CN215945227U - Grain storage container assembly of stacked grain storage container - Google Patents

Grain storage container assembly of stacked grain storage container Download PDF

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Publication number
CN215945227U
CN215945227U CN202122299824.1U CN202122299824U CN215945227U CN 215945227 U CN215945227 U CN 215945227U CN 202122299824 U CN202122299824 U CN 202122299824U CN 215945227 U CN215945227 U CN 215945227U
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grain
grain storage
storage container
container assembly
assembly
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不公告发明人
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Zhengred Swallow
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Zhengred Swallow
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Abstract

The utility model provides a grain storage container assembly of a stacked grain storage container, and belongs to the technical field of household articles. It has solved the current inconvenient problem of taking and putting grain in depositing the container from range upon range of grain. The grain storage container component of the laminated grain storage container is internally provided with a grain storage cavity, and the grain storage container component is internally provided with a grain discharging main channel which is communicated up and down and a grain discharging sub-channel which enables the bottom of the grain storage cavity to be communicated with the grain discharging main channel; the grain storage container assembly comprises a grain discharging structure used for controlling the grain discharging branch channel to be in a communicated state or a cut-off state. The grain storage container assembly is provided with a grain discharging main channel, and grains stored in the grain storage cavity are discharged into the grain discharging main channel. People can place the rice receiving cup on the table top when taking and placing grains, and the grain placing structure is operated, so that the operation convenience is obviously improved when an operator takes and places grains from a higher grain storage container assembly.

