CN212253276U - Energy-saving cooling device for producing high-added-value metal products - Google Patents

Energy-saving cooling device for producing high-added-value metal products Download PDF

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Publication number
CN212253276U
CN212253276U CN202021046922.3U CN202021046922U CN212253276U CN 212253276 U CN212253276 U CN 212253276U CN 202021046922 U CN202021046922 U CN 202021046922U CN 212253276 U CN212253276 U CN 212253276U
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CN
China
Prior art keywords
cooling
metal product
water
box body
energy
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Expired - Fee Related
Application number
CN202021046922.3U
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Chinese (zh)
Inventor
邬贵良
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Jiangxi Douchu Kitchen Industry Co Ltd
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Jiangxi Douchu Kitchen Industry Co Ltd
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Priority to CN202021046922.3U priority Critical patent/CN212253276U/en
Application granted granted Critical
Publication of CN212253276U publication Critical patent/CN212253276U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model relates to a metal product production technical field discloses an energy-conserving cooling device is used in production of high added value metal product, for the cooling efficiency who improves in the metal product production process, the inboard of support frame is located top position department and is provided with the conveyer belt, the inboard block of spacing spout has the positioning fixture block, the inboard of positioning fixture block is fixed with the cooling spray tube, the top of forced air cooling box is connected with an air inlet section of thick bamboo, the inboard of an air inlet section of thick bamboo is fixed with the air-cooled fan. The utility model discloses a dual cooling of water-cooling box and forced air cooling box has replaced traditional metal product natural cooling's mode, and then has improved metal product's cooling efficiency, reduces staff's operating time, and in the cooling process, carries through the initiative of conveyer belt, blows in the forced air cooling of forced air cooling box and wipes away down, can carry out the clear metal product initiative in the back of cooling, and then the staff of being convenient for is to metal product's cooling, gets and put work.

