Container for storing various grains

The drawer-style structure with a handheld control compartment solves the problem of traditional containers being unable to store various types of grains, achieving efficient, safe, and convenient grain storage and reducing production costs.

CN223721670UActive Publication Date: 2025-12-26TAIZHOU HUANGYAN YIJIA HOUSEHOLD PROD CO LTD
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Patent Information

Application Number
CN202520143129.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-21
Publication Date
2025-12-26
Estimated Expiration
2035-01-21

AI Technical Summary

Technical Problem

Traditional single-space grain storage containers are insufficient to meet the storage needs of various types of grains, while rotary grain bins have a complex structure, increasing production costs and the number of parts.

Method used

The design features a portable control compartment, which, in conjunction with the grain outlet, enables precise control and sealing of the grain, simplifying the structure and reducing production costs.

Benefits of technology

It enables efficient and safe storage of various types of grains, is simple and convenient to operate, reduces production costs, and improves grain retrieval efficiency and storage stability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The container comprises a grain storage part, a control part and a grain collecting part which are sequentially arranged from top to bottom, a plurality of partition plates are arranged in the grain storage part, a plurality of storage spaces used for storing various kinds of grains are formed, a grain outlet is formed in the lower portion of each storage space, and the control part is connected with the control part. The control part comprises a plurality of drawer type control lattices, grain discharging openings are formed in the control lattices, the control lattices are pressed to enable the grain discharging openings to be aligned with the grain discharging openings to form grain discharging channels, and grains enter the grain collecting part from the storage space through the grain discharging channels; when pressing of the control grid is stopped, the grain discharging opening and the grain outlet are staggered to enable the grain outlet channel to be closed, the grain cannot enter the grain collecting part from the storage space through the grain outlet channel, and the grain collecting device has the advantages that storage and taking of various kinds of grain are achieved through a simple structure, and the production cost is effectively reduced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of storage container, especially to a container for storing multiple kinds of grains. BACKGROUND

[0002] In daily life, proper storage of grains is crucial to guarantee the quality and safety of diet. With the improvement of people's health consciousness, more attention is paid to the intake of coarse grains, and the storage demand of multiple kinds of coarse grains is increasingly highlighted. Traditional single-space grain storage containers can only accommodate one kind of grain, and it is difficult to meet the demand of people to store multiple kinds of coarse grains at the same time.

[0003] To solve this problem, multiple-space coarse grain barrels have appeared in the market. This design greatly improves the diversity of grain storage, and users can conveniently select the corresponding type of grain according to their own needs. Among many designs, the rotary coarse grain barrel has attracted some attention due to its unique grain taking method.

[0004] The rotary coarse grain barrel realizes precise control of the positional relationship between the grain and the corresponding outlet through a clever rotating structure. Users only need to rotate the barrel body slightly to align the required grain with the outlet, easily completing the grain taking operation and greatly improving the convenience of use. However, this seemingly ingenious design hides some defects that cannot be ignored.

[0005] The rotating structure of the rotary coarse grain barrel is relatively complex, involving the coordinated operation of multiple precision components. This not only puts forward higher requirements on the production process, but also requires more manpower, material resources and time cost in the process of processing and assembling parts. Moreover, the complex structure means a larger number of parts, and the procurement cost of these parts cannot be ignored. SUMMARY

[0006] The technical problem to be solved by the utility model is to provide a container for storing multiple kinds of grains. The utility model adopts a hand-held control grid to control the formation and closure of the grain outlet channel, and the corresponding grain is obtained according to the needs.

[0007] The technical solution adopted by the utility model to solve the above technical problem is as follows: a container for storing multiple kinds of grains, including a storage part, a control part and a grain collecting part arranged from top to bottom, multiple partitions are arranged in the storage part, forming multiple storage spaces for storing various grains, a grain outlet is arranged below each storage space, the control part includes multiple drawer-type control grids, a grain outlet is arranged in each control grid, pressing the control grid makes the grain outlet align with the grain outlet to form a grain outlet channel, and the grain in the storage space enters the grain collecting part through the grain outlet channel; stop pressing the control grid, the grain outlet and the grain outlet are staggered to make the grain outlet channel closed, and the grain cannot enter the grain collecting part through the grain outlet channel.

