CN209142874U - The heat dissipation storage tank of feed addictive based on microbial fermentation - Google Patents

The heat dissipation storage tank of feed addictive based on microbial fermentation Download PDF

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Publication number
CN209142874U
CN209142874U CN201821784136.6U CN201821784136U CN209142874U CN 209142874 U CN209142874 U CN 209142874U CN 201821784136 U CN201821784136 U CN 201821784136U CN 209142874 U CN209142874 U CN 209142874U
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China
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heat dissipation
microbial fermentation
feed addictive
pedestal
storage tank
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CN201821784136.6U
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赵玉山
郭瑞
谢二伟
杨君
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Luoyang Hope Biotechnology Co Ltd
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Luoyang Hope Biotechnology Co Ltd
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Abstract

The utility model discloses a kind of heat dissipation storage tanks of feed addictive based on microbial fermentation, including pedestal, heat dissipation tank structure based on the feed addictive of microbial fermentation is compact, conveniently moving, loading and unloading is easy, heat dissipation storage effectively can be carried out to fermentative feedstuff of microbe, third nut facilitates the lift adjustment of locking universal wheel in conjunction with the setting of the 4th nut, the setting of locking universal wheel combination push rod facilitates the transhipment of fermentative feedstuff of microbe, the position that the setting of abutment sleeve facilitates positioning screw is fixed, the position that positioning screw combines the setting of annular positioning plate to facilitate storage vat is fixed, when mobile the utility model, shock-absorbing protecting is carried out to storage vat by the first damping spring and the second damping spring, the setting of auger conveyor facilitates the quickly discharging material of fermentative feedstuff of microbe, the setting of taper feed nozzle is convenient The superfast loading of fermentative feedstuff of microbe.

