Shelf rotating structure and tableware processing equipment

By designing a shelf rotation structure in the dishwasher, using the moving rotating assembly to drive the fixed assembly to rotate, so that the upper shelf and lower shelf are close to or away from the inner liner opening, the problem of users walking back and forth between the sink and the dishwasher is solved, and the convenience of picking and placing tableware and pots is improved.

CN119949719APending Publication Date: 2025-05-09HANGZHOU ROBAM APPLIANCES CO LTD
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Patent Information

Application Number
CN202510343452.8
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-21
Publication Date
2025-05-09

AI Technical Summary

Technical Problem

The existing dishwasher requires users to walk back and forth between the sink and the dishwasher, which makes it inconvenient to pick up and down.

Method used

A shelf rotation structure is designed to drive the fixing assembly to move out of the inner vessel and rotate it by moving the rotating assembly, so that the upper shelf and the lower shelf are close to or away from the side of the inner vessel opening, thereby reducing the distance for the user to move back and forth.

Benefits of technology

Through the design of the shelf rotation structure, users can pick up and place tableware and pots between the upper shelf and the lower shelf located on the inner liner opening and the sink without moving, improving the convenience of picking and placing.

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Abstract

The embodiment of the invention provides a shelf rotating structure and tableware processing equipment, and relates to the technical field of household appliances. The shelf rotating structure comprises a fixing assembly and a rotating assembly, wherein the fixing assembly is used for installing an upper shelf and a lower shelf of the dish-washing machine; the movable rotating assembly is used for being arranged between the fixing assembly and an inner container of the dish washing machine, and the movable rotating assembly is used for driving the fixing assembly to move in or out of the inner container; after the fixing assembly is moved out of the inner container, the rotating assembly is moved to drive the fixing assembly to rotate, so that the upper shelf and the lower shelf are close to or away from one side of the opening of the inner container; according to the shelf rotating structure and the tableware processing equipment provided by the invention, the convenience of taking and placing kitchen supplies such as tableware and cookware by a user is improved.
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Description

Technical Field

[0001] The present application relates to the technical field of household appliances, and in particular to a shelf rotating structure and a tableware processing device. Background Art

[0002] A dishwasher is a household appliance that automatically cleans kitchen items such as dishes and pots.

[0003] A dishwasher in the related art includes an inner tank and an upper rack and a lower rack arranged in the inner tank. The upper rack and the lower rack are used to place kitchen utensils such as tableware and pots. In order to facilitate users to take and place kitchen utensils such as tableware and pots on the upper rack and the lower rack, the upper rack and the lower rack are slidably arranged in the inner tank so that the upper rack and the lower rack can be moved into or out of the inner tank in a horizontal direction.

[0004] However, when the dishwasher is installed far away from the sink, if the user needs to place kitchen utensils such as dishes and pots to be washed in the sink into the dishwasher, the user needs to walk between the sink and the dishwasher, which makes it inconvenient to take and place kitchen utensils such as dishes and pots. Summary of the invention

[0005] The embodiments of the present application provide a shelf rotation structure and a tableware processing device to solve the technical problem that the related technology requires the user to walk back and forth between the sink and the dishwasher to take and place tableware, pots and other kitchen utensils, which makes it inconvenient to take and place tableware, pots and other kitchen utensils.

[0006] In a first aspect, an embodiment of the present application provides a shelf rotation structure, comprising:

[0007] A fixing assembly, the fixing assembly being used to install an upper rack and a lower rack of the dishwasher;

[0008] A movable rotating assembly, the movable rotating assembly is used to be arranged between the fixed assembly and the inner container of the dishwasher, and the movable rotating assembly is used to drive the fixed assembly to move into or out of the inner container;

[0009] When the fixing assembly is moved out of the inner container, the movable rotating assembly drives the fixing assembly to rotate, so that the upper shelf and the lower shelf are moved closer to or away from one side of the inner container opening.

[0010] In some embodiments, the mobile rotating assembly comprises:

[0011] A moving part, the moving part is used to drive the fixed component to move into or out of the inner container;

[0012] A rotating member is used to drive the fixing assembly to rotate after the fixing assembly is moved out of the inner container, so as to move closer to or away from one side of the inner container opening.

