Stirring and dispersing device for feed additive production

By introducing feeding, crushing, mixing, and cooling mechanisms into the feed additive production unit, the problems of inaccurate additive material input and equipment overheating have been solved, achieving precise mixing and effective cooling, and improving the practicality of the equipment.

CN224040749UActive Publication Date: 2026-03-27QINGDAO JINGXUAN SANCHEN BIOTECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-02
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

Traditional feed additive mixing and dispersing devices are difficult to control the amount of additives added during the process of adding additive materials, and long-term operation can cause the equipment to overheat, affecting the performance of the equipment.

Method used

A device including feeding, mixing, crushing, stirring and cooling mechanisms was designed. By combining the weighing of the feeding mechanism, the crushing mechanism, the stirring mechanism, and the cooling mechanism, the accurate addition of additive materials and the effective cooling of the equipment are ensured.

Benefits of technology

It enables precise weighing and mixing of additive materials, prevents equipment overheating, and improves the practicality and reliability of the device.

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Abstract

The utility model relates to the technical field of stirring and dispersing devices for feed additive production, in particular to a stirring and dispersing device for feed additive production, which is characterized in that feed additive materials are respectively placed in a feeding mechanism and are respectively weighed by the feeding mechanism according to proportions; weighed feed additive materials are discharged into the mixing mechanism and fully stirred by the stirring mechanism, and the interior of the mixing mechanism is cooled by starting the liquid inlet mechanism, so that the phenomenon of overheating of the equipment is prevented, and the practicability of the equipment is improved; comprising a feeding mechanism; the device further comprises a mixing mechanism, a crushing mechanism, a stirring mechanism, a liquid inlet mechanism and a cooling mechanism, the feeding mechanism is installed at the top end of the mixing mechanism, the crushing mechanism and the stirring mechanism are both located in the mixing mechanism, the stirring mechanism is located on the lower portion of the crushing mechanism, and the liquid inlet mechanism and the cooling mechanism are both located on the right side of the mixing mechanism. And the cooling mechanism is positioned below the liquid inlet mechanism.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of feed additive production stirring dispersion devices, in particular to a kind of based on feed additive production stirring dispersion devices. BACKGROUND

[0002] Feed additive is a small amount or trace amount of substance added in the process of feed processing, preparation and use to meet the special needs of animal growth, health and production performance;These substances are not the conventional components in feed, but due to their unique physiological functions or nutritional effects, they have important influence on animal production performance, health status and feed utilization rate.

[0003] For example, the stirring dispersion device for feed additive production disclosed in the utility model patent with application number CN202321678305.9 is representative of one type of prior art, which mainly includes a stirring barrel, support legs, a liquid level meter, a first motor, a stirring rod, a liquid reservoir, a glass, a baffle, a cutting blade and a support plate, etc.

[0004] The conventional feed additive stirring dispersion device is difficult to control the amount of feed additive material added during the feeding process, and the stirring dispersion device may overheat under long-term uninterrupted operation, which affects the feed additive in the equipment. UTILITY MODEL CONTENT

[0005] To solve the above technical problems, the utility model provides a feed additive material placed in the feeding mechanism, the feeding mechanism weighs the feed additive material according to the proportion, the weighed feed additive material is discharged into the mixing mechanism, the stirring mechanism is fully stirred, the liquid feeding mechanism is started to cool the mixing mechanism, to prevent the equipment from overheating, and improve the practicability of the equipment.

[0006] The utility model discloses a kind of based on feed additive production with stirring dispersion device, including feeding mechanism;Still including mixing mechanism, crushing mechanism, stirring mechanism, liquid inlet mechanism and cooling mechanism, feeding mechanism is installed at the top of mixing mechanism, crushing mechanism and stirring mechanism are located inside mixing mechanism, stirring mechanism is located in the lower part of crushing mechanism, liquid inlet mechanism and cooling mechanism are located at the right side of mixing mechanism, cooling mechanism is located below liquid inlet mechanism;Feed additive material is placed in feeding mechanism respectively, according to proportion respectively to feed additive material by feeding mechanism is weighed, feed additive material after weighing is arranged in mixing mechanism, by starting crushing mechanism to the feed additive of large particle is crushed, by starting stirring mechanism to feed additive material is stirred, while starting liquid inlet mechanism to the solution of feed additive is arranged in mixing mechanism, it is fully stirred by stirring mechanism, by starting cooling mechanism to carry out temperature reduction in mixing mechanism, prevent equipment from the phenomenon of overheating, improve the practicability of equipment.

