A bidirectional rotatable moisture-proof intelligent storage bin for wheat

By designing a bidirectional rotatable moisture-proof intelligent storage bin for wheat, and utilizing components such as partitions and stirring rods, aged wheat and new wheat can be stored separately. This solves the problem of mixed infectious diseases and pests in aged and new grains, reduces manual labor, promotes ventilation for new wheat, screens out bad wheat, and simplifies the operation process.

CN119744659BActive Publication Date: 2025-11-14SHANDONG LUYAN SEED CO LTD
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Patent Information

Application Number
CN202510153360.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-02-12
Publication Date
2025-11-14
Estimated Expiration
2045-02-12

AI Technical Summary

Technical Problem

In existing technologies, mixing old and new grains can easily lead to the spread of infectious diseases and pests, damaging good grains. Furthermore, frequent transfer of old grains and cleaning of storage towers require a lot of manual labor and time.

Method used

Design a bidirectional rotatable moisture-proof intelligent storage bin for wheat. The storage of aged wheat and new wheat is achieved by rotating the partition plate and partition sheet. The wheat is transferred and stirred by the rotating rod driving the stirring rod and scraper. Insect control and ventilation are carried out by fumigation pipe and ventilation pipe. The cleaning and discharge are carried out by sealing curtain and discharge scraper.

Benefits of technology

This technology enables the separation of aged and new wheat within the same storage silo, reducing manual transfer time, preventing the spread of pests and diseases, promoting ventilation and heat dissipation for new wheat, screening out bad wheat, and simplifying the operation process.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention relates to the field of grain storage technology, and more particularly to a bidirectional rotatable, moisture-proof intelligent storage bin for wheat, comprising a storage bin, a storage cover, and fixing rods; the storage cover is detachably connected to the storage bin; the side walls of the storage bin are made of metal mesh, and the bottom of the storage bin has a discharge hole for discharging wheat; several fixing rods are fixed to the storage bin; each fixing rod has a groove, and an electric slider is slidably connected to each groove. This invention uses clockwise rotation of the separator to connect the corresponding groove with the through groove, transferring aged wheat to the area below the separator; then, counterclockwise rotation of the separator disconnects the corresponding groove from the through groove, completely separating the aged wheat and placing new wheat on top of the separator. This achieves the storage of aged and new wheat in the same storage bin, reducing the time spent manually transferring aged wheat.
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Description

Technical Field

[0001] This invention relates to the field of grain storage technology, and in particular to a bidirectional rotatable moisture-proof intelligent storage bin for wheat. Background Technology

[0002] To ensure the animals' feeding needs are met and to mix and process the feed on-site according to specific nutritional requirements, small and medium-sized farms purchase large quantities of wheat and store it in feed silos. To guarantee a continuous feed supply, farms typically purchase new wheat while there is still some wheat remaining in the feed silos. However, mixing old and new feed can easily lead to cross-infection of diseases and pests, damaging the healthy feed. Therefore, farms usually remove any unused old wheat from the feed silos before storing new wheat, and thoroughly clean the silos after emptying them before storing new wheat. While this method effectively prevents the aforementioned problems, the frequent removal of old wheat and cleaning of the feed silos requires a significant amount of manual labor, and the entire process is time-consuming, increasing storage time and operational complexity. Summary of the Invention

[0003] To overcome the drawback of requiring a large amount of manual labor and time to transfer unused old wheat from the storage tower before storing new wheat in order to prevent the spread of pests and diseases caused by mixing old and new wheat, this invention provides a bidirectional rotatable moisture-proof intelligent storage bin for wheat.

[0004] The technical implementation of this invention is as follows: A bidirectional rotatable moisture-proof intelligent storage bin for wheat includes a storage bin and a storage cover; the storage cover is detachably connected to the storage bin; the side wall of the storage bin is made of metal mesh, and the bottom of the storage bin has a discharge hole for discharging wheat; it also includes fixed rods, a partition plate, a rotating rod, a sealing curtain, an electric slider, and a fixing ring; several fixed rods are fixedly connected to the storage bin; each fixed rod has a groove, and an electric slider is slidably connected in each groove; all the electric sliders are fixedly connected to a partition plate, and the partition plate has several through slots; a partition piece is rotatably connected to the partition plate, and the partition piece... The upper part has a corresponding groove of the same size as the through groove; several arc-shaped racks are fixedly connected to the partition plate, and several gears are set on the partition plate, each gear meshing with the arc-shaped rack; a rotating rod is rotatably connected to the storage bin, and the bottom end of the rotating rod passes through the storage bin and is fixedly connected to the output end of an external motor; several stirring rods for stirring wheat are set on the rotating rod; the position of the through groove corresponds to the position of the stirring rods; a fixing ring is fixedly connected to the storage bin; a sealing curtain for sealing the storage bin is set on the fixing ring; each fixing rod has a second sliding groove, and an electric slider is slidably connected in each second sliding groove; all electric sliders are fixedly connected to the upper side of the sealing curtain.

