergent box 30 through the pumping port 80b. To add detergent to the dispenser box 140, the dispenser box 140 can be pulled out of the detergent box 30 through the pumping port 80b. Once the detergent addition is complete, the dispenser box 140 can be pushed back into the detergent box 30 through the pumping port 80b. During the washing process, the detergent and other fluids in the detergent delivery chamber 140a can flow through the first waterway 40A, for example, sequentially through the accommodating chamber 30e, the mixing chamber 30d, the liquid outlet channel 130b, and the mixing space 20a, before being delivered to the laundry processing chamber from the liquid outlet 20ab. Alternatively, the detergent and other fluids in the accommodating chamber 30e can overflow into the overflow chamber 30c and enter the laundry processing chamber through the pumping port 80b.

[0110] In one embodiment, please refer to Figures 1 to 11 Sprinkler 130 defines a liquid outlet 20ab communicating with mixing space 20a. Mixing space 20a is located between the outlet end of second water channel 50A and liquid outlet 20ab. Liquid outlet 20ab is used to discharge fluid from mixing space 20a. Fluid from first water channel 40A and fluid from second water channel 50A converge and mix in mixing space 20a before being discharged through liquid outlet 20ab into the laundry processing chamber to participate in laundry processing.

[0111] In one embodiment, the liquid outlet 20ab is formed on the workbench 80, so that the fluid discharged from the liquid outlet 20ab is ejected downward into the laundry processing chamber under the action of gravity and initial velocity. At least a portion of the space between the water outlet end of the second water channel 50A and the liquid outlet 20ab is a mixing space 20a.

[0112] For example, in some embodiments, please refer to Figure 7 and Figure 11 The mixing space 20a can be the space defined by the line connecting the water outlet end of the second water channel 50A and the liquid outlet 20ab, see Figure 11 In the embodiment, the space defined by the dotted line between the outlet end of the second water channel 50A and the liquid outlet 20ab is the mixing space 20a. The outlet end of the second water channel 50A may be the junction of the second water channel 50A and the mixing space 20a, that is, the outlet end of the first water channel 40A surrounds the outside of the mixing space 20a.

[0113] The liquid outlet 20ab is a through hole that penetrates the outer surface of the physical part. In some embodiments, please refer to Figure 3 and Figure 11 The liquid outlet 20ab is formed on the surface of the workbench 80 facing the clothing loading port 80a. In this way, it is possible to avoid as much as possible that the structure on the workbench 80 blocks the liquid outlet 20ab from discharging fluid.

[0114] In one embodiment, please refer to Figure 3 、 Figure 5 and Figure 11 In other words, the axis of the liquid outlet 20ab is obliquely intersected with the straight line extending in the vertical direction, so that the detergent mixed solution sprayed from the liquid outlet 20ab can cover a large area of ​​the clothes in the clothing processing chamber.

[0115] In one embodiment, the flow rate at the outlet of the second water channel 50A is greater than the flow rate at the outlet of the first water channel 40A. On the one hand, there is a flow rate difference between the fluid discharged from the second water channel 50A and the fluid discharged from the first water channel 40A. The relatively higher flow rate at the outlet of the second water channel 50A can increase the impact force of the fluid. The two fluids entering the mixing space 20a have different flow rates, one fast and one slow. The faster flow rate can impact and disturb the slower flow rate, allowing the detergent to mix better when the two fluids meet, further promoting the dissolution of the detergent. On the other hand, the relatively higher flow rate at the outlet of the second water channel 50A can generate negative pressure in the surrounding area, causing the fluid at the outlet of the first water channel 40A to be sucked in under the action of this negative pressure, thereby improving the mixing effect.