[0007] Preferably, the feeding mechanism includes a plurality of support rods, a metering scale, a weighing barrel and a first discharge pipe, the bottom end of the metering scale is installed at the top end of the plurality of support rods, the top end of the metering scale is provided with an opening, the weighing barrel is installed at the opening at the top end of the metering scale, the input end of the first discharge pipe is connected with the output end of the weighing barrel, and a valve is arranged on the output end of the first discharge pipe; the plurality of support rods are arranged respectively to the metering scale, the feed additive materials are arranged respectively into the weighing barrel, the feed additive materials are weighed by the metering scale, and the feed additive materials after weighing are arranged into the mixing mechanism through the first discharge pipe, so that the practicability of the equipment is improved.

[0008] Preferably, the mixing mechanism includes a mixing barrel, a screening plate and a second discharge pipe, the top end of the mixing barrel is provided with an opening, the screening plate is installed on the inner wall of the mixing barrel, the input end of the second discharge pipe is connected with the bottom end of the mixing barrel, and a valve is arranged on the output end of the second discharge pipe; the feed additive materials are arranged into the mixing barrel, the feed additive particles are screened by the screening plate, and the feed additive after stirring is discharged through the second discharge pipe, so that the practicability of the equipment is improved.

[0009] Preferably, the crushing mechanism includes a first motor, a first gear, a second gear, a crushing shaft and a plurality of crushing knives, the inner ring of the first gear is installed on the output end of the first motor, the outer ring of the first gear is engaged with the outer ring of the second gear, the inner ring of the second gear is installed on the upper part of the crushing shaft, a plurality of crushing knives are arranged on the crushing shaft, and the crushing shaft is located in the mixing barrel; the first gear is rotated by starting the first motor, the crushing shaft is rotated by engaging the first gear and the second gear, the unscreened feed additive materials are crushed by the plurality of crushing knives, and the practicability of the equipment is improved.

[0010] Preferably, the stirring mechanism comprises a second motor, a stirring shaft, two groups of scrapers and a plurality of stirring blades, the bottom end of the stirring shaft is installed on the output end of the second motor, the two groups of scrapers are installed on the stirring shaft respectively, the plurality of stirring blades are installed on the stirring shaft respectively, and the stirring shaft is located inside the mixing mechanism; the stirring shaft is rotated by starting the second motor, the feed additive material on the inner wall of the mixing barrel is stirred through the two groups of scrapers, and the plurality of stirring blades respectively fully stir the feed additive, thereby improving the practicability of the equipment.

[0011] Preferably, the liquid inlet mechanism comprises a first support, a measuring barrel, a piston, an electric cylinder, a second support, a liquid inlet pipe and a liquid outlet pipe, the bottom end of the first support is installed on the cooling mechanism, the bottom end of the measuring barrel is installed on the top end of the first support, the piston is located inside the measuring barrel, the bottom end of the electric cylinder is installed on the top end of the piston, the top end of the electric cylinder is installed on the second support, the bottom end of the second support is installed on the top end of the first support, the output end of the liquid inlet pipe is connected with the outer wall of the measuring barrel, a valve is arranged on the output end of the measuring barrel, a valve is arranged on the input end of the liquid outlet pipe, and the output end of the liquid outlet pipe is connected with the outer wall of the mixing barrel; the first support supports the measuring barrel and the electric cylinder, the piston is raised by contracting the electric cylinder, the liquid inlet pipe discharges the feed additive solution into the measuring barrel, the piston is lowered by extending the electric cylinder, and the feed additive solution is discharged into the mixing barrel through the liquid outlet pipe, thereby improving the practicability of the equipment.

