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低温对航空铝合金疲劳与裂纹扩展行为的影响

Journal of Aeronautical Materials(2021)

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Abstract
为了研究航空铝合金疲劳与裂纹扩展行为和机理,测试2种常用航空铝合金2524-T3和7050-T7451在常温25℃和低温–70℃下的疲劳与裂纹扩展性能,借助断口金相分析微观机理.结果表明:相同应力加载水平下,铝合金低温疲劳寿命延长而低温裂纹扩展速率减慢,–70℃低温对2种航空铝合金疲劳与裂纹扩展行为产生有益影响;–70℃低温环境下疲劳裂纹萌生区出现明显的台阶状小平面,两侧断面间形成凹凸错位,疲劳裂纹萌生困难;而在裂纹扩展区疲劳条带和韧窝特征减弱,且出现明显的沿晶特征,裂纹趋向于沿着晶界曲折扩展,疲劳和裂纹扩展寿命延长;随着加载应力水平提高,断口表面凹凸错位和沿晶特征减弱,而疲劳条带和韧窝特征增多.
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Key words
aluminium-alloy,cryogenic,fatigue,crack growth,micromechanism
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