Description

Grain storage container assembly of stacked grain storage container
Technical Field
The utility model belongs to the technical field of household articles, and relates to a multilayer grain storage container, in particular to a grain storage container assembly of the multilayer grain storage container.
Background
The grain storage container is generally used for storing grains such as rice, wheat, beans and the like. The conventional grain storage container is used to store a single kind of grain, and various kinds of grain are generally stored in daily life, thereby requiring a plurality of grain storage containers.
In order to reduce the area of a plane occupied by grain storage containers, a laminated insect-proof rice storage barrel (application number 201120150781.4) is proposed, which comprises a rice barrel, wherein the upper surface of the rice barrel is provided with a circular protrusion, the lower surface of the rice barrel is provided with a circular groove, the protrusion corresponds to the groove, and the shape and the size of the protrusion are consistent. When storing different kinds of rice, the groove of the upper end rice bucket can be connected with the annular bulge at the upper end of the lower end rice bucket in an inserting mode. The problem that the grains at the bottom of the rice storage barrel are not easy to discharge is solved, and after the rice storage barrels are stacked, the positions of the rice outlets are also lifted one by one, so that the convenience of taking and placing the grains by people is obviously affected when the rice outlets are too high or too low.
Later, someone has proposed grain and has deposited bucket (application number 202021583594.0) again, including the staving, has a plurality of chambeies of depositing in the staving, has seted up on the diapire of depositing the chamber and has put the grain mouth, and a plurality of manual grain structures of putting with putting grain mouth one-to-one are installed to the bottom of staving. Although this grain storage barrel has improved and has got and put the grain convenience to and improved bottom grain discharge smoothness nature, still produced some new technical problems, if a plurality of chambeies of depositing adopt the baffle to separate, the leakproofness is relatively poor between baffle and the staving, has leaded to having the tainting of flavor phenomenon between the multiple grain, and has the problem that plane area occupied increases.
Disclosure of Invention
The utility model provides a grain storage container assembly of a laminated grain storage container, and aims to solve the technical problem of improving the convenience of taking and placing grains from the laminated grain storage container.
The technical problem to be solved by the utility model can be realized by the following technical scheme: a grain storage container assembly of a laminated grain storage container is provided with a grain storage cavity, and is characterized in that the grain storage container assembly is also internally provided with a grain discharging main channel which is communicated up and down and a grain discharging branch channel which enables the bottom of the grain storage cavity to be communicated with the grain discharging main channel; the grain storage container assembly comprises a grain discharging structure used for controlling the grain discharging branch channel to be in a communicated state or a cut-off state.
The grain storage container assembly firstly enables grains to be automatically discharged into the grain discharge main channel and then automatically conveyed downwards through the grain discharge main channel until the grains fall into the rice receiving cup placed below the grain discharge main channel.
Compared with the prior art, the grain storage container assembly is provided with the grain discharging main channel, and the grains stored in the grain storage cavity are discharged into the grain discharging main channel. Every layer of grain deposits the container subassembly and all falls into through the total passageway of arranging grain and connect the rice cup in the range upon range of grain deposits the container for people get when putting grain can place connect the rice cup on the mesa, need not to grip and connect the rice cup, more need not to keep to connect the rice cup to be located to correspond rice outlet department, but the operation put the grain structure can. Therefore, the operation convenience is obviously improved for the operator when the grain is taken and placed from the higher grain storage container assembly.
In the grain storage container assembly of the laminated grain storage container, the number of the grain storage cavities is one or more.
In the grain storage container assembly of the laminated grain storage container, the grain storage container assembly further comprises a container body and a container base, and a grain storage cavity is positioned in the container body; the container base is positioned below the container body, and the container body is fixedly connected with the container base.
In the grain storage container assembly of the laminated grain storage container, the grain discharge main channel comprises a main channel upper section positioned in the container body and a main channel lower section positioned in the container base, and the main channel upper section and the main channel lower section are communicated up and down.
In the grain storage container assembly of the stacked grain storage container, the grain discharge branch channel comprises a grain discharge port positioned on the bottom wall of the container body and a branch channel inclined section positioned in the container base, the grain discharge port is communicated with the branch channel inclined section, and the lower end of the branch channel inclined section is communicated with the lower section of the main channel.
In the grain storage container assembly of the laminated grain storage container, a grain discharge port is formed in the bottom wall of each grain storage cavity, and the inclined sections of the sub-channels are in one-to-one correspondence with the grain discharge ports; or each grain storage cavity is provided with a grain discharging port on the bottom wall, and the grain discharging ports are communicated with the inclined section of the branch channel.
