Aluminum profile machining cooling device
By designing a cooling device for aluminum profile processing that isolates the cooling zone, and utilizing an air pump to recover steam and collect liquid coolant during the cooling process, the problem of water vapor caused by liquid cooling is solved, thus improving cooling efficiency and the environment.
Patent Information
- Application Number
- CN202520293619.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-24
- Publication Date
- 2026-01-09
- Estimated Expiration
- 2035-02-24
AI Technical Summary
Existing aluminum profile processing cooling devices generate a large amount of water vapor during the use of liquid cooling, which affects the working environment.
A cooling device for aluminum profile processing was designed, which uses a spray component and an air pump system to isolate the cooling area from the working environment. The material is transported by a conveyor, and the steam generated during the cooling process is guided by the air pump for recycling. The collection component recovers the liquid coolant, and the filter plate and limit plate are used to separate impurities.
It effectively isolates the cooling area from the working environment, reduces the generation of water vapor, realizes the recycling of coolant, and improves the working environment.
Smart Images

Figure CN223783178U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of aluminum profile processing technology, and in particular to a cooling device for aluminum profile processing. Background Technology
[0002] Aluminum profiles, also known as aluminum alloy profiles, are metal materials used in machinery manufacturing, transportation machinery, and other fields. They are one of the most widely used non-ferrous metal structural materials in industry. Compared with pure aluminum, alloys formed by adding certain elements retain the advantages of pure aluminum, such as lightness, while also having higher strength. Therefore, they are a widely used type of metal material.
[0003] A high-durability aluminum profile processing cooling device (CN220837264U) is available, comprising a housing. The housing contains a cooling mechanism, which includes a fixed sleeve fixedly connected to the top wall of the housing. A rotating cylinder is slidably connected to the inner side of the fixed sleeve, and a nozzle is fixedly connected to the inner side of the rotating cylinder. An aluminum profile body, passing through the rotating cylinder, is movably connected inside the housing. Conveyor rollers, which are in contact with the upper and lower end faces of the aluminum profile body, are rotatably connected inside the housing. This high-durability aluminum profile processing cooling device utilizes a motor to drive a half-gear to rotate, causing a movable rack to alternately mesh with the half-gear. This, combined with the elastic force of a compression spring, enables the movable rack to reciprocate, causing the rotating cylinder to drive the nozzle to reciprocate within a certain range. This, in conjunction with the movement of the aluminum profile body, ensures more comprehensive contact between the aluminum profile body and the sprayed liquid, thereby improving cooling efficiency and quality.
[0004] However, the aforementioned utility model uses liquid for cooling during use, which results in a large amount of water vapor being generated during the cooling process, thus affecting the working environment. Utility Model Content
[0005] The purpose of this invention is to provide a cooling device for aluminum profile processing, which aims to solve the problem that existing devices use liquid cooling, resulting in a large amount of water vapor during the cooling process, thus affecting the working environment.
[0006] To achieve the above objectives, this utility model provides a cooling device for aluminum profile processing, including a housing and a cooling assembly. The cooling assembly includes a conveyor, a mounting frame, a spray component, a collection component, a guide pipe, an air pump, and a side door.
[0007] The side door is rotatably connected to the housing and located on one side of the housing. The mounting bracket is fixedly connected to the housing and located inside the housing. The collecting component is connected to the housing and located at the bottom of the mounting bracket. The spraying component is connected to the housing and located outside the mounting bracket. The conveyor is connected to the mounting bracket and located inside the mounting bracket. The air pump is connected to the housing and located at the top of the housing. The guide pipe is connected to the air pump and to the spraying component, and is located on one side of the air pump.
[0008] The spraying component includes a water tank, a pump body, a water pipe, and a nozzle. The water pipe is fixedly connected to the tank body and located on one side of the tank body. The nozzle is connected to the water pipe and located on one side of the water pipe. The pump body is located at one end of the water pipe. The water tank is connected to the pump body and located on one side of the pump body. The guide pipe is connected to the water tank and located outside the water tank.
[0009] The collection component includes a collection box and rollers. The collection box is slidably connected to the box body and located on one side of the box body. The rollers are rotatably connected to the collection box and located at the bottom of the collection box.
[0010] The cooling assembly further includes a baffle, a slide groove, and a fixing bolt. The slide groove is fixedly connected to the housing and located on the outside of the housing. The baffle is slidably connected to the slide groove and located on the inside of the slide groove. The fixing bolt is threadedly connected to the slide groove and located on one side of the slide groove.
[0011] The cooling assembly further includes a filter plate and a limiting plate. The limiting plate is fixedly connected to the collection box and located inside the collection box. The filter plate is slidably connected to the collection box and located on top of the limiting plate.
