Fin cooling device for heat exchanger processing

By designing a fin cooling device with cooling and limiting mechanisms, the problem of uneven cooling of fins during processing is solved, achieving effective cooling, preventing material damage, and ensuring mechanical strength and stability.

CN223580404UActive Publication Date: 2025-11-21WUXI XINCHENG HEAT EXCHANGER TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202423210023.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-25
Publication Date
2025-11-21
Estimated Expiration
2034-12-25

AI Technical Summary

Technical Problem

If the fins cannot be effectively cooled during the heat exchanger manufacturing process, the temperature will rise, which may cause the material to deform, soften or even melt, affecting its mechanical strength and stability.

Method used

A fin cooling device including a cooling mechanism and a limiting mechanism was designed. The cooling mechanism achieves circulating cooling through a liquid storage tank, a water pump, an atomizing nozzle, and a fan. The limiting mechanism limits the mesh conveyor belt through a rotating handle and a limiting plate to prevent fin misalignment and uneven cooling.

Benefits of technology

It achieves effective cooling of the fins, prevents material deformation and damage, ensures mechanical strength and stability, and improves cooling efficiency and uniformity.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to heat exchanger processing technical field, and disclose a fin cooling device for heat exchanger processing, including processing box, the through -hole is all set up in the processing box rear side, the inside surface of processing box is provided with mesh belt conveyor, the mesh belt conveyor is connected with processing box swing. Through cooling mechanism, utilize the liquid storage tank in cooling part, when cooling, through water pump to the liquid storage tank draws cooling water, makes cooling water through water pump, branch pipe, three -way pipe enters atomizing spray head finally and sprays, sprays when fan simultaneously starts to cool, when the water after cooling falls into the collection box through the filter screen, when using again, start water pump, make water pump to the liquid storage tank, the inside wall of collection box draws water, carries out again cooling to carry out circulation cooling, when the filter screen is blocked, pulls the filter screen, and the filter screen is slid away from the clearance and is cleaned, prevents the performance decline or damage caused by overheating.
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Description

TECHNICAL FIELD

[0001] The utility model relates to heat exchanger processing technical field, concretely is a fin cooling device for heat exchanger processing. BACKGROUND

[0002] The heat exchanger is the equipment that partial heat of hot fluid is transmitted to cold fluid, also called heat exchanger, and the heat exchanger occupies the important position in chemical industry, petroleum, power, food and other many industrial production, and it can be used as heater, cooler, condenser, evaporator and reboiler etc. in chemical production, and is widely used.

[0003] Compared with prior art: the fin is the important component of heat exchanger, and its main function is to increase the heat exchange area, thereby improving the heat exchange efficiency, however, if the fin cannot be cooled effectively during processing, the heat on the fin cannot be promptly dissipated, leading to the temperature rise of the fin, and under high temperature, the material of the fin can be deformed, softened or even melted, thereby affecting the mechanical strength and stability of the fin.

[0004] Therefore, the fin cooling device for heat exchanger processing is provided. UTILITY MODEL CONTENT

[0005] The utility model aims at providing a fin cooling device for heat exchanger processing to solve the problems in the above background.

[0006] To achieve the above object, the utility model provides the following technical scheme: a fin cooling device for heat exchanger processing, comprising a processing box, the rear side of the processing box is provided with a through hole, the inner side of the processing box is provided with a mesh belt conveyor, the mesh belt conveyor is movably connected with the processing box, the inner side of the processing box is provided with a cooling mechanism and a limiting mechanism;

[0007] The cooling mechanism comprises a cooling part and a filter part;

[0008] The filter part is located at the bottom surface of the cooling part;

[0009] The limiting mechanism comprises a driving part and a limiting part;

[0010] The limiting part is located at the outer side of the driving part.

[0011] Preferably, the cooling part comprises a liquid storage tank, the liquid storage tank is located at the rear side of the processing box, the liquid storage tank is fixedly connected with the processing box, the top surface of the liquid storage tank is communicated with a water pump, the top end surface of the water pump is communicated with a branch pipe, and the branch pipe extends through the inner side of the processing box.

[0012] Preferably, the branch pipe is fixedly connected with the processing box, a tee pipe is arranged on the front end surface of the branch pipe in communication, the tee pipe is fixedly connected with the inner side surface of the processing box, and atomizing nozzles are arranged on the outer end surfaces of the tee pipe in communication.

