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Grain refinement impact on the mechanical properties and wear behavior of Mg-9Gd-3Y-2Zn-0.5Zr alloy after decreasing temperature reciprocating upsetting-extrusion 被引量:3
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作者 Wenlong Xu Jianmin Yu +5 位作者 Leichen Jia Chang Gao Zhan Miao Guoqin Wu Guojun Li Zhimin Zhang 《Journal of Magnesium and Alloys》 SCIE EI CAS CSCD 2022年第12期3506-3519,共14页
Based on the deforming technique of severe plastic deformation(SPD), the grain refinement of a Mg-9Gd-3Y-2Zn-0.5Zr alloy treated with decreasing temperature reciprocating upsetting-extrusion(RUE) and its influence on ... Based on the deforming technique of severe plastic deformation(SPD), the grain refinement of a Mg-9Gd-3Y-2Zn-0.5Zr alloy treated with decreasing temperature reciprocating upsetting-extrusion(RUE) and its influence on the mechanical properties and wear behavior of the alloy were studied. The RUE process was carried out for 4 passes in total, starting at 0 ℃ and decreasing by 10 ℃ for each pass. The results showed that as the number of RUE passes increased, the grain refinement effect was obvious, and the second phase in the alloy was evenly distributed. Room temperature tensile properties of the alloy and the deepening of the RUE degree showed a positive correlation trend, which was due to the grain refinement, uniform distribution of the second phase and texture weakening. And the microhardness of the alloy showed that the microhardness of RUE is the largest in 2 passes. The change in microhardness was the result of dynamic competition between the softening effect of DRX and the work hardening effect. In addition, the wear resistance of the alloy showed a positive correlation with the degree of RUE under low load conditions. When the applied load was higher, the wear resistance of the alloy treated with RUE decreased compared to the initial state alloy. This phenomenon was mainly due to the presence of oxidative wear on the surface of the alloy, which could balance the positive contribution of severe plastic deformation to wear resistance to a certain extent. 展开更多
关键词 {0.9gd-3y-2Zn-0.5zr alloy Reciprocating upsetting-extrusion Grain refinement Texture Mechanical properties Wear behavior
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(Y,Gd)H_(2) phase formation in as-cast Mg-6Gd-3Y-0.5Zr alloy 被引量:1
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作者 Fei Wang Bin-guo Fu +5 位作者 Yu-feng Wang Tian-shun Dong Guo-lu Li Xue-bo Zhao Jin-hai Liu Gui-xian Zhang 《China Foundry》 SCIE CAS 2021年第3期217-222,共6页
In this work,a new(Y,Gd)H_(2) precipitate was identified and systematically investigated in the as-cast Mg-6Gd-3Y-0.5Zr alloy by XRD,SEM with EDS,TEM with EDS techniques and thermodynamics analysis.Results show that t... In this work,a new(Y,Gd)H_(2) precipitate was identified and systematically investigated in the as-cast Mg-6Gd-3Y-0.5Zr alloy by XRD,SEM with EDS,TEM with EDS techniques and thermodynamics analysis.Results show that the as-cast alloy contains α-Mg,Mg_(24)(Gd,Y)_(5),and(Y,Gd)H_(2) phase.The(Y,Gd)H_(2) phase usually forms near the eutectic phase Mg_(24)(Gd,Y)_(5) or in the α-Mg grains,displaying a rectangle-shape.The Mg_(24)(Gd,Y)_(5) and(Y,Gd)H_(2) phases crystalize in bcc and fcc structure,respectively,and the(Y,Gd)H_(2) phase has a semi-coherent relationship with α-Mg matrix.The thermodynamics calculation results reveal that the hydrogen dissolved in the melt leads to the formation of hydrides.It is also found that the(Y,Gd)H_(2) hydride can form directly from the liquid phase during solidification.Additionally,it can precipitate by the decomposition of Mg_(24)(Gd,Y)_(5) phase due to absorbing hydrogen from the remaining melt. 展开更多
关键词 {0.6gd-3y-0.5zr alloy AS-CAST microstructure (Y Gd)H_(2)phase formation mechanism
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稀土镁合金薄腹高筋支架的等温锻造技术 被引量:11
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作者 徐文臣 单德彬 +3 位作者 郭斌 韩修柱 黄晓磊 王悦 《塑性工程学报》 CAS CSCD 北大核心 2014年第2期7-12,共6页
针对Mg-9Gd-3Y-0.6Zn-0.5Zr合金薄腹高筋支架构件,设计其等温锻造成形方案和模具装置。采用有限元软件DEFORM-3D对薄腹高筋支架等温成形过程进行有限元模拟和实验,分析模具结构和成形方案对成形过程中金属流动充填的影响规律,揭示缺陷... 针对Mg-9Gd-3Y-0.6Zn-0.5Zr合金薄腹高筋支架构件,设计其等温锻造成形方案和模具装置。采用有限元软件DEFORM-3D对薄腹高筋支架等温成形过程进行有限元模拟和实验,分析模具结构和成形方案对成形过程中金属流动充填的影响规律,揭示缺陷产生原因,并进行工艺优化,最终成形出质量良好的锻件。结果表明,采用分瓣模具结构和等温成形技术,可整体一次性精密成形形状复杂的薄腹非对称高圆弧筋类锻件,且构件组织细小均匀;通过设置工艺圆角和增加活动阻尼块的方式,可有效控制薄腹高筋支架圆弧筋处金属的流动充填阻力,消除圆弧筋抽料和侧耳充不满缺陷。 展开更多
关键词 mg-9gd-3y-0 6Zn-0 5zr合金 薄腹高筋支架 等温锻造 活动阻尼块
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