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Microstructural evolution, mechanical property and thermal stability of Al-Li 2198-T8 alloy processed by high pressure torsion

机译:高压扭转处理Al-Li 2198-T8合金的组织演变,力学性能和热稳定性

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In this study, the Al-Li 2198-T8 (T8: under artificially peak-aged condition) alloy was fabricated by high pressure torsion (HPT) and then subjected to heat treatment at 175 ℃ for different durations. The microstructural evolution, mechanical property and thermal stability of the HPT-processed alloy were studied. The results demonstrate that the precipitates appeared in the as-received alloy were dissolved into the matrix after HPT processing; and the grains were significantly refined, accompanied by the modification of dislocations. The dislocation density gradually increased along the radial direction from the centre to the edge of the obtained disk. The improvement of tensile strength of HPT-processed 2198-T8 alloy was dominantly associated with grain refinement and dislocation strengthening. The subsequent heat treatment of the HPT-processed alloy led to slight grain growth and reduction of dislocation density. Also, no strengthening phases precipitated out during the post heat treatment. These factors accounted for the decrease of tensile property for HPT 2198-T8 alloy aged at 175 ℃ for up to 12 h, suggesting a low thermal stability.
机译:在这项研究中,Al-Li 2198-T8(T8:在人工峰值时效条件下)合金是通过高压扭转(HPT)制成的,然后在175℃下进行不同时间的热处理。研究了高温高压处理合金的组织演变,力学性能和热稳定性。结果表明,HPT处理后,原样合金中出现的沉淀物溶解在基体中。晶粒明显细化,并伴随着位错的改变。位错密度从获得的圆盘的中心到边缘沿径向逐渐增加。 HPT处理的2198-T8合金的拉伸强度的提高主要与晶粒细化和位错强化有关。对HPT处理的合金进行的后续热处理导致晶粒略微生长,并降低了位错密度。另外,在后热处理期间没有强化相沉淀出来。这些因素导致175℃时效长达12 h的HPT 2198-T8合金的拉伸性能下降,表明其热稳定性较低。

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