等轴晶
微观结构
材料科学
极限抗拉强度
选择性激光熔化
合金
复合材料
硬化(计算)
延伸率
冶金
粒度
激光器
图层(电子)
光学
物理
作者
Xiaofeng Li,Denghao Yi,Xiaoyu Wu,Jinfang Zhang,Xiaohui Yang,Zixuan Zhao,Yinghao Feng,Jianhong Wang,Peikang Bai,Bin Liu,Yong Liu
标识
DOI:10.1016/j.jallcom.2021.160459
摘要
In this study, seven AlSi10Mg bulks with different construction angles (0°, 15°, 30°, 45°, 60°, 75°, and 90°) were fabricated by selective laser melting (SLM). The effects of different construction angles on the microstructure and mechanical properties of AlSi10Mg alloys were investigated. Increasing the construction angle changed the laser track segments from an ellipse to a semi-ellipse and then to fish-scale, specifically again from a semi-ellipse to an ellipse, due to the decrease of the laser radiation area. Meanwhile, the grains in the vertical planes changed from columnar grains to irregularly arranged grains, and then to equiaxed grains. The 45° sample exhibited the highest hardness of 154.44 HV0.1. The 60° sample had a good combination of strength and plasticity with a tensile strength of 463.54 MPa, yield strength of 283.37 MPa, and elongation of 9.25%. The observed mechanical property anisotropy of the current AlSi10Mg alloy was a result of the pores, equiaxed grain structure, ultra-fine equiaxed sub-grains, and working hardening. In addition, the difference in the sample microstructures was attributed to the construction angles and deposited layer area.
科研通智能强力驱动
Strongly Powered by AbleSci AI