Grain steaming and air cooling device for wine brewing workshop

By adopting a dual cooling chamber structure and a staggered stirring shaft design in the grain steaming and cooling device in the brewing workshop, combined with the stirring of the cold air fan and the air cooling treatment, the problem of heat dissipation difficulties caused by the accumulation of steamed grains was solved, and the full cooling and efficient heat dissipation of the steamed grains were achieved.

CN223458311UActive Publication Date: 2025-10-21YELLOW CRANE TOWER WINE (SUIZHOU) CO LTD
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Patent Information

Application Number
CN202422707503.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-06
Publication Date
2025-10-21
Estimated Expiration
2034-11-06

AI Technical Summary

Technical Problem

In the existing steamed grain air cooling device in the brewing workshop, the steamed grain is easy to accumulate again after being stirred, which makes it difficult for the heat to dissipate quickly and reduces the heat dissipation and cooling effect.

Method used

A grain steaming and cooling device for a brewing workshop was designed. It adopts a dual cooling chamber structure, with a conveyor belt and a stirring shaft installed in each cooling chamber. The rotating shaft is driven by a motor to drive the stirring shaft to tumble. Adjacent stirring shafts are installed in a staggered manner. Combined with a cold air fan, the grain steaming is tumbled and cooled multiple times.

Benefits of technology

This process enables multiple stirring of the steamed grains, improving heat dissipation and cooling efficiency, ensuring thorough cooling of the steamed grains, and enhancing the efficiency of the brewing process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of wine making, in particular to a wine making workshop grain steaming air cooling device which comprises a cooling box, a first cooling chamber and a second cooling chamber are formed in the cooling box, and a conveying belt is movably installed in each of the first cooling chamber and the second cooling chamber. Two first shells are welded to one side of the cooling box, transmission rods are movably installed in the two first shells correspondingly, a first gear is in engaged connection with a second gear, and a plurality of rotating shafts are movably installed in the first cooling chamber and the second cooling chamber at equal intervals correspondingly; a plurality of stirring shafts are welded to the outer side of the rotating shaft at equal intervals. According to the utility model, the steamed grains conveyed above the conveying belt can be turned and stirred for multiple times, so that the steamed grains conveyed by the conveying belt can be turned and stirred for multiple times, the steamed grains can be fully cooled, and the heat dissipation and cooling efficiency of the wine-making steamed grains is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of brewing wine, specifically to a wine workshop grain steaming air cooling device. BACKGROUND

[0002] Brewing wine is a process of producing alcoholic beverages containing a certain concentration of alcohol by microbial fermentation, and brewing wine raw materials and brewing containers are two prerequisites for grain brewing, different brewing raw materials, different microorganisms and brewing processes, and wine brewing is the essence of Chinese wine brewing.

[0003] After searching, a kind of wine workshop grain steaming air cooling device is proposed in Chinese utility model patent, authorized announcement number CN220951718U, announcement date is May 14, 2024, wherein "the inside of grain steaming air cooling tank is equipped with two grain steaming conveying belts, can make grain steaming be divided into two routes and be conveyed, make the grain steaming of upper and lower conveying simultaneously air cooling cooling, to improve the efficiency of grain steaming air cooling"

[0004] The above-mentioned document is connected with the motor through the belt drive by the upper stirring rod and the lower stirring rod, one motor can drive the upper stirring rod and the lower stirring rod to rotate at the same time, save cost expenditure, the grain steaming conveying belt is conveniently turned over and spread by stirring rod, avoid grain steaming accumulation, to improve the uniformity of grain steaming air cooling, but the two grain steaming routes in the above-mentioned document are each equipped with only one stirring rod to turn over and stir the brewing grain, when grain steaming is turned over and stirred once, it will be accumulated again, and the internal heat of the accumulated grain steaming is difficult to dissipate quickly, thereby reducing the heat dissipation and cooling effect of grain steaming.

