Inverse Heat Flux Problem in Quenching

M. K. Alam, Rex J. Kuriger, R. Zhong
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Abstract

The quenching process is an important heat treatment method used to improve material properties. However, the heat transfer during quenching is particularly difficult to analyze and predict. To collect temperature data, quench probes have been used in controlled quenching experiments. The process of determination of the heat flux at the surface from the measured temperature data is the Inverse Heat Conduction Problem (IHCP), which is extremely sensitive to measurement errors. This paper reports on an experimental and theoretical study of quenching which is carried out to determine the surface heat flux history during a quenching process by an IHCP algorithm. The inverse heat conduction algorithm is applied to experimental data from a quenching experiment. The surface heat flux is then calculated, and the theoretical curve is compared with experimental results.
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淬火中的逆热流问题
淬火工艺是改善材料性能的一种重要热处理方法。然而,淬火过程中的传热是特别难以分析和预测的。为了收集温度数据,淬火探针被用于控制淬火实验。利用实测温度数据确定地表热流密度的过程是一个对测量误差极为敏感的反热传导问题。本文报道了用IHCP算法确定淬火过程中表面热流通量历史的实验和理论研究。将逆热传导算法应用于淬火实验数据。计算了表面热流密度,并将理论曲线与实验结果进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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