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Thermokinetic Modeling of Phase Transformation in the Laser Powder Deposition Process

机译:激光粉末沉积过程中相变的热动力学模型

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摘要

A finite element model coupled with a thermokinetic model is developed to predict the phase transformation of the laser deposition of AISI 4140 on a substrate with the same material. Four different deposition patterns, long-bead, short-bead, spiral-in, and spiral-out, are used to cover a similar area. Using a finite element model, the temperature history of the laser powder deposition (LPD) process is determined. The martensite transformation as well as martensite tempering is considered to calculate the final fraction of martensite, ferrite, cementite, epsilon-carbide, and retained austenite. Comparing the surface hardness topography of different patterns reveals that path planning is a critical parameter in laser surface modification. The predicted results are in a close agreement with the experimental results.
机译:开发了与热动力学模型耦合的有限元模型,以预测AISI 4140在具有相同材料的基板上进行激光沉积的相变。长珠,短珠,旋入和旋出四种不同的沉积模式用于覆盖相似的区域。使用有限元模型,确定激光粉末沉积(LPD)工艺的温度历史。马氏体相变和马氏体回火被认为可计算出马氏体,铁素体,渗碳体,ε-碳化物和残余奥氏体的最终分数。比较不同图案的表面硬度形貌表明,路径规划是激光表面改性的关键参数。预测结果与实验结果非常吻合。

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