Chambered structure and dish washing machine having the same
By employing a compartmentalized structure and sliding limiting mechanism within the dishwasher, the problem of cross-contamination caused by the absence of a compartmentalized structure is solved, enabling compartmentalized storage and washing functions, and improving product safety and ease of operation.
Patent Information
- Application Number
- CN202211580344.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-12-09
- Publication Date
- 2026-02-13
- Estimated Expiration
- 2042-12-09
AI Technical Summary
Existing dishwashers lack a separate cavity structure, making it impossible to achieve true cavity washing and easily leading to cross-contamination.
By employing a compartmentalized structure and a sliding limiting mechanism, the dishwasher achieves compartmentalized storage and washing functions through the sliding connection between the mounting box and the compartmentalized plate, combined with locking and sealing components.
This design enables separate storage and washing within the dishwasher's interior, preventing cross-contamination and improving product safety and ease of operation.
Smart Images

Figure CN115868897B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of kitchen appliances, in particular to a cavity dividing structure and a dishwasher with the same. BACKGROUND
[0002] With the continuous improvement of people's living standards, household dishwashers have gradually entered many families to replace the tedious labor of manual dishwashing. Among them, according to the different opening forms, household dishwashers can be generally divided into pull-down door type dishwashers, drawer type dishwashers and sink type dishwashers.
[0003] At present, the inner cavity of the dishwasher is basically without cavity dividing structure, and the upper basket and the lower basket are washed at the same time. When it is necessary to wash the upper basket or the lower basket separately, it can only be controlled through the waterway, that is, only the lower spray arm is opened (the middle spray arm and the top spray arm are not opened) if it is necessary to wash the lower basket separately, and only the middle spray arm and the top spray arm are opened (the lower spray arm is not opened) if it is necessary to wash the upper basket separately. Thus, only simple layered washing is achieved, and the purpose of true cavity washing cannot be achieved. Moreover, such layered washing is very easy to cause cross contamination, so a cavity dividing structure is needed to achieve the functions of true cavity storage and washing of the inner cavity of the dishwasher. SUMMARY
[0004] The purpose of the present application is to provide a cavity dividing structure for dividing the inner cavity of a product through the cavity dividing assembly and the sliding limiting mechanism, and adjusting the layout of the inner cavity of the product.
[0005] The purpose of the present application is to provide a dishwasher, which can form two spaces that do not interfere with each other inside the dishwasher through the cavity dividing structure, and can achieve the functions of cavity storage and washing.
[0006] To achieve the purpose of the present application, the present application adopts the following technical solutions:
[0007] According to one aspect of the present application, a cavity dividing structure is provided. The cavity dividing structure comprises:
[0008] a cavity dividing assembly comprising a mounting box and a cavity dividing plate for dividing cavities, wherein the mounting box has an open mounting box cavity, the cavity dividing plate is inserted into the mounting box cavity and is slidingly connected to the mounting box;
[0009] a sliding limiting mechanism arranged outside the cavity dividing assembly, wherein the mounting box is detachably connected to the sliding limiting mechanism;
[0010] The movement range of the cavity dividing plate is limited by the mounting box and the sliding limiting mechanism.
[0011] According to an embodiment of the present application, the sliding limiting mechanism comprises:
[0012] mounting plate;
[0013] a detachable connecting assembly connecting the mounting plate and the mounting box;
[0014] a sliding assembly connected to the cavity-division plate and the mounting box, so that the cavity-division plate is inserted and slidingly connected to the mounting box;
[0015] a limiting assembly connected between the cavity-division plate, the mounting box and the mounting plate, for limiting the movement range of the cavity-division plate.
[0016] According to an embodiment of the present application, the detachable connecting assembly comprises:
[0017] a mounting box clamping block arranged on a side of the mounting box close to the mounting plate;
[0018] a fixing portion arranged on the mounting plate, wherein the fixing portion comprises a fixing groove corresponding to the mounting box clamping block, and the mounting box clamping block is clamped into the fixing groove to achieve detachable connection of the mounting plate and the mounting box.
[0019] According to an embodiment of the present application, the sliding assembly comprises:
[0020] a sliding rail fixedly connected to a side of the cavity-division plate close to the mounting plate;
[0021] a mounting box sliding groove fixedly connected to the inside of the mounting box, wherein the sliding rail is inserted into the mounting box sliding groove and slides along the mounting box sliding groove;
[0022] a mounting plate sliding groove arranged on the mounting plate, wherein when the cavity-division plate slides out of the mounting box cavity, the sliding rail is inserted into the mounting plate sliding groove and moves along the mounting plate sliding groove.
[0023] According to an embodiment of the present application, the limiting assembly comprises:
[0024] a cavity-division plate protruding portion arranged on the sliding rail;
[0025] a mounting box limiting portion arranged on the mounting box sliding groove, wherein the mounting box limiting portion corresponds to the cavity-division plate protruding portion, so that when the cavity-division plate is inserted into the inside of the mounting box, the mounting box limiting portion is used to limit the cavity-division plate protruding portion, so that the cavity-division plate enters a first preset position in the mounting box;
[0026] a limiting baffle arranged on the mounting plate sliding groove, for limiting the sliding-out range of the sliding rail, wherein when the cavity-division plate reaches a second preset position of sliding-out, the sliding rail is in contact with the limiting baffle;
[0027] The installation plate limiting part is arranged on the installation plate sliding groove, wherein the cavity-division plate protruding part corresponds to the installation plate limiting part, so that the cavity-division plate protruding part abuts against the installation plate limiting part when the cavity-division plate slides to the second preset position.
[0028] The cavity-division plate protruding part, the limiting baffle and the installation plate limiting part are matched to make the cavity-division plate slide out to the second preset position.
[0029] According to an embodiment of the present application, the locking assembly for preventing the cavity-division plate from falling off the installation box comprises:
[0030] The locking part comprises a cavity-division plate clamping block fixed to the cavity-division plate and a locking block fixed to the installation box, so as to lock the installation box and the cavity-division plate when the cavity-division plate slides into the first preset position.
[0031] The driving part is connected to the locking block.
[0032] The driving part and the locking block are matched to make the locking part have two working conditions.
[0033] According to an embodiment of the present application, the locking assembly further comprises a locking shell, and the locking shell further comprises:
[0034] The positioning column is fixed to the inside of the locking shell.
[0035] The first through hole is arranged on one side of the locking shell close to the cavity-division plate clamping block, wherein one side of the locking block passes through the first through hole to connect the cavity-division plate clamping block.
[0036] The locking part further comprises:
[0037] The mounting frame is a rectangular frame, which is sleeved on the outer periphery of the positioning column, wherein the locking block is fixed to one side of the mounting frame close to the cavity-division plate clamping block.
[0038] The driving part is connected to the locking shell and the mounting frame, and driving the driving part can drive the mounting frame and the locking block to slide.
[0039] According to an embodiment of the present application, the driving part comprises:
[0040] The pressing block is located in the inside of the mounting frame and is sleeved on the outer periphery of the positioning column, wherein the pressing block is provided with a pressing block groove, so that the pressing block is sleeved on the outer periphery of the positioning column.
