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Effect of heat transfer on residual stresses in thermal spray coatings

机译:热传递对热喷涂涂层残余应力的影响

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摘要

Herein, heat transfer from the coating to the substrate during the thermal spraying process is simplified as one-dimensional heat conduction and a formula to express the temperature distribution in the substrate is provided. To achieve this, the spray process was divided into two stages, namely deposition (coating sprayed onto the substrate) and post-deposition (cooling of coating and substrate to atmospheric temperature). The coating was achieved through a layer-by-layer deposition method. Residual stresses in the system (including both the coating and substrate) following deposition of each layer were calculated, as well as those induced by post-deposition. Finally, the proposed formulae were implemented in a real-case example to illustrate the effect of heat transfer with regards to torch velocity on residual stresses. The simulative results were shown to have a better agreement with experimental results at low rather than at high torch velocities. The residual stresses in the coating surface decreased with the increase in heat transfer time. When the heat transfer time exceeded a certain value, a sharp decline in residual stresses was observed.
机译:这里,在热喷涂过程中从涂层到基板的热传递被简化为一维导热,并且提供了表达基板中的温度分布的公式。为了实现这一点,将喷射过程分为两个阶段,即沉积(喷涂到基板上的涂层)和沉积后(涂层的冷却和底物到大气温度)。通过层逐层沉积方法实现涂层。计算沉积每层后系统(包括涂层和衬底)的残余应力,以及通过沉积后诱导的那些。最后,在实例实施例中实施了所提出的公式,以说明热传递关于割炬速度对残余应力的影响。显示模拟结果与低于高炬速度的实验结果具有更好的同意。随着传热时间的增加,涂层表面中的残余应力降低。当传热时间超过一定值时,观察到残余应力的急剧下降。

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