铝合金疲劳寿命的提高

P. Juijerm, B. Scholtes
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引用次数: 0

摘要

今天,由于人们对生产轻量化汽车的兴趣日益浓厚,铝合金被认为是许多由钢材制成的汽车部件的替代品。因此,了解铝合金的疲劳寿命——性能本身及其行为,并阐明其在室温和1001℃高温下的能力是至关重要的。特别是AA5xxx(非析出硬化)和AA6xxx(可析出硬化)系列铝合金与汽车工业中使用的铝合金非常相似,都是经常被提及和研究的重点。铝合金令人满意的疲劳寿命和提高的强度使其成为汽车工业的有力候选者。本文重点研究了铝合金在室温和高温下的疲劳性能和行为。然后,重点将转移到机械表面处理的概念,即所谓的深轧工艺,可用于提高铝合金的疲劳寿命。讨论了机械表面处理对AA5083和AA6110铝合金疲劳性能和行为以及室温和高温下残余应力稳定性的影响。此外,本文还阐述了改进的深轧工艺,即深轧后适当的退火工艺和高温深轧。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fatigue Lifetime Improvement of Aluminum Alloys
Today, aluminum alloys are being considered as substitutes for many automotive parts made from steels because of the growing interest in producing lightweight vehicles. Consequently, it is crucial to understand the fatigue lifetime—the property itself and its behavior—of aluminum alloys, and to clarify its capacities at both room temperature and 1001 elevated temperatures. In particular, the aluminum alloys in the AA5xxx (non-precipitation-hardenable) and AA6xxx (precipitation-hardenable) series are very similar to those found in automotive industries, and are both frequently mentioned and the focus of studies. The satisfactory fatigue lifetime and the improved strength of aluminum alloys make them a strong candidate for automotive industries. This article focuses upon the fatigue property and behavior of aluminum alloys at room temperature and elevated temperatures. Then, the focus will shift to the concept of mechanical surface treatment, the so-called deep-rolling process, which can be used to improve the fatigue lifetime of aluminum alloys. The effects of a mechanical surface treatment on the fatigue properties and behavior of the aluminum alloys AA5083 and AA6110, and the residual stress stability at room temperature and elevated temperatures has been discussed. Moreover, modified deep-rolling processes, i.e., deep-rolling followed by an appropriate annealing process and high-temperature deep-rolling, have been elaborated upon in this article.
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