[0116] For some examples, see Figures 1 to 4 ,as well as Figure 11The dispenser box 140 forms an outlet 140b that is connected to the detergent delivery chamber 140a. The outlet 140b is located on the side of the dispenser box 140 away from the liquid outlet 20ab. The outlet 140b is used to discharge the detergent mixed solution in the detergent delivery chamber 140a. The outlet 140b is connected to the mixing space 20a. For example, the first water channel 40A is connected to the outlet 140b and the mixing space 20a. The detergent mixed solution from the outlet 140b first enters the mixing space 20a through the first water channel 40A, and then is discharged into the clothing processing chamber through the liquid outlet 20ab. The outlet 140b is located on the side of the dispenser box 140 away from the liquid outlet 20ab. The path between the outlet 140b and the liquid outlet 20ab is moderate, which extends the flow path of the detergent mixed solution within a limited space. The flow distance and flow time of the detergent mixed solution are appropriate, which facilitates the further dissolution of the detergent mixed solution during the flow process, thereby improving the mixing effect.

[0117] For example, in some embodiments, the discharge port 140b is formed on the rear side wall of the dispenser box 140, and the liquid outlet 20ab is formed on the front side wall of the workbench 80 facing the clothing loading port 80a.

[0118] For some examples, see Figures 1 to 11 The dispensing assembly includes a filter plate 160, which forms the upper sidewall of the mixing chamber 30d. Exemplarily, at least a portion of the filter plate 160 is located between the detergent dispensing chamber 140a and the lower surface of the sub-chamber. Specifically, the space defined by the filter plate 160 and the lower surface of the sub-chamber defines the mixing chamber 30d. The filter plate 160 is used to filter the mixed detergent solution from the detergent dispensing chamber 140a. The mixed detergent solution from the detergent dispensing chamber 140a first flows through the filter plate 160, is filtered by the filter plate 160, and then enters the mixing chamber 30d.

[0119] In this embodiment, taking the detergent as washing powder as an example, the water flow impacts and dissolves the washing powder in the detergent delivery chamber 140a. Since the water flow impacts the washing powder in the detergent delivery chamber 140a for a short time, the problem of insufficient dissolution of the washing powder is likely to occur. The filter plate 160 can temporarily retain particles larger than or equal to the aperture of the filter hole 160a on the upper surface of the filter plate 160, while particles smaller than the aperture of the filter hole 160a can enter the mixing chamber 30d and then enter the clothing processing chamber through the liquid outlet 20ab. During the washing process, the detergent mixed solution from the washing delivery chamber can repeatedly rinse the washing powder on the upper surface of the filter plate 160, so that the washing powder is dissolved again and then enters the mixing chamber 30d. This design makes the washing powder dissolution effect better, and the particles of washing powder entering the clothing processing chamber are relatively small, thereby improving the cleaning effect.

[0120] In some embodiments, when the dispenser box 140 is located within the detergent box 30, the projection of the outlet 140b and the projection of the filter holes 160a, as projected along a plane perpendicular to the vertical direction, do not overlap. In other words, the projection of the outlet 140b and the projection of the filter holes 160a are spaced apart. This design allows the fluid from the outlet 140b to first contact the solid portion of the filter plate 160 without the filter holes 160a before flowing to the location of the filter holes 160a. This can, to a certain extent, prevent the detergent mixture from the outlet 140b from directly impacting the filter holes 160a, potentially causing particles larger than the filter holes 160a to be flushed into the mixing chamber 30d.

[0121] For some examples, see Figure 6 At least a portion of the lower surface of the mixing chamber 30d slopes downward from away from the nozzle 130 toward the nozzle 130, forming a guide surface 130ba. This allows the fluid in the mixing chamber 30d to flow smoothly and quickly into the nozzle 130 under the guidance of the guide surface 130ba, and reduces residual fluid in the mixing chamber 30d.

[0122] For some examples, see Figure 5 and Figure 6 The filter plate 160 may be located above the guide surface 130ba. For example, with a plane perpendicular to the up-down direction as a projection plane, the projection of the filter plate 160 and the projection of the guide surface 130ba at least partially overlap.

