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Progress in and prospects for electrical insulating materials

机译:电绝缘材料的研究进展与前景

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The performance of electrical equipment and devices is determined to a great extent by the properties of their insulating materials. In power systems and electrical devices, insulating materials have to work in extreme circumstances that can include high temperature differences, intense radiation, and strong electric fields. Such conditions demand high-quality insulating materials with superior electrical, thermal, and mechanical properties as well as resilience to other environmental stresses. This study focuses on advances in insulating materials since the early 20th century and reviews the many developments in their properties and applications, including electric breakdown strength, thermal conductivity, temperature resistance, corona resistance, and specific energy storage in dielectrics. Some research progress on other properties is also covered, such as non-linearity and radiation resistance. Investigations into the properties of insulating materials can greatly assist in understanding their interface effects and composite structures, which in turn is helpful for discovering methods to improve the performance of electrical devices. Future directions for research are proposed to guide new investigations and support the development of even better insulating materials.
机译:电气设备的性能很大程度上取决于其绝缘材料的性能。在电力系统和电气设备中,绝缘材料必须在极端环境下工作,其中可能包括高温差,强辐射和强电场。这样的条件要求具有优良的电,热和机械性能以及对其他环境压力具有弹性的高质量绝缘材料。这项研究的重点是自20世纪初期以来绝缘材料的发展,并回顾了其性能和应用方面的许多发展,包括电击穿强度,导热性,耐温性,耐电晕性以及电介质中的比能存储。还涵盖了其他特性的一些研究进展,例如非线性和抗辐射性。对绝缘材料特性的研究可以极大地帮助理解它们的界面效应和复合结构,从而有助于发现改善电气设备性能的方法。提出了未来的研究方向,以指导新的研究并支持更好的绝缘材料的开发。

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