动态再结晶
微观结构
镁合金
材料科学
再结晶(地质)
合金
冶金
延伸率
变形机理
打滑(空气动力学)
紧迫的
严重塑性变形
位错
变形(气象学)
复合材料
极限抗拉强度
热加工
物理
古生物学
热力学
生物
作者
L.X. Zhang,Yinglong Li
标识
DOI:10.1016/j.pnsc.2024.04.002
摘要
Equal channel angle pressing is recognized for its ability to refine alloy grains and alter grain orientation, thereby achieve better mechanical performance of the magnesium alloy. This study investigates the microstructures, dynamic recrystallization mechanism, texture development, and mechanical performance of GW94K (Mg–8.7Gd–4.18Y–0.42Zr wt. %) Mg alloy following ECAP-4 passes at 400 °C and 3 mm/min. Results show that when high-temperature deformation is undertaken, twin formation is suppressed while dislocation slip is facilitated, increasing dislocation density during deformation. Following ECAP deformation, the sample displayed higher fracture elongation, TYS, and UTS than the as-solutioned GW94K alloy. In particular, the GW94K alloy performed well mechanically after ECAP-4 passes, with an ultimate TYS of 231 MPa, an UTS of 290 MPa, and an elongation of 14.8 %. DDRX and shear bands induce CDRX, both of which are important in plastic deformation. as well as in modifying microstructure and grain orientation during ECAP deformation.
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