[0041] a first spring, sleeved between the pressing block groove and the positioning column, one end of which is fixedly connected to the inside of the locking shell and the other end of which is fixedly connected to the pressing block groove;
[0042] a second spring, one end of which is fixedly connected to the pressing block and the other end of which is fixedly connected to the inside of the mounting frame;
[0043] a pushing block, one end of which is fixedly connected to the side of the pressing block away from the locking block and the other end of which abuts against the mounting frame;
[0044] wherein the contact surfaces of the mounting frame and the pushing block are both inclined surfaces, and the mounting frame and the locking block are linearly moved through the cooperation of the pressing block, the pushing block, the first spring and the second spring.
[0045] According to an embodiment of the present application, in the first of the two working conditions, when the pressing block moves from the initial position to the working position, the first spring and the second spring are both in the compressed state, the pushing block moves along the inclined surface of the mounting frame towards the bottom of the locking shell, and pushes the mounting frame to move away from the cavity-plate clamping block to the locking portion retraction preset position, and the locking block and the cavity-plate clamping block do not contact.
[0046] In the second of the two working conditions, when the pressing block returns to the working position, the pushing block moves away from the bottom of the locking shell, and the second spring pushes the mounting frame to move towards the cavity-plate clamping block to the locking portion retraction preset position, and the locking block and the cavity-plate clamping block abut against each other.
[0047] According to an embodiment of the present application, further comprising a sealing assembly, the sealing assembly comprising:
[0048] a first water baffle, fixedly connected to the side of the cavity plate away from the mounting box;
[0049] a second water baffle, located above the limiting assembly and fixedly connected to the mounting plate;
[0050] the third water baffle, fixedly connected to the side of the mounting box close to the locking assembly;
[0051] wherein the first water baffle, the second water baffle and the third water baffle are used to improve the waterproof performance of the cavity assembly.
[0052] According to an embodiment of the present application, wherein, the third water baffle is provided with a cover plate, in the first of the two working conditions, the cover plate presses against the pressing block, so that the pressing block is in the working position; in the second of the two working conditions, the cover plate and the pressing block are not in contact.
[0053] According to an embodiment of the present application, wherein, the cavity dividing plate is provided with a handle, and the mounting box is provided with a mounting box groove corresponding to the handle, so as to facilitate the sliding of the cavity dividing plate into the mounting box cavity.
[0054] According to a second aspect of the present application, a dishwasher is provided, comprising:
[0055] The inner container is internally formed with an inner container cavity;
[0056] The cavity dividing structure according to the first aspect of the present application, wherein, the cavity dividing structure comprises a cavity dividing assembly and a sliding limiting mechanism;
[0057] The sliding limiting mechanism is fixedly connected to the inner side of the inner container, and the cavity dividing assembly is hingedly connected to the inner side of the inner container, and the cavity dividing assembly and the sliding limiting mechanism cooperate to divide the inner container cavity.
[0058] According to an embodiment of the present application, further comprising a fixing assembly connected between the inner container and the cavity dividing assembly, the fixing assembly comprising:
[0059] The damping hinge comprises a hinge leaf and a hinge shaft, wherein the hinge leaf is detachably connected to the inner container and the mounting box.
[0060] According to an embodiment of the present application, further comprising a spraying assembly, the spraying assembly comprising:
[0061] The first spraying arm and the second spraying arm are respectively located on both sides of the cavity dividing assembly;
[0062] The spraying arm water pipe is connected to the first spraying arm and the second spraying arm;
[0063] The spraying arm seat is fixedly connected to one side of the inner container and connected to the other side of the spraying arm water pipe;
[0064] The cavity dividing plate on the side away from the mounting box is provided with a notch corresponding to the spraying arm water pipe, so that the cavity dividing plate is adapted to the shape of the spraying arm water pipe.
[0065] According to an embodiment of the present application, the outer periphery of the spraying arm water pipe is provided with a water baffle groove corresponding to the cavity dividing plate, and the cavity dividing plate can be inserted into the water baffle groove.
[0066] One embodiment of the present application has the following advantages or beneficial effects:
[0067] The cavity-dividing structure divides the product cavity through the cavity-dividing assembly and the sliding limiting mechanism, and adjusts the layout of the product cavity.
[0068] The locking assembly can automatically lock and unlock the cavity-dividing plate and the mounting box, and can prevent the cavity-dividing plate from being pulled out in a non-working state, thereby improving the safety of the product.
[0069] The dishwasher can form two spaces that do not interfere with each other inside the dishwasher through the cavity-dividing structure, and can realize the functions of cavity-dividing storage and washing. BRIEF DESCRIPTION OF DRAWINGS
[0070] The above and other features and advantages of the present application will become more apparent by describing in detail example embodiments thereof with reference to the attached drawings in which:
[0071] Figure 1 is a schematic view of a cavity-dividing structure according to an example embodiment.
[0072] Figure 2 is a schematic view of a cavity-dividing assembly according to an example embodiment.
[0073] Figure 3 is a schematic view of a cavity-dividing assembly according to an example embodiment.
[0074] Figure 4 is a schematic view of a sliding limiting mechanism and a second water baffle according to an example embodiment.
[0075] Figure 5 is a schematic view of a sliding limiting mechanism on the side of a spraying assembly according to an example embodiment.
[0076] Figure 6 is a schematic view of a cavity-dividing plate according to an example embodiment.
[0077] Figure 7 is a schematic view of an enclosing plate according to an example embodiment.
[0078] Figure 8 is a schematic view of a locking assembly according to an example embodiment.
[0079] Figure 9 is a cross-sectional view of an unlocked state of a locking assembly according to an example embodiment.
[0080] Figure 10 is a cross-sectional view of a locked state of a locking assembly according to an example embodiment.
[0081] Figure 11 is a schematic diagram of a working state of a divided-cavity structure of a dishwasher according to an example embodiment.
[0082] Figure 12 is a schematic diagram of a non-working state of a divided-cavity structure of a dishwasher according to an example embodiment.
[0083] Figure 13 is a schematic diagram of a spraying assembly according to an example embodiment.
[0084] In the drawings, the same reference numerals are used to denote the same components throughout the several views.
[0085] 1. Divided-cavity assembly; 11. Mounting box; 111. Mounting box groove; 12. Divided-cavity plate; 121. Handle; 122. Notch;
[0086] 2. Sliding limiting mechanism; 21. Mounting plate; 22. Detachable connecting assembly; 221. Mounting box clamping block; 222. Fixed part; 23. Sliding assembly; 231. Slide rail; 232. Mounting plate sliding groove; 24. Limiting assembly; 241. Divided-cavity plate protruding part; 242. Mounting box limiting part; 243. Limiting baffle; 244. Mounting plate limiting part;
[0087] 3. Locking assembly; 31. Locking part; 311. Divided-cavity plate clamping block; 312. Locking block; 313. Mounting bracket; 3131. Guide column; 32. Driving part; 321. Pressing block; 3211. Connecting block; 322. First spring; 323. Second spring; 324. Pushing block; 33. Locking housing; 331. Positioning column;
[0088] 4. Sealing assembly; 41. First water baffle; 42. Second water baffle; 43. Third water baffle; 44. Sealing plate; 45. Sealing strip; 46. Sealing ring;
[0089] 5. Inner container; 6. Fixing assembly; 61. Damping hinge; 62. Inner container fixing buckle;
[0090] 7. Spraying assembly; 71. First spraying arm; 72. Second spraying arm; 73. Spraying arm water pipe; 731. Water baffle groove; 74. Spraying arm seat. DETAILED DESCRIPTION
[0091] Example embodiments now will be described more fully hereinafter with reference to the accompanying drawings. Example embodiments, however, can be implemented in many different forms and should not be construed as limited to the implementations set forth herein; rather, these implementations are provided so that this disclosure will be thorough and complete, and will fully convey the scope of the example embodiments to those skilled in the art. Like reference numerals refer to like elements throughout the several views of the drawings, and description of the same will be omitted.
