Wall-mounted rotary coarse cereal tank

By designing a wall-mounted rotating grain container, the problem of existing grain containers taking up a lot of countertop space has been solved, enabling simple and efficient storage and retrieval of grains in small kitchens.

CN224146507UActive Publication Date: 2026-04-21叶俊汐
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
叶俊汐
Filing Date
2025-05-19
Publication Date
2026-04-21

AI Technical Summary

Technical Problem

Existing grain containers take up a lot of counter space, which is inconvenient, especially in small kitchens.

Method used

Design a wall-mounted rotating grain container that is suspended from a wall or base bracket by a wall-mounted bracket. The container can rotate freely and features a transparent lid and multiple compartments. Combined with a quantitative dispensing button, it enables simple quantitative dispensing.

Benefits of technology

It effectively reduces the countertop space occupied by the grain container, is simple and quick to operate, and is suitable for space utilization in small kitchens.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a wall-mounted rotary coarse cereal tank which comprises a wall-mounted support and a disc type box body, the wall-mounted support comprises a connecting bottom plate, and a connecting shaft is arranged in the center of the connecting bottom plate; a shaft hole is formed in the center of the box body, and the whole box body is movably mounted on the connecting shaft through the shaft hole; a containing cavity is formed between the shaft hole and the outer side wall of the box body, a sealing cover is arranged on a front opening of the containing cavity, a connecting hole is formed in the center of the sealing cover, a fixing rotary knob is arranged on the connecting hole, and the inner end of the fixing rotary knob penetrates through the connecting hole, extends into the opening portion of the shaft hole and is connected with the opening portion of the shaft hole in a clamped mode. A mounting hole is formed in the center of the fixing knob, a center knob is arranged in the mounting hole, and the inner end of the center knob penetrates through the mounting hole, extends into the inner hole of the connecting shaft and is connected with the connecting shaft in a clamped mode. According to the wall-mounted rotary coarse cereal tank, the coarse cereal tank can be hung on the wall, the problem that a table top is occupied in the using process can be effectively solved, and the wall-mounted rotary coarse cereal tank has the advantages of being simple in structure and practical.
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Description

Technical Field

[0001] This utility model relates to a grain container, specifically a wall-mounted rotating grain container. Background Technology

[0002] A grain container is a container used to store grains, beans, and other cereals. It is usually designed with compartments or dividers to facilitate the separate storage of different types of grains (such as red beans, mung beans, oats, quinoa, etc.), avoid mixing, maintain the purity of the ingredients, and ensure ease of use.

[0003] Currently, grain containers are generally placed on the countertop, which takes up countertop space. This is not ideal for small kitchens and causes great inconvenience in actual use. Utility Model Content

[0004] To address the aforementioned issues, this utility model presents a wall-mounted rotating grain container, which allows the grain container to be wall-mounted, effectively reducing countertop space requirements during use, and features a simple and practical structure.

[0005] To achieve the above objectives, the present invention adopts the following technical solution:

[0006] A wall-mounted rotating grain container, characterized in that: it includes a wall-mounting bracket and a disc-shaped box body; the wall-mounting bracket includes a connecting base plate, and a connecting shaft is provided at the center of the connecting base plate; the box body has a shaft hole at its center, and the entire box body is movably mounted on the connecting shaft through the shaft hole and can rotate freely along the connecting shaft; the box body forms a storage cavity with a front opening between the shaft hole and the outer side wall, and a cover is provided on the front opening of the storage cavity; a connecting hole is provided at the center of the cover, and a fixing knob is provided on the connecting hole; the inner end of the fixing knob passes through the connecting hole and extends into the opening of the shaft hole, and several separable external engaging structures are provided between the inner end of the fixing knob and the opening of the shaft hole; the fixing knob has a mounting hole at its center, and a central knob is provided in the mounting hole; the inner end of the central knob passes through the mounting hole and extends into the inner hole of the connecting shaft, and several separable internal engaging structures are provided between the inner end of the central knob and the inner hole of the connecting shaft.

[0007] More specifically, the aforementioned storage cavity is divided into multiple compartments by multiple partitions that are radially distributed from a relatively central point. Each compartment has a material retrieval port on the outer wall of the box, and each material retrieval port has a quantitative material retrieval button.

[0008] More specifically, the aforementioned cap is made of a transparent material.

[0009] More specifically, the aforementioned external locking structure includes a straight locking protrusion on the outer wall of the inner end of the fixed knob and an L-shaped locking protrusion at the shaft hole opening of the housing. The straight locking protrusion and the L-shaped locking protrusion can be engaged and connected by rotating the fixed knob.

