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首页> 外文期刊>Journal of Thermal Spray Technology >A Stochastically Generated Geometrical Finite Element Model for Predicting the Residual Stresses of Thermally Sprayed Coatings Under Different Process Parameters
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A Stochastically Generated Geometrical Finite Element Model for Predicting the Residual Stresses of Thermally Sprayed Coatings Under Different Process Parameters

机译:用于预测不同工艺参数下热喷涂涂层残余应力的随机产生的几何有限元模型

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摘要

In this work, a 3D stochastic model coupled with a finite element (FE) code is used to investigate the development of residual stresses in thermally sprayed coatings. The residual stresses of a thermally sprayed yttria-stabilized zirconia (YSZ) coating applied to stainless steel substrates are used for this work. The formation of the coating layers was simulated with a 3D stochastic model, SimCoat. Three YSZ coating models with a similar average thickness, but different layers (one-, two-, and three-layer coatings) were obtained by changing three process parameters: the material feed rate, the gun velocity, and the total number of passes. Two 2D slices of each 3D model were taken and converted into FE models using an in-house Python code. An FE simulation was then used to study the combined effect of these process parameters on the development of residual stresses. The variation of in-plane stresses through the thickness for each model was obtained, and a comparison between the developed stresses was conducted. The developed methodology was effective for understanding the effect of the coating process parameters on the development of residual stresses and can be used to optimize the coating process parameters to obtain the desired residual stresses.
机译:在这项工作中,与有限元(FE)代码耦合的3D随机模型用于研究热喷涂涂层中残余应力的开发。施加到不锈钢基板的热喷涂的氧化钇稳定的氧化锆(YSZ)涂层的残余应力用于该工作。用3D随机模型模拟涂层的形成,SIMCOAT模拟。通过改变三个工艺参数:材料进料速率,枪速度和通过的总数来获得三个具有相似平均厚度的YSZ涂层模型,但是通过平均厚度,但不同的层(单,两个和三层涂层)获得了不同的层次,枪速度和总数。使用内部Python代码拍摄并将每个3D模型的两个2D切片进行转换为FE模型。然后使用FE模拟来研究这些过程参数对残余应力的发展的综合作用。获得了通过每个模型的厚度的面内应力的变化,并进行了发出的应力之间的比较。开发的方法是有效地理解涂层工艺参数对残留应力的发展的影响,并且可用于优化涂覆工艺参数以获得所需的残余应力。

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