CN211794244U - Cooling device of feed bulking machine - Google Patents

Cooling device of feed bulking machine Download PDF

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Publication number
CN211794244U
CN211794244U CN201921784437.3U CN201921784437U CN211794244U CN 211794244 U CN211794244 U CN 211794244U CN 201921784437 U CN201921784437 U CN 201921784437U CN 211794244 U CN211794244 U CN 211794244U
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pipe
cooling
puffing
tube
fixedly connected
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CN201921784437.3U
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万庆港
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Shenyang Aitejie Animal Husbandry Co ltd
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Shenyang Aitejie Animal Husbandry Co ltd
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  • Apparatuses For Bulk Treatment Of Fruits And Vegetables And Apparatuses For Preparing Feeds (AREA)

Abstract

The utility model discloses a cooling device of a feed bulking machine, which comprises a bulking pipe, a cooling pipe connected with the bulking pipe, a cooling water pipe arranged in the cooling pipe, an air supply pipe connected with the cooling pipe, and a fan arranged at one end of the air supply pipe; the left end of the puffing pipe is connected with a puffing motor, the upper part of the left side of the puffing pipe is fixedly connected with a feeding port, and the puffing pipe is divided into three sections which are a material conveying section, a compression melting section and an extrusion section respectively; cooling tube fixed connection is on the right side of popped pipe, and the cooling tube is for lining up vertical structure from top to bottom, fixedly connected with condenser tube in the cooling tube, cooling tube below fixed connection blast pipe, blast pipe one end are equipped with the fan, the utility model discloses a condenser tube of cooling tube internal design for the fodder drops to in the condenser tube from popped export, siphons away partial heat via condenser tube, on dropping on the radiator-grid, further cools off the fodder by the cold wind of blast pipe, make the fodder reach very fast cooling effect, reduce the cool time, prevent to damp among the cooling process, and improve the efficiency of leaving warehouse.

