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特高压复合支柱绝缘子力学性能试验研究 被引量:12
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作者 张玥 谢强 +5 位作者 何畅 卓然 罗兵 卢毓欣 胡蓉 孙帮新 《南方电网技术》 北大核心 2017年第11期27-33,67,共8页
为了研究特高压实心复合支柱绝缘子的力学性能,对其进行了静力侧推试验和动力特性测试。通过在支柱绝缘子芯棒根部布置应变片、顶部布置位移计和加速度计来获取支柱绝缘子芯棒根部应变、力-位移关系以及绝缘子破坏前后的基频。结果显示... 为了研究特高压实心复合支柱绝缘子的力学性能,对其进行了静力侧推试验和动力特性测试。通过在支柱绝缘子芯棒根部布置应变片、顶部布置位移计和加速度计来获取支柱绝缘子芯棒根部应变、力-位移关系以及绝缘子破坏前后的基频。结果显示,复合支柱绝缘子的破坏主要表现为绝缘子法兰的断裂破坏或绝缘子芯棒与法兰之间胶装部位的粘结破坏,且绝缘子破坏后基频明显降低。绝缘子在侧向力作用下的力-位移关系整体上可分为线弹性和弹塑性两个阶段。在其他参数相同的条件下,绝缘子的侧向承载力主要由法兰高度决定,法兰高度越大,其内部与绝缘子胶装高度越高且粘结效果越好,则支柱绝缘子的抗侧刚度及侧向承载力就越大;对于法兰无加劲肋的复合支柱绝缘子,其各组成部分的侧向承载能力是不同的,其中绝缘子芯棒的侧向承载能力要明显高于法兰和粘结材料。 展开更多
关键词 复合支柱绝缘子 力学性能 侧推试验 抗侧刚度 侧向承载能力
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Lateral load-carrying capacity analyses of composite shear walls with double steel plates and filled concrete with binding bars 被引量:1
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作者 周德源 刘凌飞 朱立猛 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第8期2083-2091,共9页
A method is developed to predict the lateral load-carrying capacity of composite shear walls with double steel plates and filled concrete with binding bars(SCBs). Nonlinear finite element models of SCBs were establish... A method is developed to predict the lateral load-carrying capacity of composite shear walls with double steel plates and filled concrete with binding bars(SCBs). Nonlinear finite element models of SCBs were established by using the finite element tool, Abaqus. Tie constraints were used to connect the binding bars and the steel plates. Surface-to-surface contact provided by the Abaqus was used to simulate the interaction between the steel plate and the core concrete. The established models could predict the lateral load-carrying capacity of SCBs with a reasonable degree of accuracy. A calculation method was developed by superposition principle to predict the lateral load-carrying capacity of SCBs for the engineering application. The concrete confined by steel plates and binding bars is under multi-axial compression; therefore, its shear strength was calculated by using the Guo-Wang concrete failure criterion. The shear strength of the steel plates of SCBs was calculated by using the von Mises yielding criterion without considering buckling. Results of the developed method are in good agreement with the testing and finite element results. 展开更多
关键词 composite shear wall double steel plate binding bar lateral load-carrying capacity nonlinear finite element analysis
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