[0013] Preferably, the filtering part comprises a filter screen, the filter screen is located on the inner side surface of the processing box, and a chute is arranged on the outer side surface of the filter screen in communication.

[0014] Preferably, the collecting box is fixedly connected with the inner side surface of the processing box, a conveying pipe is arranged on the rear end surface of the collecting box in communication, the conveying pipe penetrates through the collecting box and extends to the rear side surface of the processing box, the conveying pipe is movably connected with the inner walls of the collecting box and the processing box, and the top end surface of the conveying pipe is in communication with the bottom surface of the liquid storage tank.

[0015] Preferably, a fan is arranged above the conveying pipe, the fan is located on the inner side surface of the through hole, and the fan is fixedly connected with the inner side surface of the through hole.

[0016] Preferably, the driving part comprises a handle, two handles are arranged on the front and rear of the driving part, an adjusting screw is arranged on the inner end surface of each handle in communication, the adjusting screw is fixedly connected with the handle, the adjusting screw penetrates through and extends to the inner side surface of the processing box, the adjusting screw is screw-connected with the inner wall of the processing box, and a one-bar plate is arranged on the inner end surface of each adjusting screw in communication.

[0017] Preferably, the limiting part comprises a limiting plate, two limiting plates are arranged on the front and rear of the limiting part, the limiting plate is fixedly connected with the inner side surface of the one-bar plate, a sliding rod is arranged on the outer end surface of each limiting plate in communication, the sliding rod is fixedly connected with the limiting plate, the sliding rod penetrates through and extends to the outer side surface of the processing box, the sliding rod is slidably connected with the inner wall of the processing box, and a limiting sleeve is fixedly arranged on the outer end surface of each sliding rod.

[0018] Compared with the prior art, the fin cooling device for heat exchanger processing has the advantages that,

[0019] 1. The cooling mechanism is used, the liquid storage tank in the cooling part is used, when cooling, the water pump is used to pump the cooling water in the liquid storage tank, the cooling water is pumped into the atomizing nozzles through the water pump, the branch pipe and the tee pipe, and is finally sprayed out, the fan is started at the same time when the water is sprayed out, so that the cooling is performed, the water after cooling falls into the collecting box through the filter screen, when the water is used again, the water pump is started, the water pump is used to pump the inner wall of the liquid storage tank and the collecting box, and the water is cooled again, so that the circulating cooling is performed, when the filter screen is blocked, the filter screen is pulled away from the chute, and the filter screen is cleaned, so that the performance decline or damage caused by overheating is prevented.

[0020] 2), through the limiting mechanism, utilize the handle in the drive part, handle rotation drive adjusting screw, adjusting screw drive a plate, limiting plate, so that the a plate and limiting plate in the slide rod, limiting sleeve under the action of movement, thereby limiting the mesh belt conveyor belt, prevent due to excessive movement or offset caused by fin dislocation, damage or uneven cooling and other problems. BRIEF DESCRIPTION OF DRAWINGS

[0021] Figure 1 It is the overall schematic view of the structure of the utility model;

[0022] Figure 2 It is the overall sectional schematic view of the structure of the utility model;

[0023] Figure 3 It is the schematic view of the cooling structure of the utility model;

[0024] Figure 4 It is the schematic view of the limiting structure of the utility model.

[0025] In the drawing: 1 processing box, 2 mesh belt conveyor belt, 3 cooling mechanism, 31 cooling part, 32 filter part, 311 liquid storage tank, 312 water pump, 313 branch pipe, 314 tee pipe, 315 atomizing nozzle, 321 filter screen, 322 chute, 323 collection box, 324 conveying pipe, 325 fan, 4 limiting mechanism, 41 drive part, 42 limiting part, 411 handle, 412 adjusting screw, 413 a plate, 421 limiting plate, 422 slide rod, 423 limiting sleeve. DETAILED DESCRIPTION

[0026] The technical scheme in the embodiments of the utility model will be described clearly and completely below in conjunction with 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 protection of the utility model.

