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A study of die design of semi-solid die casting according to gate shape and solid fraction

机译:基于浇口形状和固形比的半固态压铸模具设计研究

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In this paper, the effects of gate shape and solid fraction on filling behavior during semi-solid processing of A356 alloys have been demonstrated by experimental and computer simulation. Effects of solid fractions and gate shapes on material properties have been investigated through experiment and computer simulation. Although the cross-section areas of the gates were identical, the filling behavior of the semi-solid material differed due to differences between the widths and heights of the gates. Furthermore, when the cross-section area of the gate is held constant, the increase in height plays a key role in improving mechanical properties. Because the pressure applied by the plunger transfers easily to the material during injection when the cross-section area of the cavity is large, the mechanical properties improved. Therefore, the optimization of die design and the experimental conditions that enhance material properties are proposed in this paper.
机译:本文通过实验和计算机仿真证明了浇口形状和固相分数对A356合金半固态加工过程中填充行为的影响。通过实验和计算机仿真研究了固形分率和浇口形状对材料性能的影响。尽管浇口的横截面积相同,但是由于浇口的宽度和高度之间的差异,半固态材料的填充行为有所不同。此外,当浇口的截面积保持恒定时,高度的增加在改善机械性能中起关键作用。当腔的横截面积较大时,由于在注射过程中由柱塞施加的压力容易传递给材料,因此机械性能得到改善。因此,本文提出了优化模具设计和提高材料性能的实验条件。

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