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Achieving exceptionally high strength and rapid degradation rate of Mg-Er-Ni alloy by strengthening with lamellar γ' and bulk LPSO phases 被引量:2
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作者 Chaoneng Dai Jingfeng Wang +7 位作者 Yuanlang Pan Kai Ma Yinhong Peng Ye Wang Danqian Wang Chunhua Ran Jinxing Wang Yanlong Ma 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2024年第1期88-102,共15页
As-extruded Mg-Er-Ni alloys with different volume fractions of long-period stacking ordered(LPSO)phase and density of lamellar γ' phase were prepared,and the microstructure,mechanical,and degradation properties w... As-extruded Mg-Er-Ni alloys with different volume fractions of long-period stacking ordered(LPSO)phase and density of lamellar γ' phase were prepared,and the microstructure,mechanical,and degradation properties were investigated.Coupling the bulk LPSO phase and the lamellar γ' phase,and controlling the dynamic recrystallization processes during deformation by adjusting the volume fraction of LPSO and the density of the γ' phase,a synergistic increase in strength and degradation rate can be achieved.On the one hand,the increase in corrosion rate was related to the increased volume fraction of the bulk LPSO phase and the densities of the lamellar γ' phase,which provide more galvanic corrosion.Moreover,high densities of the lamellar γ' phase can provide more corrosion interface by inhibiting the recrystallization process to refine dynamic recrystallized(DRXed)grains during the hot extrusion.On the other hand,the ultimate tensile strength(UTS)and tensile yield strength(TYS)of the Mg-Er-Ni alloy increased from 345 and 265 MPa to 514 MPa and 358 MPa,respectively,which was mainly attributed to grain boundary and texture strengthening,bulk LPSO phase and lamellar γ' phase strengthening.Overall,Mg^(-1)4Er-4Ni alloy,which contains the highest volume fraction bulk LPSO phase and the densities of lamellar γ' phase,re-alized a synergistic enhancement of strength and degradation rate.The UTS,TYS,and degradation rate of Mg^(-1)4Er-4Ni were 514 MPa,358 MPa,and 142.5 mg cm^(-2)h^(-1)(3 wt%KCl solution at 93◦C),respectively.This research provides new insight into developing Mg alloys with high strength and degradation rates for fracturing tool materials in the application of oil and gas exploitation in harsh environments. 展开更多
关键词 mg-er-ni alloy Lamellarγ'and bulk LPSO phases Rapid degradation rate High strength Mechanical and corrosion mechanism
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Ni含量对Mg-Er-Ni合金组织的影响 被引量:1
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作者 邵琦 尹健 刘飞 《特种铸造及有色合金》 CAS CSCD 北大核心 2018年第6期684-687,共4页
采用光学显微镜(OM)、X射线衍射仪(XRD)、扫描电镜(SEM)和能谱分析(EDS)等手段,研究了Ni含量对Mg_(98-x)Er_2Ni_x(摩尔分数,下同,x=0,0.25,0.5,1)合金组织的影响。结果表明,铸态Mg_(98)Er_2合金组织为初生树枝状α-Mg相,晶内出现成分偏... 采用光学显微镜(OM)、X射线衍射仪(XRD)、扫描电镜(SEM)和能谱分析(EDS)等手段,研究了Ni含量对Mg_(98-x)Er_2Ni_x(摩尔分数,下同,x=0,0.25,0.5,1)合金组织的影响。结果表明,铸态Mg_(98)Er_2合金组织为初生树枝状α-Mg相,晶内出现成分偏析,Mg_(97.75)Er_2Ni_(0.25)、Mg_(97.5)Er_2Ni_(0.5)和Mg_(97)Er_2Ni_1三种合金的组成相主要是α-Mg相和LPSO相,第二相的面积分数分别为12%、19%、34%。在540℃固溶处理时,含Ni的Mg_(98-x)Er_2Ni_x合金组织结构未发生明显改变,仍为α-Mg相和LPSO相,且第二相未发生明显溶解,面积分数相比铸态合金有所增加。Mg_(97.75)Er_2Ni_(0.25)、Mg_(97.5)Er_2Ni_(0.5)和Mg_(97)Er_2Ni_1三种合金固溶处理20h后的LPSO相面积分数分别为16%、34%、42%。 展开更多
关键词 mg-er-ni合金 LPSO相 固溶处理
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含LPSO相Mg-Y-Er-Ni合金的组织和拉伸性能
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作者 欧阳康昕 周达 +1 位作者 杨宇帆 张磊 《材料研究学报》 EI CAS CSCD 北大核心 2023年第9期697-705,共9页
用重力铸造法制备3种Mg_(97)Y_(2-x)Er_(x)Ni_(1)(x=0.5、1、1.5)合金,研究了其铸态和(520℃,12 h)固溶态的组织和拉伸性能。结果表明:3种铸态合金都由α-Mg基体和18R-LPSO相组成,其中Mg_(97)Y_(1)Er_(1)Ni_(1)晶粒最细,LPSO相的体积分... 用重力铸造法制备3种Mg_(97)Y_(2-x)Er_(x)Ni_(1)(x=0.5、1、1.5)合金,研究了其铸态和(520℃,12 h)固溶态的组织和拉伸性能。结果表明:3种铸态合金都由α-Mg基体和18R-LPSO相组成,其中Mg_(97)Y_(1)Er_(1)Ni_(1)晶粒最细,LPSO相的体积分数最高、尺寸最小且分布最为均匀,因此其室温拉伸性能最佳。进行(520℃,12 h)固溶处理后,3种固溶态合金仍然由α-Mg基体和18R-LPSO相组成。固溶态Mg_(97)Y_(1.5)Er_(0.5)Ni_(1)合金晶内出现基面层错,但是并不具有完整的堆垛周期性特征。与铸态相比,3种固溶态合金的室温拉伸性能均有所提高。 展开更多
关键词 金属材料 Mg-Y-Er-Ni 合金 LPSO相 组织 拉伸性能
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