[0027] Embodiment one:

[0028] Please refer to Figures 1-3 The utility model provides a kind of technical scheme: a fin cooling device for heat exchanger processing, including processing box 1, processing box 1 rear side is all provided with through hole, processing box 1 inner side is provided with mesh belt conveyor belt 2, mesh belt conveyor belt 2 is movably connected with processing box 1, processing box 1 inner side is provided with cooling mechanism 3 and limiting mechanism 4;

[0029] Cooling mechanism 3 includes cooling part 31 and filter part 32;

[0030] The filtering part 32 is located at the bottom surface of the cooling part 31.

[0031] The limiting mechanism 4 comprises a driving part 41 and a limiting part 42.

[0032] The limiting part 42 is located at the outer side surface of the driving part 41.

[0033] The cooling part 31 comprises a liquid storage tank 311, which is located at the rear side surface of the processing tank 1 and is fixedly connected with the processing tank 1. The top surface of the liquid storage tank 311 is communicated with a water pump 312, the top end surface of the water pump 312 is communicated with a branch pipe 313, and the branch pipe 313 extends through the inside surface of the processing tank 1.

[0034] The branch pipe 313 is fixedly connected with the processing tank 1, the front end surface of the branch pipe 313 is communicated with a three-way pipe 314, the three-way pipe 314 is fixedly connected with the inside surface of the processing tank 1, and the outer end surface of the three-way pipe 314 is communicated with an atomizing nozzle 315.

[0035] The filtering part 32 comprises a filter screen 321, which is located at the inside surface of the processing tank 1 and is provided with a sliding groove 322 at the outer side surface. The sliding groove 322 is slidingly connected with the filter screen 321, and the outer side surface of the sliding groove 322 is provided with a collecting tank 323, which is located at the inside surface of the processing tank 1.

[0036] The collecting tank 323 is fixedly connected with the inside surface of the processing tank 1, the rear end surface of the collecting tank 323 is communicated with a conveying pipe 324, the conveying pipe 324 extends through the collecting tank 323 and extends to the rear side surface of the processing tank 1, and the conveying pipe 324 is movably connected with the inner walls of the collecting tank 323 and the processing tank 1. The top end surface of the conveying pipe 324 is communicated with the bottom surface of the liquid storage tank 311.

[0037] A fan 325 is arranged above the conveying pipe 324 and is located at the inside surface of the through hole. The fan 325 is fixedly connected with the inside surface of the through hole.

[0038] Further, the embodiment cools the mechanism 3, using the storage tank 311 in the cooling unit 31, when cooling is needed, the water pump 312 first extracts cooling water from the storage tank 311, the cooling water is then delivered by the water pump 312, flows through the branch pipe 313 and the tee pipe 314, and finally enters the atomizing nozzle 315, under the action of the atomizing nozzle 315, the cooling water is atomized into fine water droplets, and is uniformly sprayed onto the area to be cooled, at the same time, the fan 325 is started, generating an air flow, the air flow blows through the atomized water droplets, accelerating the evaporation of the water, thereby taking away a large amount of heat, achieving cooling of the target object, the cooled water falls into the collection tank 323 through the filter screen 321, when cooling is needed again, the water pump 312 is started to extract cooling water from the inner wall of the storage tank 311 and the collection tank 323, and the cooling cycle is repeated, during long-term use, the filter screen 321 may be blocked due to impurities or dirt in the water, at this time, the filter screen 321 can be pulled out of the sliding groove 322 to clean it;

[0039] Further, the embodiment cools the mechanism 3, using the storage tank 311 in the cooling unit 31, when cooling is needed, the water pump 312 first extracts cooling water from the storage tank 311, the cooling water is then delivered by the water pump 312, flows through the branch pipe 313 and the tee pipe 314, and finally enters the atomizing nozzle 315, under the action of the atomizing nozzle 315, the cooling water is atomized into fine water droplets, and is uniformly sprayed onto the area to be cooled, at the same time, the fan 325 is started, generating an air flow, the air flow blows through the atomized water droplets, accelerating the evaporation of the water, thereby taking away a large amount of heat, achieving cooling of the target object, the cooled water falls into the collection tank 323 through the filter screen 321, when cooling is needed again, the water pump 312 is started to extract cooling water from the inner wall of the storage tank 311 and the collection tank 323, and the cooling cycle is repeated, during long-term use, the filter screen 321 may be blocked due to impurities or dirt in the water, at this time, the filter screen 321 can be pulled out of the sliding groove 322 to clean it;

