Heat dissipation device for manufacturing non-ferrous metal alloy material casting part
By designing heat dissipation devices for cooling and filtration components, the problem of poor cooling caused by excessively high hot air flow rate in non-ferrous metal casting was solved, achieving efficient heat exchange and dust filtration, ensuring safe and stable equipment operation, and improving production efficiency.
Patent Information
- Application Number
- CN202422667487.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-01
- Publication Date
- 2025-11-28
- Estimated Expiration
- 2034-11-01
AI Technical Summary
In the non-ferrous metal casting process, excessively high hot air flow rate leads to poor cooling effect, affecting the normal operation of manufacturing equipment and the safety of equipment parts, thereby affecting production efficiency.
A heat dissipation device including a cooling component and a filter component is designed. The cooling component extends the heat flow path through the inclined cooling plate and the corrugated cooling plate surface, and improves the cooling effect by combining with the coolant circulation system. The filter component can be easily replaced to filter dust through a sliding filter plate.
It extends the time heat passes through the cooling components, improving the cooling effect, and the convenient filter components clean dust, ensuring safe and stable operation of the equipment and improving production efficiency.
Smart Images

Figure CN223603425U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to metal alloy material casting part heat abstractor technical field, specifically relates to a kind of heat abstractor for nonferrous metal alloy material casting part manufacturing. BACKGROUND
[0002] In nonferrous metal casting, heat will be generated, and the manufacturing equipment needs to be cooled in time, otherwise, it will not only affect the normal and safe operation of the manufacturing equipment, but also may damage the equipment parts, resulting in that the manufacturing equipment cannot manufacture and process nonferrous metal alloy material casting parts with high quality, and thus the production efficiency is reduced.
[0003] However, when the hot air passes through the cooling pipe, the flow rate is too fast, and the cooling effect is not good, so the technical personnel in the field provide a heat abstractor for nonferrous metal alloy material casting part manufacturing to solve the problems in the background. UTILITY MODEL CONTENT
[0004] The utility model aims at solving the shortcomings in the prior art and provides a heat abstractor for nonferrous metal alloy material casting part manufacturing.
[0005] To achieve the above purpose, the utility model provides a heat abstractor for nonferrous metal alloy material casting part manufacturing, which comprises a treatment tank, a second connecting pipe is fixedly connected to one side of the treatment tank, a first connecting pipe is arranged on one side of the second connecting pipe, and a cooling box is fixedly installed at the bottom of the treatment tank.
[0006] In the above technical solution, further, the cooling assembly comprises an air suction fan fixedly installed in the second connecting pipe, two cooling plates are fixedly installed in the cooling pipe, the two cooling plates are obliquely arranged in the cooling pipe, and a plurality of flow-through holes are formed in the surfaces of the two cooling plates, and the plurality of flow-through holes in the surfaces of the two cooling plates are staggered and arranged on the corresponding surfaces of the two cooling plates.
[0007] In the above technical solution, further, the surface of the cooling plate is in a wave shape, a communication pipe is fixedly installed between the two cooling plates, and the two cooling plates are connected to the cooling box.
[0008] Further, the pump body is fixedly installed in the interior of the cooling box, the two cooling plates are respectively fixedly connected with the liquid inlet pipe and the return pipe, the other end of the liquid inlet pipe extends to the interior of the cooling box, and the return pipe is connected with the pump body.
[0009] Further, the filter assembly comprises a mounting plate slidably installed on one side of the first connecting pipe, and a filter plate is fixedly installed on one side of the mounting plate.
[0010] Further, the first connecting pipe is extended from one side of the mounting plate and fixedly connected with a rubber ring, and two pull grooves are formed in the side of the mounting plate outside the first connecting pipe.
[0011] Compared with the prior art, the non-ferrous metal alloy material casting manufacturing equipment has the following beneficial effects:
[0012] 1. The heat generated by the non-ferrous metal alloy material casting manufacturing equipment can enter the first connecting pipe, the heat can be circulated when the cooling assembly is cooled, the time of the heat passing through the cooling assembly is prolonged, the cooling effect of the cooling assembly during use is improved, and the dust carried by the heat can be filtered through the filter assembly.
