CN217457244U - Movable stock bin - Google Patents

Movable stock bin Download PDF

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Publication number
CN217457244U
CN217457244U CN202221468312.1U CN202221468312U CN217457244U CN 217457244 U CN217457244 U CN 217457244U CN 202221468312 U CN202221468312 U CN 202221468312U CN 217457244 U CN217457244 U CN 217457244U
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China
Prior art keywords
bin body
feed bin
feeding
feed
piece
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Active
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CN202221468312.1U
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Chinese (zh)
Inventor
卢正
徐连权
刘珺君
李伟
杨忠营
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Suzhou Huayi New Energy Technology Co ltd
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Suzhou Huayi New Energy Technology Co ltd
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Priority to CN202221468312.1U priority Critical patent/CN217457244U/en
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Abstract

The application relates to a remove feed bin relates to material transport technical field. It includes the feed bin body, removes the wheel and filters the piece, and the feed bin body is provided with feed inlet and discharge gate, and the feed bin body rotates with removing the wheel to be connected, and the feed bin body is provided with the filtration mouth that is used for installing and filters the piece, filters and is provided with exhaust emission mouth. In the feeding process, the feeding hole is communicated with the pipeline seal of other high-position fixed bins, so that materials in other high-position fixed bins can be input into the bin body. After the feeding is finished, the moving wheel is convenient for conveying the stock bin body to a specified discharging place. For open feed bin body among the correlation technique, the removal feed bin of this application has reduced the produced particulate matter of material raise dust and the possibility that the harmful gas that gives off spreads to the air at the in-process of feeding, and then reduces the environmental pollution that the material raise dust brought in the feeding.