[0005] More preferably, it also includes scraper bars; each stirring rod has a scraper bar on its underside for cleaning the partition plates and dividers.

[0006] More preferably, it also includes a fumigation tube; the rotating rod is hollow inside; the rotating rod is connected to a fumigation tube for introducing fumigation gas; each stirring rod has several through holes, and each through hole is equipped with a filter screen for intercepting wheat impurities and wheat.

[0007] More preferably, it also includes a separator ring; the separator ring is slidably connected inside the rotating rod, and the separator ring slides inside the rotating rod by an electric slider; the bottom of the separator ring is connected to a ventilation pipe; the ventilation pipe is a flexible hose, which is initially located below the fumigation pipe.

[0008] More preferably, it also includes a discharge scraper; the discharge scraper is fixedly connected to the rotating rod; the discharge scraper contacts the bottom of the storage bin.

[0009] More preferably, the upper inner side of the sealing curtain is provided with bristles for cleaning the storage compartment.

[0010] More preferably, the inside of the sealing curtain is coated with an antistatic coating.

[0011] More preferably, it also includes a discharge pipe, a drive unit, and a discharge guide block; the bottom of the storage compartment is connected to the discharge pipe; the discharge pipe is located inside the discharge hole; the drive unit is fixedly connected to the discharge pipe; and the output end of the drive unit is fixedly connected to a discharge guide block for guiding wheat.

[0012] More preferably, it also includes a collection trough and a collection frame; the collection trough is fixedly connected to the fixing ring; and the collection frame is detachably connected to the bottom of the storage compartment.

[0013] More preferably, the lower part of the feeding guide block is composed of a filter screen, and an air pump is installed inside the feeding guide block.

[0014] Compared with the prior art, the present invention has the following advantages: The present invention uses clockwise rotation of the separator to connect the corresponding slot with the through slot, transferring aged wheat to the bottom of the separator plate. By rotating the separator counterclockwise, the corresponding slot is de-connected to the through slot, completely separating the aged wheat and placing new wheat on top of the separator plate. This achieves the storage of aged wheat and new wheat in the same storage compartment, reducing the time spent on manually transferring aged wheat.

[0015] The rotating rod drives the scraper to rotate, which moves the compacted, hard-to-fall-off old wheat downwards.

[0016] By driving the rotating rod to rotate the stirring rod, the new wheat and old wheat are stirred, which promotes ventilation and heat dissipation of the new wheat, so that the new wheat can be ventilated quickly and avoid the phenomenon of new wheat becoming damp and moldy. Ventilation is carried out inside the rotating rod, so that the stirring rod actively ventilates the new wheat while rotating, thus promoting the ventilation of the new wheat.

[0017] Gas is pumped out by the built-in air pump of the feeding guide block and blown out onto the wheat passing through the filter screen at the bottom of the feeding guide block. This blows out the killed insects and the wheat that has been hollowed out by insects, causing them to drift a greater distance and fall outside the collection bucket. The intact wheat is guided by the feeding guide block to fall into the collection bucket, thus filtering out the dead insects and hollowed-out wheat mixed in with the intact wheat. Attached Figure Description

[0018] Figure 1 This is a schematic diagram of the first three-dimensional structure of the bidirectional rotatable moisture-proof intelligent storage bin for wheat according to the present invention.

[0019] Figure 2 This is a schematic diagram of the second three-dimensional structure of the bidirectional rotatable moisture-proof intelligent storage bin for wheat according to the present invention;

[0020] Figure 3 yes Figure 2 Enlarged view of point A;

[0021] Figure 4 This is a three-dimensional structural diagram of the storage compartment, fixing rod, and storage cover assembly of the present invention;

[0022] Figure 5 This is a three-dimensional structural diagram of the combination of the partition plate, rotating rod, and stirring rod of the present invention;

[0023] Figure 6 This is a schematic diagram of the three-dimensional structure of the partition plate and through groove combination of the present invention;

[0024] Figure 7 yes Figure 6 Enlarged view of point B;

[0025] Figure 8 This is a three-dimensional structural diagram of the combined stirring rod, scraper bar, and discharge scraper bar of the present invention.

