CN211337279U - Feed storage device - Google Patents
Feed storage device Download PDFInfo
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- CN211337279U CN211337279U CN201921886003.4U CN201921886003U CN211337279U CN 211337279 U CN211337279 U CN 211337279U CN 201921886003 U CN201921886003 U CN 201921886003U CN 211337279 U CN211337279 U CN 211337279U
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- material storage
- storage bin
- waste material
- fan
- heat exchange
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Abstract
The utility model discloses a fodder storage device, including supporting the support body, certified materials storage storehouse and waste material storage storehouse weld side by side in the upper portion of supporting the support body, common frame equidistance between certified materials storage storehouse and the waste material storage storehouse has erect the heat exchange tube, every group the fin has all been welded to the lower part of heat exchange tube, the upper portion welding of supporting the support body has the inlet box and gives vent to anger the case, the lateral part and the every group of inlet box the inlet end intercommunication of heat exchange tube, the lateral part and the every group of the case that gives vent to anger of heat exchange tube end intercommunication, the fan is installed through the fan seat in the upper portion of supporting the support body, the end of giving vent to anger of fan passes through the lateral part intercommunication of intake pipe and inlet box, the lateral part intercommunication of the case that gives vent to anger has the blast pipe, it has the cotton. The utility model discloses under the condition that reduces the space as far as and occupy, reduce thermal conduction, realize the qualified material and store the heat dissipation in storehouse and waste material storage storehouse.
Description
Technical Field
The utility model relates to a fodder storage technology field specifically is a fodder storage device.
Background
The feed produced in excess needs to be stored and is conveyed into a storage bin through a belt, the feed storage bin is generally divided into a vertical silo and a steel plate bin, the vertical silo is usually made of reinforced concrete, and the defects of high manufacturing cost, heavy self-weight, long building period and the like are overcome; the steel plate bin is a storage tool formed by riveting, welding or combining steel plates, and has the advantages of good sealing performance, low investment, light dead weight and the like, so the steel plate bin is generally selected as a feed storage bin at present, and the existing feed generally needs to be cooled due to the fact that the types of organic matters are more, and the heating condition exists in the storage process.
At present, generally directly cool down to the inside blast air in storage storehouse through the air-blower, adopt foretell cooling mode, hardly cool down to the inside of piling up the fodder, the cooling effect is relatively poor, be difficult to satisfy the demand of actual storage, on the other hand, in order to practice thrift the space, the lateral part in current storage storehouse generally can set up a waste material storage storehouse, be used for storing unqualified fodder material, the time of the general storage of unqualified material is longer, its unit mass calorific capacity is far away than the unit mass calorific capacity of certified materials, the current mode is a steel sheet of certified materials storage storehouse and unqualified materials storage storehouse sharing, this just leads to a large amount of heats that the unqualified material produced to carry out heat-conduction to the certified materials, lead to the certified materials intensification more.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a fodder storage device sets up thermal insulation material between the storehouse is stored to certified material storage storehouse and waste material, reduces thermal conduction under the condition that the space occupies as far as possible, simultaneously, realizes that the heat dissipation in storehouse is stored to certified material storage storehouse and waste material to solve the problem that proposes in the above-mentioned background art.
In order to achieve the above object, the utility model provides a following technical scheme: a feed storage device comprises a support frame body, a qualified material storage bin and a waste material storage bin, wherein the qualified material storage bin and the waste material storage bin are welded on the upper portion of the support frame body side by side, feed hoppers are mounted on the upper portions of the qualified material storage bin and the waste material storage bin, discharge pipes are mounted on the lower portions of the qualified material storage bin and the waste material storage bin, heat exchange pipes are erected between the qualified material storage bin and the waste material storage bin at equal intervals, cooling fins are welded on the lower portions of the heat exchange pipes of each group, an air inlet box and an air outlet box are welded on the upper portion of the support frame body, the side portion of the air inlet box is communicated with the air inlet end of each group of heat exchange pipes, the side portion of the air outlet box is communicated with the air outlet end of each group of heat exchange pipes, a fan is mounted on the upper portion of the support frame body through a fan base, and the air outlet end, the lateral part of the air outlet box is communicated with an exhaust pipe, and a heat insulation cotton layer is filled between the qualified material storage bin and the waste material storage bin.
Preferably, digital thermometers are installed on the lateral parts of the qualified material storage bin and the waste material storage bin, and charge level indicators are installed on the lateral parts of the qualified material storage bin and the waste material storage bin.
Preferably, two sets of the cross-section of feeder hopper is trapezoidal setting, and is two sets of the apron is all installed on the upper portion of feeder hopper.
Preferably, gate valves are arranged in the middle of the two groups of discharging pipes, and the inner walls of the discharging pipes are smooth surfaces.