[0012] Preferably, the cooling mechanism comprises a condenser pipe, a first pipeline, a circulating pump, a refrigeration box, a second pipeline and a third support, the output end of the condenser pipe is connected with the input end of the first pipeline, the output end of the first pipeline is connected with the input end of the circulating pump, the output end of the circulating pump is connected with the input end of the refrigeration box, a semiconductor refrigeration plate is arranged on the refrigeration box, the output end of the refrigeration box is connected with the input end of the second pipeline, the output end of the second pipeline is connected with the input end of the condenser pipe, and the bottom ends of the circulating pump and the refrigeration box are installed on the top end of the third support; the cooling liquid in the condenser pipe is discharged into the refrigeration box through the first pipeline by starting the circulating pump, the cooling liquid is refrigerated by starting the refrigeration box, the refrigerated cooling liquid is discharged into the condenser pipe through the second pipeline, the mixing barrel is refrigerated through the condenser pipe, the third support supports the circulating pump and the refrigeration box, and the practicability of the equipment is improved.

[0013] The utility model discloses the beneficial effect compared with prior art is: the feed additive material is placed in the feeding mechanism respectively, and the feed additive material is weighed according to the proportion respectively through the feeding mechanism, and the feed additive material after weighing is arranged in the mixing mechanism, and the big granule feed additive is crushed through starting the crushing mechanism, and the feed additive material is stirred through starting the stirring mechanism, and the solution of feed additive is arranged in the mixing mechanism through starting the liquid inlet mechanism, and is fully stirred through the stirring mechanism, and the cooling mechanism is started to the temperature reduction in the mixing mechanism, prevents the equipment and appears the phenomenon of overheating, improves the practicality of equipment. BRIEF DESCRIPTION OF DRAWINGS

[0014] Figure 1 It is the shaft measurement cross section of the utility model;

[0015] Figure 2 It is the feeding mechanism shaft measurement schematic view of the utility model;

[0016] Figure 3 It is the mixing mechanism shaft measurement cross section of the utility model;

[0017] Figure 4 It is the crushing mechanism shaft measurement schematic view of the utility model;

[0018] Figure 5 It is the stirring mechanism shaft measurement schematic view of the utility model;

[0019] Figure 6 It is the liquid inlet mechanism shaft measurement schematic view of the utility model;

[0020] Figure 7 It is the cooling mechanism shaft measurement schematic view of the utility model.

[0021] Mark in the drawing: 01, feeding mechanism;11, support rod;12, metering scale;13, weighing barrel;14, first discharge pipe;02, mixing mechanism;21, mixing barrel;22, screening board;23, second discharge pipe;03, crushing mechanism;31, first motor;32, first gear;33, second gear;34, crushing shaft;35, crushing knife;04, stirring mechanism;41, second motor;42, stirring shaft;43, scraper;44, stirring vane;05, liquid inlet mechanism;51, first support;52, metering barrel;53, piston;54, electric cylinder;55, second support;56, liquid inlet pipe;57, liquid discharge pipe;06, cooling mechanism;61, condenser pipe;62, first pipeline;63, circulating pump;64, refrigeration box;65, second pipeline;66, third support. DETAILED DESCRIPTION

[0022] For the convenience of understanding the utility model, the utility model will be described more fully below with reference to the relevant drawings. The utility model can be realized in many different forms and is not limited to the embodiments described herein. On the contrary, the purpose of providing these embodiments is to make the disclosure of the utility model more thorough and comprehensive. Embodiment 1

[0023] As Figure 1 shown, a kind of based on feed additive production with stirring dispersion device includes feeding mechanism 01;It further includes mixing mechanism 02, crushing mechanism 03, stirring mechanism 04, liquid inlet mechanism 05 and cooling mechanism 06, feeding mechanism 01 is installed at the top of mixing mechanism 02, crushing mechanism 03 and stirring mechanism 04 are located inside mixing mechanism 02, stirring mechanism 04 is located in the lower part of crushing mechanism 03, liquid inlet mechanism 05 and cooling mechanism 06 are located at the right side of mixing mechanism 02, cooling mechanism 06 is located below liquid inlet mechanism 05;

[0024] Feed additive material is placed in feeding mechanism 01 respectively, is weighed according to proportion by feeding mechanism 01 respectively to feed additive material, after weighing, feed additive material is discharged into mixing mechanism 02, by starting crushing mechanism 03, large-particle feed additive is crushed, by starting stirring mechanism 04, feed additive material is stirred, while starting liquid inlet mechanism 05, the solution of feed additive is discharged into mixing mechanism 02, is fully stirred by stirring mechanism 04, by starting cooling mechanism 06, the temperature of mixing mechanism 02 is reduced, to prevent the phenomenon of overheating of equipment, improve the practicability of equipment;

