Progress in and prospects for electrical insulating materials
Прогресс и перспективы развития электроизоляционных материалов
2016-09-20
SCID: 54.1/jstwhugd
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corona resistancedielectric energy storageelectric breakdown strengthelectrical insulating materialsthermal conductivity
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Abstract (AI)
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.
Key Findings
1
Electrical insulating materials must withstand extreme temperatures, intense radiation, and strong electric fields while maintaining electrical, thermal, and mechanical performance.
2
Progress has also addressed dielectric specific energy storage, material nonlinearity, and radiation resistance, although these properties receive comparatively less coverage.
3
Research since the early 20th century has substantially advanced insulating-material properties and applications, including breakdown strength, thermal conductivity, temperature resistance, and corona resistance.
4
Studying insulating-material properties helps clarify interface effects and composite structures, enabling strategies to improve electrical-device performance.
5
The review identifies future research directions aimed at developing insulating materials with enhanced performance and environmental resilience.
Research Object
electrical insulating materials used in power systems and electrical devices
Research Subject
advances, properties, applications, and future development of insulating materials, including electrical, thermal, mechanical, environmental-resistance, and energy-storage performance
Publication Details
Publication Date
2016-09-20
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