Adjustable basin and bowl rack

The adjustable bowl and pot holder addresses the issue of fixed structures by allowing size adjustments through movable barriers, ensuring secure and versatile placement of bowls and pots.

CN223095426UActive Publication Date: 2025-07-15方浩军
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Patent Information

Application Number
CN202421482605.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-26
Publication Date
2025-07-15
Estimated Expiration
2034-06-26

AI Technical Summary

Technical Problem

The existing basin and bowl racks are fixed structures and cannot adapt to basin and bowls of different sizes, resulting in inconvenient placement.

Method used

An adjustable basin bowl rack is designed to accommodate basin bowls of different sizes by moving multiple stoppers on the pallet. The bottom of the stopper is fixed to the extension plate by plug-ins and threaded connections, and the support plate can be separated for easy cleaning and storage.

Benefits of technology

The placement area is adjusted according to the size of the bowl, which is convenient to pick up and place, reduces costs and improves the flexibility and convenience of use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to an adjustable bowl rack which comprises a supporting plate and two supporting plates arranged at the two ends of the supporting plate, a plurality of blocking rods capable of blocking bowls and basins are arranged on the supporting plate and can move on the supporting plate, and when the adjustable bowl rack is used, displacement of the blocking rods can be adjusted according to the sizes of the bowls and the basins. The multiple stop rods for stopping the bowls can be adjusted on the supporting plate to be close to the edges of the bowls, so that the peripheries of the bowls are stopped, and the bowls are prevented from sliding off from the supporting plate when the whole device is transferred.
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Description

Technical Field

[0001] The utility model relates to a basin and bowl rack, in particular to an adjustable basin and bowl rack. Background Art

[0002] In daily life, basins and bowls are essential items in the family kitchen and restaurant. Bowls can be used to hold food, while basins can be used to place uncooked dishes, kitchen supplies and other cleaning supplies. When setting the table, bowls need to be transferred from the kitchen to in front of the table, and a bowl rack can play a role in placing multiple bowls.

[0003] The basin racks and bowl racks in the prior art are of a fixed structure, that is, the blocking rods for the basins and bowls to lean on do not have an adjustment function. When it is necessary to place basins or bowls of different sizes, various basins and bowls of different sizes cannot be well sorted. Therefore, the present application provides an adjustable basin and bowl rack to realize the placement of basins and bowls of different sizes. Summary of the Utility Model

[0004] To solve the problems of complex structure, more components and higher cost, the utility model provides an adjustable basin and bowl rack, and the specific technical solution is as follows:

[0005] An adjustable basin and bowl rack includes a support plate and two support plates arranged at both ends of the support plate. Each support plate is provided with a through groove for holding the support plate. A plurality of blocking rods for blocking basins and bowls are arranged on the support plate, and the plurality of blocking rods can all move on the support plate;

[0006] Further, the number of the plurality of blocking rods is not less than four, and at least two blocking rods are in a group, and a total of two groups of blocking rods are respectively arranged on the support plate near the two longer side parts.

[0007] Preferably, extension plates for installing the bottoms of the plurality of blocking rods are arranged on both sides of the support plate, and the extension plates are bent to form a C-shaped concave groove structure in cross section.

[0008] Preferably, a bottom rod and a plug-in member are arranged at the bottom of each blocking rod. An insertion rod is arranged at the bottom of the bottom rod. The plug-in member can enter the C-shaped concave groove from one end of the extension plate, and the plug-in member can linearly move in the concave groove of the extension plate towards both ends of the extension plate. A jack adapted to the outer diameter of the insertion rod is arranged on the plug-in member, and a contact surface made of silica gel material is arranged at the bottom edge part of the bottom rod.

[0009] Further, the plug-in member is a hexagonal nut, and the distance between the opposite sides of the hexagonal nut is adapted to the distance between the bent parts at both ends of the extension plate. A thread capable of being threadedly connected with the hexagonal nut is arranged on the outer side wall of the insertion rod.

[0010] Preferably, after the two ends of the extension plate with a C-shaped cross-section are bent in the same direction and arranged facing each other, they extend downward for a certain distance to form extension ends.