[0040] Embodiment two:

[0041] Please refer to Figure 1 、 Figure 2 、 Figure 4 , and on the basis of embodiment one, further obtained: the drive part 41 includes two handlebars 411 arranged in front and back, the inner end faces of the handlebars 411 are each provided with an adjusting screw 412, the adjusting screw 412 is fixedly connected with the handlebar 411, the adjusting screw 412 extends through to the inner side of the processing box 1, the adjusting screw 412 is threadedly connected with the inner wall of the processing box 1, and the inner end faces of the adjusting screws 412 are each provided with a ruler plate 413, the ruler plate 413 is movably connected with the adjusting screw 412.

[0042] The limiting part 42 comprises two limiting plates 421 arranged in front and back, and the limiting plates 421 are fixedly connected with the inner side of the one-word plate 413. The outer end surface of the limiting plate 421 is provided with a slide rod 422, and the slide rod 422 is fixedly connected with the limiting plate 421 and extends to the outside of the processing box 1. The slide rod 422 is slidably connected with the inner wall of the processing box 1, and the outer end surface of the slide rod 422 is fixedly provided with a limiting sleeve 423.

[0043] Further, the limiting mechanism 4 is used to adjust the limiting of the mesh belt conveying belt 2. When the limiting of the mesh belt conveying belt 2 needs to be adjusted, the handle 411 is rotated, and the adjusting screw 412 starts to work with the rotation of the handle 411. The linear motion of the adjusting screw 412 further drives the movement of the one-word plate 413 and the limiting plate 421, so that the one-word plate 413 and the limiting plate 421 move under the action of the slide rod 422 and the limiting sleeve 423. With the movement of the one-word plate 413 and the limiting plate 421, they gradually approach or move away from the mesh belt conveying belt 2. When they move to the appropriate position, the one-word plate 413 and the limiting plate 421 will jointly limit the mesh belt conveying belt 2.

[0044] Further, the limiting mechanism 4 is used to adjust the limiting of the mesh belt conveying belt 2. When the limiting of the mesh belt conveying belt 2 needs to be adjusted, the handle 411 is rotated, and the adjusting screw 412 starts to work with the rotation of the handle 411. The linear motion of the adjusting screw 412 further drives the movement of the one-word plate 413 and the limiting plate 421, so that the one-word plate 413 and the limiting plate 421 move under the action of the slide rod 422 and the limiting sleeve 423. With the movement of the one-word plate 413 and the limiting plate 421, they gradually approach or move away from the mesh belt conveying belt 2. When they move to the appropriate position, the one-word plate 413 and the limiting plate 421 will jointly limit the mesh belt conveying belt 2.

[0045] In use, it is placed on the mesh belt conveyor 2, through the limiting mechanism 4, using the rotating handle 411 in the driving part 41, when it is necessary to limit the adjustment of the mesh belt conveyor 2, the rotating handle 411 rotates, with the rotation of the rotating handle 411, the adjusting screw 412 starts to work, the linear motion of the adjusting screw 412 further pushes the movement of the one-word plate 413 and the limiting plate 421, so that the one-word plate 413 and the limiting plate 421 move under the action of the sliding rod 422 and the limiting sleeve 423, with the movement of the one-word plate 413 and the limiting plate 421, they gradually approach or away from the mesh belt conveyor 2, when moving to the appropriate position, the one-word plate 413 and the limiting plate 421 will jointly limit the mesh belt conveyor 2, after limiting, conveying, at the same time, through the cooling mechanism 3, using the liquid storage tank 311 in the cooling part 31, when cooling is needed, first the cooling water is extracted from the liquid storage tank 311 through the water pump 312, the cooling water is then transported through the water pump 312, flows through the branch pipe 313 and the three-way pipe 314, and finally enters the atomizing nozzle 315, under the action of the atomizing nozzle 315, the cooling water is atomized into fine water droplets and uniformly sprayed onto the area to be cooled, at the same time, the fan 325 is started, air flow is generated, the air flow blows through the atomized water droplets, accelerates the evaporation of water, thereby taking away a large amount of heat, achieving the cooling of the target object, the cooled water falls into the collection tank 323 through the filter screen 321, when cooling is needed again, the water pump 312 is started to extract cooling water from the inner wall of the liquid storage tank 311 and the collection tank 323, and the cooling cycle is repeated, in the long-term use process, the filter screen 321 may be blocked due to impurities or dirt in the water, at this time, the filter screen 321 can be pulled away from the sliding groove 322 to clean.

