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首页> 外文期刊>Materials Science and Engineering >Evolution of dispersoids and their effects on elevated-temperature strength and creep resistance in Al-Si-Cu 319 cast alloys with Mn and Mo additions
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Evolution of dispersoids and their effects on elevated-temperature strength and creep resistance in Al-Si-Cu 319 cast alloys with Mn and Mo additions

机译:Al-Si-Cu 319铸造合金中添加Mn和Mo的弥散体演变及其对高温强度和抗蠕变性的影响

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摘要

The present work investigated the evolution of dispersoids during various heat treatments via Mn and Mo additions and studied their effects on the yield strength (YS) and creep resistance at elevated temperature in Al-Si-Cu 319 cast alloys. The results showed that the individual addition of Mn or Mo promoted the precipitation of alpha-dispersoids; however, the best effect was achieved by their combined addition. The optimum heat treatment condition was at 500 degrees C for 8 h; under this condition, the largest quantity of and the finest alpha-dispersoids were obtained, resulting in remarkable improvements in YS at both room and elevated temperatures. The creep resistance at 300 degrees C was enhanced owing to the additions of Mn and Mo. Compared with the properties of the base alloy, a 19% improvement in YS at 300 degrees C, doubling of threshold stress and a 50-fold reduction in the minimum creep rate on the creep property at 300 degrees C were achieved by the combined addition of Mn and Mo. The alloy with both Mn and Mo exhibited the lowest YS decline rate and no change in the minimum creep rate during prolonged thermal exposure at 300 degrees C for up to 1000 h, demonstrating the superior thermal stability achieved by the 319 alloys with the introduction of a sufficient number of dispersoids from Mn and Mo additions.
机译:本工作研究了通过添加Mn和Mo在各种热处理过程中弥散体的演变,并研究了它们对Al-Si-Cu 319铸造合金在高温下的屈服强度(YS)和抗蠕变性的影响。结果表明,单独添加Mn或Mo促进了α-弥散体的沉淀。但是,通过将它们加在一起可以达到最好的效果。最佳热处理条件是在500摄氏度下进行8小时。在这种条件下,获得了数量最多,质量最好的α-分散体,从而在室温和高温下均显着提高了YS。由于添加了Mn和Mo,在300℃时的抗蠕变性得到增强。与基础合金的性能相比,在300℃时YS改善了19%,阈值应力增加了一倍,并且在50倍时降低了50倍。 Mn和Mo的组合添加可实现300°C时蠕变性能的最小蠕变速率。具有Mn和Mo的合金在300°C长时间热暴露期间表现出最低的YS下降率,并且最小蠕变率没有变化。 C在长达1000 h的时间内,证明了319合金通过加入足够数量的Mn和Mo添加的弥散体而获得了优异的热稳定性。

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