Storage barrel

By setting a first opening and a discharge channel at the bottom of the storage bin, and using the connection between the feeder and the switch to drive the switch to rotate, the opening and closing of the discharge channel can be directly controlled, thus solving the problem of material getting damp and moldy, and achieving convenient access and cost reduction.

CN223632216UActive Publication Date: 2025-12-05西安佳品创意设计有限公司
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Patent Information

Application Number
CN202423312575.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2025-12-05
Estimated Expiration
2034-12-31

AI Technical Summary

Technical Problem

The existing storage devices have the problem that they require complex structures for setting up discharge channels, which can lead to problems such as materials getting damp and moldy, and the existing solutions are also costly.

Method used

Design a storage bin by setting a first opening and a discharge channel at the bottom of the receiving cavity, and using the connection between the feeder and the switching device to drive the switching device to rotate, directly controlling the opening and closing of the discharge channel, simplifying the structure and reducing costs.

Benefits of technology

It enables convenient access to materials, prevents materials from getting damp and moldy, has a simple structure, and reduces production costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a storage barrel, which comprises a barrel body, a storage barrel cover, a storage barrel cover and a discharging channel, the barrel body is provided with a containing cavity for containing materials, and a first opening of the containing cavity is communicated with the discharging channel; the switch device is arranged on the barrel body and used for closing or opening the discharging channel, and the switch device is provided with a connecting part; the material taking device is detachably connected with the connecting part, and when the material taking device is connected with the connecting part, the material taking device is driven to rotate to drive the switching device to operate, so that the discharging channel is opened or closed; when the discharging channel is opened, the material taking device is used for receiving materials flowing out of the discharging channel. According to the storage barrel, when rice needs to be taken, the material taking device is matched with the switch device, the switch device is driven to open the discharging channel to take materials by rotating the material taking device, operation is convenient, and the structure is simple.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of daily necessities, especially to a storage barrel. BACKGROUND

[0002] In daily life, various storage containers are usually used to store grains. The existing storage material device needs to be provided with a discharging channel for taking out the material. The traditional way of taking out the material is generally to directly take out the material by setting a discharging channel on the top end of the material taking device. However, this way of taking out the material needs to open the top cover every time to take out the material, and the discharging channel must be larger than the material taking device. Repeatedly taking out the rice can easily cause air to enter, and thus the material can be damp and mildew. However, the existing products on the market that solve the problem of material dampness generally set a discharging channel on one side or the bottom of the storage material device, and the discharging channel is closed by a closure plate. The closure plate needs to be opened by a special operating device. The defect of this scheme is that the structure of the storage material device is complex and the cost is high. SUMMARY

[0003] In order to solve the above technical problems, the present application provides a storage barrel. This storage barrel only needs to connect the material taking device and the switch device, and rotate the switch device by rotating the material taking device to open the discharging channel. The operation is convenient, the structure is simple, and the cost is low.

[0004] The present application provides a storage barrel, comprising: a storage barrel, characterized by comprising: a barrel body, the barrel body has a material containing cavity, the first opening of the containing cavity is communicated with the discharging channel; a switch device is arranged on the barrel body for closing or opening the discharging channel, the switch device is provided with a connecting part; a material taking device is detachably connected with the connecting part, and the material taking device is driven to rotate to drive the switch device to operate when the material taking device is connected with the connecting part, thereby opening or closing the discharging channel; when the discharging channel is opened, the material taking device is used to receive the material flowing out of the discharging channel.

[0005] Technical effect: the storage barrel provided by the present application sets the first opening and the discharging channel at the bottom of the containing cavity and the switch device for opening or closing the discharging channel. The connecting part is arranged at the bottom of the switch device. When the material taking device is connected with the connecting part, the material taking device is driven to rotate to drive the switch device to operate, thereby opening or closing the discharging channel. In this way, a special operating part is not needed to control the operation of the switch device. The discharging channel can be opened by the material taking device itself, the structure is simple, the setting of the operating part is saved, and the production cost is effectively reduced.

[0006] In a possible implementation, the switching device comprises a closing assembly arranged in the discharge channel and in transmission connection with the connecting part; when the material taking device is connected with the connecting part, the connecting part is driven to rotate, the connecting part drives the closing assembly to move, so that the closing assembly is switched between the unfolded state and the folded state; when the closing assembly is in the unfolded state, the closing assembly avoids the discharge channel, so that the discharge channel is opened; when the closing assembly is in the folded state, the closing assembly covers the discharge channel, so that the discharge channel is closed.

[0007] Technical effects: the switching device comprises a closing assembly, the closing assembly can close or open the discharge channel, so that the leakage is avoided when the material in the bucket is not taken; meanwhile, the discharge channel can be opened when the material is taken. The connecting part is driven to rotate when the material taking device is connected with the connecting part, the connecting part drives the closing assembly to move, so that the closing assembly is switched between the unfolded state and the folded state, which is convenient and simple to operate.

[0008] In a possible implementation, the closing assembly comprises a plurality of closing plates abutting against each other; when the closing assembly is switched from the folded state to the unfolded state, at least part of the edges of the closing plates move away from the discharge channel, so that the plurality of closing plates are close to the inner side of the discharge channel in the unfolded state, and a hollow through hole is formed in communication with the discharge channel, so that the material flowing out of the discharge channel enters the material taking device through the hollow through hole; when the closing assembly is switched from the unfolded state to the folded state, at least part of the edges of the closing plates move close to the discharge channel, so that the hollow through hole is closed and the discharge channel is closed.

[0009] Technical effects: the hollow through hole is formed by gradually opening the closing assembly from the middle, so that the material on each closing plate is not gathered together, and the closing plates are not stuck with the bucket body during the movement.

[0010] In a possible implementation, the plurality of closing plates are closely arranged and abut against each other; when the closing assembly is switched from the folded state to the unfolded state, the adjacent two closing plates slide along the abutting edges.

[0011] In a possible implementation, the switching device further comprises a rotating member, the rotating member is connected with the connecting part and the plurality of closing plates respectively, and the closing plates are arranged between the rotating member and the connecting part.

[0012] When the material taking device is connected with the connecting part, the connecting part is driven to rotate, the connecting part drives the rotating member to rotate, and the rotating member drives at least part of the edges of the closing plates to move away from or close to the discharge channel.

