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Zn对压铸Al-Si合金共晶Si的粗化及粗化后变质处理 被引量:6
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作者 韩盼文 袁灵洋 +4 位作者 ghulamasghar 刘保良 胡志恒 付彭怀 彭立明 《特种铸造及有色合金》 CAS 北大核心 2021年第4期483-489,共7页
通过微观组织观察和力学性能测试等手段,研究了Zn对压铸Al-10Si-0.3Mg-0.6Mn合金的影响,在此基础上进行Sr和RE的变质处理,获得了一种综合性能良好的压铸铝合金。结果表明,Zn的固溶强化使合金的强度提升,但原来细小的共晶Si变得粗大,出... 通过微观组织观察和力学性能测试等手段,研究了Zn对压铸Al-10Si-0.3Mg-0.6Mn合金的影响,在此基础上进行Sr和RE的变质处理,获得了一种综合性能良好的压铸铝合金。结果表明,Zn的固溶强化使合金的强度提升,但原来细小的共晶Si变得粗大,出现长条状和块状的Si,合金伸长率下降。加入0.04%的Sr和0.1%的La/Ce混合稀土使粗化的共晶Si重新细化,最终获得合金的屈服强度为167 MPa、抗拉强度为324 MPa、伸长率为10.2%。 展开更多
关键词 Al-10Si-0.3Mg-0.6Mn压铸铝合金 ZN 变质处理 微观组织 力学性能
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Development of High Strength and Toughness Non-Heated Al–Mg–Si Alloys for High-Pressure Die-Casting 被引量:2
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作者 Ling-Yang Yuan Pan-Wen Han +5 位作者 ghulam asghar Bao-Liang Liu Jin-Ping Li Bin Hu Peng-Huai Fu Li-Ming Peng 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2021年第6期845-860,共16页
Based on the 3 factors and 3 levels orthogonal experiment method,compositional effects of Mg,Si,and Ti addition on the microstructures,tensile properties,and fracture behaviors of the high-pressure die-casting Al-x Mg... Based on the 3 factors and 3 levels orthogonal experiment method,compositional effects of Mg,Si,and Ti addition on the microstructures,tensile properties,and fracture behaviors of the high-pressure die-casting Al-x Mg-y Si-z Ti alloys have been investigated.The analysis of variance shows that both Mg and Si apparently infl uence the tensile properties of the alloys,while Ti does not.The tensile mechanical properties are comprehensively infl uenced by the amount of eutectic phase(α-Al+Mg2Si),the average grain size,and the content of Mg dissolved intoα-Al matrix.The optimized alloy is Al-7.49 Mg-3.08 Si-0.01 Ti(wt%),which exhibits tensile yield strength of 219 MPa,ultimate tensile strength of 401 MPa,and elongation of 10.5%.Furthermore,contour maps,showing the relationship among compositions,microstructure characteristics,and the tensile properties are constructed,which provide guidelines for developing high strength and toughness Al–Mg–Si–Ti alloys for high-pressure die-casting. 展开更多
关键词 Al–Mg–Si–Ti alloy MICROSTRUCTURE Tensile properties High strength and toughness Contour maps
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