[0008] The further preselected scheme of the utility model is that: multiple control grids are stacked from top to bottom, the lengths of multiple control grids are different, and the grain discharge ports of different control grids are aligned with the corresponding grain discharge ports.

[0009] The further preselected scheme of the utility model is that: the lengths of the control grids gradually increase from top to bottom.

[0010] The further preselected scheme of the utility model is that: the outer end faces of multiple control grids are exposed and located on the same vertical plane, and the user presses the exposed outer end faces.

[0011] The further preselected scheme of the utility model is that: multiple movable spaces for the control grids are arranged on the control part, and multiple movable spaces form movable steps.

[0012] The further preselected scheme of the utility model is that: guide grooves are arranged on the two sides of the control grid, guide blocks are arranged on the inner walls of the side edges of the control part, the inner end of the control grid is abutted against the abutting surface of the movable space, and a return spring is arranged between the control grid and the abutting surface.

[0013] The further preselected scheme of the utility model is that: an auxiliary grain discharge port is arranged in the control grid, the auxiliary grain discharge port is aligned with the grain discharge port above the control grid, and the auxiliary grain discharge port is used to avoid the control grid from blocking the grain discharge of other grain discharge ports except the corresponding grain discharge port.

[0014] The further preselected scheme of the utility model is that: the sum of the number of the auxiliary grain discharge port and the grain discharge port of each control grid is the same as the number of the grain discharge port above the control grid.

[0015] The further preselected scheme of the utility model is that: the grain collecting part comprises a grain guiding surface and a grain cup, the grain guiding surface is arranged below the grain discharge channel, and the grain guiding surface is inclined towards the grain cup.

[0016] The further preselected scheme of the utility model is that: the storage space has five, the grain discharge port has five, and the control grid has five.

[0017] The further preselected scheme of the utility model is that: a bearing is arranged between the rear cover plate and the rear shaft, the rear side of the bearing is provided with a sixth sealing ring assembly and a third skeleton oil seal, and a seventh sealing assembly is arranged between the rear cover plate and the rear cover.

[0018] Compared with the prior art, the multiple partitions form multiple storage spaces in the grain storage part, greatly increasing the types of stored grain and meeting the diversified grain storage needs of users. The design of the drawer type control grid matched with the grain outlet and the grain discharge outlet is simple and intuitive, and users only need to press the control grid to accurately control the outflow and stop of the grain, which is more convenient and efficient than the traditional rotary type or other complex grain taking modes, effectively improving the grain taking efficiency. Moreover, the design makes the closure and opening of the grain outlet channel easy to control, can well prevent the accidental outflow of the grain when not needed, and ensures the safety and stability of the grain storage. The utility model discloses realize the above-mentioned function through simple drawer type structure, reduce production cost. BRIEF DESCRIPTION OF DRAWINGS

[0019] Figure 1 It is the perspective view of the utility model;

[0020] Figure 2 It is the plan view after the utility model removes the cover;

[0021] Figure 3 It is the explosion view of control part and grain receiving part;

[0022] Figure 4 It is the perspective view of control grid;

[0023] Figure 5 It is the perspective view of grain storage part;

[0024] Figure 6 It is the perspective view of grain receiving part. DETAILED DESCRIPTION

[0025] The utility model will be further described in detail in combination with the drawings.

