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Numerical Simulation Analysis of Aluminium Alloy Wheels Casting Defects and Casting Process Optimization

机译:铝合金轮毂铸造缺陷的数值模拟分析及铸造工艺优化

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In the low pressure casting process of A356 aluminum alloy wheel hub, casting defects including shrinkage cavity, shrinkage porosity, impurity and pore usually occur inside the casting. These defects affect the mechanical properties of the casting. To solve this problem, we conducted a study based on a cooperation project with a well-known domestic automobile wheel manufacturer. In the present study, uniaxial tensile test of aluminum alloy casting containing defects was simulated and analysed, and the effect of types and number of defects on mechanical properties was studied by finite element analysis software. Statistical analysis of the data was provided by the manufacturer. It has been found that the degassing technology is effective by the quantitative analysis method. Based on the analyses of experimental data and the numerical simulation it is deduced that the tensile strength of casting increases with the increase of the defects due to the presence of impurity. This was confirmed in this research project, it has been observed that the defect rate of the casting sample is reduced from 5%-6% to less than 1%.
机译:在A356铝合金轮毂的低压铸造过程中,铸件内部通常会出现铸件缺陷,包括缩孔,缩孔,杂质和气孔。这些缺陷影响铸件的机械性能。为了解决这个问题,我们与一家国内知名的汽车轮毂制造商进行了一项合作项目研究。本研究模拟和分析了含缺陷铝合金铸件的单轴拉伸试验,并通过有限元分析软件研究了缺陷种类和数量对力学性能的影响。数据的统计分析由制造商提供。已经发现,通过定量分析方法,脱气技术是有效的。通过对实验数据的分析和数值模拟,推论出由于杂质的存在,铸件的拉伸强度会随着缺陷的增加而增加。这在该研究项目中得到了证实,并且已经观察到铸件样品的缺陷率从5%-6%降低到了小于1%。

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