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Analysis and Prediction of Edge Effects in Laser Bending

机译:激光弯曲边缘效应的分析与预测

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Laser form mg of sheet metal offers the advantages of requiring no hard tooling and thus reduced cost and increased flexibility'. It also enables forming of some materials and shapes that are not possible now. In single-axis laser bending of plates, the bending edge is found to be somewhat curved and the bending angle varies along the laser-scanning path. These phenomena are termed edge effects, which adversely affect the accuracy of the bending and result in undue residual stress. Numerical investigations are carried out to study the process transiency and the mechanism of the edge effects. Temperature dependency of material properties and strain-rate dependency of flow stress are considered in the numerical simulation to improve prediction accuracy. Numerical results are validated in experiments. Patterns of edge effects and resultant residual stress distributions are examined under a wide range of conditions. A more complete explanation for the mechanism of the edge effects is given.
机译:金属薄板的激光形式具有不需要硬工具的优势,因此降低了成本并提高了灵活性。它还可以形成一些目前无法实现的材料和形状。在板的单轴激光弯曲中,发现弯曲边缘有些弯曲,并且弯曲角度沿激光扫描路径变化。这些现象被称为边缘效应,会不利地影响弯曲的准确性并导致不适当的残余应力。进行了数值研究,以研究过程的半透明性和边缘效应的机理。在数值模拟中考虑了材料特性的温度依赖性和流动应力的应变率依赖性,以提高预测精度。数值结果在实验中得到验证。在宽范围的条件下检查边缘效应的模式和所产生的残余应力分布。给出了边缘效应机理的更完整的解释。

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