[0026] Figure 9 This is a three-dimensional structural diagram of the combination of the fumigation tube, the partition ring, and the ventilation tube of the present invention;

[0027] Figure 10 This is a three-dimensional structural diagram of the combination of the fixing ring, the feeding guide block, and the collecting groove of the present invention;

[0028] Figure 11 This is a three-dimensional structural diagram of the combined discharge pipe and discharge guide block of the present invention;

[0029] Figure 12 This is a three-dimensional structural diagram of the combined discharge pipe, drive component, and discharge guide block of the present invention.

[0030] Figure 13 This is a three-dimensional structural diagram of the combination of the driving component and the unloading guide block of the present invention;

[0031] Figure 14 This is a schematic diagram of the three-dimensional structure of the partition plate, partition sheet and corresponding groove combination of the present invention.

[0032] The components in the attached diagram are labeled as follows: 1-Storage bin, 1001-Discharge hole, 2-Fixing rod, 2001-Slide groove one, 2002-Slide groove two, 3-Divider plate, 3001-Through groove, 3002-Divider piece, 3003-Corresponding groove, 4-Rotating rod, 4001-Stirring rod, 4002-Scraper strip, 5-Sealing curtain, 5001-Electric slider two, 101-Storage cover, 102-Electric slider one, 103-Fumigation tube, 104-Divider ring, 10401-Ventilation tube, 105-Fixing ring, 106-Discharge scraper strip, 201-Discharge pipe, 202-Drive component, 203-Discharge guide block, 204-Collection trough, 205-Collection frame. Detailed Implementation

[0033] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention. Example 1

[0034] like Figures 1-9 and Figure 14 As shown, a bidirectional rotatable moisture-proof smart storage bin for wheat includes a storage bin 1 and a storage cover 101; the storage cover 101 is detachably connected to the storage bin 1; the side wall of the storage bin 1 is made of metal mesh, and the bottom of the storage bin 1 is provided with a discharge hole 1001.

[0035] It also includes a fixed rod 2, a partition plate 3, a rotating rod 4, a sealing curtain 5, an electric slider 102, and a fixing ring 105; two fixed rods 2 are fixedly connected to the storage compartment 1; each fixed rod 2 has a groove 2001, and an electric slider 102 is slidably connected in each groove 2001; all electric sliders 102 are fixedly connected to the partition plate 3, which has three through slots 3001; a partition plate 3002 is rotatably connected to the partition plate 3, and the partition plate 3002 has a corresponding slot 3003 of the same size and position as the through slots 3001; three arc-shaped racks are fixedly connected to the partition plate 3002, and three gears are provided on the partition plate 3, each gear meshing with the arc-shaped racks; the gears are driven to rotate by an external motor. Then, the gear drives the arc-shaped rack meshing with it to slide, driving the partition plate 3002 to rotate; a rotating rod 4 is rotatably connected to the storage chamber 1, and the bottom end of the rotating rod 4 passes through the storage chamber 1 and is fixedly connected to the output end of the external motor; several stirring rods 4001 are provided on the rotating rod 4; the position of the through groove 3001 corresponds to the position of the stirring rod 4001; a fixing ring 105 is fixedly connected to the storage chamber 1; a sealing curtain 5 is provided on the fixing ring 105; a second sliding groove 2002 is opened on each fixing rod 2, and an electric slider 5001 is slidably connected in each second sliding groove 2002; all the electric sliders 5001 are fixedly connected to the upper side of the sealing curtain 5, and the electric sliders 5001 slide upward along the second sliding groove 2002, driving the sealing curtain 5 to open and seal the storage chamber 1.

[0036] It also includes scraper bars 4002; each stirring rod 4001 has a scraper bar 4002 on its underside.

[0037] It also includes a fumigation tube 103; the rotating rod 4 is hollow inside; the fumigation tube 103 is connected to the rotating rod 4; each stirring rod 4001 has several through holes, and each through hole is equipped with a filter screen.