[0013] In a possible implementation, a first limiting structure is arranged between the closing plate and the rotating member, and is configured to limit the displacement of the at least partial edge of the closing plate moving towards or away from the discharge passage.

[0014] In a possible implementation, the first limiting structure comprises a first limiting slot and a first sliding member, one of which is arranged on the closing plate, and the other is arranged on the rotating member.

[0015] The first limiting slot is further provided with a first end point and a second end point, the distance from the first end point to the axis of the rotating shaft is less than the distance from the second end point to the axis of the rotating shaft, and when the first sliding member slides along the first limiting slot from the first end point to the second end point, the at least partial edge of the closing plate moves away from the discharge passage.

[0016] Technical effects: since the distance from the first end point to the axis of the rotating shaft is less than the distance from the second end point to the axis of the rotating shaft, the first sliding member gradually moves away from the center of the rotating shaft when driven to move, thereby gradually converting the closing assembly from the folded state to the unfolded state. In this way, the first sliding member only needs to slide along the first limiting slot to realize the conversion of the closing assembly from the folded state to the unfolded state, which is simple in structure and convenient to operate.

[0017] In a possible implementation, the first limiting slot penetrates the rotating member, and the first sliding member is inserted into the first limiting slot from the side of the rotating member close to the closing plate.

[0018] In a possible implementation, the storage barrel further comprises a partition plate arranged at the lower part of the accommodating cavity, and the switching device is arranged on the partition plate; the outlet end of the discharge passage is in communication with a second opening arranged on the partition plate, and the inlet end of the discharge passage is in communication with a first opening of the accommodating cavity; when the at least partial edge of the closing plate moves away from or close to the discharge passage, the closing plate translates relative to the partition plate.

[0019] In a possible implementation, the partition plate is arranged between the connecting portion and the closing plate, and the partition plate is provided with a second limiting structure configured to limit the displacement of the closing plate translating along the partition plate.

[0020] In a possible implementation, the second limiting structure comprises a second limiting slot and a second sliding member, one of which is arranged on the closing plate, and the other is arranged on the partition plate.

[0021] When the material taking device is driven to rotate to drive the connecting part to rotate, the rotation of the connecting part causes the closing plate to translate on the partition plate, and at this time, the second sliding piece slides in the second limiting groove, so that the at least partial edge of the closing plate moves away from or close to the discharge passage.

[0022] In a possible implementation, the switch device further comprises a rotating piece connected with the connecting part and the closing assembly, and the reset piece is connected with the rotating piece.

[0023] In a possible implementation, the partition plate is provided with a through groove, the connecting part is provided with a buckle, and the buckle is connected with the rotating piece by passing through the through groove and the partition plate.

[0024] In a possible implementation, the through groove is arc-shaped, the arc-shaped through groove extends along the rotation direction of the rotating piece, the buckle slides along the through groove when the connecting part rotates, and the arc-shaped through groove is used to limit the rotation displacement of the connecting part.

[0025] Technical effects: The through groove is designed to be arc-shaped, so that when the rotating piece rotates, the arc-shaped hole extends along the rotation direction, thereby providing rotation limitation and guidance within a certain range for the rotating piece, preventing excessive rotation, and also making the rotation more convenient.

[0026] In a possible implementation, the storage barrel further comprises a reset piece, the reset piece is in transmission connection with the connecting part, the connecting part is driven to rotate to open the discharge passage, the reset piece stores energy, and the reset piece is released to drive the connecting part to reverse rotation and reset, so that the discharge passage is closed.

[0027] In a possible implementation, the switch device further comprises a rotating piece connected with the connecting part and the closing assembly, and the reset piece is connected with the rotating piece; the connecting part is driven to rotate to drive the rotating piece to rotate, the reset piece stores energy when the rotating piece rotates, the reset piece is released to drive the rotating piece to reverse rotation and reset, so that the connecting part is reset.

[0028] Technical effects: The reset piece can reduce the operation steps of the user and improve the convenience of use.

[0029] In a possible implementation, the reset piece is a spring, one end of the spring is fixed with the rotating piece, and the other end of the spring is fixed with the rest of the storage barrel.

[0030] In a possible implementation, the storage barrel further comprises an elastic hose for forming a discharging channel, a first end of the elastic hose being in communication with the first opening to form an inlet end of the discharging channel, and a second end of the elastic hose forming an outlet end of the discharging channel; when the material taking device is connected to the connecting part, the connecting part is driven to rotate to drive the second end of the elastic hose to rotate relative to the first end of the elastic hose, so that the wall of the elastic hose is twisted to cut off the discharging channel.

[0031] Technical effects: since only the elastic hose needs to be twisted, the material is always discharged inside the elastic hose or cut off, so that the storage barrel can effectively prevent the material from being stuck, and the reliability of the structure of the storage barrel is improved.

[0032] In a possible implementation, the switch device further comprises a rotating member connected to the connecting part, and the second end of the elastic hose is fixedly connected to the rotating member; the connecting part is driven to rotate to drive the rotating member to rotate, and the rotating member drives the second end of the elastic hose to rotate relative to the first end of the elastic hose.

[0033] In a possible implementation, the rotating member is provided with a first through hole in communication with the discharging channel, and a second connecting part is arranged along the circumference of the first through hole, and the second end of the elastic hose is sleeved on the outer circumference of the second connecting part.

[0034] In a possible implementation, when taking the material, the material taking device is sleeved on the outer circumference of the connecting part and is clamped with the outer circumference of the connecting part, and when being driven to rotate, the connecting part is driven to rotate, and the switch device is further driven to open or close the discharging channel.

[0035] In a possible implementation, when taking the material, the top of the material taking device extends into the through hole of the connecting part and is clamped with the inner wall of the through hole, and when being driven to rotate, the connecting part is driven to rotate, and the switch device is further driven to open or close the discharging channel.

[0036] In a possible implementation, the material taking device is a prismatic shape, the connecting part cooperates with the prismatic material taking device, so that when the prismatic material taking device is connected to the connecting part, the connecting part is circumferentially limited with the prismatic material taking device, so as to drive the connecting part to rotate when the prismatic material taking device is driven to rotate, and the switch device is further driven to open or close the discharging channel.