[0012] This utility model discloses a cooling device for aluminum profile processing. The cooling area is isolated from the working environment by a housing. A conveyor transports the material into the housing. The conveyor belt is made of high-temperature resistant metal mesh, facilitating spray cooling from both the top and bottom sides of the conveyor. A side door allows for easy opening and closing of the housing for component installation or maintenance. Liquid vapor generated during cooling is guided by an air pump and then discharged through a feed pipe to the spray components for recycling. A collection component recovers the sprayed liquid coolant. This design solves the problem of existing devices using liquid cooling, which results in excessive water vapor during cooling and negatively impacts the working environment. Attached Figure Description
[0013] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the accompanying drawings used in the description of the embodiments or the prior art will be briefly introduced below.
[0014] Figure 1 This is a structural diagram of a cooling device for aluminum profile processing according to this utility model.
[0015] Figure 2 This is a cross-sectional schematic diagram of a cooling device for aluminum profile processing according to this utility model.
[0016] 101-Box body, 102-Cooling component, 103-Conveyor, 104-Mounting bracket, 105-Spraying component, 106-Collection component, 107-Guide pipe, 108-Air pump, 109-Side door, 110-Water tank, 111-Pump body, 112-Water pipe, 113-Sprayer, 114-Collection box, 115-Roller, 116-Baffle, 117-Slide groove, 118-Fixing bolt, 119-Filter plate, 120-Limiting plate. Detailed Implementation
[0017] The embodiments of this utility model are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain this utility model, and should not be construed as limiting this utility model.
[0018] Please see Figures 1-2 , Figure 1 This is a structural diagram of a cooling device for aluminum profile processing according to this utility model. Figure 2 This is a cross-sectional schematic diagram of a cooling device for aluminum profile processing according to this utility model.
[0019] This utility model provides a cooling device for aluminum profile processing, comprising a housing 101 and a cooling assembly 102. The cooling assembly 102 includes a conveyor 103, a mounting frame 104, a spray component 105, a collection component 106, a guide pipe 107, an air pump 108, a side door 109, a water tank 110, a pump body 111, a water pipe 112, a nozzle 113, a collection box 114, rollers 115, a baffle 116, a chute 117, fixing bolts 118, a filter plate 119, and a limiting plate 120. This solution solves the problem that existing devices rely on liquid cooling, resulting in a large amount of water vapor during the cooling process, which negatively impacts the working environment.
[0020] In this embodiment, the side door 109 is rotatably connected to the housing 101 and located on one side of the housing 101; the mounting bracket 104 is fixedly connected to the housing 101 and located inside the housing 101; the collecting component 106 is connected to the housing 101 and located at the bottom of the mounting bracket 104; the spraying component 105 is connected to the housing 101 and located outside the mounting bracket 104; the conveyor 103 is connected to the mounting bracket 104 and located inside the mounting bracket 104; the air pump 108 is connected to the housing 101 and located at the top of the housing 101; the guide pipe 107 is connected to the air pump 108 and to the spraying component 105, and is located on one side of the air pump 108; the flow path is through the housing 101. The material cooling area is isolated from the working environment. The material is conveyed into the housing 101 by the conveyor 103. The conveyor belt of the conveyor 103 is made of high-temperature resistant metal mesh belt, which facilitates the spraying component 105 to spray and cool the material from the top and bottom sides of the conveyor 103. The side door 109 facilitates the opening and closing of the housing 101 for the installation or maintenance of parts inside the housing 101. The liquid vapor generated during the cooling process is guided by the air pump 108 and then discharged to the spraying component 105 through the guide pipe 107 for recycling. The collection component 106 is used to recover the sprayed liquid coolant. This solves the problem that existing devices use liquid cooling, which leads to a large amount of water vapor during the cooling process, thus affecting the working environment.
[0021] The spray component 105 includes a water tank 110, a pump body 111, a water pipe 112, and a nozzle 113. The water pipe 112 is fixedly connected to the tank 101 and located on one side of the tank 101. The nozzle 113 is connected to the water pipe 112 and located on one side of the water pipe 112. The pump body 111 is disposed at one end of the water pipe 112. The water tank 110 is connected to the pump body 111 and located on one side of the pump body 111. The guide pipe 107 is connected to the... The water tank 110 is connected and located outside the water tank 110. The coolant in the water tank 110 is pumped into the water pipe 112 through the pump body 111. The coolant is sprayed onto the material to be cooled through the nozzle 113 on the water pipe 112. The coolant vapor recovered by the guide pipe 107 enters the water tank 110 for recycling. After entering the water tank 110, it mixes with the original liquid in the water tank and lowers the temperature of the recovered coolant without affecting the cooling of the material.
