Cooling device for feed production and processing

By designing a cooling box, flow channel, and feed chute structure in the cooling device, combined with cold air and cold water pipes, the problem of feed being blown away during the cooling process was solved, achieving a highly efficient cooling effect.

CN223882632UActive Publication Date: 2026-02-06RIZHAO DANFUSHI FEED CO LTD
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Patent Information

Application Number
CN202520506592.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-21
Publication Date
2026-02-06
Estimated Expiration
2035-03-21

AI Technical Summary

Technical Problem

Existing feed cooling devices are prone to scattering feed when adjusting the airflow direction, resulting in reduced cooling efficiency.

Method used

A cooling device was designed, comprising a cooling box, flow channels, a conveyor belt, and a feed chute. The feed residence time is increased by the alternately distributed flow channels, and cooling is achieved by using cold air and serpentine cold water pipes, avoiding direct blowing of cold air onto the feed.

Benefits of technology

It improves feed cooling efficiency, prevents feed from being blown apart, and enhances the cooling effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a cooling device for feed production and processing, and relates to the field of feed processing, the cooling device for feed production and processing comprises a cooling box, the cooling box is internally provided with flow channels for increasing feed retention time through alternate distribution, the cooling box is provided with a feed inlet in the inlet direction of the flow channels, and the feed inlet is communicated with the flow channels. And the cooling box is provided with a discharge port at the outlet end of the runner. According to the cooling device for feed production and processing, feed is fed into the cooling box from the feeding port, the retention time is prolonged through reciprocating movement of a flow channel in the cooling box, finally, the feed is discharged from the discharging port, the feed is in the cooling box, cold air is pumped into the cooling box through a cold air inlet, the baffle is cooled at the position of the baffle, and the whole cooling box is cooled; afterwards, the cold air is discharged from the lower portion of the cooling box and pumped out from the through holes of the air inducing pipes, heat of the feed is taken away through movement of the cold air, and therefore the situation that the cold air directly blows the feed, and the feed is easily blown away can be avoided.
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Description

TECHNICAL FIELD

[0001] The utility model relates to feed processing technical field, concretely is a cooling device for feed production and processing. BACKGROUND

[0002] The prior art CN218296435U feed cooling device discloses a cooling cover, a mesh belt conveyor, the cooling cover is fixedly installed outside the mesh belt conveyor, a cold air assembly is fixedly installed at the top of the cooling cover, a supply air box is fixedly installed inside the cooling cover, the supply air box is provided with an air direction adjusting assembly, an exhaust port is arranged at the top of the cooling cover, a collecting mechanism is arranged inside the cooling cover, and the collecting mechanism comprises a collecting plate.

[0003] The technical scheme can continuously feed forward and continuously and efficiently cool the feed during the feed cooling process through the cooperation between the mesh belt conveyor, the cooling cover, the cold air assembly, the exhaust port, the vibration plate and the vibration motor, and the feed can be pre-cooled during the feed cooling process through the cooperation of the air direction adjusting assembly, so that the cooling efficiency of the feed is higher, the effect is better, and the feed cooling work is facilitated. UTILITY MODEL CONTENT

[0004] In view of the deficiencies of the prior art, the utility model provides a cooling device for feed production and processing, which solves the problems in the background art.

[0005] TECHNICAL SCHEME

[0006] To achieve the above object, the utility model realizes the following technical scheme: a cooling device for feed production and processing, comprising a cooling box, the cooling box, the inside of the cooling box is provided with a flow channel for increasing the residence time of the feed by alternating distribution, the cooling box is provided with a feed inlet in the inlet direction of the flow channel, the cooling box is provided with a discharge outlet at the outlet end of the flow channel, the top of the cooling box is provided with a cold air inlet, the inside of the cooling box is provided with a baffle for separating the flow channel and the cold air inlet, the bottom end of the baffle is communicated with the cooling box, the cooling box is provided with an air guide pipe above the flow channel, the surface of the air guide pipe is provided with a through hole, the air guide pipe is located on the side away from the baffle of the flow channel, and the air guide pipe penetrates through the cooling box and extends to the outside of the cooling box.