[0037] Technical effects: the connection between the material taking device and the connecting part is more convenient, and after the connection, there is enough resistance, so that the connecting part can be driven to rotate when the material taking device is driven to rotate.

[0038] Additional aspects and advantages of the present application will be set forth in part in the following description, and in part will become apparent to those skilled in the art upon examination of the following description, or can be learned by practice of the application. BRIEF DESCRIPTION OF DRAWINGS

[0039] The above and / or additional aspects and advantages of the present application will become apparent and be readily appreciated from the following description, including the accompanying drawings, wherein:

[0040] Figure 1 Fig. 1 shows a schematic diagram of the overall structure of a storage barrel according to an embodiment of the present application;

[0041] Figure 2 Fig. 2 shows a sectional view along the direction A-A of the storage barrel according to an embodiment of the present application; Figure 1

[0042] Figure 3 Fig. 3 shows an exploded view of a partial structure of the storage barrel according to an embodiment of the present application;

[0043] Figure 4 Fig. 4 shows a schematic diagram of the structure of a partition plate of the storage barrel according to an embodiment of the present application;

[0044] Figure 5 Fig. 5 shows a schematic diagram of the structure of an elastic hose of the storage barrel according to an embodiment of the present application.

[0045] BRIEF DESCRIPTION OF DRAWINGS

[0046] Barrel body 10, containing cavity 11, discharge passage 111, switch device 20, connecting portion 21, closing assembly 22, elastic hose 23, material extractor 30, partition plate 40, first limiting groove 51, first sliding member 222, second opening 42, through groove 43, rotating member 50, second limiting groove 41, second sliding member 221, buckle member 52, first through hole 231, clamping groove 211, closing plate 223, reset member 60, second connecting portion 53. DETAILED DESCRIPTION

[0047] The embodiments of the present application will be described in detail below, examples of which are shown in the drawings, wherein the same or similar reference signs represent the same or similar elements or elements having the same or similar functions throughout. The embodiments described below by referring to the drawings are exemplary and are only used to explain the present application, and cannot be understood as a limitation of the present application.

[0048] ​In the description of the utility model, it is necessary to understand that the directions or position relations indicated by the terms "length", "width", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "circumferential" are based on the directions or position relations shown in the drawings, and are only for the convenience of describing the utility model and simplifying the description, and therefore cannot be understood as limiting the utility model.

[0049] In addition, the features limited by "first" and "second" can explicitly or implicitly include one or more features for distinguishing the features, and there is no order or difference.

[0050] In the description of the utility model, unless otherwise specified, the meaning of "multiple" is two or more.

[0051] In the description of the utility model, it should be noted that, unless otherwise specified and limited, the terms "mounting", "connection" and "connection" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or integrally connected; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium, or it can be connected inside two elements. For ordinary skilled in the art, the specific meaning of the above terms in the utility model can be understood according to the specific circumstances.

[0052] The following refers to Figures 1 to 5 , describes the storage barrel according to the utility model embodiment:

[0053] The application provides a kind of storage barrel, as shown in Figures 1 to 3 It includes: barrel 10, barrel 10 has the accommodating cavity 11 of accommodating material, the first opening of accommodating cavity 11 is communicated with discharge passage;Switch device 20 is set to barrel 10, for closing or opening discharge passage, switch device 20 is provided with connecting portion 21;

[0054] Material taking device 30, material taking device 30 is detachably connected with connecting portion 21, and material taking device 30 is driven to rotate and drive switch device 20 to operate when connecting with connecting portion 21, to open or close discharge passage;When discharge passage is opened, material taking device 30 is used to receive the material flowing out of discharge passage.

[0055] It can be understood that the storage barrel provided by the application includes barrel 10, barrel 10 can be square, or it can be circular, the shape of barrel 10 is not limited here. The material of barrel 10 can be plastic, or it can be metal, etc. Here, it is not limited.

[0056] It can be understood that the barrel 10 is provided with a containing cavity 11, which is a cavity inside the barrel 10 and is used for containing materials. The materials can be rice, wheat, millet, and other grains, which are not specifically limited here. The containing cavity 11 is provided with a discharge passage, which is used for taking out the materials in the containing cavity 11. The discharge passage can be arranged at the bottom of the barrel 10, or at any side of the barrel 10, or at the intersection of the bottom and the side of the barrel 10. The arrangement of the discharge passage makes it convenient to take out the materials in the barrel.

[0057] The switch device 20 is arranged at the discharge passage and is used for closing or opening the discharge passage, that is, the opening and closing of the discharge passage is directly controlled by the switch device 20. The connecting part 21 is arranged on the switch device 20 and is detachably connected with the material taking device 30. When the materials in the barrel are taken, the material taking device 30 is connected with the connecting part 21, and then drives the switch device 20 to open the discharge passage when rotating, so that the materials in the barrel are discharged. It can be understood that the connecting part 21 is provided with an outlet communicating with the discharge passage. After the taking is completed, the connecting part 21 is driven by the reverse driving force to rotate, so that the switch device 20 closes the discharge passage. In this way, the opening or closing of the discharge passage can be indirectly controlled by the material taking device 30, without the need to arrange a special control part, so that the structure of the material storage barrel is simplified, the production cost is reduced, and the use is more convenient.

[0058] It can be understood that the material taking device 30 and the connecting part 21 can be matched by the clamping structures arranged on the material taking device 30 and the connecting part 21. The clamping structures can be clamping protrusions, clamping grooves, or elastic matching parts arranged on the material taking device 30 and the connecting part 21, which are not specifically limited here. The material taking device 30 and the connecting part 21 can also be matched without arranging special clamping structures therebetween. In this implementation manner, the material taking device 30 can be sleeved outside the connecting part 21 or can be penetrated into the inner cavity of the connecting part 21. At this time, the material taking device 30 can be prismatic, so that the connecting part 21 can be driven to rotate by the material taking device 30, and then the switch device 20 can be opened or closed to open or close the discharge passage.