[0011] Preferably, a through hole penetrating both ends is provided inside the retaining rod. The outer diameter of the upper half part of the bottom rod is adapted to the size of the through hole of the retaining rod, and the through hole of the retaining rod can be sleeved outside the upper half part of the bottom rod. A groove is provided at the center of the upper half part of the bottom rod, and a slot is provided on the outer side wall of the upper half part of the bottom rod. An insertion strip that can be inserted into the slot on the bottom rod is fixedly provided on the inner wall of the through hole of the retaining rod.

[0012] Furthermore, a top cap having the same structure as the upper half part of the bottom rod is provided at the top of the retaining rod, that is, a slot adapted to the insertion strip is provided on the outer side wall of the lower half part of the top cap, and an insertion strip is provided on the inner wall of the through hole at the top of the retaining rod.

[0013] Furthermore, the insertion strips at the inner walls of the through holes at both ends of the retaining rod extend towards each other and are connected as a whole.

[0014] Preferably, the middle part of the cross-section of the support plate is recessed and bent, and the parts near both ends of the support plate are arc-shaped recessed.

[0015] Preferably, a limiting groove having the same cross-sectional bending structure as the support plate and the two side extension plates is provided on the lower half part of each support plate facing the support plate.

[0016] Preferably, each support plate is of a split design on the side facing the support plate, that is, a slotted design is adopted along the edge part of the front side of the support plate, so that the support plate is split into a front side panel and a rear side panel with a frame structure.

[0017] Furthermore, a grid bar for supporting the front side panel is fixedly provided inside the rear side panel with a frame structure.

[0018] Compared with the prior art, the present utility model has the following beneficial effects:

[0019] A kind of adjustable basin and bowl rack provided by the present utility model has a simple structure, low cost and is convenient to use. During use, the positions of multiple retaining rods can be adjusted according to the sizes of the basins and bowls. Compared with the basin racks and bowl racks used in the prior art, there is a problem that the placement area cannot be adaptively adjusted according to the different sizes of the basins and bowls. When this application is used, it can be applied to placing basins and bowls of different sizes. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 is a schematic structural view of the structure for placing bowls in this application;

[0021] Figure 2 is a schematic structural view of the structure for placing basins in this application;

[0022] Figure 3 is a perspective view of the present application;

[0023] Figure 4 is a schematic diagram of the usage state of the present application;

[0024] Figure 5 is a schematic structural diagram of the pallet and the extension plate in the present application;

[0025] Figure 6 is a schematic installation diagram of the retaining rod and the pallet in the present application;

[0026] Figure 7 is a schematic exploded structural diagram of the retaining rod, the bottom rod and the top cap in the present application;

[0027] Figure 8 is a schematic installation diagram of the support plate and the pallet in the present application;

[0028] Figure 9 is a schematic exploded diagram of the support plate in the present application;

[0029] Figure 10 is Figure 9 an enlarged view of part A in

[0030] Reference numerals: pallet 1, extension plate 11, C-shaped concave groove structure 12, extension end 13, concave bend 14, arc-shaped depression 15, retaining rod 2, bottom rod 21, groove 211, slot 212, plug-in member 22, plug rod 23, through hole 24, insertion strip 25, top cap 26, support plate 3, through groove 31, limiting groove 32, front side panel 33, elastic hook 331, clamping groove 332, rear side panel 34, grid strip 35. Detailed implementation manners

[0031] The present utility model will be further described below in conjunction with the accompanying drawings.

[0032] Referring to the attached Figures 1 to 3 As shown, an adjustable basin and bowl rack includes a pallet 1 and a support plate 3. A plurality of retaining rods 2 for blocking bowls and basins are provided on the pallet 1. The plurality of retaining rods 2 can all move on the pallet 1. The number of the plurality of retaining rods 2 is not less than four, and at least two retaining rods 2 are in a group, and a total of two groups of retaining rods 2 are respectively arranged on the pallet 1 near the two longer side parts;

[0033] Two support plates 3 are provided and are respectively arranged at both ends of the pallet 1, that is, the two support plates 3 are respectively located at the two shorter side parts of the pallet 1. Each support plate 3 is provided with a through groove 31 for holding the support plate 3;