[0007] Further, the flow channel is composed of a conveying belt, the conveying belt comprises a tensioning wheel at one end for tensioning, a power wheel at the other end for driving, and a supporting wheel between the tensioning wheel and the power wheel, the tensioning wheel, the power wheel and the supporting wheel are rotationally connected with the baffle, the rotating end of the power wheel penetrates through the cooling box and extends to the outside of the cooling box, the tensioning wheel and the supporting wheel are rotationally connected with the cooling box, the power wheel is divided into two groups, one group drives the conveying belt to move clockwise, and the other group drives the conveying belt to move counterclockwise, the power wheels in the same group are driven by the same power source;

[0008] Further, the flow channel is composed of a chute, one end of the chute is hingedly connected with the cooling box and the baffle, a vibration mechanism is arranged below the chute away from the hinged end, and the chute is arranged to be inclined, and adjacent chutes are arranged to be inclined in opposite directions.

[0009] Further, the vibration mechanism comprises a supporting table fixedly connected with the cooling box and the baffle, a supporting sleeve is fixedly installed at the middle portion of the supporting table, a rotating shaft is rotationally connected with the middle portion of the supporting sleeve, one end of the rotating shaft extends to the outside of the cooling box, a cam is fixedly installed on the outer surface of the rotating shaft below the chute, and the cam extrudes the chute.

[0010] Further, the inside of the chute is paved with a serpentine cold water pipe, the water inlet end and the water outlet end of the cold water pipe are located at the hinged end of the chute, and the water inlet end and the water outlet end of the cold water pipe extend to the outside of the cooling box.

[0011] Further, a group of baffles are fixedly installed on the side of the baffle away from the flow channel, and the baffles are alternately distributed.

[0012] The beneficial effects of the present application are as follows:

[0013] 1. The cooling device for feed production and processing, feed is put into the cooling box from the feed inlet, and reciprocally moves in the cooling box through the flow channel to increase the residence time, and finally is discharged from the discharge port, the feed in the cooling box is pumped into the cooling box through the cold air inlet, the baffle is cooled first to cool the whole cooling box, then the cold air is discharged from the bottom of the cooling box and is sucked out from the through hole of the air duct, and the heat of the feed is taken away through the movement of the cold air, so that the cold air directly blowing the feed can be avoided.

[0014] 2. The cooling device for feed production and processing, the inside of the chute is paved with a serpentine cold water pipe, the water inlet end and the water outlet end of the cold water pipe are located at the hinged end of the chute, and the water inlet end and the water outlet end of the cold water pipe extend to the outside of the cooling box, the cold water pipe circulates cold water, so that heat exchange is realized by the chute to achieve cooling. BRIEF DESCRIPTION OF DRAWINGS

[0015] Figure 1 The present application is a structural schematic diagram.

[0016] Figure 2 It is the half-split schematic view of the utility model;

[0017] Figure 3 It is the connecting schematic view of the utility model conveyor belt;

[0018] Figure 4 It is the connecting schematic view of the utility model material slide plate;

[0019] Figure 5 It is the connecting schematic view of the utility model support platform.

[0020] Wherein, 1, cooling box;2, flow passage;3, feed inlet;4, discharge outlet;5, cold air inlet;6, baffle;7, air duct;8, through hole;9, partition;201, conveyor belt;202, tensioning wheel;203, power wheel;204, support wheel;205, power source;206, material slide groove;27, vibrating mechanism;271, support platform;272, support sleeve;273, rotating shaft;274, cam;208, cold water pipe. Specific implementation

[0021] The technical scheme 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 scope of the utility model.