[0059] In the above implementation manner, the material taking device 30 can also be circular. In this case, when the material taking device 30 is sleeved outside the connecting part 21 or is penetrated into the connecting part 21, the connecting part 21 is in close contact with the inner cavity of the material taking device 30, or one of the connecting part 21 and the material taking device 30 is an elastic structure, so that the two are in close contact after being sleeved, so that the material taking device 30 can drive the connecting part 21 to rotate.

[0060] In a possible implementation, the storage barrel further comprises a base fixedly connected with the barrel body 10. The base is designed in an integral or detachable manner with the barrel body 10. The base is internally provided with a material taking cavity, the connecting portion 21 on the switch device 20 is arranged in the material taking cavity or is in communication with the material taking cavity through a communication device, and the material taker 30 can be extended into the material taking cavity to be connected with the connecting portion 21, thereby driving the switch device 20 to open or close the discharging passage when driven.

[0061] In a possible implementation, the switch device 20 comprises a closing assembly 22 arranged in the discharging passage and in transmission connection with the connecting portion 21. When the material taker 30 is connected with the connecting portion 21, the connecting portion 21 is driven to rotate, thereby driving the closing assembly 22 to move, so that the closing assembly 22 is switched between the unfolded state and the folded state. When the closing assembly 22 is in the unfolded state, the closing assembly 22 avoids the discharging passage, so that the discharging passage is opened. When the closing assembly 22 is in the folded state, the closing assembly 22 covers the discharging passage, so that the discharging passage is closed.

[0062] In the above implementation, the switch device 20 comprises the closing assembly 22, which can close or open the discharging passage, so as to ensure that the material in the barrel will not leak out when the material is not taken, and the discharging passage can be opened when the material is needed to be taken. The material taker 30 connected with the connecting portion 21 can be driven, thereby switching the closing assembly 22 between the unfolded state and the folded state, which is convenient and simple to operate.

[0063] It can be understood that the closing assembly 22 for closing the discharging passage can be a closing plate 223 or a piston structure.

[0064] In a possible implementation, referring to Figure 2 and Figure 3 the closing assembly 22 comprises a plurality of closing plates 223 abutting against each other. When the closing assembly 22 is switched from the folded state to the unfolded state, at least part of the edges of the closing plates 223 move away from the discharging passage, so that the plurality of closing plates 223 in the unfolded state are close to the inner side of the discharging passage to form a hollow through hole in communication with the discharging passage, so as to facilitate the material flowing out of the discharging passage to pass through the hollow through hole into the material taker 30. When the closing assembly 22 is switched from the unfolded state to the folded state, at least part of the edges of the closing plates 223 move close to the discharging passage, so that the hollow through hole is closed and the discharging passage is closed.

[0065] In the above embodiment, when the closing assembly 22 is in the closed state, the plurality of closing plates 223 are aligned and tightly abutted with each other, forming a complete closing structure, effectively preventing the leakage of the material in the accommodating cavity 11 or the entry of external moisture, and preventing the material in the accommodating cavity 11 from mildewing; when the material needs to be taken out, the closing assembly 22 is switched from the closed state to the open state, and at least part of the edge of the closing plate 223 moves away from the discharging passage, so that the plurality of closing plates 223 in the open state are close to the inner side of the discharging passage to form a hollow through hole in communication with the discharging passage, and the hollow through hole is in communication with the discharging passage, so that the material in the accommodating cavity 11 flows out. In this way, since the closing assembly 22 is gradually opened from the middle to form the hollow through hole, the material on each closing plate 223 is not gathered together, reducing the possibility of the closing plate 223 being stuck during movement.

[0066] In a possible embodiment, referring to Figure 3 , the plurality of closing plates 223 are tightly arranged and abutted with each other; when the closing assembly 22 is switched from the closed state to the open state, the two adjacent closing plates 223 slide along the abutting edges.

[0067] In the above embodiment, the plurality of closing plates 223 are tightly arranged and abutted with each other, effectively preventing the leakage of the material in the accommodating cavity 11 or the entry of external moisture, and preventing the material in the accommodating cavity 11 from mildewing; when the closing assembly 22 is switched from the closed state to the open state, the two adjacent closing plates 223 slide along the abutting edges, making it more convenient to separate the adjacent closing plates 223, and the closing assembly 22 is more convenient to open, and the material is more convenient to flow out.

[0068] In a possible embodiment, referring to Figure 2 and Figure 3The switch device 20 further comprises a rotating member 50 connected with the connecting part 21 and the plurality of closing plates 223 respectively, and the closing plates 223 are arranged between the rotating member 50 and the connecting part 21. When the material taking device 30 is connected with the connecting part 21, the material taking device 30 is driven to rotate to drive the connecting part 21 to rotate, the connecting part 21 drives the rotating member 50 to rotate, and the rotating member 50 drives the at least partial edge of the closing assembly 22 to move towards the direction of approaching or moving away from the discharging channel. In the above embodiment, the rotating member 50 is connected with the connecting part 21 and the closing assembly 22 respectively. When the material taking device 30 is connected with the connecting part 21, the material taking device 30 is driven to drive the connecting part 21 to rotate. Since the connecting part 21 is also connected with the rotating member 50, the rotating member 50 is driven to rotate, and the rotation of the rotating member 50 drives the at least partial edge of the closing assembly 22 to move towards the direction of approaching or moving away from the discharging channel, so as to switch the closing assembly 22 between the unfolded state and the folded state. The closing assembly 22 can be partially opened or fully opened. Specifically, according to the number or area of the opening, the material flow amount per unit time can be effectively controlled, so that the amount of material to be taken is more accurate.

[0069] It can be understood that the rotating member 50 is fixedly connected with the connecting part 21, and the connecting part 21 directly drives the rotating member 50 to rotate. Alternatively, the rotating member 50 and the connecting part 21 can be movably connected, and the relative movement between the rotating member 50 and the connecting part 21 drives the rotating member 50 to rotate. The rotating member 50 is an intermediate transition structure for driving the closing assembly 22 to move, and therefore the structure of the rotating member 50 is not limited, which can be a connecting disc, a square plate, a connecting plate, a connecting strip, etc.

[0070] In a possible implementation, referring to Figure 3 The first limiting structure is arranged between the closing plate 223 and the rotating member 50, and is used to limit the displacement of the at least partial edge of the closing plate 223 moving towards the direction of approaching or moving away from the discharging channel.

