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A Numerical Study on Laser Forming of Titanium Plates

机译:钛板激光成形的数值研究

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摘要

Laser forming of titanium plates has been studied numerically using finite element computer codes. This paper includes the results for both 0.25" and 0.125" thick plates. The thermal code TOPAZ3D and the mechanical code LS-NIKE3D were used in this study. Together, these two codes provide both the temperature profiles inside the plate and the shape of the plate throughout the entire laser forming process. The titanium plate considered was 12"xl2", and the laser beam moved at 20 cm/min along a straight line across the middle of the plate. The intensity profile of the 2 cm diameter laser beam was based on the measured profile of a ~2.5kW Nd: YAG laser beam. TOPAZ3D code predicts that the peak surface temperature of the plate exceeds 1800 °R (1000 °K). After cooling down to near room temperature, the LS-NIKE3D code predicts that the plate is formed into a "v" shape symmetric with respect to the laser path. The laser formed angle, or the angle of the "v" shape, changes along the laser path. The 0.25" and 0.125" plates show different dependencies of the laser formed angle on peak surface temperature or laser power. The portion of the plate directly under the laser path also distorts differently depending on the plate thickness and peak surface temperature. Comparison between predicted laser formed angle and experimental data has been carried out for one particular condition with reasonable agreement. The effect of multiple laser passes is also discussed.
机译:钛板的激光成型已使用有限元计算机代码进行了数值研究。本文包括0.25“和0.125”厚板的结果。在这项研究中使用了热代码TOPAZ3D和机械代码LS-NIKE3D。这两个代码一起提供了整个激光成型过程中板内部的温度曲线和板的形状。所考虑的钛板为12“ xl2”,激光束以20 cm / min的速度沿直线穿过板的中间。直径为2 cm的激光束的强度分布是基于测得的〜2.5kW Nd:YAG激光束的分布。 TOPAZ3D代码预测板的峰值表面温度超过1800°R(1000°K)。冷却至接近室温后,LS-NIKE3D代码预测该板将形成为相对于激光路径对称的“ v”形。激光形成的角度或“ v”形的角度沿激光路径变化。 0.25“和0.125”平板显示出激光形成角度对峰值表面温度或激光功率的不同依赖性。板的直接位于激光路径下方的部分也会根据板的厚度和峰值表面温度而不同地变形。对于一种特定条件,已经在合理的同意下对预测的激光形成角和实验数据进行了比较。还讨论了多次激光通过的效果。

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