Description

Cooling device of feed bulking machine
Technical Field
The utility model relates to a feed production technical field especially relates to a feed bulking machine cooling device.
Background
The expanded pellet feed is a new feed processing technology, the expansion of the feed in an extrusion cavity is a high-temperature instantaneous process actually, namely the feed is in the environment of high temperature (110-200 ℃), high pressure (25-100 kg/square centimeter), high shearing force and high moisture (10% -20% or even 30%), and the expanded and porous pellet feed is formed by continuous mixing, tempering, heating, pressurizing, curing, extruding out of a die hole and suddenly reducing the pressure, and after the expansion treatment of the feed raw materials, the fragrance is increased, the palatability is improved, and the appetite of animals can be stimulated. Meanwhile, the degree of changing long-chain structures of organic matters such as protein, fat and the like into short-chain structures is increased, so that the organic matters are more easily digested.
The temperature is higher just after the fodder is popped, just can pack the bagging-off ex-warehouse after the fodder cools off, and natural cooling time is longer, influences fodder ex-warehouse efficiency to the cooling time overlength can wet easily, influences the quality of fodder.
SUMMERY OF THE UTILITY MODEL
In view of this, the utility model aims at providing a fodder bulking machine cooling device for the fodder shortens after popped cooling time, improves the efficiency of leaving warehouse, prevents that the fodder from weing.
The utility model solves the technical problems through the following technical means:
a cooling device of a feed bulking machine comprises a bulking pipe, a cooling pipe connected with the bulking pipe, a cooling water pipe arranged in the cooling pipe, an air supply pipe connected with the cooling pipe and a fan arranged at one end of the air supply pipe; the left end of the puffing pipe is connected with a puffing motor, the upper part of the left side of the puffing pipe is fixedly connected with a feeding port, and the puffing pipe is divided into three sections which are a material conveying section, a compression melting section and an extrusion section respectively; the cooling pipe is fixedly connected to the right side of the puffing pipe, the cooling pipe is of a vertical structure which is vertically communicated, a cooling water pipe is fixedly connected into the cooling pipe, an air supply pipe is fixedly connected to the lower portion of the cooling pipe, and a fan is arranged at one end of the air supply pipe.
Furthermore, the upper left side of the cooling pipe is fixedly connected with a puffing outlet, and the lower side of the puffing outlet is fixedly connected with a cooling water pipe.
Furthermore, the cooling water pipe is of an S-shaped bent net structure, the cooling water pipe is inclined and in an X-shaped bidirectional cross design, the lower end of the cooling pipe is a water inlet, and a water outlet is formed in the upper portion of the cooling pipe.
Furthermore, a radiator mesh is fixedly connected to the lower portion of the cooling water pipe, and the radiator mesh is of a hollow meshed inclined plate structure and is fixedly connected with the left wall and the right wall of the cooling pipe.
Further, the lower right side of the cooling pipe is fixedly connected with an air supply pipe.
Furthermore, the right end of the blast pipe is fixedly connected with a dehumidification filter screen.
Further, dehumidification filter screen right-hand member is equipped with the air supply motor, the air supply motor drive shaft passes dehumidification filter screen and left end fixed connection fan flabellum.
Furthermore, a hot air outlet is arranged above the cooling pipe, and a cooling outlet is arranged below the cooling pipe.
This practical beneficial effect: the utility model discloses a popped back of fodder is popped to popped pipe, extrude from the popped export of popped pipe right-hand member, the temperature is higher when popped fodder just extrudeed, drop in the condenser tube net of fixed connection in popped export below, cooling water flow through the condenser tube net, the heat absorption with popped fodder, the netted slope structure of rethread radiator-grid, make the fodder slowly roll on the radiator-grid and fall, the cold wind that is insufflated by the blast pipe of condenser tube right side below again upwards blows, make the fodder on the radiator-grid have longer time to carry out the forced air cooling, reach further cooling, make the fodder reach very fast cooling effect, reduce the cool time, prevent to damp among the cooling process, and improve warehouse-out efficiency.
Drawings
Fig. 1 is a schematic view of the overall structure of a cooling device of a feed bulking machine of the present invention.
The device comprises a cooling pipe 1, a cooling water pipe 2, a water inlet 201, a water outlet 202, a hot air outlet 3, a cooling outlet 4, an air supply pipe 5, a dehumidification filter screen 6, fan blades 7, an air supply motor 8, a material inlet 9, a puffing motor 10, a material conveying section 11, a compression melting section 12, an extrusion section 13, a puffing outlet 14, a puffing pipe 15 and a heat dissipation net 16.
Detailed Description
The present invention will be described in detail below with reference to the following drawings and specific embodiments:
as shown in fig. 1, the cooling device of the feed bulking machine of the present invention comprises a bulking pipe 15, a cooling pipe 1 connected to the bulking pipe 15, a cooling water pipe 2 disposed in the cooling pipe 1, an air supply pipe 5 connected to the cooling pipe 1, and a blower fan at one end of the air supply pipe 5; the left end of the puffing pipe 15 is connected with a puffing motor 10, the upper part of the left side of the puffing pipe 15 is fixedly connected with a feeding port 9, and the puffing pipe 15 is divided into three sections which are a material conveying section 11, a compression melting section 12 and an extrusion section 13 respectively; 1 fixed connection of cooling tube is on the right side of popped pipe 15, and cooling tube 1 is for lining up vertical structure from top to bottom, fixedly connected with condenser tube 2 in the cooling tube 1, and 1 below fixed connection blast pipe 5 of cooling tube, 5 one ends of blast pipe are equipped with the fan.