[0123] In one embodiment, please refer to Figures 4 to 8 ,as well as Figure 11 The insert tube 131 includes a horizontal section 1311 and a bent section 1312 connected to the horizontal section 1311. The axis of the horizontal section 1311 extends horizontally, and the bent section 1312 bends downward from the horizontal section 1311. The outlet end 50Aa of the liquid flow channel 130a is formed at the bent section 1312. Exemplarily, the end of the bent section 1312, distal from the horizontal section 1311, serves as the outlet end 50Aa of the liquid flow channel 130a. The horizontal section 1311 facilitates plugging into the socket. The bent section 1312 directs fluid downward, thereby facilitating downward spraying of the outlet end 50Aa of the liquid flow channel 130a, allowing the fluid to quickly contact the clothing beneath.

[0124] In one embodiment, the projection of the outlet end 50Aa of the liquid flow channel 130a is located within the projection of the liquid outlet 20ab, using the plane on which the liquid outlet 20ab lies as the projection plane. For example, the flow area of ​​the liquid outlet 20ab can be larger than the flow area of ​​the outlet end 50Aa of the liquid flow channel 130a. This prevents misalignment between the outlet end 50Aa of the liquid flow channel 130a and the liquid outlet 20ab, which could cause a change in fluid flow direction.

[0125] It should be noted that the flow cross-section is a cross-section perpendicular to the streamline cluster. When the streamline clusters are non-parallel, the flow cross-section is a curved surface; when the streamline clusters are parallel straight lines, the flow cross-section is a flat surface. The flow area refers to the area of ​​the flow cross-section. For example, if the liquid outlet 20ab is circular, the flow area of ​​the liquid outlet 20ab can be the area of ​​the circle.

[0126] In one embodiment, please refer to Figures 1 to 4 The intubation tube 131 is located on the left or right side of the dispenser box 140. The intubation tube 131 and the dispenser box 140 are arranged in the left-right direction, which can reduce the size occupied by the intubation tube 131 and the dispenser box 140 in the vertical direction, thereby avoiding excessive increase in the overall height of the workbench 80 in the vertical direction.

[0127] For some examples, see Figures 1 to 11 The second waterway 50A is provided with a pressurizing structure 120 and / or a turbulent structure 21. The pressurizing structure 120 is used to increase the flow velocity of the fluid in the second waterway 50A, and the turbulent structure 21 is used to provide a circumferential velocity component to the fluid in the second waterway 50A.

[0128] The above-mentioned circumferential velocity component means that the velocity component of the fluid in the second water channel 50A after passing through the turbulent structure 21 in the circumferential direction of the second water channel 50A is not zero, and the circumference of the second water channel 50A surrounds the extension direction of the second water channel 50A.

[0129] After passing through the turbulent structure 21, the fluid in the second waterway 50A generates a composite motion in multiple directions, such as the circumferential direction and the forward direction, so as to better mix with the fluid in the mixing space 20a and improve the mixing efficiency; it can also make the fluid ejected from the liquid outlet 20ab disperse roughly in a cone shape, with a wider radiation range and better visual effect.

[0130] In this embodiment, the flow rate or shape of the fluid in the second water channel 50A is changed by the pressurizing structure 120 and / or the turbulent flow structure 21 to better impact the detergent mixed solution, thereby accelerating the dissolution of the detergent and improving uniformity.

[0131] It is understood that the turbulent flow structure 21 can also increase the flow rate of the fluid by limiting the flow area of ​​the liquid flow channel 130a in which it is located. In this way, the speed difference between the two fluids entering the mixing space 20a is further increased, further promoting the dissolution of the detergent.

[0132] In one embodiment, please refer to Figure 7 、 Figure 8 and Figure 11The cannula 131 defines a liquid flow channel 130a, which forms at least a portion of the second waterway 50A. A pressurizing structure 120 is provided in the liquid flow channel 130a, which is used to increase the flow rate of the fluid in the liquid flow channel 130a. The fluid in the liquid flow channel 130a experiences a greater impact force after passing through the pressurizing structure 120, which effectively stirs the fluid from the liquid outlet channel 130b and enhances mixing.

