CN216738261U - Grain cooling device for wine making - Google Patents

Grain cooling device for wine making Download PDF

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Publication number
CN216738261U
CN216738261U CN202123415661.5U CN202123415661U CN216738261U CN 216738261 U CN216738261 U CN 216738261U CN 202123415661 U CN202123415661 U CN 202123415661U CN 216738261 U CN216738261 U CN 216738261U
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China
Prior art keywords
conveyor belt
cooling device
grain
conveying belt
belt
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CN202123415661.5U
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Chinese (zh)
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方志华
尹涛
金盛基
刘华恩
蔡峰
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Jiangsu Juyuan Machinery Equipment Co ltd
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Jiangsu Juyuan Machinery Equipment Co ltd
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Abstract

The utility model discloses a grain spreading and cooling device for wine brewing, which comprises a circularly rotating spreading and cooling conveyor belt densely provided with vent holes, wherein a rectangular ventilation groove with an open top is arranged between an upper conveyor belt and a lower conveyor belt of the conveyor belt, and the ventilation groove is provided with an air blower. The ventilation groove top opens outwards, upwards extends from last conveyer belt both sides again and forms the bounding wall, lies in between the bounding wall of conveyer belt upper plane both sides, rotates and is connected with a plurality of stand cool complementary units. The top end of the coaming is connected with the air exhaust cover. According to the grain drying machine, the steamed grains are conveyed by the conveying belt, scattered by the spreading and cooling auxiliary mechanism and then spread, so that the grains are in full contact with the air vents on the conveying belt. Go up the drive belt bottom and blow by the air-blower, the high velocity air current sees through the intensive ventilation hole on the drive belt and takes away the heat, and this grain cooling mode need not manual operation, uses manpower sparingly, and the cooling effect will be better than the artifical natural cooling that turns over the cold far away.

