Cooling device for aluminum alloy ingot machining
By using a cooling device composed of an atomizing nozzle and a fan in the aluminum alloy ingot processing equipment, the problem of long natural cooling time of the aluminum alloy ingot is solved, and rapid cooling and improved safety are achieved.
Patent Information
- Application Number
- CN202422791911.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-15
- Publication Date
- 2025-10-14
- Estimated Expiration
- 2034-11-15
AI Technical Summary
Existing aluminum alloy ingot processing equipment has the problem of long natural cooling time and difficulty in rapid cooling. Natural cooling may also cause coolant splashing and smoke diffusion, posing a safety hazard.
The cooling device adopts a combination of high-temperature resistant conveyor belt, atomizing nozzle and fan. The water is atomized by the atomizer and sprayed on the surface of the aluminum alloy ingot. At the same time, the fan is used to gather the scattered water mist to improve the cooling efficiency.
The rapid cooling of aluminum alloy ingots is achieved, the waste of resources caused by water mist escape is reduced, the practicality and cooling efficiency of the equipment are improved, and safety hazards are reduced.
Smart Images

Figure CN223435326U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the cooling technical field for aluminium alloy ingot processing especially relates to a cooling device for aluminium alloy ingot processing. BACKGROUND
[0002] Aluminum alloy is the most widely used non-ferrous structural material in industry, which has been widely used in aviation, aerospace, automobile, machinery manufacturing, shipbuilding and chemical industry. The rapid development of industrial economy increases the demand for aluminum alloy welded structural parts, which leads to the in-depth study of the weldability of aluminum alloy. At present, aluminum alloy is the most commonly used alloy, and aluminum alloy ingot is a raw material made of pure aluminum and recycled aluminum as raw materials and other metal elements. When processing aluminum alloy ingot, a cooling device for aluminum alloy ingot processing is often used to process aluminum alloy ingot.
[0003] Prior art such as publication number CN212469731U discloses a cooling device for aluminum alloy ingot processing, which fixes the installation disc of the aluminum alloy ingot to be cooled, and the cooling pool for cooling the aluminum alloy ingot to be cooled. The installation disc partially extends into the cooling pool. The cooling pool is rotationally connected with a shielding plate for shielding the part of the installation disc extending into the cooling pool. The cooling pool is fixedly connected with a positioning plate for positioning the shielding plate. The shielding plate and the positioning plate abut. The cooling pool has an opening for the installation disc to extend into. The opening is located at the top of the cooling pool. One end of the positioning plate is fixedly connected with the inner side wall of the opening, and the other end extends above the opening. One end of the shielding plate is rotationally connected with the outer side wall of the opening. The utility model solves the problem that most of the existing devices directly immerse the molten aluminum alloy ingot into the cooling liquid for cooling, which easily causes the cooling liquid to splash due to heating, and there is a safety hazard. At the same time, the smoke generated by cooling diffuses in the workplace, which poses a risk to the workers.
[0004] In daily work, the equipment exists in the process of cooling the aluminum alloy ingot. When the existing equipment cools the aluminum alloy ingot, it is generally cooled naturally. The natural cooling time is too long, and it is difficult to quickly cool the material, which causes waste of time when processing the material. Utility model content
[0005] The utility model aims at solving the problem of the prior art that it is difficult to quickly cool the aluminum alloy ingot, and provides a cooling device for aluminum alloy ingot processing.
[0006] In order to achieve the above object, the utility model discloses the following technical scheme: a cooling device for aluminum alloy ingot processing, including frame, high temperature resistant conveyor belt and first motor, high temperature resistant conveyor belt is located inside the setting of frame, the first motor is located inside the setting of frame, the side of frame is provided with cooling device, the cooling device includes connecting frame and intercommunication board, the connecting frame is located on the side upper end of frame and sets up, the intercommunication board is located in the inside top fixed connection of connecting frame, the lower surface fixed connection of intercommunication board has atomizing nozzle, the upper surface fixed connection of connecting frame has atomizer.
[0007] Further, the lower end of the atomizer is fixedly connected with the upper surface of the intercommunication plate, and the upper surface of the connecting frame is fixedly connected with a water tank.