[0071] In the above embodiment, the first limiting structure is arranged between the closing assembly 22 and the rotating member 50. When the material taking device 30 is connected with the connecting part 21, the material taking device 30 is driven to rotate to drive the connecting part 21 to rotate, the connecting part 21 drives the rotating member 50 to rotate, and the rotating member 50 drives the at least partial edge of the closing assembly 22 to move. When the closing assembly 22 is switched between the unfolded state and the folded state, the first limiting structure can prevent the closing assembly 22 from rotating too much when unfolded or folded, i.e., limit the displacement of the movement, prevent the structure of the closing assembly 22 from failing, improve the reliability of the closing assembly 22, and further improve the service life of the storage barrel.

[0072] In a possible implementation, referring to Figure 3The first limiting structure comprises a first limiting slot 51 and a first sliding member 222, one of the first limiting slot 51 and the first sliding member 222 is arranged on the closing plate 223, and the other is arranged on the rotating member 50; the first limiting slot 51 is further provided with a first end point and a second end point, the distance from the first end point to the rotating shaft axis is less than the distance from the second end point to the rotating shaft, and when the first sliding member 222 slides along the first limiting slot 41 from the first end point to the second end point, the at least partial edge of the closing plate 223 moves away from the discharging channel.

[0073] In the above embodiment, since the distance from the first end point to the rotating shaft axis is less than the distance from the second end point to the rotating shaft, when the first sliding member 222 is driven to move, it gradually moves away from the center of the rotating shaft, and thus the closing assembly 22 gradually converts to the unfolded state. In this way, the first sliding member 222 only needs to slide along the first limiting slot 51 to realize the conversion of the closing assembly 22 from the folded state to the unfolded state, which is simple in structure and convenient to operate.

[0074] It can be understood that the first limiting slot 51 can be a slot with a bottom wall arranged on the closing assembly 22 or the rotating member 50, or a through hole penetrating the closing assembly 22 or the rotating member 50. The first sliding member 222 can be a protruding structure such as a column arranged on the closing assembly 22 or the rotating member 50. It can also be a ball, a pulley, etc., which is not limited here.

[0075] In a possible implementation, referring to Figure 3 The first limiting slot 51 penetrates the rotating member 50, and the first sliding member 222 is inserted into the first limiting slot 51 from the side of the rotating member 50 close to the closing plate 223. Since the first limiting slot 51 penetrates the rotating member 50, when the first sliding member 222 is inserted into the first limiting slot 51, it can partially protrude from the surface of the first limiting slot 51. In this way, compared with the limiting slot structure without penetration, the frictional resistance between the bottom wall of the limiting slot and the first sliding member 222 when the first sliding member 222 slides in the first limiting slot 51 can be reduced, and the sliding efficiency can be improved. At the same time, since the first sliding member 222 can partially protrude from the surface of the first limiting slot 51 after being inserted into the first limiting slot 51, the first sliding member 222 can limit the rotating member 50 in the vertical direction, and the reliability of the connection between the rotating member 50 and the closing assembly 22 can be improved.

[0076] In a possible implementation, referring to Figures 2 to 4The storage barrel further comprises a partition plate 40 arranged at the lower part of the accommodating cavity 11, and the switch device 20 is arranged on the partition plate 40; the outlet end of the discharging channel communicates with a second opening 42 arranged on the partition plate 40, and the inlet end of the discharging channel communicates with the first opening of the accommodating cavity 11; when the at least partial edge of the closure plate 223 moves away from or approaches the discharging channel, the closure plate 223 translates relative to the partition plate 40.

[0077] In the above embodiment, the partition plate 40 is arranged at the lower part of the accommodating cavity 11, the switch device 20 is arranged on the partition plate 40, the outlet end of the discharging channel communicates with the second opening 42 arranged on the partition plate 40, the inlet end of the discharging channel communicates with the first opening of the accommodating cavity 11, the first opening is an opening of the accommodating cavity 11 for flowing out of the material, in order to ensure that the material flows out smoothly after the switch device 20 is opened, the first opening and the second opening 42 are arranged along the same axis. When the at least partial edge of the closure plate 223 moves away from or approaches the discharging channel, the closure plate 223 translates relative to the partition plate 40, and the partition plate 40 supports, separates or protects the switch device 20.

[0078] In a possible implementation, referring to Figure 3 The partition plate 40 is arranged between the connecting part 21 and the closure plate 223, and the partition plate 40 is provided with a second limiting structure for limiting the displacement of the closure plate 223 translating along the partition plate 40.

[0079] In the above embodiment, the partition plate 40 is arranged between the connecting part 21 and the closure plate 223, so that the material taking device 30 does not contact the closure plate 223 when the material taking device 30 is connected to the connecting part 21. A second limiting structure is arranged between the closure plate 223 and the partition plate 40, and when the material taking device 30 is connected to the connecting part 21 and is driven to rotate to drive the connecting part 21 to rotate, the connecting part 21 drives the rotating part 50 to rotate, and the rotating part 50 drives the closure plate 223 to move on the partition plate 40, so that the second limiting structure can prevent the closure plate 223 from rotating too much when the closure plate 223 switches between the unfolded state and the folded state, i.e., limit the displacement of the movement, so that the structure of the closure plate 223 fails, the reliability of the closure assembly 22 is improved, and the service life of the storage barrel is further improved.

[0080] In a possible implementation, referring to Figure 3 The second limiting structure comprises a second limiting groove 41 and a second sliding part 221, one of the second limiting groove 41 and the second sliding part 221 is arranged on the closure assembly 22, and the other is arranged on the partition plate 40.

[0081] When the taking device 30 is connected with the connecting part 21, the connecting part 21 is driven to rotate, and the rotation of the connecting part 21 drives the closing assembly 22 to translate on the partition plate 40. At this time, the second sliding part 221 slides in the second limiting groove 41, so that the at least partial edge of the closing plate 223 moves away from or close to the discharging channel.

