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首页> 外文期刊>International Journal of Fatigue >Elevated temperature short crack fatigue behaviour in near eutectic Al-Si alloys
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Elevated temperature short crack fatigue behaviour in near eutectic Al-Si alloys

机译:近共晶Al-Si合金的高温短裂纹疲劳行为

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摘要

This paper considers two candidate automotive piston alloys and highlights the influence of microstructural features on fatigue behaviour. Fatigue initiation and subsequent short crack growth was assessed at 20, 200 and 350 deg C. It is shown that both temperature and test frequency have a strong influence on the fatigue performance of the materials tested. The microstructure was quantitatively characterised in terms of the primary Si distribution. Together with post failure analysis, this allowed identification of critical microstructural features affecting both fatigue crack initiation and early growth. Large primary Si particles were found to act as preferential initiation sites by cracking or decohesion (dependent on test temperature) and are also sought out preferentially during short crack growth.
机译:本文考虑了两种候选的汽车活塞合金,并着重介绍了微观结构特征对疲劳行为的影响。在20、200和350摄氏度下评估了疲劳萌生和随后的短裂纹扩展。结果表明,温度和测试频率都对测试材料的疲劳性能有很大影响。根据主要的Si分布对微观结构进行了定量表征。结合故障后分析,可以确定影响疲劳裂纹萌生和早期生长的关键微结构特征。发现大的原始Si颗粒通过开裂或脱粘作用(取决于测试温度)充当优先的引发部位,并且在短时的裂纹扩展过程中也优先被发现。

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