Xiang Chongchen, Xiao Zhendong, Ding Hanlin, Wang Zijian
Shagang School of Iron and Steel, Soochow University, 8 Jixue Road, Suzhou 215137, China.
Materials (Basel). 2020 Dec 27;14(1):87. doi: 10.3390/ma14010087.
This paper is focused on the mechanical properties and the energy absorption characteristics of the extruded Mg-Al-Ca-Mn alloy in different compression directions under high strain rate compression. Compressive characterization of the alloy was conducted from the high strain rate (HSR) test by using a Split Hopkinson Pressure Bar (SHPB). Results show that the investigated alloy exhibits a strong strain rate sensitivity. With the rise of strain rate, the compressive strength is increased significantly, and the deformation ability also improves. When compressed along the extrusion direction, as the strain rate increases, the total absorbed energy E, the crush force efficiency (CFE), and the specific energy absorption SEA of Mg-Al-Ca-Mn alloy are all greatly improved as compared with those obtained along other compression directions.
本文聚焦于挤压态Mg-Al-Ca-Mn合金在高应变速率压缩下不同压缩方向的力学性能和能量吸收特性。通过使用分离式霍普金森压杆(SHPB)对该合金进行高应变速率(HSR)试验,以进行压缩特性研究。结果表明,所研究的合金表现出较强的应变速率敏感性。随着应变速率的提高,抗压强度显著增加,变形能力也有所改善。当沿挤压方向压缩时,随着应变速率的增加,Mg-Al-Ca-Mn合金的总吸收能量E、粉碎力效率(CFE)和比能量吸收SEA与沿其他压缩方向相比均有大幅提高。