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An investigation of brittle fracture of composite insulator rods in an acid environment with either static or cyclic loading

机译:在酸性或静态或循环载荷下复合绝缘子棒的脆性断裂研究

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The effect of static and cyclic loading conditions on the stress corrosion cracking of unidirectional glass reinforced polymer (GRP) rods used in composite high voltage insulators has been investigated. A series of stress corrosion experiments has been performed on unidirectional E-glass/modified polyester composite rods. The rods have been subjected to mechanical tensile static and cyclic stresses in the presence of a nitric acid solution. The stress corrosion fracture process in the rods was monitored using acoustic emission techniques. The experimental loading conditions simulated possible in-service loads for composite suspension insulators. The results obtained in this study showed that the brittle fracture process can be generated in the rods when subjected to relatively low tensile stresses in the presence of a nitric acid solution. The morphology of the experimentally generated brittle fracture cracks in the rods closely resembles those from in-service failed composite suspension insulators. It has also been shown in this research that low frequency, low amplitude vibrations in tensile loads can significantly accelerate the fracture process. It appears that the brittle fracture cracks in the rods generated under cyclic loads are less planar in nature in comparison with the cracks formed under static conditions. It has also been found that the acoustic emission generated during the stress corrosion fracture process in the rods is sensitive to the placement of the transducers. However, a reasonably good correlation between the stress corrosion crack growth rates and acoustic emission has been attained.
机译:研究了静态和循环载荷条件对复合高压绝缘子中使用的单向玻璃增强聚合物(GRP)棒的应力腐蚀开裂的影响。在单向电子玻璃/改性聚酯复合材料棒上进行了一系列应力腐蚀实验。棒在硝酸溶液的存在下经受了机械拉伸静态和循环应力。使用声发射技术监测棒中的应力腐蚀断裂过程。实验载荷条件模拟了复合悬挂绝缘子可能的服役载荷。这项研究获得的结果表明,在硝酸溶液的作用下,当拉杆受到相对较低的拉应力时,杆中会产生脆性断裂过程。试棒中实验产生的脆性断裂裂纹的形态与在役失效的复合悬挂绝缘子的形态极为相似。这项研究还表明,拉伸载荷中的低频,低振幅振动可以显着加速断裂过程。与在静态条件下形成的裂纹相比,在周期性载荷下产生的杆中的脆性断裂裂纹似乎在平面上具有较小的平坦性。还已经发现,在杆中的应力腐蚀断裂过程中产生的声发射对换能器的位置敏感。但是,已经获得了应力腐蚀裂纹扩展速率和声发射之间的合理良好的相关性。

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