1441 Al - Li - Cu - Mg - Zr合金的退化、时效和力学行为

K. Ghosh, K. Das, U. Chatterjee
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引用次数: 3

摘要

摘要:对1441 Al-Li-Cu-Mg-Zr合金进行了回火处理,使合金的回火状态迅速恢复到不同的回火状态。对该合金的常规峰时效、回时效、回时效回火(RRA)和过时效回火进行了硬度测定、拉伸试验和SEM断口分析。对峰时效回火合金进行回退处理导致硬度和抗拉强度下降,延性增加,塑性区出现锯齿状现象。这主要是由于基体强化δ′析出物在退行处理后溶入固溶体所致。倒退的状态已被调整到各种年龄以下、高峰和超龄的状态。将回火状态时效为峰时效回火,达到了原始的峰时效强度和延性值。对断口进行了扫描电镜断口分析,断口以晶间断口为主,有少量凹陷。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Retrogression, reaging, and mechanical behaviour of a 1441 Al - Li - Cu - Mg - Zr alloy
Abstract A 1441 Al–Li–Cu–Mg–Zr alloy was subjected to retrogression treatment and the retrogressed states were immediately reaged to various tempers. Hardness measurement, tensile testing, and SEM fractography have been carried out to conventional peak-aged, retrogressed, retrogressed and reaged (RRA), and over-aged tempers of the alloy. Retrogression treatment applied to peak-aged tempered alloys resulted in a decrease in hardness and tensile strength, an increase of ductility, and a serration phenomenon in the plastic region. These are primarily due to the dissolution of matrix strengthening δ' precipitates into solid solution upon retrogression treatment. Retrogressed states have been reaged to various under-, peak-, and over-aged tempers. Reaging the retrogressed state to peak-aged temper has resulted in attaining the original peak-aged strength and ductility value. SEM fractography study has been carried out and fracture surfaces exhibited predominantly intergranular fracture in presence of few dimpl...
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