[0092] The terms "one", "a", "the", "said", are used to denote the presence of one or more elements / components / etc.; the terms "include" and "have" are used to indicate an open inclusion and refer to the presence of one or more elements / components / etc. in addition to the listed elements / components / etc.
[0093] As shown in Figures 1 to 10 , Figure 1 A schematic view of the cavity dividing structure provided by the present application is shown. Figure 2 A schematic view of the cavity dividing assembly 1 provided by the present application is shown. Figure 3 A schematic view of the cavity dividing assembly 1 provided by the present application is shown. Figure 4 A schematic view of the connection between the sliding limiting mechanism 2 and the second water baffle 42 provided by the present application is shown. Figure 5 A schematic view of the sliding limiting mechanism 2 provided by the present application is shown. Figure 6 A schematic view of the cavity dividing plate 12 provided by the present application is shown. Figure 7 A schematic view of the sealing plate 44 provided by the present application is shown. Figure 8 A schematic view of the locking assembly 3 provided by the present application is shown. Figure 9 A cross-sectional view of the locking assembly 3 provided by the present application is shown. Figure 10 A cross-sectional view of the locking assembly 3 provided by the present application is shown.
[0094] The cavity dividing structure provided by the present application includes:
[0095] The cavity dividing assembly 1 includes a mounting box 11 and a cavity dividing plate 12 for dividing the cavity, wherein the mounting box 11 has an open mounting box cavity, and the cavity dividing plate 12 is inserted into the mounting box cavity and is connected to the mounting box 11 in a sliding manner.
[0096] The sliding limiting mechanism 2 is arranged outside the cavity dividing assembly 1, and the mounting box 11 is detachably connected to the sliding limiting mechanism 2.
[0097] The movement range of the cavity dividing plate 12 is limited by the mounting box 11 and the sliding limiting mechanism 2.
[0098] The installation box 11 is detachably connected to the sliding limiting mechanism 2, the cavity dividing plate 12 is inserted into the installation box cavity and is slidably connected to the installation box 11, in use, the sliding limiting mechanism 2 is fixed in the product, then the installation box 11 is connected with the sliding limiting mechanism 2, the cavity dividing plate 12 is slid out of the installation box 11 by control, and different product cavities are divided, when the cavity is not needed to be divided, the cavity dividing plate 12 is slid into the installation box 11, and the installation box 11 and the sliding limiting mechanism 2 limit the movement range of the cavity dividing plate 12, so that the product cavity is divided, the different function requirements of the product cavity are improved, and the structure is simple and the operation is convenient. In order to facilitate description, the cavity dividing assembly 1 is connected with the sliding limiting mechanism 2, and the state that the cavity dividing plate 12 is slid out to realize cavity division is called that the cavity dividing assembly 1 is in a working state, at this time, the cavity dividing assembly 1 can divide the product cavity into a first cavity and a second cavity, the state that the cavity dividing assembly 1 is not connected with the sliding limiting mechanism 2 is called that the cavity dividing assembly 1 is in a non-working state, assuming that the cavity dividing plate 12 and the installation box 11 are in the second cavity at this time, the user only needs to adjust the two states of the cavity dividing assembly 1, so that the layout of the product cavity can be adjusted at any time, and multiple function requirements can be met.
[0099] As shown in Figure 1 In the embodiment, the cavity dividing assembly 1 and the sliding limiting mechanism 2 are not less than one, preferably the cavity dividing assembly 1 is two, and the sliding limiting mechanism 2 is four, that is, two sliding limiting mechanisms 2 are arranged on each side of the cavity dividing assembly 1, when the cavity dividing assembly 1 is connected with the sliding limiting mechanism 2, the two sliding limiting mechanisms 2 can make the installation box 11 more stably installed with the sliding limiting mechanism 2, and can make the cavity dividing plate 12 more smoothly slide, in addition, the sliding limiting mechanism 2 can provide a certain supporting force for the cavity dividing assembly 1, and the stability and safety of the whole product are improved.
[0100] In a preferred embodiment of the present application, the sliding limiting mechanism 2 comprises:
[0101] The installation plate 21;
[0102] The detachable connecting assembly 22 connects the installation plate 21 and the installation box 11;
[0103] The sliding assembly 23 is connected to the cavity dividing plate 12 and the installation box 11, so that the cavity dividing plate 12 is slidably connected to the installation box 11;
[0104] The limiting assembly 24 is connected between the cavity dividing plate 12, the installation box 11 and the installation plate 21, and is used for limiting the movement range of the cavity dividing plate 12.
[0105] As shown in Figures 1-6As shown, the mounting box 11 is connected to the mounting plate 21 through a detachable connecting assembly 22, the cavity dividing plate 12 is slid in the mounting box 11 through a sliding assembly 23, and a limiting assembly 24 is connected between the cavity dividing plate 12, the mounting box 11 and the mounting plate 21. Specifically, the limiting assembly 24 in the application can meet the limiting of two cases. In the first case, when the cavity dividing plate 12 divides the inner cavity of the product, the limiting assembly 24 limits the sliding-out position of the cavity dividing plate 12, so that the cavity dividing plate 12 after sliding out can divide the inner cavity of the product. In the second case, when the cavity dividing plate 12 does not need to divide the inner cavity of the product, the limiting assembly 24 is used to limit the cavity dividing plate 12 after sliding into the mounting box 11, so as to avoid the sliding-out of the cavity dividing plate 12. The structure of the application is reasonable and can meet different use requirements.
[0106] In a preferred embodiment of the application, the detachable connecting assembly 22 comprises:
[0107] The mounting box clamping block 221 is arranged on one side of the mounting box 11 close to the mounting plate 21.
[0108] The fixing portion 222 is arranged on the mounting plate 21, wherein the fixing portion 222 comprises a fixing groove corresponding to the mounting box clamping block 221, and the mounting box clamping block 221 is clamped into the fixing groove to achieve detachable connection of the mounting plate 21 and the mounting box 11.
[0109] As shown, Figures 2-6 The fixing portion 222 in the application can be a W-shaped clamping block, which comprises a fixing groove. When the mounting box 11 needs to be clamped to the mounting plate 21, the mounting box clamping block 221 is only needed to be clamped into the fixing groove, so that the connection of the mounting box 11 and the mounting plate 21 is achieved. On the contrary, the mounting box clamping block 221 can be detached from the fixing groove to achieve the separation of the mounting box 11 and the mounting plate 21. Preferably, the fixing portion 222 is a clamping block with elasticity, which facilitates the clamping-in and clamping-out of the mounting box clamping block 221 and is convenient to operate.