Description

Energy-saving cooling device for producing high-added-value metal products
Technical Field
The utility model relates to a metal product production technical field specifically is a high added value metal product production is with energy-conserving cooling device.
Background
With the progress of society and the development of science and technology, the application of metal products in various fields of industry, agriculture and people's life is more and more extensive, and in the production and processing process of metal products, after the metal products are processed and formed, the metal products need to be cooled.
Through the retrieval, chinese patent net discloses a metal product production cooling device for building (public announcement No. CN210548030U), top one end through the frame is equipped with the cooler bin, the other end is equipped with conveyer, the height of cooler bin and conveyer's highly uniform, it is equipped with the board of placing that is used for placing metal product to slide in the cooler bin, place board bottom sprag board, the telescopic shaft of pneumatic cylinder extends to cooler bin in-connection backup pad, one side that is close to conveyer of cooler bin is equipped with helping hand structure conveyer one side and is equipped with the cooling fan, this type of device simple structure, cooling efficiency is high, but the structure of this type of device is comparatively single, cooling efficiency to metal product is comparatively low, and in the cooling process, complex operation, easily increase staff's manipulation strength. Therefore, the technical personnel in the field provide an energy-saving cooling device for producing high value-added metal products to solve the problems in the background technology.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a high added value metal product production is with energy-conserving cooling device to solve the problem that proposes in the above-mentioned background art.
In order to achieve the above object, the utility model provides a following technical scheme: an energy-saving cooling device for producing high value-added metal products comprises a support frame, wherein a conveyor belt is arranged at the position of the top end of the inner side of the support frame, a water-cooling box body is arranged at the position of one side of the upper side of the support frame, an air-cooling box body is arranged at one side of the water-cooling box body, hydraulic push rods are symmetrically fixed at the positions of the front end and the rear end of the upper side of the water-cooling box body, a cooling water pipe is connected at the position of the middle part of the upper side of the water-cooling box body, a drainage tube is connected below the water-cooling box body, a drainage tube is connected at the bottom end of the drainage tube, limiting chutes are symmetrically fixed at the positions of the front end and the rear end of the inner side of the water-cooling box body, a positioning fixture block is clamped at the inner side of, the port block of air inlet section of thick bamboo has dustproof filter screen, and the inboard of air inlet section of thick bamboo is fixed with the air-cooled fan, the bottom of aiutage is connected with the filtration tuber pipe, the inboard of filtering the tuber pipe has dry stratum reticulare, adsorption net layer from last to lower block in proper order.
As a further aspect of the present invention: the conveying belt is of a grid-shaped structure, and the conveying belt surface is made of stainless steel components.
As a further aspect of the present invention: the cooling water pipe is connected with the cooling spray pipe through a flexible hose, and the length of the flexible hose is the same as the flexible length of the hydraulic push rod.
As a further aspect of the present invention: the outer diameter of the positioning fixture block is matched with the inner diameter of the limiting sliding groove, and the cooling spray pipe is clamped and slides with the limiting sliding groove through the positioning fixture block.
As a further aspect of the present invention: the cooling spray pipes are two groups in number, cooling spray heads are arranged on the outer sides of the cooling spray pipes, and the number of the cooling spray heads is not less than 20.
As a further aspect of the present invention: four groups are no less than to the quantity of air inlet section of thick bamboo, and air inlet section of thick bamboo is for the even symmetrical arrangement of horizontal direction of forced air cooling box.
As a further aspect of the present invention: the drying net layer is made of polyurethane foam material members, and the adsorption net layer is made of activated carbon net material members.
Compared with the prior art, the beneficial effects of the utility model are that:
the utility model discloses a dual cooling of water-cooling box and forced air cooling box has replaced traditional metal product natural cooling's mode, and then has improved metal product's cooling efficiency, reduces staff's operating time, and in the cooling process, carries through the initiative of conveyer belt, blows in the forced air cooling of forced air cooling box and wipes away down, can carry out the clear metal product initiative in the back of cooling, and then the staff of being convenient for is to metal product's cooling, gets and put work.
Drawings
FIG. 1 is a schematic structural diagram of an energy-saving cooling device for producing high value-added metal products;
FIG. 2 is a schematic structural diagram of a water-cooling box body in an energy-saving cooling device for producing high value-added metal products;
fig. 3 is a schematic structural diagram of an air-cooling box body in an energy-saving cooling device for producing high value-added metal products.
In the figure: 1. a support frame; 2. filtering the air pipe; 3. an exhaust funnel; 4. a conveyor belt; 5. an air-cooled box body; 6. an air inlet cylinder; 7. a dustproof filter screen; 8. a hydraulic push rod; 9. a cooling water pipe; 10. water-cooling the box body; 11. a drain cylinder; 12. a drain pipe; 13. a flexible hose; 14. a limiting chute; 15. positioning a fixture block; 16. cooling the spray pipe; 17. an air cooling fan; 18. drying the mesh layer; 19. and (4) adsorbing the net layer.
Detailed Description
Please refer to fig. 1-3, in the embodiment of the utility model, an energy-conserving cooling device is used in production of high added value metal product, including support frame 1, the inboard top position department that is located of support frame 1 is provided with conveyer belt 4, and conveyer belt face mesh structure that conveyer belt 4 is, conveyer belt face adopt stainless steel material component, is cooling process to metal product, places metal product on conveyer belt 4 in proper order, and then conveyer belt 4 work, carries metal product to the inside water-cooling work that carries out of water-cooling box 10.