[0133] In one embodiment, please refer to Figure 7 、 Figure 8 and Figure 11 The pressurizing structure 120 includes a diameter-reducing section 22, which increases the flow rate of the water outlet end 50Aa of the liquid flow channel 130a. The diameter-reducing section 22 means that along the flow direction of the fluid, the flow area of ​​the fluid in the diameter-reducing section 22 becomes smaller. By limiting the flow area of ​​the fluid, the diameter-reducing section 22 can increase the impact force of the fluid and achieve a good mixing effect. At the same time, the diameter-reducing section 22 enables the water outlet end 50Aa of the liquid flow channel 130a to have a larger injection speed, and can generate obvious negative pressure in a relatively large surrounding area, so that the fluid at the water outlet end 40Aa of the liquid outlet channel 130b is sucked in under the action of the negative pressure and mixed with the fluid in the liquid flow channel 130a, thereby improving the mixing effect.

[0134] In some embodiments, the pressurizing structure 120 includes a powered pressurizing mechanism. This refers to a mechanism that uses a power source to increase fluid pressure and thereby increase flow rate. The power source includes, but is not limited to, electricity or other energy sources. This powered pressurizing mechanism can actively increase fluid flow rate, providing a higher degree of automation compared to the passive increase in fluid flow rate achieved by the reduced diameter section 22.

[0135] The type of the power pressurizing mechanism is not limited. For example, the power pressurizing mechanism includes but is not limited to a water pump, a peristaltic pump, and the like.

[0136] In some embodiments, the end of the pressurizing structure 120 forms the outlet end 50Aa of the liquid flow channel 130a. In other words, the fluid in the liquid flow channel 130a is directly ejected from the end of the pressurizing structure 120, such as the reduced diameter section 22.

[0137] For some examples, see Figure 7 、 Figure 8 and Figure 11 The end of the pressurizing structure 120 is connected to a constant diameter section 23 and / or an expanded diameter section, and the constant diameter section 23 and / or the expanded diameter section form a water outlet end 50Aa of the liquid flow channel 130a.

[0138] For example, the end of the pressurizing structure 120 is connected to a constant diameter section 23 , and the constant diameter section 23 forms the water outlet end 50Aa of the liquid flow channel 130 a.

[0139] For another example, the end of the pressurizing structure 120 is connected to an expanded diameter section, which forms the water outlet end 50Aa of the liquid flow channel 130a.

[0140] For another example, the end of the pressurizing structure 120 is connected to the equal-diameter section 23 and the expanded-diameter section, and either the equal-diameter section 23 or the expanded-diameter section forms the water outlet end 50Aa of the liquid flow channel 130a.

[0141] The constant diameter section 23 means that the flow area of ​​the fluid in the constant diameter section 23 remains substantially unchanged along the flow direction of the fluid.

[0142] The expanded diameter section refers to the section where the flow area of ​​the fluid becomes larger along the flow direction of the fluid.

[0143] In this embodiment, the fluid in the liquid flow channel 130a is ejected directly from the constant diameter section 23 and / or the expanded diameter section into the mixing space 20a. The fluid, accelerated by the pressurizing structure 120, then flows through the constant diameter section 23 and / or the expanded diameter section, where it can diverge into the mixing space 20a at a relatively high speed in a conical shape.

[0144] In some embodiments, the length of the constant diameter section 23 extending along the liquid flow channel 130a is less than or equal to the length of the reduced diameter section 22 extending along the liquid flow channel 130a. Because the longer the flow path of a fluid, the more significant its energy loss is, limiting the length of the constant diameter section 23 can reduce the loss of impact force after the fluid flows out of the reduced diameter section 22.

[0145] In some embodiments, the length of the expanded section along the liquid flow channel 130a is less than or equal to the length of the reduced section 22 along the liquid flow channel 130a. Because a longer fluid flow path results in greater energy loss, limiting the length of the expanded section can reduce the impact force loss after the fluid flows out of the reduced section 22.