[0022] Embodiment one, refer to Figures 1-5 A kind of cooling device for feed production and processing, including cooling box 1, heat preservation layer is arranged to the outside of cooling box 1, and inside has heat conducting metal composition, cooling box 1 is provided with the flow passage 2 that increases feed residence time by alternative distribution in its inside, cooling box 1 is provided with feed inlet 3 in the direction of import of flow passage 2, cooling box 1 is provided with discharge outlet 4 in the export end of flow passage 2, cooling box 1 is provided with cold air inlet 5 in the top, cold air inlet 5 is connected with existing air refrigeration device, cold air is pumped into the temporal part of cooling box 1 by cold air inlet 5, the baffle 6 that separates flow passage 2 and cold air inlet 5 is arranged in the inside connected with cooling box 1, cooling box 1 is provided with air duct 7 in the top of flow passage 2, through hole 8 is formed on the surface of air duct 7, air duct 7 is located in the side of flow passage 2 away from baffle 6, air duct 7 penetrates cooling box 1 and extends to the outside of cooling box 1, air duct 7 is connected with existing air induction mechanism device, the cold gas in cooling box 1 is extracted by air duct 7, and is connected with existing air refrigeration device, and the extracted cold gas is refrigerated again.

[0023] The flow channel 2 is composed of a conveying belt 201, which comprises a tensioning wheel 202 at one end for tensioning, a power wheel 203 at the other end for driving, and a supporting wheel 204 between the tensioning wheel 202 and the power wheel 203, the tensioning wheel 202, the power wheel 203 and the supporting wheel 204 are rotationally connected with the baffle 6, the rotating end of the power wheel 203 penetrates through the cooling box 1 and extends to the outside of the cooling box 1, the tensioning wheel 202 and the supporting wheel 204 are rotationally connected with the cooling box 1, the power wheel 203 is divided into two groups, one group drives the conveying belt 201 to move clockwise, and the other group drives the conveying belt 201 to move counterclockwise, the power wheels 203 in the same group are driven by the same power source 205, through such a setting, the feed can be slowly moved in the cooling box 1, so that the cooling time of the feed can be increased;

[0024] In the second embodiment, the flow channel 2 is composed of a material sliding groove 206, one end of the material sliding groove 206 is hingedly connected with the cooling box 1 and the baffle 6, a vibration mechanism 27 is arranged below the far end of the material sliding groove 206, the material sliding groove 206 is arranged obliquely, and the adjacent material sliding grooves 206 are arranged in opposite directions, through such a setting, the feed can be conveniently moved, so that the complex transmission mechanism can be reduced.

[0025] The vibration mechanism 27 comprises a support table 271 fixedly connected with the cooling box 1 and the baffle 6, a support sleeve 272 fixedly installed at the middle part of the support table 271, a rotating shaft 273 rotationally connected with the middle part of the support sleeve 272, the rotating shaft 273 extends to the outside of the cooling box 1 at one end, a cam 274 fixedly installed on the outer surface of the rotating shaft 273 below the material sliding groove 206, the cam 274 presses the material sliding groove 206, the rotating shaft 273 is driven to rotate by an external power, so as to drive the cam 274 to rotate, and then the material sliding groove 206 is driven to swing by the cam 274, so that the feed attached to the material sliding groove 206 can slide.

[0026] The inside of the material sliding groove 206 is paved with a serpentine cold water pipe 208, the water inlet end and the water outlet end of the cold water pipe 208 are located at the hinged end of the material sliding groove 206, and the water inlet end and the water outlet end of the cold water pipe 208 extend to the outside of the cooling box 1, through the setting of the circulating cold water pipe 208, the heat exchange of the material sliding groove 206 is utilized to achieve cooling.

[0027] A group of partitions 9 are fixedly installed on the side of the baffle 6 away from the flow channel 2, the partitions 9 are alternately distributed, through such a setting, the flowing time of the cold air in the cooling box 1 can be increased, so that the cooling effect can be improved.

[0028] In use, the feed is put into the cooling box 1 from the feed inlet 3, and moves back and forth in the cooling box 1 through the flow channel 2 to increase the residence time, and finally is discharged from the discharge port 4, in the cooling box 1, cold air is pumped into the cooling box 1 through the cold air inlet 5, first, the baffle 6 is cooled at the baffle 6 to cool the whole cooling box 1, then, the cold air is discharged from the bottom of the cooling box 1 and is sucked out from the through hole 8 of the air duct 7, the heat of the feed is taken away by the movement of the cold air, so that the cold air directly blowing the feed can be avoided to avoid blowing the feed away.

