Cooling device for sow feed production

By combining the design of a diversion cone plate, a blower, a suction fan, and a cooling nozzle, the problem of incomplete particle and dust handling in sow feed production is solved, achieving efficient cooling and cleaning of sow feed and ensuring the health of sows.

CN223807449UActive Publication Date: 2026-01-16QINGDAO BOLIAN FEED CO LTD
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Patent Information

Application Number
CN202520466141.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-17
Publication Date
2026-01-16
Estimated Expiration
2035-03-17

AI Technical Summary

Technical Problem

Existing cooling devices for sow feed production cannot comprehensively handle particles and dust in a single stream of falling feed, affecting the quality and health of sows.

Method used

The feed is divided into multiple streams by a diversion cone plate, and the particles and dust are blown out and sucked in by a blower and a suction fan respectively. Combined with the design of cooling spray pipe and rotating belt, the particles and dust are fully processed and cooled.

Benefits of technology

It achieves comprehensive cleaning of particles and dust in sow feed, avoiding accumulation, blockage, and bacterial growth, thus ensuring the quality and health of sow feed.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of sow feed production and processing, and discloses a cooling device for sow feed production, which comprises a diversion cone plate with a high top center and two low sides and uniformly provided with holes; the air blowing plate and the material suction plate are arranged at the center of the inner walls of the two sides of the device shell, an air blower is installed on one side of the device shell and communicates with the air blowing plate, a suction fan is installed on the other side of the device shell, one side of the suction fan communicates with a material storage box, and one side of the material storage box communicates with the material suction plate. According to the cooling device for sow feed production, when feed falls to the top of a flow dividing cone plate to roll and then falls through holes, an air blower enables an air blowing plate to blow air towards the feed, particles, dust and the like are close to a material suction plate, a suction fan enables the material suction plate to generate suction force through a material storage box, and the particles, the dust and the like are sucked in; and particles, dust and the like in the feed are comprehensively treated.
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Description

TECHNICAL FIELD

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

[0002] Pig feed refers to various raw materials and mixed formula for feeding pigs, which is made by matching according to different growth stages and variety characteristics. Sow feed refers to feed specially used for feeding sows, and the purpose is to ensure that sows can intake rich nutrients during reproduction, so as to ensure their physical health and normal development of fetuses. The formula and composition of sow feed will be adjusted according to different growth stages, physiological states and nutritional needs of sows. Sow feed needs to be heated at high temperature during production and processing, resulting in high feed temperature, which needs to be cooled before storage, transportation or packaging operation.

[0003] The common sow feed production cooling device is usually composed of a cooling chamber, a cooler, a ventilation system, a control system and a discharge device. First, the feed is introduced into the cooling chamber of the device, then the cooler and the ventilation system are used to cool the feed, and the cooled feed is discharged to the outside of the device through the discharge device. This is the common structure and use mode of sow feed production cooling device. The traditional sow feed production cooling device, because the sow feed is mixed with small particles and dust and other impurities during production and processing, which will affect the quality of the sow feed produced in the subsequent production and processing, and even affect the health of the sow feeding the feed. Some sow feed production cooling devices are provided with a fan at the corresponding position inside the device. When the feed introduced into the device falls, the airflow generated by the fan can suck or blow out the mixed particles and dust, and discharge the particles and dust to the outside. However, this method cannot completely treat the particles and dust in the feed because the feed introduced into the device falls in a single strand, and the airflow generated by the fan can only suck or blow out the particles and dust. Therefore, a sow feed production cooling device is proposed. SUMMARY

[0004] (I) Technical problem solved

[0005] In view of the deficiencies of the prior art, the utility model provides a sow feed production cooling device to solve the technical problem that the particles and dust in the single strand falling feed cannot be completely treated.

[0006] (II) Technical scheme

[0007] To achieve the above purpose, the utility model provides the following technical scheme: a sow feed production cooling device, comprising:

[0008] The device shell, and the connecting cover plate arranged at the top of the device shell, and the top center of the connecting cover plate is communicated with the feeding funnel;

[0009] The shunt cone plate is arranged at the upper part of the inner cavity of the device shell, and the shunt cone plate is designed as a whole triangle, the top center of the shunt cone plate is high on both sides, and the holes are uniformly arranged;

[0010] The blowing plate and the suction plate are arranged at the center of the inner wall of the device shell, one side of the device shell is provided with a blower, and the blower is communicated with the blowing plate, the other side of the device shell is provided with a suction fan, one side of the suction fan is communicated with a storage tank, and the other side of the storage tank is communicated with the suction plate. After the feed is introduced into the device shell through the connecting cover plate and the feeding funnel, it falls to the top of the shunt cone plate and rolls, and then falls through the holes at different positions. The blower blows air towards the feed through the blowing plate, and the particles and dust are close to the suction plate. The suction fan generates suction force through the storage tank, and the particles and dust are sucked into the storage tank. On the one hand, the single strand of falling feed can be divided into multiple strands through the shunt cone plate, so that the particles and dust in the feed can be comprehensively treated. On the other hand, the shunt cone plate can slow down the falling amount and falling speed of the feed, so as to avoid the influence of too much falling feed on the cleaning operation of the particles and dust.

