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The Influence of Sheet Metal Anisotropy on Laser Forming Process (101)

机译:金属板各向异性对激光成型过程的影响(101)

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Cold rolled sheet metal often used in laser forming exhibits anisotropic properties, which are mostly caused by preferred orientations of grains developed during the severe plastic deformation. In present study, the textures of cold-rolled mild steel sheets are characterized and the influence of the plastic anisotropy on laser forming process is investigated. Deformation textures are measured in terms of pole figures and orientation distribution function (ODF) plots obtained through electron backscatter diffraction (EBSD). The anisotropy index (R-value) of the material with different rolling reductions is obtained by uniaxial tensile tests. Both are compared and agree with the texture development theory. Effects of the plastic anisotropy on bending deformation during the laser forming process are investigated experimentally and numerically. Various conditions such as sheet thickness reductions, scanning speed and laser power are considered and results are discussed. The simulation results are consistent with the experimental observations.
机译:通常用于激光成型的冷轧金属含有各向异性特性,主要是由在严重塑性变形期间产生的颗粒的优选取向引起的。在目前的研究中,研究了冷轧温和钢板的纹理,并研究了塑性各向异性对激光形成过程的影响。通过电子反向散射衍射(EBSD)获得的极值图和取向分布函数(ODF)图来测量变形纹理。通过单轴拉伸试验获得具有不同轧制的材料的各向异性指数(R值)。两者都比较并与纹理发展理论相提并论。实验和数值研究了塑性各向异性对激光成形过程弯曲变形的影响。考虑诸如纸张厚度,扫描速度和激光功率的各种条件并讨论结果。仿真结果与实验观察一致。

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