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Fretting fatigue life assessment of overhead conductors using a clamp/conductor numerical model and biaxial fretting fatigue tests on individual wires

机译:使用夹具/导体数值模型和双轴微动疲劳试验对架空导线的疲劳寿命评估

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The fatigue life of overhead conductors is usually evaluated through experimental tests on clamp/conductor assemblies. Some recent studies aim to estimate the fatigue life of conductors using uniaxial tests on individual strands. This paper presents an innovative method for assessing the fretting fatigue life of overhead conductors combining the effect of both tension and bending loadings. It consists of coupling a numerical approach based on modeling the clamp/conductor assembly using the finite element method and an experimental one based on fretting fatigue tests on individual wires. A biaxial fretting fatigue test rig has been developed and validated through preliminary tests performed on 1350-H19 aluminum wires under uniaxial and an equivalent biaxial loading. Tension and bending loadings obtained from the numerical model were then applied on individual wires. Results showed a good correspondence with existing experimental data of the fatigue tests carried on the aluminum conductor steel reinforced (ACSR) Bersfort conductor with a metal-to-metal suspension clamp.
机译:架空导体的疲劳寿命通常通过对夹具/导体组件的实验测试进行评估。一些最近的研究旨在利用单轴试验来估计导体的疲劳寿命。本文介绍了一种评估架空导体的微动疲劳寿命,其组合张力和弯曲载荷的效果。它包括耦合基于使用有限元方法和基于单个电线的微动疲劳测试的实验性夹具/导体组件建模的数值方法。通过在1350-H19铝线下在单轴和等效的双轴载荷下进行的初步测试开发并验证了双轴微动疲劳试验台。然后应用从数值模型获得的张力和弯曲载荷在单个导线上。结果表明,铝导体钢筋增强(ACSR)围绕耐金属悬浮夹夹具的耐疲劳试验的现有实验数据良好的对应关系。

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