[0011] Preferably, the two center positions of the shunt cone plate are longitudinally provided with positioning plates, and the positioning plates are designed as a whole L shape and extend upward through the bottom of the connecting cover plate. The positioning plates can drive the shunt cone plate to move up and down.

[0012] Preferably, the two center positions of the top of the connecting cover plate are provided with first driving motors, and the first driving motors are coaxially connected with cams and are combined with the corresponding positions of the positioning plates. The first driving motors drive the cams to rotate on the top of the connecting cover plate, and the cams drive the shunt cone plate to move up and down reciprocally through the positioning plates, so as to avoid the accumulation and blockage of the feed on the top of the shunt cone plate.

[0013] Preferably, the inner cavity center position of the device shell is provided with cooling nozzles at the lower part and the two sides, and the bottom is uniformly provided with spray holes. The back lower part of the device shell is provided with a cold air fan, and the cold air fan is communicated with the cooling nozzles. The cold air fan sucks the external controlled and cooled air into the cooling nozzles, and sprays the feed through the spray holes, so as to cool the sow feed.

[0014] Preferably, the inner cavity of the device shell is provided with rotating belts on both sides of the lower part, and the rotating ends of the rotating belts are coaxially connected with second driving motors, and the second driving motors are located at the centers of the lower part of the back of the device shell, and the center of the bottom of the inner cavity of the device shell is designed as a protrusion. The second driving motor drives the rotating belt to rotate through the rotating roller and transmission structure inside the rotating belt, and the feed falling to the bottom of the inner cavity of the device shell rolls to both sides.

[0015] Preferably, the top of the rotating belt is provided with a pushing plate above, and the pushing plate is designed as an arc as a whole and is connected with the inner wall of the device shell, the surface of the rotating belt is uniformly provided with a connecting plate, the connecting plate is rotatably connected with a side connecting plate at the corresponding position, and a reset spring is connected between the connecting plate and the side connecting plate. When the rotating belt drives the connecting plate and the side connecting plate to rotate, the part of the feed close to the connecting plate and the side connecting plate is lifted, and when the feed is lifted to a certain height, the connecting plate contacts the bottom of the pushing plate and extrudes the side connecting plate to rotate, so that the reset spring is in a compressed state, the feed on the connecting plate is pushed out, and falls to the top of the accumulated feed. On the one hand, the part of the accumulated feed at the bottom can be moved to the top, so that the feed can be cooled comprehensively. On the other hand, one side of the rotating belt is located outside the device shell, so that the connecting plate and the side connecting plate can be moved to the outside of the device shell during rotation, so that the connecting plate and the side connecting plate can be sterilized and cleaned, so that the phenomenon of breeding of bacteria during cooling of the sow feed and affecting the quality of the sow feed and even the health of the sow is avoided.

[0016] (Three) beneficial effects

[0017] Compared with the prior art, the utility model provides a cooling device for sow feed production, which has the following beneficial effects:

[0018] The cooling device for sow feed production falls to the top of the shunt cone plate and rolls after introducing the feed into the inside of the device shell through the connecting cover plate and the feed hopper, and then falls through the holes at different positions. The air blower makes the air blowing plate blow air towards the feed, so that the particles and dust are close to the air suction plate. The air suction machine generates suction force on the air suction plate through the storage tank, so that the particles and dust are sucked and transported into the inside of the storage tank. In this way, on the one hand, the single strand of falling feed can be divided into multiple strands of falling feed through the shunt cone plate, so that the particles and dust in the feed can be treated comprehensively. On the other hand, the shunt cone plate slows down the feeding amount and falling speed of the feed, so that the cleaning operation of the particles and dust is not affected by too much falling of the feed. BRIEF DESCRIPTION OF DRAWINGS

[0019] Figure 1 It is a whole structure schematic view of the utility model;

[0020] Figure 2 It is the cross-section structure schematic view of the device shell of the utility model;

[0021] Figure 3 It is the right side structure schematic view of the device shell of the utility model after being cut open;

[0022] Figure 4 It is the rotating belt and its connecting structure schematic view of the utility model.

[0023] In the figure: 1, device shell; 2, connecting cover plate; 3, feed hopper; 4, shunt cone plate; 5, positioning plate; 6, cam; 7, first drive motor; 8, blowing plate; 9, air blower; 10, suction plate; 11, storage tank; 12, air suction fan; 13, cooling nozzle; 14, cold air blower; 15, second drive motor; 16, push plate; 17, rotating belt; 18, connecting plate; 19, side connecting plate; 20, return spring. DETAILED DESCRIPTION

[0024] The technical scheme in the embodiments of the utility model will be described clearly and completely 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, not 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 protection of the utility model.