[0022] Secondly, the collecting component 106 includes a collecting box 114 and a roller 115. The collecting box 114 is slidably connected to the box body 101 and is located on one side of the box body 101. The roller 115 is rotatably connected to the collecting box 114 and is located at the bottom of the collecting box 114. The collecting box 114 is used to collect the liquefied coolant dripping during cooling. The roller 115 reduces the friction between the collecting box 114 and the placement surface, making it easier to move the collecting box 114.
[0023] Furthermore, the cooling assembly 102 also includes a baffle 116, a slide 117, and a fixing bolt 118. The slide 117 is fixedly connected to the housing 101 and located on the outside of the housing 101. The baffle 116 is slidably connected to the slide 117 and located on the inside of the slide 117. The fixing bolt 118 is threadedly connected to the slide 117 and located on one side of the slide 117. The baffle 116 slides and adjusts its position inside the slide 117. The baffle 116 blocks the inlet and outlet of the housing 101, and controls the size of the inlet and outlet according to the size of the material, further reducing the overflow of water vapor.
[0024] Finally, the cooling assembly 102 also includes a filter plate 119 and a limiting plate 120. The limiting plate 120 is fixedly connected to the collection box 114 and located inside the collection box 114. The filter plate 119 is slidably connected to the collection box 114 and located on top of the limiting plate 120. The filter plate 119 is used to filter impurities in the dripping liquid and to separate solids and liquids in the liquid recovered by the collection box 114. The limiting plate 120 is used to limit the maximum sliding position of the filter plate 119 in the collection box 114.
[0025] In the aluminum profile processing cooling device of this utility model, the material cooling area is isolated from the working environment by the box 101. The material is conveyed into the box 101 by the conveyor 103. The conveyor belt of the conveyor 103 is made of high-temperature resistant metal mesh belt, which facilitates the spraying component 105 to spray cooling from the upper and lower sides of the conveyor 103. The side door 109 facilitates the opening and closing of the box 101 for the installation or maintenance of parts inside the box 101. The liquid vapor generated during the cooling process is guided by the air pump 108 and then discharged to the spraying component 105 through the guide pipe 107 for recycling. The collection component 106 is used to recover the sprayed liquid coolant. This solves the problem of existing devices using liquid cooling, which leads to a large amount of water vapor during the cooling process, thus affecting the working environment.
[0026] The above-disclosed embodiments are merely preferred embodiments of the aluminum profile processing cooling device of this utility model, and should not be construed as limiting the scope of this utility model. Those skilled in the art can understand that implementing all or part of the above-described embodiments and making equivalent changes in accordance with the claims of this utility model still fall within the scope of this utility model.
Claims
1. An aluminum profile machining cooling device, comprising a box body, characterized in that: a cooling assembly is further included, the cooling assembly comprising a conveyor, a mounting frame, a spraying member, a collecting member, a flow guide pipe, an air pump and a side door; the side door is rotatably connected with the box body and located at one side of the box body; the mounting frame is fixedly connected with the box body and located at the inner side of the box body; the collecting member is connected with the box body and located at the bottom of the mounting frame; the spraying member is connected with the box body and located at the outer side of the mounting frame; the conveyor is connected with the mounting frame and located at the inner side of the mounting frame; the air pump is connected with the box body and located at the top of the box body; the flow guide pipe is connected with the air pump and the spraying member and located at one side of the air pump.
2. The aluminum profile machining cooling device according to claim 1, characterized in that: the spraying member comprises a water tank, a pump body, a water pipe and a spray head; the water pipe is fixedly connected with the box body and located at one side of the box body; the spray head is connected with the water pipe and located at one side of the water pipe; the pump body is arranged at one end of the water pipe; the water tank is connected with the pump body and located at one side of the pump body; the flow guide pipe is in communication with the water tank and located at the outer side of the water tank.
3. The aluminum profile machining cooling device according to claim 2, characterized in that: the collecting member comprises a collecting tank and a roller; the collecting tank is slidably connected with the box body and located at one side of the box body; the roller is rotatably connected with the collecting tank and located at the bottom of the collecting tank.
4. The aluminum profile machining cooling device according to claim 3, characterized in that: the cooling assembly further comprises a baffle, a sliding groove and a fixing bolt; the sliding groove is fixedly connected with the box body and located at the outer side of the box body; the baffle is slidably connected with the sliding groove and located at the inner side of the sliding groove; the fixing bolt is threadedly connected with the sliding groove and located at one side of the sliding groove.
5. The aluminum profile machining cooling device according to claim 3, characterized in that: the cooling assembly further comprises a filter plate and a limiting plate; the limiting plate is fixedly connected with the collecting tank and located at the inner side of the collecting tank; the filter plate is slidably connected with the collecting tank and located at the top of the limiting plate.
Citation Information
Patent Citations
High-durability aluminum profile machining cooling device
CN220837264U