[0013] 2. The dust carried by the hot air can be filtered through the filter plate, and after a certain period of time, the filter plate can be conveniently cleaned by sliding the mounting plate out of the interior of the first connecting pipe. BRIEF DESCRIPTION OF DRAWINGS
[0014] Figure 1 A structure diagram of a heat dissipation device main body for non-ferrous metal alloy material casting manufacturing is provided for the utility model;
[0015] Figure 2 A structure diagram of a cooling pipe of a heat dissipation device for non-ferrous metal alloy material casting manufacturing is provided for the utility model;
[0016] Figure 3 A structure diagram of a cooling assembly of a heat dissipation device for non-ferrous metal alloy material casting manufacturing is provided for the utility model;
[0017] Figure 4 A structure diagram of a cooling box of a heat dissipation device for non-ferrous metal alloy material casting manufacturing is provided for the utility model.
[0018] In the figure: 1, treatment tank; 101, first connecting pipe; 102, second connecting pipe; 2, cooling box; 3, filtering cooling mechanism; 31, cooling pipe; 32, cooling assembly; 321, air suction fan; 322, cooling plate; 323, flow-through hole; 324, liquid inlet pipe; 325, backflow pipe; 326, communication pipe; 327, pump body; 33, filtering assembly; 331, mounting plate; 332, rubber ring; 333, filtering plate; 334, pull groove. DETAILED DESCRIPTION
[0019] In order to enable the above-mentioned purpose, features and advantages of the present application to be more clearly understood, the present application will be further described below in detail with reference to the drawings and specific embodiments.
[0020] As Figures 1-4 shown in the figure, a heat dissipation device for non-ferrous metal alloy material casting manufacturing, including a treatment tank 1, the treatment tank 1 is fixedly connected with a second connecting pipe 102 on one side, the second connecting pipe 102 is provided with a first connecting pipe 101 on one side, and the bottom of the treatment tank 1 is fixedly installed with a cooling box 2; a filtering cooling mechanism 3 is arranged on one side of the second connecting pipe 102, which is used for filtering and cooling hot air, wherein the filtering cooling mechanism 3 includes a cooling pipe 31 fixedly installed between the first connecting pipe 101 and the second connecting pipe 102, a cooling assembly 32 is arranged on one side of the cooling pipe 31, and a filtering assembly 33 is arranged on one side of the first connecting pipe 101; the heat generated by the non-ferrous metal alloy material casting manufacturing equipment can enter the first connecting pipe 101, the heat can be circulated when cooling through the cooling assembly 32, the time of heat passing through the cooling assembly 32 is prolonged, the cooling effect of the cooling assembly 32 during use is improved, and the dust carried by the heat can be filtered through the filtering assembly 33 when the heat enters.
[0021] The cooling assembly 32 includes an air suction fan 321 fixedly installed in the second connecting pipe 102, two cooling plates 322 are fixedly installed in the cooling pipe 31, the two cooling plates 322 are obliquely arranged in the cooling pipe 31, and a plurality of flow-through holes 323 are formed on the surfaces of the two cooling plates 322, the plurality of flow-through holes 323 on the surfaces of the two cooling plates 322 are staggered and arranged on the surfaces of the corresponding cooling plates 322, when the heat passes through, the two obliquely arranged cooling plates 322 can guide the heat, the time of heat passing through the cooling pipe 31 is prolonged, and the contact time of the heat with the cooling plates 322 is increased, and the flow path of the heat can be further prolonged through the staggered flow-through holes 323, so that the cooling effect of the heat is better.
[0022] The surface of the cooling plate 322 is arranged in a wavy shape, a communication pipe 326 is fixedly installed between the two cooling plates 322, and the two cooling plates 322 are connected with the cooling box 2. The wavy shape of the surface of the two cooling plates 322 can further increase the contact area of heat and the surface of the cooling plate 322, thereby improving the heat exchange efficiency.
[0023] The pump body 327 is fixedly installed in the inside of the cooling box 2, the two cooling plates 322 are respectively fixedly connected with the liquid inlet pipe 324 and the return pipe 325, the other end of the liquid inlet pipe 324 extends to the inside of the cooling box 2, the return pipe 325 is connected with the pump body 327, the cooling box 2 is provided with cooling liquid, and when the two cooling plates 322 are used, the liquid inlet pipe 324, the return pipe 325 and the pump body 327 are used in cooperation, so that the cooling liquid continuously passes through the two cooling plates 322, and the cooling effect of the continuous use of the two cooling plates 322 can be effectively improved.
[0024] The filter assembly 33 comprises a mounting plate 331 slidably installed on one side of the first connecting pipe 101, one side of the mounting plate 331 is fixedly installed with a filter plate 333, dust carried by hot air can be filtered through the filter plate 333, and after a certain period of time, the filter plate 333 can be conveniently cleaned by sliding the mounting plate 331 out of the inside of the first connecting pipe 101.
