A detergent cartridge and laundry washing apparatus

CN117051565BActive Publication Date: 2026-09-25CHONGQING HAIER ROLLER WASHING MASCH CO LTD
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Patent Information

Application Number
CN202210491523.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-05-07
Publication Date
2026-09-25
Estimated Expiration
2042-05-07

AI Technical Summary

Technical Problem

[0005]为实现对衣物洗涤时洗涤剂的存放,通常会设置有可抽拉布置在衣物处理装置上的洗涤剂盒,现有洗涤剂盒在设置时,会设置盒盖和盒体配合,在盒盖和盒体之间形成水流通道,在水流通道上开设多个沿其周向布置的水流入口,将水流导入到盒体内,对洗涤剂进行冲洗溶解,此种结构由于水流中间流经过多个口进行分流,会使得水流冲击压力小,水流有可能会流动中间位置处就停止向前流动,最终导致洗涤腔中的洗涤剂不能被充分溶解冲洗干净

Benefits of technology

[0017]与现有技术相比,本发明的优点和积极效果是:

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Abstract

The application discloses a detergent box and a clothes washing device. The detergent box comprises a box body assembly, a shell, a main body component arranged in the shell and surrounding the shell to form a washing accommodating cavity, a box cover assembly assembled on the main body component and surrounding the main body component to form a water flow channel arranged on one side of the washing accommodating cavity, and a spraying component assembled on the main body component. The spraying component comprises a spraying main body part, a water flow introduction channel formed in the spraying main body part and communicated with one end of the water flow channel away from a drainage cavity, a scattering part located below the water flow introduction channel and used for scattering water flow in the water flow introduction channel to spray in all directions, and a notch part corresponding to the scattering part. The detergent box provided by the application is provided with a single water flow channel and a spraying component located at the end, so that water flow directly impacts and flows to the spraying component, and the washing of the detergent in the washing accommodating cavity is more sufficient.
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Description

Technical Field

[0001] This invention belongs to the field of clothing processing devices, specifically relating to an improvement in the structure of a detergent box for a clothing processing device and a corresponding clothing washing device. Background Technology

[0002] Generally, a garment handling device refers to a device capable of washing, drying, or both washing and drying garments. A garment handling device may perform only the washing or drying function, or it may perform both washing and drying functions simultaneously.

[0003] Based on the direction in which clothes are removed, existing garment handling devices are divided into front-loading and top-loading types. Furthermore, based on the washing method, they are divided into vertical types that use a pulsator or washing tub for rotation, and horizontal types that use a drum for rotation.

[0004] Representative garment handling devices are front-loading washing machines and top-loading washing machines.

[0005] To store detergent during laundry, a pull-out detergent dispenser is typically installed on the laundry handling unit. Existing detergent dispensers typically have a lid and body that work together to form a water flow channel. Multiple water inlets are arranged circumferentially along this channel to guide water into the dispenser and dissolve the detergent. However, this structure, where the water flow is diverted through multiple inlets, results in low water pressure. The water flow may stop midway through the flow, ultimately preventing the detergent in the washing chamber from being fully dissolved and rinsed away. Summary of the Invention

[0006] This invention addresses the aforementioned technical problems of detergent dispensers in existing garment handling devices by proposing a novel detergent dispenser with a single water flow channel and only one spray component at the end. The water flow directly impacts and flows to the spray component, ensuring water pressure within the water flow channel and enabling thorough dissolution and rinsing of the detergent in the washing chamber.

[0007] To achieve the above-mentioned objectives, the present invention employs the following technical solution: A detergent dispenser includes: The box assembly includes: case; The main component is disposed within the housing and forms a washing and receiving cavity with the housing; The lid assembly is assembled on the main body component and forms an enclosure with the main body component: A water flow channel is provided on one side of the washing chamber and extends along the length of the washing chamber; A spray component, assembled on the main body component, includes: The main body of the sprayer has a water inlet channel formed therein, which is connected to the end of the water inlet channel away from the drain chamber; And a scattering section located below the water inlet channel, used to disperse the water inlet channel and cause it to scatter and splash in all directions; The notch corresponds to the position of the scattering part, so that the water flow that is dispersed by the impact on the heat dissipation part can be sprayed outward through it.

[0008] In some embodiments of this application, a connecting portion for connecting with the main body component is provided at the top position of the spray body component; A baffle is provided on both sides of the bottom of the main body of the sprayer to block the water flow that will be sprayed out from the notch and reflect it to the sides away from the notch. A splash shield is attached to the connecting part and extends downward from the connecting part to the blocking part.

[0009] In some embodiments of this application, the scattering part is an arc-shaped scattering surface formed on the spray body or an inclined scattering slope arranged on the spray body.

[0010] In some embodiments of this application, a connecting structure is provided between the spray body and the main body component, the connecting structure including: The locking structure includes a first locking part disposed on the connecting part and a second locking part disposed on the main body component; The locking element is locked within the first locking part and the second locking part; The locking structure includes a locking groove formed on the spray body and a locking protrusion formed on the body component.

[0011] In some embodiments of this application, a drainage cavity communicating with an external drainage pipe is formed inside the housing, and a first receiving cavity is formed inside the main body component; a flow guiding cavity is formed between the main body component and the housing, and the flow guiding cavity communicates with the first receiving cavity and the drainage cavity; A water guide channel is arranged around the first receiving cavity, and multiple water inlet guide parts are formed on the water guide channel and arranged around the first receiving cavity to guide water in the water guide channel from the periphery of the first receiving cavity into the first receiving cavity.