[0038] It also includes a partition ring 104; the partition ring 104 is slidably connected inside the rotating rod 4, and the partition ring 104 is driven to slide inside the rotating rod 4 by an electric slider; the bottom of the partition ring 104 is connected to a ventilation pipe 10401; the ventilation pipe 10401 is a flexible hose, which is initially located below the fumigation pipe 103.

[0039] It also includes a discharge scraper 106; the discharge scraper 106 is fixedly connected to the rotating rod 4; the discharge scraper 106 is in contact with the bottom of the storage bin 1; the rotation of the rotating rod 4 drives the discharge scraper 106 to rotate, and the discharge scraper 106 pushes the wheat located at the bottom of the storage bin 1 to rotate, so that the wheat can be easily discharged from the discharge hole 1001.

[0040] The upper inner side of the sealing curtain 5 is provided with bristles; the sealing curtain 5 is moved upward by the electric slider 5001, and the action of sealing the storage chamber 1 causes the bristles to contact the side wall of the storage chamber 1, cleaning the insects and dust adhering to the side wall of the storage chamber 1.

[0041] The inner side of the sealing curtain 5 is coated with an antistatic coating to absorb the dust raised during wheat mixing.

[0042] To address the problem that mixing old and new wheat grains can easily lead to cross-infection of diseases and pests, thus harming good grains, and that it is necessary to transfer unused old wheat from the storage tower before storing new wheat, and to clean the storage tower after the old wheat is gone, this invention designs an intelligent storage bin 1 that can store both old and new wheat simultaneously.

[0043] This invention connects to a wireless network. The separator plate 3 and separator piece 3002 are located above the discharge scraper 106. The through groove 3001 is not connected to the corresponding groove 3003. The storage cover 101 is opened, wheat is poured in, and after all the wheat has entered the storage chamber 1, the storage cover 101 is closed, thus completing the wheat storage. When wheat is needed, the separator piece 3002 is driven to rotate clockwise, connecting the through groove 3001 and the corresponding groove 3003. The wheat then enters the location of the discharge scraper 106 and is further discharged from the discharge hole 1001. After a period of use, when new wheat needs to be added to the storage chamber 1, before the new wheat enters the chamber, the operator sends a command to this invention via the wireless network. This drives the gear on the separator plate 3 to rotate via an external motor, which in turn drives the arc-shaped rack meshing with it to slide. The arc-shaped rack drives the separator piece 3002, which is fixed to it, to rotate clockwise, connecting the corresponding groove 3003 and the through groove 3001. Then, the electric slider 102 is driven to move upward along the slide groove 2001. The electric slider 102 drives the separator 3 upward, and the separator 3002 moves upward along with it. During this movement, because the through groove 3001 corresponds to the stirring rod 4001, the separator 3 is not obstructed by the stirring rod 4001. Furthermore, before the movement, the corresponding groove 3003 is connected to the through groove 3001. Therefore, during the movement of the separator 3, the aged wheat on the separator 3 will fall downward from the through groove 3001. After all the aged wheat has fallen below the separator 3, the electric slider 102... When the sliding block 102 stops moving upward, the separator 3002 rotates counterclockwise. It stops rotating when the corresponding groove 3003 on the separator 3002 is not connected to the through groove 3001. At this time, the aged wheat is completely sealed under the separator 3 by the separator 3 and the separator 3002. Then, the storage cover 101 is opened, and the new wheat is poured into the storage chamber 1 for storage, completely separating the aged wheat and the new wheat to avoid the aged wheat and the new wheat from mixing and spreading diseases and pests, which would harm the good grain.

[0044] It should be noted that due to prolonged storage, the aged wheat becomes compacted, and some of it clumps together. This compaction reduces its fluidity, making it difficult for the aged wheat to fall off the separator plate 3. Even when the corresponding groove 3003 is connected to the through groove 3001, some aged wheat still remains on the separator plate 3 and is difficult to fall off. In this case, the electric slider 102 drives the separator plate 3 upwards to the underside of the scraper bar 4002. The separator plate 3 and the scraper bar 4002 then... Figure 5 As shown, the rotating rod 4 is then driven to rotate, which in turn drives the scraper 4002 to rotate, pushing the old wheat that is difficult to fall off the partition plate 3 to rotate. When the old wheat passes through the channel 3001, it falls down from the channel 3001. The rotating rod 4 drives the scraper 4002 to rotate, which transfers the compacted old wheat that is difficult to fall off downwards.

