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首页> 外文期刊>Journal of Materials Processing Technology >Non-dimensional modeling of the effects of weld parameters on peak temperature and cooling rate in friction stir welding
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Non-dimensional modeling of the effects of weld parameters on peak temperature and cooling rate in friction stir welding

机译:焊接参数对摩擦搅拌焊接峰值温度和冷却速率影响的非尺寸建模

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摘要

Experimental data from friction stir welded Al 7075 and HSLA-65 were used to create dimensionless, empirical models relating critical weld parameters to the peak temperature rise and cooling rate of the weld heat-affected zone. Five different backing plate materials and a wide range of travel speeds and weld powers were used in the experimental design to ensure the models are relevant to a broad range of welding parameters. The resulting models have R-squared values of 0.997 and 0.995 for the dimensionless peak temperature rise and cooling rate correlations, respectively. Demonstrations of the models' practical applications are provided. Herein is shown how the models can identify welding parameter (i.e. travel speed or power) levels needed to produce a desired weld peak temperature rise or cooling rate. Also demonstrated is how the models can be used to explore the relative effects of travel speed and backing plate thermal diffusivity on weld peak temperature rise and cooling rate.
机译:来自摩擦搅拌焊接的Al 7075和HSLA-65的实验数据用于产生无量纲,经验模型与临界焊接参数相关的无量度的焊接参数与焊接热影响区域的峰值温升和冷却速率相关。 在实验设计中使用了五种不同的背板材料和各种旅行速度和焊接功率,以确保模型与广泛的焊接参数相关。 对于无量纲峰值温度升高和冷却速率相关,所得模型具有0.997和0.995的R形值。 提供了模型的实际应用的示范。 本文示出了模型如何识别产生所需焊接峰值温度升高或冷却速率所需的焊接参数(即行驶速度或功率)水平。 还证明了模型如何用于探索行驶速度和背板热扩散性对焊接峰值温度升高和冷却速率的相对效果。

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