[0110] The sliding rail 231 is fixedly connected to one side of the cavity dividing plate 12 close to the mounting plate 21.
[0111] The mounting box sliding groove is fixedly connected to the inside of the mounting box 11, wherein the sliding rail 231 is inserted into the mounting box sliding groove and slides along the mounting box sliding groove.
[0112] The mounting plate sliding groove 232 is arranged on the mounting plate 21, wherein when the cavity dividing plate 12 slides out of the mounting box cavity, the sliding rail 231 is inserted into the mounting plate sliding groove 232 and moves along the mounting plate sliding groove 232.
[0113] As shown, Figures 2-6As shown, the slide rail 231 is inserted into the mounting box groove so that the dividing cavity plate 12 can slide within the mounting box 11. As the dividing cavity plate 12 slides out, the slide rail 231 inserts into the mounting plate groove 232 and slides along the mounting plate groove 232, allowing the dividing cavity plate 12 to slide to a preset position. Furthermore, when the dividing cavity plate 12 slides out to the second preset position, completing the dividing state, the mounting plate groove 232 provides a certain supporting force for the dividing cavity plate 12, giving it a certain load-bearing capacity.
[0114] In a preferred embodiment of the present invention, the limiting component 24 includes:
[0115] The cavity plate protrusion 241 is disposed on the slide rail 231;
[0116] The mounting box limiting part 242 is provided in the mounting box slide groove, wherein the mounting box limiting part 242 corresponds to the cavity plate protrusion 241, so that when the cavity plate 12 is inserted into the mounting box 11, the mounting box limiting part 242 is used to limit the cavity plate protrusion 241, so that the cavity plate 12 enters the first preset position in the mounting box 11.
[0117] A limiting baffle 243 is provided in the mounting plate slide groove 232 to limit the sliding range of the slide rail 231. When the cavity plate 12 reaches the second preset sliding position, the slide rail 231 contacts the limiting baffle 243.
[0118] Mounting plate limiting part 244 is provided in mounting plate slide groove 232, wherein the cavity plate protrusion 241 corresponds to the mounting plate limiting part 244, so that when the cavity plate 12 reaches the second preset position of sliding out, the cavity plate protrusion 241 abuts against the mounting plate limiting part 244.
[0119] Specifically, the dividing cavity plate protrusion 241 and the mounting box limiting part 242 cooperate to allow the dividing cavity plate 12 to slide into the first preset position of the mounting box 11; the dividing cavity plate protrusion 241, the limiting baffle 243 and the mounting plate limiting part 244 cooperate to allow the dividing cavity plate 12 to slide out to the second preset position.
[0120] like Figures 2-6 As shown, when the cavity plate 12 slides into the mounting box 11, the cavity plate protrusion 241 can flip over the mounting box limiting part 242. This application refers to the position of the cavity plate 12 at this time as the first preset position. The mounting box limiting part 242 is used to limit the position of the cavity plate 12 sliding in. At the same time, the cavity plate 12 in the first preset position can be connected to the locking component 3 and lock with the mounting box 11.
[0121] In the process of sliding the cavity plate 12 out of the installation box 11, the sliding rail 231 slides in the installation plate sliding groove 232, when the sliding rail 231 abuts against the limiting baffle 243, the cavity plate 12 slides out to the second preset position, the cavity plate protruding part 241 also flips over from one side of the installation plate limiting part 244 and moves to the other side of the installation plate limiting part 244, at this time, the installation plate limiting part 244 abuts against the cavity plate protruding part 241, so as to limit the cavity plate 12 in the second preset position, and the cavity division is completed.
[0122] In the embodiment, the cavity plate protruding part 241 is a V-shaped protrusion, the installation box limiting part 242 and the installation plate limiting part 244 are both inverted V-shaped protrusions, and in the sliding process of the cavity plate 12, the sliding-in range of the cavity plate 12 can be limited by the installation box limiting part 242, and the sliding-out range of the cavity plate 12 can be limited by the limiting baffle 243 and the installation plate limiting part 244.
[0123] In a preferred embodiment of the present application, a locking assembly 3 for preventing the cavity plate 12 from falling off the installation box 11 is further included, and the locking assembly 3 comprises:
[0124] The locking part 31 comprises a cavity plate clamping block 311 fixed to the cavity plate 12 and a locking block 312 fixed to the installation box 11, so as to lock the installation box 11 and the cavity plate 12 when the cavity plate 12 slides into the first preset position;
[0125] The driving part 32 is connected to the locking block 312;
[0126] The driving part 32 is connected to the locking block 312, and the locking part 31 has two working conditions through the cooperation of the driving part 32 and the locking block 312.
[0127] As shown in FIGS. Figures 1-2 The locking block 312 is connected between the cavity plate 12 and the installation box 11, the locking assembly 3 comprises the locking part 31 and the driving part 32, and the locking part 31 comprises the cavity plate clamping block 311 and the locking block 312. The driving part 32 is connected to the locking block 312, so that the locking part 31 has two working conditions, that is, the cavity plate clamping block 311 and the locking block 312 are connected or not connected, when the cavity plate clamping block 311 and the locking block 312 are connected, the cavity plate 12 and the installation box 11 can be locked; when the cavity plate clamping block 311 and the locking block 312 are not connected, the cavity plate 12 can be pulled out of the installation box 11 under the action of an external force, however, when the cavity division assembly 1 is in an inoperative state, the cavity plate 12 is easily pulled out, which can easily interfere with the articles in the second cavity. The driving part 32 in the present application can connect the cavity plate clamping block 311 and the locking block 312 when the cavity division assembly 1 is in the inoperative state, so as to avoid the cavity plate 12 from being pulled out at this time, and improve the safety performance and user experience of the product.
[0128] In the present application, the number of the cavity-division plate clamping blocks 311 and the locking blocks 312 is not less than 1, preferably two, both of the locking blocks 312 are located between the two cavity-division plate clamping blocks 311, and the locking blocks 312 are oppositely arranged with the cavity-division plate clamping blocks 311. Since the cavity-division plate clamping blocks 311 are in L shape, the cavity-division plate clamping blocks 311 can be clamped on the locking blocks 312 to achieve the locking of the cavity-division plate 12 and the mounting box 11. When the driving part 32 drives the locking blocks 312 to move away from the cavity-division plate clamping blocks 311, the cavity-division plate clamping blocks 311 are in a free state when the cavity-division plate clamping blocks 311 and the locking blocks 312 are not in contact, and the cavity-division plate 12 can also slide out of the mounting box 11 under the action of external force. The structure design is ingenious, and the user operation is more convenient.
[0129] In a preferred embodiment of the present application, the locking assembly 3 further comprises a locking housing 33, and the locking housing 33 further comprises:
[0130] a positioning column 331 fixedly connected to the inside of the locking housing 33;
[0131] a first through hole formed on the side of the locking housing 33 close to the cavity-division plate clamping block 311, wherein one side of the locking block 312 passes through the first through hole to connect the cavity-division plate clamping block 311;
[0132] The locking part 31 further comprises:
[0133] a mounting frame 313 in the shape of a rectangular frame, which is sleeved on the outer periphery of the positioning column 331, and the locking block 312 is fixedly connected to the side of the mounting frame 313 close to the cavity-division plate clamping block 311;
[0134] The driving part 32 is connected to the locking housing 33 and the mounting frame 313, and the mounting frame 313 and the locking block 312 can be driven to slide by the driving part 32.