Description

The heat dissipation storage tank of feed addictive based on microbial fermentation
Technical field
The utility model relates to fermentative feedstuff of microbe production equipment technologies, specially a kind of to be based on microbial fermentation Feed addictive heat dissipation storage tank.
Background technique
Fermentative feedstuff of microbe can effectively improve the content of amino acid in feed, improve livestock and poultry fecundity, improve There is significant effect in terms of pup survival rate.The raising of amino acid and content of peptides has benefited from the concentration hair of multiple-microorganism Ferment, the feed after fermentation are needed to focus on and be kept in a transfer mechanism before carrying out packing packaging.Existing transfer machine Structure is mostly closed autoclave structure.But existing autoclave structure does not consider that fermentative feedstuff of microbe can persistent fever hair The problem of ferment, be easy to cause calorific value excessive when feed accumulates excessive in transfer mechanism, and microbial inactivation is caused acid occur The problem of losing.
Summary of the invention
The technical problems to be solved in the utility model is to overcome existing defect, provides a kind of feeding based on microbial fermentation The heat dissipation storage tank of feed additives can carry out interim storage and transhipment to fermentative feedstuff of microbe, arrive to fermentative feedstuff of microbe Production and application bring convenience, and timely cooling processing effectively can be carried out to fermentative feedstuff of microbe, further be promoted The service efficiency of the utility model, can effectively solve the problems in background technique.
To achieve the above object, the utility model provides the following technical solutions: a kind of feed based on microbial fermentation adds Add the heat dissipation storage tank of agent, including pedestal, the upper surface middle part front end of the pedestal is equipped with single-chip microcontroller, and the surface of pedestal is equipped with storage Charging basket, the lateral surface middle part of storage vat are equipped with circular radiating cover, and the inside of circular radiating cover is equipped with spiral radiator, storage vat Medial surface lower end is equipped with temperature sensor, and pedestal is fixedly connected with supporting plate by being disposed thereon the support frame of surface right end, holds in the palm The upper surface of plate is equipped with water tank, and the upper surface of water tank is equipped with liquid pump, and the inlet of liquid pump passes through under the lateral surface of conduit and water tank End is connected, and the liquid outlet of liquid pump is connected by the upper surface of conduit spiral radiator, and the lower end surface of spiral radiator passes through conduit It is connected with the upper surface of water tank, the right side of water tank is equipped with semiconductor chilling plate, and the right side of water tank is close to semiconductor chilling plate One end be equipped with heat dissipation tank, the inside surface rear end of heat dissipation tank is equipped with partition, and the lower surface front end of heat dissipation tank is equipped with air inlet, partition Trailing flank be equipped with air pump, the air inlet admittance pipe of air pump is connected with the trailing flank of partition, the input terminal and external electrical of single-chip microcontroller The output end in source is electrically connected, and the output end of single-chip microcontroller is electrically connected with the input terminal of liquid pump, semiconductor chilling plate and air pump respectively, single Piece machine is bi-directionally connected with temperature sensor.
As a kind of optimal technical scheme of the utility model, the pedestal is by being disposed thereon the location hole set on surface It is connected to studdle, the quantity of studdle is four, and four studdles are evenly distributed on the upper surface surrounding of pedestal, support The lower end surface of screw rod is equipped with locking universal wheel.
As a kind of optimal technical scheme of the utility model, the lateral surface of the studdle is close to base upper surface Threaded one end is connected with third nut, and the lateral surface of studdle is connected with the 4th spiral shell close to the threaded one end of base lower surface It is female.