[0013] In some embodiments, the moving member includes an upper guide plate, which is used to be fixedly arranged on the top of the inner container, and the fixing component is slidably connected to the upper guide plate.

[0014] In some embodiments, the moving member further includes a rod body, the rod body is connected to the rotating member, the rod body is located at the bottom of the inner container, and the fixing component is slidably connected to the rod body.

[0015] In some embodiments, the rotating member includes a rotating bracket, the rod body is fixedly connected to the rotating bracket, one end of the rotating bracket is rotatably connected to the upper guide plate, and the other end of the rotating bracket is rotatably connected to the inner tank.

[0016] In some embodiments, a guide assembly is further included, wherein the guide assembly is disposed on the rotating bracket, and the guide assembly is used to guide the fixing assembly when the fixing assembly moves into or out of the inner container.

[0017] In some embodiments, the guide assembly includes at least two guide members, a guide gap is provided between two adjacent guide members, and a movable plate for moving in the guide gap is provided on the fixed assembly.

[0018] In some embodiments, it also includes a lower guide plate, which is used to be rotatably connected to the spray arm fixing seat of the bottom wall of the inner tank. A sliding plate is provided on the rod body, and the sliding plate is slidably connected to the lower guide plate.

[0019] In some embodiments, a lower sliding groove is provided on the lower guide plate, a lower sliding wheel is rotatably connected to the sliding plate, and the lower sliding wheel is slidably connected in the lower sliding groove along the length direction of the lower sliding groove.

[0020] In a second aspect, an embodiment of the present application provides a tableware processing device, comprising a body and a shelf rotating structure arranged on the body.

[0021] The embodiment of the present application provides a shelf rotating structure and a tableware processing device. With the shelf rotating structure provided by the present application, when a user needs to take or place kitchen utensils such as tableware and pots on the upper shelf and the lower shelf, the fixed component can be driven out of the inner pot by moving the rotating component, and the fixed component can be driven to move to the side of the inner pot opening by moving the rotating component. Compared with the manner in which the upper shelf and the lower shelf are moved out of the inner pot in a horizontal direction, by adopting the setting of the moving rotating component, the fixed component can drive the upper shelf and the lower shelf to be closer to a position such as a sink or a cupboard. When the user is between the fixed component and the sink, the distance the user walks back and forth can be reduced, or the user can directly take or place kitchen utensils such as tableware and pots between the upper shelf and the lower shelf located on one side of the inner pot opening and the sink without walking, thereby facilitating the user to take or place kitchen utensils such as tableware and pots, and improving the convenience of taking or placing kitchen utensils such as tableware and pots. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] The accompanying drawings, which are incorporated in and constitute a part of this specification, illustrate embodiments consistent with the present application and, together with the description, serve to explain the principles of the present application.

[0023] Figure 1 A schematic diagram of the assembly state of the shelf rotating structure provided in this application Figure 1 ;

[0024] Figure 2 A schematic diagram of the assembly state of the shelf rotating structure provided in this application Figure 2 ;

[0025] Figure 3 An exploded structural diagram of the shelf rotation structure provided for this application;

[0026] Figure 4 for Figure 3 A schematic diagram of a portion of the structure of the middle mounting plate;

[0027] Figure 5 for Figure 3 A magnified view of part A in FIG.

[0028] Figure 6 for Figure 3 A schematic diagram of the partial structure of the middle rod body and the sliding piece;

[0029] Figure 7 for Figure 3 A schematic diagram of the structure in which the fixed component is moved into the gallbladder body;

[0030] Figure 8 for Figure 3 A schematic diagram of the structure in which the fixed component is removed from the gallbladder body;

[0031] Fig. 9 for Figure 3Schematic diagram of the structure in which the middle fixing component is rotated to the side of the inner tank opening.