[0082] In the above embodiment, when the taking device 30 is connected with the connecting part 21, the connecting part 21 is driven to rotate, and the rotation of the connecting part 21 drives the closing plate 223 to move on the partition plate 40. At this time, the second sliding part 221 slides along the extension direction of the second limiting groove 41, so that the second limiting groove 41 provides a sliding path for the second sliding part 221, and the second sliding part 221 can stably slide along the extension direction of the second limiting groove 41, ensuring the orderliness and accuracy of the sliding process, and further making the closing plate 223 more convenient and reliable in the conversion between the unfolded state and the folded state. Thus, the second sliding part 221 only needs to slide along the second limiting groove 41, and the closing assembly 22 can be converted from the folded state to the unfolded state.

[0083] It can be understood that the second limiting groove 41 can be a groove with a bottom wall arranged on the closing assembly 22 or the rotating part 50, or a through hole penetrating the closing assembly 22 or the rotating part 50. The second sliding part 221 can be a protruding structure such as a column arranged on the closing assembly 22 or the rotating part 50, or a ball, a pulley, etc., which is not limited specifically herein.

[0084] In a possible implementation, referring to Figure 2 and Figure 3 The switch device 20 further comprises a rotating part 50 connected with the connecting part 21 and the plurality of closing plates 223, and the connecting part 21 is connected with the rotating part 50 through the partition plate 40.

[0085] In the above embodiment, the connecting part 21 is connected with the plurality of closing plates 223 through the rotating part 50, so that the connecting part 21 drives the rotating part 50 to rotate when being driven to rotate, and further drives the closing plate 223 to rotate to open the discharging channel. The connecting part 21 itself rotates, and can drive the plurality of closing plates 223 to move to open the discharging channel, which is convenient to operate. Moreover, the connecting part 21 is connected with the rotating part 50 through the partition plate 40, so that the partition plate 40 can isolate the connecting part 21 and the rotating part 50, and the connection and disconnection between the connecting part 21 and the rotating part 50 is also more convenient.

[0086] In a possible implementation, referring to Figure 4 The partition plate 40 is provided with a through groove 43, and the connecting part 21 is provided with a buckle 52. The buckle 52 is connected with the rotating part 50 through the through groove 43 and the partition plate 40.

[0087] It can be understood that the buckle 52 can be a protruding, elastic or non-elastic structure, which is shaped or sized to fit into the slot. When the buckle 52 is an elastic piece, the buckle 52 is detachably connected to the slot. Through the cooperation of the buckle 52 and the slot, the connection process of the connecting part 21 and the rotating part 50 becomes simple and fast, without the need for additional fasteners or tools. At the same time, the clamping cooperation of the buckle 52 and the slot can ensure the stable connection between the connecting part 21 and the rotating part 50, and reduce the risk of loosening or falling off. When the buckle 52 is an elastic piece, when the connecting part 21 and the rotating part 50 need to be disassembled, the buckle 52 only needs to be pressed and removed from the slot, without damaging the connection structure, improving the convenience of maintenance and replacement.

[0088] In a possible implementation, referring to Figure 4 , the through groove 43 is arc-shaped, and the arc-shaped through groove 43 extends along the rotation direction of the rotating part 50. When the connecting part 21 rotates, the buckle 52 slides along the through groove 43. The arc-shaped through groove 43 is used to limit the rotational displacement of the connecting part 21.

[0089] In the above embodiment, the through groove 43 is designed to be arc-shaped, and the arc-shaped through groove 43 extends along the rotation direction of the rotating part 50. Thus, when the rotating part 50 rotates, because the arc-shaped hole extends along the rotation direction, it can provide a certain range of rotation limitation and guidance for the rotating part 50, preventing excessive rotation, and also making the rotation more convenient.

[0090] In a possible implementation, referring to Figure 3 , the storage barrel further comprises a reset piece 60, and the reset piece 60 is in transmission connection with the connecting part 21. When the connecting part 21 is driven to rotate to open the discharge channel, the reset piece 60 stores energy. When the reset piece 60 releases energy, it drives the connecting part 21 to reverse rotation and reset, so that the discharge channel is closed.

[0091] It can be understood that the reset piece 60 can be a spring, a torsional spring or the like. When the connecting part 21 is driven to rotate to open the discharge channel, the reset piece 60 is driven by the connecting part 21 to store energy. When the reset piece 60 releases energy, that is, when the driving force of the connecting part 21 is lost, the reset piece 60 drives the connecting part 21 to reverse rotation and reset, so that the discharge channel is closed.

[0092] In a possible implementation, referring to Figures 2 to 4 , the switch device 20 further comprises a rotating part 50 connected with the connecting part 21 and the sealing assembly 22, and the reset piece 60 is connected with the rotating part 50. The connecting part 21 is driven to rotate to drive the rotating part 50 to rotate. When the rotating part 50 rotates, the reset piece 60 stores energy. When the reset piece 60 releases energy, it drives the rotating part 50 to reverse rotation and reset, so that the connecting part 21 is reset.

[0093] In the above embodiment, when the material taking device 30 is connected with the connecting part 21, the material taking device 30 is driven to rotate to drive the connecting part 21 to rotate, the connecting part 21 is driven to rotate to drive the rotating part 50 to rotate to drive the closing assembly 22 to open the discharging channel, and the restoring part 60 is charged; when the material is taken out, the material taking device 30 is separated from the connecting part 21, the restoring part 60 is driven to rotate under the restoring force to drive the rotating part 50 to rotate, so that the closing assembly 22 closes the discharging channel again. In this way, the operation steps can be reduced, and the convenience of use can be improved.

[0094] In a possible implementation, referring to Figure 3 and Figure 5 , the storage barrel further comprises an elastic hose 23 for forming the discharging channel, a first end of the elastic hose 23 is in communication with the first opening to form an inlet end of the discharging channel, and a second end of the elastic hose 23 forms an outlet end of the discharging channel.

[0095] When the material taking device 30 is connected with the connecting part 21, the material taking device 30 is driven to rotate to drive the second end of the elastic hose 23 to rotate relative to the first end of the elastic hose 23, so that the wall of the elastic hose 23 is twisted to cut off the discharging channel.

