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Fatigue Crack Growth Behavior in Al-7075 Under In-Plane Biaxial Loading with Mixed-Mode Overloads

机译:使用混合模式过载的平面双轴载荷下Al-7075中的疲劳裂纹生长行为

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Fatigue crack behavior in cruciform specimens of Al 7075-T6 under in-plane biaxial loading with mix-mode overloads is investigated. Tests were performed to characterize the fatigue behavior at four different levels of mode-mixity, and for each value of mode-mixity, overloads were applied at three different crack lengths as crack propagated under biaxial tensile loading. A significant change in the fatigue life and the crack growth behavior of the specimen was observed with change in mode-mixity of the applied overload. Although there was an increase in fatigue life for all the cases of mix-mode overloads, the maximum increase was observed for the pure shear overload and the minimum increase was observed for tensile dominant overload. When the shear component in the mix-mode overload was comparable but higher than the tensile component, an increase in mode-mixity value did not always show the increase in the fatigue life of the specimen, which indicates that the increase in fatigue life is not only governed by the combined effect of shear and tensile component of loading but also it is impacted differently by shear and tensile loading.
机译:研究了在与混合模式过载的平面内双轴负载下的Al 7075-T6中疲劳裂纹行为。进行测试以表征四种不同水平的模式 - 混合水平的疲劳行为,并且对于模式 - 混合性的每个值,在三种不同的裂缝长度下施加过载,因为在双轴拉伸载荷下繁殖。通过改变施加的过载的模式 - 混合的变化,观察到疲劳寿命和样品的裂纹生长行为的显着变化。尽管对于所有混合模式过载的所有情况疲劳寿命增加,但对于纯剪切过载,观察到最大增加,并且观察到抗拉性主机过载的最小增加。当混合模式过载中的剪切组分相当但高于拉伸成分时,模式 - 混合值的增加并不总是显示标本疲劳寿命的增加,这表明疲劳寿命的增加不是仅通过剪切和拉伸成分的剪切和拉伸成分的综合作用来治理,但它通过剪切和拉伸载荷不同地受到不同的影响。

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