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A probabilistic approach to study the effect of machined surface states on HCF behavior of a AA7050 alloy

机译:研究机加工表面状态对AA7050合金HCF行为影响的概率方法

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The aim of this study is to understand the impact of periodic surface micro-geometry patterns (obtained by High Speed Machining process) on the fatigue behavior of the AA7050 aluminium alloy and to define a proper defect acceptability criterion. It must be able to account for a large range of surface defects and of component sizes and geometries (wings, brackets, frames, etc.). A vast experimental campaign under fully reversed plane bending loads containing different surface states has been undertaken to characterize the effect of the surface topography on the fatigue behavior. The results show that the fatigue strength decreases when the surface roughness is significantly degraded. In order to predict the influence of the surface condition on the fatigue behavior, a numerical approach based on the real surface topology has been developed. It is shown that the numerically identified crack initiation sites are in agreement with the experimental results. A probabilistic approach based on the weakest link concept, associated with the definition of a stress based crack initiation threshold has been integrated in a FE model. This approach leads to a probabilistic diagram inspired from the Kitagawa type diagram, which explains the relationship between the surface and the scale effect on the fatigue strength.
机译:这项研究的目的是了解周期性表面微观几何图形(通过高速加工工艺获得)对AA7050铝合金疲劳行为的影响,并定义适当的缺陷可接受性标准。它必须能够解决各种表面缺陷以及部件尺寸和几何形状(机翼,支架,框架等)的问题。在包含不同表面状态的完全反向的平面弯曲载荷下进行了一项广泛的实验,以表征表面形貌对疲劳行为的影响。结果表明,当表面粗糙度显着降低时,疲劳强度降低。为了预测表面条件对疲劳行为的影响,已经开发了一种基于实际表面拓扑的数值方法。结果表明,数值确定的裂纹萌生点与实验结果吻合。基于最弱链接概念的概率方法与基于应力的裂纹萌生阈值的定义相关联,已集成到有限元模型中。这种方法产生了一个由北川型图启发而来的概率图,该图解释了表面与疲劳强度的比例效应之间的关系。

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