[0096] In the above embodiment, when the discharging channel needs to be closed, the material taking device 30 is driven to rotate to drive the second end of the elastic hose 23 to rotate relative to the first end of the elastic hose 23, so that the wall of the elastic hose 23 is twisted to cut off the discharging channel; when the material in the barrel needs to be taken out, the material taking device 30 is reversely driven to drive the second end of the elastic hose 23 to rotate relative to the first end of the elastic hose 23, so that the elastic hose 23 is in conduction with the discharging channel, and the material in the containing cavity 11 flows out. Since only the elastic hose 23 needs to be twisted, the material always flows out or is cut off in the inside of the elastic hose 23, so that the storage barrel can be effectively prevented from being blocked by the material, and the reliability of the structure of the storage barrel is improved.

[0097] In a possible implementation, referring to Figure 3 , the switch device 20 further comprises a rotating part 50 connected with the connecting part 21, and the second end of the elastic hose 23 is fixedly connected with the rotating part 50; the connecting part 21 is driven to rotate to drive the rotating part 50 to rotate, and the rotating part 50 is driven to rotate to drive the second end of the elastic hose 23 to rotate relative to the first end of the elastic hose 23. In this way, only the material taking device 30 needs to be rotated to drive the connecting part 21 to rotate, and then drive the rotating part 50 to rotate to twist the elastic hose 23, so that the discharging channel can be conducted or cut off, the structure is simple, and the operation is convenient.

[0098] In a possible implementation, referring to Figure 5The rotating member 50 is provided with a first through hole communicated with the discharging channel, and a second connecting part 53 is arranged along the circumference of the first through hole, and the second end of the elastic hose 23 is sleeved on the outer circumference of the second connecting part 53. By arranging the first through hole, the material is easy to flow out, and the second connecting part 53 is arranged along the circumference of the first through hole, and the second end of the elastic hose 23 is sleeved on the outer circumference of the second connecting part 53, so that the assembly of the elastic hose 23 is more convenient, and the replacement and maintenance in the later period are also convenient.

[0099] In a possible implementation, when taking rice, the taking device 30 is sleeved on the outer circumference of the connecting part 21 and is connected with the outer circumference of the connecting part 21, and drives the connecting part 21 to rotate when driven to rotate, and in turn drives the switch device 20 to open or close the discharging channel. When taking rice, the taking device 30 only needs to be sleeved on the outer circumference of the connecting part 21, and then the connecting part 21 can be driven to rotate when the taking device 30 is driven to rotate, thereby improving the convenience of use.

[0100] In a possible implementation, when taking rice, the taking device 30 is sleeved on the outer circumference of the connecting part 21 and is connected with the outer circumference of the connecting part 21, and drives the connecting part 21 to rotate when driven to rotate, and in turn drives the switch device 20 to open or close the discharging channel. When taking rice, the taking device 30 only needs to be sleeved on the outer circumference of the connecting part 21, and then the connecting part 21 can be driven to rotate when the taking device 30 is driven to rotate, thereby improving the convenience of use.

[0101] In a possible implementation, the taking device 30 is a prism, and the connecting part 21 cooperates with the prism-shaped taking device 30, so that the connecting part 21 and the prism-shaped taking device 30 are circumferentially limited after the connecting part 21 is connected with the prism-shaped taking device 30, so as to drive the connecting part 21 to rotate when the prism-shaped taking device 30 is driven to rotate, and in turn drives the switch device 20 to open or close the discharging channel. The prism structure can be a triangular prism, a quadrangular prism, or a polygonal prism structure. It can be understood that the taking device 30 is a structure matched with the prism structure, that is, at least at the position where the taking device 30 is connected with the connecting part 21, the structure is consistent with the shape of the connecting part 21 but different in size, so that the connection between the taking device 30 and the connecting part 21 is more convenient, and after the two are connected, there is enough resistance, so that the taking device 30 can drive the connecting part 21 to rotate when driven to rotate.

[0102] In a possible implementation, one of the taking device 30 and the closing device is provided with a clamping part, and the other is provided with a clamping groove, and when taking rice, the clamping part and the clamping groove are matched with each other to realize the connection between the taking device 30 and the connecting part 21. By arranging the clamping part and the clamping groove, the connection between the taking device 30 and the connecting part 21 is more reliable, and at the same time, it is convenient to disassemble, thereby improving the convenience of use. It can be understood that the clamping part can be an elastic clamping part or a non-elastic clamping part.

[0103] In the description of the present specification, the description referring to the terms "some embodiments", "a possible implementation", "further" or "some examples" and the like means that the specific features, structures, materials or characteristics described in connection with the embodiments or examples are included in at least one embodiment or example of the present application. In the present specification, the illustrative description of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.

[0104] Although the embodiments of the present application have been shown and described, those skilled in the art can understand that various changes, modifications, replacements and variations can be made to these embodiments without departing from the principles and spirits of the present application, and the scope of the present application is defined by the claims and their equivalents.

Claims

1. A storage tub, characterized in that, The application relates to a bucket body, a switch device and a material taking device. The switch device is arranged on the bucket body and used for closing or opening the discharging channel. The switch device comprises a closing assembly arranged on the discharging channel and in transmission connection with the connecting part.

2. The storage barrel of claim 1, wherein, When the connecting part is connected with the material taking device and is driven to rotate, the connecting part drives the closing assembly to move, so that the closing assembly is switched between the unfolded state and the folded state. When the closing assembly is in the unfolded state, the closing assembly avoids the discharging channel, so that the discharging channel is opened.

3. The storage barrel of claim 2, wherein, When the closing assembly is in the folded state, the closing assembly covers the discharging channel, so that the discharging channel is closed.

4. The storage barrel of claim 3, wherein, The closing assembly comprises a plurality of closing plates which are in close arrangement and abut against each other.

5. The storage barrel of any one of claims 3 or 4, wherein, When the closing assembly is switched from the folded state to the unfolded state, at least part of the edges of the closing plates moves away from the discharging channel, so that the plurality of closing plates are close to the inner side of the discharging channel in the unfolded state and form a hollow through hole in communication with the discharging channel, so as to facilitate the material flowing out of the discharging channel to enter the material taking device through the hollow through hole. When the closing assembly is switched from the unfolded state to the folded state, at least part of the edges of the closing plates moves close to the discharging channel, so that the hollow through hole is closed and the discharging channel is closed.