Preferably, an electric regulating valve is installed at the air outlet end of the fan, and a rubber pad is arranged between the fan and the fan seat.
Preferably, the cross section of the radiating fin is arranged in a triangular shape, and the radiating fin is a stainless steel radiating fin.
Compared with the prior art, the beneficial effects of the utility model are that:
1. the heat insulation cotton layer is filled between the qualified material storage bin and the waste material storage bin, so that the heat conductivity coefficient of the heat insulation cotton layer is small, the heat insulation between the qualified material storage bin and the waste material storage bin is realized, the distance between the qualified material storage bin and the waste material storage bin is reduced as much as possible under the condition of reducing heat conduction, and the occupation of space is reduced;
2. let in the air through the fan to the inside of inlet box, the air passes through the inside that the heat exchange tube got into qualified material storage storehouse and waste material storage storehouse, and simultaneously, the fin carries out heat-conduction, dispels the heat through heat exchange tube and qualified fodder and unqualified fodder to through the collection that the case realization heated air of giving vent to anger, subsequent recycle of being convenient for, effectual realization cooling.
Drawings
In order to more clearly illustrate the technical solution in the embodiments of the present invention, the drawings used in the description of the embodiments will be briefly described below. It is clear that the described figures represent only some embodiments of the invention, not all embodiments, and that a person skilled in the art can also derive other designs and figures from these figures without inventive effort.
Fig. 1 is a schematic front sectional view of the present invention;
fig. 2 is a schematic front view of the present invention;
figure 3 is the utility model discloses a qualified material storage box looks sideways at the cross-sectional view schematic diagram.
In the figure: 1. a support frame body; 2. qualified material storage bin; 3. a waste storage bin; 4. a feed hopper; 5. a discharge pipe; 6. a heat exchange pipe; 7. a heat sink; 8. an air intake box; 9. an air outlet box; 10. A fan base; 11. a fan; 12. an air inlet pipe; 13. an exhaust pipe; 14. a heat insulation cotton layer; 15. A digital thermometer; 16. a level gauge; 17. a cover plate; 18. a gate valve; 19. an electric control valve; 20. and (7) a rubber pad.
Detailed Description
The conception, the specific structure, and the technical effects produced by the present invention will be clearly and completely described below with reference to the embodiments and the accompanying drawings, so as to fully understand the objects, the features, and the effects of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, and not all embodiments, and other embodiments obtained by those skilled in the art without inventive labor based on the embodiments of the present invention all belong to the protection scope of the present invention. In addition, all the connection relations mentioned herein do not mean that the components are directly connected, but mean that a better connection structure can be formed by adding or reducing connection accessories according to the specific implementation situation. The utility model discloses each technical feature in the creation can the interactive combination under the prerequisite that does not contradict conflict each other.
Referring to fig. 1-2, the present invention provides a technical solution: a feed storage device comprises a support frame body 1, a qualified material storage bin 2 and a waste material storage bin 3, wherein the qualified material storage bin 2 and the waste material storage bin 3 are welded on the upper part of the support frame body 1 side by side, the upper parts of the qualified material storage bin 2 and the waste material storage bin 3 are both provided with a feed hopper 4, in order to facilitate feeding, the sections of the two groups of feed hoppers 4 are arranged in a trapezoid shape, the upper parts of the two groups of feed hoppers 4 are respectively provided with a cover plate 17 for plugging after feeding, the lower parts of the qualified material storage bin 2 and the waste material storage bin 3 are respectively provided with a discharging pipe 5, the middle parts of the two groups of discharging pipes 5 are respectively provided with a gate valve 18, the inner wall of each discharging pipe 5 is a smooth surface, the lateral parts of the qualified material storage bin 2 and the waste material storage bin 3 are respectively provided with a digital thermometer 15 for detecting temperature, and the lateral parts of the qualified material storage bin 2 and the waste material storage bin 3 are respectively provided with a material level meter 16 for detecting material;
referring to fig. 1 and 3, heat exchange tubes 6 are erected between a qualified material storage bin 2 and a waste material storage bin 3 at equal intervals, the heat exchange tubes 6 are stainless steel heat dissipation plates, heat dissipation plates 7 are welded at the lower part of each group of heat exchange tubes 6, the cross sections of the heat dissipation plates 7 are arranged in a triangular shape, the heat dissipation plates 7 are stainless steel heat dissipation plates, an air inlet box 8 and an air outlet box 9 are welded at the upper part of a support frame body 1, the side part of the air inlet box 8 is communicated with the air inlet end of each group of heat exchange tubes 6, the side part of the air outlet box 9 is communicated with the air outlet end of each group of heat exchange tubes 6, a fan 11 is installed at the upper part of the support frame body 1 through a fan base 10, an electric adjusting valve 19 for controlling the air inlet amount is installed at the air outlet end of the fan 11, a rubber pad 20 is arranged between the fan, a heat insulation cotton layer 14 for heat insulation is filled between the qualified material storage bin 2 and the waste material storage bin 3.