[0046] Although the embodiments of the present application have been shown and described, it can be understood by those skilled in the art that various changes, modifications, replacements and modifications can be made to the embodiments without departing from the principles and spirits of the present application, the scope of the present application is defined by the appended claims and their equivalents.

Claims

1. A finned cooling device for heat exchanger processing, comprising a processing box (1), characterized in that: The processing box (1) has through holes on its rear side. The processing box (1) has a mesh belt conveyor (2) on its inner side. The mesh belt conveyor (2) is movably connected to the processing box (1). The processing box (1) has a cooling mechanism (3) and a limiting mechanism (4) on its inner side. The cooling mechanism (3) includes a cooling section (31) and a filtering section (32); The filter section (32) is located on the bottom surface of the cooling section (31); The limiting mechanism (4) includes a driving part (41) and a limiting part (42); The limiting part (42) is located on the outer side of the driving part (41).

2. The finned cooling device for heat exchanger processing according to claim 1, characterized in that: The cooling unit (31) includes a liquid storage tank (311), which is located on the rear side of the processing box (1). The liquid storage tank (311) is fixedly connected to the processing box (1). A water pump (312) is connected to the top surface of the liquid storage tank (311), and a branch pipe (313) is connected to the top surface of the water pump (312). The branch pipe (313) extends through to the inner side of the processing box (1).

3. The finned cooling device for heat exchanger processing according to claim 2, characterized in that: The branch pipe (313) is fixedly connected to the processing box (1). A three-way pipe (314) is connected to the front end face of the branch pipe (313). The three-way pipe (314) is fixedly connected to the inner side of the processing box (1). Atomizing nozzles (315) are connected to the outer end face of the three-way pipe (314).

4. The finned cooling device for heat exchanger processing according to claim 3, characterized in that: The filter section (32) includes a filter screen (321), which is located on the inner side of the processing box (1). The outer side of the filter screen (321) is provided with a sliding groove (322), which is slidably connected to the filter screen (321). A collection box (323) is provided on the outer side of the sliding groove (322), which is located on the inner side of the processing box (1).

5. The finned cooling device for heat exchanger processing according to claim 4, characterized in that: The collection box (323) is fixedly connected to the inner side of the processing box (1). A conveying pipe (324) is provided on the rear end face of the collection box (323). The conveying pipe (324) passes through the collection box (323) and extends to the rear side of the processing box (1). The conveying pipe (324) is movably connected to the inner wall of the collection box (323) and the processing box (1). The top surface of the conveying pipe (324) is connected to the bottom surface of the liquid storage tank (311).

6. The finned cooling device for heat exchanger processing according to claim 5, characterized in that: A fan (325) is provided above each of the conveying pipes (324). The fan (325) is located on the inner side of the through hole and is fixedly connected to the inner side of the through hole.

7. The finned cooling device for heat exchanger processing according to claim 1, characterized in that: The drive unit (41) includes a rotating handle (411), two of which are arranged at the front and rear. Each rotating handle (411) has an adjusting screw (412) on its inner end face. The adjusting screw (412) is fixedly connected to the rotating handle (411). The adjusting screw (412) extends through to the inner side of the processing box (1). The adjusting screw (412) is threaded to the inner wall of the processing box (1). Each adjusting screw (412) has a slotted plate (413) on its inner end face. The slotted plate (413) is movably connected to the adjusting screw (412).

8. A finned cooling device for heat exchanger processing according to claim 7, characterized in that: The limiting part (42) includes a limiting plate (421), two limiting plates (421) are provided at the front and back. The limiting plate (421) is fixedly connected to the inner side of the straight plate (413). The outer end face of the limiting plate (421) is provided with a sliding rod (422). The sliding rod (422) is fixedly connected to the limiting plate (421). The sliding rod (422) extends through to the outside of the processing box (1). The sliding rod (422) is slidably connected to the inner wall of the processing box (1). The outer end face of the sliding rod (422) is fixedly provided with a limiting sleeve (423).