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首页> 外文期刊>Journal of Materials Processing Technology >Effect of elastic prestress on the laser peen forming of aluminum alloy 2024-T351: Experiments and eigenstrain-based modeling
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Effect of elastic prestress on the laser peen forming of aluminum alloy 2024-T351: Experiments and eigenstrain-based modeling

机译:弹性预应力对2024-T351铝合金激光喷丸成形的影响:基于实验和本征应变的模型

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摘要

Laser peen forming is a viable means for flexible shaping and adjusting of metal plate. The prestress is effective and useful to improve its formability. Experiments and numerical modeling are performed to investigate the effect of elastic prestress on the deformed shape generated by laser peen forming of aluminum alloy of 2024-T351. The experiments with prestressing laser peen forming are implemented in one direction of square samples by applying simple bending. A newly developed eigenstrain-based modeling procedure is introduced to simulate the prestress effects on the bending deformation and residual stresses. The boundary conditions of displacement are proposed to define in the explicit model to include the prestress effect. The numerical model is validated to be an effective and efficient tool for the predictions of deformed shape and residual stresses. Both experiments and model predictions provide that the radius of curvature in the direction of prebending can be greatly decreased by the increase of prebending curvature because much more in-plane plastic strains are generated during laser shocking. The scanning strategy is one important factor to generate the difference of bending in two directions besides prebending and spatial decay of shock pressure. The compressive residual stresses are observed to generate both at the top and at the bottom surfaces of samples. The increase of prebending curvature can increase the compressive residual stresses values at the top surface. And laser peen forming both with and without prestress is observed to have little effect on the surface roughness. (C) 2015 Elsevier B.V. All rights reserved.
机译:激光喷头成形是用于灵活成形和调节金属板的可行方法。预应力对于改善其可成形性是有效和有用的。进行了实验和数值模拟,以研究弹性预应力对2024-T351铝合金激光喷丸成形所产生的变形形状的影响。通过施加简单的弯曲,在正方形样品的一个方向上执行了预应力激光喷头成形的实验。引入了一种新开发的基于本征应变的建模程序,以模拟预应力对弯曲变形和残余应力的影响。建议在显式模型中定义位移的边界条件以包括预应力效应。数值模型被证实是预测变形形状和残余应力的有效工具。实验和模型预测都提供了通过增加预弯曲曲率可以大大减小预弯曲方向上的曲率半径的原因,因为在激光冲击过程中会产生更多的面内塑性应变。扫描策略是产生两个方向弯曲差异的重要因素,除了冲击压力的预弯曲和空间衰减之外。观察到压缩残余应力在样品的顶部和底部都产生。预弯曲曲率的增加可以增加顶表面处的压缩残余应力值。观察到在有或没有预应力的情况下进行激光喷丸成形对表面粗糙度的影响很小。 (C)2015 Elsevier B.V.保留所有权利。

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