Application and Suitability of Polymeric Materials as Insulators in Electrical Equipment

Применение и пригодность полимерных материалов в качестве изоляторов в электрооборудовании
Sk Manirul Haque, Binta Hadi Jume, Habibur Rahman, Firdaus Muhammad‐Sukki, Jorge Alfredo Ardila‐Rey, Yunusa Umar, Abdullahi Abubakar Mas’ud, Nurul Aini Bani
2021-05-11

dielectric strengthhigh voltage DC systemspartial dischargepolymeric electrical insulationresidual stress indentation
In this paper, the applications of thermoplastic, thermoset polymers, and a brief description of the functions of each subsystem are reviewed. The synthetic route and characteristics of polymeric materials are presented. The mechanical properties of polymers such as impact behavior, tensile test, bending test, and thermal properties like mold stress-relief distortion, generic thermal indices, relative thermal capability, and relative thermal index are mentioned. Furthermore, this paper covers the electrical behavior of polymers, mainly their dielectric strength. Different techniques for evaluating polymers’ suitability applied for electrical insulation are covered, such as partial discharge and high current arc resistance to ignition. The polymeric materials and processes used for manufacturing cables at different voltage ranges are described, and their applications to high voltage DC systems (HVDC) are discussed. The evolution and limitations of polymeric materials for electrical application and their advantages and future trends are mentioned. However, to reduce the high cost of filler networks and improve their technical properties, new techniques need to be developed. To overcome limitations associated with the accuracy of the techniques used for quantifying residual stresses in polymers, new techniques such as indentation are used with higher force at the stressed location.
1
Indentation testing with higher force at stressed locations is highlighted as a potential approach for improving residual-stress quantification accuracy in polymers.
2
It evaluates polymer suitability through mechanical, thermal, and electrical properties, with particular emphasis on dielectric strength, partial discharge, and high-current arc resistance to ignition.
3
Polymeric materials and manufacturing processes for cables across different voltage ranges are described, including applications in high-voltage direct-current systems.
4
The paper reviews thermoplastic and thermoset polymers used as electrical insulators, including their subsystem functions, synthesis routes, and material characteristics.
5
The review identifies high filler-network costs and limitations in polymer technical properties as challenges requiring new material-development techniques.

Polymeric materials used as electrical insulators in electrical equipment, cables, and HVDC systems

Suitability, mechanical, thermal, electrical, and dielectric properties of thermoplastic and thermoset polymers, including insulation performance, arc resistance, partial-discharge behavior, residual stresses, manufacturing applications, limitations, and future improvements

Publication Details
Publication Date
2021-05-11
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Authors
Sk Manirul Haque
Binta Hadi Jume
Habibur Rahman
Firdaus Muhammad‐Sukki
Jorge Alfredo Ardila‐Rey
Yunusa Umar
Abdullahi Abubakar Mas’ud
Nurul Aini Bani
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