[0010] More specifically, the corresponding positions of the aforementioned straight-line and L-shaped engaging protrusions are provided with a locking structure after assembly. The locking structure includes a locking groove and a locking protrusion. The locking groove and the locking protrusion are selectively provided on the straight-line and L-shaped engaging protrusions. When the straight-line and L-shaped engaging protrusions are engaged, the locking protrusion just enters the locking groove.

[0011] More specifically, the aforementioned straight-line engaging protrusion has a chamfered bevel on the outer side of its starting end to facilitate its engagement with the L-shaped engaging protrusion.

[0012] More specifically, the outer surface of the aforementioned fixed knob is provided with ratchet teeth to facilitate finger pressure.

[0013] More specifically, the aforementioned internal locking structure includes two locking flanges symmetrically distributed on the outer wall of the inner end of the central knob and a transverse locking groove at the top of the inner hole of the connecting shaft. The width of the transverse locking groove is greater than the width of the locking flanges but less than the length of the two locking flanges. When the two locking flanges are inserted into the transverse locking grooves, a certain angle can be rotated to achieve a locking connection between the central knob and the connecting shaft.

[0014] More specifically, the top surface of the aforementioned center knob is equipped with a wrench for easy finger application.

[0015] More specifically, the aforementioned rotating grain container also includes a base support, and the connecting base plate has a connecting protrusion facing rearward, which is fixedly connected to the fixing hole on the base support.

[0016] The grain container designed in this utility model can be suspended on the wall or base support by connecting the bottom plate, which can effectively reduce the problem of table space occupation during the use of the grain container and has the characteristics of simple structure and practicality.

[0017] The entire box can rotate freely relative to the connecting shaft of the bottom plate. When rotated to the bottom compartment, the grains can be quantitatively removed by using their own weight in conjunction with the material removal button. The operation is simple and quick. Attached Figure Description

[0018] Figure 1 A three-dimensional structural diagram of this utility model;

[0019] Figure 2 An exploded perspective view of this utility model;

[0020] Figure 3A partially enlarged schematic diagram of the central shaft hole of the box body of this utility model;

[0021] Figure 4 A three-dimensional structural diagram of the fixed knob of this utility model;

[0022] Figure 5 1. An exploded perspective view of this utility model;

[0023] Figure 6 A three-dimensional structural diagram of the present invention with a base bracket;

[0024] Figure 7 A schematic diagram of the three-dimensional structure of the connecting base plate of the wall-mounted bracket of this utility model, which is a triangle;

[0025] in,

[0026] 1—Wall mount bracket, 11—Connecting base plate, 111—Connecting protrusion, 12—Connecting shaft, 13—Positioning slot;

[0027] 2—Box body, 21—Shaft hole, 22—Outer side wall, 23—Partition plate, 24—Compartment, 241—Dispensing port, 242—Dispensing button, 25—Positioning protrusion;

[0028] 3—Cap, 31—Connecting hole, Connecting slot 32;

[0029] 4—Fixed knob, 41—Ratchet, 42—Mounting hole;

[0030] 51—A straight-line locking protrusion; 511—A chamfered bevel; 52—An L-shaped locking protrusion.

[0031] 61—Locking groove, 62—Locking protrusion;

[0032] 7—Center knob; 71—Wrench;

[0033] 81—Engaging flange; 82—Transverse engagement groove;

[0034] 9—Base bracket, 91—Fixing hole. Detailed Implementation

[0035] As shown in 1-6, a wall-mounted rotating grain container includes a wall-mounted bracket 1 and a disc-shaped box 2.

[0036] The wall-mounted bracket 1 includes a connecting base plate 11. The back of the connecting base plate 11 can be directly attached to the wall with adhesive or detachably wall-mounted using a snap-on and hook structure. A connecting shaft 12 for mounting the housing 2 is located at the center of the front side of the connecting base plate 11. In this illustration, the connecting base plate 11 is circular, but it can also be triangular in practice, with the structure as shown below. Figure 7As shown, it can also be set to a square, rectangle, ellipse, star or other polygon as needed.

[0037] The box 2 is composed of a bottom box and an upper box.

[0038] The box body 2 has a shaft hole 21 at its center. The entire box body 2 is movably mounted on the connecting shaft 12 through the shaft hole 21 and can rotate freely along the connecting shaft 12.

[0039] The box body 2 forms a storage cavity with a front opening between the shaft hole 21 and the outer side wall 22. The entire storage cavity is divided into multiple compartments 24 by multiple partitions 23 that are radially distributed relative to the center. The outer side wall 22 of the box body 2 is provided with a material dispensing port 241 at the position corresponding to each compartment 24, and a quantitative dispensing button 242 is provided on each material dispensing port 241.