[0025] As Figure 2 shown, feeding mechanism 01 includes multiple support rods 11, metering scale 12, weighing barrel 13 and first discharge pipe 14, the bottom of metering scale 12 is installed at the top of multiple support rods 11, the top of metering scale 12 is provided with opening, weighing barrel 13 is installed at the opening at the top of metering scale 12, the input end of first discharge pipe 14 is connected with the output end of weighing barrel 13, and the output end of first discharge pipe 14 is provided with valve;

[0026] As Figure 3 shown, mixing mechanism 02 includes mixing barrel 21, screening plate 22 and second discharge pipe 23, the top of mixing barrel 21 is provided with opening, screening plate 22 is installed on the inner wall of mixing barrel 21, the input end of second discharge pipe 23 is connected with the bottom of mixing barrel 21, and the output end of second discharge pipe 23 is provided with valve;

[0027] As Figure 4As shown, the crushing mechanism 03 includes a first motor 31, a first gear 32, a second gear 33, a crushing shaft 34, and multiple crushing blades 35. The inner ring of the first gear 32 is mounted on the output end of the first motor 31, and the outer ring of the first gear 32 meshes with the outer ring of the second gear 33. The inner ring of the second gear 33 is mounted on the upper part of the crushing shaft 34, and multiple crushing blades 35 are provided on the crushing shaft 34. The crushing shaft 34 is located inside the mixing barrel 21.

[0028] like Figure 5 As shown, the stirring mechanism 04 includes a second motor 41, a stirring shaft 42, two sets of scrapers 43 and multiple stirring blades 44. The bottom end of the stirring shaft 42 is installed on the output end of the second motor 41. The two sets of scrapers 43 are respectively installed on the stirring shaft 42. The multiple stirring blades 44 are respectively installed on the stirring shaft 42. The stirring shaft 42 is located inside the mixing mechanism 02.

[0029] like Figure 6 As shown, the liquid inlet mechanism 05 includes a first support 51, a metering tank 52, a piston 53, an electric cylinder 54, a second support 55, a liquid inlet pipe 56, and a liquid outlet pipe 57. The bottom end of the first support 51 is mounted on the cooling mechanism 06, the bottom end of the metering tank 52 is mounted on the top end of the first support 51, the piston 53 is located inside the metering tank 52, the bottom end of the electric cylinder 54 is mounted on the top end of the piston 53, the top end of the electric cylinder 54 is mounted on the second support 55, and the bottom end of the second support 55 is mounted on the top end of the first support 51. The output end of the liquid inlet pipe 56 is connected to the outer wall of the metering tank 52, and a valve is provided on the output end of the metering tank 52. The input end of the liquid outlet pipe 57 is connected to the outer wall of the metering tank 52, and a valve is provided on the input end of the liquid outlet pipe 57. The output end of the liquid outlet pipe 57 is connected to the outer wall of the mixing tank 21.

[0030] Multiple support rods 11 respectively weigh the feed additive materials into the weighing bucket 13, and weigh them through the weighing scale 12. The weighed feed additive materials are then discharged into the mixing mechanism 02 through the first discharge pipe 14, and then discharged into the mixing bucket 21. The feed additive particles are then screened by the screening plate 22. The mixed feed additives are discharged through the second discharge pipe 23. The first motor 31 is started to rotate the first gear 32, and the meshing of the first gear 32 and the second gear 33 rotates the crushing shaft 34, which is then crushed by multiple crushing blades 3. 5. Unscreened feed additive materials are crushed. The stirring shaft 42 is rotated by starting the second motor 41. The feed additive materials on the inner wall of the mixing tank 21 are stirred by two sets of scrapers 43. Multiple stirring blades 44 thoroughly stir the feed additives. The first support 51 supports the metering tank 52 and the electric cylinder 54. The piston 53 is raised by retracting the electric cylinder 54, so that the feed additive solution is discharged into the metering tank 52 by the liquid inlet pipe 56. The piston 53 is lowered by extending the electric cylinder 54, so that the feed additive solution is discharged into the mixing tank 21 through the liquid outlet pipe 57, thereby improving the practicality of the equipment. Example 2