Description

Movable stock bin
Technical Field
The application relates to the field of material transportation technology, in particular to a mobile stock bin.
Background
A silo is an auxiliary device used for storing and transporting materials.
In the related art, when materials are stored, the materials are often input into a bin body with an open top, and then the bin body filled with the materials is conveyed to a specified place through a tractor.
In view of the related art in the above, the inventors consider that at least the following problems exist: at the internal in-process with the material input feed bin, the produced particulate matter of material raise dust and the harmful gas who gives off can cause the pollution to the environment in direct spread to the air from the uncovered department of feed bin body.
SUMMERY OF THE UTILITY MODEL
The problem in can follow the uncovered department of feed bin body and spread to the air in order to improve the produced particulate matter of material raise dust and the harmful gas that gives off, this application provides a remove feed bin.
The application provides a remove feed bin adopts following technical scheme:
the utility model provides a remove feed bin, includes the feed bin body, removes the wheel and filters the piece, the feed bin body is provided with feed inlet and discharge gate, the feed bin body with it rotates to connect to remove the wheel, the feed bin body is provided with and is used for the installation filter the filter orifice of piece, it is provided with exhaust emission mouth to filter the piece.
Through adopting above-mentioned technical scheme, at the feeding in-process, with the sealed intercommunication of the pipeline of feed inlet and the fixed feed bin of other high-order, alright import the material in the fixed feed bin of other high-orders to the feed bin body. After the feeding is finished, the moving wheel is convenient for conveying the stock bin body to a specified discharging place. For open feed bin body among the correlation technique, the removal feed bin of this application has reduced the produced particulate matter of material raise dust and the harmful gas who gives off and has spread the possibility to the air in at the in-process of feeding, and then reduces the environmental pollution that the material raise dust brought in the feeding.
Optionally, the feed inlet is connected with the inlet pipe, the inlet pipe is kept away from the inlet pipe with the tip detachably of the junction of feed inlet is connected with rotatory lid, the lateral wall slope of rotatory lid is provided with lug one, the inlet pipe slope be provided with lug two of lug looks gomphosis.
Through adopting above-mentioned technical scheme, through dismantling the back with rotatory lid, again with the sealed intercommunication of the pipeline of inlet pipe and the fixed feed bin of other high positions, and then import the material in the fixed feed bin of other high positions to the feed bin body from the inlet pipe. The first projection and the second projection which are mutually embedded can facilitate the rotary cover to be fixed at the end part of the feeding pipe. Meanwhile, in the process of conveying materials, the rotary cover is arranged at the top of the feeding pipe, so that particles generated by material dust and emitted harmful gas are not easy to diffuse to the air from the top end of the feeding pipe.
Optionally, two relative lateral walls of feed bin body are connected with feeding shelves pole, feeding shelves pole is located the below of feed inlet, just feeding shelves pole is equipped with two branch charge levels, two the top interconnect and the bottom of branch charge level are kept away from each other.
Through adopting above-mentioned technical scheme, at the material continuously get into this internal in-process of feed bin, the both sides wall of feed bin body can be held to feeding shelves pole, reduces the lateral wall of feed bin body and takes place the possibility of bulging because of the material oppression, and two minute charge levels can be concentrated the material that the feed inlet got into and disperse the inside both sides of feed bin body, reduce the concentrated of material and pile up, and then effectively utilize the inner space of feed bin body.
Optionally, the feed bin body is provided with ejection of compact subassembly, ejection of compact subassembly include the driving piece and with the auger that the driving piece is connected, the auger with the feed bin body communicates mutually, just the auger is kept away from the tip of driving piece with the discharge gate is linked together.
Through adopting above-mentioned technical scheme, the driving piece passes through the drive auger and then conveys the inside material of feed bin body to the discharge gate, can effectively promote the efficiency of material ejection of compact.
Optionally, a discharge valve is arranged at the joint of the discharge port and the auger.
Through adopting above-mentioned technical scheme, the feed bin body seals the discharge gate with the bleeder valve at the in-process of feeding and transported substance material, makes the produced particulate matter of material raise dust and the harmful gas that gives off be difficult for scattering to the air from discharge gate department.
Optionally, the tail gas discharge port is connected with a tail gas discharge pipe, and the tail gas discharge pipe is far away from the end part of the stock bin body and is detachably connected with a sealing cover.
Through adopting above-mentioned technical scheme, through dismantling the back with the closing cap, communicate the sealed pipeline of tail gas discharge pipe and other tail gas processing apparatus again, and then be convenient for exhaust emissions to the tail gas processing apparatus in. In the process of conveying materials, the tail gas discharge pipe can be sealed by the sealing cover, so that particles generated by material dust emission and emitted harmful gas are not easy to scatter to the air from the tail gas discharge pipe.
Optionally, the bin body is rotatably connected with a traction frame.
Through adopting above-mentioned technical scheme, when the traction frame is rotatory to the level, accessible tractor pulling traction frame and then drive and remove the wheel and rotate, and then transport the feed bin body to be convenient for transport the material.
Optionally, the bin body is provided with a plurality of air hammers.
Through adopting above-mentioned technical scheme, the air hammer can carry out the reciprocal beat of straight line along the direction of the both sides wall of perpendicular feed bin body lower extreme, when the feeding, can make the material evenly lay in the bottom of feed bin body, and then avoids the inside material of feed bin body to form the bridge.
Optionally, the feed bin body is provided with an observation hole, and the observation hole is fixed with an observation plate in a sealing manner.