As a kind of optimal technical scheme of the utility model, there are two the upper surface right end front and rear sides of the pedestal are set The upper surface of the symmetrically arranged push rod in front and back, push rod is equipped with handle.
As a kind of optimal technical scheme of the utility model, it is fixed that the lateral surface lower end of the circular radiating cover is equipped with annular Position plate, circular orientation plate are socketed with positioning screw by being disposed thereon the location hole on surface.
As a kind of optimal technical scheme of the utility model, upper surface and the circular radiating cover of the circular orientation plate The first support rib is equipped between lateral surface, the quantity of the first support rib is three, and three the first support ribs are uniformly distributed In the upper surface of circular orientation plate.
As a kind of optimal technical scheme of the utility model, the quantity of the positioning screw is three, three positioning spiral shells Bar is evenly distributed on the upper surface of circular orientation plate, and the lateral surface lower end of positioning screw passes through the upper surface of abutment sleeve and pedestal It is connected
As a kind of optimal technical scheme of the utility model, the lateral surface threaded upper ends of the positioning screw are connected with One nut, the lateral surface middle part of positioning screw are threaded with the second nut, upper surface and the circular orientation plate of the second nut It is equipped with the second damping spring between lower surface, first is equipped between the lower surface of the first nut and the upper surface of circular orientation plate and is subtracted Shake spring.
As a kind of optimal technical scheme of the utility model, the upper surface of the storage vat is connected with upper end cover, upper end The upper surface middle part of lid is equipped with taper feed nozzle, and the lateral surface lower end of taper feed nozzle is equipped with manually-operated gate.
As a kind of optimal technical scheme of the utility model, the storage vat is by being arranged on the left of face lower end on the outside Second positioning floor be fixedly connected with auger conveyor, the feed inlet of auger conveyor is located at the medial surface bottom of storage vat, The input terminal of auger conveyor is electrically connected with the output end of single-chip microcontroller.
Compared with prior art, based on the heat dissipation storage tank of the feed addictive of microbial fermentation, have below beneficial to good Place:
1, compact based on the heat dissipation tank structure of the feed addictive of microbial fermentation, conveniently moving, loading and unloading is easy, Heat dissipation storage effectively can be carried out to fermentative feedstuff of microbe, it is universal that third nut combines the setting of the 4th nut to facilitate locking The setting of the lift adjustment of wheel, locking universal wheel combination push rod facilitates the transhipment of fermentative feedstuff of microbe.
2, the position that the setting of abutment sleeve facilitates positioning screw is fixed, and positioning screw combines the setting of annular positioning plate The position for facilitating storage vat is fixed, when mobile the utility model, by the first damping spring and the second damping spring to storing Bucket carries out shock-absorbing protecting, and the setting of auger conveyor facilitates the quickly discharging material of fermentative feedstuff of microbe.
3, the setting of taper feed nozzle facilitates the superfast loading of fermentative feedstuff of microbe, the setting of support frame combination supporting plate The position for facilitating water tank is fixed, and the liquid in water tank can quickly be pumped to the inside of spiral radiator by liquid pump, so The heat inside storage vat is absorbed by the spiral radiator that storage vat lateral surface is arranged in afterwards.
4, can be freezed to the liquid in water tank by semiconductor chilling plate, it can be quickly by conductor system by air pump Hot-air extraction around cold, effectively increases the working efficiency of semiconductor chilling plate, can be to storage by temperature sensor Temperature inside charging basket is monitored, and the setting of support frame can effectively improve the structural stability of the utility model.
Detailed description of the invention
FIG. 1 is a schematic structural view of the utility model;
Fig. 2 is the utility model main view;
