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FATIGUE LIFE PREDICTION IN ALUMINUM SHAPE CASTINGS

机译:铝型材疲劳寿命的预测

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摘要

Increasing use of aluminum shape castings in automotive and aerospace industries has drawn great attention to fatigue properties of cast aluminum components. The fatigue resistance of aluminum castings strongly depends upon the presence of casting flaws and characteristics of microstructural constituents. The existence of casting flaws significantly reduces fatigue crack initiation life. In the absence of casting flaws, however, crack initiation occurs at the fatigue-sensitive microstructural constituents. Cracking and decohesion of large silicon and Ferich intermetallic particles and crystallographic shearing. from persistent slip bands in the aluminum matrix play an important role in crack initiation. This paper reviews the latest understanding in fatigue crack initiation mechanisms in cast aluminum alloys and presents multi-scale fatigue (MSF) life models for aluminum castings that account for multi-scale casting flaws and microstructural constituents.
机译:在汽车和航空航天工业中越来越多地使用铝型铸件,这引起了铝铸件疲劳性能的极大关注。铝铸件的抗疲劳性在很大程度上取决于铸件缺陷的存在和显微组织成分的特征。铸造缺陷的存在显着降低了疲劳裂纹萌生寿命。然而,在没有铸造缺陷的情况下,在疲劳敏感的微观结构成分处会发生裂纹萌生。大硅和Ferich金属间化合物颗粒的开裂和解聚以及晶体学剪切。铝基体中持久的滑动带产生的裂纹在裂纹萌生中起重要作用。本文回顾了对铸造铝合金疲劳裂纹萌生机理的最新理解,并提出了铝铸件的多尺度疲劳(MSF)寿命模型,该模型考虑了多尺度铸件缺陷和微结构成分。

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