Description

Grain cooling device for wine making
Technical Field
The utility model relates to the technical field of brewing equipment, in particular to a grain spreading and cooling device for brewing wine.
Background
In the existing wine brewing process, after grains are steamed, the grains need to be quickly cooled due to high temperature so as to be used in the next procedure. Most of the existing cooling methods are manual cooling, namely, the steamed grains are spread out and turned upside down by manpower or a hand-held stirring tool to cool the steamed grains. The manual cooling mode has the following problems: firstly, the labor intensity of manual cooling is high, and the cooling effect is poor; secondly, in the process of manual cooling, the stirring uniformity is difficult to control by manual operation, so that the grain is cooled unevenly; and thirdly, manual cooling cannot be continuously carried out, and the next batch of cooling operation can be carried out only after the temperature of the existing grains is reduced, which is not beneficial to continuous production.
SUMMERY OF THE UTILITY MODEL
The utility model mainly aims to provide a grain spreading and cooling device for wine brewing, which can effectively solve the problems in the background technology.
In order to achieve the purpose, the utility model adopts the technical scheme that: the utility model provides a making wine is with grain stand cool device, including the cool conveyer belt in the stand that has ventilation hole, circulation pivoted of gathering, be equipped with open-top's rectangle ventilation groove between the upper and lower conveyer belt of conveyer belt, the ventilation groove is equipped with the air-blower. The top end of the ventilation groove is outwards opened, the two sides of the upper conveying belt extend upwards to form enclosing plates, and a plurality of spread cooling auxiliary mechanisms are rotatably connected between the enclosing plates on the two sides of the upper plane of the conveying belt. The top end of the coaming is connected with the air exhaust cover.
Furthermore, at least two support rods of the upper conveyor belt are arranged in the notch of the ventilation groove, the support rods are parallel to the running direction of the conveyor belts, two ends of the support rods are fixedly connected to the ventilation groove, and the upper plane of each support rod is flush with the notch.
Further, be equipped with the baffle in the ventilation groove, separate the ventilation groove into a plurality of ventilation chambeies, air-blower and ventilation chamber intercommunication, the die-pin bottom that is located ventilation chamber top is fixed with the deep bead.
Furthermore, the wind shield extends into the ventilation cavity obliquely downwards, and the inclined surface faces the air outlet of the air blower.
Furthermore, stand cool complementary unit is including the subassembly of breaing up that is located conveyer belt business turn over material end and being located a plurality of shakeouts subassemblies in the middle part of conveyer belt.
Furthermore, the scattering assemblies at the feeding and discharging ends of the conveyor belt respectively comprise rotating shafts which are rotatably connected between the enclosing plates at two sides and driven by motors, and a plurality of rows of fine stirring rods are uniformly fixed on the rotating shafts at the discharging ends of the conveyor belt. And a thin stirring rod is fixed on the rotating shaft at the feeding end of the conveying belt and is spirally and densely distributed along the arc surface of the rotating shaft.
Furthermore, the flattening assembly comprises a rotating shaft which is rotatably connected between the enclosing plates at the two sides and is driven by a motor, and a plurality of round-corner rectangular frames which are mutually perpendicular are uniformly inserted in the rotating shaft.
Furthermore, a discharging limiting plate is fixed at one end of the coaming at the discharging end of the conveying belt, and a feeding limiting plate is fixed between the coamings at the two sides of the feeding end of the conveying belt.
Furthermore, the ventilation cavity is located on the opposite side face of the air blower and is provided with a cleaning opening, and a downward-turning door capable of being opened and closed is arranged on the cleaning opening.
And furthermore, chain wheel shafts are arranged at two ends of the conveyor belt, and the chain wheel shaft at one end is connected with the output shaft of the motor.
Furthermore, an observation window is arranged on the air exhaust cover.
Compared with the prior art, the utility model has the following beneficial effects:
firstly, the utility model adopts a conveyor belt to convey the steamed grains, the bottom of the upper conveyor belt is blown by an air blower, high-speed airflow blown by the air blower takes away heat in the grains through dense ventilation holes on the conveyor belt, and the generated damp and hot air enters an air extraction cover and is extracted out of the air extraction cover by an air extractor. The grain cooling mode does not need manual operation, saves manpower, and the cooling effect of the high-speed airflow is far better than natural cooling of manual cooling.
Secondly, when the grains are conveyed on the conveying belt, the grains are uniformly scattered through the scattering assembly to be uniformly distributed on the conveying belt, then the grains are further spread through the spreading effect of the spreading assembly to be in more sufficient contact with the air vents on the conveying belt, and the high-speed air flow can more quickly, uniformly and fully carry away heat in the grains, so that the grains can be uniformly cooled.
In the utility model, the grain is cooled by the conveyor belt in the process of conveying the grain to the discharge hole, and the conveyor belt does not stop running in the process, so that uninterrupted feeding and cooling can be realized, and the industrial continuous production is facilitated.
Drawings
FIG. 1 is a side view of the overall structure of the present invention;
FIG. 2 is a schematic view of the overall structure of the vent slot of the present invention;
FIG. 3 is a schematic top view of the ventilation slot of the present invention;
FIG. 4 is a schematic top view of the conveyor belt of the present invention;
FIG. 5 is a schematic view of the overall structure of the scattering assembly of the present invention.