Through adopting above-mentioned technical scheme, whether this internal material of feed bin is piled up when can looking over initial feeding through observing the board.
Optionally, the feed bin body is provided with a crawling ladder.
Through adopting above-mentioned technical scheme, the ladder of crawling is convenient for the workman and scrambles to feed bin body roof, is convenient for install rotatory lid and closing cap.
In summary, the present application includes at least one of the following benefits:
1. the moving wheel connected with the bin body in a rotating mode is adopted, so that the bin body can be conveniently conveyed to a specified discharging place.
2. The rotary cover which can be connected in a rotating way is adopted, so that the feeding pipe can be conveniently sealed in the process of conveying materials;
3. the feeding blocking rod is arranged below the feeding port, and in the feeding process, the feeding blocking rod can disperse materials entering the feeding port in a centralized mode to the two sides inside the bin body, so that the concentrated accumulation of the materials is reduced.
Drawings
FIG. 1 is a schematic structural diagram of an embodiment of the present application;
FIG. 2 is a top view of an embodiment of the present application;
FIG. 3 is a cross-sectional view taken along A-A of FIG. 2;
FIG. 4 is an enlarged view at B in FIG. 3;
FIG. 5 is a front view of an embodiment of the present application;
FIG. 6 is a cross-sectional view taken along line D-D of FIG. 5;
fig. 7 is an enlarged view at C in fig. 3.
In the figure: 1. a bin body; 11. a feed inlet; 110. a feed pipe; 111. a first bump; 12; a discharge port; 120. a discharge pipe; 121. a discharge valve; 13. a filter port; 14. a feeding stop lever; 141. distributing the material surface; 15. an access hole; 151. an access cover; 2. a moving wheel; 3. a filter member; 31. a filtering net cage; 310. a support plate; 32. a cover plate; 33. a tail gas discharge port; 330. a tail gas discharge pipe; 331. an annular groove; 4. a rotating cover; 41. a second bump; 5. a discharge assembly; 51. a drive member; 52. a packing auger; 6. a closure cap; 61. a through groove; 62. a rotating member; 620. rotating the block; 621. a connecting rod; 622. a dial block; 7. a traction frame; 8. an air hammer; 9. an observation hole; 91. an observation plate; 10. a climbing ladder.
Detailed Description
The present application is described in further detail below with reference to figures 1-7.
The embodiment of the application discloses remove feed bin. Referring to fig. 1, the movable storage bin comprises a storage bin body 1 and a movable wheel 2, wherein the upper half part of the storage bin body 1 is rectangular, the lower half part of the storage bin body 1 is funnel-shaped, the upper half part and the lower half part of the storage bin body 1 are communicated, and the storage bin body 1 is rotatably connected with the movable wheel 2, so that the storage bin body 1 filled with materials can be conveyed conveniently. Feed bin body 1 rotates and is connected with traction frame 7, and when traction frame 7 was rotatory to the level, accessible tractor pulling traction frame 7 and then drive and remove wheel 2 and rotate, and then transport feed bin body 1 to be convenient for transport the material.
Referring to fig. 1, the perpendicular fixed mounting of the lateral wall of the double-phase relative slope of feed bin body 1 the latter half has a plurality of air hammers 8, and air hammers 8 can carry out the reciprocal beat of straight line along the direction of the both sides wall of perpendicular feed bin body 1 lower extreme, when the feeding, can make the material evenly lay in the bottom of feed bin body 1, and then avoid the material of feed bin body 1 inside to pile up fast and the bridge that forms. The lateral wall of feed bin body 1 runs through and is provided with observation hole 9, and observation hole 9 is sealed to be fixed with transparent observation board 91, can look over through observation board 91 when initial feeding whether the material in feed bin body 1 piles up.
Referring to fig. 1, access hole 15 has been seted up to the roof of feed bin body 1, and access hole 15 bolt fastening has access cover 151, through opening access cover 151 alright overhaul feed bin body 1. Lateral wall fixed mounting of feed bin body 1 has the ladder 10 of crawling, and the ladder 10 of crawling is convenient for the workman to climb to 1 roof of feed bin body, and then climbs to 15 departments of access hole, provides convenient for the maintenance of feed bin body 1.
Referring to fig. 2 and 3, feed inlet 11 has been seted up to 1 roof of feed bin body, feed bin body 1 two relative inside wall fixedly connected with feeding shelves pole 14, and feeding shelves pole 14 is located feed inlet 11 under, feeding shelves pole 14 cross-section is triangle-shaped, feeding shelves pole 14 is equipped with two charge level 141, the top interconnect and the bottom of two charge level 141 are kept away from each other, the in-process in the feed bin body 1 is continuously got into to the material, feed shelves pole 14 can hold the both sides wall of feed bin body 1, reduce the lateral wall of feed bin body 1 and take place the possibility of bulging because of the material oppression. Bipartition charge level 141 can concentrate the material that gets into with feed inlet 11 and disperse the both sides inside feed bin body 1, reduces the concentration of material and piles up, and then effectively utilize the inner space of feed bin body 1.
Referring to fig. 2, 3 and 4, a feed pipe 110 is connected to the feed port 11 and the feed pipe 110 is a circular pipe. The detachably cover in top of inlet pipe 110 is equipped with swivel cap 4, and the inside wall slope of swivel cap 4 is equipped with a plurality of lugs 111, and the outside wall slope of feed inlet 11 is equipped with a plurality of lugs two 41, places swivel cap 4 at the top of feed inlet 11, rotates swivel cap 4 and makes the roof of lugs two 41 turn to the position of laminating mutually with the bottom of lug 111, alright seal locking to feed inlet 11. Before feeding, the rotary cap 4 is detached by rapid rotation. In the in-process of feeding, with the sealed intercommunication of the pipeline of inlet pipe 110 with the fixed feed bin of other high positions, alright import the material in the fixed feed bin of other high positions to feed bin body 1 in, and then make the produced particulate matter of material raise dust and the harmful gas who gives off in difficult from inlet pipe 110 scatter to the air. During the process of conveying materials, a rotary cover 4 is arranged at the top of the feeding pipe 110, so that particles generated by material dust and emitted harmful gas are not easy to diffuse into the air from the top end of the feeding pipe 110.