[0005] Therefore, a wine workshop grain steaming air cooling device is proposed. UTILITY MODEL CONTENT

[0006] The utility model discloses a brewing workshop steam grain air cooling device to solve the problem of the above background technology, to solve the problem, the utility model provides the following technical scheme: a brewing workshop steam grain air cooling device, including the cooling box, the inside of cooling box is opened with first cooling chamber and second cooling chamber respectively, the inside of first cooling chamber and second cooling chamber is swingly installed with a conveyor belt respectively, one side of cooling box is welded with two first housings, the inside of two first housings is swingly installed with a transmission rod respectively, the outside of two transmission rods is fixed with a plurality of second gears respectively at equal distance, the inner wall of two transmission rods is swingly installed with a plurality of first gears respectively at equal distance, first gear and second gear are engaged, the inside of first cooling chamber and second cooling chamber is swingly installed with a plurality of rotating shafts at equal distance respectively, the outside of rotating shaft is welded with a plurality of stirring shafts at equal distance, the outside welding of adjacent two rotating shafts a plurality of stirring shafts is installed in dislocation, and one end of rotating shaft extends into first housing interior and is fixedly connected with one end of first gear, and first toothed belt drive connection is formed between two transmission rods, and one end of one first housing is fixed with a first motor through bolt, and the output end of first motor extends into first housing interior and is fixedly connected with one end of transmission rod.

[0007] Preferably, one end of the cooling box is welded with a second feeding groove, and a first feeding groove is formed in the inside of the second feeding groove, and the first feeding groove and the second feeding groove are used separately, and four corners of the bottom of the cooling box are welded with a supporting leg respectively.

[0008] Preferably, a first discharge port and a second discharge port are welded on one side of the second feeding groove respectively, one end of the first discharge port extends into the inside of the first cooling chamber, and one end of the second discharge port extends into the inside of the second cooling chamber.

[0009] Preferably, the inside of the first discharge port is communicated with the first feeding groove, and the inside of the second discharge port is communicated with the second feeding groove.

[0010] Preferably, a discharging groove is welded on one side of the cooling box, and the discharging groove is communicated with the inside of the first cooling chamber and the second cooling chamber respectively.

[0011] Preferably, a cold air fan is fixedly installed on the top of the cooling box, and two first air guide pipes and second air guide pipes are connected on the two sides of the cold air fan through flanges.

[0012] Preferably, a second air outlet groove is welded on the top end of the inside of the first cooling chamber, and a first air outlet groove is welded on the top end of the inside of the second cooling chamber.

[0013] Preferably, one end of the two first air guide pipes is communicated with the inside of the second air outlet groove, and one end of the two second air guide pipes is communicated with the inside of the first air outlet groove.

[0014] Preferably, one side of the cooling box is welded with a second shell, and two gear rotating shafts are movably installed on the two sides inside the second shell respectively, a second gear belt is fixedly sleeved between the two gear rotating shafts, and one end of each of the two gear rotating shafts is extended into the first cooling chamber and the second cooling chamber respectively and fixedly connected with the rotating shaft of the conveying belt.

[0015] Preferably, the second shell is fixedly provided with a second motor outside through bolts, and one end of a gear rotating shaft is fixedly connected with the output end of the second motor.

[0016] Compared with the prior art, the brewing workshop grain steaming air cooling device has the following beneficial effects:

[0017] The rotation of the first motor output end can simultaneously drive the multiple rotating shafts movably installed at equal distances inside the first cooling chamber and the second cooling chamber to rotate, the rotation of the rotating shafts can drive the stirring shafts to rotate, the rotation of the stirring shafts can stir the brewing grain steaming on the conveying belt, since the stirring shafts welded outside the two adjacent second cooling chambers are installed in a staggered manner, when the grain steaming is stirred by one rotating shaft, the grain steaming on the conveying belt is re-stacked at one place, when the grain steaming is stirred by the next rotating shaft, the previously re-stacked grain steaming is stirred again, and thus the grain steaming on the conveying belt is stirred multiple times, so that the grain steaming conveyed by the conveying belt can be stirred multiple times, thereby ensuring that the grain steaming can be fully cooled, and improving the heat dissipation and cooling efficiency of the brewing grain steaming. BRIEF DESCRIPTION OF DRAWINGS