[0012] In some embodiments of this application, the first accommodating cavity includes: A first detergent chamber and a second detergent chamber are arranged sequentially along the length of the main component, and the first detergent chamber and the second detergent chamber are arranged in parallel with the washing containment chamber; The lid assembly includes a first lid component, and the water channel includes: A first water guide channel is formed between the main body component and the first lid component, and is disposed around the first detergent cavity; A second water channel is formed between the main body component and the first lid component, and is arranged around the second detergent chamber; A water flow channel is formed between the main body component and the first lid component, and is arranged on one side of the washing and receiving cavity.

[0013] In some embodiments of this application, a first flow channel formed by a first annular water guide rib is formed on the main body component, and a first matching flow channel formed by a second annular water guide rib is provided on the first cover component. The first flow channel and the first matching flow channel are connected to form the first water guide flow channel. A second flow channel is formed on the main body component and extends along one side of the first detergent chamber to the side of the second detergent chamber. The second flow channel has an outlet portion. The third flow channel is provided in two sections, which are respectively arranged on both sides of the second detergent chamber. The third flow channel includes an inlet section and the inlet section is connected to the outlet section. At least one of the third flow channels has a water inlet guide section that is connected to the second detergent chamber. The first box cover component is provided with a second mating flow channel that connects with the second flow channel and a third mating flow channel that connects with the third flow channel; The second matching channel and the second matching channel are connected to form the first matching channel, and the third channel is connected to the third matching channel to form the second matching channel. The first matching channel and the second matching channel form the second water guiding channel.

[0014] Some embodiments of this application include: A fourth flow channel is provided on one side of the washing cavity on the main body component, and a fourth matching flow channel is formed on the first cover component to connect and cooperate with the fourth flow channel. The fourth flow channel and the fourth matching flow channel are connected to form the water flow channel.

[0015] In some embodiments of this application, the lid assembly further includes: The second lid component is located above the countertop and is sealed to the countertop. The first lid component has a first dispensing port, the second lid component has a second dispensing port, and the main body component has a placement port. Both the first and second dispensing ports correspond to the placement port. The first dispensing port and the placement port have matching outlines. The second dispensing port is located near the area where the spraying component is located, and its corresponding length is less than that of the first dispensing port.

[0016] A laundry washing device includes a detergent dispenser as described in the above-described technical solution.

[0017] Compared with the prior art, the advantages and positive effects of the present invention are: In this embodiment, the detergent dispenser structure features a water flow channel directly formed on one side of the washing cavity between the lid assembly and the main body. Instead of multiple water inlets, a spray component is positioned at the end of the water flow channel, away from the drain cavity. This design prevents water pressure reduction when entering the channel, ensuring a high water pressure throughout the flow. Furthermore, the high pressure ensures the water is effectively sprayed outwards onto the inner wall of the housing, guaranteeing impact pressure. The spray component structure also allows for a larger area of ​​water sprayed onto the inner wall of the housing, further enhancing the rinsing and dissolving effect of the detergent in the washing cavity.

[0018] Other features and advantages of the present invention will become clearer after reading the detailed embodiments of the invention in conjunction with the accompanying drawings. Attached Figure Description

[0019] To more clearly illustrate the technical solutions in the embodiments of the present invention, the accompanying drawings used in the embodiments will be briefly introduced below. Obviously, the accompanying drawings described below are some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0020] Figure 1 This is a schematic diagram of the detergent dispenser assembled on the countertop in an embodiment of the present invention; Figure 2 This is a schematic diagram of the detergent box in an embodiment of the present invention; Figure 3 This is a schematic diagram of the connection between the water guide channel and the external water inlet pipe on the detergent box in an embodiment of the present invention; Figure 4 This is a schematic diagram of the outer shell of the detergent dispenser in an embodiment of the present invention. Figure 1 ; Figure 5 This is a schematic diagram of the outer shell of the detergent dispenser in an embodiment of the present invention. Figure 2 ; Figure 6 This is a schematic diagram of the main component of the detergent dispenser in an embodiment of the present invention. Figure 1 ; Figure 7 This is a schematic diagram of the main component of the detergent dispenser in an embodiment of the present invention. Figure 2 ; Figure 8 This is a schematic diagram of the structure of the detergent box main body and the spraying component in an embodiment of the invention. Figure 9 This is a schematic diagram of the spray component of the detergent dispenser in an embodiment of the present invention. Figure 1 ; Figure 10 This is a schematic diagram of the spray component of the detergent dispenser in an embodiment of the present invention. Figure 2 ; Figure 11 This is a schematic diagram of the structure of the first lid component of the detergent box in an embodiment of the present invention. Figure 1 ; Figure 12 This is a schematic diagram of the structure of the first lid component of the detergent box in an embodiment of the present invention. Figure 2 ; Figure 13 This is a cross-sectional view of the detergent box in an embodiment of the present invention; Figure 14 for Figure 13 A magnified view of section B; Figure 15 for Figure 13 A magnified view of a portion of point C.

