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Mechanical behavior of electrical hollow composite post insulators: Experimental and analytical study

机译:空心复合电绝缘子的机械性能:实验和分析研究

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摘要

Electrical post insulators are important components of electrical substations since any type of failure in such insulators leads to the breakdown of the local network. Although the electrical substations are often in service condition, any horizontal excitation due to the earthquake, or any extreme event, may cause lateral deformation and damage to the post insulators. Hollow composite post insulators, a new and evolving technology, have a very complex mechanical behavior due to their materials and connections. To date, the design of such post insulators has been based on the limited test results available in the literature. Most of experiments have been conducted on small-scale specimens focusing on the elastic response. This study presents a series of experiments conducted on a full-scale electrical hollow composite post insulator to investigate the static and dynamic mechanical behaviors, while a computational model is derived. The test series comprise, pull and cyclic quasi-static tests in addition to impact hammer tests, to assess the mechanical behavior of the insulators subjected to the lateral forces at different stages of damage. The key experimental results include the pre-peak force-displacement relationship, the cyclic response, the stiffness and strength deteriorations, and failure modes. The modal frequencies and the corresponding viscous damping ratios for the undamaged and damaged post insulator are calculated using the results of impact hammer tests. An analytical model is derived from the mechanical behavior to simulate the response of the un-damaged and damaged post insulator, and is verified by the test results. (C) 2015 Elsevier Ltd. All rights reserved.
机译:电柱式绝缘子是变电站的重要组成部分,因为此类绝缘子中的任何类型的故障都会导致局域网故障。尽管变电站通常处于运行状态,但由于地震或任何极端事件引起的任何水平激励都可能导致侧向变形并损坏绝缘子。中空复合支柱绝缘子是一种新兴技术,由于其材料和连接方式而具有非常复杂的机械性能。迄今为止,这种立柱式绝缘子的设计是基于文献中有限的测试结果。大多数实验都是针对小样本的弹性响应进行的。这项研究提出了一系列在全尺寸电空心复合支柱绝缘子上进行的实验,以研究静态和动态力学行为,同时推导了计算模型。该测试系列除冲击锤测试外还包括拉力和循环准静态测试,以评估绝缘子在不同损伤阶段承受侧向力的机械性能。关键的实验结果包括峰前力-位移关系,循环响应,刚度和强度劣化以及破坏模式。使用冲击锤试验的结果计算出未损坏和损坏的支柱绝缘子的模态频率和相应的粘性阻尼比。从机械性能中得出了一个解析模型,以模拟未损坏和损坏的立柱绝缘子的响应,并通过测试结果进行了验证。 (C)2015 Elsevier Ltd.保留所有权利。

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