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Overload Effects in Aluminum Alloys: Influence of Plasticity and Environment

机译:铝合金的过载效应:塑性和环境的影响

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This paper presents the behavior of selected aluminum alloys when subjected to a single overload, with an aim to highlight the effects of plasticity and environment. The delaying effect of a single overload is given in terms of number of delay cycles. The delay behavior is systematically compared with the constant amplitude crack growth resistance. It is shown that for most of the studied alloys, a strong parallel can be drawn between the constant amplitude crack growth behavior and the overload induced delay. Delay induced by an overload in vacuum is higher than that in air for the 7075 and the 2024 alloys, compatible with stronger constant amplitude crack growth resistance in vacuum. The influence of the elastic-plastic behavior is stronger in vacuum than in air. In the case of the Aluminum Lithium alloy, delay in air is higher than that in vacuum, which is opposite to the behavior under constant amplitude loading. The basic mechanisms governing crack growth in aluminum alloys and their influence on the delay induced by an overload are revealed. The experimental results are compared with a phenomenological model, taking into account the cyclic plastic behavior of materials.
机译:本文介绍了所选铝合金在一次过载时的行为,旨在突出可塑性和环境的影响。单个过载的延迟效果是根据延迟周期数给出的。系统将延迟行为与恒定振幅裂纹扩展阻力进行了比较。结果表明,对于大多数研究的合金,在恒定振幅裂纹扩展行为和过载引起的延迟之间可以得出强的平行关系。对于7075和2024合金,真空过载引起的延迟高于空气延迟,这与真空中较强的恒定振幅裂纹扩展阻力兼容。真空中的弹塑性行为的影响要强于空气。在铝锂合金的情况下,空气中的延迟高于真空中的延迟,这与恒定振幅负载下的行为相反。揭示了控制铝合金裂纹扩展的基本机理及其对过载引起的延迟的影响。考虑到材料的循环塑性行为,将实验结果与现象学模型进行比较。

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