[0021] The components include: a shell 100; a first cavity 110; a second cavity 120; and a drainage cavity 130. Main component 200; First accommodating cavity 210; First detergent cavity 211; Second detergent cavity 212; Support component 220; blocking component 230; guide channel 240; Body part 250; placement port 251; annular water-retaining flange 252; Washing chamber 300; Box lid assembly 500; first box lid component 510; second box lid component 520; Sealing component 530; Support leg 540; Deformation part 550; Water guide channel 600; first flow channel 610; first water inlet 611; first annular water guide rib 612; First matching flow channel 620; second annular water guide rib 621; water guide rib plate assembly 622; Second flow channel 630; Outlet section 631; Third water guide rib 632; Second matching flow channel 640; Third flow channel 650; Fourth water guide rib 651; Second water inlet 653; Third matching flow channel 660; Fourth flow channel 670; Sixth water guide rib 671; Fourth matching flow channel 680; Siphon cap 700; tabletop 800; annular protrusion 810; annular seal 900; Sprayer main body 911; water inlet channel 912; scattering part 913; notch part 914; Connecting part 915; Stopping part 916; Splash-proof shielding part 917; Slot 918. Detailed Implementation

[0022] To make the objectives, technical solutions, and advantages of this invention clearer, the invention will be further described in detail below with reference to the accompanying drawings and embodiments.

[0023] It should be noted that in the description of this invention, the terms "upper," "lower," "left," "right," "vertical," "horizontal," "inner," and "outer," which indicate directional or positional relationships, are based on the directional or positional relationships shown in the accompanying drawings. These are merely for ease of description and do not indicate or imply that the device or element must have a specific orientation, or be constructed and operated in a specific orientation; therefore, they should not be construed as limitations on this invention. Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.

[0024] This invention provides an embodiment of a detergent dispenser, comprising: The housing assembly includes: The housing 100 has a drainage cavity 130 formed inside the housing 100 that communicates with an external drainage pipe; The housing 100 specifically includes: a housing body, on which a first cavity 110 and a second cavity 120 are recessed; The first cavity 110 and the second cavity 120 are arranged side by side along the length of the shell body. Specifically, a partition component is provided inside the shell body to divide the shell body into the first cavity 110 and the second cavity 120.

[0025] The drainage chamber 130 is arranged laterally along the width of the shell body. It is perpendicular to the first cavity 110 and the second cavity 120 and communicates with the first cavity 110 and the second cavity 120. The drainage chamber 130 is connected to the external drainage pipe to discharge water outward.

[0026] To enhance the strength of the shell 100, multiple sets of reinforcing ribs are provided on the outer sidewall of the shell 100, and the multiple sets of reinforcing ribs are arranged along the circumference of the shell 100.

[0027] The main body component 200 is disposed within the housing 100, and a certain distance is maintained between each side wall of the main body component 200 and each side wall of the housing 100. A first accommodating cavity 210 is formed within the main body component 200.

[0028] The main component 200 includes a body part 250, which is a body support plate.

[0029] A first receiving cavity 210 is formed by a downward recess on the main body 250; And a placement opening 251 is provided on the main body 250, which is arranged side by side with the first receiving cavity 210.

[0030] In some embodiments of this application, the placement opening 251 is a square placement opening 251, which is opened along the length and width directions of the body portion 250.

[0031] A ring-shaped water-retaining flange 252 is also provided around the body portion 250, which extends upward from the body portion 250.

[0032] A support member 220 is provided on one side of the placement port 251, and the support member 220 extends downward from the main body 250.

[0033] The support component 220 is a support plate, the width of which is similar to the width of the placement opening 251.

[0034] The first accommodating cavity 210 includes a first detergent cavity 211 and a second detergent cavity 212.

[0035] A flow guide cavity is formed between the main body component 200 and the housing 100, and the flow guide cavity is connected to the first accommodating cavity 210 and the drain cavity 130; After the housing 100 and the main body component 200 are installed and fixed, the first detergent chamber 211 and the second detergent chamber 212 are located inside the first cavity 110. There is a gap between the first detergent chamber 211 and the second detergent chamber 212 and the first cavity 110, and a guide cavity is formed between the first detergent chamber 211, the second detergent chamber 212 and the first cavity 110.

[0036] The flow guide cavity and the drainage cavity 130 are connected.

[0037] In order to allow the laundry detergent that has been diluted in the first detergent chamber 211 and the second detergent chamber 212 to enter the guide chamber and then the drain chamber 130.

[0038] A siphon cap 700 is provided in both the first detergent chamber 211 and the second detergent chamber 212.

[0039] In some embodiments, bleach can be placed in the first detergent chamber 211 and fabric softener can be placed in the second detergent chamber 212. During use, water flows into the first detergent chamber 211 and the second detergent chamber 212, diluting the bleach in the first detergent chamber 211 and the fabric softener in the second detergent chamber 212. Then, the water is drawn into the guide chamber by the siphon cap 700 located in each detergent chamber. After passing through the guide chamber, the water flows into the drain chamber 130, which is connected to the guide chamber, and finally is discharged into the drum of the clothes handling device for washing.

[0040] The placement port 251 of the main component 200 and the second cavity 120 are positioned correspondingly. After the main component 200 is assembled onto the housing 100, the main component 200 and the housing 100 form a washing cavity 300 with the placement port 251 as an opening. The washing cavity 300 and the drain cavity 130 are connected.

[0041] The washing chamber 300 is relatively large and is located alongside the first detergent chamber 211 and the second detergent chamber 212. It can be used to hold laundry powder or liquid detergent.