[0034] Referring to the attached Figure 4 As shown, Figure 4It is a schematic diagram of placing bowls. When in use, the bowl can be placed flat on the tray 1, that is, the bottom of the bowl faces the tray 1 and contacts the tray 1. When one bowl is placed on the tray 1, two of the two sets of retaining bars 2 can be selected according to the size of the bowl to approach the bowl, but there is a certain gap between them and the outer wall of the bowl, so that the bowls to be placed subsequently can be smoothly placed downward from the upper part of the placement space formed between the multiple retaining bars 2, enabling the four retaining bars 2 to block the four sides of the bowl. Subsequently, another bowl is placed flat on the tray 1 above the previous bowl, so that the two bowls are stacked vertically. Then, this process is repeated until the height of the multiple bowls to be placed after being stacked vertically is close to the height that can be blocked by the tops of the four retaining bars 2. At this time, the four retaining bars 2 can be moved closer to the multiple bowls stacked vertically, so that the four retaining bars 2 are in contact with the outer walls of the multiple bowls. In the actual use process, through the design that the multiple retaining bars 2 can be moved, the corresponding retaining bars 2 can be adjusted according to the different sizes of the basins and bowls, so that the entire device can be applied to place basins and bowls of different sizes.

[0035] At the same time, when the basins and bowls need to be taken out in this application, then the operator holds the two support plates 3 with both hands to pick up the entire tray 1 and transfer it to the dining table. During the transfer process, since the four retaining bars 2 are in contact with the outer walls of the multiple bowls, and after the multiple bowls are stacked vertically, each bowl is restricted by the movement of the bowl mouth part of the adjacent bowl. In this way, it cooperates with the tray 1 to block the bottom and the four sides of the multiple stacked bowls, so that the multiple stacked bowls will not slide off the tray 1.

[0036] When placing bowls, refer to the attached Figure 4 shown, and take Figure 4 as an example of the schematic diagram of placing bowls. The operator places the entire bowl rack on the dining table, and then moves the four retaining bars 2 that were originally in contact with the outer walls of the multiple bowls slightly outward by a certain distance, so that there is a certain gap between the four retaining bars 2 and the outer walls of the bowls, facilitating the bowls to be smoothly taken out from the placement space formed between the four retaining bars 2. When taking out, since the multiple bowls are stacked vertically, the bowls can be taken out by moving them along a vertical trajectory. And when taking out, the bowl being taken out will directly come out from the bowl mouth of the lower bowl, and thus will not collide with the inner wall of the bowl mouth of the lower bowl. Therefore, there is no need to worry about the situation of the bowl mouth being broken. In actual operation, the operator only needs to move each bowl along a vertical trajectory to quickly take out the multiple bowls one by one, and the whole operation process is convenient and fast.

[0037] Secondly, the size of this application can be designed as needed according to the different sizes of basin and bowl products. For example, the supporting width of the tray 1 in the attached Figure 1 is relatively narrow and can be suitable for placing bowls; as shown in the attached Figure 2The pallet 1 in it has a relatively wide supporting width and can be used for placing basins.

[0038] Refer to the appendix Figure 5 As shown, the pallet 1 is arranged in a flat shape, and extension plates 11 for installing the bottoms of a plurality of stop rods 2 are arranged on both sides of the pallet 1. After being bent, the extension plates 11 form a C-shaped concave groove structure 12 in cross-section.

[0039] Refer to the appendix Figure 6 As shown, a bottom rod 21 and a plug-in member 22 are arranged at the bottom of each stop rod 2. An insertion rod 23 is arranged at the bottom of the bottom rod 21. The plug-in member 22 can enter the C-shaped concave groove structure 12 from one end of the extension plate 11, and the plug-in member 22 can move in a straight-line trajectory in the C-shaped concave groove structure 12 of the extension plate 11 towards both ends of the extension plate 11. A jack adapted to the outer diameter of the insertion rod 23 is arranged on the plug-in member 22, and a contact surface made of silica gel material is provided at the bottom edge of the bottom rod 21.