[0008] Further, the atomizer and the water tank are connected through a connecting pipe, and the upper surface of the water tank is fixedly connected with a second motor.
[0009] Further, the bottom side of the water tank is fixedly connected with a water pipe, and an electronic valve is arranged at the connection between the water pipe and the water tank.
[0010] Further, the side of the connecting frame is provided with an auxiliary assembly, the auxiliary assembly comprises a mounting frame and a fixing frame, the fixing frame is fixedly connected with the side of the connecting frame, the mounting frame is arranged on the side of the connecting frame, a fan is arranged in the mounting frame, rotating blocks are fixedly connected to the two ends of the mounting frame, the rotating blocks are rotatably connected to the inside of the fixing frame, a plurality of equidistant positioning grooves are formed in the surface of the fixing frame, a groove is formed in the side of the rotating block, a pull block is slidably connected to the surface of the rotating block, and the pull block is slidably connected with the inner wall of the groove.
[0011] Further, the first spring is fixedly connected to the inner surface of the groove away from the pull block, and the other end of the first spring is fixedly connected to the inner surface of the groove.
[0012] Further, the one end of the pull block close to the rotating block is fixedly connected with a positioning rod, and the positioning rod is clamped in the positioning groove.
[0013] Compared with the prior art, the device has the advantages and positive effects that
[0014] 1、The utility model discloses a first motor runs and drives the high -temperature -resistant conveyer belt to move to transfer the aluminum alloy ingot, when the equipment is used, the user starts the electronic valve when cooling the material, and water enters the inside of water tank through the water pipe, and the second motor starts immediately, and water enters the inside of atomizer through the connecting pipe, and the atomizer atomizes water, and the atomized water mist is passed into the inside of the communicating plate, and the communicating plate sprays the material on the surface of the high -temperature -resistant conveyer belt through the atomizing spray head, through set up cooling device, effectively cooling the material on the surface of the high -temperature -resistant conveyer belt, the effect that the material is cooled quickly is played, when the equipment is cooling the material, generally is natural cooling, and the natural cooling time is too long, and it is difficult to cool the material quickly, and the time waste condition of material processing appears, cooling device, effectively cooling the material quickly, improve the practicality of equipment.
[0015] 2、The utility model discloses a auxiliary assembly, before using the equipment, the user pulls the pull block, and the pull block slides in the recess, when the pull block moves and drives the first spring displacement shape change and generates the elastic force, and the pull block moves and drives the positioning rod to move and separate from the inside of the positioning slot, and the pull block loses the restraint, and the pull block drives the swivel block to rotate and adjusts the angle of fan, and the water mist overflowing the one end of the connecting frame is blown into the inside of the connecting frame, through set up auxiliary assembly, effectively gather the water mist that disperses, the effect that the dispersing water mist is gathered is played, reduce the equipment when using, and the water mist is easy to disperse through the both ends of the connecting frame, cause the equipment cooling efficiency to reduce the condition, auxiliary assembly can gather the water mist, improve the cooling efficiency of equipment. ACCURACY OF DRAWINGS
[0016] Figure 1 A three-dimensional structure schematic diagram of the cooling device for aluminum alloy ingot processing is provided for the utility model;
[0017] Figure 2 A side view structure schematic diagram of the cooling device for aluminum alloy ingot processing is provided for the utility model;
[0018] Figure 3 A partial structure schematic diagram of the cooling device for aluminum alloy ingot processing is provided for the utility model;
[0019] Figure 4 A structure schematic diagram of the cooling device for aluminum alloy ingot processing is provided for the utility model; Figure 3 A structure schematic diagram of the cooling device for aluminum alloy ingot processing is provided for the utility model;
[0020] Figure 5The utility model provides a cooling device for aluminum alloy ingot processing Figure 4 Structure schematic diagram in B.
