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Comparison of the simulation and experimental fatigue crack behaviors in the aluminum alloy HS6061-T6

机译:铝合金HS6061-T6仿真与实验疲劳裂纹行为的比较

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This work deals with rotating bending fatigue tests on aluminum alloy HS6061-T6. Results have been obtained for two sizes of narrow section diameter for specimens with one hole. Results show that fatigue endurance is reduced in the case of the hole. In order to explain this behavior, numerical analysis by FEM were carried out to determine the stress concentrations for the two types of specimens. It is found that the important factor affects fatigue life is the narrow section diameter of the specimens, and the maximum damage occurs in the outer part of the specimen at the first stages of loading, however, it moves toward the center of the bar under uniaxial loading. The number of cycles to failure predicted numerically is higher than the experimental one. This difference is attributed mainly to an upper stage of fatigue crack growth, particularly, the interaction between fatigue crack growth and growth that can not be accounted for in the numerical model.
机译:这项工作涉及铝合金HS6061-T6上的旋转弯曲疲劳试验。已经为具有一个孔的标本的两种窄截面直径获得了结果。结果表明,在孔的情况下,疲劳耐久性降低。为了解释这种行为,进行了有限元的数值分析,以确定两种类型样本的应力浓度。结果发现,重要因素影响疲劳寿命是标本的窄截面直径,并且在装载的第一阶段,样品的外部发生最大损坏,但是它朝向单轴下方的中心移动装。对数值上预测的失败的循环次数高于实验性。这种差异主要归因于疲劳裂纹增长的上阶段,特别是疲劳裂纹生长和生长之间的相互作用,其在数值模型中不能算作。

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