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A new shell casting process based on expendable pattern with vacuum and low-pressure casting for aluminum and magnesium alloys

机译:铝和镁合金基于消耗型真空和低压铸造的新型壳体铸造工艺

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摘要

A new shell casting process, with the adoption of the foam pattern of lost foam casting (LFC) as prototype and the combination of the thin shell fabrication technology of investment casting and vacuum and low-pressure casting process, was proposed for manufacturing complicated and thin-walled aluminum and magnesium alloy precision castings. Loose-sand uniting vacuum was used in the new process to further reinforce the thin shell, and the new process proves to be a process with simple process, low cost, and high thin shell strength. Because the molten metal filling and solidification are completed under air pressure and vacuum level, the filling capability and feeding capacity of the molten metal are greatly improved, and the castings become denser. This paper mainly investigated the fabrication technology of thin shell based on foam pattern prototype, the removing foam and roasting shell process and vacuum and low-pressure casting process. The few-layer compound thin shell of silica sol-sodium silicate was adopted for the new process. Removing foam pattern was carried out at 250℃ for 30 min, and the shell was roasted at 800℃ for 1 h. Combined with the vacuum and low-pressure casting process, this new shell casting process has successfully produced thin wall and complex aluminum and magnesium alloy parts with high quality. In addition, comparisons in terms of filling ability, microstructure, mechanical properties, porosity, and surface roughness among this new shell casting, gravity casting, and LFC were also made to show the characterization of this new shell casting process.
机译:提出了一种新的壳体铸造工艺,以消失模铸造(LFC)的泡沫模式为原型,并结合熔模铸造薄壳制造技术和真空低压铸造工艺来制造复杂而薄的壳体。壁铝镁合金精密铸件。在新工艺中使用了松砂联合真空来进一步增强薄壳,并且新工艺被证明是一种工艺简单,成本低且薄壳强度高的工艺。由于熔融金属的填充和凝固是在气压和真空度下完成的,因此熔融金属的填充能力和供给能力大大提高,铸件变得更致密。本文主要研究了基于泡沫型样的薄壳制造技术,去泡沫和焙烧壳工艺以及真空低压铸造工艺。新工艺采用了二氧化硅溶胶-硅酸钠的多层复合薄壳。在250℃下进行30分钟的去除泡沫图案,并将壳在800℃下烘烤1小时。结合真空和低压铸造工艺,这种新的壳体铸造工艺已成功生产出高质量的薄壁和复杂的铝镁合金零件。此外,还对这种新型壳体铸造,重力铸造和LFC之间的填充能力,微观结构,机械性能,孔隙率和表面粗糙度进行了比较,以显示这种新型壳体铸造工艺的特性。

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