A water cooling box body 10 is arranged at one side position above the support frame 1, an air cooling box body 5 is arranged at one side of the water cooling box body 10, hydraulic push rods 8 are symmetrically fixed at the front end position and the rear end position above the water cooling box body 10, a cooling water pipe 9 is connected at the middle position above the water cooling box body 10, a water discharge tube 11 is connected below the water cooling box body 10, a water discharge tube 12 is connected at the bottom end of the water discharge tube 11, limiting slide grooves 14 are symmetrically fixed at the front end position and the rear end position inside the water cooling box body 10, positioning fixture blocks 15 are clamped at the inner sides of the limiting slide grooves 14, cooling spray tubes 16 are fixed at the inner sides of the positioning fixture blocks 15, the cooling water pipes 9 are connected with the cooling spray tubes 16 through flexible hoses 13, the length of the flexible hoses 13 is the same as the flexible length of the hydraulic push rods 8, the outer diameter of the positioning fixture blocks 15 is matched, when a metal product is conveyed into the water-cooling box body 10, cooling water flows into the telescopic hose 13 from the cooling water pipe 9, is discharged into the cooling spray pipe 16 through the telescopic hose 13 to carry out water-cooling work on the metal product, further the telescopic end of the hydraulic push rod 8 extends out, the cooling spray pipe 16 is pushed to stably move downwards under the clamping of the positioning clamping block 15 and the limiting sliding groove 14, the comprehensive water-cooling work is carried out on the metal product, waste water generated after water-cooling is discharged into the drainage cylinder 11 and is discharged outside through the drainage pipe 12, the metal product after water-cooling is conveyed into the air-cooling box body 5 for air-cooling drying treatment under the conveying of the conveying belt 4, the number of the cooling spray pipes 16 is two, cooling spray nozzles are arranged on the outer side of the cooling spray pipe 16, the number of the cooling spray nozzles is not less than 20, and in the process of cooling the metal product, the comprehensive water-cooling, the cooling efficiency of the metal product can be improved, and the working time of the common staff is reduced.
An air inlet barrel 6 is connected above the air cooling box body 5, an exhaust barrel 3 is connected below the air cooling box body 5, a dustproof filter screen 7 is clamped at the end port of the air inlet barrel 6, an air cooling fan 17 is fixed on the inner side of the air inlet barrel 6, a filtering air pipe 2 is connected at the bottom end of the exhaust barrel 3, a drying net layer 18 and an adsorption net layer 19 are sequentially clamped on the inner side of the filtering air pipe 2 from top to bottom, the number of the air inlet barrels 6 is not less than four groups, the air inlet barrel 6 is uniformly and symmetrically arranged relative to the horizontal direction of the air cooling box body 5, the drying net layer 18 is made of polyurethane foam components, the adsorption net layer 19 is made of activated carbon net components, when a metal product after water cooling is conveyed into the air cooling box body 5, the air cooling fan 17 works, under the filtering of the dustproof filter screen 7, external cold air is conveyed into the air cooling box body 5 through, the water seal that remains on with metal product blows and wipes away totally, and then the clean metal product of cooling back carries out air-cooled box 5, and the waste gas that synchronous forced air cooling produced is arranged inside filtering air pipe 2 through aiutage 3, and polyurethane foam's dry network layer 18 carries out filtration treatment to waste gas, filters the moisture in the isolation department with waste gas, and the peculiar smell in the waste gas is adsorbed and is filtered to the absorption network layer 19 of active carbon net material, discharges the external world with clean waste gas.
The utility model discloses a theory of operation is: during the cooling process of the metal product, the metal product is sequentially placed on the conveyor belt 4, then the conveyor belt 4 works, the metal product is conveyed into the water-cooling box body 10 to be subjected to water-cooling work, when the metal product is conveyed into the water-cooling box body 10, cooling water flows into the flexible hose 13 from the cooling water pipe 9 and is discharged into the cooling spray pipe 16 through the flexible hose 13, the metal product is subjected to water-cooling work, then the flexible end of the hydraulic push rod 8 extends out, the cooling spray pipe 16 is pushed to stably move downwards under the clamping of the positioning clamping block 15 and the limiting sliding groove 14, the metal product is subjected to omnibearing water-cooling work, waste water generated after water-cooling is discharged into the drainage cylinder 11 and is discharged out of the outside through the drainage pipe 12, the metal product after water-cooling is conveyed into the air-cooling box body 5 to be subjected to air-cooling drying treatment under the conveying of the conveyor belt 4, when the metal product after water, air-cooled fan 17 work, under the filtration of dustproof filter screen 7, carry outside cold wind to inside air-cooled box 5 through air inlet tube 6, carry out the forced air cooling to metal product and handle, in the forced air cooling, blow and wipe away remaining water seal on the metal product totally, and then clean metal product carries out air-cooled box 5 after the cooling, waste gas that synchronous forced air cooling produced is discharged to inside filtering air pipe 2 through aiutage 3, polyurethane foam's dry stratum reticulare 18 carries out filtration treatment to waste gas, filter the moisture in the waste gas and keep apart the department, the peculiar smell in the waste gas is adsorbed and filtered to adsorption stratum reticulare 19 of active carbon net material, discharge clean waste gas outside.
The above-mentioned, only be the concrete implementation of the preferred embodiment of the present invention, but the protection scope of the present invention is not limited thereto, and any person skilled in the art is in the technical scope of the present invention, according to the technical solution of the present invention and the utility model, the concept of which is equivalent to replace or change, should be covered within the protection scope of the present invention.