[0026] As Figures 1-5As shown, a container for storing various types of grain includes a storage part 1, a control part 2 and a collection part 3 arranged from top to bottom. The storage part 1 is provided with multiple partitions 4, forming multiple storage spaces 5 for storing various types of grain. Each storage space 5 is provided with a grain outlet 6 below. The control part 2 includes multiple drawer-type control compartments 7, each provided with a grain discharge port 8. Pressing the control compartment 7 aligns the grain discharge port 8 with the grain outlet 6, allowing grain to flow from the storage space 5 to the collection part 3 through this communication path. Stopping pressing the control compartment 7 will misalign the grain discharge port 8 and the grain outlet 6, cutting off the path for grain to flow from the storage space 5 to the collection part 3. The design of the drawer-type control compartment 7 in combination with the grain outlet 6 and the grain discharge port 8 is simple and intuitive. Users only need to press the control compartment 7 to accurately control the outflow and stop of grain. Compared with traditional rotary or other complex grain taking methods, it is more convenient and efficient, effectively improving the efficiency of taking grain. Moreover, this design makes it easy to control the closure and opening of the grain flow path, preventing accidental outflow of grain when not needed, ensuring the safety and stability of grain storage.

[0027] Multiple control compartments 7 are stacked from top to bottom, and the lengths of the multiple control compartments 7 are different. The grain discharge ports 8 of different control compartments 7 are aligned with their respective grain outlets 6. This design further optimizes the accuracy of grain discharge. Each control compartment 7 corresponds to a specific grain outlet 6, avoiding confusion between different types of grain during the grain discharge process, ensuring that users take only the desired single variety of grain each time, and improving user experience. At the same time, the stacked design rationally arranges the control structure in limited space, saving horizontal space and making the overall structure of the grain barrel more compact.

[0028] The length of the control compartment 7 increases gradually from top to bottom, which conforms to the principle of ergonomics. The stability of the stacked control compartments 7 is good. The outer end faces 10 of the multiple control compartments 7 are exposed and in the same vertical plane. Users press the exposed outer end faces 10. This design makes the user operation obvious at a glance, without the need for complex exploration or searching for the operation position, reducing the difficulty of user operation. The same vertical design also makes the operation more orderly and convenient, whether single-handed or double-handed, further improving the convenience of grain taking operation.

[0029] The control part 2 is provided with multiple active spaces for the movement of the control compartments 7, and the multiple active spaces form an active step 11. The design of the active step 11 provides a stable track for the movement of the control compartments 7, ensuring the stability of the control compartments 7 during pressing and resetting, and reducing problems such as poor grain discharge caused by shaking or deviation.

[0030] Guide grooves 13 are provided on both sides of the control compartment 7, and guide blocks 14 are provided on the inner side wall of the control unit 2. The inner end of the control compartment 7 faces the abutment surface 15 of the movable space, and a return spring 16 is provided between the control compartment 7 and the abutment surface 15. The cooperation of the guide grooves 13 and guide blocks 14 further refines the movement trajectory of the control compartment 7, ensuring the accuracy of the alignment and misalignment of the grain discharge port 8 and the grain outlet 6. The setting of the return spring 16 allows the control compartment 7 to automatically reset after being pressed, eliminating the need for manual return by the user, simplifying the operation process and improving the convenience of use.

[0031] An auxiliary discharge port 17 is provided inside the control compartment 7. The auxiliary discharge port 17 is aligned with the grain outlet 6 above the control compartment 7. The auxiliary discharge port 17 is used to prevent the control compartment 7 from blocking the grain outlet 6 other than its corresponding grain outlet 6. This design effectively solves the problem that when the control compartment 7 is pressed, other grain outlets 6 cannot discharge normally due to the obstruction of the control compartment 7, ensuring the smooth discharge of grain from each grain outlet 6 and improving the reliability of the entire grain bin discharging system.

[0032] The sum of the auxiliary discharge ports 17 and discharge ports 8 in each control compartment 7 is the same as the number of discharge ports 6 above the control compartment 7. This precise matching design further ensures that all discharge ports 6 can work normally under any operating conditions, without any problems of blockage or obstruction in the discharge caused by the structure of the control compartment 7, thus maximizing the discharge efficiency and stability of the grain bin.