[0018] Figure 1 It is a structure schematic view of the main body of the utility model;

[0019] Figure 2 It is a front view structure schematic view of the utility model;

[0020] Figure 3 It is a top view structure schematic view of the inside of the cooling box of the utility model;

[0021] Figure 4 It is a structure schematic view of the utility model Figure 3 It is an enlarged structure schematic view of A in the utility model.

[0022] In the figure: 1, cooling box; 2, first air outlet groove; 3, supporting leg; 4, discharging groove; 5, first toothed belt; 6, first motor; 7, transmission rod; 8, first shell; 9, first air duct; 10, cooling fan; 11, second air outlet groove; 12, first feeding groove; 13, first discharge port; 14, second feeding groove; 15, first cooling chamber; 16, second discharge port; 17, second cooling chamber; 18, conveying belt; 19, rotating shaft; 20, stirring shaft; 21, second air duct; 22, second motor; 23, second shell; 24, gear rotating shaft; 25, second toothed belt; 26, first gear; 27, second gear. DETAILED DESCRIPTION

[0023] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.

[0024] In the embodiment, the first cooling chamber 15 and the second cooling chamber 17 are respectively formed in the cooling box 1, one conveying belt 18 is movably installed in the first cooling chamber 15 and the second cooling chamber 17 respectively, two first shells 8 are welded on one side of the cooling box 1, one transmission rod 7 is movably installed in the first shell 8, a plurality of second gears 27 are equidistantly and fixedly arranged on the outer side of the transmission rod 7, a plurality of first gears 26 are equidistantly and movably installed on the inner wall of the transmission rod 7, the first gear 26 is meshed with the second gear 27, a plurality of rotating shafts 19 are equidistantly and movably installed in the first cooling chamber 15 and the second cooling chamber 17 respectively, a plurality of stirring shafts 20 are equidistantly welded on the outer side of the rotating shaft 19, the stirring shafts 20 welded on the outer side of the adjacent two rotating shafts 19 are installed in a staggered manner, one end of the rotating shaft 19 extends into the first shell 8 and is fixedly connected with one end of the first gear 26, the transmission rod 7 is in transmission connection with the first toothed belt 5 between the two transmission rods 7, one end of the first shell 8 is fixedly provided with the first motor 6 through bolts, and the output end of the first motor 6 extends into the first shell 8 and is fixedly connected with one end of the transmission rod 7.

[0025] Specifically, as Figure 1 , Figure 2 , Figure 3 and Figure 4As shown, by controlling the rotation of the output end of the first motor 6, the transmission rod 7 inside the first shell 8 can be rotated. Since the two transmission rods 7 are connected by the first toothed belt 5, and the first toothed belt 5 is connected to the two transmission rods 7 by the gear disc, when one transmission rod 7 rotates, the other transmission rod 7 installed inside the first shell 8 can be rotated by the transmission effect of the first toothed belt 5. Since the outer sides of the two transmission rods 7 are respectively and equally distantly fixed with a plurality of second gears 27, and the second gears 27 are meshed and connected with the first gear 26 movably installed on the inner wall of the first shell 8, the second gears 27 can be rotated by the rotation of the transmission rod 7, the first gear 26 can be rotated by the rotation of the second gear 27, and the rotating shaft 19 can be rotated by the rotation of the first gear 26. Therefore, the plurality of rotating shafts 19 movably installed at equal distances inside the first cooling chamber 15 and the second cooling chamber 17 can be simultaneously rotated by the rotation of the output end of the first motor 6. Since the outer sides of the rotating shafts 19 are equally distantly welded with a plurality of stirring shafts 20, the stirring shafts 20 can be rotated by the rotation of the rotating shafts 19, and the wine brewing steamed grains conveyed above the conveying belt 18 can be stirred by the rotation of the stirring shafts 20. Since the stirring shafts 20 welded on the outer sides of the adjacent two second cooling chambers 17 are installed in a staggered manner, when the steamed grains pass through the stirring of one rotating shaft 19, the steamed grains above the conveying belt 18 will be re-stacked in one place, and when they pass through the stirring of the next rotating shaft 19, the previously re-stacked steamed grains will be stirred again. Such reciprocating stirring of the steamed grains conveyed above the conveying belt 18 can ensure that the steamed grains conveyed by the conveying belt 18 can be stirred multiple times, so that the steamed grains can be fully cooled, and the heat dissipation and cooling efficiency of the wine brewing steamed grains can be improved.