Fig. 3 is the utility model right view.
In figure: 1 positioning screw, 2 pedestals, 3 locking universal wheels, 4 studdles, 5 abutment sleeves, 6 single-chip microcontrollers, 7 support frames, 8 supporting plates, 9 water tanks, 10 push rods, 11 handles, 12 taper feed nozzles, 13 manually-operated gates, 14 upper end covers, 15 storage vats, 16 annulars dissipate Hot cover, 17 first support ribs, 18 circular orientation plates, 19 first nuts, 20 first damping springs, 21 liquid pumps, 22 second dampings Spring, 23 second nuts, 24 temperature sensors, 25 auger conveyors, 26 second positioning floors, 27 spiral radiators, 28 half are led Body cooling piece, 29 heat dissipation tanks, 30 air pumps, 31 partitions.
Specific embodiment
The following will be combined with the drawings in the embodiments of the present invention, carries out the technical scheme in the embodiment of the utility model Clearly and completely describe, it is clear that the described embodiments are only a part of the embodiments of the utility model, rather than whole Embodiment.Based on the embodiments of the present invention, those of ordinary skill in the art are without making creative work Every other embodiment obtained, fall within the protection scope of the utility model.
Fig. 1-3 is please referred to, the utility model provides a kind of technical solution: a kind of feed addictive based on microbial fermentation Heat dissipation storage tank, including pedestal 2, pedestal 2 be socketed with studdle 4, studdle by being disposed thereon the location hole on surface Quantity be four, four studdles are evenly distributed on the upper surface surrounding of pedestal 2, and the lower end surface of studdle 4 is equipped with lock Only universal wheel 3, threaded one end of the lateral surface of studdle 4 close to 2 upper surface of pedestal are connected with third nut, studdle 4 Threaded one end of the lateral surface close to 2 lower surface of pedestal be connected with the 4th nut, third nut combines the setting side of the 4th nut Locking universal wheel 3 lift adjustment, the upper surface right end front and rear sides of pedestal 2 are set there are two the symmetrically arranged push rod in front and back 10, the upper surface of push rod 10 is equipped with handle 11, and locking universal wheel 3 combines the setting of push rod 10 to facilitate fermentative feedstuff of microbe Transhipment, the upper surface middle part front end of pedestal 2 are equipped with single-chip microcontroller 6, and the surface of pedestal 2 is equipped with storage vat 15, storage vat 15 it is outer Circular radiating cover 16 is equipped in the middle part of side, the lateral surface lower end of circular radiating cover 16 is equipped with circular orientation plate 18, circular orientation plate 18 are socketed with positioning screw 1 by being disposed thereon the location hole on surface, and the quantity of positioning screw 1 is three, three positioning spiral shells Bar 1 is evenly distributed on the upper surface of circular orientation plate 18, and the lateral surface lower end of positioning screw 1 passes through abutment sleeve 5 and pedestal 2 Upper surface is connected, and the lateral surface threaded upper ends of positioning screw 1 are connected with the first nut 19, spiral shell in the middle part of the lateral surface of positioning screw 1 Line is connected with the second nut 23, and the second damping bullet is equipped between the upper surface of the second nut 23 and the lower surface of circular orientation plate 18 Spring 22 is equipped with the first damping spring 20 between the lower surface of first nut 19 and the upper surface of circular orientation plate 18, when mobile sheet When utility model, shock-absorbing protecting, circular orientation plate are carried out to storage vat 15 by the first damping spring 20 and the second damping spring 22 The first support rib 17 is equipped between 18 upper surface and the lateral surface of circular radiating cover 16, the quantity of the first support rib 17 is Three, three the first support ribs 17 are evenly distributed on the upper surface of circular orientation plate 18, and the inside of circular radiating cover 16 is equipped with The medial surface lower end of spiral radiator 27, storage vat 15 is equipped with temperature sensor 24, can be to storing by temperature sensor 24 Temperature inside bucket 15 is monitored, and pedestal 2 is fixedly connected with supporting plate 8 by being disposed thereon the support frame 7 of surface right end, support The