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Modified test assembly for water tree study on polymeric insulating materials

机译:用于聚合物绝缘材料的水树研究的改进测试组件

摘要

Water tree is a process that causes degradation of insulation performance and ageing of Cross-Linked Polyethylene (XLPE) underground cables. It is known as one of the major causes of premature ageing and failure of polymeric cables. Previous research has shown that there are different effects of ageing time on water tree growth in different types of polymeric insulating materials where nickel and platinum have been used as electrodes and were found to cause corrosion and reduce efficiency. Thus, in this research, a modified test assembly using tungsten needle as an electrode to avoid corrosion and increase efficiency was introduced. This research investigated the effects of ageing time on water tree growth in two different types of polymeric sample namely (XLPE) and Low-Density Polyethylene (LDPE) under high voltage stress. Using computational simulation, the effect of voltage application and angle of tip radius against electric field using COMSOL 4.2a was studied. In this study, the polymeric samples were prepared using a new method known as “leaf-like” specimen method. The experiment was based on BS IEC 61956 2001, “Methods of test for the evaluation of water treeing in insulating materials” and BS EN 60243-1 : 1998, “Electrical strength of insulating materials-Test methods”. Samples were exposed to high voltage injection for 150 hours and 470 hours. The simulation results show that when voltage application increases, the electric field will increase. Besides that, a lower angle of tip radius in polymeric sample, will result in higher electric field being produced. Experimental results show that water tree growth is proportional to ageing time of the two polymeric samples. However, XLPE has better water treeing resistance than LDPE because the average length of water tree growth for LDPE is higher as compared to XLPE. This study has shown that ageing time as the cause of water tree growth that causes degradation in insulation performance has different effects on different types of polymers.
机译:水树是导致绝缘性能下降和交联聚乙烯(XLPE)地下电缆老化的过程。它被认为是聚合物电缆过早老化和失效的主要原因之一。先前的研究表明,在不同类型的聚合物绝缘材料中,老化时间对水树生长有不同的影响,其中镍和铂已被用作电极,被发现会引起腐蚀并降低效率。因此,在这项研究中,引入了一种改进的测试组件,该组件使用钨针作为电极以避免腐蚀并提高效率。这项研究调查了高压条件下两种不同类型的聚合物样品(XLPE)和低密度聚乙烯(LDPE)中老化时间对水树生长的影响。通过计算仿真,使用COMSOL 4.2a研究了施加电压和尖端半径角对电场的影响。在这项研究中,聚合物样品是使用称为“叶样”样品法的新方法制备的。该实验基于BS IEC 61956 2001,“绝缘材料中水树评估的测试方法”和BS EN 60243-1:1998,“绝缘材料的电强度-测试方法”。将样品暴露于高压注入下150小时和470小时。仿真结果表明,当施加电压增加时,电场将增加。除此之外,聚合物样品中尖端半径的较小角度将导致产生更高的电场。实验结果表明,水树的生长与两个聚合物样品的老化时间成正比。但是,XLPE比LDPE具有更好的耐水树性,因为与XLPE相比,LDPE的水树生长平均长度更高。这项研究表明,老化时间作为导致绝缘性能下降的水树生长原因,对不同类型的聚合物具有不同的影响。

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