[0045] Furthermore, throughout the entire process of transferring aged wheat, the sealing curtain 5, as... Figure 1 The system fully unfolds, enclosing storage compartment 1. This prevents dust generation during the transfer of aged wheat. After all the aged wheat is transferred below the partition plate 3, the new wheat needs ventilation. Before the new wheat enters the compartment, the electric slider 5001 is driven to move downwards along the slide groove 2002, causing the sealing curtain 5 to move downwards. The sealing curtain 5 stops moving downwards when it is flush with the side of the partition plate 3. Because the upper end of the sealing curtain 5 has bristles, it cleans the side walls of storage compartment 1 as it moves downwards. Insects and dust are blocked by the sealing curtain 5 and fall onto the partition plate 3. Simultaneously, the movement of the sealing curtain 5 drives an external air pump, generating suction force within the rotating rod 4. The through-hole on the stirring rod 4001 also generates suction force, cleaning the bristles at the upper end of the sealing curtain 5. When the sealing curtain 5 stops moving, the electric slider 102 is driven to move the partition plate 3 upwards, allowing the partition plate 3 to align with the scraper strip 4002. Figure 5 As shown, the drive rotating rod 4 rotates, causing the scraper strip 4002 to rotate. At this time, the corresponding groove 3003 and the through groove 3001 are connected. Insects and dust that fall on the partition plate 3 are pushed by the scraper strip 4002 and fall from the through groove 3001 to below the partition plate 3. They move downward through the sealing curtain 5, causing the bristles on it to clean the side wall of the storage compartment 1. At the same time, the scraper strip 4002 pushes the old wheat, transferring the insects and dust that fall on the partition plate 3 during cleaning to below the partition plate 3. This reduces the cleaning steps of the storage compartment 1 after transferring the old wheat. Furthermore, the sealing curtain 5 adapts to the old wheat, sealing it completely and ensuring that the old wheat is not over-ventilated while allowing the new wheat to ventilate smoothly.

[0046] After new wheat is stored in the warehouse, it undergoes vigorous respiration during its post-ripening period, releasing a significant amount of moisture and heat. If this moisture and heat cannot be dissipated in time, it can lead to an increase in grain temperature, uneven temperature distribution, and the new wheat becoming damp and prone to mold. Current methods for ventilation of new wheat typically involve storing it in storage silo 1 for natural ventilation. However, this invention, upon the new wheat entering storage silo 1, uses a drive rod 4 to rotate a stirring rod 4001. The rotation of the stirring rod 4001 agitates both the new and aged wheat, promoting ventilation and heat dissipation in the new wheat, thus preventing dampness and mold growth.

[0047] To further promote ventilation of the wheat, an external air pump is connected to a ventilation pipe 10401, allowing air to pass through the ventilation pipe 10401 and the partition ring 104, enter the rotating rod 4, and then exit through the through hole on the stirring rod 4001. The exhaust air blows towards the wheat, thereby promoting ventilation of the wheat.

[0048] In addition, aged wheat requires fumigation to repel insects, but considering that new wheat needs ventilation and not fumigation, after connecting the pipe of the external air pump to the ventilation pipe 10401, the electric slider connected to the partition ring 104 is first driven to move the partition ring 104 upward inside the rotating rod 4. When the partition ring 104 moves to the upper side of the partition plate 3, it stops moving. At this time, the external pump is turned on, and the air enters the rotating rod 4 through the ventilation pipe 10401 and the partition ring 104. The air cannot be transferred downward to the partition ring 104. At the same time, fumigation gas is introduced from the fumigation pipe 103. Located below the partition ring 104 and blocked by the ventilation pipe 10401 and the external pipe, the fumigation gas is unable to enter the partition ring 104. The fumigation gas is introduced from the stirring rod 4001 located in the aged wheat. After a certain amount of fumigation gas is introduced, the introduction of fumigation gas is stopped. The fumigation gas in the aged wheat is fully fumigated by the stirring action of the stirring rod 4001. At the same time, the stirring rod 4001 located in the new wheat is actively ventilating and assisting the ventilation of the new wheat. By changing the position of the partition ring 104 in the rotating rod 4, the fumigation of the aged wheat and the ventilation of the new wheat are achieved simultaneously.