6. The storage barrel of claim 5, wherein, The closing plates are in close arrangement and abut against each other.

7. The storage barrel of claim 6, wherein, When the closing assembly is switched from the folded state to the unfolded state, two adjacent closing plates slide along the abutting edges. The switch device further comprises a rotating part connected with the connecting part and the plurality of closing plates and arranged between the connecting part and the closing plates. When the connecting part is connected with the material taking device and is driven to rotate, the connecting part drives the rotating part to rotate, and the rotating part drives at least part of the edges of the closing plates to move close to or away from the discharging channel. First limiting structures are arranged between the closing plates and the rotating part and used for limiting the displacement of at least part of the edges of the closing plates moving close to or away from the discharging channel. The first limiting structures comprise first limiting grooves and first sliding parts, one of which is arranged on the closing plates and the other of which is arranged on the rotating part. The first limiting slot further has a first end point and a second end point, a distance from the first end point to the rotation axis is less than a distance from the second end point to the rotation axis, when the first sliding piece slides along the first limiting slot from the first end point to the second end point, the at least partial edge of the closing plate moves away from the discharging channel.

8. The storage barrel of claim 7, wherein, The first limiting slot penetrates the rotating piece, and the first sliding piece is inserted into the first limiting slot from a side of the rotating piece close to the closing plate.

9. The storage barrel of any one of claims 3 to 4, 6 to 8, wherein, The storage barrel further comprises a partition plate arranged at a lower part of the accommodating cavity, and the switching device is arranged on the partition plate; an outlet end of the discharging channel is communicated with a second opening arranged on the partition plate, and an inlet end of the discharging channel is communicated with a first opening of the accommodating cavity. When the at least partial edge of the closing plate moves away from or close to the discharging channel, the closing plate translates relative to the partition plate.

10. The storage barrel of claim 9, wherein, The partition plate is arranged between the connecting part and the closing plate, and the partition plate is provided with a second limiting structure for limiting the displacement of the closing plate in the translation along the partition plate.

11. The storage barrel of claim 10, wherein, The second limiting structure comprises a second limiting slot and a second sliding piece, one of the second limiting slot and the second sliding piece is arranged on the closing plate, and the other is arranged on the partition plate. When the connecting part is driven to rotate and drives the rotation of the connecting part, the rotation of the connecting part drives the translation of the closing plate on the partition plate, and at this time, the second sliding piece slides in the second limiting slot, so that the at least partial edge of the closing plate moves away from or close to the discharging channel.

12. The storage barrel of any one of claims 10 to 11, wherein, The switching device further comprises a rotating piece connected with the connecting part and the closing assembly, and the resetting member is connected with the rotating piece.

13. The storage barrel of claim 12, wherein, The connecting part is arranged through the through groove of the partition plate and connected with the rotating piece through the buckle.

14. The storage barrel of claim 13, wherein, The through groove is arc-shaped, the arc-shaped through groove extends along the rotation direction of the rotating piece, the buckle slides along the through groove when the connecting part rotates, and the arc-shaped through groove is used for limiting the rotation displacement of the connecting part.

15. The storage tub of any one of claims 3-4, 6-8, 10-11, 13-14, wherein, The storage barrel further comprises a resetting member, and the resetting member is in transmission connection with the connecting part. When the connecting part is driven to rotate and drives the opening of the discharging channel, the resetting member stores force; when the resetting member releases force, the connecting part is reversely rotated and reset, so that the discharging channel is closed.

16. The storage barrel of claim 15, wherein, The switching device further comprises a rotating piece connected with the connecting part and the closing assembly, and the resetting member is connected with the rotating piece. The connecting part is driven to rotate and drives the rotation of the rotating piece, when the rotating piece rotates, the resetting member stores force, and when the resetting member releases force, the rotating piece is reversely rotated and reset, so that the connecting part is reset.

17. The storage barrel of claim 16, wherein, The resetting member is a spring, one end of the spring is fixed with the rotating piece, and the other end is fixed with the rest of the storage barrel.

18. The storage barrel of any one of claims 1 to 4, 6 to 8, 10, 11, 13, 14, 16, 17, further comprising, The storage barrel further comprises an elastic hose for forming a discharging channel, a first end of the elastic hose being in communication with the first opening to form an inlet end of the discharging channel, and a second end of the elastic hose forming an outlet end of the discharging channel; When the material taking device is connected with the connecting part, the second end of the elastic hose is driven to rotate relative to the first end of the elastic hose, so that the tube wall of the elastic hose is twisted to cut off the discharging channel.

19. The storage barrel of claim 18, wherein, The switch device further comprises a rotating member connected with the connecting part, and the second end of the elastic hose is fixedly connected with the rotating member; the connecting part is driven to rotate to drive the rotating member to rotate, and the rotating member drives the second end of the elastic hose to rotate relative to the first end of the elastic hose.

20. The storage barrel of claim 19, wherein, The rotating member is provided with a first through hole in communication with the discharging channel, and a second connecting part is arranged along the circumference of the first through hole, and the second end of the elastic hose is sleeved on the outer circumference of the second connecting part.

21. The storage barrel of any one of claims 1-4, 6-8, 10, 11, 13, 14, 16, 17, 19, 20, further comprising, The material taking device is sleeved on the outer circumference of the connecting part and is clamped with the outer circumference of the connecting part, and when driven to rotate, the connecting part is driven to rotate, and the switch device is further driven to open or close the discharging channel.

22. The storage barrel of any one of claims 1 to 4, 6 to 8, 10, 11, 13, 14, 16, 17, 19, 20, further comprising, The material taking device is sleeved on the outer circumference of the connecting part and is clamped with the outer circumference of the connecting part, and when driven to rotate, the connecting part is driven to rotate, and the switch device is further driven to open or close the discharging channel.

23. The storage barrel of any one of claims 1 to 4, 6 to 8, 10, 11, 13, 14, 16, 17, 19, 20, further comprising, The material taking device is a prism, and the connecting part cooperates with the prism-shaped material taking device, so that after the prism-shaped material taking device is connected with the connecting part, the connecting part is circumferentially limited with the prism-shaped material taking device, so as to facilitate the connecting part to be driven to rotate when the prism-shaped material taking device is driven to rotate, and the switch device is further driven to open or close the discharging channel.