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作 者:卢银均 刘闯 孟遂民[2] Lu Yinjun, Liu Chuang, Meng Suimin(1. Jingmen Power Supply Company, State Grid Hubei Electirc Power Co., Ltd., Jingmen 448000, China; 2. College of Electrical Engineering &. Renewable, China Three Gorges Univ. , Yichang 443002, Chin)
机构地区:[1]国网湖北省电力有限公司荆门供电公司,湖北荆门448000 [2]三峡大学电气与新能源学院,湖北宜昌443002
出 处:《三峡大学学报(自然科学版)》2018年第3期66-69,共4页Journal of China Three Gorges University:Natural Sciences
基 金:电网环境保护国家重点实验室开放基金资助项目(GYW51201700590)
摘 要:根据钢芯铝绞线结构、材料和捻制特点,利用弯曲状态下的一次螺旋线方程,建立钢芯铝绞线弯曲状态下的有限元实体模型,采用Augmented Lagrange算法和Gauss points接触检测法分析导线在弯曲状态下受到张力作用的应力及变形规律.结果表明,在张力作用下等效应力和剪切应力沿截面中心呈上下不均匀分布;弯曲曲率半径对钢芯铝绞线股线受力有影响,曲率半径越大的股线其应力和变形越大;弯曲钢芯铝绞线最大等效应力位于钢芯,最大剪切应力位于外层铝股线,外层铝股线在弯曲状态下首先发生弯曲疲劳磨损的可能性较大.According to the structure, material and twist characteristics of aluminum cable steel reinforced conductor, and using a helical linear equation, the conductor finite element model of bended state is estab lished. Using Augmented I.agrange algorithm and Gauss points contact detection method, the stress and de formation of the conductor under bended condition can be analyzed. The results show that the equivalent stress and shear stress along the center of the cross section are inhomogeneous distribution under tension; and the conductor stress and deformation are positive correlated with the curvature radium strand. The maximum equivalent stress and shear stress of conductor are located in the steel core and outer aluminum strand; the possibility of bending fatigue wear first occurs in the bending state of the outer aluminum strands.
分 类 号:TM751[电气工程—电力系统及自动化]
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