通过基于有限元分析的模拟对 A413 立式离心铸件进行缺陷预测和性能优化

IF 1.5 Q2 ENGINEERING, MULTIDISCIPLINARY
Kamar Mazloum, Ameen Al Njjar and Amit Sata
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引用次数: 0

摘要

这项研究得益于基于有限元分析的先进模拟,有限元分析拥有强大的数值算法,可以应对关键的工业挑战,包括预测和优化技术。主要目标是预测缩孔和夹气的位置和数量,并在考虑几何效应的同时,通过优化关键铸造工艺因素来减少缩孔和夹气。利用有限元分析软件 ProCAST,通过田口方法设计了虚拟实验,三个参数(长宽比、浇注温度和模具旋转速度)各分为五个等级。实验后,采用了综合数据分析,包括信噪比和响应面方法,以确定最佳条件。此外,还开发了一个复杂的回归模型,以阐明关键参数与缺陷方面之间的复杂关系。在 (50-75) rpm、(750-800) °C 和 (1.75-2) 长宽比的参数范围内,确定了减少收缩孔隙率的最佳条件。同样,减少空气夹带的最佳参数为 150 rpm、800 °C 和 (1) 长宽比。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Defect prediction and performance optimization of A413 vertical centrifugal castings through FEA-based simulation
This study benefits from advanced simulation based on finite element analysis, where finite element analysis possesses robust numerical algorithms to confront critical industrial challenges, including prediction and optimization techniques. The primary goal is to predict the location and quantity of shrinkage porosity and air entrainment, and to mitigate them by optimizing key casting process factors while considering the geometric effects. Virtual experiments designed through the Taguchi method, with three parameters (aspect ratio, pouring temperature, and mold rotation speed) at five levels each, were conducted using the finite element analysis software ProCAST. Post-experimentation, comprehensive data analyses, including signal-to-noise ratio and response surface methods, were employed to determine optimal conditions. Additionally, a sophisticated regression model was developed to clarify the complex relationship between key parameters and defect aspects. Optimal conditions to reduce shrinkage porosity were identified within parameter ranges of (50–75) rpm, (750–800) °C, and (1.75–2) aspect ratio. Similarly, optimal parameters to reduce air entrainment were identified as 150 rpm, 800 °C, and (1) aspect ratio.
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来源期刊
Engineering Research Express
Engineering Research Express Engineering-Engineering (all)
CiteScore
2.20
自引率
5.90%
发文量
192
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