[0135] As shown in Figures 1-2 As shown in Figs. 8-10, the locking assembly 3 further comprises a locking housing 33, and the inside of the locking housing 33 is provided with a positioning column 331. The locking housing 33 close to the cavity-division plate clamping block 311 is provided with a first through hole for the locking block 312 to pass through. The locking part 31 further comprises a mounting frame 313 located in the inside of the locking housing 33. The mounting frame 313 is in the shape of a rectangular frame, and the locking block 312 is fixedly connected to the mounting frame 313. The mounting frame 313 is sleeved on the outer periphery of the positioning column 331. The driving part 32 drives the mounting frame 313 to move, so that the locking block 312 can slide out of the first through hole and abut against the cavity-division plate clamping block 311. The mounting frame 313 can also drive the locking block 312 to slide into the locking housing 33, so that the cavity-division plate clamping block 311 is in a free state when the cavity-division plate clamping block 311 and the locking block 312 are not in contact. The cavity-division plate 12 can also slide out of the mounting box 11 under the action of external force. The structure design is ingenious, and can meet various functional requirements.
[0136] In a preferred embodiment of the present application, the driving part 32 comprises:
[0137] The pressing block 321 is located inside the mounting frame 313 and is sleeved on the outer periphery of the positioning column 331, wherein the pressing block 321 is provided with a pressing block groove, so that the pressing block 321 is sleeved on the outer periphery of the positioning column 331;
[0138] The first spring 322 is sleeved between the pressing block groove and the positioning column 331, one end of the first spring 322 is fixedly connected to the inside of the locking shell 33, and the other end of the first spring 322 is fixedly connected to the pressing block groove;
[0139] The second spring 323 is fixedly connected to the pressing block 321 at one end and is fixedly connected to the inside of the mounting frame 313 at the other end;
[0140] The pushing block 324 is fixedly connected to the side of the pressing block 321 away from the locking block 312 at one end and abuts against the mounting frame 313 at the other end;
[0141] The contact surfaces of the mounting frame 313 and the pushing block 324 are both inclined surfaces, and the mounting frame 313 and the locking block 312 are linearly moved through the cooperation of the pressing block 321, the pushing block 324, the first spring 322 and the second spring 323.
[0142] As shown in Figures 8-10 The driving part 32 comprises the pressing block 321, the first spring 322, the second spring 323 and the pushing block 324, the pressing block 321 is provided with a pressing block groove, the pressing block groove is sleeved on the outer periphery of the positioning column 331, the first spring 322 is sleeved between the pressing block groove and the positioning column 331, the first spring 322 is compressed when the pressing block 321 is subjected to an external force, and the first spring 322 pushes the pressing block 321 back to the initial position when the external force disappears;
[0143] The side of the pressing block 321 close to the locking block 312 is provided with a connecting block 3211, and the mounting frame 313 is provided with a guide column 3131 for guiding, wherein the connecting block 3211 is provided with a connecting block groove, the free end of the guide column 3131 is inserted into the connecting block groove, the second spring 323 is sleeved on the guide column 3131, and the second spring 323 is fixedly connected to the inside of the connecting block 3211 and the mounting frame 313, the connecting block 3211 can limit the position of the second spring 323, and the mounting frame 313 can be linearly moved through the connecting block 3211 and the guide column 3131.
[0144] The pushing block 324 is fixed to the side of the pressing block 321 away from the locking block 312 and abuts against the mounting frame 313, when the pressing block 321 moves downward, the pushing block 324 moves downward along the inclined surface of the mounting frame 313 and pushes the mounting frame 313 to move away from the clamping block, thereby realizing the retraction of the locking block 312, and the second spring 323 becomes the contraction state; when the pressing block 321 moves upward, the pushing block 324 moves upward along the inclined surface of the mounting frame 313, the external force of the second spring 323 gradually becomes small, the second spring 323 can push the mounting frame 313 to move towards the clamping block, thereby realizing the ejection of the locking block 312. In addition,
[0145] The contact surfaces of the mounting frame 313 and the pushing block 324 are inclined surfaces, which can increase the contact area of the two and guide the sliding of the pushing block 324 and reduce the movement resistance.
[0146] In a preferred embodiment of the present application, the locking shell 33 has an opening, and a lock cover is installed at the opening of the locking shell 33, and the lock cover is provided with a lock cover through hole for the pressing block 321 to pass through;
[0147] The bottom of the locking shell 33 is provided with a shell protruding rib for supporting the mounting frame 313, and the shell protruding rib can reduce the contact area of the mounting frame 313 and the locking shell 33, so that the movement of the locking block 312 is smoother.
[0148] The inner side wall of the locking shell 33 is provided with a limiting assembly for limiting the mounting frame 313, and the limiting assembly comprises a limiting column group, at least two limiting columns, and the outer side of the mounting frame 313 is provided with a mounting frame protruding rib corresponding to the limiting column, wherein the limiting column and the mounting frame protruding rib are in contact to limit the mounting frame 313 to only linear movement.
[0149] In a preferred embodiment of the present application, in the first of the two working conditions, when the pressing block 321 moves from the initial position to the working position, the first spring 322 and the second spring 323 are in the compression state, the pushing block 324 moves along the inclined surface of the mounting frame 313 towards the bottom of the locking shell 33 and pushes the mounting frame 313 to move away from the cavity plate clamping block 311 to the retracted preset position of the locking part 31, and the locking block 312 and the cavity plate clamping block 311 are not in contact.
[0150] In the second of the two working conditions, when the pressing block 321 returns to the working position, the pushing block 324 moves away from the bottom of the locking shell 33, the second spring 323 pushes the mounting frame 313 to move towards the cavity plate clamping block 311 to the retracted preset position of the locking part 31, and the locking block 312 and the cavity plate clamping block 311 abut against each other.
[0151] As Figures 1-2As shown in Figures 8-10, in this application, through the mutual cooperation of the pressure block 321, the first spring 322, the second spring 323, the push block 324, and the mounting bracket 313, the locking part 31 can automatically retract and slide out, so that the locking part 31 has two working conditions. Through the two working conditions, when the cavity assembly is in a non-working state, the cavity plate 12 is locked to avoid interference with the items in the second cavity, thereby improving the safety of the product and the user experience.
[0152] In a preferred embodiment of the present invention, a sealing component 4 is further included, the sealing component 4 comprising:
[0153] The first baffle plate 41 is fixed to the side of the cavity plate 12 away from the mounting box 11;
[0154] The second water baffle 42 is located above the limiting component 24 and is fixed to the mounting plate 21;
[0155] The third baffle plate 43 is fixed to the side of the mounting box 11 near the locking component 3;
[0156] The waterproof performance of the cavity assembly 1 is improved by using the first water baffle 41, the second water baffle 42, and the third water baffle 43.