[0026] In the embodiment 2, one end of the cooling box 1 is welded with the second feeding groove 14, the inside of the second feeding groove 14 is provided with the first feeding groove 12, the first feeding groove 12 and the second feeding groove 14 are separately used, four support legs 3 are respectively welded at the four corners of the bottom of the cooling box 1, the first discharging port 13 and the second discharging port 16 are respectively welded at one side of the second feeding groove 14, one end of the first discharging port 13 extends into the inside of the first cooling chamber 15, one end of the second discharging port 16 extends into the inside of the second cooling chamber 17, the first discharging port 13 is connected with the inside of the first feeding groove 12, the second discharging port 16 is connected with the inside of the second feeding groove 14, the discharging groove 4 is welded at one side of the cooling box 1 and is connected with the inside of the first cooling chamber 15 and the second cooling chamber 17, the air cooler 10 is fixedly installed at the top of the cooling box 1, two first air ducts 9 and two second air ducts 21 are respectively connected with the two sides of the air cooler 10 through flanges, the second air outlet groove 11 is welded at the top of the inside of the first cooling chamber 15, the first air outlet groove 2 is welded at the top of the inside of the second cooling chamber 17, one end of the two first air ducts 9 is connected with the inside of the second air outlet groove 11, one end of the two second air ducts 21 is connected with the inside of the first air outlet groove 2, the second shell 23 is welded at one side of the cooling box 1, two gear shafts 24 are movably installed at the two sides of the inside of the second shell 23, the second gear belt 25 is sleeved and fixed between the two gear shafts 24, one end of each of the two gear shafts 24 extends into the inside of the first cooling chamber 15 and the second cooling chamber 17 and is fixedly connected with the rotating shaft of the conveying belt 18, the second motor 22 is fixedly connected with one end of one of the two gear shafts 24 through bolts, and the output end of the second motor 22 extends into the inside of the second shell 23 and is fixedly connected with one end of one of the two gear shafts 24.

[0027] Specifically, as Figure 1 and Figure 2As shown, the rotation of the output end of the second motor 22 can simultaneously drive the two second toothed belts 25 installed inside the second shell 23 to rotate, and the rotation of the two second toothed belts 25 can simultaneously drive the conveying belts 18 movably installed inside the first cooling chamber 15 and the second cooling chamber 17 to convey the steamed grains. Since the cooling box 1 is provided with the air cooler 10 at the top, and the air cooler 10 is connected in communication with the second air outlet groove 11 and the first air outlet groove 2 through the two first air guide pipes 9 and the two second air guide pipes 21 respectively at both sides, therefore, the cold air generated by the air cooler 10 can be injected into the second air outlet groove 11 and the first air outlet groove 2 through the first air guide pipes 9 and the second air guide pipes 21 respectively, and the cold air can be blown from the bottom of the second air outlet groove 11 and the first air outlet groove 2 to the surface of the conveying belts 18, so as to air cool the steamed grains conveyed above the conveying belts 18. Since the cooling box 1 is welded with the second feeding groove 14 at one side, and the second feeding groove 14 is provided with the first feeding groove 12 inside, therefore, the steamed grains to be cooled can be injected into the second feeding groove 14 and the first feeding groove 12 respectively from above the second feeding groove 14, and the steamed grains can be injected onto the conveying belts 18 above the first cooling chamber 15 and the second cooling chamber 17 through the first discharge port 13 and the second discharge port 16 respectively, and then the steamed grains can be conveyed, stirred and air cooled in the conveying process. The steamed grains after cooling and stirring can fall out of the inside of the cooling box 1 through the discharge groove 4, and finally the cooled steamed grains can be collected.