[0033] There are two design options for the grain receiving section. Option 1: The grain receiving section 3 includes a grain guiding surface 18 and a grain cup 19. The grain guiding surface 18 is located below the path connecting the grain discharge port 8 and the grain outlet 6, and it is inclined towards the grain cup 19. This inclined design allows the grain flowing from the connection between the grain discharge port 8 and the grain outlet 6 to naturally slide into the grain cup 19, eliminating the need for manual guidance by the user, reducing the possibility of grain spillage, and maintaining a clean surrounding environment. Simultaneously, the grain cup 19 provides users with a centralized container for collecting grain, facilitating accurate measurement of the required amount. Option 2: ... Figure 6 As shown, the grain receiving section 3 includes a grain cup 19, which is located below all the grain discharge ports 8. This allows the grain to fall directly into the grain cup 19, preventing grain from being left on the grain guiding surface 18.

[0034] There are 5 storage spaces (5), 5 grain outlets (6), and 5 control compartments (7). This corresponding arrangement allows the grain bin to store 5 different types of grains simultaneously, meeting the storage needs of most families for common grains. Furthermore, this precise matching of quantities further optimizes the design of the entire grain dispensing control system, ensuring that each control compartment (7) corresponds precisely to a grain outlet (6), guaranteeing accurate and efficient grain dispensing.

[0035] The above describes in detail the container for storing various kinds of grains provided by the present application, and the principle and implementation mode of the present application are described by using specific examples in this paper. The above description of the examples is only used to help understand the present application and the core idea. It should be pointed out that, for ordinary skilled persons in the technical field, some improvements and modifications can be made to the present application without departing from the principle of the present application, and these improvements and modifications also fall within the protection scope of the present application.

Claims

1. A container for storing various types of grain, comprising, from top to bottom, a storage section, a control section and a grain collection section, a plurality of partitions being arranged in the storage section to form a plurality of storage spaces for storing various types of grain, and a grain outlet being arranged below each storage space, characterized in that The control part comprises a plurality of drawer-type control grids, the control grids are provided with grain discharging ports, pressing the control grids makes the grain discharging ports align with the grain discharging ports to form a grain discharging channel, and the grain in the storage space enters the grain collecting part through the grain discharging channel; stopping pressing the control grids makes the grain discharging ports and the grain discharging ports staggered to each other to close the grain discharging channel, and the grain in the storage space cannot enter the grain collecting part through the grain discharging channel.

2. A container for storing a plurality of types of food grains as claimed in claim 1 wherein The plurality of control grids are stacked from top to bottom, and the lengths of the plurality of control grids are different, and the grain discharging ports of different control grids align with the corresponding grain discharging ports.

3. A container for storing a plurality of types of foodstuff according to claim 2, wherein The lengths of the control grids gradually increase from top to bottom.

4. The container for storing multiple types of food grains as claimed in claim 1 wherein The outer end faces of the plurality of control grids are exposed and located in the same vertical plane, and the user presses the exposed outer end faces.

5. The container for storing multiple types of food grains as claimed in claim 1 wherein The control part is provided with a plurality of movable spaces for the control grids, and the plurality of movable spaces form movable steps.

6. A container for storing a plurality of types of foodstuff according to claim 5, wherein The two sides of the control grid are provided with guide grooves, the inner wall of the side of the control part is provided with guide blocks, the inner end of the control grid faces the abutting surface of the movable space, and the reset spring is arranged between the control grid and the abutting surface.

7. The container for storing multiple types of food grains as claimed in claim 1 wherein The control grid is provided with an auxiliary grain discharging port, the auxiliary grain discharging port aligns with the grain discharging port above the control grid, and the auxiliary grain discharging port is used to avoid the control grid blocking the grain discharging of the grain discharging ports other than the corresponding grain discharging port.

8. The container for storing multiple types of food grains as claimed in claim 1 wherein The sum of the number of the auxiliary grain discharging port and the grain discharging port of each control grid is the same as the number of the grain discharging ports above the control grid.

9. The container for storing multiple types of food grains as claimed in claim 1 wherein The grain collecting part comprises a grain guiding surface and a grain cup, the grain guiding surface is arranged below the grain discharging channel, and the grain guiding surface is inclined towards the grain cup.

10. The container for storing multiple types of food grains as claimed in claim 1 wherein The grain collecting part comprises a grain cup, and the grain cup is arranged below all the grain discharging ports.