[0040] After adjusting the position of the stop rod 2 on the pallet 1, the stop rod 2 can be pressed downwards so that the insertion rod 23 at the bottom of the bottom rod 21 is inserted into the jack on the plug-in member 22. At this time, the bottom edge of the bottom rod 21 will exert extrusion on the same-direction bending parts at both ends of the C-shaped extension plate 11, and the friction force is used to prevent the stop rod 2 from moving freely on the extension plate 11. The contact surface made of silica gel material is arranged at the bottom edge of the bottom rod 21 to increase the friction force between the bottom edge of the bottom rod 21 and the extension plate 11.

[0041] Secondly, the plug-in member 22 is set as a hexagonal nut, and the distance between the opposite sides of the hexagonal nut is adapted to the distance between the bending parts at both ends of the extension plate 11. A thread that can be threadedly connected with the hexagonal nut is arranged on the outer side wall of the insertion rod 23. When moving the stop rod 2, the stop rod 2 can be rotated in the reverse direction so that the insertion rod 23 at the bottom of the bottom rod 21 moves up a certain distance from the threaded hole of the hexagonal nut, making the stop rod 2 in a movable state. After adjusting the displacement of the stop rod 2, the stop rod 2 can be rotated so that the insertion rod 23 at the bottom of the bottom rod 21 is gradually screwed into the threaded hole of the hexagonal nut under the action of the thread. As the bottom rod 21 descends, it will gradually fit and form an abutment with the same-direction bending parts at both ends of the extension plate 11, so that the bottom rod 21 and the stop rod 2 are limited on the extension plate 11. In actual operation, the implementation method of forming a threaded connection between the insertion rod 23 and the hexagonal nut by rotating the stop rod 2 to release and limit the moving state of the stop rod 2 has the effect of simple operation. At the same time, during use, it is not easy for the insertion rod 23 at the bottom of the stop rod 2 to come out after being threadedly connected with the hexagonal nut.

[0042] Refer to the appendix Figure 5 and 6As shown in the figure, after both ends of the extension plate 11 with a C-shaped cross-section are bent in the same direction and face each other, they extend downward for a certain distance to form extension ends 13. The extension ends 13 formed by bending both ends of the extension plate 11 and extending downward can increase the compressive strength of the extension plate 11 between the hexagon nut and the bottom rod 21.

[0043] The retaining rod 2 is a tubular structure, that is, a through hole 24 penetrating both ends is provided inside the retaining rod 2. The outer diameter of the upper half part of the bottom rod 21 is adapted to the size of the through hole 24 of the retaining rod 2, and the through hole 24 of the retaining rod 2 can be sleeved outside the upper half part of the bottom rod 21. A groove 211 is provided at the center of the upper half part of the bottom rod 21, and a slot 212 is provided on the outer side wall of the upper half part of the bottom rod 21. An insertion strip 25 that can be inserted into the slot 212 on the bottom rod 21 is fixedly provided on the inner wall of the through hole 24 of the retaining rod 2;

[0044] A top cap 26 having the same structure as the upper half part of the bottom rod 21 is provided at the top of the retaining rod 2, that is, a slot 212 adapted to the insertion strip 25 is provided on the outer side wall of the lower half part of the top cap 26. The top of the top cap 26 is smoothly provided, and an insertion strip 25 is provided on the inner wall of the through hole 24 at the top of the retaining rod 2. After the bottom rod 21 and the top cap 26 are inserted and connected to both ends of the retaining rod 2, they can form a support from the inside of the tubular structure of the retaining rod 2 to enhance the strength of the retaining rod 2 during use;

[0045] The bottom rod 21, the top cap 26 and the tubular structure of the retaining rod 2 in this application can be used in a combined and spliced manner, which is convenient for disassembly and cleaning after use. Among them, the retaining rod 2 is set as a tubular structure, and the grooves 211 provided on the upper half part of the bottom rod 21 and the lower half part of the top cap 26 can reduce the overall weight of the retaining rod 2, the bottom rod 21 and the top cap 26, making the entire device lighter and more convenient for the operator to transport.