Referring to fig. 5 and 6, granary body bottom is equipped with the ejection of compact subassembly 5 that the level was placed, ejection of compact subassembly 5 includes driving piece 51 and the auger 52 that is connected with driving piece 51, the auger 52 outside is the pipe structure, auger 52's relative both sides wall difference fixed connection is on the relative both sides wall of the bottom of feed bin body 1, auger 52's roof is located the inside of feed bin body 1 and is linked together with feed bin body 1, the tip that driving piece 51 was kept away from to auger 52 is equipped with discharge gate 12, driving piece 51 through drive auger 52 and then convey the inside material of feed bin body 1 to discharge gate 12, can effectively promote the efficiency of the material ejection of compact.
Referring to fig. 5 and 6, after the feeding is completed, the rotary cap 4 is fixed on the top of the feeding tube 110. The discharge port 12 is communicated and fixed with a discharge pipe 120, the discharge pipe 120 is a lower elbow pipe, the movable storage bin is conveyed to a specified discharge place, then the discharge pipe 120 is communicated with the pipelines of other discharge devices in a sealing manner, and in the discharge process, particulate matters generated by material dust and emitted harmful gas are not easy to be dispersed into the air from the opening of the discharge pipe 120 of the storage bin body 1. A discharge valve 121 is inserted at the connection part of the auger 52 and the discharge port 12, the discharge valve 121 is a butterfly valve, and the discharge valve 121 realizes the opening and closing of the discharge port 12 through rotation. In the process of feeding and moving materials, the discharge port 12 of the bin body 1 is sealed by the discharge valve 121, so that particles generated by material dust and emitted harmful gas are not easy to scatter to the air from the discharge port 12.
Referring to fig. 2, 3 and 7, the top of the bin body 1 is provided with the filter opening 13, the filter opening 13 is fixedly connected with the filter element 3, the filter element 3 comprises a filter net cage 31 and a cover plate 32, the upper edge of the filter net cage 31 is connected with a support plate 310, the top wall of the support plate 310 is attached to the bottom wall of the cover plate 32, the bottom wall of the support plate 310 is attached to the top wall of the bin body 1, and the cover plate 32 and the support plate 310 are fixed to the top wall of the bin body 1 through bolts. The top of the cover plate 32 is provided with a tail gas discharge port 33, and the tail gas discharge port 33 is connected with a tail gas discharge pipe 330. In the feeding and discharging processes, the tail gas discharge pipe 330 is communicated with other tail gas treatment devices in a sealing mode, after material particles in the material raise dust are filtered by the filter net cage 31, harmful gas in the material raise dust is discharged into other tail gas treatment devices through the tail gas discharge pipe 330 and is subjected to purification treatment, and then the harmful gas is discharged into the air, so that air pollution caused by the material raise dust is reduced.
Referring to fig. 2, 3 and 7, an annular groove 331 is formed in the top of the outer wall of the exhaust gas discharge pipe 330, a sealing cover 6 is arranged on the top of the exhaust gas discharge pipe 330, two opposite through grooves 61 are formed in the outer side wall of the sealing cover 6, two rotating pieces 62 are respectively arranged in the two through grooves 61, each rotating piece 62 comprises a rotating piece 620, a connecting rod 621 and a turning piece 622, the rotating pieces 620 and the turning pieces 622 are connected through the connecting rods 621, the cross sections of the rotating pieces 620 and the turning pieces 622 are circular, the outer side wall of each rotating piece 620 is eccentrically and rotatably connected with the inner side wall of each through groove 61, and each rotating piece 620 extends into each through groove 61 and is embedded with the annular groove 331. The two rotating members 62 are pushed downwards, the sealing cap 6 is sleeved on the top of the exhaust gas discharging pipe 330, and the two rotating members 62 are pushed upwards to clamp the rotating block 620 into the annular groove 331, so that the sealing cap 6 can be fixed on the top of the exhaust gas discharging pipe 330. In the process of conveying materials, the closing cover 6 can seal the tail gas discharge pipe 330, so that particles generated by material dust and emitted harmful gas are not easy to be spread to the air from the tail gas discharge pipe 330.
The implementation principle of the mobile stock bin in the embodiment of the application is as follows: before feeding, the rotary cover 4 is detached by quick rotation, the closing cover 6 is opened, and the tail gas discharge pipe 330 is in sealed communication with the pipeline of other tail gas treatment devices. In the feeding process, the feeding pipe 110 is communicated with the pipeline of other high-position fixed storage bins in a sealing manner, so that materials in other high-position fixed storage bins can be input into the storage bin body 1, meanwhile, after material particles in material dust are filtered by the filter net cage 31, harmful gas in the material dust is discharged into other tail gas treatment devices through the tail gas discharge pipe 330 and is subjected to purification treatment, and then is discharged into the air. After the feeding is completed, remove the pipeline of other high-order fixed feed bins, install swivel cap 4 at inlet pipe 110 top to at tail gas discharge pipe 330 top installation closing cap 6, through tractor pulling traction frame 7 and then drive removal wheel 2 and rotate, and then carry feed bin body 1 to appointed ejection of compact place. Before discharging, the closing cover 6 is opened, the tail gas discharge pipe 330 is in sealed communication with the pipelines of other tail gas treatment devices, the discharge valve 121 is opened by rotating, and the discharge pipe 120 is in sealed communication with the pipelines of other discharge devices. In ejection of compact process, start driving piece 51 earlier, driving piece 51 passes through drive auger 52 and then conveys the inside material of feed bin body 1 to other discharging device in, alright accomplish the ejection of compact. The utility model provides a remove feed bin is at feeding, transport and ejection of compact in-process, has reduced the produced particulate matter of material raise dust and the harmful gas who gives off and has spread the possibility to the air in, and then reduces the environmental pollution that the material raise dust brought.
The above are preferred embodiments of the present application, and the scope of protection of the present application is not limited thereto, so: all equivalent changes made according to the structure, shape and principle of the present application shall be covered by the protection scope of the present application.