In the grain storage container assembly of the stacked grain storage container, a plurality of grain storage cavities are arranged left and right, or a plurality of grain storage cavities are arranged circumferentially around the axis of a grain discharge main channel.
In the grain storage container assembly of the laminated grain storage container, the grain discharge main channel is positioned in the middle of the front side of the grain storage container assembly, or the grain discharge main channel is positioned in the central area of the grain storage container assembly.
In the grain storage container assembly of the laminated grain storage container, the rear side wall of the container body is provided with a suspension structure, and the grain storage container assembly can be suspended on a wall surface through the suspension structure.
In the grain storage container assembly of the laminated grain storage container, the top of the container body is of an open structure.
Drawings
Fig. 1 is a schematic perspective view of a stacked grain storage container according to an embodiment.
Fig. 2 is a schematic front view of a stacked grain storage container according to an embodiment.
Fig. 3 is a schematic sectional structure view of a-a in fig. 2.
Fig. 4 is a schematic structural view illustrating an exploded state of the stacked grain storage container according to the first embodiment.
Fig. 5 is a schematic top view of the grain storage container assembly according to the first embodiment.
Fig. 6 is a schematic sectional structure view of B-B in fig. 5.
Fig. 7 is a schematic perspective view of a stacked grain storage container according to a second embodiment.
Fig. 8 is a schematic perspective view of a stacked grain storage container according to a third embodiment.
Fig. 9 is a schematic front view of a stacked grain storage container according to a third embodiment.
Fig. 10 is a schematic cross-sectional structure view of C-C in fig. 9.
Fig. 11 is a structural view illustrating a third embodiment of a stacked grain storage container in an exploded state.
Fig. 12 is a structural diagram of the grain storage container component in an exploded state in the third embodiment.
In the figure, 1, a grain storage container assembly; 1a, a grain storage cavity; 1b, a grain discharge main channel; 1b1, upper section of main channel; 1b2, lower main channel section; 1c, distributing grain into channels; 1c1, a grain discharge port; 1c2, branch channel inclined section; 1d, a container body; 1e, a container base; 1f, grain releasing structure; 1f1, push button; 1f2, shutter; 2. a top cover; 3. a bottom support; 4. a rice receiving cup; 5. a bearing; 6. a fastening structure; 7. a wall surface; 8. a table-board.
Detailed Description
The following are specific embodiments of the present invention and are further described with reference to the drawings, but the present invention is not limited to these embodiments.
The first embodiment is as follows: as shown in fig. 1 to 6, a stacked grain storage container includes a plurality of grain storage container assemblies 1, and the number of the grain storage container assemblies 1 is three, and the number of the grain storage container assemblies 1 can be reduced to two, or the number of the grain storage container assemblies 1 can be increased, such as 4, 5, or 6, according to the actual use situation.
The grain storage container component 1 is internally provided with a grain storage cavity 1a, a grain discharging main channel 1b which is communicated up and down and a grain discharging sub-channel 1c which enables the bottom of the grain storage cavity 1a to be communicated with the grain discharging main channel 1 b. The grain storage container assembly 1 comprises a container body 1d, a container base 1e and a grain discharging structure 1f for controlling the grain discharging branch passage 1c to be in a communicated state or a cut-off state; the container base 1e is positioned below the container body 1d, and the container body 1d is fixedly connected with the container base 1 e.
Grain storage cavity 1a is located container body 1d, and container body 1 d's top is open structure. The number of the grain storage cavities 1a can be adaptively set according to actual conditions, such as 1 to 6. A user can flexibly select the grain storage container assemblies 1 with a proper number of grain storage cavities 1a to be combined according to the actual use condition; as shown in fig. 4, the number of the grain storage cavities 1a in the container body 1d at the lowest layer is 4, the number of the grain storage cavities 1a in the container body 1d at the topmost layer is 1, and the number of the grain storage cavities 1a in the container body 1d in the middle is 2. The quantity of the grain placing structures 1f in the grain storing container assembly 1 is the same as that of the grain storing cavities 1a, and the grain placing structures 1f are arranged in a one-to-one correspondence mode, so that one grain placing structure is operated, and one kind of grain is taken and placed.
The number of the grain discharging main channels 1b in the group of grain storage container assemblies 1 is one. The grain discharging main channel 1b comprises a main channel upper section 1b1 positioned in the container body 1d and a main channel lower section 1b2 positioned in the container base 1e, and the main channel upper section 1b1 and the main channel lower section 1b2 are both communicated up and down. The main grain discharging channel 1b is vertically arranged, so that grains can fall down quickly and can be prevented from being accumulated in the main grain discharging channel 1 b.
The grain discharging branch channel 1c comprises a grain discharging port 1c1 positioned on the bottom wall of the container body 1d and a branch channel inclined section 1c2 positioned in the container base 1e, the grain discharging port 1c1 is communicated with the branch channel inclined section 1c2, and the lower end of the branch channel inclined section 1c2 is communicated with the main channel lower section 1b 2.
