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Effect of Pre-Stress on Laser-Induced Thermoplastic Deformation of Inconel 718 Beams

机译:预胁迫对Inconel 718梁激光诱导的热塑性变形的影响

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摘要

Laser thermal forming is an application of laser heating without any intentional use of external forces. Force-assisted laser bending and laser-assisted bending are hybrid techniques, which combine the use of external forces and local heating to increase the effectiveness of forming. A quantitative description of bending deformation induced by concurrent laser heating and mechanical loading is proposed in this study. Mechanical loading is expressed by the bending moment while the curvature is used to describe the resulting deformation. The contribution of a relatively less known mechanism of laser thermal bending in the hybrid process is identified. The mechanism is able to produce the so-called convex deformation, i.e., bending away from the incident laser beam. Experimental and numerical analysis is performed with thin-walled beams made of Inconel 718 nickel-based superalloy in the factory-annealed state. The Johnson–Cook constitutive material model is used in numerical simulations validated by experimental results.
机译:激光热成型是激光加热的应用,无需任何有意使用外力。力辅助激光弯曲和激光辅助弯曲是混合技术,其结合了外力和局部加热来增加成型的有效性。本研究提出了通过同时激光加热和机械加载诱导的弯曲变形的定量描述。机械加载由弯矩表示,而曲率用于描述所得到的变形。鉴定了混合过程中相对较少的激光弯曲机制的贡献。该机构能够产生所谓的凸变形,即弯曲离开入射激光束。在工厂退火状态下由Inconel 718基超合金制成的薄壁梁进行实验和数值分析。 Johnson-Cook组成材料模型用于通过实验结果验证的数值模拟。

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