Wherein: the left upper part of the cooling pipe 1 is fixedly connected with the puffing outlet 14, and the lower part of the puffing outlet 14 is fixedly connected with the cooling water pipe 2, so that the high-temperature puffed feed falls into the cooling water pipe 2 for cooling after coming out from the puffing outlet 14.
Wherein: condenser tube 2 is the crooked network structure of S-shaped, condenser tube 2 is the slope form and is the two-way cross design of X form, 1 lower extreme of condenser tube is water inlet 201 and top and is delivery port 202, make condenser tube 2 have abundant area of contact with the popped fodder of high temperature, make condenser tube 2 'S cooling effect better, 2 lower extreme water inlets 201 of condenser tube get into cold water, delivery port 202 comes out hot water, make the popped fodder of high temperature fall into the below in-process from condenser tube 2 top, condenser tube 2' S temperature step-by-step becomes low, more be favorable to absorbing the heat of popped fodder, reach better cooling effect.
Wherein: 2 below fixedly connected with radiator-grid 16 of condenser tube, radiator-grid 16 is the wall about cavity netted swash plate structure and 1 of fixed connection cooling tube, and popped fodder falls into and slowly rolls through the inclined plane on radiator-grid 16 and falls for popped fodder has enough long time to carry out the forced air cooling heat dissipation, and radiator-grid 16's network structure more is favorable to blast pipe 5's cold wind to carry out the forced air cooling heat dissipation to popped fodder, and popped fodder can be followed network structure and passed simultaneously, prevents to block up.
Wherein: the lower right side of the cooling tube 1 is fixedly connected with the air supply pipe 5, so that the air supply pipe 5 sucks external cold air to dissipate heat of the puffed feed in the cooling tube 1.
Wherein: the right end of the blast pipe 5 is fixedly connected with a dehumidifying filter screen 6, and a drying agent is arranged in the dehumidifying filter screen 6, so that the blast pipe 5 absorbs moisture when external cold air is sucked, and the puffed feed is prevented from being damped due to moisture contained in the cold air.
Wherein: the right end of the dehumidifying filter screen 6 is provided with an air supply motor 8, a driving shaft of the air supply motor 8 penetrates through the dehumidifying filter screen 6 and a left end of the dehumidifying filter screen is fixedly connected with a fan blade 7, the fan blade 7 is driven to rotate through the air supply motor 8, and outside cold air is sucked into the air supply pipe 5.
Wherein: the upper part of the cooling pipe 1 is provided with a hot air outlet 3 and the lower part is provided with a cooling outlet 4, the expanded feed cooled by cold air is changed into hot air to be discharged from the hot air outlet 3, and the cooled expanded feed is discharged from the cooling outlet 4 to be packaged.
The utility model is characterized in that the left upper part of the cooling pipe 1 is fixedly connected with the puffing outlet 14, the lower part of the puffing outlet 14 is fixedly connected with the cooling water pipe 2, so that the high-temperature puffed feed falls into the cooling water pipe 2 for cooling after coming out from the puffing outlet 14, then the cooling water pipe 2 is of an S-shaped bent net structure, the cooling water pipe 2 is of a horizontal multi-layer net shape, the upper layer water pipe and the lower layer water pipe are staggered, the lower end of the cooling pipe 1 is provided with the water inlet 201 and the upper layer is provided with the water outlet 202, so that the cooling water pipe 2 and the high-temperature puffed feed have enough contact area, the cooling effect of the cooling water pipe 2 is better, the water inlet 201 at the lower end of the cooling water pipe 2 enters cold water, the water outlet 202 outputs hot water, so that the high-temperature puffed feed falls into the lower, then a heat dissipation net 16 is fixedly connected below the cooling water pipe 2, the heat dissipation net 16 is a hollow net-shaped inclined plate structure and is fixedly connected with the left wall and the right wall of the cooling pipe 1, the puffed feed falls into the heat dissipation net 16 and slowly rolls off through an inclined plane, so that the puffed feed has enough time for air cooling heat dissipation, the net-shaped structure of the heat dissipation net 16 is more favorable for the cold air of the air supply pipe 5 to carry out air cooling heat dissipation on the puffed feed, meanwhile, the puffed feed can pass through the net-shaped structure to prevent blockage, then the air supply pipe 5 is fixedly connected with the right lower part of the cooling pipe 1, so that the air supply pipe 5 sucks external cold air to carry out heat dissipation on the puffed feed in the cooling pipe 1, the right end of the air supply pipe 5 is fixedly connected with a dehumidifying filter screen 6, a drying agent is arranged in the dehumidifying filter screen 6, so that the air supply pipe 5 absorbs, 6 right-hand members of dehumidification filter screen are equipped with air supply motor 8, and air supply motor 8 drive shaft passes 6 and left end fixed connection fan flabellum 7 of dehumidification filter screen, rotates through air supply motor 8 drive fan flabellum 7, inhales blast pipe 5 with external cold air, is equipped with hot air outlet 3 and below through 1 top of cooling tube at last and is equipped with cooling outlet 4, become steam behind the cold air cooling puffed feed and follow 3 discharges of hot air outlet, and the puffed feed after the cooling is packed from 4 discharges of cooling outlet.
Although the present invention has been described in detail with reference to the preferred embodiments, it should be understood by those skilled in the art that various changes may be made and equivalents may be substituted without departing from the spirit and scope of the present invention as defined in the claims. The techniques, shapes, and configurations not described in detail in this application are all known techniques.

