沉积策略对激光熔化沉积12CrNi2合金钢疲劳行为的影响

W. Yi, Hui Chen, Yingzhou Wu, Yong Chen, Hongyu Li
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引用次数: 0

摘要

采用单向扫描(SDS)和交叉扫描(CDS)两种沉积策略,对12CrNi2合金钢零件进行了激光熔化沉积(LMD)制备。研究了LMD - 12CrNi2合金钢试样的显微组织和疲劳行为。两种沉积方式的典型组织均为铁素体,并可分为重熔区和非重熔区。未重熔区为典型柱状晶型,重熔区为均匀化区。与SDS沉积策略相比,CDS沉积策略的显微结构柱状晶粒更短,晶粒更细。SDS和CDS沉积策略的相对密度分别为98.1和97.3,说明SDS的孔隙率较低。SDS沉积策略的疲劳强度高于CDS沉积策略,分别为320 MPa和200 MPa。CDS沉积策略存在较多缺陷,加速了裂纹的萌生和扩展。CDS沉积策略层间间隔时间较长,会降低激光的穿透深度,影响前一层的重熔程度,最终导致叠接区出现未熔粉、气孔等缺陷。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of Deposition Strategy on Fatigue Behavior of Laser Melting Deposition 12CrNi2 Alloy Steel
In this paper, the 12CrNi2 alloy steel parts were fabricated by laser melting deposition (LMD) using two kinds of deposition strategies, which were single direction scanning(SDS) and cross direction scanning(CDS). The microstructure and fatigue behavior of LMD 12CrNi2 alloy steel samples were investigated. Thy typical microstructure of both deposition strategy were ferrite and can be divided into two zones: remelted zone and non-remelted zone. The non-remelted zone showed typical columnar crystal morphology while the structure of remelted zone was homogenized. Compared with SDS deposition strategy, the microstructure of CDS deposition strategy had shorter columnar grains and finer grains. The relative densities of SDS and CDS deposition strategies were 98.1 and 97.3, respectively, indicating that SDS had lower porosity. The fatigue strength of SDS deposition strategy was higher than that of CDS deposition strategy, which were 320 MPa and 200 MPa. There were more defects in CDS deposition strategy, which accelerated the initiation and propagation of cracks. CDS deposition strategy had longer interlayer interval time, which will reduce the penetration depth of laser, affect the degree of previous layer remelting, and eventually lead to unmelted powder, porosity and other defects in the lap zone.
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