[0025] The utility model provides a kind of technical scheme, a sow feed production cooling device, comprising: Figure 1 Shunt cone plate 4 is set on the inner cavity upper portion of device shell 1, and the whole of shunt cone plate 4 is designed as triangle, the top center of shunt cone plate 4 is low on both sides, and is uniformly provided with hole;

[0026] Please refer to Figure 2 、 Figure 3, blow plate 8 and suction plate 10, which are arranged at the center of the inner wall of the two sides of the device shell 1, and a blower 9 is installed on one side of the device shell 1 and communicates with the blow plate 8, and a suction fan 12 is installed on the other side of the device shell 1, and the suction fan 12 communicates with a storage tank 11 on one side, and the storage tank 11 communicates with the suction plate 10 on one side. After the feed is introduced into the inside of the device shell 1 through the connecting cover plate 2 and the feed hopper 3, it falls to the top of the flow dividing cone plate 4 and rolls, and then falls through the holes at different positions, and the blower 9 blows air towards the feed on the blow plate 8, and the particles, dust and the like are close to the suction plate 10, and the suction fan 12 generates suction through the storage tank 11, and the particles, dust and the like are sucked into the inside of the storage tank 11, on the one hand, the flow dividing cone plate 4 can divide the single strand of falling feed into multiple strands, so that the particles and dust in the feed can be comprehensively treated; on the other hand, the flow dividing cone plate 4 can slow down the feed falling amount and falling speed, so as to avoid the influence of too much falling feed on the cleaning operation of the particles and dust.

[0027] Please refer to Figure 2 , the two sides of the flow dividing cone plate 4 are longitudinally installed with positioning plates 5, and the positioning plates 5 are designed in L shape and extend upward through the bottom of the connecting cover plate 2. The positioning plates 5 can drive the flow dividing cone plate 4 to move up and down. The top center of the connecting cover plate 2 is installed with first drive motors 7 on both sides, and the first drive motors 7 are coaxially connected with cams 6 and are in contact with the corresponding positions of the positioning plates 5. The first drive motors 7 drive the cams 6 to rotate on the top of the connecting cover plate 2, and the cams 6 drive the flow dividing cone plate 4 to move up and down reciprocally through the positioning plates 5, so as to avoid the accumulation and clogging phenomenon caused by the residues of the feed on the top of the flow dividing cone plate 4.

[0028] Please refer to Figure 2 、 Figure 3 , the inner cavity center position of the device shell 1 is installed with cooling nozzles 13 on the lower part and both sides, and the bottom is uniformly provided with spray holes, and the back lower part of the device shell 1 is installed with a cold air fan 14 and communicates with the cooling nozzles 13. The cooling nozzles 13 are injected into the inside of the cooling nozzles 13 after being sucked into the outside by the cold air fan 14 and being cooled, and are sprayed to the feed through the spray holes, so as to cool the sow feed.

[0029] Please refer to Figure 4The inner cavity lower part of the device shell 1 is provided with rotating belts 17 on both sides, and the rotating ends of the rotating belts 17 are coaxially connected with second driving motors 15, and the second driving motors 15 are located at the lower part of the back of the device shell 1 on both sides of the center, and the bottom center of the inner cavity of the device shell 1 is designed as a convex. The second driving motor 15 drives the rotating belt 17 to rotate through the rotating roller inside the rotating belt 17 and the transmission structure, and the feed falling to the bottom of the inner cavity of the device shell 1 rolls to both sides. The top of the rotating belt 17 is provided with a pushing plate 16, and the pushing plate 16 is designed as a whole arc shape and is connected with the inner wall of the device shell 1. The surface of the rotating belt 17 is uniformly provided with a connecting plate 18, and the corresponding part of the connecting plate 18 is rotatably connected with a side connecting plate 19, and a return spring 20 is connected between the connecting plate 18 and the side connecting plate 19. When the rotating belt 17 drives the connecting plate 18 and the side connecting plate 19 to rotate, the part of the feed close to the connecting plate 18 and the side connecting plate 19 is lifted, and when the connecting plate 18 and the bottom of the pushing plate 16 are in contact when the feed is lifted to a certain height, the side connecting plate 19 is extruded and rotated, so that the return spring 20 is in a compressed state, and the feed on the connecting plate 18 is pushed out and falls to the top of the accumulated feed. On the one hand, the bottom part of the accumulated feed can be moved to the top, which is convenient for the comprehensive cooling treatment of the feed; on the other hand, one side of the rotating belt 17 is located outside the device shell 1, which can drive the connecting plate 18 and the side connecting plate 19 to move to the outside of the device shell 1 when rotating, so that the connecting plate 18 and the side connecting plate 19 can be sterilized and cleaned, avoiding the phenomenon of breeding of bacteria and affecting the quality of sow feed and even the health of sows when cooling the sow feed.