[0046] To realize the splicing use of the retaining rod 2 and the bottom rod 21, an insertion strip 25 is provided on the inner wall of the through hole 24 of the retaining rod 2. When the through hole 24 part of the retaining rod 2 is sleeved on the outer side wall of the upper half part of the bottom rod 21, since the through hole 24 penetrates both ends inside the retaining rod 2, during operation, the angle of the retaining rod 2 can be adjusted by observing the top of the retaining rod 2, so that the insertion strip 25 in the through hole 24 of the retaining rod 2 can be in a corresponding position with the slot 212 on the bottom rod 21 and be inserted, so that the bottom of the retaining rod 2 will not rotate after being sleeved on the upper half part of the bottom rod 21, and the bottom rod 21 can be driven to rotate synchronously during the subsequent rotation of the retaining rod 2, so as to realize that the insertion rod 23 at the bottom of the bottom rod 21 can be screwed out or screwed into the threaded hole of the hexagon nut;

[0047] After completing the installation of the shift lever 2 and the bottom rod 21, the lower half of the top cap 26 can be placed into the through hole 24 along the top of the shift lever 2. During the placement process, the top cap 26 can be rotated until the slot 212 in the lower half of the top cap 26 forms a corresponding state with the insert 25 in the through hole 24 at the top of the shift lever 2 and is inserted, so that the lower half of the top cap 26 will not rotate after being placed into the through hole 24 at the top of the shift lever 2;

[0048] Wherein, the inserts 25 at the inner walls of the through holes 24 at both ends of the shift lever 2 extend towards each other and are connected as a whole. Extending and connecting the inserts 25 in the through holes 24 at both ends of the shift lever 2 as a whole can enhance the compressive strength of the entire insert 25;

[0049] Secondly, the number of the slots 212 on the bottom rod 21 and the top cap 26 and the inserts 25 in the through holes 24 at both ends of the shift lever 2 can be set to two or more. When rotating the shift lever 2, the multiple inserts 25 in the shift lever 2 can exert a pulling force on the rotation state of the bottom rod 21 as the shift lever 2 rotates, preventing a single insert 25 from being easily damaged due to excessive pulling strength during use;

[0050] Refer to the appendix Figure 5 As shown, the middle part of the cross-section of the pallet 1 is provided with a concave bend 14, and the parts near both ends of the pallet 1 are provided with an arc-shaped depression 15. In order to reduce the weight of the entire device for easy handling, the middle part of the pallet 1 is provided with a concave bend 14 and extended to both ends of the pallet 1, and the parts near both ends of the pallet 1 are provided with an arc-shaped depression 15, which can enhance the compressive strength when the pallet 1 supports multiple bowls, thereby preventing the originally flat pallet 1 from being deformed under pressure due to its overall thinness.

[0051] Refer to the appendix Figure 8 and 9 As shown, the lower half of each support plate 3 facing the pallet 1 is provided with a limiting groove 32 having the same cross-sectional bending structure as that of the pallet 1 and the two side extension plates 11. During use, the two ends of the pallet 1 and the two side extension plates 11 can be respectively inserted into the limiting grooves 32 on the two support plates 3, so that the two support plates 3 are spliced with the pallet 1 and the two side extension plates 11 into a whole, facilitating the operator to hold the two support plates 3 to transfer the pallet 1;

[0052] At the same time, during subsequent cleaning and storage, through the split design of the two support plates 3 and the pallet 1 and the two side extension plates 11, the occupied space when storing the entire device can be reduced.

[0053] Refer to the appendix Figure 9As shown, one side of each of the support plates 3 facing the support plate 1 is of split design, that is, the edge portion along the front side of the support plate 3 is of slotted design, so that the support plate 3 is split into a front side panel 33 and a rear side panel 34 of a frame-like structure, and a mesh bar 35 for supporting the front side panel 33 is fixedly arranged inside the rear side panel 34 of the frame-like structure, and the limiting groove 32 inside the rear side panel 34 extends a distance toward the front side panel 33, and the distance is the same as the width of the mesh bar 35;

[0054] The support plate 3 is split into a front panel 33 and a rear panel 34 of a frame structure so that the interior of the entire support plate 3 is a hollow structure, thereby reducing the entire weight of the support plate 3, and the split structure design allows the entire support plate 3 to be disassembled for comprehensive cleaning;

[0055] Secondly, the mesh bars 35 inside the rear panel 34 can provide support between the rear panel 34 and the front panel 33 , so that the support plate 3 with a hollow structure has a certain compressive strength when in use.

