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3-D Simulation Model for Gas-Assisted Laser Cutting

机译:气体辅助激光切割的3-D仿真模型

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To date the numerical simulation of gas-assisted laser cutting has successfully evaded rigorous treatment, mainly due to the complexity of the process, and the intrinsic highly dynamic behaviour of the melt pool and the presence of a shield gas jet. Contrary to the usual approach of adjusting simulation aims to fit the constraints of available hardware, the authors have utilised state-of-the-art parallel computing to tackle the problem in a comprehensive manner. This paper describes a full 3-D numerical model that includes an assist gas simulation for pressures up to and exceeding 18 bar, evaporation of the melt (using the kinetic theory approach), flow patterns in the melt/film pool and thermal stresses in the substrate. It also resolves the physical domain down to the micro-scale. Initial results are outlined and the current limits of and costs involved with using contemporary HPC platforms for enabling this software are identified.
机译:迄今为止,气体辅助激光切割的数值模拟成功地避免了严格的处理,这主要是由于该过程的复杂性,熔池固有的高动态特性以及存在保护气体射流的缘故。与通常的调整仿真的方法旨在适应可用硬件的限制相反,作者利用最先进的并行计算来全面解决该问题。本文介绍了一个完整的3-D数值模型,其中包括压力高达18 bar和以上的辅助气体模拟,熔体的蒸发(使用动力学理论方法),熔体/薄膜池中的流动模式以及熔池中的热应力。基质。它还可以将物理域解析到微尺度。概述了初步结果,并确定了使用现代HPC平台启用该软件的当前限制和成本。

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