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Multi-Physics and Multi-Scale Meshless Simulation System for Direct-Chill Casting of Aluminium Alloys

机译:用于铝合金直接寒冷铸造的多物理和多尺度无纤维仿真系统

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This paper represents an overview of the elements of the user-friendly simulation system, developed for computational analysis and optimization of the quality and productivity of the electromagnetically direct-chill cast semi-products from aluminium alloys. The system also allows the computational estimation of the design changes of the casting equipment. To achieve this goal, the electromagnetic and the thermofluid process parameters are coupled to the evolution of Lorentz force, temperature, velocity, concentration, strain and stress fields as well as microstructure evolution. This forms a multi-physics and multi-scale problem of great complexity, which has not been demonstrated before. The macroscopic fluid mechanics, solid mechanics, and electromagnetic solution framework is based on local strong-form meshless formulation, involving the radial basis functions and monomials as trial functions, and local collocation or weighted least squares approximation. It is coupled to the micro-scale by incorporating the point automata solution concept. The entire macro-micro solution concept does not require meshing and space integration. The solution procedure can be easily and efficiently automatically adapted in node redistribution and/or refinement sense, which is of utmost importance when coping with fields exhibiting sharp gradients, which occur in the phase-change problems. The simulation system is coded from scratch in modern Fortran. The elements of the experimental validation of the system and the demonstration of its use for round billet casting in IMPOL Aluminium Industry are shown.
机译:本文代表了用于用户友好的仿真系统的元素的概述,用于从铝合金的电磁直接冷却的半产品的计算分析和优化的计算分析和优化。该系统还允许计算铸造设备的设计变化的计算估计。为了实现这一目标,电磁和热流体过程参数耦合到洛伦兹力,温度,速度,浓度,应变和应力场以及微观结构演化的演变。这形成了一种多物理和多种复杂性的多尺度问题,这尚未以前展示过。宏观流体力学,固体力学和电磁溶液框架基于局部强啮齿形式的配方,涉及径向基函数和单项作为试验功能,以及局部搭配或加权最小二乘近似。通过结合点自动机解决方案概念,它耦合到微尺度。整个宏观微型解决方案概念不需要啮合和空间集成。解决方案过程可以在节点重新分布和/或细化意义上容易且有效地自动地调整,这在应对呈现尖锐梯度的字段时至关重要,这在相变问题中发生。仿真系统从现代Fortran中的划痕中编码。显示了系统实验验证的元素及其用于偶尔铝业铸造的圆坯铸造的用途。

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