Claims (7)

1. The energy-saving cooling device for producing the high-added-value metal product comprises a support frame (1) and is characterized in that a conveyor belt (4) is arranged at the position of the top end of the inner side of the support frame (1), a water-cooling box body (10) is arranged at the position of one side of the upper side of the support frame (1), an air-cooling box body (5) is arranged at one side of the water-cooling box body (10), hydraulic push rods (8) are symmetrically fixed at the positions of the front end and the rear end of the upper side of the water-cooling box body (10), a cooling water pipe (9) is connected at the position of the middle of the upper side of the water-cooling box body (10), a drainage cylinder (11) is connected below the water-cooling box body (10), a drainage pipe (12) is connected at the bottom end of the drainage cylinder (11), limiting chutes (14) are symmetrically fixed at the positions of the front end and the rear end, the inboard of location fixture block (15) is fixed with cooling spray tube (16), the top of forced air cooling box (5) is connected with air inlet drum (6), and the below of forced air cooling box (5) is connected with aiutage (3), the port block of air inlet drum (6) has dustproof filter screen (7), and the inboard of air inlet drum (6) is fixed with forced air cooling fan (17), the bottom of aiutage (3) is connected with filters tuber pipe (2), the inboard of filtering tuber pipe (2) is from last to having dry stratum reticulare (18), adsorption network layer (19) to block in proper order down.
2. The energy-saving cooling device for producing the high value-added metal products according to claim 1, wherein the conveyor belt (4) is of a grid structure with a conveyor belt surface, and the conveyor belt surface is made of stainless steel components.
3. The energy-saving cooling device for the production of the high added value metal products is characterized in that the cooling water pipe (9) is connected with the cooling spray pipe (16) through an expansion hose (13), and the length of the expansion hose (13) is the same as that of the hydraulic push rod (8).
4. The energy-saving cooling device for producing the high added value metal products according to claim 1, wherein the outer diameter of the positioning fixture block (15) is matched with the inner diameter of the limiting sliding groove (14), and the cooling nozzle (16) is clamped and slides with the limiting sliding groove (14) through the positioning fixture block (15).
5. The energy-saving cooling device for producing the metal products with the high added value as claimed in claim 1, wherein the number of the cooling spray pipes (16) is two, and the cooling spray nozzles are arranged on the outer sides of the cooling spray pipes (16), and the number of the cooling spray nozzles is not less than 20.
6. The energy-saving cooling device for producing the high value-added metal products according to claim 1, wherein the number of the air inlet drums (6) is not less than four, and the air inlet drums (6) are uniformly and symmetrically arranged relative to the horizontal direction of the air cooling box body (5).
7. The energy-saving cooling device for producing the high value-added metal products according to claim 1, wherein the drying mesh layer (18) is made of polyurethane foam material, and the adsorption mesh layer (19) is made of activated carbon mesh material.
CN202021046922.3U 2020-06-09 2020-06-09 Energy-saving cooling device for producing high-added-value metal products Expired - Fee Related CN212253276U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021046922.3U CN212253276U (en) 2020-06-09 2020-06-09 Energy-saving cooling device for producing high-added-value metal products

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021046922.3U CN212253276U (en) 2020-06-09 2020-06-09 Energy-saving cooling device for producing high-added-value metal products

Publications (1)

Publication Number Publication Date
CN212253276U true CN212253276U (en) 2020-12-29

Family

ID=73988075

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202021046922.3U Expired - Fee Related CN212253276U (en) 2020-06-09 2020-06-09 Energy-saving cooling device for producing high-added-value metal products

Country Status (1)

Country Link
CN (1) CN212253276U (en)

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CF01 Termination of patent right due to non-payment of annual fee
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Granted publication date: 20201229

Termination date: 20210609