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Effect of Retrogression and Re-Aging Treatment on the Organization and Properties of Cast Aluminum Alloys

机译:逆级和再老化治疗对铸铝组织及性质的影响

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In this paper, Samples are subjected to tensile test, metallographic microscope observation, scanning electron microscopy (SEM) analysis for exploring the effect of different retrogression and re-aging (RRA) treatments on the organization and properties of casting aluminum alloy. Results show that after aging at 170°C for 10h, then regression at 230°C for 10min, finally aging at 170°C for 10h, tensile strength of the sample is 430.19MPa, elongation is 6.18%, compared with the sample aged at 170°C for 10h(The tensile strength was 426.78MPa, elongation was 3.68%). It demonstrated that through the RRA process, strength of sample can effectively maintain at a similar high level as the samples processed single-stage aging. Meanwhile, the elongation of the sample increase nearly 67.9%. The microstructure characterizations indicate that RRA treatment induced the formation and growth of rod-like T phase, and the T phase homogeneously dispersed in the matrix of alloy. This process is proposed to be the major reason for the improvement of ductility.
机译:在本文中,对样品进行拉伸试验,金相显微镜观察,扫描电子显微镜(SEM)分析,用于探讨不同倒退和再衰老(RRA)治疗对铸造铝合金组织和性质的影响。结果表明,在170℃下老化10小时后,在230℃下回归10分钟,最后在170℃下老化10小时,样品的拉伸强度为430.19MPa,与样品相比,样品为6.18%,与样品相比10H(拉伸强度为426.78MPa,伸长率为3.68%)。它证明,通过RA工艺,样品的强度可以在类似的高水平随着样品加工单阶段老化而有效地保持在类似的高水平。同时,样品的伸长率增加了近67.9%。微观结构表征表明RRA治疗诱导棒状T相的形成和生长,以及在合金基质中均匀地分散的T相。该过程被提出是改善延性的主要原因。

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