[0032] Description of reference numerals:

[0033] 100, fixing assembly; 110, upper shelf; 120, lower shelf; 130, mounting plate; 131, sliding wheel; 140, lower fixing plate; 150, moving plate;

[0034] 200, moving and rotating assembly; 210, moving member; 211, upper guide plate; 212, slideway groove; 213, vertical portion; 214, inclined portion; 215, rod body; 216, three-section slide rail; 217, upper fixed plate; 218, slide plate; 219, lower pulley; 220, rotating member; 221, rotating bracket; 222, lower rotating shaft; 223, plate body; 224, upper rotating shaft;

[0035] 300, guide assembly; 310, guide member; 320, guide gap;

[0036] 400, lower guide plate; 410, lower slide groove;

[0037] 500. Inner liner.

[0038] The above drawings have shown clear embodiments of the present application, which will be described in more detail later. These drawings and text descriptions are not intended to limit the scope of the present application in any way, but to illustrate the concept of the present application to those skilled in the art by referring to specific embodiments. DETAILED DESCRIPTION

[0039] Exemplary embodiments will be described in detail herein, examples of which are shown in the accompanying drawings. When the following description refers to the drawings, the same numbers in different drawings represent the same or similar elements unless otherwise indicated. The implementations described in the following exemplary embodiments do not represent all implementations consistent with the present application. Instead, they are merely examples of devices and methods consistent with some aspects of the present application as detailed in the appended claims.

[0040] A dishwasher in the related art includes an inner tank and an upper rack and a lower rack arranged in the inner tank. The upper rack and the lower rack are used to place kitchen utensils such as tableware and pots. In order to facilitate users to take and place kitchen utensils such as tableware and pots on the upper rack and the lower rack, the upper rack and the lower rack are slidably arranged in the inner tank so that the upper rack and the lower rack can be moved into or out of the inner tank in a horizontal direction.

[0041] However, when the dishwasher is installed in a location far away from a sink or a cupboard, if the user needs to place kitchen utensils such as dishes and pots to be washed in the sink into the dishwasher, or place the washed dishes and pots in the cupboard, the user needs to walk between the sink and the dishwasher and between the cupboard and the dishwasher, which makes it inconvenient to take and put the dishes and pots.

[0042] The present application provides a shelf rotating structure and a tableware processing device. When it is necessary to take or place tableware, pots and other kitchen utensils on the upper shelf and the lower shelf on the fixed component, the user pulls the upper shelf or the lower shelf to make the upper shelf and the lower shelf drive the fixed component to slide on the upper guide plate and the rod body. At this time, the fixed component can drive the upper shelf and the lower shelf to move out of the inner pot. At this time, by driving the upper shelf and the lower shelf to rotate toward the side of the inner pot opening, the rotating bracket can drive the rod body to rotate, so that the rod body drives the fixed component to rotate. At the same time, the rod body can drive the sliding sheet to slide on the lower guide plate, so that the fixed component drives the upper shelf and the lower shelf to move out of the inner pot. The shelf and the lower shelf are rotated to one side of the inner pot opening. Compared with the method of moving the upper shelf and the lower shelf out of the inner pot in the horizontal direction, by adopting the setting of the movable rotating component, the fixed component can drive the upper shelf and the lower shelf to be closer to the sink or the cupboard. When the user is between the fixed component and the sink, the distance the user walks back and forth can be reduced, or the user can directly take and put tableware, pots and other kitchen supplies between the upper shelf and the lower shelf located on the side of the inner pot opening and the sink without walking, thereby facilitating the user to take and put tableware, pots and other kitchen supplies, and improving the convenience of taking and putting tableware, pots and other kitchen supplies.

[0043] The technical solution of the present application and how the technical solution of the present application solves the above-mentioned technical problems are described in detail below with specific embodiments. The following specific embodiments can be combined with each other, and the same or similar concepts or processes may not be repeated in some embodiments. The embodiments of the present application will be described below in conjunction with the accompanying drawings.