[0025] The mounting plate 331 extends out of the first connecting pipe 101 and is fixedly connected with a rubber ring 332, two pull grooves 334 are formed on one side of the mounting plate 331 outside the first connecting pipe 101, the mounting plate 331 can be clamped and fastened during installation through the rubber ring 332, the stability of the mounting plate 331 during use is increased, the contact area during the removal of the mounting plate 331 can be increased through the pull grooves 334, and the mounting plate 331 is conveniently pulled out.
[0026] Working principle: when heat passes, the heat can be guided by two oppositely arranged cooling plates 322, the cooling time through the cooling pipe 31 is prolonged, and the contact time of heat and cooling plate 322 is increased, and the flow path of heat is further prolonged through the staggered flow holes 323, so that the heat cooling effect is better, the heat and the contact area of the cooling plate 322 can be further increased through the wave shape of the surface of the two cooling plates 322, so as to improve the heat exchange efficiency, the cooling tank 2 is provided with cooling liquid, when the two cooling plates 322 are used, the cooling liquid can pass through the inlet pipe 324, the return pipe 325 and the pump body 327 for cooperation, so that the cooling liquid can pass through the two cooling plates 322 continuously, the cooling effect of the two cooling plates 322 can be effectively improved, the dust carried by the hot air can be filtered through the filter plate 333, and after a certain time of filtering, the filter plate 333 can be conveniently cleaned by sliding the mounting plate 331 out of the first connecting pipe 101, so that the filter plate 333 can be conveniently cleaned, and the mounting plate 331 can be clamped by the rubber ring 332 during installation, so that the stability of the mounting plate 331 during use is increased, and the contact area of the mounting plate 331 during removal can be increased by the pull slot 334, so that the mounting plate 331 can be conveniently pulled out.
[0027] The basic principle, main features and advantages of the present application are shown and described above. It should be understood by those skilled in the art that the present application is not limited by the above embodiments, and the above embodiments and descriptions in the specification are only the principles of the present application. Without departing from the spirit and scope of the present application, various changes and improvements can be made to the present application, and these changes and improvements all fall within the scope of the claimed present application. The scope of protection required by the present application is defined by the appended claims and their equivalents.
Claims
1. A heat dissipating device for manufacturing a cast piece of a non-ferrous alloy material, comprising a treatment pot (1), characterized in that, One side of the processing tank (1) is fixedly connected with a second connecting pipe (102), one side of the second connecting pipe (102) is provided with a first connecting pipe (101), and the bottom of the processing tank (1) is fixedly installed with a cooling box (2); The filtering cooling mechanism (3) for filtering and cooling hot air is arranged on one side of the second connecting pipe (102); The filtering cooling mechanism (3) includes a cooling pipe (31) fixedly installed between the first connecting pipe (101) and the second connecting pipe (102), one side of the cooling pipe (31) is provided with a cooling assembly (32), and one side of the first connecting pipe (101) is provided with a filtering assembly (33).
2. The heat sink for manufacturing a cast member of a non-ferrous alloy material according to claim 1, characterized in that, The cooling assembly (32) includes a suction fan (321) fixedly installed in the second connecting pipe (102), two cooling plates (322) are fixedly installed in the cooling pipe (31), both of the two cooling plates (322) are arranged obliquely in the cooling pipe (31), and a plurality of flow holes (323) are formed in the surfaces of the two cooling plates (322), and the plurality of flow holes (323) on the surfaces of the two cooling plates (322) are staggered and arranged on the surfaces of the corresponding cooling plates (322).
3. The heat sink according to claim 2, wherein The surface of the cooling plate (322) is arranged in a wave shape, a communication pipe (326) is fixedly installed between the two cooling plates (322), and the two cooling plates (322) are connected with the cooling box (2).
4. The heat sink according to claim 2, wherein A pump body (327) is fixedly installed in the cooling box (2), two liquid inlet pipes (324) and two backflow pipes (325) are fixedly connected to the two cooling plates (322) respectively, the other end of the liquid inlet pipe (324) extends into the cooling box (2), and the backflow pipe (325) is connected with the pump body (327).
5. The heat sink according to claim 1, wherein The filtering assembly (33) includes an installation plate (331) slidably installed on one side of the first connecting pipe (101), and a filtering plate (333) is fixedly installed on one side of the installation plate (331).
6. The heat sink according to claim 5, wherein One side of the installation plate (331) extends out of the first connecting pipe (101) and is fixedly connected with a rubber ring (332), and two pull grooves (334) are formed in the side of the installation plate (331) outside the first connecting pipe (101).