[0031] like Figure 7 As shown, based on Embodiment 1, a cooling mechanism 06 is also included. The cooling mechanism 06 includes a condenser pipe 61, a first pipe 62, a circulating pump 63, a refrigeration box 64, a second pipe 65, and a third support 66. The output end of the condenser pipe 61 is connected to the input end of the first pipe 62, the output end of the first pipe 62 is connected to the input end of the circulating pump 63, the output end of the circulating pump 63 is connected to the input end of the refrigeration box 64, a semiconductor refrigeration plate is provided on the refrigeration box 64, the output end of the refrigeration box 64 is connected to the input end of the second pipe 65, the output end of the second pipe 65 is connected to the input end of the condenser pipe 61, and the bottom ends of the circulating pump 63 and the refrigeration box 64 are both installed on the top end of the third support 66.

[0032] The circulating pump 63 is started to discharge the coolant in the condenser 61 through the first pipe 62 into the refrigeration box 64. The refrigeration box 64 is started to cool the coolant. The cooled coolant is discharged through the second pipe 65 into the condenser 61. The condenser 61 then cools the mixing tank 21. The third bracket 66 supports the circulating pump 63 and the refrigeration box 64, improving the practicality of the equipment.

[0033] like Figures 1 to 7As shown, the utility model discloses a kind of stirring dispersion devices based on feed additive production, when working, first multiple support rods 11 are respectively to the weighing scale 12 is this time, by price feed additive material is respectively arranged to weighing barrel 13, weighing scale 12 is weighed, after weighing, feed additive material is arranged to mixed mechanism 02 in first discharge pipe 14, then feed additive material is respectively arranged to mixed barrel 21, after screening board 22, feed additive granule is screened, after stirring, feed additive is discharged by second discharge pipe 23, then by starting first motor 31, first gear 32 is rotated, by first gear 32 and second gear 33 meshing, break shaft 34 is rotated, respectively by multiple broken knives 35, un-screened feed additive material is broken, then by starting second motor 41, stirring shaft 42 is rotated, by two groups of scrapers 43, feed additive material on the inner wall of mixed barrel 21 is stirred, multiple stirring blades 44 are respectively fully stirred feed additive, then first support 51 supports weighing barrel 52 and electric cylinder 54, by retracting electric cylinder 54, piston 53 is raised, and inlet pipe 56 is arranged to weighing barrel 52 in feed additive solution, by extending electric cylinder 54, piston 53 is lowered, and feed additive solution is arranged to mixed barrel 21 in discharge pipe 57, finally by starting circulating pump 63, cooling liquid in condenser pipe 61 is arranged to refrigeration box 64 in first pipeline 62, by starting refrigeration box 64, cooling liquid is refrigerated, and after refrigeration, cooling liquid is arranged to condenser pipe 61 in second pipeline 65, and mixed barrel 21 is refrigerated in condenser pipe 61, and third support 66 supports circulating pump 63 and refrigeration box 64, to improve the practicability of equipment.

[0034] The weighing scale 12, the first motor 31, the second motor 41, the electric cylinder 54, the piston 53 and the refrigeration box 64 are purchased on the market, and the technical personnel in the industry only need to install and operate according to the attached instruction manual, without the creative labor of the technical personnel in the field.

[0035] The utility model realizes the main function as follows: feed additive materials are respectively placed in the feeding mechanism 01, the feeding mechanism 01 is weighed according to the proportion, the weighed feed additive materials are arranged in the mixing mechanism 02, the stirring mechanism 04 is fully stirred, the cooling mechanism 06 is started to cool the mixing mechanism 02, to prevent the equipment from overheating, and improve the practicability of the equipment.

[0036] The above is only the preferred embodiment of the utility model, and it should be pointed out that, for ordinary technical personnel in the technical field, without departing from the technical principle of the utility model, a number of improvements and modifications can be made, and these improvements and modifications should be regarded as the protection range of the utility model.

Claims

1. A stirring and dispersing device for feed additive production based on feed, comprising a feeding mechanism (01); characterized in that, The device also comprises a mixing mechanism (02), a crushing mechanism (03), a stirring mechanism (04), a liquid feeding mechanism (05) and a cooling mechanism (06), the feeding mechanism (01) is installed at the top end of the mixing mechanism (02), the crushing mechanism (03) and the stirring mechanism (04) are both located inside the mixing mechanism (02), the stirring mechanism (04) is located below the crushing mechanism (03), the liquid feeding mechanism (05) and the cooling mechanism (06) are both located on the right side of the mixing mechanism (02), and the cooling mechanism (06) is located below the liquid feeding mechanism (05).

