High-performance double-air-outlet air cooler and forming technology for shell of air cooler
A molding process and cooling fan technology, applied in casting molding equipment, casting molds, cores, etc., can solve problems such as poor corrosion performance, high cost of use, easy wear and tear of cooling fans, etc., to improve flame retardancy and improve dispersion. Effects of Sex and Compatibility
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Embodiment 1
[0039] This embodiment provides a high-performance dual-outlet air cooler, and the outer casing of the cooler includes the following components in terms of mass percentage:
[0040] C: 0.05%, Mn: 0.5%, Ni: 1.2%, Cr: 2.4%, Nb: 0.4%, Si: 0.1%, N: 0.1%, Cu≤0.2%, s≤0.015%, p≤0.025%, Mo: 0.3%, Al: 2%, Ti: 0.3%, B: 0.02%, Al: 0.05%, v: 0.0018%, compound rare earth: 0.1%, the balance is Fe,
[0041]The composite rare earth includes the following components by weight percentage: cerium: 13%, praseodymium: 15%, holmium: 5%, gadolinium: 8%, yttrium: 8%, and the rest is lanthanum. The sum of the above composite rare earth components is 100%.
[0042] The casing molding process of the above-mentioned high-performance double-outlet air cooler specifically includes the following steps:
[0043] (1) Silica sand, bentonite, additives and water are used as molding materials to make molds;
[0044] When mixing the molding materials, silica sand: 89%, bentonite: 7.5%, additives: 0.5 and water...
Embodiment 2
[0055] This embodiment provides a high-performance dual-outlet air cooler, and the outer casing of the cooler includes the following components in terms of mass percentage:
[0056] C: 0.06%, Mn: 1%, Ni: 2.2%, Cr: 2.6%, Nb: 0.6%, Si: 0.2%, N: 0.12%, Cu≤0.2%, s≤0.015%, p≤0.025%, Mo: 0.5%, Al: 4%, Ti: 0.5%, B: 0.03%, Al: 0.06%, v: 0.0018-0.0022%, compound rare earth: 0.3%, the balance is Fe,
[0057] The composite rare earth includes the following components by weight percentage: cerium: 15%, praseodymium: 18%, holmium: 8%, gadolinium: 10%, yttrium: 10%, and the rest is lanthanum. The sum of the above composite rare earth components is 100%.
[0058] The casing molding process of the above-mentioned high-performance double-outlet air cooler specifically includes the following steps:
[0059] (1) Silica sand, bentonite, additives and water are used as molding materials to make molds;
[0060] Silica sand: 89%, bentonite: 7.5%, additive: 0.5 and water: 3.0% are selected as the ...
Embodiment 3
[0071] This embodiment provides a high-performance dual-outlet air cooler, and the outer casing of the cooler includes the following components in terms of mass percentage:
[0072] C: 0.055%, Mn: 0.8%, Ni: 1.9%, Cr: 2.5%, Nb: 0.5%, Si: 0.15%, N: 0.11%, Cu≤0.2%, s≤0.015%, p≤0.025%, Mo: 0.4%, Al: 3%, Ti: 0.4%, B: 0.025%, Al: 0.055%, v: 0.0019%, compound rare earth: 0.2%, the balance is Fe,
[0073] The composite rare earth includes the following components by weight percentage: cerium: 14%, praseodymium: 17%, holmium: 7%, gadolinium: 9%, yttrium: 9%, and the rest is lanthanum. The sum of the above composite rare earth components is 100%.
[0074] The casing molding process of the above-mentioned high-performance double-outlet air cooler specifically includes the following steps:
[0075] (1) Silica sand, bentonite, additives and water are used as molding materials to make molds;
[0076] Silica sand: 89%, bentonite: 7.5%, additives: 0.5 and water: 3.0% are selected as the mo...
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