[0042] Laundry detergent is poured into the washing chamber 300 through the placement port 251. Then, the detergent is diluted by the water flow entering the washing chamber 300 and discharged directly into the drain chamber 130. It then enters the drain pipe and reaches the interior of the clothing processing device.

[0043] When the housing 100 and the main body component 200 are assembled, the housing 100 is fitted onto the outside of the main body component 200, and the top of the main body component 200 is fastened onto the housing 100.

[0044] A latching assembly is provided between the main body component 200 and the housing 100. During installation, a latching groove and a latching protrusion can be provided on the housing 100 so that the two can be fastened and fixed by the cooperation of the latching protrusion and the latching groove.

[0045] During setup, multiple sets of locking slots and locking protrusions can be provided and arranged circumferentially between the main body component 200 and the housing 100.

[0046] To connect the housing 100 and the main body 200 with the garment processing device, a first connecting boss is provided on the housing 100, and a second connecting boss is provided on the main body 200. The first connecting boss and the second connecting boss are mated together. During connection, locking screws are passed through the first connecting boss and the second connecting boss to lock and fix the main body 200, the housing 100, and the garment processing device.

[0047] To ensure the airtight connection between the housing 100 and the main body 200 and prevent water leakage, protruding rib assemblies that can cooperate with each other are provided on the top surface of the housing 100 and the bottom surface of the main body 200. The protruding rib assemblies form a sealing groove arranged circumferentially along the housing 100 and the main body 200. A sealing strip is installed in the sealing groove to ensure the airtightness between the two.

[0048] A lid assembly 500 is assembled on the main body component 200. A water guide channel 600 is formed between the main body component 200 and the lid assembly 500, which is arranged around the first accommodating cavity 210 and the washing accommodating cavity 300 and can respectively guide water flow into the first accommodating cavity 210. A water inlet guide part is provided on the water guide channel 600 to guide the water in the water guide channel 600 into the first accommodating cavity 210.

[0049] In this embodiment, the detergent dispenser is designed by fitting and fixing the main body 200 and the shell 100 together, thereby forming multiple first accommodating cavities 210 and washing accommodating cavities 300 for placing detergent. It is also equipped with corresponding guide cavities and drain cavities 130 to guide the diluted detergent into the garment processing device. This design achieves multiple detergent placement cavities, resulting in a large capacity and diverse configuration, which can meet the user's needs for placing different types of detergent.

[0050] Furthermore, in this embodiment, when the detergent box is installed, a water guide channel 600 is provided between the main body component 200 and the lid assembly 500, and the water guide channel 600 surrounds the first receiving cavity 210. A water inlet guide is provided on the water guide channel 600, which can directly guide the water flow into the corresponding receiving cavity through the water guide channel 600. This not only avoids water leakage, but also, since the water guide channel 600 is set around the corresponding receiving cavity, and the water inlet guide is also set around the first receiving cavity 210, the water flow in the water guide channel 600 can be guided along the periphery of the first receiving cavity 210 into the interior of the first receiving cavity 210 through the water inlet guide. This allows the water flow to flow evenly from the periphery of the receiving cavity into the corresponding receiving cavity. The method of water entering from the periphery of the receiving cavity allows the water flow to rinse the detergent from multiple directions, resulting in a cleaner rinse and a better dilution effect on the detergent located inside.

[0051] To ensure the rinsing and dissolving effect of detergent in the large washing chamber, this embodiment also forms a water flow channel by surrounding the cover assembly and the main body component. The water flow channel is located on one side of the washing chamber and extends along the length of the washing chamber.

[0052] In specific settings, the water flow channel can be located on either the left or right side of the main component; there are no specific restrictions.

[0053] A spray component, assembled on the main body component, includes: The main body of the sprayer 911 has a water inlet channel 912 formed therein, which is connected to the end of the water inlet channel away from the drain chamber. And a scattering part 913 located below the water flow inlet channel 912, used to disperse the water flow in the water flow inlet channel and make it scatter and splash in all directions; The notch 914 corresponds to the position of the scattering part 913. The notch 914 is disposed facing the inner wall of the housing so that the water flow impacted and dispersed on the scattering part 913 is sprayed outward through it.

[0054] The notch 914 is an annular notch opened on the main body of the sprayer 911, opposite to the position of the scattering part 913, so as to allow the water flow that has been dispersed and sprayed by the scattering part 913 to flow outward.

[0055] In some embodiments of this application, the water inlet channel 912 is a cylindrical channel formed in the spray body 911, which is arranged vertically to guide the water flow downward in the water channel.

[0056] To achieve docking and fit with the main component, an insertion hole penetrating the bottom wall of the main component is provided during installation, and an annular insertion protrusion is provided around the insertion hole.

[0057] A step is formed in the water inlet channel 912, and the annular insert protrusion is inserted into the bottom of the water inlet channel 912 and abuts against the step to achieve docking with the water inlet channel 912.

[0058] In some embodiments of this application, the scattering part 913 is an arc-shaped scattering surface formed on the spray body part 911 or an inclined scattering slope arranged on the spray body part 911.

[0059] The scattering part 913 is arranged below the water inlet channel 912. The water flowing in from the water inlet channel 912 will directly impact the scattering part 913 located below it. After being blocked by the heat dissipation part, the water will be sprayed outward through the notch 914 under the action of the scattering part 913. After being blocked by the scattering part 913, the water impact force is greater and the water will be dispersed to the surrounding area for spraying. The spray area is larger and can better impact the detergent on the shell wall.