[0021] Legend: 1, frame; 2, high temperature resistant conveying belt; 3, first motor; 4, cooling device; 41, connecting frame; 42, water tank; 43, second motor; 44, atomizer; 45, water pipe; 46, electronic valve; 47, communication plate; 48, atomizing nozzle; 5, auxiliary assembly; 51, mounting frame; 52, fixed frame; 53, fan; 54, pull block; 55, rotating block; 56, positioning groove; 57, groove; 58, first spring; 59, positioning rod. Specific embodiments
[0022] Please refer to Figures 1-5 The utility model provides a technical scheme: a cooling device for aluminum alloy ingot processing, including frame 1, high temperature resistant conveying belt 2 and first motor 3, high temperature resistant conveying belt 2 is located inside the inside setting of frame 1, and first motor 3 is located inside the inside setting of frame 1.
[0023] The specific setting and function of the cooling device 4 and the auxiliary assembly 5 will be described below.
[0024] In the embodiment: the side of frame 1 is provided with cooling device 4, and cooling device 4 includes connecting frame 41 and communication plate 47, connecting frame 41 is located on the side upper end of frame 1 and is fixedly connected with communication plate 47, the lower surface of communication plate 47 is fixedly connected with atomizing nozzle 48, and the upper surface of connecting frame 41 is fixedly connected with atomizer 44.
[0025] Specifically, the lower end of atomizer 44 is fixedly connected with the upper surface of communication plate 47, and the upper surface of connecting frame 41 is fixedly connected with water tank 42.
[0026] In the embodiment: by setting atomizer 44, water can be atomized, which reduces the situation that water stains are easily caused by directly spraying water flow on the surface of materials when using the equipment and pollute the surface of materials.
[0027] Specifically, atomizer 44 and water tank 42 are connected through a connecting pipe, the upper surface of water tank 42 is fixedly connected with second motor 43, and the second motor 43 is arranged to facilitate the water pressure into the inside of atomizer 44.
[0028] Specifically, the bottom side of water tank 42 is fixedly connected with water pipe 45, and the connecting part of water pipe 45 and water tank 42 is provided with electronic valve 46, and the electronic valve 46 is arranged to facilitate the control of water flow into the inside of water tank 42.
[0029] In the embodiment, the side of the connecting frame 41 is provided with an auxiliary assembly 5, which comprises a mounting frame 51 and a fixing frame 52 fixedly connected with the side of the connecting frame 41, and the mounting frame 51 is arranged beside the side of the connecting frame 41, and the inside of the mounting frame 51 is provided with a fan 53, and both ends of the mounting frame 51 are fixedly connected with rotating blocks 55 rotatably connected with the inside of the fixing frame 52, and the surface of the fixing frame 52 is provided with a plurality of equidistant positioning grooves 56, and the side of the rotating block 55 is provided with a recess 57, and the surface of the rotating block 55 is slidably connected with a pulling block 54 slidably connected with the inner wall of the recess 57.
[0030] In the embodiment, the fan 53 can be arranged to gather the water mist escaping from one end of the connecting frame 41, so that the water mist is less likely to escape from both ends of the connecting frame 41 during use of the equipment, thereby reducing resource waste.
[0031] Specifically, the first spring 58 is fixedly connected to the inside surface of the recess 57, and the other end of the first spring 58 away from the pulling block 54 is fixedly connected to the inside of the recess 57, so that the first spring 58 can apply a reset elastic force to the pulling block 54.
[0032] Specifically, the one end of the pulling block 54 close to the rotating block 55 is fixedly connected with a positioning rod 59, and the positioning rod 59 is clamped in the inside of the positioning groove 56, so that the positioning rod 59 can be arranged to position the rotating block 55.
[0033] Working principle: when the equipment is used, the user places the cast aluminum ingot on the surface of the high-temperature-resistant conveying belt 2, and the first motor 3 drives the high-temperature-resistant conveying belt 2 to move to transfer the aluminum ingot, and when the equipment is used, the user starts the electronic valve 46 when cooling the material, and water enters the inside of the water tank 42 through the water pipe 45, and the second motor 43 is started, and water enters the inside of the atomizer 44 through the connecting pipe, and the atomizer 44 atomizes the water, and the atomized water mist enters the inside of the communication plate 47, and the communication plate 47 sprays the material on the surface of the high-temperature-resistant conveying belt 2 through the atomizing nozzle 48, so that the cooling device 4 can effectively cool the material on the surface of the high-temperature-resistant conveying belt 2, and the cooling device 4 can quickly cool the material, thereby improving the practicability of the equipment.