[0146] In one embodiment, please refer to Figure 7 、 Figure 8 and Figure 11 The liquid flow channel 130a is provided with a turbulent flow structure 21, which is used to provide a circumferential velocity component to the fluid in the liquid flow channel 130a.

[0147] For some examples, see Figure 7 、 Figure 8 and Figure 11 The turbulence structure 21 includes one or more spiral blades that guide the fluid in the liquid flow channel 130a in a spiral motion. A spiral blade is a blade having a helical shape and extending in a spiral direction. After the fluid passes through the spiral blade, it exhibits a spiral motion with a circumferential velocity component. The spiral blade has a simple structure, a good flow disturbance effect on the fluid, and low resistance, thereby reducing energy loss during the passage of the fluid.

[0148] Exemplarily, the turbulent flow structure 21 includes one or more spiral blades, which divide at least a partial length of the second water channel 50A where the spiral blades are located into a plurality of sub-flow channels.

[0149] The above-mentioned multiple refers to the number of blades being multiple, which can be two, three or more, that is, the number of heads of the spiral is not less than two, and does not limit the number of turns of the spiral.

[0150] For some examples, see Figure 7 、 Figure 8 and Figure 11 The outer edge of the spiral blade along the spiral direction is connected to the inner wall of the liquid flow channel 130a, and the inner edge of the spiral blade along the spiral direction is spaced apart from the inner wall of the liquid flow channel 130a. In other words, there is a gap between the inner edge of the spiral blade and the inner wall of the liquid flow channel 130a. In this way, the inner wall of the liquid flow channel 130a provides connection support for the spiral blade.

[0151] For some examples, see Figure 7 、 Figure 8 and Figure 11 The pressurizing structure 120 is located downstream of the turbulent structure 21. The fluid passes through the turbulent structure 21 and the pressurizing structure 120, such as the diameter-reducing section 22, and then is ejected into the laundry processing chamber in a conical shape.

[0152] In some embodiments, the distance between the turbulent structure 21 and the pressurizing structure 120 is greater than the distance between the liquid outlet 20ab and the pressurizing structure 120. With this design, the fluid path between the turbulent structure 21 and the pressurizing structure 120 is greater than the fluid path between the pressurizing structure 120 and the liquid outlet 20ab. The fluid can be effectively accelerated by the turbulent structure 21 and the pressurizing structure 120 and can be discharged from the mixing space 20a in a timely manner, reducing losses during the flow process.

[0153] It should be noted that in the embodiment of the present application, the first water channel 40A refers to a flow path of the fluid, and does not specifically refer to a pipeline structure. The second water channel 50A refers to a flow path of the fluid, and does not specifically refer to a pipeline structure.

[0154] In some embodiments, the water inlet end of the first water channel 40A may be connected to a water source, and the water inlet end of the second water channel 50A may be connected to a water source.

[0155] It should be noted that the water source in the embodiment of the present application refers to the water source that supplies water to the first water channel 40A and / or the second water channel 50A, such as tap water; it can also be the internal water source of the clothing processing equipment, such as circulating water.

[0156] In one embodiment, please refer to Figure 1The laundry processing apparatus includes a water inlet valve 90, which is connected to a water source, such as a tap water pipe. The first water channel 40A and the second water channel 50A can be connected to different water inlet valves 90, or they can be connected to the same water inlet valve 90, without limitation. As an optional embodiment, the laundry processing apparatus includes a circulation pump, with one of the first water channel 40A and the second water channel 50A connected to the water inlet valve 90, and the other connected to the circulation pump of the laundry processing apparatus.

[0157] In some embodiments, the water inlet valve 90 has at least two water inlets, with the first water channel 40A and the second water channel 50A each connected to one of the water inlets. A water source supplies water to the laundry processing apparatus through the water inlet valve 90 . The first water channel 40A and the second water channel 50A each connect to one of the water inlets. The water flow rates at the different water inlets can differ, thereby increasing the flow rate difference between the first water channel 40A and the second water channel 50A.