[0028] Working principle: when in use, the steamed grains to be cooled are respectively injected into the interiors of the second feeding groove 14 and the first feeding groove 12 from above the second feeding groove 14, the steamed grains are respectively injected onto the above of the conveying belts 18 installed in the first cooling chamber 15 and the second cooling chamber 17 through the first discharge port 13 and the second discharge port 16, then the steamed grains are conveyed, the two second toothed belts 25 installed in the second shell 23 are simultaneously driven to rotate through the rotation of the output end of the second motor 22, the conveying belts 18 movably installed in the first cooling chamber 15 and the second cooling chamber 17 are simultaneously driven to convey the steamed grains through the rotation of the two second toothed belts 25, the rotating shafts 19 are respectively driven to rotate in the interiors of the first cooling chamber 15 and the second cooling chamber 17 through the rotation of the output end of the first motor 6, the stirring shafts 20 are driven to rotate through the rotation of the rotating shafts 19, the steamed grains conveyed on the above of the conveying belts 18 are stirred through the rotation of the stirring shafts 20, since the stirring shafts 20 welded outside the adjacent two second cooling chambers 17 are installed in a staggered manner, when the steamed grains pass through the stirring of one rotating shaft 19, the steamed grains on the above of the conveying belts 18 are re-stacked at one place, when the steamed grains pass through the stirring of the next rotating shaft 19, the steamed grains re-stacked together before are stirred again, so reciprocating can stir the steamed grains conveyed on the above of the conveying belts 18 for multiple times, so that the steamed grains conveyed through the conveying belts 18 can be stirred for multiple times, so that the steamed grains can be sufficiently cooled, the cold air generated by the air cooler 10 is injected into the interiors of the second air outlet groove 11 and the first air outlet groove 2 through the first air duct 9 and the second air duct 21 respectively, the cold air is blown from the bottoms of the second air outlet groove 11 and the first air outlet groove 2 to the surfaces of the conveying belts 18, so that the steamed grains conveyed on the above of the conveying belts 18 are air-cooled, the steamed grains cooled and stirred are dropped out of the interior of the cooling box 1 through the discharge groove 4, finally the cooled steamed grains are collected.

[0029] It is apparent for those skilled in the art that the present application is not limited to the details of the foregoing exemplary embodiments, and thus can take other concrete forms without departing from the spirit or essential characteristics of the present application. Accordingly, no matter from which point of view, the embodiments should be considered as exemplary and non-restrictive, and the scope of the present application is defined by the appended claims rather than the foregoing description, and thus all changes falling within the meaning and range of equivalency of the claims are intended to be embraced therein. Any reference signs in the claims should not be construed as limiting the claims to which they are involved.