upper surface of plate 8 is equipped with water tank 9, and the upper surface of water tank 9 is equipped with liquid pump 21, and the inlet of liquid pump 21 passes through conduit and water tank 9 Lateral surface lower end is connected, and the liquid outlet of liquid pump 21 is connected by the upper surface of conduit spiral radiator 27, spiral radiator 27 Lower end surface is connected by conduit with the upper surface of water tank 9, the liquid in water tank 9 quickly can be pumped to spiral by liquid pump 21 The inside of heat-dissipating pipe 27, then by be arranged in the spiral radiator 27 of 15 lateral surface of storage vat to the heat inside storage vat 15 into Row absorbs, and the right side of water tank 9 is equipped with semiconductor chilling plate 28, can be to the liquid in water tank 9 by semiconductor chilling plate 28 Freeze, the right side of water tank 9 is equipped with heat dissipation tank 29 close to one end of semiconductor chilling plate 28, after the medial surface of heat dissipation tank 29 End is equipped with partition 31, and the lower surface front end of heat dissipation tank 29 is equipped with air inlet, and the trailing flank of partition 31 is equipped with air pump 30, air pump 30 Air inlet admittance pipe is connected with the trailing flank of partition 31, can be quickly by the hot-air around conductor cooling piece 28 by air pump 30 Extraction, effectively increases the working efficiency of semiconductor chilling plate 28, the upper surface of storage vat 15 is connected with upper end cover 14, upper end cover 14 upper surface middle part is equipped with taper feed nozzle 12, and the lateral surface lower end of taper feed nozzle 12 is equipped with manually-operated gate 13, storage vat 15 are fixedly connected with auger conveyor 25, auger conveyor by the second positioning floor 26 on the left of setting on the outside face lower end 25 feed inlet is located at the medial surface bottom of storage vat 15, and the setting of auger conveyor 25 facilitates the fast of fermentative feedstuff of microbe The input terminal of fast discharging, auger conveyor 25 is electrically connected with the output end of single-chip microcontroller 6, the input terminal and external power supply of single-chip microcontroller 6 Output end electrical connection, input terminal of the output end of single-chip microcontroller 6 respectively with liquid pump 21, semiconductor chilling plate 28 and air pump 30 be electrically connected It connects, single-chip microcontroller 6 is bi-directionally connected with temperature sensor 24, and single-chip microcontroller 6 controls liquid pump 21, auger conveyor 25, semiconductor chilling plate 28 and air pump 30 be all made of method commonly used in the prior art, single-chip microcontroller 6 using the 80C51 in Intel Company MCS-51 series, Heat dissipation tank structure based on the feed addictive of microbial fermentation is compact, conveniently moving, and loading and unloading is easy, can be effectively right Fermentative feedstuff of microbe carries out heat dissipation storage.
When in use: connecting external power supply, the fermentative feedstuff of microbe for being transported through needs by taper feed nozzle 12 It is added to the inside of storage vat 15, liquid pump 21 is controlled by single-chip microcontroller 6 and is worked, is quickly pumped the liquid in water tank 9 by liquid pump 21 To the inside of spiral radiator 27, then dissipated by the spiral radiator 27 for being tightly attached to 15 lateral surface of storage vat to inside storage vat 15 The heat of hair is absorbed, meanwhile, freezed by semiconductor chilling plate 28 to the liquid in water tank 9, so that the liquid of water tank 9 The heat that absorption that can be more efficient generates when fermenting from microbiological feed.
What the utility model can be convenient move, and occupied space is few when use, easy to remove and use;It can be effective Cooling processing is carried out to microbiological feed, improves ease of use;The setting of auger conveyor 25 facilitates microbiological feed Discharging, improve ease of use.
While there has been shown and described that the embodiments of the present invention, for the ordinary skill in the art, It is understood that these embodiments can be carried out with a variety of variations in the case where not departing from the principles of the present invention and spirit, repaired Change, replacement and variant, the scope of the utility model is defined by the appended claims and the equivalents thereof.