In the figure: 1. a conveyor belt; 2. a ventilation slot; 3. a blower; 4. enclosing plates; 5. an air exhaust cover; 6. a support rod; 7. a partition plate; 8. a ventilation cavity; 9. a wind deflector; 10. breaking up the assembly; 101. stirring the thin rod; 11. flattening the assembly; 111. a rounded rectangular frame; 12. a discharging limiting plate; 13. a feeding limiting plate; 14. cleaning the opening; 15. a downward-turning door; 16. a sprocket shaft.
Detailed Description
In order to make the technical means, the creation characteristics, the achievement purposes and the effects of the utility model easy to understand, the utility model is further described with the specific embodiments.
As shown in fig. 1-5, a grain cooling device for brewing wine comprises a cooling conveyor belt 1 which is densely provided with ventilation holes and rotates circularly, chain wheel shafts 16 are arranged at two ends of the conveyor belt 1, and the chain wheel shaft 16 at one end is connected with an output shaft of a motor. A rectangular ventilation groove 2 with an open top is arranged between the upper and lower conveyor belts 1 of the conveyor belt 1, and the ventilation groove 2 is provided with an air blower 3. The top end of the ventilation groove 2 is opened outwards, the two sides of the upper conveying belt 1 extend upwards to form enclosing plates 4, and a plurality of cooling auxiliary mechanisms are rotatably connected between the enclosing plates 4 on the two sides of the upper plane of the conveying belt 1. A discharging limiting plate 12 is fixed on one end of the coaming 4 positioned at the discharging end of the conveyor belt, and a feeding limiting plate 13 is fixed between the coamings 4 at two sides of the feeding end of the conveyor belt. The top end of the coaming 4 is connected with an air extraction cover 5. The inside of the notch of the ventilation groove 2 is at least provided with two supporting rods 6 for conveying the belt 1, the supporting rods 6 are parallel to the running direction of the belt 1, two ends of the supporting rods 6 are fixedly connected with the ventilation groove 2, and the upper plane of the supporting rods 6 is parallel to the notch. Be equipped with baffle 7 in the ventilation groove 2, separate ventilation groove 2 into a plurality of ventilation chambeies 8, air-blower 3 and ventilation chamber 8 intercommunication, ventilation chamber 8 lie in air-blower 3 to having seted up clearance mouth 14 on the side, are equipped with the lower door 15 that turns over that can open and shut on the clearance mouth 14. And a wind shield 9 is fixed at the bottom of the supporting rod 6 above the ventilation cavity 8. The wind shield 9 extends into the ventilation cavity 8 obliquely downwards, and the inclined plane faces the air outlet of the blower 3. The spreading and cooling auxiliary mechanism comprises a scattering assembly 10 positioned at the feeding and discharging end of the conveyor belt and a plurality of spreading assemblies 11 positioned in the middle of the conveyor belt. The scattering assemblies 10 at the feeding and discharging ends of the conveyor belt each comprise a rotating shaft which is rotatably connected between the enclosing plates 4 at the two sides and is driven by a motor, wherein a plurality of rows of fine stirring rods 101 are uniformly fixed on the rotating shaft at the discharging end of the conveyor belt. The thin stirring rods 101 are fixed on the rotating shaft at the feeding end of the conveying belt, and the thin stirring rods 101 are spirally and densely distributed along the arc surface of the rotating shaft. The flattening assembly 11 comprises a rotating shaft which is rotatably connected between the two side enclosing plates 4 and is driven by a motor, and a plurality of round-corner rectangular frames 111 which are mutually perpendicular are uniformly inserted in the rotating shaft.
It should be noted that the working principle of the grain cooling device for brewing wine of the utility model is as follows: at first, treat that refrigerated grain is placed conveyer belt 1 pan feeding end, feeding limiting plate 13 makes grain be difficult for dropping, and the motor drives sprocket shaft 16 afterwards and rotates, and then drives conveyer belt 1 and rotate, and conveyer belt 1 drives treats that refrigerated grain removes to the discharge gate. At this time, the scattering assemblies 10 at the two ends of the conveyor belt 1 and the flattening assemblies 11 at the middle part of the conveyor belt 1 start to rotate, and with the movement of the conveyor belt 1, grains are scattered in the steps of scattering at the feeding part of the conveyor belt 1, flattening at the middle part and scattering at the discharging part, namely, the scattering assemblies 10 at the two ends scatter the grains through the stirring thin rods 101, and the flattening assemblies 11 at the middle part flatten the grains through the round rectangular frames 111. Meanwhile, the air blower 3 positioned on the side surface of the ventilation groove 2 starts to rotate, the generated high-speed airflow moves upwards under the guidance of the wind shield 9 in the ventilation cavity 8 and enters the air exhaust cover 5 through the intensive ventilation holes on the conveyor belt 1, and the air exhaust cover 5 is further provided with an observation window, so that the cooling state of the grains can be observed conveniently. When the high-speed airflow passes through the dense holes, the grain is efficiently cooled, and the generated damp and hot air is pumped away by the air pump at the top of the air pumping cover 5. In addition, also seted up clearance mouth 14 on the lateral wall of ventilation groove 2 for to dropping the inside grain piece of ventilation groove 2 and clear up, turn over door 15 down is installed to clearance mouth 14, and the device during operation, turn over door 15 down is in airtight state.
The foregoing shows and describes the general principles and broad features of the present invention and advantages thereof. It will be understood by those skilled in the art that the present invention is not limited to the embodiments described above, which are described in the specification and illustrated only to illustrate the principle of the present invention, but that various changes and modifications may be made therein without departing from the spirit and scope of the present invention, which fall within the scope of the utility model as claimed. The scope of the utility model is defined by the appended claims and equivalents thereof.