[0034] Before the device is used, the user pulls the pull block 54, and then the pull block 54 slides in the recess 57. When the pull block 54 moves, the first spring 58 is displaced and deformed to generate elastic force. The movement of the pull block 54 drives the positioning rod 59 to move out of the positioning groove 56. Then the rotating block 55 is no longer constrained, and rotating the pull block 54 drives the rotating block 55 to rotate the mounting frame 51 to adjust the angle of the fan 53. The water mist overflowing from one end of the connecting frame 41 is blown into the connecting frame 41. By setting the auxiliary assembly 5, the dispersed water mist is effectively gathered, the effect of gathering the dispersed water mist is achieved, and the situation that the water mist is easily dispersed through the two ends of the connecting frame 41 when the device is used, reducing the cooling efficiency of the device, is reduced. The auxiliary assembly 5 can gather the water mist, and the cooling efficiency of the device is improved.
Claims
1. A cooling device for processing aluminum alloy ingots, comprising a frame (1), a high-temperature resistant conveyor belt (2) and a first motor (3), characterized in that: The high-temperature resistant conveyor belt (2) is located inside the frame (1), the first motor (3) is located inside the frame (1), a cooling device (4) is provided on the side of the frame (1), and the cooling device (4) includes a connecting frame (41) and a connecting plate (47), the connecting frame (41) is located at the upper end of the side of the frame (1), the connecting plate (47) is located at the top end of the inside of the connecting frame (41) and is fixedly connected, the lower surface of the connecting plate (47) is fixedly connected to an atomizing nozzle (48), and the upper surface of the connecting frame (41) is fixedly connected to an atomizer (44).
2. The cooling device for processing aluminum alloy ingots according to claim 1, characterized in that: The lower end of the atomizer (44) is fixedly connected to the upper surface of the communication plate (47), and the upper surface of the connection frame (41) is fixedly connected to the water tank (42).
3. The cooling device for processing aluminum alloy ingots according to claim 2, characterized in that: The atomizer (44) and the water tank (42) are connected via a connecting pipe, and a second motor (43) is fixedly connected to the upper surface of the water tank (42).
4. The cooling device for processing aluminum alloy ingots according to claim 3, characterized in that: A water pipe (45) is fixedly connected to the bottom side of the water tank (42), and an electronic valve (46) is provided at the connection between the water pipe (45) and the water tank (42).
5. The cooling device for processing aluminum alloy ingots according to claim 1, characterized in that: An auxiliary component (5) is provided on the side of the connecting frame (41), and the auxiliary component (5) includes a mounting frame (51) and a fixing frame (52), the fixing frame (52) is fixedly connected to the side of the connecting frame (41), the mounting frame (51) is arranged on the side of the connecting frame (41), a fan (53) is provided inside the mounting frame (51), and rotating blocks (55) are fixedly connected at both ends of the mounting frame (51), the rotating block (55) is located inside the fixing frame (52) and is rotatably connected, a plurality of equidistant positioning grooves (56) are provided on the surface of the fixing frame (52), a groove (57) is provided on the side of the rotating block (55), a pull block (54) is slidably connected to the surface of the rotating block (55), and the pull block (54) is slidably connected to the inner wall of the groove (57).
6. The cooling device for processing aluminum alloy ingots according to claim 5, characterized in that: The inner surface of the pull block (54) located in the groove (57) is fixedly connected to a first spring (58), and one end of the first spring (58) away from the pull block (54) is fixedly connected to the inside of the groove (57).
7. The cooling device for processing aluminum alloy ingots according to claim 6, characterized in that: One end of the pull block (54) close to the rotating block (55) is fixedly connected to a positioning rod (59), and the positioning rod (59) is clamped with the inside of the positioning groove (56).
Citation Information
Patent Citations
Cooling device for aluminum alloy ingot machining
CN212469731U