[0040] A cover 3 is provided on the front opening of the storage cavity. The back of the cover 3 has a connecting slot 32 corresponding to each partition for sealing and isolating each compartment 24. Here, for easy observation during use, the cover 3 is made of transparent material, so that the amount of grain remaining in each compartment 24 can be directly observed without opening the cover.

[0041] To achieve the installation and positioning of the cover 3 on the box body 2, the cover 3 is provided with a connecting hole 31 at its center. A fixing knob 4 is provided on the connecting hole 31. The inner end of the fixing knob 4 passes through the connecting hole 31 and extends into the opening of the shaft hole 21. Several separable external locking structures are provided between the inner end of the fixing knob 4 and the opening of the shaft hole 21.

[0042] In this embodiment, the external locking structure includes a straight locking protrusion 51 disposed on the outer side wall of the inner end of the fixed knob 4 and an L-shaped locking protrusion 52 disposed at the opening of the shaft hole 21 of the box body. The straight locking protrusion 51 and the L-shaped locking protrusion 52 can be locked together by rotating the fixed knob 4.

[0043] To ensure effective locking after the cap 3 is assembled, a locking structure is provided at the corresponding positions of the straight-line engaging protrusion 51 and the L-shaped engaging protrusion 52. The locking structure includes a locking groove 61 and a locking protrusion 62. The locking groove 61 and the locking protrusion 62 are selectively provided on the straight-line engaging protrusion 51 and the L-shaped engaging protrusion 52. When the straight-line engaging protrusion 51 and the L-shaped engaging protrusion 52 are engaged, the locking protrusion 62 just enters the locking groove 61 to achieve locking and positioning.

[0044] The straight-line engaging protrusion 51 has a chamfered bevel 511 on the outer side of its starting end. The chamfered bevel 511 allows the straight-line engaging protrusion 51 to be easily engaged into the L-shaped engaging protrusion 52.

[0045] To facilitate effortless operation of the fixed knob 4, a ratchet 41 is provided on the outer surface of the fixed knob 4 to allow for finger support.

[0046] The above-mentioned external locking protrusions are not limited to the structure of combining the straight locking protrusion 51 and the L-shaped locking protrusion 52. In practice, other locking structures may also be used, as long as they can achieve the detachable and fixed connection of the cover 3 on the box body 2.

[0047] The fixed knob 4 has a through mounting hole 42 at its center, and a central knob 7 is provided in the mounting hole 42. The inner end of the central knob 7 passes through the mounting hole 42 and extends into the inner hole of the connecting shaft 12. Several separable internal engagement structures are provided between the inner end of the central knob 7 and the inner hole of the connecting shaft 12.

[0048] In this embodiment, the internal locking structure includes two locking flanges 81 symmetrically distributed around the center on the outer side wall of the inner end of the central knob 7, and a transverse locking groove 82 located at the top of the inner hole of the connecting shaft 12. The width of the transverse locking groove 82 is greater than the width of the locking flanges 81 but less than the total length of the two locking flanges 81. During assembly, the two locking flanges 81 are first inserted into the transverse locking groove 82, and then the central knob 7 is rotated at a certain angle to achieve a locking connection between the central knob 7 and the connecting shaft 12, thereby achieving axial positioning of the entire housing 2 on the connecting shaft 12.

[0049] To facilitate the rotation of the central knob 7, a wrench 71 is provided on the top surface of the central knob 7 for easy finger application.

[0050] In summary, the grain container designed in this utility model has its body 2 suspended on the wall via the connecting base plate 11 of the wall-mounted bracket 1, which can effectively reduce the problem of table space occupation during the use of the grain container.

[0051] The entire box 2 can rotate freely relative to the connecting shaft 12 on the bottom plate 11. During use, rotate the grain compartment 24 to the bottom and press the corresponding material dispensing button 242. The grain can be dispensing in a quantitative manner by using its own weight. The whole operation is simple and quick.

[0052] To facilitate the rotation and positioning of each compartment 24, the back of the box body 2 is provided with positioning protrusions 25 corresponding to each compartment 24. At the same time, a positioning slot 13 is provided on the front side of the connecting base plate 11 next to the connecting shaft 12. When the box body 2 rotates relative to the connecting shaft 12, when one of the positioning protrusions 25 enters the positioning slot, one compartment 24 is directly facing downwards, thus locking its position and facilitating material retrieval operations.

[0053] To expand the application scenarios, the rotating grain container may also include a base support 9. The connecting base plate 11 has a connecting protrusion 111 facing rearward. The connecting protrusion 111 is fixedly connected to the fixing hole 91 on the base support 9. This structure allows the grain container to be suspended on the base support 9 for use, which reduces space occupation while taking into account the mobility of use.