[0056] See attached Figure 10 As shown, a plurality of elastic hooks 331 are provided at the edge of the front panel 33, and a slot 332 adapted to the plurality of elastic hooks 331 is provided on the inner wall of the frame-shaped rear panel 34. When the front panel 33 is embedded in the rear panel 34, the front panel 33 can be slightly pressed so that the plurality of elastic hooks 331 at the edge of the front panel 33 are sequentially inserted into the slots 332 corresponding to the inner wall of the rear panel 34, so that the front panel 33 can be snapped together after being embedded in the rear panel 34 of the frame-shaped structure.

[0057] The technical principle of the present invention is described above in combination with specific embodiments. These descriptions are only for explaining the principle of the present invention and cannot be interpreted as limiting the protection scope of the present invention in any way. Based on the explanations here, technicians in this field can think of other specific implementation methods of the present invention without creative work, and these methods will fall within the protection scope of the claims of the present invention.

Claims

1. An adjustable basin and bowl rack, characterized in that, Comprising: A pallet (1); A plurality of retaining rods (2) are arranged on the pallet (1), and the plurality of retaining rods (2) can all move on the pallet (1); The number of the plurality of retaining rods (2) is not less than four; There are two support plates (3), which are respectively arranged at both ends of the pallet (1).

2. The adjustable basin and bowl rack according to claim 1, wherein Extension plates (11) for installing the bottoms of the plurality of retaining rods (2) are arranged on both sides of the pallet (1), and the extension plates (11) are bent to form a C-shaped concave groove structure (12) in cross-section.

3. The adjustable basin and bowl rack according to claim 2, characterized in that A bottom rod (21) and a plug-in member (22) are arranged at the bottom of each retaining rod (2). A plug rod (23) is arranged at the bottom of the bottom rod (21). The plug-in member (22) can enter the C-shaped concave groove structure (12) from one end of the extension plate (11), and a jack adapted to the outer diameter of the plug rod (23) is arranged on the plug-in member (22).

4. The adjustable basin and bowl rack according to claim 3, wherein The plug-in member (22) is a hexagon nut, and a thread capable of being threadedly connected with the hexagon nut is arranged on the outer side wall of the plug rod (23).

5. The adjustable basin and bowl rack according to claim 2, characterized in that, Both ends of the extension plate (11) with a C-shaped cross-section are bent in the same direction and extend downward for a certain distance after facing each other to form extension ends (13).

6. The adjustable basin and bowl rack according to claim 3, wherein, A through hole (24) penetrating both ends is arranged inside the retaining rod (2). The outer diameter of the upper half part of the bottom rod (21) is adapted to the size of the through hole (24) of the retaining rod (2). A slot (212) is arranged on the outer side wall of the upper half part of the bottom rod (21), and a plug strip (25) capable of being inserted into the slot (212) on the bottom rod (21) is arranged on the inner wall of the through hole (24) of the retaining rod (2).

7. The adjustable basin and bowl rack according to claim 3, wherein A top cap (26) having the same structure as the upper half part of the bottom rod (21) is arranged at the top of the retaining rod (2). The top of the top cap (26) is smoothly arranged, and a plug strip (25) is arranged on the inner wall of the through hole (24) at the top of the retaining rod (2).

8. The adjustable basin and bowl rack according to claim 6 or 7, wherein, The plug strips (25) at the inner walls of the through holes (24) at both ends of the retaining rod (2) extend towards each other and are connected into one body.

9. The adjustable basin and bowl rack according to claim 1, wherein, The middle part of the cross-section of the pallet (1) is arranged with a concave bend (14), and the parts near both ends of the pallet (1) are arranged with an arc-shaped depression (15).

10. The adjustable basin and bowl rack according to claim 1, characterized in that, A limiting groove (32) having the same bending structure as the cross-section of the pallet (1) and the extension plates (11) on both sides is arranged on the lower half part of the side of each support plate (3) facing the pallet (1).