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冷拉拔变形量对Cu-20 mass%Ag合金线材组织性能的影响 被引量:4
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作者 张朋飞 周延军 +6 位作者 宋克兴 曹军 吴保安 陈鼎彪 李鑫 吴捍疆 谷继华 《材料热处理学报》 CAS CSCD 北大核心 2022年第4期81-88,共8页
采用三室真空冷型竖引连铸+多道次冷拉拔变形工艺制备了不同线径的Cu-20 mass%Ag合金线材,测试了合金线材在不同变形量下的导电率和抗拉强度,分析了其显微组织的演变规律。结果表明:铸态Cu-20 mass%Ag合金杆坯(ϕ7.84 mm)的导电率为80.3%... 采用三室真空冷型竖引连铸+多道次冷拉拔变形工艺制备了不同线径的Cu-20 mass%Ag合金线材,测试了合金线材在不同变形量下的导电率和抗拉强度,分析了其显微组织的演变规律。结果表明:铸态Cu-20 mass%Ag合金杆坯(ϕ7.84 mm)的导电率为80.3%IACS,抗拉强度为263 MPa;当拉拔变形量达到98.4%(ϕ1 mm),线材的导电率为69.6%IACS,抗拉强度达到889 MPa。铸态Cu-20 mass%Ag合金杆坯的共晶组织在横截面上呈现为连续的网状结构,在纵截面上呈现为鱼骨状。随着变形量的增加,Cu-20 mass%Ag合金的共晶组织沿拉拔方向形成长纤维并沿轴向排列,纤维间距逐渐减小。在拉拔变形过程中,Cu-20 mass%Ag合金的主要强化机制是位错强化和细晶强化。 展开更多
关键词 cu-20 mass%ag合金 冷型竖引连铸 抗拉强度 微观组织
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Effects of strain rates on dynamic deformation behavior of Cu-20Ag alloy 被引量:5
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作者 Kexing Song Yongfeng Geng +6 位作者 Yijie Ban Yi Zhang Zhou Li Xujun Mi Jun Cao Yanjun Zhou Xuebin Zhang 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2021年第20期75-87,共13页
Copper alloy is widely used in high-speed railway,aerospace and other fields due to its excellent electrical conductivity and mechanical properties.High speed deformation and dynamic loading under impact load is a com... Copper alloy is widely used in high-speed railway,aerospace and other fields due to its excellent electrical conductivity and mechanical properties.High speed deformation and dynamic loading under impact load is a complex service condition,which widely exists in the field of national defense,military and industrial application.Therefore,the dynamic deformation behavior of the Cu-20Ag alloy was investigated by Split Hopkinson Pressure Bar(SHPB)with the strain rates of 1000-25000 s^(-1),high-speed hydraulic servo material testing machine with the strain rates of 1-500 s^(-1).The effect of strain rate on flow stress and adiabatic shear sensitivity was analyzed.The results show that the increase of strain rate will increase the flow stress and critical strain,that is to say,the increase of strain rate will reduce the adiabatic shear sensitivity of the Cu-20Ag alloy.The Cu-Ag interface has obvious orientation relationship with;(111)_(Cu)//(111)_(Ag):(^(-)111)_(Cu)//(^(-)111)_(Ag):(^(-)200)_(Cu)//(^(-)200)_(Ag) and [0^(-)11]_(Cu)//[0^(-)11]_(Ag) with the increase of strain rate.The increase of strain rate promotes the precipitation of Ag and increases the number of interfaces in the microstructure,which hinders the movement of dislocations and improves the stress and yield strength of the Cu-20Ag alloy.The concentration and distribution density of dislocations and the precipitation of Ag were the main reasons improve the flow stress and yield strength of the Cu-20Ag alloy. 展开更多
关键词 cu-20Ag alloy Dynamic deformation Split Hopkinson Pressure Bar Adiabatic shear sensitivity
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