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Temperature and stress fields induced during laser cladding

机译:激光熔覆过程中产生的温度和应力场

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For the laser cladding process the temperature and strain-stress fields were numerically calculated for the case of stellite SF6 coating on the X10Cr13 chromium steel. The effect of the base preheating on microcracking susceptibility of the coating was considered. A decrease of the strain stress generated in the coating from 1800 MPa for the non-preheated base (20℃) to the value below the limit of the SF6 tensile strength of 900 MPa for the case with preheating (500℃) was observed. For comparison with experiment the coatings were prepared by laser cladding with and without preheating of the base. Cracks were observed in photographs of the sample for the non-preheated case. Preheating at temperatures above 500℃ resulted in production of crack-free coatings, in agreement with the calculations.
机译:对于激光熔覆工艺,对X10Cr13铬钢上的SF6硬质合金涂层的温度和应变应力场进行了数值计算。考虑了基础预热对涂层的微裂纹敏感性的影响。观察到涂层中产生的应变应力从未预热的基材(20℃)的1800 MPa降低到预热(500℃)的情况下SF6拉伸强度的极限值900 MPa以下。为了与实验比较,在有和没有预热基底的情况下通过激光熔覆来制备涂层。对于未预热的情况,在样品的照片中观察到裂纹。与计算结果一致,在500℃以上的温度下进行预热可产生无裂纹的涂层。

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