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Simulation of the Evolution of Thermal Dynamics during Selective Laser Melting and Experimental Verification Using Online Monitoring

机译:使用在线监测模拟选择性激光熔化过程中热动力学的演变和实验验证

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摘要

The process parameters of selective laser melting (SLM) significantly influence molten pool formation. A comprehensive understanding and analysis, from a macroscopic viewpoint, of the mechanisms underlying these technological parameters and how they affect the evolution of molten pools are presently lacking. In this study, we established a dynamic finite element simulation method for the process of molten pool formation by SLM using a dynamic moving heat source. The molten pool was generated, and the dynamic growth process of the molten pool belt and the evolution process of the thermal field of the SLM molten pool were simulated. Then, a deposition experiment that implemented a new measurement method for online monitoring involving laser supplementary light was conducted using the same process parameters as the simulation, in which high-speed images of the molten pool were acquired, including images of the pool surface and cross-section images of the deposited samples. The obtained experimental results show a good agreement with the simulation results, demonstrating the effectiveness of the proposed algorithm.
机译:选择性激光熔融(SLM)的过程参数显着影响熔池形成。从宏观观点来看,这些技术参数的机制以及它们如何缺乏宏观观点的全面的理解和分析是如何缺乏影响熔池的演变。在这项研究中,我们建立了使用动态移动热源通过SLM进行熔融池形成过程的动态有限元模拟方法。产生熔池,并模拟熔池带的动态生长过程和SLM熔池的热场的进化过程。然后,使用与模拟相同的工艺参数进行实施涉及涉及激光补充光的新测量方法的沉积实验,其中获取熔池的高速图像,包括池表面和交叉的图像 - 沉积的样品的分接图像。所获得的实验结果表明,与模拟结果良好,展示了所提出的算法的有效性。

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