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Evolution of mechanical properties,localized corrosion resistance and microstructure of a high purity Al-Zn-Mg-Cu alloy during non-isothermal aging
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作者 DAI Xuan-xuan LI Yu-zhang +2 位作者 LIU Sheng-dan YE Ling-ying BAO Chong-jun 《Journal of Central South University》 SCIE EI CAS CSCD 2024年第6期1790-1807,共18页
The evolution of mechanical properties,localized corrosion resistance of a high purity Al-Zn-Mg-Cu alloy during non-isothermal aging(NIA)was investigated by hardness test,electrical conductivity test,tensile test,inte... The evolution of mechanical properties,localized corrosion resistance of a high purity Al-Zn-Mg-Cu alloy during non-isothermal aging(NIA)was investigated by hardness test,electrical conductivity test,tensile test,intergranular corrosion test,exfoliation corrosion test,slow strain rate tensile test and electrochemical test,and the mechanism has been discussed based on microstructure examination by optical microscopy,electron back scattered diffraction,scanning electron microscopy and scanning transmission electron microscopy.The NIA treatment includes a heating stage from 40℃to 180℃with a rate of 20℃/h and a cooling stage from 180℃to 40℃with a rate of 10℃/h.The results show that the hardness and strength increase rapidly during the heating stage of NIA since the increasing temperature favors the nucleation and the growth of strengthening precipitates and promotes the transformation of Guinier-Preston(GPI)zones toη'phase.During the cooling stage,the sizes ofη'phase increase with a little change in the number density,leading to a further slight increase of the hardness and strength.As NIA proceeds,the corroded morphology in the alloy changes from a layering feature to a wavy feature,the maximum corrosion depth decreases,and the reason has been analyzed based on the microstructural and microchemical feature of precipitates at grain boundaries and subgrain boundaries. 展开更多
关键词 Al-Zn-Mg-Cu alloy non-isothermal aging mechanical properties localized corrosion resistance MICROSTRUCTURE
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TIG氩弧辅助焊接对2519铝合金搅拌摩擦焊接头应力腐蚀开裂敏感性的影响
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作者 易铁 刘胜胆 +2 位作者 方晨 江耿铎 戴轩轩 《中国有色金属学报》 EI CAS CSCD 北大核心 2023年第10期3171-3184,共14页
采用常规搅拌摩擦焊(Friction stir welding,FSW)工艺和惰性气体钨极(Tungsten inert gas,TIG)氩弧辅助FSW工艺对2.5 mm厚2519-T87铝合金板材进行焊接,通过慢应变速率拉伸试验和电化学测试研究对比了两种接头的应力腐蚀开裂(SCC)敏感性... 采用常规搅拌摩擦焊(Friction stir welding,FSW)工艺和惰性气体钨极(Tungsten inert gas,TIG)氩弧辅助FSW工艺对2.5 mm厚2519-T87铝合金板材进行焊接,通过慢应变速率拉伸试验和电化学测试研究对比了两种接头的应力腐蚀开裂(SCC)敏感性。结果表明:引入TIG氩弧可降低焊接接头SCC敏感性,在3.5%(质量分数)NaCl溶液中,SCC敏感指数由1.47%降低至0.46%;当焊核区的腐蚀电流密度由2.177×10^(-6)A/cm^(2)降低至1.536×10^(-6)A/cm^(2)时,自腐蚀电位由-0.636 V提高至-0.616 V,焊核区的耐腐蚀性能也随之提高。结合金相显微镜、扫描电镜和扫描透射电镜对接头微观组织的方法,认为TIG氩弧辅助FSW工艺通过改善焊核区表层第二相粒子的大小和分布抑制了接头慢应变速率拉伸过程中腐蚀裂纹的萌生和扩展,从而降低了接头的SCC敏感性。 展开更多
关键词 2519铝合金 搅拌摩擦焊 TIG氩弧 应力腐蚀开裂 第二相粒子
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