[0158] In some embodiments, the water inlet end of the cannula 131 is connected to a water supply port of the water inlet valve 90. In this way, the water inlet valve 90 can supply water to the cannula 131. The second waterway 50A includes the cannula 131, and the water inlet valve 90 supplies water to the cannula 131.

[0159] In some embodiments, a water inlet of the water inlet valve 90 can be connected to a water spray structure having a water spray port that sprays water toward the detergent dispensing chamber 140a. The first water channel 40A includes the detergent dispensing chamber 140a and the first water channel 40A. Thus, the detergent dispensing chamber 140a is flushed with water to achieve initial dissolution of the detergent solution. The detergent mixed solution in the detergent dispensing chamber 140a flows into the first water channel 40A under the action of the water flow.

[0160] In the description of this application, the reference terms "in one embodiment", "in some embodiments" or "exemplary" etc. mean that the specific features, structures, materials or characteristics described in conjunction with the embodiment or example are included in at least one embodiment or example of the embodiments of the present application. In this application, the schematic representations of the above terms do not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in an appropriate manner in any one or more embodiments or examples. In addition, those skilled in the art can combine different embodiments or examples described in this application and features of different embodiments or examples without contradiction.

[0161] The above description is merely a preferred embodiment of the present application and is not intended to limit the present application. Those skilled in the art will readily appreciate that various modifications and variations are possible. Any modifications, equivalent substitutions, or improvements made within the spirit and principles of the present application are intended to be within the scope of protection of the present application.

Claims

1. A delivery component, characterized in that: The delivery component is arranged on a workbench, and the delivery component comprises: The detergent box is formed with an overflow water channel; The nozzle is located on one side of the outside of the detergent box. The detergent box and the nozzle are both constructed as part of a first water channel. The first water channel is used to transport the detergent mixed solution, and the overflow water channel is used to receive the detergent mixed solution overflowing from the first water channel.

2. The delivery component according to claim 1, characterized in that: The delivery assembly includes a second water channel and a mixing space. The second water channel is used to transport water. The water outlet end of the first water channel and the water outlet end of the second water channel are both connected to the mixing space.

3. The delivery component according to claim 2, characterized in that: The delivery assembly includes a cannula, the cannula is formed with at least a portion of the second waterway, and at least a portion of the cannula is inserted into the first waterway.

4. The delivery component according to claim 3, characterized in that: A liquid outlet channel is formed in the nozzle, the liquid outlet channel is a part of the first water channel, and at least a part of the cannula is inserted into the liquid outlet channel.

5. The delivery component according to claim 2, characterized in that: The second water channel is provided with a pressurizing structure and / or a turbulent flow structure. The pressurizing structure is used to increase the flow velocity of the fluid in the second water channel, and the turbulent flow structure is used to provide a circumferential velocity component to the fluid in the second water channel.

6. The delivery component according to claim 1, characterized in that: A partition is provided on the lower side of the workbench, and the partition and the workbench together define the spray head.

7. The delivery component according to claim 1, characterized in that: The detergent box is at least partially formed by the worktop.

8. The delivery component according to any one of claims 1 to 7, characterized in that: The dispensing assembly includes a dispenser box that is movably arranged in the detergent box, the dispenser box forms a detergent dispensing cavity for containing detergent, the detergent box forms a mixing cavity connected to the detergent dispensing cavity, and the detergent dispensing cavity and the mixing cavity are both part of the first water channel.

9. The delivery component according to claim 8, characterized in that: The detergent delivery chamber is located above the mixing chamber, and a filter hole is formed on the upper side wall of the mixing chamber.

10. A clothes processing device, characterized in that: include: laundry processing chamber; Workbench; The dispensing assembly according to any one of claims 1 to 9, wherein the detergent mixed solution in the first water channel and the detergent mixed solution in the overflow water channel both enter the clothing processing chamber.

Citation Information

Cited By

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    WO2026045909A1