Claims

1. A kind of distillery grain steaming air cooling device, including cooling box (1), it is characterized in that: The inner part of the cooling box (1) is respectively provided with a first cooling chamber (15) and a second cooling chamber (17), the inner part of the first cooling chamber (15) and the second cooling chamber (17) is respectively movably provided with a conveying belt (18), one side of the cooling box (1) is welded with two first housings (8), the inner part of the two first housings (8) is respectively movably provided with a transmission rod (7), the outer side of the two transmission rods (7) is respectively fixedly provided with a plurality of second gears (27) at equal distances, the inner wall of the two transmission rods (7) is respectively movably provided with a plurality of first gears (26) at equal distances, the first gears (26) and the second gears (27) are meshedly connected, the inner part of the first cooling chamber (15) and the second cooling chamber (17) is respectively movably provided with a plurality of rotating shafts (19) at equal distances, the outer side of the rotating shaft (19) is welded with a plurality of stirring shafts (20) at equal distances, the plurality of stirring shafts (20) welded on the outer side of the adjacent two rotating shafts (19) are installed at different positions, one end of the rotating shaft (19) extends into the first housing (8) and is fixedly connected with one end of the first gear (26), the two transmission rods (7) are transmissionally connected through a first gear belt (5), one end of the first housing (8) is fixedly provided with a first motor (6) through bolts, the output end of the first motor (6) extends into the first housing (8) and is fixedly connected with one end of the transmission rod (7).

2. The air cooling device for the grist evaporation in the brewhouse according to claim 1, characterized in that: One end of the cooling box (1) is welded with a second feeding groove (14), the inner part of the second feeding groove (14) is provided with a first feeding groove (12), and the first feeding groove (12) and the second feeding groove (14) are separately used, and four corners of the bottom of the cooling box (1) are respectively welded with a supporting leg (3).

3. The air cooling device for the evaporated cereal grains in the brewhouse according to claim 2, characterized in that: One side of the second feeding groove (14) is respectively welded with a first discharge port (13) and a second discharge port (16), one end of the first discharge port (13) extends into the first cooling chamber (15), and one end of the second discharge port (16) extends into the second cooling chamber (17).

4. The air cooling device for the evaporated cereal grains in the brewhouse according to claim 3, characterized in that: The inner part of the first discharge port (13) is communicated with the first feeding groove (12), and the inner part of the second discharge port (16) is communicated with the second feeding groove (14).

5. The air cooling device for the evaporated cereal grains in the brewhouse according to claim 1, characterized in that: One side of the cooling box (1) is welded with a discharging groove (4), and the discharging groove (4) is respectively communicated with the inner part of the first cooling chamber (15) and the second cooling chamber (17).

6. The air cooling device for the evaporated cereal grains in the brewhouse according to claim 1, characterized in that: The top of the cooling box (1) is fixedly provided with a cooling fan (10), and the two sides of the cooling fan (10) are respectively connected with two first air guide pipes (9) and second air guide pipes (21) through flanges.

7. The air cooling device for the evaporated cereal grains in the brewhouse according to claim 1, characterized in that: The top end of the inner part of the first cooling chamber (15) is welded with a second air outlet groove (11), and the top end of the inner part of the second cooling chamber (17) is welded with a first air outlet groove (2).

8. The air cooling device for the evaporated cereal grains in the brewhouse according to claim 6, characterized in that: One end of the two first air guide pipes (9) is communicated with the inner part of the second air outlet groove (11), and one end of the two second air guide pipes (21) is communicated with the inner part of the first air outlet groove (2).

9. The air cooling device for the evaporated cereal grains in the brewhouse according to claim 1, characterized in that: One side of the cooling box (1) is welded with a second shell (23), and two sides inside the second shell (23) are movably installed with a gear rotating shaft (24) respectively, a second gear belt (25) is fixedly sleeved between the two gear rotating shafts (24), and one end of the two gear rotating shafts (24) respectively extends into the first cooling chamber (15) and the second cooling chamber (17) and is fixedly connected with the rotating shaft of the conveying belt (18).

10. The air cooling device for the evaporated cereal grains in the brewhouse according to claim 9, characterized in that: The outer side of the second shell (23) is fixedly provided with a second motor (22) through bolts, and one end of the second motor (22) extends into the second shell (23) and is fixedly connected with one end of a gear rotating shaft (24).

Citation Information

Patent Citations

  • A steam grain air cooling device for brewing workshop

    CN220951718U