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Study on dynamic characteristics of the temperature and stress field in induction and laser heating for the semi-infinite body

机译:半无限体感应加热和激光加热过程中温度和应力场的动态特性研究

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摘要

This study analyzed the dynamic characteristics of temperature and stress fields during induction and laser heating of a semi-infinite body. The semi in finite body was subjected to a distribution heat flux (induction heating) at a particular depth range and then to a surface heat flux (laser heating). Using the Green function method and the Laplace transform, the temperature and stress fields solutions were acquired for both heating methods. The analytical results of the temperature and stress fields are shown graphically in the time domain for a selected position. It was found that under the same input power conditions, the temperature field acquired is identical in both induction and laser heating in the range of more than one skin depth. The peak dynamic thermal stress from both heating methods increases rapidly along the depth, and converges to a fixed value. Meanwhile, the peak thermal shock stress is relatively small, and quickly decays at a certain position in a very short duration. Therefore, the thermal shock dynamic characteristics are negligible in the two highly variant transient heating methods-induction and laser.
机译:本研究分析了半无限大物体感应和激光加热过程中温度和应力场的动态特性。对半无限大的物体在特定深度范围内进行分布热通量(感应加热),然后再进行表面热通量(激光加热)。使用格林函数方法和拉普拉斯变换,获得了两种加热方法的温度和应力场解。温度和应力场的分析结果在所选位置的时域中以图形方式显示。发现在相同的输入功率条件下,感应温度和激光加热在超过一个集肤深度的范围内获得的温度场是相同的。两种加热方法产生的峰值动态热应力都沿着深度迅速增加,并收敛到固定值。同时,峰值热冲击应力相对较小,并且在很短的持续时间内在某个位置迅速衰减。因此,在两种高度变化的瞬态加热方法(感应和激光)中,热冲击动力学特性可以忽略不计。

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