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首页> 外文期刊>Journal of Materials Engineering and Performance >Effect of Aging Treatments on the Mechanical and Corrosive Behaviors of Spray-Formed 7075 Alloy
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Effect of Aging Treatments on the Mechanical and Corrosive Behaviors of Spray-Formed 7075 Alloy

机译:时效处理对喷射成形7075合金力学和腐蚀行为的影响

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摘要

Mechanical properties, microstructure, exfoliation corrosion (EXCO), and intergranular corrosion (IGC) behaviors of the spray-formed 7075 aluminum alloy after T6, T73, retrogression (R), and re-aging (RRA) treatment, respectively, were studied by using tensile tester, transmission electron microscope, and scanning electron microscope. The results show that the T6 process can increase the ultimate tensile strength (UTS) up to 760 MPa, while it decreases the elongation, the EXCO, and the IGC resistance of the alloy. The T73 process can improve elongation, the EXCO, and the IGC resistance of the alloy. The corrosion resistance of the alloy can also be improved by R and RRA processes with retrogression times increase. The tiny precipitated phases distributed homogeneously in the matrix can increase the UTS. The close-connected discrete grain boundary phases (GBP) and the narrow precipitate free zones (PFZ) will lower the elongation, the EXCO, and the IGC resistance of the alloy. Contrarily, the discrete GBP and wide PFZ can improve the elongation, the EXCO, and the IGC resistance of the alloy. The EXCO and the IGC behaviors for the spray-formed 7075 alloy after different aging treatments have been established according to the standards of ASTM G34-2001 (2007) and ASTM G110-1992 (2009).
机译:分别研究了喷塑7075铝合金在T6,T73,回归(R)和再时效(RRA)处理后的力学性能,微观结构,剥落腐蚀(EXCO)和晶间腐蚀(IGC)行为。使用拉伸测试仪,透射电子显微镜和扫描电子显微镜。结果表明,T6工艺可提高至760 MPa的极限抗拉强度(UTS),同时降低合金的伸长率,EXCO和IGC抵抗力。 T73工艺可以提高合金的延伸率,EXCO和IGC耐受性。合金的耐蚀性也可以通过R和RRA工艺来提高,而回归时间会增加。在基体中均匀分布的微小沉淀相会增加UTS。紧密连接的离散晶界相(GBP)和狭窄的无沉淀自由区(PFZ)将降低合金的延伸率,EXCO和IGC电阻。相反,离散的GBP和宽的PFZ可以改善合金的延伸率,EXCO和IGC电阻。根据ASTM G34-2001(2007)和ASTM G110-1992(2009)的标准,确定了经过不同时效处理后的7075喷涂合金的EXCO和IGC行为。

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