[0054] The above description is merely a preferred embodiment of the present utility model and does not constitute any limitation on the utility model. Any simple modifications, equivalent changes, or alterations made to the above embodiments based on the technical principles of the present utility model shall still fall within the scope of the technical solution of the present utility model.

Claims

1. A wall-mounted rotary grain jar, characterized by: The device includes a wall-mounted bracket (1) and a disc-shaped box (2). The wall-mounted bracket (1) includes a connecting base plate (11), and a connecting shaft (12) is provided at the center of the connecting base plate (11). The box (2) has a shaft hole (21) at its center. The entire box (2) is movably mounted on the connecting shaft (12) through the shaft hole (21) and can rotate freely along the connecting shaft (12). The box (2) forms a storage cavity with a front opening between the shaft hole (21) and the outer side wall (22). A cover (3) is provided on the front opening of the storage cavity. A connecting hole (3) is provided at the center of the cover (3). 31), a fixing knob (4) is provided on the connecting hole (31). The inner end of the fixing knob (4) passes through the connecting hole (31) and extends into the opening of the shaft hole (21). Several separable external engagement structures are provided between the inner end of the fixing knob (4) and the opening of the shaft hole (21). The center of the fixing knob (4) is provided with a mounting hole (42). A center knob (7) is provided in the mounting hole (42). The inner end of the center knob (7) passes through the mounting hole (42) and extends into the inner hole of the connecting shaft (12). Several separable internal engagement structures are provided between the inner end of the center knob (7) and the inner hole of the connecting shaft (12).

2. The wall-mounted rotary grain tank according to claim 1, characterized in that: The storage cavity is divided into multiple compartments (24) by multiple partitions (23) that are radially distributed relative to the center. The outer wall (22) of the box body is provided with a material retrieval port (241) at the position corresponding to each compartment (24), and a material retrieval button (242) for quantitative retrieval is provided on each material retrieval port (241).

3. The wall-mounted rotary grain tank according to claim 1, characterized in that: The cap (3) is made of transparent material.

4. A wall mounted rotary grain tank as claimed in any one of claims 1 to 3 wherein: The external locking structure includes a straight locking protrusion (51) on the outer side wall of the inner end of the fixed knob (4) and an L-shaped locking protrusion (52) at the opening of the shaft hole (21) of the box body. The straight locking protrusion (51) and the L-shaped locking protrusion (52) can be locked together by rotating the fixed knob (4).

5. A wall-mounted rotary grain tank as claimed in claim 4, wherein: The corresponding positions of the straight-line engaging protrusion (51) and the L-shaped engaging protrusion (52) are provided with a locking structure after assembly. The locking structure includes a locking groove (61) and a locking protrusion (62). The locking groove (61) and the locking protrusion (62) are selectively provided on the straight-line engaging protrusion (51) and the L-shaped engaging protrusion (52). When the straight-line engaging protrusion (51) and the L-shaped engaging protrusion (52) are engaged, the locking protrusion (62) just enters the locking groove (61).

6. A wall-mounted rotary grain tank as claimed in claim 4, characterized in that: The straight engagement protrusion (51) has a chamfered bevel (511) on the outer side of its starting end to facilitate its engagement with the L-shaped engagement protrusion.

7. A wall mounted rotary grain tank as claimed in any one of claims 1 to 3 wherein: The outer surface of the fixed knob (4) is provided with ratchet teeth (41) to facilitate finger pressure.

8. A wall-mounted rotary grain tank as claimed in any one of claims 1 to 3, wherein: The internal locking structure includes two locking flanges (81) symmetrically distributed on the outer side wall of the inner end of the central knob (7) and a transverse locking groove (82) at the top of the inner hole of the connecting shaft (12). The width of the transverse locking groove (82) is greater than the width of the locking flanges (81) but less than the length of the two locking flanges (81). When the two locking flanges (81) are inserted into the transverse locking groove (82) respectively, rotating a certain angle can realize the locking connection between the central knob (7) and the connecting shaft (12).

9. A wall mounted rotary grain tank as claimed in any one of claims 1 to 3 wherein: The top surface of the central knob (7) is provided with a wrench (71) for easy finger application.

10. A wall-mounted rotary grain tank according to any one of claims 1-3, characterized in that: The rotating grain container also includes a base support (9), and the connecting base plate (11) is provided with a connecting protrusion (111) facing rearward. The connecting protrusion (111) is fixedly connected to the fixing hole (91) on the base support (9).