[0030] The present scheme: after the feed is introduced into the inside of the device shell 1 through the connecting cover plate 2 and the feed hopper 3, and falls to the top of the shunt cone plate 4 to roll, and then falls through the holes in different positions, the air blower 9 makes the air blowing plate 8 blow air towards the feed, and the particles, dust and the like are close to the suction plate 10, and the air suction fan 12 makes the suction plate 10 generate suction through the storage tank 11, and the particles, dust and the like are sucked and transported into the inside of the storage tank 11. The first driving motor 7 drives the cam 6 to rotate at the top of the connecting cover plate 2, and the cam 6 drives the shunt cone plate 4 to reciprocatingly lift through the positioning plate 5. After being sucked from the outside and controlled and cooled by the cold air fan 14, the cooling spray pipe 13 is injected into the inside of the cooling spray pipe 13, and the feed is sprayed through the spray hole, and the sow feed is cooled. The feed falling to the bottom of the inside cavity of the device shell 1 rolls to both sides, the second driving motor 15 drives the rotating roller and the transmission structure inside the rotating belt 17 to rotate through the rotating belt 17, and when the rotating belt 17 drives the connecting plate 18 and the side connecting plate 19 to rotate, the connecting plate 18 and the side connecting plate 19 drive the close part of the feed to rise, and when the connecting plate 18 and the bottom of the pushing plate 16 are in contact, the side connecting plate 19 is extruded and rotated, so that the reset spring 20 is in the compressed state, and the feed on the connecting plate 18 is pushed out and falls to the top of the accumulated feed.

[0031] It should be noted that, in the present document, relational terms such as first and second and the like can be used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Moreover, the terms "comprises", "comprising", or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but can include other elements not expressly listed or inherent to such process, method, article, or apparatus.

[0032] Although the embodiments of the present application have been shown and described, it is to be understood that various changes, modifications, substitutions and alterations can be made to the embodiments without departing from the principles and spirit of the present application, and the scope of the present application is defined by the appended claims and their equivalents.

Claims

1. A cooling device for sow feed production, characterized by, The utility model relates to a kind of material distribution device, including: Device shell (1), and the connecting cover plate (2) of being arranged at the top of device shell (1), and the top center of connecting cover plate (2) is communicated with feed hopper (3); Split cone plate (4) is arranged in the inner cavity upper portion of device shell (1), and the whole of split cone plate (4) is triangular design, the top center of the described split cone plate (4) is high on both sides, and is evenly provided with hole; Blow plate (8) and suction plate (10) are arranged in the center of the inner wall of the two sides of device shell (1), and a blower (9) is installed on one side of device shell (1) and communicated with blow plate (8), a suction fan (12) is installed on the other side of device shell (1), and the suction fan (12) is communicated with storage tank (11) on one side, and the storage tank (11) is connected with suction plate (10) on one side.

2. The cooling device for sow feed production according to claim 1, characterized in that: The center of the two sides of the described split cone plate (4) is longitudinally installed with positioning plate (5), and the whole of positioning plate (5) is L-shaped design, and penetrates the bottom of connecting cover plate (2) and extends upwards.

3. The cooling device for sow feed production according to claim 2, characterized in that: The top center position of the described connecting cover plate (2) is installed with first drive motor (7) on both sides, and first drive motor (7) is coaxially connected with cam (6) and is combined with the corresponding place of positioning plate (5).

4. The cooling device for sow feed production according to claim 1, characterized in that: The center position of the inner cavity of the described device shell (1) is installed with cooling nozzle (13) on the lower portion and both sides, and is evenly provided with spray hole on the bottom, and air cooler (14) is installed on the lower portion of the back of device shell (1) and is connected between cooling nozzle (13).

5. The cooling device for sow feed production according to claim 1, characterized in that: The lower portion of the two sides of the described device shell (1) is additionally provided with rotating belt (17), and the rotating end of rotating belt (17) is coaxially connected with second drive motor (15), and second drive motor (15) is located at the center of the lower portion of the back of device shell (1) on both sides, and the center of the bottom of the inner cavity of device shell (1) is convex design.

6. The cooling device for sow feed production according to claim 5, characterized in that: The top of the described rotating belt (17) is additionally provided with pusher plate (16) directly above, and pusher plate (16) is arc-shaped design as a whole, and is connected with the inner wall of device shell (1), and connecting plate (18) is evenly installed on the surface of rotating belt (17), and side connecting plate (19) is rotationally connected at the corresponding place of connecting plate (18), and reset spring (20) is connected between connecting plate (18) and side connecting plate (19).