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Mechanism and application of a newly developed pressure casting process: horizontal squeeze casting

机译:新型压铸工艺的机理和应用:水平挤压铸造

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Compared to traditional high-pressure die casting (HPDC), horizontal squeeze casting (HSC) is a more promising way to fabricate high-integrity castings, owing to a reduced number of gas and shrinkage porosities produced in the casting. In this paper, the differences between HSC and HPDC are assessed, through which it is shown that the cavity filling velocity and the size of the gating system to be the most notable differences. Equipment development and related applications are also reviewed. Furthermore, numerical simulation is used to analyze the three fundamental characteristics of HSC: slow cavity filling, squeeze feeding and slow sleeve filling. From this, a selection principle is given based on the three related critical casting parameters: cavity filling velocity, gate size and sleeve filling velocity. Finally, two specific applications of HSC are introduced, and the future direction of HSC development is discussed.
机译:与传统的高压压铸(HPDC)相比,卧式挤压铸造(HSC)是制造高完整性铸件的一种更有前途的方法,因为减少了铸件中产生的气体和缩孔的数量。在本文中,评估了HSC和HPDC之间的差异,结果表明,腔填充速度和门控系统尺寸是最显着的差异。设备开发和相关应用程序也进行了审查。此外,使用数值模拟来分析HSC的三个基本特征:慢速腔填充,挤压进料和慢速套筒填充。据此,基于三个相关的关键铸造参数给出了选择原则:型腔填充速度,浇口尺寸和套筒填充速度。最后,介绍了HSC的两个具体应用,并讨论了HSC的未来发展方向。

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