[0044] Combination Figures 1 to 3 , the present application provides a shelf rotation structure, comprising:

[0045] A fixing assembly 100, the fixing assembly 100 is used to install an upper rack 110 and a lower rack 120 of a dishwasher;

[0046] A movable rotating assembly 200, which is used to be arranged between the fixed assembly 100 and the inner tank 500 of the dishwasher, and is used to drive the fixed assembly 100 to move into or out of the inner tank 500;

[0047] When the fixing assembly 100 is moved out of the inner container 500 , the moving rotating assembly 200 drives the fixing assembly 100 to rotate, so that the upper shelf 110 and the lower shelf 120 are moved closer to or away from one side of the opening of the inner container 500 .

[0048] In this embodiment, one side of the opening of the inner liner 500 can be the upper side of the opening of the inner liner 500, the left side of the opening of the inner liner 500, or the right side of the opening of the inner liner 500; the upper shelf 110 and the lower shelf 120 are prior arts, and their specific structures are not described again; the fixing component 100 is a fixing frame, and the fixing frame is rectangular in configuration. The upper part of the rectangular fixing frame is used to install the upper shelf 110, and the lower part of the rectangular fixing frame is used to install the lower shelf 120. The upper shelf 110 and the lower shelf 120 can be set on the fixing frame by welding, bolting or clamping.

[0049] In the present application, when the user needs to take and place kitchen utensils such as tableware and pots on the upper shelf 110 and the lower shelf 120, the fixed component 100 can be driven to move out of the inner pot 500 by moving the rotating component 200, and the fixed component 100 can be driven to move to the side of the opening of the inner pot 500 by moving the rotating component 200. Compared with the way in which the upper shelf 110 and the lower shelf 120 are moved out of the inner pot 500 in the horizontal direction, by adopting the setting of the moving rotating component 200, the fixed component 100 can drive the upper shelf 110 and the lower shelf 120 to be closer to the sink or cupboard. When the user is between the fixed component 100 and the sink, the distance the user walks back and forth can be reduced, or the user can directly take and place kitchen utensils such as tableware and pots between the upper shelf 110 and the lower shelf 120 located on the opening side of the inner pot 500 and the sink without walking, thereby facilitating the user to take and place kitchen utensils such as tableware and pots, and improving the convenience of taking and placing kitchen utensils such as tableware and pots.

[0050] Combination Figures 3 to 6 , the mobile rotating assembly 200 comprises:

[0051] A moving member 210, the moving member 210 is used to drive the fixing assembly 100 to move into or out of the inner container 500;

[0052] The rotating member 220 is used to drive the fixing assembly 100 to rotate after the fixing assembly 100 is moved out of the inner container 500, so as to be close to or away from a side of the opening of the inner container 500.

[0053] In the present application, by adopting the setting of the moving component, the fixed component 100 can be driven to move into or out of the inner pot 500 in the horizontal direction. After the fixed component 100 is moved out of the inner pot 500 in the horizontal direction, the setting of the rotating member 220 can drive the fixed component 100 to rotate on the side of the opening of the inner pot 500, thereby facilitating the placement of kitchen utensils such as tableware and pots on the upper shelf 110 and the lower shelf 120. By moving the fixed component 100 out of the inner pot 500 and then driving the fixed component 100 to rotate, the inner pot 500 can be prevented from blocking the rotation of the fixed component 100 in the inner pot 500, so that the inner pot 500 is set smaller, thereby indirectly reducing the space occupied by the inner pot 500.

[0054] Combination Figures 3 to 9 The moving member 210 includes an upper guide plate 211 , which is used to be fixedly disposed on the top of the inner liner 500 , and the fixing assembly 100 is slidably connected to the upper guide plate 211 .

[0055] In the present application, by adopting the setting of the upper guide plate 211, since the fixing component 100 is slidably connected to the upper guide plate 211, the fixing component 100 can drive the upper shelf 110 and the lower shelf 120 to move in or out of the inner liner 500 when sliding on the upper guide plate 211. The upper guide plate 211 can guide the movement of the fixing component 100 and prevent the fixing component 100 from deviating when moving in or out of the inner liner 500.