[0157] like Figure 1 , 2 As shown in Figure 7, for ease of description, this embodiment uses... Figure 1 The diagram shows two chamber components 1 and four mounting plates 21. When the chamber components 1 are in position, the two chamber plates 12 slide out, and the first baffle plate 41 on the chamber plate 12 abuts against each other to prevent liquid from the first chamber from flowing into the second chamber. The second baffle plate 42 abuts against the chamber components 1 to prevent liquid from entering the second chamber from between the mounting plate 21 and the chamber components 1. The second baffle plate 42 is located above the mounting box 11. The first baffle plate 41, the second baffle plate 42, and the third baffle plate 43 can form a waterproof groove on the outer periphery of the chamber components 1 in the working state, thereby improving the waterproof performance of the chamber components 1 in the working state.
[0158] In addition, to improve the overall sealing performance of the cavity structure, a sealing strip 45 or a sealing ring 46 can be installed between the mounting plate 21 and the inner cavity of the product.
[0159] In a preferred embodiment of the present invention, a sealing plate 44 is provided above the third baffle plate 43. In the first working condition, the sealing plate 44 presses against the pressure block 321 so that the pressure block 321 is in the working position. In the second working condition, the sealing plate 44 and the pressure block 321 do not contact each other.
[0160] like Figure 1 , 2As shown in Figure 7, when the cavity-dividing assembly 1 is in working condition, it can divide the product's inner cavity into a first cavity and a second cavity. If the cavity-dividing assembly 1 is not in working condition, both the cavity-dividing plate 12 and the mounting box 11 are located in the second cavity. For ease of description, this embodiment is described with the first cavity above the second cavity. Thus, when the cavity-dividing assembly 1 divides the product's inner cavity, as the mounting box 11 flips from the vertical state of the second cavity to the horizontal state, the pressure block 321 on the mounting box 11 begins to contact the sealing plate 44 and is pressed by the sealing plate 44. At the same time, the pressure block 321 moves downward due to the pressure of the sealing plate 44, and the mounting bracket 313 moves away from the cavity-dividing plate locking block 311 to the locking part 31 retracting to a preset position. The locking block 312 and the cavity-dividing plate locking block 311 are no longer in contact. At this time, the locking of the mounting box 11 and the cavity-dividing plate 12 may be released, and the cavity-dividing plate 12 can be pulled. The advantage of this application is that the cavity-dividing plate 12 can only be pulled when it is in working condition, for example... Figure 1 Only when the partition plate 12 is in the working state can it be pulled to slide, thus preventing the partition plate 12 from sliding out or being pulled out when not in operation, which could interfere with or damage the items in the second cavity and improve the safety of the entire product.
[0161] In a preferred embodiment of the present invention, the partition plate 12 is provided with a handle 121, and the mounting box 11 is provided with a mounting box groove 111 corresponding to the handle 121, so that the partition plate 12 can slide into the mounting box cavity.
[0162] like Figure 6 As shown, the partition plate 12 is provided with a handle 121 for easy pushing and pulling; in addition, the mounting box groove 111 on the mounting box 11 allows the partition plate 12 to slide into the mounting box cavity to a preset position. Furthermore, the range in which the partition plate 12 slides into the mounting box 11 can also be limited.
[0163] like Figures 1 to 12 As shown, Figure 1 A schematic diagram of the cavity structure provided by the present invention is shown. Figure 2 A schematic diagram of the cavity assembly 1 provided by the present invention is shown. Figure 3 The diagram shows a bottom view of the cavity assembly 1 provided by the present invention. Figure 4 A schematic diagram showing the connection between the sliding limiting mechanism 2 and the second baffle plate 42 provided by the present invention is shown. Figure 5 A schematic diagram of the sliding limiting mechanism 2 located on the side of the spray assembly 7 provided by the present invention is shown. Figure 6 A schematic diagram of the cavity plate 12 provided by the present invention is shown. Figure 7 A schematic diagram of the sealing plate 44 provided by the present invention is shown. Figure 8 A schematic diagram of the locking assembly 3 provided by the present invention is shown. Figure 9 A cross-sectional view of the locking assembly 3 provided by the present invention in its unlocked state is shown. Figure 10A cross-sectional view showing the locking state of the locking assembly 3 provided by the present application. Figure 11 A working state schematic view of the divided-cavity structure of the dishwasher provided by the present application. Figure 12 A non-working state schematic view of the divided-cavity structure of the dishwasher provided by the present application. Figure 13 A schematic view of the spraying assembly 7 provided by the present application.
[0164] The dishwasher provided by the embodiment of the present application comprises:
[0165] The inner container 5 is internally formed with an inner container cavity.
[0166] The divided-cavity structure as described above, wherein the divided-cavity structure comprises the divided-cavity assembly 1 and the sliding limiting mechanism 2.
[0167] The sliding limiting mechanism 2 is fixedly connected to the inner side of the inner container 5, and the divided-cavity assembly 1 is hingedly connected to the inner side of the inner container 5, and the inner container cavity is divided by the cooperation of the divided-cavity assembly 1 and the sliding limiting mechanism 2.
[0168] The dishwasher comprises any one of the divided-cavity structures as described above, and the divided-cavity structure has the technical effects as described above, so the dishwasher with the divided-cavity structure should also have the same technical effects. Figures 11-12 The first cavity and the second cavity can be distributed in the up-down direction as shown. By changing the position of the divided-cavity structure 11, the first cavity and the second cavity can also be two cavities distributed in the left-right direction. For the convenience of description, the first cavity is described as being above the second cavity in this embodiment, wherein the divided-cavity structure is parallel to the bottom of the dishwasher when in the working state; when in the non-working state, the mounting box 11 and the divided-cavity plate 12 are in the vertical state and abut against the inner side wall of the inner container 5, thus occupying a small space and not affecting the placement of the bowl basket in the first cavity.
[0169] When the cavity-dividing assembly 1 is in working state, the mounting box 11 is clamped to the sliding limiting mechanism 2, the pressing block 321 is pressed by the sealing plate 44, the pressing block 321 is pressed to the inside of the locking shell 33, and the mounting frame 313 moves away from the cavity-plate clamping block 311, so that the locking part 31 is retracted to the preset position, the locking between the mounting box 11 and the cavity-plate 12 is released, and the cavity-plate 12 can be pulled out to the second preset position. Meanwhile, the cavity-dividing assembly 1, the sliding limiting mechanism 2 and the sealing assembly 4 cooperate with each other to form independent spaces for the first cavity and the second cavity, and the liquid in the first cavity will not enter the second cavity, so that the cavity-dividing washing is truly realized, and the dishwasher can be used for different treatments. For example, the first cavity is used for drying kitchenware such as bowls and chopsticks, and the second cavity is used for washing kitchenware such as bowls and chopsticks. The water in the second cavity will not enter the first cavity, so that the kitchenware such as bowls and chopsticks in the first cavity is not polluted. Similarly, when the kitchenware such as bowls and chopsticks in the first cavity is washed, the kitchenware such as bowls and chopsticks in the second cavity is not polluted, so that the cavity-dividing treatment is truly realized.
