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Microstructural evolution and mechanical properties of AZ31 Mg alloy fabricated by a novel bifurcation-equal channel angular pressing
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作者 HAN Ting-zhuang ZHANG Hua +6 位作者 YANG Mu-xuan WANG Li-fei LU Li-wei ZHANG De-chuang CAO Xia XU Ji BAI Jian-hui 《Journal of Central South University》 SCIE EI CAS CSCD 2024年第9期2961-2972,共12页
In this work,a novel type of short-process deformation technology of Mg alloys,bifurcation-equal channel angular pressing(B-ECAP),was proposed to refine grain and improve the basal texture.The cylindrical billets were... In this work,a novel type of short-process deformation technology of Mg alloys,bifurcation-equal channel angular pressing(B-ECAP),was proposed to refine grain and improve the basal texture.The cylindrical billets were first compressed into the die cavity,then sequentially flowed downward through a 90°corner and two 120°shear steps.The total strain of B-ECAP process could reach 3.924 in a single pass.The results of microstructure observation showed that DRX occurred at upsetting process in the die cavity and completed at position D.The grains were refined to 6.3μm at being extruded at 300℃ and grew obviously with the extrusion temperature increase.The shear tress induced by 900 corner and two 120°shear steps resulted in the basal poles of most grains tilted to extrusion direction(ED)by±25°.Compared with the original billets,the extruded sheets exhibited higher yield strengths(YS),which was mainly attributed to the grain refinement.The higher Schmid factor caused by ED-tilt texture resulted in a fracture elongation(FE)more than that of the original bar in ED,while was equivalent to that in transverse direction(TD).As the extrusion temperature increased,the variation of UTS and YS in ED and TD decreased gradually without ductility obviously decrease. 展开更多
关键词 AZ31 Mg alloy B-ECAP microstructure texture evolution mechanical properties
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AZ31镁合金挤压板材的显微组织与力学性能研究 被引量:2
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作者 杨牧轩 张华 +2 位作者 王利飞 张强 樊建锋 《热加工工艺》 北大核心 2021年第17期18-22,共5页
为了获得高性能镁合金板材,采用正向热挤压将铸态AZ31镁合金坯料挤压成2 mm厚的板材,研究了其显微组织演变及力学性能等。结果表明:铸态AZ31镁合金坯料挤压成板材后可以获得均匀细小的再结晶晶粒组织,其力学性能(屈服强度、抗拉强度、... 为了获得高性能镁合金板材,采用正向热挤压将铸态AZ31镁合金坯料挤压成2 mm厚的板材,研究了其显微组织演变及力学性能等。结果表明:铸态AZ31镁合金坯料挤压成板材后可以获得均匀细小的再结晶晶粒组织,其力学性能(屈服强度、抗拉强度、伸长率)大幅度提升。铸态AZ31镁合金坯料在400、450℃挤压成板材后,平均晶粒尺寸可由390μm分别细化至3.9、5.6μm。挤压后的AZ31镁合金板材展现出典型的(0001)基面织构,大部分晶粒的c轴垂直于板材表面。铸态AZ31镁合金的力学性能较差,而AZ31镁合金挤压板材在三个拉伸方向上均展现出优越的力学性能。随挤压温度的升高,AZ31镁合金挤压板材晶粒长大且显微组织不均匀,综合力学性能也有所下降。 展开更多
关键词 AZ31镁合金 挤压 晶粒尺寸 显微组织 力学性能
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160°大角度等通道转角挤压AZ61组织演化与力学性能 被引量:3
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作者 杨杰 樊建锋 +1 位作者 单召辉 杨牧轩 《铸造技术》 CAS 2019年第7期729-733,共5页
在100℃及150℃对商用AZ61挤压板材采用160°大角度等通道转角挤压,分析了等通道转角挤压(ECAP)变形组织演化规律。基于储能理论分析了100℃和150℃时ECAP对AZ61合金力学性能的影响。结果表明,在100℃时,ECAP三道次累积变形量为0.6... 在100℃及150℃对商用AZ61挤压板材采用160°大角度等通道转角挤压,分析了等通道转角挤压(ECAP)变形组织演化规律。基于储能理论分析了100℃和150℃时ECAP对AZ61合金力学性能的影响。结果表明,在100℃时,ECAP三道次累积变形量为0.6,以孪晶动态再结晶(TDRX)为主;在150℃累积变形量为0.6时,以连续动态再结晶(CDRX)为主。150℃的ECAP挤压8道次,再经100℃的ECAP挤压三道次,获得了1μm的细晶组织,提高了AZ61合金的综合力学性能,其屈服强度达到350 MPa,抗拉强度达到了432 MPa。 展开更多
关键词 160°大角度等通道转角挤压 低温累积变形 AZ61合金 细晶 力学性能
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