[0056] In this embodiment, the upper guide plate 211 is perpendicular to the plane where the opening of the liner 500 is located. The upper guide plate 211 is set in an "L" shape. One side of the "L"-shaped upper guide plate 211 is fixed to the side wall of the liner 500 by welding, bolting or bonding. There is a sliding space between the other side of the "L"-shaped upper guide plate 211 and the top wall of the liner 500; the upper guide plate 211 is provided with a slide groove 212, and the slide groove 212 includes a vertical portion 213 and an inclined portion 214. The vertical portion 213 is perpendicular to the plane where the opening of the liner 500 is located. The surface, one end of the inclined portion 214 is connected to the vertical portion 213, and the other end of the inclined portion 214 is inclined and extends in a direction away from the side wall of the inner liner 500; a mounting plate 130 is arranged on the upper part of the fixed frame, and the mounting plate 130 is arranged in an "L" shape, one side of the "L"-shaped mounting plate 130 is connected to the fixed frame, and the other side of the "L"-shaped mounting plate 130 is located in the sliding space, and a sliding wheel 131 is arranged on the mounting plate 130, and the sliding wheel 131 is slidably connected in the slide groove 212, and the sliding wheel 131 can rotate in the slide groove 212.

[0057] When the sliding wheel 131 slides along the vertical portion 213, the sliding wheel 131 can drive the fixed frame to move horizontally toward the outside of the inner liner 500. When the sliding wheel 131 moves from the vertical portion 213 to the inclined portion 214 and moves along the length direction of the inclined portion 214, the sliding wheel 131 can drive the fixed assembly 100 to move in a direction away from the upper guide plate 211, thereby providing more space for the subsequent rotation of the fixed frame and preventing the fixed frame from interfering with the upper guide plate 211 during rotation. By rotating the sliding wheel 131 in the sliding groove, the fixed frame can drive the sliding wheel 131 to rotate in the sliding groove during rotation, thereby not affecting the normal rotation of the fixed frame.

[0058] Combination Figures 3 to 9 The moving member 210 further includes a rod body 215 , which is connected to the rotating member 220 . The rod body 215 is located at the bottom of the inner tank 500 , and the fixing assembly 100 is slidably connected to the rod body 215 .

[0059] In this embodiment, the rod body 215 is parallel to the fixed frame, and the fixed frame is slidably connected to the rod body 215 through a three-section slide rail 216. The first section of the three-section slide rail 216 is fixedly connected to the rod body 215, and the third section of the three-section slide rail 216 is fixedly connected to the fixed frame. When the fixed frame drives the upper shelf 110 and the lower shelf 120 to move in or out of the inner liner 500, the fixed frame can drive the three-section slide rail 216 to move relative to each other, so that when the rod body 215 is located in the inner liner 500, the fixed frame can drive the upper shelf 110 and the lower shelf 120 to move out of the inner liner 500; and the three-section slide rail 216 can be extended and retracted in a direction perpendicular to the rod body 215, so as to adapt to the sliding wheel 131 moving from the vertical portion 213 to the inclined portion 214.

[0060] In the present application, by adopting the setting of the rod body 215, since the fixing component 100 is slidably connected to the rod body 215, when the fixing component 100 slides on the rod body 215, it can drive the upper shelf 110 and the lower shelf 120 to move in or out of the inner liner 500, and the rod body 215 can further guide the movement of the fixing component 100, thereby further preventing the fixing component 100 from deviating when moving in or out of the inner liner 500.

[0061] Combination Figures 3 to 9 The rotating member 220 includes a rotating bracket 221 , the rod body 215 is fixedly connected to the rotating bracket 221 , one end of the rotating bracket 221 is rotatably connected to the upper guide plate 211 , and the other end of the rotating bracket 221 is rotatably connected to the inner liner 500 .

[0062] In this embodiment, the rotating bracket 221 is arranged in a strip shape, and the rod body 215 is integrally arranged with the strip-shaped rotating bracket 221; the strip-shaped rotating bracket 221 is arranged in the inner liner 500 at a position close to the opening of the inner liner 500; a lower fixing plate 140 is arranged inside the inner liner 500, and the lower fixing plate 140 is arranged between the bottom wall and the side wall of the inner liner 500, and a lower rotating shaft 222 is arranged at the bottom of the rotating bracket 221, and a groove is arranged on the lower fixing plate 140, and the lower rotating shaft 222 is penetrated and rotatably connected in the groove, and the bottom end of the rotating bracket 221 is rotatably connected in the inner liner 500 through the lower rotating shaft 222 and the lower fixing plate 140.