[0060] In this embodiment, the detergent dispenser structure features a water flow channel directly formed on one side of the washing chamber between the lid assembly and the main body. Instead of multiple water inlets, a spray component is positioned at the end of the water flow channel, away from the drain chamber. This design prevents water pressure reduction when entering the channel, ensuring a high water pressure throughout the flow. Furthermore, the high pressure ensures the water is effectively sprayed outwards onto the inner wall of the housing, guaranteeing impact pressure. The spray component structure also allows for a larger area of ​​water sprayed onto the inner wall of the housing, further enhancing the rinsing and dissolving effect of the detergent in the washing chamber.

[0061] In some embodiments of this application, a connecting portion 915 for connecting with the main body component is provided at the top position of the spray body 911. The connecting portion 915 is a connecting arm, which is symmetrically arranged on both sides of the spray body 911.

[0062] A blocking part 916 is provided on both sides of the bottom of the spray body 911 to block the water flow that will be sprayed out from the notch 914 to both sides and to reflect it away from the notch 914. The baffle section 916 is a baffle plate that extends from both sides of the spray body section 911 to both sides.

[0063] The baffle plate prevents the water sprayed from the notch 914 from flowing directly downwards. By blocking the downward flow of water, the water is reflected off the baffle plate and then impacts the inner wall of the shell on both sides, increasing the impact area of ​​the water flow on the inner wall of the shell and further improving the rinsing and dissolving effect on the side wall of the washing chamber and the detergent inside the washing chamber.

[0064] A splash shield 917 is connected to the connecting part 915 and extends downward from the connecting part 915 to the blocking part 916.

[0065] The splash shield 917 is a splash shield that can also block the splashing water. After being blocked by it, the water is reflected and sprayed onto the side wall of the housing opposite to its position, or enters the baffle 916 and is further reflected and sprayed onto the side wall of the housing.

[0066] In some embodiments of this application, a connecting structure is provided between the spray body and the main body component, the connecting structure including: The locking structure includes a first locking part disposed on the connecting part 915 and a second locking part disposed on the main body component; The first locking part is a first locking threaded hole, and the second locking part is a second locking threaded hole.

[0067] The locking element is locked within the first and second locking parts; the locking element is a locking screw.

[0068] During connection, the connecting part 915 and the main body can be locked and fixed by locking screws.

[0069] The locking structure includes a locking groove 918 formed on the spray body 911 and a locking protrusion formed on the body component.

[0070] In some embodiments of this application, there is a gap between the spraying component and the inner wall of the main component, the gap being 1-3 mm.

[0071] In this embodiment, the distance between the spray component and the inner wall of the housing is set in the range of 1-3mm, which can ensure good water flow impact pressure and water flow splashing effect, and ensure good rinsing and dissolving effect of detergent.

[0072] When setting up, the water inlet guide section is arranged along the first receiving cavity 210 in the following ways: The water inlet guide is arranged along one side of the first accommodating cavity 210; Alternatively, the water inlet guide section may be provided along the two opposite sides of the first accommodating cavity 210; Alternatively, the water inlet guide section may be arranged along the circumferential direction of the first accommodating cavity 210.

[0073] In some embodiments of this application, the lid assembly 500 includes: The first lid component 510 and the second lid component 520 are used to assemble and fix them on the tabletop 800.

[0074] The first box lid component 510 is located below the tabletop 800.

[0075] An opening area is provided on the tabletop 800, and a folded connecting edge is formed around the opening area. The first cover component 510 is located below the folded connecting edge, and the second cover component 520 is located above the folded connecting edge. A screw post is provided on the second cover component 520. The screw passes through the threaded hole on the bottom of the first cover component 510 and the threaded hole on the folded connecting edge, and is then screwed and fixed in the screw post of the second cover component 520 to achieve the connection and fixation between the three components.

[0076] The first lid component has a first dispensing port, and the second lid component has a second dispensing port. Both the first and second dispensing ports correspond to the placement port positions. The first dispensing port and the placement port have matching outlines. The second dispensing port is located near the area where the spray component 910 is located, and its corresponding length is less than that of the first dispensing port.

[0077] The second dispensing port of the second lid component 520 is set to be smaller than that of the first lid component 510 and is concentrated in the area close to the spray component 910, so that when the user dispenses detergent, he or she should dispense it as close as possible to the spray component 910 to ensure that the detergent is fully dissolved.

[0078] An annular insert portion is formed on the first box cover component 510; The sealing component 530, disposed between the first cover component 510 and the table surface 800, includes: The sealing body is inserted into the annular fitting portion; The abutting foot portion 540 extends outward from the sealing body and abuts against the side wall of the annular insert portion; The abutment foot 540 is an abutment foot, which is inclined upward on the sealing body.

[0079] And a deformation portion 550 provided on the top of the sealing body, which protrudes from the annular insert portion and has a hollow deformation cavity inside, which can deform under pressure to seal the platform 800 and the first cover component 510.

[0080] The annular mounting part is an annular mounting groove, which is arranged along the circumferential direction of the first cover component 510.

[0081] The annular mounting groove has an annular opening facing the platform 800. The annular mounting groove includes an annular bottom wall and annular side walls disposed on both sides of the annular bottom wall.