Claims (10)

1. The utility model provides a remove feed bin which characterized in that: including feed bin body (1), remove wheel (2) and filter piece (3), feed bin body (1) is provided with feed inlet (11) and discharge gate (12), feed bin body (1) with remove wheel (2) and rotate and connect, feed bin body (1) is provided with and is used for the installation filter mouth (13) of piece (3), it is provided with exhaust emission mouth (33) to filter piece (3).
2. The mobile bunker of claim 1, wherein: feed inlet (11) are connected with inlet pipe (110), inlet pipe (110) are kept away from inlet pipe (110) with the tip detachably of the junction of feed inlet (11) is connected with rotatory lid (4), the lateral wall slope of rotatory lid (4) is provided with lug one (111), inlet pipe (110) slope be provided with lug two (41) of lug one (111) looks gomphosis.
3. The mobile bunker of claim 1, wherein: two opposite lateral walls of feed bin body (1) are connected with feeding shelves pole (14), feeding shelves pole (14) are located the below of feed inlet (11), just feeding shelves pole (14) are equipped with two minute charge levels (141), two the top interconnect and the bottom of minute charge level (141) are kept away from each other.
4. The mobile bunker of claim 3, wherein: feed bin body (1) is provided with ejection of compact subassembly (5), ejection of compact subassembly (5) including driving piece (51) and with auger (52) that driving piece (51) are connected, auger (52) with feed bin body (1) is linked together, just auger (52) are kept away from the tip of driving piece (51) with discharge gate (12) are linked together.
5. The mobile bunker of claim 4, wherein: and a discharge valve (121) is arranged at the joint of the discharge port (12) and the packing auger (52).
6. The mobile bunker of claim 1, wherein: the tail gas discharge port (33) is connected with a tail gas discharge pipe (330), and the tail gas discharge pipe (330) is far away from the end part of the storage bin body (1) and is detachably connected with a sealing cover (6).
7. The mobile bunker of claim 1, wherein: the storage bin body (1) is rotatably connected with a traction frame (7).
8. The mobile bunker of claim 1, wherein: the storage bin body (1) is provided with a plurality of air hammers (8).
9. The mobile bunker of claim 1, wherein: the feed bin body (1) is provided with an observation hole (9), the observation hole (9) is sealed and fixed with an observation plate (91).
10. The mobile bunker of claim 1, wherein: the feed bin body (1) is provided with a crawling ladder (10).
CN202221468312.1U 2022-06-13 2022-06-13 Movable stock bin Active CN217457244U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202221468312.1U CN217457244U (en) 2022-06-13 2022-06-13 Movable stock bin

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202221468312.1U CN217457244U (en) 2022-06-13 2022-06-13 Movable stock bin

Publications (1)

Publication Number Publication Date
CN217457244U true CN217457244U (en) 2022-09-20

Family

ID=83237531

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202221468312.1U Active CN217457244U (en) 2022-06-13 2022-06-13 Movable stock bin

Country Status (1)

Country Link
CN (1) CN217457244U (en)

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