Claims (8)

1. A cooling device of a feed bulking machine comprises a bulking pipe (15), a cooling pipe (1) connected with the bulking pipe (15), a cooling water pipe (2) arranged in the cooling pipe (1), an air supply pipe (5) connected with the cooling pipe (1), and a fan at one end of the air supply pipe (5); the method is characterized in that: the left end of the puffing pipe (15) is connected with a puffing motor (10), the upper part of the left side of the puffing pipe (15) is fixedly connected with a feeding port (9), and the puffing pipe (15) is divided into three sections, namely a material conveying section (11), a compression melting section (12) and an extrusion section (13);
the cooling tube (1) is fixedly connected to the right side of the puffing tube (15), the cooling tube (1) is of a vertical structure which is vertically communicated, a cooling water tube (2) is fixedly connected to the inside of the cooling tube (1), an air supply tube (5) is fixedly connected to the lower portion of the cooling tube (1), and a fan is arranged at one end of the air supply tube (5).
2. The feed bulking machine cooling device of claim 1, wherein: the cooling pipe (1) is fixedly connected with a puffing outlet (14) at the upper left part, and the cooling water pipe (2) is fixedly connected below the puffing outlet (14).
3. The feed bulking machine cooling device of claim 1, wherein: the cooling water pipe (2) is of an S-shaped bent net structure, the cooling water pipe (2) is inclined and is in an X-shaped bidirectional cross design, and the lower end of the cooling pipe (1) is provided with a water inlet (201) and a water outlet (202) above the cooling pipe.
4. The feed bulking machine cooling device of claim 1, wherein: the cooling water pipe (2) below fixedly connected with radiator-grid (16), radiator-grid (16) are cavity netted swash plate structure and fixed connection cooling tube (1) left and right wall.
5. The feed bulking machine cooling device of claim 1, wherein: and the right lower part of the cooling pipe (1) is fixedly connected with an air supply pipe (5).
6. The feed bulking machine cooling device of claim 1, wherein: and the right end of the blast pipe (5) is fixedly connected with a dehumidifying filter screen (6).
7. The feed bulking machine cooling device of claim 6, wherein: the dehumidification filter screen (6) right-hand member is equipped with air supply motor (8), air supply motor (8) drive shaft passes dehumidification filter screen (6) and left end fixed connection fan flabellum (7).
8. The feed bulking machine cooling device of claim 1, wherein: and a hot air outlet (3) is arranged above the cooling pipe (1) and a cooling outlet (4) is arranged below the cooling pipe.
CN201921784437.3U 2019-10-22 2019-10-22 Cooling device of feed bulking machine Active CN211794244U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921784437.3U CN211794244U (en) 2019-10-22 2019-10-22 Cooling device of feed bulking machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921784437.3U CN211794244U (en) 2019-10-22 2019-10-22 Cooling device of feed bulking machine

Publications (1)

Publication Number Publication Date
CN211794244U true CN211794244U (en) 2020-10-30

Family

ID=73146512

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921784437.3U Active CN211794244U (en) 2019-10-22 2019-10-22 Cooling device of feed bulking machine

Country Status (1)

Country Link
CN (1) CN211794244U (en)

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