[0082] The annular opening faces the annular bottom wall.

[0083] The first lid component 510 can be square or round, etc., and is made of plastic. During molding, the annular insert is directly integrally molded with the first lid component 510.

[0084] A sealing component 530 is disposed between the first cover component 510 and the platform 800. In order to cooperate with the annular insert, the sealing component 530 is also configured to be annular.

[0085] To meet the requirements of sealing and installation, the sealing component 530 is made of rubber and is directly integrally molded.

[0086] In some embodiments of this application, the sealing body includes a pressing portion and a vertical portion.

[0087] The pressing part is located on the top surface of the vertical part.

[0088] The vertical part is a vertical strip, and the maximum width of the vertical part is less than the distance between the two annular sidewalls of the annular insert groove, so that the sealing body can be quickly assembled into the annular insert.

[0089] The pressing part is a pressing strip, the maximum width of which is greater than the maximum width of the vertical part and greater than the width of the two annular sidewalls.

[0090] During assembly, the vertical part is inserted into the annular insert groove, and the pressing part seals the annular opening between the two annular sidewalls to achieve a seal.

[0091] To achieve a secure seal between the sealing component 530 and the first cover component 510, the first sealing component 530 further includes an abutting support portion 540 extending outward from the sealing body, which abuts against the side wall of the annular insert portion.

[0092] Multiple outwardly extending abutment feet 540 are provided on both sides of the sealing body. After the sealing body is inserted into the annular insert, the abutment feet 540 arranged at an angle on both sides of the sealing body can abut against the side walls on both sides of the annular insert groove. Since the abutment feet 540 are arranged at an angle, when they are assembled in the annular insert groove, they will abut against the inner side wall of the annular insert groove. This can effectively prevent the sealing component 530 from falling or falling out of the first cover component 510 after it is assembled into the first cover component 510.

[0093] The included angle between the abutment foot 540 and the sealing body is 45-60 degrees.

[0094] The deformable cavity can be rhomboid, rectangular, or elliptical in shape, etc. After being compressed, it can be flattened and the contact area with the table surface 80° increases.

[0095] Specifically, the deformation part 550 is disposed above the pressing part. Since a deformation cavity is formed inside the deformation part 550, when assembling the table 800 and the first box cover component 510, the deformation cavity located on the deformation part 550 between the table 800 and the first box cover component 510 can be pressed by the table 800.

[0096] Since the deformation cavity is hollow, it provides compression space during the installation of the platform 800. This makes it easier to press the sealing component 530 into the annular mounting groove of the first cover component 510 for clamping and fixing.

[0097] Furthermore, since the deformation cavity in this embodiment is hollow, when it is subjected to pressure from the tabletop 800, the entire deformation part 550 will be flattened, changing from a three-dimensional deformation part 550 to a plane, increasing the area of ​​the entire deformation part 550, thereby increasing the contact area between the tabletop 800 and the first lid component 510, and thus enhancing the sealing effect between the tabletop 800 and the first lid component 510, effectively preventing moisture in the detergent box from escaping outward from the tabletop 800.

[0098] The second lid component 520 is disposed above the tabletop 800. The second lid component 520 includes a second lid body and a flip-top lid body rotatably connected to the second lid body. A sealing structure is provided between the second lid body and the tabletop 800.

[0099] A recessed cavity is formed on the top surface of the second box lid. A rotating shaft is provided on the bottom wall of the recessed cavity. The flip-top lid is placed in the recessed cavity and is rotatably connected to the rotating shaft, so that the opening can be opened or closed by flipping and rotating.

[0100] The sealing structure includes: An annular groove is formed around the periphery of the second box lid; An annular seal 900 is fitted into the annular groove. The annular seal 900 is an annular sealing strip.

[0101] An annular protrusion 810 is provided on the platform 800, and the annular protrusion 810 abuts against the bottom of the annular seal 900.

[0102] It also includes a stop portion disposed in the annular groove. The stop portion is arranged circumferentially along the annular groove. The height of the stop portion is less than the height of the side wall of the annular groove. When the annular seal 900 is installed in place, the stop portion abuts against the annular seal 900.

[0103] After the tabletop 800 and the second box cover are connected and fixed, the annular seal 900 on the second box cover is pressed and fixed by the annular protrusion 810 on the tabletop 800 to achieve a sealed connection between the second box cover and the tabletop 800.

[0104] The stop portion is a support protrusion provided in the annular groove, which extends from the top wall of the annular groove toward the annular mounting opening. The stop portion and the annular protrusion 810 are arranged opposite to each other.

[0105] After the annular seal 900 is assembled into the annular groove, it is subjected to the downward abutting force of the stop part in the annular groove, and at the same time, it is also subjected to the abutting force of the annular protrusion 810 located on the platform 800. The two forces are equal in magnitude and opposite in direction. Through the action of the forces of the stop part and the annular protrusion 810, it can be ensured that the annular seal 900 can make firm contact and fit with the platform 800 and the second box cover, resulting in a good sealing effect.

[0106] Specifically, the first lid component 510 is fastened to the main body component 200, and the water guide channel 600 is formed between the lid component 510 and the main body component 200.

[0107] In some embodiments of this application, the water guide channel 600 includes: The first water guide channel is arranged around the first detergent chamber 211; The second water guide channel is arranged around the second detergent chamber 212; In some embodiments of this application, a first flow channel 610 formed by a first annular water guide 612 is formed on the main body component 200, and a first mating flow channel 620 formed by a second annular water guide 621 is provided on the first cover component 510. The first flow channel 610 and the first mating flow channel 620 are connected to form a first water guide flow channel 600.

