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Study on the Measurement of Stress in the Surface of Selective Laser Melting Forming Parts Based on the Critical Refraction Longitudinal Wave

机译:基于临界折射纵波选择性激光熔化成形部件表面应力测量的研究

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Measurement and control of stress in the metal forming layer is the basic problem of selective laser melting (SLM) forming parts. The critical refraction longitudinal (LCR) wave method to test stress in metallic materials has been extensively studied. However, when testing of stress in selective laser melting (SLM) forming parts using this method, some deep-seated regularities of this technology are still not clear. In order to reveal the mechanism of the LCR wave method to measure stress in SLM forming parts, specimens made of 316 L stainless steel were manufactured using meander, stripe, and chessboard scanning strategies. Static load tensile test were applied to SLM forming specimens, with the purpose to demonstrate the scanning strategy has important effect on the LCR wave method to test stress in SLM forming parts. The regularity of the LCR wave velocity on stress is obtained in this study. The anisotropic microstructure of SLM forming parts has an unneglectable effect on the LCR wave stress test. The essential principle of anisotropic microstructure effecting the LCR wave velocity in SLM forming parts were revealed in the experiments. The results of the experiment provide a basis for non-destructive and reliable test of stress in SLM forming parts and other inhomogeneous materials.
机译:金属成形层中应力的测量和控制是选择性激光熔化(SLM)形成部件的基本问题。临界折射纵向(LCR)波法在金属材料中进行应力的研究已经过度研究。然而,当使用这种方法测试选择性激光熔化(SLM)形成零件的应力测试时,这种技术的一些深井规则仍然尚不清楚。为了揭示LCR波法测量SLM成形部件中应力的机理,使用曲线,条纹和棋盘扫描策略制造由316L不锈钢制造的样品。静载荷拉伸试验施加到SLM成型试样上,目的是证明扫描策略对LCR波法对SLM成形部件中的应力产生了重要影响。本研究获得了LCR波速度对应力的规律性。 SLM形成部件的各向异性微观结构对LCR波应力测试具有不可输入的影响。实验中揭示了影响SLM成形部件中LCR波速度的各向异性微观结构的基本原理。实验结果为SLM成形零件和其他不均匀材料中的应力进行了非破坏性和可靠性测试的基础。

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