Claims (10)

1. The utility model provides a making wine is with grain stand cool device which characterized in that: the cooling device comprises a circularly rotating spread cooling conveyor belt (1) densely provided with vent holes, a rectangular ventilation groove (2) with an opening at the top is arranged between an upper conveyor belt (1) and a lower conveyor belt (1) of the conveyor belt (1), and an air blower (3) is arranged in the ventilation groove (2); the top end of the ventilation groove (2) opens outwards, the ventilation groove extends upwards from two sides of the upper conveying belt (1) to form enclosing plates (4), and a plurality of spreading cooling auxiliary mechanisms are rotatably connected between the enclosing plates (4) on two sides of the upper plane of the upper conveying belt (1); the top end of the coaming (4) is connected with an air extraction cover (5).
2. The grain cooling device for wine brewing as claimed in claim 1, wherein: the ventilating slot is characterized in that at least two support rods (6) of the upper conveying belt (1) are arranged in the slot opening of the ventilating slot (2), the support rods (6) are parallel to the running direction of the conveying belt (1), two ends of the support rods are fixedly connected to the ventilating slot (2), and the upper plane of each support rod (6) is parallel to the slot opening.
3. The grain cooling device for wine brewing as claimed in claim 2, wherein: be equipped with baffle (7) in ventilation groove (2), separate ventilation groove (2) for a plurality of ventilation chamber (8), air-blower (3) and ventilation chamber (8) intercommunication, die-pin (6) bottom that is located ventilation chamber (8) top is fixed with deep bead (9).
4. The grain cooling device for wine brewing as claimed in claim 3, wherein: the wind shield (9) obliquely extends downwards into the ventilation cavity (8), and the inclined surface faces the air outlet of the air blower (3).
5. The grain cooling device for wine brewing as claimed in claim 1, wherein: the spread cooling auxiliary mechanism comprises a scattering assembly (10) positioned at the feeding and discharging end of the conveying belt and a plurality of spread assemblies (11) positioned in the middle of the conveying belt.
6. The grain cooling device for wine brewing as claimed in claim 5, wherein: the scattering assemblies (10) positioned at the feeding and discharging ends of the conveying belt respectively comprise rotating shafts which are rotatably connected between the enclosing plates (4) at the two sides and are driven by a motor, wherein a plurality of rows of fine stirring rods (101) are uniformly fixed on the rotating shafts positioned at the discharging ends of the conveying belt; and a thin stirring rod (101) is fixed on the rotating shaft at the feeding end of the conveying belt, and the thin stirring rods (101) are spirally and densely distributed along the arc surface of the rotating shaft.
7. The grain cooling device for wine brewing as claimed in claim 5, wherein: the flattening assembly (11) comprises a rotating shaft which is rotatably connected between the enclosing plates (4) at the two sides and is driven by a motor, and a plurality of round-corner rectangular frames (111) which are mutually perpendicular are uniformly inserted in the rotating shaft.
8. The grain cooling device for wine brewing as claimed in claim 1, wherein: one end of the coaming (4) at the discharge end of the conveyor belt is fixed with a discharge limiting plate (12), and a feeding limiting plate (13) is fixed between the coamings (4) at the two sides at the feed end of the conveyor belt.
9. The grain cooling device for wine brewing as claimed in claim 3, wherein: the ventilation cavity (8) is located on the opposite side face of the air blower (3) and is provided with a cleaning opening (14), and a lower turnover door (15) capable of being opened and closed is arranged on the cleaning opening (14).
10. The grain cooling device for wine brewing according to claim 1, wherein: and chain wheel shafts (16) are arranged at two ends of the conveyor belt, and the chain wheel shaft (16) at one end is connected with the output shaft of the motor.
CN202123415661.5U 2021-12-31 2021-12-31 Grain cooling device for wine making Active CN216738261U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202123415661.5U CN216738261U (en) 2021-12-31 2021-12-31 Grain cooling device for wine making

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202123415661.5U CN216738261U (en) 2021-12-31 2021-12-31 Grain cooling device for wine making

Publications (1)

Publication Number Publication Date
CN216738261U true CN216738261U (en) 2022-06-14

Family

ID=81911275

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202123415661.5U Active CN216738261U (en) 2021-12-31 2021-12-31 Grain cooling device for wine making

Country Status (1)

Country Link
CN (1) CN216738261U (en)

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