[0063] In the present application, by adopting the setting of the rotating bracket 221, since the fixed component 100 is slidably connected to the rod body 215 and the upper guide plate 211, the rotating bracket 221 will not block the fixed component 100 from moving into or out of the inner liner 500. When the fixed component 100 moves out of the inner liner 500, since the two ends of the rotating bracket 221 are respectively rotatably connected to the upper guide plate 211 and the inner liner 500, the rotating bracket 221 can drive the rod body 215 to rotate, thereby allowing the rod body 215 to drive the fixed component 100 to rotate, so that the fixed component 100 can drive the upper shelf 110 and the lower shelf 120 to rotate toward one side of the inner liner 500.

[0064] Combination Figures 3 to 9 The shelf rotating structure also includes a guide assembly 300, which is disposed on the rotating bracket 221. The guide assembly 300 is used to guide the fixed assembly 100 when the fixed assembly 100 moves into or out of the inner container 500.

[0065] In the present application, by adopting the setting of the guide component 300, when the fixed component 100 is moved into or out of the inner liner 500, the guide component 300 can guide the fixed component 100 to move into or out of the inner liner 500, further preventing the fixed component 100 from deviating when moving into or out of the inner liner 500. By setting the guide component 300 on the rotating bracket 221, when the rotating bracket 221 drives the fixed component 100 to rotate, it will not affect the guidance of the guide component 300 on the fixed component 100, thereby improving the guiding effect of the guide component 300 on the fixed component 100.

[0066] Combination Figures 3 to 9 The guide assembly 300 includes at least two guide members 310 , a guide gap 320 is provided between two adjacent guide members 310 , and a movable plate 150 for moving in the guide gap 320 is provided on the fixed assembly 100 .

[0067] In this embodiment, a plate body 223 is provided at the top end of the rotating bracket 221 extending in a direction away from the side wall of the inner liner 500, an upper fixed plate 217 is provided on the upper guide plate 211, an upper rotating shaft 224 is provided on the plate body 223, the upper rotating shaft 224 is passed through and rotatably connected to the upper fixed plate 217, and the top end of the rotating bracket 221 is rotatably connected to the upper guide plate 211 through the plate body 223, the upper rotating shaft 224 and the upper fixed plate 217; two guide members 310 are provided, and the guide member 310 is an upper pulley, which is rotatably connected to the surface of the plate body 223 away from the top wall of the inner liner 500; the movable plate 150 is arranged along the length direction of the top edge of the fixed frame, and the movable plate 150 is arranged in an "L" shape, and the "L"-shaped movable plate 150 extends in a direction close to the upper guide plate 211.

[0068] In the present application, by adopting the setting of the guide member 310, when the fixed component 100 drives the upper shelf 110 and the lower shelf 120 to move in or out of the inner liner 500, the fixed component 100 can drive the movable plate 150 to move in the guide gap 320, so that the two guide members 310 guide the movement of the fixed component 100 through the movable plate 150, thereby improving the movement effect of the fixed component 100 on the rotating bracket 221, and when the rotating bracket 221 rotates, the rotating bracket 221 can drive the guide member 310 to abut against the movable plate 150, so that the movable plate 150 drives the fixed component 100 to rotate, providing a support point for driving the fixed component 100 to rotate, thereby indirectly improving the rotation effect of the fixed component 100.

[0069] Combination Figures 3 to 9 The shelf rotating structure also includes a lower guide plate 400, which is used to be rotatably connected to the spray arm fixing seat on the bottom wall of the inner tank 500, and a sliding plate 218 is provided on the rod body 215, and the sliding plate 218 is slidably connected to the lower guide plate 400.