[0049] After fumigation, the wheat needs to be ventilated to remove the fumigation gases adhering to its surface. At this time, the electric slider connected to the separator ring 104 can be driven to move downwards, causing the separator ring 104 to move downwards inside the rotating rod 4. When the separator ring 104 moves to... Figure 9 When the position shown is reached, the movement of the partition ring 104 stops. During the movement of the partition ring 104, the external pipe connected to the ventilation pipe 10401 is continuously wound up by the winding device, which does not block the rotating rod 4 and affect the movement of the partition ring 104. Then, ventilation is carried out through the external pump to accelerate the discharge of the fumigation gas.

[0050] Considering that the humid air during the plum rain season can easily cause wheat to mold, after the new wheat is ventilated, the electric slider 5001 is driven to move upward along the slide groove 2002, which drives the sealing curtain 5 to seal the storage chamber 1. At the same time, in order to avoid the wheat in the storage chamber 1 accumulating for too long and having poor fluidity, making it difficult for the wheat to come out of the discharge hole 1001, when the wheat is needed, the invention drives the rotating rod 4 to rotate, which drives the discharge scraper 106 to rotate, and pushes out the remaining wheat from the discharge hole 1001. Example 2

[0051] Based on Example 1, such as Figures 10-13 As shown, it also includes a discharge pipe 201, a drive unit 202, and a discharge guide block 203; the bottom of the storage compartment 1 is connected to the discharge pipe 201; the discharge pipe 201 is located inside the discharge hole 1001; the drive unit 202 is fixedly connected to the discharge pipe 201; the drive unit 202 is an electric push rod; the output end of the drive unit 202 is fixedly connected to the discharge guide block 203.

[0052] It also includes a collection trough 204 and a collection frame 205; the collection trough 204 is fixedly connected to the fixing ring 105; and the collection frame 205 is detachably connected to the bottom of the storage compartment 1.

[0053] The lower part of the feeding guide block 203 is composed of a filter screen, and an air pump is installed inside the feeding guide block 203.

[0054] Wheat is discharged from the discharge pipe 201 and falls downward along the inclined surface of the feeding guide block 203. When passing the lower part of the feeding guide block 203, the wheat hollowed out by insects, dust and insects killed by fumigation are blown away by the air pipe and fall into the collection frame 205 and collection trough 204.

[0055] When wheat is stored in storage bin 1, the feeding guide block 203 is attached to the lower part of the discharge pipe 201, and the upper part of the feeding guide block 203 blocks the discharge pipe 201, preventing the wheat from falling out. Before the wheat is discharged from the discharge hole 1001, the collection bucket is placed below the discharge hole 1001, and the output end of the control drive 202 moves downward. At this time, the feeding guide block 203 and the discharge pipe 201 are as follows: Figure 12 As shown, wheat is discharged from the discharge hole 1001. Simultaneously, the rotating rod 4 drives the discharge scraper 106 to rotate, pushing the wheat out of the discharge hole 1001 and ensuring a continuous flow of wheat. Because the insects killed during fumigation and the wheat hollowed out by insects are mixed with the intact wheat, they are all discharged from the discharge hole 1001 together. After being discharged from the discharge hole 1001, the wheat falls onto the surface of the feeding guide block 203 and is guided by the feeding guide block 203 into the collection bucket. The feeding guide block 203 and the discharge pipe 201 are as follows... Figure 12When the feed guide block 203 is activated, the built-in air pump is turned on. The pumped air passes through the filter screen at the bottom of the feed guide block 203. When the wheat passes through the bottom of the feed guide block 203, it is blown around by the pumped air. Since the killed insects and the wheat hollowed out by insects are lighter than the wheat, they are blown a greater distance by the air and fall outside the collection bucket. The intact wheat is guided by the feed guide block 203 into the collection bucket, thus screening out the dead insects and hollowed-out wheat mixed in with the intact wheat.

[0056] Furthermore, to prevent dead insects and hollowed-out wheat that fall outside the collection bucket from accumulating around the storage chamber 1, a collection trough 204 and a collection frame 205 are provided. During the screening of intact wheat, dead insects and hollowed-out wheat that fall outside the collection bucket are collected by the collection frame 205, which is attached to the outer wall of the collection bucket. At the same time, some dead insects and hollowed-out wheat fall towards the collection bucket and are blocked by the sealing curtain 5 on the outside of the storage chamber 1, falling downwards into the collection trough 204.

