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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Influence of gas flowrate on filling ability and internal quality of A356 aluminum alloy castings fabricated using the expendable pattern shell casting with vacuum and low pressure
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Influence of gas flowrate on filling ability and internal quality of A356 aluminum alloy castings fabricated using the expendable pattern shell casting with vacuum and low pressure

机译:瓦斯流量对真空低压低压型壳铸造A356铝合金铸件填充性能和内部质量的影响

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In this study, a new casing process named expendable pattern shell casting process with vacuum and low pressure (EPSC-VL) was introduced to produce complicated and thin-walled aluminum alloy castings. The gas flowrate is one of the most important process parameters for manufacturing castings during the EPSC-VL process. In the present work, the influence of gas flowrate on the filling ability and internal quality of A356 aluminum alloy castings fabricated by the EPSC-VL process were investigated. Moreover, the filling ability, internal quality, as well as mechanical properties of A356 aluminum alloy castings obtained by EPSC-VL and lost foam casting (LFC) processes were also compared. The results obtained suggested that the filling length increased with the increase of gas flowrate, and the filling length of the thick section was larger than that of the thin section under the same gas flowrate when the gas flowrate was less than 19 m~3/h. Furthermore, the porosity of castings decreased with increasing gas flowrate, and the microstructure of castings became denser, and the internal quality of castings was obviously improved. The comparison experiments showed that the EPSC-VL process had superior filling ability, internal quality, and mechanical properties compared with the LFC process, and the surface quality of castings obtained by EPSC-VL process was also better than that of the LFC process. The casting practice of complicated and thin-walled A356 aluminum alloy intake manifold part also suggested that the EPSC-VL process had an obvious advantage for the fabrication of complicated and thin-walled aluminum alloy castings compared with the LFC process.
机译:在这项研究中,引入了一种新的壳体工艺,称为真空低压低压模壳铸造工艺(EPSC-VL),以生产复杂的薄壁铝合金铸件。气体流量是在EPSC-VL工艺过程中制造铸件的最重要工艺参数之一。在本工作中,研究了气体流量对通过EPSC-VL工艺制造的A356铝合金铸件的填充能力和内部质量的影响。此外,还比较了通过EPSC-VL和失泡铸造(LFC)工艺获得的A356铝合金铸件的填充能力,内部质量以及机械性能。结果表明,当气体流量小于19 m〜3 / h时,在相同气体流量下,填充长度随气体流量的增加而增加,厚段的填充长度大于薄段的填充长度。 。此外,铸件的孔隙率随气体流量的增加而降低,铸件的组织更致密,铸件的内部质量明显提高。对比实验表明,EPSC-VL工艺比LFC工艺具有更好的填充能力,内部质量和力学性能,EPSC-VL工艺获得的铸件表面质量也优于LFC工艺。复杂而薄壁的A356铝合金进气歧管零件的铸造实践也表明,与LFC方法相比,EPSC-VL工艺对于制造复杂而薄壁的铝合金铸件具有明显的优势。

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