[0170] When the user does not need to divide the cavities, the mounting box 11 and the cavity-plate 12 are in the vertical state and abut against the inner side wall of the inner container 5. The cavity-plate 12 can be slid into the mounting box 11, the cavity-plate protruding part 241 and the mounting box limiting part 242 are matched in place, and the mounting box 11 is pushed downward. With the mounting box 11 changing from horizontal to vertical, the first spring 322 pushes the pressing block 321 to move upward, the second spring 323 pushes the mounting frame 313 to drive the locking block 311 to move toward the cavity-plate clamping block 311, and the locking block 312 and the cavity-plate clamping block 311 are clamped, so that the locking of the mounting box 11 and the cavity-plate 12 is realized. Since the cavity-plate 12 cannot be pulled at this time, the cavity-plate 12 is prevented from being slid out or pulled out in the non-working state, and the kitchenware such as bowls and chopsticks in the second cavity is prevented from being disturbed or damaged, so that the safety of the whole product is improved.
[0171] In a preferred embodiment of the present application, a fixing assembly 6 connected between the inner container 5 and the cavity-dividing assembly 1 is further included, and the fixing assembly 6 comprises:
[0172] The damping hinge 61 comprises a hinge leaf and a rotating shaft, wherein the hinge leaf is detachably connected to the inner container 5 and the mounting box 11.
[0173] As shown in FIGS. Figure 1 , 11 The damping hinge 61 is connected between the inner container 5 and the mounting box 11, meets the demand that the mounting box 11 is hinged to the inner container 5, and can slow down the rising speed of the mounting box 11 or slow down the falling speed, so that the cavity-dividing assembly 11 is not damaged due to too high speed. In addition, the inner container 5 is further provided with an inner-container fixing buckle 62 rotatably connected to the mounting box 11, so that the mounting box 11 is fixed.
[0174] In a preferred embodiment of the present invention, a spray assembly 7 is further included, the spray assembly 7 comprising:
[0175] The first spray arm 71 and the second spray arm 72 are located on both sides of the cavity assembly 1, respectively;
[0176] Spray arm water pipe 73 is connected to the first spray arm 71 and the second spray arm 72;
[0177] The spray arm seat 74 is fixed to the inner tank 5 on one side and connected to the spray arm water pipe 73 on the other side.
[0178] The partition plate 12 on the side away from the mounting box 11 is provided with a notch 122 corresponding to the spray arm water pipe 73, so that the partition plate 12 and the spray arm water pipe 73 are adapted to each other.
[0179] The outer periphery of the spray arm water pipe 73 is provided with a water baffle groove 731 corresponding to the cavity plate 12, and the cavity plate 12 can be inserted into the water baffle groove 731.
[0180] like Figure 13 As shown, the spray assembly 7 includes a first spray arm 71 and a second spray arm 72. The first spray arm 71 and the second spray arm 72 are located on the upper and lower sides of the partition plate 12, respectively, and can spray the first cavity and the second cavity. The outer periphery of the spray arm water pipe 73 is provided with a water-blocking groove 731 corresponding to the partition plate 12. The partition plate 12 is provided with a notch 122 corresponding to the spray arm water pipe 73, so that the shape of the partition plate 12 and the spray arm water pipe 73 are adapted to each other, preventing liquid from leaking between the partition plate 12 and the spray arm water pipe 73, and ensuring the airtightness of the first cavity and the second cavity.
[0181] also, Figure 5 , 11 As shown in Figure 12, the sliding limiting mechanism 2 and the second baffle plate 42 located on the side of the spray arm water pipe 73 are both provided with corresponding notches 122 so as to facilitate the outward adaptation of the spray arm water pipe 73, prevent the liquid in the first cavity from entering the second cavity, or the liquid in the second cavity from seeping into the first cavity, avoid cross-contamination, and achieve the function of true compartmentalized storage and washing.
[0182] In this embodiment of the invention, the term "multiple" refers to two or more, unless otherwise explicitly defined. The terms "install," "connect," and "fix" should be interpreted broadly. For example, "connect" can mean a fixed connection, a detachable connection, or an integral connection. Those skilled in the art can understand the specific meaning of the above terms in this embodiment of the invention based on the specific circumstances.
[0183] In the description of the embodiments of the present application, it should be understood that the terms "upper", "lower", and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only used to facilitate the description of the embodiments of the present application and simplify the description, and do not indicate or imply that the device or unit referred to must have a particular direction, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the embodiments of the present application.
[0184] In the description of the present application, the terms "one embodiment", "one preferred embodiment", and the like mean that the specific features, structures, materials or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present application. In the present application, the illustrative description of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.
[0185] The above is only a preferred embodiment of the present application, and is not intended to limit the embodiments of the present application. The embodiments of the present application can have various modifications and changes for those skilled in the art. Any modification, equivalent replacement, improvement, etc. made within the spirit and principles of the embodiments of the present application shall be included in the protection scope of the embodiments of the present application.
Claims
1. A split cavity structure, characterized in that, The utility model relates to a cavity dividing assembly (1) comprising a mounting box (11) having an open mounting box cavity and a cavity dividing plate (12) for dividing the cavity, wherein the cavity dividing plate (12) is inserted into the mounting box cavity and is connected to the mounting box (11) in a sliding manner; a sliding limiting mechanism (2) is arranged outside the cavity dividing assembly (1), wherein the mounting box (11) is detachably connected to the sliding limiting mechanism (2); the movement range of the cavity dividing plate (12) is limited by the mounting box (11) and the sliding limiting mechanism (2); the sliding limiting mechanism (2) comprises a mounting plate (21), a detachable connecting assembly (22) connecting the mounting plate (21) and the mounting box (11), a sliding assembly (23) connected to the cavity dividing plate (12) and the mounting box (11) so that the cavity dividing plate (12) is connected to the mounting box (11) in a sliding manner, and a limiting assembly (24) connected between the cavity dividing plate (12), the mounting box (11) and the mounting plate (21) for limiting the movement range of the cavity dividing plate (12); the sliding assembly (23) comprises a sliding rail (231) fixed to one side of the cavity dividing plate (12) close to the mounting plate (21), a mounting box sliding groove fixed to the inside of the mounting box (11), wherein the sliding rail (231) is inserted into the mounting box sliding groove and slides along the mounting box sliding groove, and a mounting plate sliding groove (232) arranged on the mounting plate (21), wherein when the cavity dividing plate (12) slides out of the mounting box cavity, the sliding rail (231) is inserted into the mounting plate sliding groove (232) and moves along the mounting plate sliding groove (232); the limiting assembly (24) comprises a cavity dividing plate protruding portion (241) arranged on the sliding rail (231), a mounting box limiting portion (242) arranged on the mounting box sliding groove, wherein the mounting box limiting portion (242) corresponds to the cavity dividing plate protruding portion (241) so that when the cavity dividing plate (12) is inserted into the inside of the mounting box (11), the mounting box limiting portion (242) limits the cavity dividing plate protruding portion (241) so that the cavity dividing plate (12) enters a first preset position in the mounting box (11), a limiting baffle (243) arranged on the mounting plate sliding groove (232) for limiting the sliding-out range of the sliding rail (231), wherein when the cavity dividing plate (12) reaches a second preset position of sliding out, the sliding rail (231) is in contact with the limiting baffle (243), and a mounting plate limiting portion (244) arranged on the mounting plate sliding groove (232), wherein the cavity dividing plate protruding portion (241) corresponds to the mounting plate limiting portion (244) so that when the cavity dividing plate (12) slides to the second preset position, the cavity dividing plate protruding portion (241) is in abutment with the mounting plate limiting portion (244). The cavity plate (12) is slid into the first preset position of the mounting box (11) through cooperation of the cavity plate protruding part (241) and the mounting box limiting part (242), and the cavity plate (12) is slid out of the second preset position through cooperation of the cavity plate protruding part (241), the limiting baffle (243) and the mounting plate limiting part (244).