[0070] In this embodiment, one end of the lower guide plate 400 is rotatably connected to the spray wall fixing seat, and the other end of the lower guide plate 400 is freely arranged.

[0071] In the present application, by adopting the setting of the lower guide plate 400, when the rotating bracket 221 drives the rod body 215 to rotate, the rod body 215 can drive the slide 218 to slide on the lower guide plate 400, so that the slide 218 drives the lower guide plate 400 to rotate on the spray wall fixing seat of the bottom wall of the inner tank 500, so that the slide 218 and the lower guide plate 400 can guide the flipping of the rotating bracket 221, thereby preventing the rotating bracket 221 from deviating during rotation, and when the slide 218 slides on the lower guide plate 400, the slide 218 and the lower guide plate 400 can support the rod body 215, so that the slide 218 and the lower guide plate 400 support the fixed component 100, thereby indirectly providing stability for the fixed component 100 to drive the upper shelf 110 and the lower shelf 120 to rotate.

[0072] Combination Figures 3 to 9 A lower slide groove 410 is provided on the lower guide plate 400 , and a lower pulley 219 is rotatably connected to the slide sheet 218 . The lower pulley 219 is slidably connected in the lower slide groove 410 along the length direction of the lower slide groove 410 .

[0073] In this embodiment, the lower slide groove 410 is arranged in a wave shape. When the rotating bracket drives the fixed frame to rotate, the rotating bracket can drive the rod body 215 to rotate at the bottom of the inner liner 500, so that the rod body 215 drives the lower pulley 219 to move in the wave-shaped lower slide groove 410, thereby making the lower guide plate 400 reciprocate at the bottom of the inner liner 500. The lower pulley 219 and the arc edge of the wave-shaped lower slide groove 410 generate a tangential force to prevent the lower pulley 219 from being stuck with the lower slide groove 410, causing the rod body 215 to be unable to rotate, thereby facilitating the smooth rotation of the fixed frame.

[0074] In the present application, by adopting the setting of the lower pulley 219, when the rotating bracket 221 rotates, the rod body 215 can drive the lower pulley 219 to move along the length direction of the lower slide groove 410, and the lower pulley 219 can rotate while moving in the lower slide groove 410, thereby preventing the lower pulley 219 from affecting the rotation of the rotating bracket 221.

[0075] An embodiment of the present application further provides a tableware processing device, comprising a body and a shelf rotating structure of any one of the above embodiments arranged on the body.

[0076] The shelf rotation structure has been described in detail in the above embodiments and will not be described in detail here.

[0077] In this embodiment, the tableware processing device is a dishwasher. In other embodiments, the tableware processing device can also be configured as a disinfection cabinet or a cupboard.

[0078] The tableware processing device provided by the present application is provided with a shelf rotating structure. When it is necessary to take or place tableware, pots and other kitchen utensils on the upper shelf 110 and the lower shelf 120 on the fixed component 100, the user pulls the upper shelf 110 or the lower shelf 120 so that the upper shelf 110 and the lower shelf 120 drive the fixed component 100 to slide on the upper guide plate 211 and the rod body 215. At this time, the fixed component 100 can drive the upper shelf 110 and the lower shelf 120 to move out of the inner pot 500 (see Fig. 9 In the x direction), at this time, by driving the upper shelf 110 and the lower shelf 120 to rotate toward the side of the opening of the inner container 500, the rotating bracket 221 can drive the rod body 215 to rotate (see Fig. 9 y direction in the figure), so that the rod body 215 drives the fixing assembly 100 to rotate. At the same time, the rod body 215 can drive the sliding piece 218 to slide on the lower guide plate 400, so that the fixing assembly 100 drives the upper shelf 110 and the lower shelf 120 to rotate to the side of the opening of the inner pot 500. Compared with the way that the upper shelf 110 and the lower shelf 120 move out of the inner pot 500 in the horizontal direction, by adopting the setting of the mobile rotating assembly 200, the fixing assembly 100 can drive the upper shelf 110 and the lower shelf 120 to be closer to the sink or the cupboard. When the user is between the fixing assembly 100 and the sink, the distance the user walks back and forth can be reduced, or the user can directly take and put kitchen utensils such as tableware and pots between the upper shelf 110 and the lower shelf 120 located on the opening side of the inner pot 500 and the sink without walking, so that it is convenient for the user to take and put kitchen utensils such as tableware and pots, and the convenience of taking and putting kitchen utensils such as tableware and pots is improved.