The grain discharging structure 1f is a manual gate plate 1f2 type structure or an electric screw type structure. The attached figures in the specification show that the grain placing structure 1f is a manual gate 1f2 type structure, the manual gate 1f2 type structure comprises a button 1f1 and a gate 1f2 depending on the bottom surface of a container body 1d, and the gate 1f2 is connected with a container base 1e in a sliding way; the gate plate 1f2 moves horizontally, when the grain discharging port 1c1 is shielded, the grain discharging branch passage 1c is in a cut-off state, and when the grain discharging port 1c1 and the gate plate 1f2 are in a dislocation state, the grain discharging branch passage 1c is in a communication state.
The grain storage container assembly 1 is substantially rectangular, a plurality of grain storage cavities 1a in the grain storage container assembly 1 are arranged left and right, and the button 1f1 is located on the front side wall and arranged left and right, so that the operation convenience is improved. The total passageway of row grain 1b is located the front side middle part that container subassembly 1 was deposited to grain, so existing be favorable to the left and right sides to deposit grain in the grain chamber 1a arrange to the total passageway of row grain 1b in, still be favorable to people to observe the minimum mouth position of the total passageway of row grain 1b, and then be favorable to people to connect rice cup 4 to place under the total passageway of row grain 1b, still be favorable to people to observe the grain whereabouts condition simultaneously, in time judge whether continue to discharge grain.
As shown in fig. 5 and 6, the lower section 1b2 of the main channel is provided with a sub-channel inclined section 1c2 on both left and right sides, and the sub-channel inclined section 1c2 can be communicated with one or more grain discharge ports 1c1, which is particularly suitable for being applied to a grain storage container assembly 1 having a plurality of grain storage cavities 1a, and can simplify the structure of the grain storage container assembly 1 and reduce the manufacturing cost of the grain storage container assembly 1.
The rear side wall of the container body 1d is provided with a suspension structure, so that the grain storage container assembly 1 can be suspended on a wall surface 7; the rice receiving cup 4 can be placed on the table top 8.
A plurality of grains are deposited container subassembly 1 and are folded and establish, and from supreme stacking one by one down promptly, the total passageway 1b of arranging grain in upper and lower two sets of grains are deposited container subassembly 1 and are linked together, and the top of the total passageway 1b of arranging grain in the grain storage container subassembly 1 that is located the below and the bottom butt joint of the total passageway 1b of arranging grain in the grain storage container subassembly 1 that is located the top promptly. All the grain discharge main channels 1b are positioned on the same vertical line, so that grains can fall quickly and can be prevented from being accumulated. The container base 1e in the upper grain storage container assembly 1 covers the opening of the container body 1d in the lower grain storage container assembly 1, whereby the upper grain storage container assembly 1 serves as a cover for the lower grain storage container assembly 1. The stacked grain storage container further includes a top cover 2, and the top cover 2 is used to cover an opening of the container body 1d in the uppermost grain storage container assembly 1.
Example two: as shown in fig. 7, the structure and principle of the present embodiment are substantially the same as those of the first embodiment, and the substantially same points are not described redundantly, but only different points are described, where: the stacked grain storage container further comprises a bottom support piece 3, the bottom support piece 3 is located below the grain storage container assembly 1, the bottom support piece 3 is connected with the grain storage container assembly 1 located at the lowest position, the bottom support piece 3 is a support leg, and a plurality of support legs are fixedly connected with the grain storage container assembly 1 located at the lowest position, so that the stacked grain storage container can be placed on the table top 8.
Example three: as shown in fig. 8 to 12, the structure and principle of the present embodiment are substantially the same as those of the first embodiment, and the substantially same points are not described redundantly, but only different points are described, where: the grain storage container assembly 1 is approximately cylindrical, and a plurality of grain storage cavities 1a in the grain storage container assembly 1 are arranged in a circumferential direction around an axis. The grain discharging main passage 1b is located at a central region of the grain storage container assembly 1. The sub-channel inclined sections 1c2 are positioned outside the main channel lower section 1b2, and the number of the sub-channel inclined sections 1c2 is the same as that of the grain storage cavities 1a and are arranged in one-to-one correspondence.
There is not suspended structure on the rear sidewall of container body 1d, but range upon range of grain deposits the container and still includes bottom support piece 3, and bottom support piece 3 is cylindricly, and bottom support piece 3's quantity is one, and bottom support piece 3 is located the below that the container subassembly was deposited to grain, and bottom support piece 3 is connected through bearing 5 rotation with being located between the grain storage container subassembly 1 of below, and the container subassembly is deposited to grain from this can rotate to and connect rice cup 4 can place in bottom support piece 3.
The upper and lower adjacent grain storage container assemblies 1 are connected through the fastening structure 6, so that the connection firmness between the upper and lower adjacent grain storage container assemblies 1 is improved, and the phenomenon that the grain storage container assemblies 1 incline when rotating is avoided.