[0029] It should be noted that the relational terms herein such as first and second and the like are used solely to distinguish one from another entity or action without necessarily requiring or implying any actual relationship or order between such entities or actions.

[0030] The above description is only the preferred embodiment of the present application, but the protection scope of the present application is not limited to this, any skilled person in the art can make equivalent replacement or change according to the technical scheme and the inventive concept of the present application within the technical range disclosed by the present application, which should be covered in the protection scope of the present application.

Claims

1. A cooling device for feed production processing, comprising a cooling box (1), characterized in that: The cooling box (1) is internally provided with a flow channel (2) for increasing the feed residence time by alternating distribution, the cooling box (1) is provided with a feeding port (3) at the inlet direction of the flow channel (2), and the cooling box (1) is provided with a discharging port (4) at the outlet end of the flow channel (2); The cooling box (1) is provided with a cold air inlet (5) at the top, and the cooling box (1) is internally provided with a baffle (6) for separating the flow channel (2) and the cold air inlet (5), and the bottom end of the baffle (6) is communicated with the cooling box (1); The cooling box (1) is provided with an air duct (7) above the flow channel (2), the surface of the air duct (7) is provided with a through hole (8), the air duct (7) is located on the side away from the baffle (6) of the flow channel (2), and the air duct (7) penetrates through the cooling box (1) and extends to the outside of the cooling box (1).

2. The cooling device for feed production processing according to claim 1, characterized in that: The flow channel (2) is composed of a conveying belt (201), the conveying belt (201) includes a tensioning wheel (202) at one end for tensioning, a power wheel (203) at the other end for driving, and a supporting wheel (204) between the tensioning wheel (202) and the power wheel (203), the tensioning wheel (202), the power wheel (203) and the supporting wheel (204) are rotationally connected with the baffle (6), the rotating end of the power wheel (203) penetrates through the cooling box (1) and extends to the outside of the cooling box (1), and the tensioning wheel (202) and the supporting wheel (204) are rotationally connected with the cooling box (1); The power wheel (203) is divided into two groups, one group drives the conveying belt (201) to move clockwise, and the other group drives the conveying belt (201) to move counterclockwise, and the same group of power wheels (203) are driven by the same power source (205).

3. The cooling device for feed production processing according to claim 1, characterized in that: The flow channel (2) is composed of a material sliding groove (206), one end of the material sliding groove (206) is hinged with the cooling box (1) and the baffle (6), a vibration mechanism (27) is arranged below the material sliding groove (206) away from the hinged end, the material sliding groove (206) is arranged obliquely, and adjacent material sliding grooves (206) are arranged in opposite directions.

4. The cooling device for feed production processing according to claim 3, characterized in that: The vibration mechanism (27) includes a support table (271) fixedly connected with the cooling box (1) and the baffle (6), a support sleeve (272) fixedly installed at the middle portion of the support table (271), a rotating shaft (273) rotationally connected with the middle portion of the support sleeve (272), one end of the rotating shaft (273) extending to the outside of the cooling box (1), a cam (274) fixedly installed on the outer surface of the rotating shaft (273) below the material sliding groove (206), and the cam (274) pressing the material sliding groove (206).

5. The cooling device for feed production processing according to claim 4, characterized in that: The inside of the material sliding groove (206) is paved with a serpentine cold water pipe (208), the water inlet end and the water outlet end of the cold water pipe (208) are located at the hinged end of the material sliding groove (206), and the water inlet end and the water outlet end of the cold water pipe (208) extend to the outside of the cooling box (1).

6. The cooling device for feed production and processing according to any one of claims 1-5, characterized in that: A group of partition plates (9) are fixedly installed on the side away from the flow channel (2) of the baffle (6), and the partition plates (9) are alternately distributed.