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Determining thermal conductivity, specific heat capacity and absorptivity during laser based materials processing

机译:基于激光的材料加工期间确定导热性,特定热容量和吸收性

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摘要

In this work, an inverse method is proposed to estimate the thermal conductivity, absorptivity and specific heat capacity for a laser irradiated sheet by measuring the data for transient-temperature distribution at two locations. The corresponding data is also obtained using a finite element method based direct model that takes the average thermal properties of the material as input. The inverse estimation of thermal conductivity, absorptivity and specific heat capacity is carried out by minimizing the difference between actual and direct model predicted data. For this purpose, a novel heuristic algorithm is developed. The efficacy and accuracy of the method is ascertained by carrying out simulation-experiments considering temperature-dependent properties in a finite element package. Later on, shop floor experiments were also conducted, which revealed that inversely obtained parameters are sufficiently accurate in predicting the temperature distribution at changed operating conditions. The effect of measurement errors on the inverse estimated results is also discussed. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在这项工作中,提出了一种反向方法,以通过测量两个位置处的瞬态温度分布的数据来估计激光照射片的导热性,吸收率和特定热容。使用基于有限元方法的直接模型也获得了相应的数据,该直接模型将材料的平均热特性作为输入。通过最小化实际和直接模型预测数据之间的差异来执行导热性,吸收率和特定热容量的逆估计。为此目的,开发了一种新的启发式算法。通过考虑有限元件中的温度依赖性的模拟实验来确定该方法的功效和准确性。稍后,还进行了车间实验,这表明,在预测改变的操作条件下的温度分布时,反向获得的参数足够准确。还讨论了测量误差对逆估计结果的影响。 (c)2019年elestvier有限公司保留所有权利。

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