2. The cell separation structure according to claim 1, wherein, The detachable connecting assembly (22) comprises: The mounting box clamping block (221) is arranged on one side of the mounting box (11) close to the mounting plate (21); The fixing part (222) is arranged on the mounting plate (21), wherein the fixing part (222) comprises a fixing groove corresponding to the mounting box clamping block (221), and the mounting box clamping block (221) is clamped into the fixing groove to achieve detachable connection of the mounting plate (21) and the mounting box (11).
3. The cell-division structure according to claim 1, wherein The locking assembly (3) for preventing the cavity plate (12) from falling off the mounting box (11) is further included, and the locking assembly (3) comprises: The locking part (31) comprises a cavity plate clamping block (311) fixed to the cavity plate (12) and a locking block (312) fixed to the mounting box (11) to lock the mounting box (11) and the cavity plate (12) when the cavity plate (12) is slid into the first preset position; The driving part (32) is connected to the locking block (312); The locking part (31) has two working conditions through cooperation of the driving part (32) and the locking block (312).
4. The chambered structure of claim 3, wherein, The locking assembly (3) further comprises a locking housing (33), and the locking housing (33) further comprises: The positioning column (331) is fixed to the inside of the locking housing (33); The first through hole is arranged on one side of the locking housing (33) close to the cavity plate clamping block (311), and one side of the locking block (312) passes through the first through hole to connect the cavity plate clamping block (311); The locking part (31) further comprises: The mounting frame (313) is a rectangular frame and is sleeved on the outer periphery of the positioning column (331), and the locking block (312) is fixed to one side of the mounting frame (313) close to the cavity plate clamping block (311); The driving part (32) is connected to the locking housing (33) and the mounting frame (313), and driving the driving part (32) can drive the mounting frame (313) and the locking block (312) to slide.
5. The chambered structure of claim 4, wherein, The driving part (32) comprises: The pressing block (321) is located in the inside of the mounting frame (313) and is sleeved on the outer periphery of the positioning column (331), and the pressing block (321) is provided with a pressing block groove so that the pressing block (321) is sleeved on the outer periphery of the positioning column (331); The first spring (322) is sleeved between the pressing block groove and the positioning column (331), one end of the first spring (322) is fixed to the inside of the locking housing (33), and the other end of the first spring (322) is fixed to the pressing block groove; A second spring (323) is fixed at one end to the pressing block (321) and at the other end to the inner side of the mounting frame (313); A pushing block (324) is fixed at one end to the side of the pressing block (321) away from the locking block (312) and at the other end abuts against the mounting frame (313); The contact surfaces of the mounting frame (313) and the pushing block (324) are both inclined surfaces, and the mounting frame (313) and the locking block (312) are linearly moved through the cooperation of the pressing block (321), the pushing block (324), the first spring (322) and the second spring (323).
6. The chambered structure of claim 5, wherein, In the first of the two working conditions, when the pressing block (321) moves from the initial position to the working position, the first spring (322) and the second spring (323) are both in the compressed state, the pushing block (324) moves along the inclined surface of the mounting frame (313) to the direction close to the bottom of the locking shell (33) and pushes the mounting frame (313) to move to the direction away from the cavity plate clamping block (311) to the retracted preset position of the locking part (31), and the locking block (312) and the cavity plate clamping block (311) do not contact; In the second of the two working conditions, when the pressing block (321) returns to the working position, the pushing block (324) moves in the direction away from the bottom of the locking shell (33), and the second spring (323) pushes the mounting frame (313) to move in the direction close to the cavity plate clamping block (311) to the retracted preset position of the locking part (31), and the locking block (312) and the cavity plate clamping block (311) abut against each other.
7. The chambered structure of claim 6, wherein, Further comprising a sealing assembly (4), the sealing assembly (4) comprises: A first water baffle (41) is fixed to the side of the cavity plate (12) away from the mounting box (11); A second water baffle (42) is located above the limiting assembly (24) and is fixed to the mounting plate (21); A third water baffle (43) is fixed to the side of the mounting box (11) close to the locking assembly (3); The first water baffle (41), the second water baffle (42) and the third water baffle (43) improve the waterproof performance of the cavity assembly (1).
8. The chambered structure of claim 7, wherein, An enclosing plate (44) is arranged above the third water baffle (43), in the first of the two working conditions, the enclosing plate (44) abuts against the pressing block (321) to make the pressing block (321) in the working position, and in the second of the two working conditions, the enclosing plate (44) and the pressing block (321) do not contact.
9. The cell-division structure according to claim 1, wherein The cavity plate (12) is provided with a handle (121), and the mounting box (11) is provided with a mounting box groove (111) corresponding to the handle (121) to facilitate the sliding of the cavity plate (12) into the mounting box cavity.
10. A dishwasher, characterized in that Comprise: An inner container (5) has an inner container cavity formed inside; The sub-chamber structure according to any one of claims 1-9, wherein the sub-chamber structure comprises a sub-chamber assembly (1) and a sliding limiting mechanism (2); The sliding limiting mechanism (2) is fixed to the inner side of the inner container (5), and the sub-chamber assembly (1) is hinged to the inner side of the inner container (5), and the sub-chamber assembly (1) and the sliding limiting mechanism (2) cooperate to sub-chamber the inner container cavity. 11.The dish washer of claim 10, wherein Further comprising a fixing assembly (6) connected between the inner container (5) and the sub-chamber assembly (1), the fixing assembly (6) comprises: A damping hinge (61) comprising a leaf and a rotating shaft, wherein the leaf is detachably connected to the inner container (5) and the mounting box (11). 12.The dish washer of claim 10, wherein Further comprising a spraying assembly (7), the spraying assembly (7) comprises: A first spraying arm (71) and a second spraying arm (72) respectively located on both sides of the sub-chamber assembly (1); A spraying arm water pipe (73) connected to the first spraying arm (71) and the second spraying arm (72); A spraying arm seat (74) fixed to one side of the inner container (5) and connected to the other side of the spraying arm water pipe (73); Wherein the sub-chamber plate (12) away from the mounting box (11) side is provided with a notch (122) corresponding to the spraying arm water pipe (73), so that the sub-chamber plate (12) is adapted to the shape of the spraying arm water pipe (73). 13.The dish washer of claim 12, wherein The outer periphery of the spraying arm water pipe (73) is provided with a water blocking groove (731) corresponding to the sub-chamber plate (12), and the sub-chamber plate (12) can be inserted into the water blocking groove (731). The outer periphery of the spraying arm water pipe (73) is provided with a water blocking groove (731) corresponding to the sub-chamber plate (12), and the sub-chamber plate (12) can be inserted into the water blocking groove (731).
Citation Information
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