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Microstructure, Mechanical Properties, and Residual Stress Distribution of AISI 316L Stainless Steel Part Fabricated by Laser Metal Deposition

机译:激光金属沉积制造的AISI 316L不锈钢部件的微观结构,力学性能和残余应力分布

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In this paper, AISI 316L stainless steel part is obtained by laser metal deposition additive manufacturing method. The microstructure of the part was observed and analyzed by an optical microscope. The tensile mechanical properties and residual stress distribution of the part were tested by tensile test and the contour method. The results show that the bulk structure is mainly columnar crystal and equiaxed crystal, and the latter layer of laser metal deposition will form a remelted zone and heat-affected zone in the former deposition zone. Tensile test results show that the tensile strength of tensile specimens parallel to laser scanning direction and perpendicular to laser scanning direction is basically the same, but the elongation of the specimens perpendicular to the laser scanning direction is relatively better. The main reason is the different distribution characteristics of columnar crystals and equiaxed crystals in the two directions. Relatively large deformation occurs on the cut surface of the specimen after low-speed wire cut. The residual stress test results indicate that tensile stress is formed in the upper part and it reaches 315?MPa at the top surface. And compressive stress is formed at the part/substrate interface and the substrate.
机译:本文通过激光金属沉积添加剂制造方法获得AISI 316L不锈钢部分。通过光学显微镜观察和分析部分的微观结构。通过拉伸试验和轮廓法测试部件的拉伸力学性能和残余应力分布。结果表明,散装结构主要是柱状晶体和等式晶体,后者的激光金属沉积层将形成前沉积区中的重熔区和热影响区域。拉伸试验结果表明,平行于激光扫描方向和激光扫描方向的拉伸试样的拉伸强度基本相同,但垂直于激光扫描方向的样品的伸长率相对较好。主要原因是两个方向上柱状晶体和等式晶体的不同分布特性。在低速线切割后,在样品的切割表面上发生相对较大的变形。残余应力测试结果表明拉伸应力在上部形成,并且在顶面上达到315℃。在部/衬底界面和基板处形成压缩应力。

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