[0108] Specifically, there are two first annular water guide ribs 612, both extending upward from the top wall of the main body component 200 and arranged circumferentially along the first detergent cavity 211. A first flow channel 610 is formed between the two first annular water guide ribs 612. There are two second annular water guide ribs 621, extending downward from the bottom of the first lid component 510. A first mating flow channel 620 is formed between the two second annular water guide ribs 621. The first mating flow channel 620 and the first flow channel 610 have the same shape and can be completely matched and connected.

[0109] The water inlet guide is provided on the side wall of the first flow channel 610 near the first detergent chamber 211. The water inlet guide is a first water inlet notch 611. Multiple first water inlet notches 611 are provided, and the distance between adjacent first water inlet notches 611 is equal.

[0110] To enable rapid water intake, first water inlet notches 611 can be provided on the two opposite side walls of the first flow channel 610, allowing water to quickly enter the first detergent chamber 211.

[0111] A drainage hole is also provided on the first flow channel 610, penetrating the bottom wall of the first flow channel 610. The drainage hole connects the first flow channel 610 and the guide cavity to realize the rapid drainage of water in the first flow channel 610 and prevent water accumulation in the first flow channel 610.

[0112] In order to guide the water flow in the first water guide channel, a water guide plate group 622 is provided on the side wall of the second annular water guide rib 621. Each group includes two water guide plates, and the two water guide plates correspond to the positions of the first water inlet gap 611, so as to guide the water in the first water guide channel 600 to the first water inlet gap 611.

[0113] In some embodiments of this application, a second flow channel 630 is formed on the main body component 200 and extends along one side of the first detergent chamber 211 to the side of the second detergent chamber 212. The second flow channel 630 has an outlet portion 631. The second flow channel 630 is formed by two third water guide ribs 632 and the main body component 200 located in the third water guide ribs 632. The third water guide ribs 632 extend along one side of the first detergent chamber 211 to the side of the second detergent chamber 212. Two third flow channels 650 are provided, respectively arranged on both sides of the second detergent chamber 212. Each third flow channel 650 includes an inlet portion and the outlet portion 631 is connected. At least one of the third flow channels 650 has a water inlet guide portion connected to the second detergent chamber 212.

[0114] The water inlet guide section is the second water inlet notch 653. Multiple second water inlet notches 653 can be provided and are equally spaced along the length of the second detergent chamber 212.

[0115] The first box cover component 510 is provided with a second mating flow channel 640 that mates with the second flow channel 630 and a third mating flow channel 660 that mates with the third flow channel; The second matching flow channel 640 and the second flow channel 630 are connected to form the first matching flow channel, and the third flow channel 650 is connected to the third matching flow channel 660 to form the second matching flow channel. The first matching flow channel and the second matching flow channel form the second water guiding flow channel.

[0116] When water enters, it first enters the first docking channel, flows out from the outlet 631 of the first docking channel, and then enters the second docking channels on both sides. It then flows into the second detergent container cavity from the second water inlet 651 on both sides to dilute the detergent.

[0117] Specifically, a fourth water guide rib 651 is provided around the second detergent chamber 212, and a third flow channel 650 is formed between the inner third water guide rib 632 and the fourth water guide rib 651. The fifth water guide rib 652 is arranged opposite to the third water guide rib 632 and is located on one side of the second washing chamber. It forms another third flow channel 650 with the fourth water guide rib 651.

[0118] The second mating flow channel 640 and the third mating flow channel 660 located on the first lid component 510 are also formed by raised ribs. The raised ribs are set in the same way as those on the main body component 200 to achieve matching.

[0119] The water-diverting protrusion is located on the fourth water guide rib 651, opposite to the outlet 631, and is used to divert the water flow in the second flow channel 630 into the third flow channel 650.

[0120] A fourth flow channel 670 is formed on the main body component 200, which surrounds the washing cavity 300. A fourth matching flow channel 680 is formed on the first cover component 510, which is connected to the fourth flow channel 670. The fourth flow channel 670 and the fourth matching flow channel 680 are connected to form the water flow channel 600.

[0121] Specifically, a sixth water guide rib 671 is provided on the main body component 200, and corresponding ribs are also arranged on the first cover component 510.

[0122] Water inlets are provided in the first, second, and third water guide channels to facilitate the insertion of water pipes and the delivery of water to the corresponding water guide channels.

[0123] In some embodiments of this application, four water inlet pipes are provided, namely a first water inlet pipe, a second water inlet pipe, a third water inlet pipe and a fourth water inlet pipe. When connecting, the first water inlet pipe is inserted into the water inlet of the first water guide channel, the second water inlet pipe is inserted into the water inlet of the second water guide channel, and the third and fourth water inlet pipes are respectively inserted into the water inlet of the water flow channel 600 to ensure the water pressure of the water flow channel 600.

[0124] By connecting multiple water channels 600 to multiple different water inlet pipes, cold or hot water can be introduced into different chambers according to the corresponding detergent usage requirements, thereby meeting the different detergent dissolution needs and improving the washing effect of the entire clothing treatment device.