[0079] Finally, it should be noted that those skilled in the art will readily conceive of other embodiments of the present invention after considering the specification and practicing the invention disclosed herein. The present invention is intended to cover any variations, uses or adaptations of the present invention, which follow the general principles of the present invention and include common knowledge or customary technical means in the art not disclosed by the present invention, are not limited to the precise structure described above and shown in the drawings, and may be modified and changed in various ways without departing from the scope thereof. The scope of the present invention is limited only by the appended claims.

Claims

1. A shelf rotation structure, characterized in that: include: A fixing assembly (100), the fixing assembly (100) being used to install an upper rack (110) and a lower rack (120) of a dishwasher; A movable rotating assembly (200), the movable rotating assembly (200) being arranged between the fixed assembly (100) and the inner container (500) of the dishwasher, the movable rotating assembly (200) being used to drive the fixed assembly (100) to move into or out of the inner container (500); When the fixing assembly (100) is moved out of the inner container (500), the movable rotating assembly (200) drives the fixing assembly (100) to rotate so that the upper shelf (110) and the lower shelf (120) are moved closer to or away from one side of the opening of the inner container (500).

2. The shelf rotation structure according to claim 1, characterized in that: The mobile rotating assembly (200) comprises: A moving member (210), the moving member (210) being used to drive the fixing assembly (100) to move into or out of the inner container (500); A rotating member (220) is used to drive the fixing assembly (100) to rotate after the fixing assembly (100) is moved out of the inner container (500) so as to move closer to or away from one side of the opening of the inner container (500).

3. The shelf rotating structure according to claim 2, characterized in that: The moving member (210) comprises an upper guide plate (211), the upper guide plate (211) being used for being fixedly arranged on the top of the inner container (500), and the fixing assembly (100) being slidably connected to the upper guide plate (211).

4. The shelf rotating structure according to claim 3, characterized in that: The movable member (210) further comprises a rod body (215), wherein the rod body (215) is connected to the rotating member (220), the rod body (215) is located at the bottom of the inner container (500), and the fixing assembly (100) is slidably connected to the rod body (215).

5. The shelf rotating structure according to claim 4, characterized in that: The rotating member (220) comprises a rotating bracket (221), the rod body (215) is fixedly connected to the rotating bracket (221), one end of the rotating bracket (221) is rotatably connected to the upper guide plate (211), and the other end of the rotating bracket (221) is rotatably connected to the inner container (500).

6. The shelf rotating structure according to claim 5, characterized in that: It also includes a guide assembly (300), which is arranged on the rotating bracket (221), and is used to guide the fixed assembly (100) when the fixed assembly (100) moves into or out of the inner container (500).

7. The shelf rotating structure according to claim 6, characterized in that: The guide assembly (300) comprises at least two guide members (310), a guide gap (320) is provided between two adjacent guide members (310), and a movable plate (150) for moving within the guide gap (320) is provided on the fixed assembly (100).

8. The shelf rotating structure according to any one of claims 4 to 7, characterized in that: It also includes a lower guide plate (400), which is used to be rotatably connected to the spray arm fixing seat on the bottom wall of the inner container (500), and a sliding plate (218) is provided on the rod body (215), and the sliding plate (218) is slidably connected to the lower guide plate (400).

9. The shelf rotating structure according to claim 8, characterized in that: The lower guide plate (400) is provided with a lower slide groove (410), and the slide plate (218) is rotatably connected to a lower pulley (219), and the lower pulley (219) is slidably connected in the lower slide groove (410) along the length direction of the lower slide groove (410).

10. A tableware processing device, characterized in that: It comprises a machine body and a shelf rotating structure as described in any one of claims 1 to 9 arranged on the machine body.