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Twinning behavior of hot extruded AZ31 hexagonal prisms during uniaxial compression 被引量:14
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作者 Y.R.Zhao l.l.chang +1 位作者 J.Guo Y.P.Jin 《Journal of Magnesium and Alloys》 SCIE EI CAS 2019年第1期90-97,共8页
Hot-extruded magnesium alloy AZ31 bar was cut into hexagonal prisms and then compressed at room temperature with the loading direction parallel to the extrusion direction(ED)or perpendicular to ED.The effective stress... Hot-extruded magnesium alloy AZ31 bar was cut into hexagonal prisms and then compressed at room temperature with the loading direction parallel to the extrusion direction(ED)or perpendicular to ED.The effective stress and strain evolution at center and corner region of the hexagonal prisms was simulated by using DEFORM 3D,while microstructure evolution was characterized by electron backscatter diffraction(EBSD).Relationship between twinning behavior and stress-strain evolution during compression at room temperature was studied.The results indicated that the compressive stress and strain levels at central region of hexagonal prisms were lower than those at the corner parts.EBSD examination revealed that{10-12}twins activate during the compression and the volume fraction of twins at corner parts were less than that at the central parts,which was attributed to twin thickening and coalescence behaviors.Meanwhile,the EBSD map indicated that the arise of{10-11}contraction twins and{10-11}-{10-12}double twins in compressed samples,especially in the corner region with loading axis perpendicular to ED,which were considered to be related to the high stress level at corner region.The dislocation slips led to low-angle boundaries in LA⊥ED and LA//ED. 展开更多
关键词 Magnesium alloy Simulation Microstructure TWINNING COALESCENCE
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用光调制反射研究GaSb/AlSb多层量子势阱的带间跃迁
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作者 H.Shen Z.Hang +4 位作者 冷静 F.H.Pollak l.l.chang W.I.Wang L.Esaki 《镇江船舶学院学报》 1989年第2期38-44,共7页
我们测量了两个GaSb/AlSb多层量子势阱在77K时的光调制反射谱。在Г点(GaSb)亚带间的能量,理论与实验符合得甚好,这种一致性可延伸到空穴态被束缚而电子态低于AlSb导带最小值X点的整个能量范围, 这就使得有可能确定导带的补偿参数0.85... 我们测量了两个GaSb/AlSb多层量子势阱在77K时的光调制反射谱。在Г点(GaSb)亚带间的能量,理论与实验符合得甚好,这种一致性可延伸到空穴态被束缚而电子态低于AlSb导带最小值X点的整个能量范围, 这就使得有可能确定导带的补偿参数0.85±0.08(应变前)和应变的贡献,超过这个能量范围时,理论与实验的偏离则为Г-X混合态提供了证据。 展开更多
关键词 GaSb/AlSb 量子势阱 带间跃迁
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