Claims (10)

1. a kind of heat dissipation storage tank of the feed addictive based on microbial fermentation, including pedestal (2), it is characterised in that: the bottom The upper surface middle part front end of seat (2) is equipped with single-chip microcontroller (6), and the surface of pedestal (2) is equipped with storage vat (15), storage vat (15) Circular radiating cover (16) are equipped in the middle part of lateral surface, the inside of circular radiating cover (16) is equipped with spiral radiator (27), storage vat (15) medial surface lower end is equipped with temperature sensor (24), and pedestal (2) is solid by the support frame (7) for being disposed thereon surface right end Surely it is connected with supporting plate (8), the upper surface of supporting plate (8) is equipped with water tank (9), and the upper surface of water tank (9) is equipped with liquid pump (21), liquid pump (21) inlet is connected by conduit with the lateral surface lower end of water tank (9), and the liquid outlet of liquid pump (21) is dissipated by conduit spiral The upper surface of heat pipe (27) is connected, and the lower end surface of spiral radiator (27) is connected by conduit with the upper surface of water tank (9), water tank (9) right side is equipped with semiconductor chilling plate (28), and the right side of water tank (9) is equipped with close to one end of semiconductor chilling plate (28) The inside surface rear end of heat dissipation tank (29), heat dissipation tank (29) is equipped with partition (31), and the lower surface front end of heat dissipation tank (29) is equipped with air inlet Mouthful, the trailing flank of partition (31) is equipped with air pump (30), and the air inlet admittance pipe of air pump (30) is connected with the trailing flank of partition (31), The input terminal of single-chip microcontroller (6) is electrically connected with the output end of external power supply, the output end of single-chip microcontroller (6) respectively with liquid pump (21), half The electrical connection of the input terminal of conductor cooling piece (28) and air pump (30), single-chip microcontroller (6) are bi-directionally connected with temperature sensor (24).
2. a kind of heat dissipation storage tank of feed addictive based on microbial fermentation according to claim 1, it is characterised in that: The pedestal (2) is socketed with studdle (4) by being disposed thereon the location hole on surface, and the quantity of studdle is four, Four studdles are evenly distributed on the upper surface surrounding of pedestal (2), and the lower end surface of studdle (4) is equipped with locking universal wheel (3)。
3. a kind of heat dissipation storage tank of feed addictive based on microbial fermentation according to claim 2, it is characterised in that: Threaded one end of the lateral surface of the studdle (4) close to pedestal (2) upper surface is connected with third nut, studdle (4) Threaded one end of the lateral surface close to pedestal (2) lower surface be connected with the 4th nut.
4. a kind of heat dissipation storage tank of feed addictive based on microbial fermentation according to claim 1, it is characterised in that: The upper surface right end front and rear sides of the pedestal (2) are set there are two the symmetrically arranged push rod in front and back (10), the upper end of push rod (10) Face is equipped with handle (11).
5. a kind of heat dissipation storage tank of feed addictive based on microbial fermentation according to claim 1, it is characterised in that: The lateral surface lower end of the circular radiating cover (16) is equipped with circular orientation plate (18), and circular orientation plate (18) is by being disposed thereon The location hole on surface is socketed with positioning screw (1).
6. a kind of heat dissipation storage tank of feed addictive based on microbial fermentation according to claim 5, it is characterised in that: The first support rib (17) are equipped between the upper surface of the circular orientation plate (18) and the lateral surface of circular radiating cover (16), the The quantity of one support rib (17) is three, and three the first support ribs (17) are evenly distributed on the upper table of circular orientation plate (18) Face.
7. a kind of heat dissipation storage tank of feed addictive based on microbial fermentation according to claim 5, it is characterised in that: The quantity of the positioning screw (1) is three, and three positioning screws (1) are evenly distributed on the upper surface of circular orientation plate (18), The lateral surface lower end of positioning screw (1) is connected by abutment sleeve (5) with the upper surface of pedestal (2).
8. a kind of heat dissipation storage tank of feed addictive based on microbial fermentation according to claim 5, it is characterised in that: The lateral surface threaded upper ends of the positioning screw (1) are connected with the first nut (19), screw thread in the middle part of the lateral surface of positioning screw (1) It is connected with the second nut (23), second is equipped between the upper surface of the second nut (23) and the lower surface of circular orientation plate (18) and is subtracted It shakes spring (22), the first damping spring is equipped between the lower surface of the first nut (19) and the upper surface of circular orientation plate (18) (20)。
9. a kind of heat dissipation storage tank of feed addictive based on microbial fermentation according to claim 1, it is characterised in that: The upper surface of the storage vat (15) is connected with upper end cover (14), and the upper surface middle part of upper end cover (14) is equipped with taper feed nozzle (12), the lateral surface lower end of taper feed nozzle (12) is equipped with manually-operated gate (13).
10. a kind of heat dissipation storage tank of feed addictive based on microbial fermentation according to claim 1, feature exist In: the storage vat (15) is fixedly connected with spiral transferring by the second positioning floor (26) on the left of setting on the outside face lower end Send device (25), the feed inlet of auger conveyor (25) is located at the medial surface bottom of storage vat (15), auger conveyor (25) it is defeated Enter end to be electrically connected with the output end of single-chip microcontroller (6).
CN201821784136.6U 2018-10-31 2018-10-31 The heat dissipation storage tank of feed addictive based on microbial fermentation Active CN209142874U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201821784136.6U CN209142874U (en) 2018-10-31 2018-10-31 The heat dissipation storage tank of feed addictive based on microbial fermentation

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201821784136.6U CN209142874U (en) 2018-10-31 2018-10-31 The heat dissipation storage tank of feed addictive based on microbial fermentation

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CN209142874U true CN209142874U (en) 2019-07-23

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114313670A (en) * 2021-12-21 2022-04-12 无锡凯诺防腐科技有限公司 Steel lining polytetrafluoroethylene high temperature resistant storage tank

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114313670A (en) * 2021-12-21 2022-04-12 无锡凯诺防腐科技有限公司 Steel lining polytetrafluoroethylene high temperature resistant storage tank
CN114313670B (en) * 2021-12-21 2022-10-04 无锡凯诺防腐科技有限公司 Steel lining polytetrafluoroethylene high-temperature-resistant storage tank

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