[0125] In some embodiments of this application, a gap is provided between the support member 220 and the bottom wall of the washing cavity 300, and a plurality of blocking members 230 are provided in the gap, forming a guide channel 240 between the plurality of blocking members 230 for guiding the water flow in the washing cavity 300 into the drain cavity 130.

[0126] The baffle component 230 is a baffle plate or baffle block. The guide channel 240 between adjacent baffle components 230 can prevent water from flowing rapidly from the washing chamber 300 into the drain chamber 130, and prevent the detergent in the washing chamber 300 from being quickly flushed into the clothes processing device before it has completely dissolved. At the same time, the baffle component 230 can also block foreign objects in the detergent poured into the washing chamber 300 to a certain extent, preventing foreign objects from entering the clothes processing device.

[0127] The above embodiments are only used to illustrate the technical solutions of the present invention, and are not intended to limit them. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions claimed by the present invention.

Claims

1. A detergent dispenser, characterized in that, Including: The box assembly includes: The shell has a drainage cavity inside that communicates with the external drainage pipe; The main body component is disposed within the housing and forms a washing and receiving cavity with the housing, and a first receiving cavity is formed within the main body component; The lid assembly is assembled on the main body component and forms an enclosure with the main body component: A water flow channel is provided on one side of the washing chamber and extends along the length of the washing chamber; The lid assembly includes a first lid component and a water flow channel formed between the main body component and the first lid component; A spray component, assembled on the main body component, is provided in one unit, and the spray component includes: The main body of the sprayer has a water inlet channel formed therein, which is connected to the end of the water inlet channel away from the drain chamber; And a scattering section located below the water inlet channel, used to disperse the water inlet channel and cause it to scatter and splash in all directions; The notch corresponds to the position of the scattering part, so that the water flow that is dispersed by the impact on the scattering part can be ejected outward through it; The lid assembly also includes: a second lid component, the first lid component having a first dispensing port, the second lid component having a second dispensing port, and a placement opening formed on the main body component; the first dispensing port and the second dispensing port are both located corresponding to the placement opening, the outlines of the first dispensing port and the placement opening are adapted, and the second dispensing port is arranged near the area where the spray component is located and its corresponding length is less than that of the first dispensing port.

2. The detergent dispenser according to claim 1, characterized in that, A connecting part for connecting to the main body component is provided at the top of the spray body; A baffle is provided on both sides of the bottom of the main body of the sprayer to block the water flow that will be sprayed out from the notch and reflect it to the sides away from the notch. A splash shield is attached to the connecting part and extends downward from the connecting part to the blocking part.

3. The detergent dispenser according to claim 1, characterized in that, The scattering part is an arc-shaped scattering surface formed on the main body of the sprayer or an inclined scattering slope arranged on the main body of the sprayer.

4. The detergent dispenser according to claim 2, characterized in that, A connecting structure is provided between the spray body and the main body component, the connecting structure including: The locking structure includes a first locking part disposed on the connecting part and a second locking part disposed on the main body component; The locking element is locked within the first locking part and the second locking part; The locking structure includes a locking groove formed on the spray body and a locking protrusion formed on the body component.

5. The detergent dispenser according to claim 1, characterized in that, A flow guide cavity is formed between the main component and the housing, and the flow guide cavity is connected to the first receiving cavity and the drainage cavity; A water guide channel is arranged around the first receiving cavity, and multiple water inlet guide parts are formed on the water guide channel and arranged around the first receiving cavity to guide water in the water guide channel from the periphery of the first receiving cavity into the first receiving cavity.

6. The detergent dispenser according to claim 5, characterized in that, The first accommodating cavity includes: A first detergent chamber and a second detergent chamber are arranged sequentially along the length of the main component, and the first detergent chamber and the second detergent chamber are arranged in parallel with the washing containment chamber; The water guide channel includes: A first water guide channel is formed between the main body component and the first lid component, and is disposed around the first detergent cavity; A second water channel is formed between the main body component and the first lid component, and is disposed around the second detergent chamber.

7. The detergent dispenser according to claim 6, characterized in that, The main body component has a first flow channel formed by a first annular water guide rib, and the first cover component is provided with a first matching flow channel formed by a second annular water guide rib. The first flow channel and the first matching flow channel are connected to form the first water guide flow channel. A second flow channel is formed on the main body component and extends along one side of the first detergent chamber to the side of the second detergent chamber. The second flow channel has an outlet portion. The third flow channel is provided in two sections, which are respectively arranged on both sides of the second detergent chamber. The third flow channel includes an inlet section and the inlet section is connected to the outlet section. At least one of the third flow channels has a water inlet guide section that is connected to the second detergent chamber. The first box cover component is provided with a second mating flow channel that connects with the second flow channel and a third mating flow channel that connects with the third flow channel; The second matching channel and the second matching channel are connected to form the first matching channel, and the third channel is connected to the third matching channel to form the second matching channel. The first matching channel and the second matching channel form the second water guiding channel.

8. The detergent dispenser according to claim 7, characterized in that, A fourth flow channel is provided on one side of the washing cavity on the main body component, and a fourth matching flow channel is formed on the first cover component to connect and cooperate with the fourth flow channel. The fourth flow channel and the fourth matching flow channel are connected to form the water flow channel.

9. A clothing washing device, characterized in that, Includes the detergent dispenser as described in any one of claims 1 to 8.

Citation Information

Patent Citations

  • Detergent box and clothes processing device

    CN116065355A