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RECENT DEVELOPMENTS OF THE MULTIPHYSICS DISCRETE ELEMENT METHOD FOR ADDITIVE MANUFACTURING MODELING AND SIMULATION

机译:多物理场离散元方法的增材制造建模与仿真研究进展

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Recent years have seen a sharp increase in the development and usage of Additive Manufacturing (AM) technologies for a broad range of scientific and industrial purposes. The drastic microstructural differences between materials produced via AM and conventional methods has motivated the development of computational tools that model and simulate AM processes in order to facilitate their control for the purpose of optimizing the desired outcomes. This paper discusses recent advances in the continuing development of the Multiphysics Discrete Element Method (MDEM) for the simulation of AM processes. This particle-based method elegantly encapsulates the relevant physics of powder-based AM processes. In particular, the enrichment of the underlying constitutive behaviors to include ther-moplasticity is discussed, as are methodologies for modeling the melting and re-solidification of the feedstock materials. Algorithmic improvements that increase computational performance are also discussed. The MDEM is demonstrated to enable the simulation of the additive manufacture of macro-scale components. Concluding remarks are given on the tasks required for the future development of the MDEM, and the topic of experimental validation is also discussed.
机译:近年来,用于广泛的科学和工业用途的增材制造(AM)技术的开发和使用急剧增加。通过增材制造和常规方法生产的材料之间的巨大的微观结构差异,促使开发了对建模和模拟增材制造过程进行建模和仿真的计算工具,以促进其控制以优化所需结果。本文讨论了用于模拟增材制造过程的多物理场离散元素方法(MDEM)的持续发展中的最新进展。这种基于粒子的方法很好地封装了基于粉末的增材制造工艺的相关物理原理。特别是,讨论了包括热可塑性在内的基本本构行为的富集,以及对原料材料的熔化和再凝固进行建模的方法学。还讨论了提高计算性能的算法改进。 MDEM被证明可以模拟大型零件的增材制造。在MDEM的未来开发所需的任务上给出了总结,并讨论了实验验证的主题。

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