2. The stirring and dispersing device for feed additive production according to claim 1, characterized in that, The feeding mechanism (01) comprises a plurality of support rods (11), a metering scale (12), a weighing barrel (13) and a first discharge pipe (14), the bottom end of the metering scale (12) is installed at the top end of the plurality of support rods (11), the top end of the metering scale (12) is provided with an opening, the weighing barrel (13) is installed at the opening at the top end of the metering scale (12), the input end of the first discharge pipe (14) is connected with the output end of the weighing barrel (13), and the output end of the first discharge pipe (14) is provided with a valve.

3. The stirring and dispersing device for feed additive production according to claim 1, characterized in that, The mixing mechanism (02) comprises a mixing barrel (21), a screening plate (22) and a second discharge pipe (23), the top end of the mixing barrel (21) is provided with an opening, the screening plate (22) is installed on the inner wall of the mixing barrel (21), the input end of the second discharge pipe (23) is connected with the bottom end of the mixing barrel (21), and the output end of the second discharge pipe (23) is provided with a valve.

4. The stirring and dispersing device for feed additive production according to claim 3, wherein The crushing mechanism (03) comprises a first motor (31), a first gear (32), a second gear (33), a crushing shaft (34) and a plurality of crushing knives (35), the inner ring of the first gear (32) is installed on the output end of the first motor (31), the outer ring of the first gear (32) is engaged with the outer ring of the second gear (33), the inner ring of the second gear (33) is installed on the upper part of the crushing shaft (34), the crushing shaft (34) is provided with a plurality of crushing knives (35), and the crushing shaft (34) is located in the mixing barrel (21).

5. The stirring and dispersing device for feed additive production according to claim 1, wherein The stirring mechanism (04) comprises a second motor (41), a stirring shaft (42), two groups of scrapers (43) and a plurality of stirring blades (44), the bottom end of the stirring shaft (42) is installed on the output end of the second motor (41), the two groups of scrapers (43) are respectively installed on the stirring shaft (42), the plurality of stirring blades (44) are respectively installed on the stirring shaft (42), and the stirring shaft (42) is located inside the mixing mechanism (02).

6. The stirring and dispersing device for feed additive production according to claim 3, wherein The liquid inlet mechanism (05) comprises a first support (51), a metering barrel (52), a piston (53), an electric cylinder (54), a second support (55), a liquid inlet pipe (56) and a liquid outlet pipe (57), the bottom end of the first support (51) is installed on the cooling mechanism (06), the bottom end of the metering barrel (52) is installed on the top end of the first support (51), the piston (53) is located inside the metering barrel (52), the bottom end of the electric cylinder (54) is installed on the top end of the piston (53), the top end of the electric cylinder (54) is installed on the second support (55), the bottom end of the second support (55) is installed on the top end of the first support (51), the output end of the liquid inlet pipe (56) is connected with the outer wall of the metering barrel (52), a valve is arranged on the output end of the metering barrel (52), the input end of the liquid outlet pipe (57) is arranged on the outer wall of the metering barrel (52), a valve is arranged on the input end of the liquid outlet pipe (57), and the output end of the liquid outlet pipe (57) is connected with the outer wall of the mixing barrel (21).

7. The stirring and dispersing device for feed additive production according to claim 1, wherein The cooling mechanism (06) comprises a condenser pipe (61), a first pipeline (62), a circulating pump (63), a refrigeration box (64), a second pipeline (65) and a third support (66), the output end of the condenser pipe (61) is connected with the input end of the first pipeline (62), the output end of the first pipeline (62) is connected with the input end of the circulating pump (63), the output end of the circulating pump (63) is connected with the input end of the refrigeration box (64), the refrigeration box (64) is provided with a semiconductor refrigeration plate, the output end of the refrigeration box (64) is connected with the input end of the second pipeline (65), the output end of the second pipeline (65) is connected with the input end of the condenser pipe (61), and the bottom ends of the circulating pump (63) and the refrigeration box (64) are installed on the top end of the third support (66).

Citation Information

Patent Citations

  • Stirring and dispersing device for feed additive production

    CN220003575U