[0057] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that variations may be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A bidirectional rotatable moisture-proof intelligent storage bin for wheat, comprising a storage bin (1) and a storage cover (101); the storage cover (101) is detachably connected to the storage bin (1); the side wall of the storage bin (1) is made of metal mesh, and the bottom of the storage bin (1) is provided with a discharge hole (1001) for discharging wheat; characterized in that: It also includes a fixed rod (2), a partition plate (3), a rotating rod (4), a sealing curtain (5), an electric slider (102), and a fixed ring (105); several fixed rods (2) are fixedly connected to the storage compartment (1); each fixed rod (2) has a groove (2001) opened on it, and an electric slider (102) is slidably connected in each groove (2001); all the electric sliders (102) are fixedly connected to the partition plate (3), and several through grooves (3001) are opened on the partition plate (3); a partition plate (3002) is rotatably connected to the partition plate (3), and a corresponding groove (3003) of the same size as the through groove (3001) is opened on the partition plate (3002); several arc-shaped racks are fixedly connected to the partition plate (3002) to separate the partitions. A number of gears are provided on the plate (3), each gear meshing with an arc rack; a rotating rod (4) is rotatably connected to the storage bin (1), the bottom end of the rotating rod (4) passing through the storage bin (1) and fixedly connected to the output end of an external motor; a number of stirring rods (4001) for stirring wheat are provided on the rotating rod (4); the position of the through groove (3001) corresponds to the position of the stirring rod (4001); a fixing ring (105) is fixedly connected to the storage bin (1); a sealing curtain (5) for sealing the storage bin (1) is provided on the fixing ring (105); a sliding groove (2002) is provided on each fixing rod (2), and an electric slider (5001) is slidably connected in each sliding groove (2002); all electric sliders (5001) are fixedly connected to the upper side of the sealing curtain (5).

2. The intelligent storage bin for moisture-proof wheat with bidirectional rotatable structure according to claim 1, characterized in that: It also includes scraper bars (4002); each stirring bar (4001) has a scraper bar (4002) on its underside for cleaning the partition plate (3) and the partition sheet (3002).

3. A bidirectional rotatable moisture-proof intelligent storage bin for wheat according to claim 2, characterized in that: It also includes a fumigation tube (103); the rotating rod (4) is hollow inside; the rotating rod (4) is connected to the fumigation tube (103) for introducing fumigation gas; each stirring rod (4001) has several through holes, and each through hole is equipped with a filter screen for intercepting wheat impurities and wheat.

4. A bidirectional rotatable moisture-proof intelligent storage bin for wheat according to claim 3, characterized in that: It also includes a partition ring (104); the partition ring (104) is slidably connected inside the rotating rod (4), and the partition ring (104) slides inside the rotating rod (4) by an electric slider; the bottom of the partition ring (104) is connected to a ventilation pipe (10401); the ventilation pipe (10401) is a flexible hose, which is located below the fumigation pipe (103) in the initial state.

5. A bidirectional rotatable moisture-proof intelligent storage bin for wheat according to claim 1, characterized in that: It also includes a discharge scraper (106); the discharge scraper (106) is fixedly connected to the rotating rod (4); the discharge scraper (106) is in contact with the bottom of the storage bin (1).

6. A bidirectional rotatable moisture-proof intelligent storage bin for wheat according to claim 1, characterized in that: The upper inner side of the sealing curtain (5) is provided with bristles for cleaning the storage compartment (1).

7. A bidirectional rotatable moisture-proof intelligent storage bin for wheat according to claim 1, characterized in that: The inner side of the sealing curtain (5) is coated with an antistatic coating.

8. A bidirectional rotatable moisture-proof intelligent storage bin for wheat according to claim 1, characterized in that: It also includes a discharge pipe (201), a drive unit (202) and a feeding guide block (203); the bottom of the storage bin (1) is connected to the discharge pipe (201); the discharge pipe (201) is located inside the discharge hole (1001); the drive unit (202) is fixedly connected to the discharge pipe (201); the output end of the drive unit (202) is fixedly connected to the feeding guide block (203) for guiding wheat.

9. A bidirectional rotatable moisture-proof intelligent storage bin for wheat according to claim 8, characterized in that: It also includes a collection trough (204) and a collection frame (205); the collection trough (204) is fixedly connected to the fixing ring (105); the bottom of the storage compartment (1) is detachably connected to the collection frame (205).

10. A bidirectional rotatable moisture-proof intelligent storage bin for wheat according to claim 8, characterized in that: The lower part of the feeding guide block (203) is composed of a filter screen, and an air pump is installed inside the feeding guide block (203).

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