Claims (10)

1. A grain storage container assembly of a laminated grain storage container is characterized in that a grain storage cavity (1 a) is arranged in the grain storage container assembly (1), and the grain storage container assembly is also internally provided with a grain discharging main channel (1 b) which is communicated up and down and a grain discharging branch channel (1 c) which enables the bottom of the grain storage cavity (1 a) to be communicated with the grain discharging main channel (1 b); the grain storage container assembly (1) comprises a grain discharging structure (1 f) for controlling the grain discharging branch channel (1 c) to be in a communicated state or a cut-off state.
2. The grain storage container assembly of the laminated grain storage container according to claim 1, wherein the number of the grain storage cavities (1 a) is one or more.
3. The grain storage container assembly of the laminated grain storage container according to claim 2, wherein the grain storage container assembly (1) further comprises a container body (1 d) and a container base (1 e), the grain storage cavity (1 a) is located in the container body (1 d); the container base (1 e) is positioned below the container body (1 d), and the container body (1 d) is fixedly connected with the container base (1 e).
4. The grain storage container assembly of the stacked grain storage container of claim 3, wherein the grain discharge main passage (1 b) includes an upper main passage section (1 b 1) formed in the container body (1 d) and a lower main passage section (1 b 2) formed in the container base (1 e), and the upper main passage section (1 b 1) and the lower main passage section (1 b 2) are vertically penetrated.
5. The grain storage container assembly of the stacked grain storage container of claim 4, wherein the grain discharge passage (1 c) comprises a grain discharge port (1 c 1) formed at a bottom wall of the container body (1 d) and a passage-divided inclined section (1 c 2) formed in a bottom wall of the container body (1 e), the grain discharge port (1 c 1) is communicated with the passage-divided inclined section (1 c 2), and a lower end of the passage-divided inclined section (1 c 2) is communicated with the main passage lower section (1 b 2).
6. The grain storage container assembly of the laminated grain storage container as claimed in claim 5, wherein a grain discharge port (1 c 1) is formed on the bottom wall of each grain storage cavity (1 a), and the inclined sections (1 c 2) of the branch channels are arranged in one-to-one correspondence with the grain discharge ports (1 c 1); or the bottom wall of each grain storage cavity (1 a) is provided with a grain discharge port (1 c 1), and a plurality of grain discharge ports (1 c 1) are communicated with a branch channel inclined section (1 c 2).
7. The grain storage container assembly of the laminated grain storage container as claimed in any one of claims 2 to 6, wherein a plurality of the grain storage chambers (1 a) are arranged side to side or a plurality of the grain storage chambers (1 a) are arranged circumferentially around an axis of the grain discharge main passage (1 b).
8. The grain storage container assembly of the stacked grain storage containers according to any one of claims 1 to 6, wherein the grain discharge trunk (1 b) is located at a front middle portion of the grain storage container assembly (1), or the grain discharge trunk (1 b) is located at a central region of the grain storage container assembly (1).
9. The grain storage container assembly of the stacked grain storage containers according to any one of claims 3 to 6, wherein the rear sidewall of the container body (1 d) has a hanging structure by which the grain storage container assembly (1) can be hung on a wall surface (7).
10. The grain storage container assembly of the stacked grain storage containers according to any one of claims 3 to 6, wherein a top of the container body (1 d) has an open structure.
CN202122299824.1U 2021-09-21 2021-09-21 Grain storage container assembly of stacked grain storage container Active CN215945227U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122299824.1U CN215945227U (en) 2021-09-21 2021-09-21 Grain storage container assembly of stacked grain storage container

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122299824.1U CN215945227U (en) 2021-09-21 2021-09-21 Grain storage container assembly of stacked grain storage container

Publications (1)

Publication Number Publication Date
CN215945227U true CN215945227U (en) 2022-03-04

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Application Number Title Priority Date Filing Date
CN202122299824.1U Active CN215945227U (en) 2021-09-21 2021-09-21 Grain storage container assembly of stacked grain storage container

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CN (1) CN215945227U (en)

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