The working principle is as follows: when the heat insulation device is used, the heat insulation cotton layer 14 is filled between the qualified material storage bin 2 and the waste material storage bin 3, the heat conductivity coefficient of the heat insulation cotton layer 14 is small, heat insulation between the qualified material storage bin 2 and the waste material storage bin 3 is realized, the distance between the qualified material storage bin 2 and the waste material storage bin 3 is reduced as much as possible under the condition of reducing heat conduction, and the occupied space is reduced;
let in the air to the inside of inlet box 8 through fan 11, the air passes through heat exchange tube 6 and gets into the inside in qualified material storage storehouse 2 and waste material storage storehouse 3 in proper order, and simultaneously, fin 7 carries out heat-conduction, dispels the heat through heat exchange tube 6 and qualified fodder and unqualified fodder to realize heated air's collection through the case 9 that goes out, the subsequent recycle of being convenient for, effectual realization cooling.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.
Claims (6)
1. The utility model provides a fodder storage device, includes support frame body (1), certified material storage storehouse (2) and waste material storage storehouse (3), its characterized in that: the qualified material storage bin (2) and the waste material storage bin (3) are welded on the upper portion of a support frame body (1) side by side, a feed hopper (4) is installed on the upper portions of the qualified material storage bin (2) and the waste material storage bin (3), a discharge pipe (5) is installed on the lower portions of the qualified material storage bin (2) and the waste material storage bin (3), heat exchange pipes (6) are erected between the qualified material storage bin (2) and the waste material storage bin (3) at the same frame equal distance, cooling fins (7) are welded on the lower portion of each heat exchange pipe (6), an air inlet box (8) and an air outlet box (9) are welded on the upper portion of the support frame body (1), the lateral portion of the air inlet box (8) is communicated with the air inlet end of each heat exchange pipe (6), the lateral portion of the air outlet box (9) is communicated with the air outlet end of each heat exchange pipe (6), and a fan (11) is installed on the upper portion of the support frame body (1) through a fan base, the air outlet end of the fan (11) is communicated with the side part of the air inlet box (8) through an air inlet pipe (12), the side part of the air outlet box (9) is communicated with an exhaust pipe (13), and a heat insulation cotton layer (14) is filled between the qualified material storage bin (2) and the waste material storage bin (3).
2. A feed storage device as claimed in claim 1, wherein: digital thermometers (15) are all installed to the lateral part in certified materials storage storehouse (2) and waste material storage storehouse (3), charge level indicator (16) are all installed to the lateral part in certified materials storage storehouse (2) and waste material storage storehouse (3).
3. A feed storage device as claimed in claim 1, wherein: two sets of the cross-section of feeder hopper (4) is trapezoidal setting, and is two sets of apron (17) are all installed on the upper portion of feeder hopper (4).
4. A feed storage device as claimed in claim 1, wherein: gate valves (18) are arranged in the middle of the two groups of discharging pipes (5), and the inner walls of the discharging pipes (5) are smooth surfaces.
5. A feed storage device as claimed in claim 1, wherein: an electric regulating valve (19) is installed at the air outlet end of the fan (11), and a rubber pad (20) is arranged between the fan (11) and the fan seat (10).
6. A feed storage device as claimed in claim 1, wherein: the cross section of the radiating fin (7) is arranged in a triangular shape, and the radiating fin (7) is a stainless steel radiating fin.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201921886003.4U CN211337279U (en) | 2019-11-04 | 2019-11-04 | Feed storage device |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201921886003.4U CN211337279U (en) | 2019-11-04 | 2019-11-04 | Feed storage device |
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CN211337279U true CN211337279U (en) | 2020-08-25 |
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CN201921886003.4U Active CN211337279U (en) | 2019-11-04 | 2019-11-04 | Feed storage device |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN115349591A (en) * | 2021-05-17 | 2022-11-18 | 宜昌九鼎牧业有限公司 | Pig feed raw material silo with cooling and dehumidifying functions and method |
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2019
- 2019-11-04 CN CN201921886003.4U patent/CN211337279U/en active Active
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN115349591A (en) * | 2021-05-17 | 2022-11-18 | 宜昌九鼎牧业有限公司 | Pig feed raw material silo with cooling and dehumidifying functions and method |
CN115349591B (en) * | 2021-05-17 | 2024-01-02 | 宜昌九鼎牧业有限公司 | Pig feed raw material silo with cooling and dehumidifying functions and method |
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