Electrical materials: performance improvement, recent advances and engineering applications
This book highlights the latest advances in advanced insulating materials. Energy crisis and environmental pollution are two major themes currently faced by the human society. It is of unprecedented strategic importance to construct a strong smart grid with super/ultra-high voltage network as the ba...
Gespeichert in:
1. Verfasser: | |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Singapore, Singapore
Springer
[2024]
|
Ausgabe: | 1st ed. 2024 |
Schriftenreihe: | Engineering materials
|
Schlagworte: | |
Zusammenfassung: | This book highlights the latest advances in advanced insulating materials. Energy crisis and environmental pollution are two major themes currently faced by the human society. It is of unprecedented strategic importance to construct a strong smart grid with super/ultra-high voltage network as the backbone and clean energy transmission as the leading force. However, the performance of electrical equipment and devices is greatly determined by the properties of their insulating materials, especially when they have to work in extreme circumstances including high-temperature differences, intense radiation, and strong electric fields. The key advantage of polymers is that their properties could be adjusted by changing their chemical composition and molecular structure. Research on polymer insulating materials has been highly successful as progress has been made in characterizing these properties, designing molecular structures, and studying polymers’ specialized properties. On the other hand, nanodielectrics are prepared by adding certain nanoscale fillers into a polymer matrix to yield better electrical, thermal, and mechanical properties. When the particle pretreatment methods and the content or category of fillers are adjusted, nanodielectrics tend to have greater breakdown strength as well as better high-temperature resistance and space charge suppression. Therefore, this book covers investigations of properties of insulating materials that explore their interface effects and composite structures and introduces findings in methods that improve the performance of electrical devices. The book is not only used as a timely reference for engineering and technical personnel in related fields but also as a comprehensive textbook for college students |
Beschreibung: | Chapter 1 Study on the construction method of epoxy resin crosslinking model.- Chapter 2 Study of model construction methods for epoxy resin composites.- Chapter 3 Modulation of surface properties of epoxy resin by plasma modification.- Chapter 4 Regulation method and mechanism of functionalized modified nano filler on electrical properties of epoxy resin.- Chapter 5 Research on the influence of nanoparticles and surface microstructure on the hydrophobic and electrical properties of silicone rubber materials.- Chapter 6 Molecular dynamics simulation of the effect of water intrusion on the epoxy resin/glass fiber interface of composite insulator core.- Chapter 7 Preparation and thermal-mechanical property evaluation of cellulose insulation paper with differing nano-SiC contents |
Beschreibung: | v, 290 Seiten Illustrationen, Diagramme 665 gr |
ISBN: | 9789819990498 |
Internformat
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490 | 0 | |a Engineering materials | |
500 | |a Chapter 1 Study on the construction method of epoxy resin crosslinking model.- Chapter 2 Study of model construction methods for epoxy resin composites.- Chapter 3 Modulation of surface properties of epoxy resin by plasma modification.- Chapter 4 Regulation method and mechanism of functionalized modified nano filler on electrical properties of epoxy resin.- Chapter 5 Research on the influence of nanoparticles and surface microstructure on the hydrophobic and electrical properties of silicone rubber materials.- Chapter 6 Molecular dynamics simulation of the effect of water intrusion on the epoxy resin/glass fiber interface of composite insulator core.- Chapter 7 Preparation and thermal-mechanical property evaluation of cellulose insulation paper with differing nano-SiC contents | ||
520 | |a This book highlights the latest advances in advanced insulating materials. Energy crisis and environmental pollution are two major themes currently faced by the human society. It is of unprecedented strategic importance to construct a strong smart grid with super/ultra-high voltage network as the backbone and clean energy transmission as the leading force. However, the performance of electrical equipment and devices is greatly determined by the properties of their insulating materials, especially when they have to work in extreme circumstances including high-temperature differences, intense radiation, and strong electric fields. The key advantage of polymers is that their properties could be adjusted by changing their chemical composition and molecular structure. Research on polymer insulating materials has been highly successful as progress has been made in characterizing these properties, designing molecular structures, and studying polymers’ specialized properties. On the other hand, nanodielectrics are prepared by adding certain nanoscale fillers into a polymer matrix to yield better electrical, thermal, and mechanical properties. When the particle pretreatment methods and the content or category of fillers are adjusted, nanodielectrics tend to have greater breakdown strength as well as better high-temperature resistance and space charge suppression. Therefore, this book covers investigations of properties of insulating materials that explore their interface effects and composite structures and introduces findings in methods that improve the performance of electrical devices. The book is not only used as a timely reference for engineering and technical personnel in related fields but also as a comprehensive textbook for college students | ||
650 | 4 | |a Surfaces (Physics) | |
650 | 4 | |a Polymers | |
650 | 4 | |a Nanotechnology | |
650 | 4 | |a Materials—Analysis | |
650 | 4 | |a Thermodynamics | |
650 | 4 | |a Heat engineering | |
650 | 4 | |a Heat transfer | |
650 | 4 | |a Mass transfer | |
650 | 4 | |a Condensed matter | |
653 | |a Hardcover, Softcover / Physik, Astronomie/Atomphysik, Kernphysik | ||
655 | 7 | |0 (DE-588)4143413-4 |a Aufsatzsammlung |2 gnd-content | |
700 | 1 | |a Xie, Qing |4 edt | |
776 | 0 | 8 | |i Erscheint auch als |n Online-Ausgabe |z 978-981-99-9050-4 |
Datensatz im Suchindex
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adam_text | |
any_adam_object | |
author | Xie, Qing |
author2 | Xie, Qing |
author2_role | edt |
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author_sort | Xie, Qing |
author_variant | q x qx |
building | Verbundindex |
bvnumber | BV049671294 |
ctrlnum | (OCoLC)1437858820 (DE-599)BVBBV049671294 |
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institution | BVB |
isbn | 9789819990498 |
language | English |
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physical | v, 290 Seiten Illustrationen, Diagramme 665 gr |
publishDate | 2024 |
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publisher | Springer |
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series2 | Engineering materials |
spelling | Electrical materials performance improvement, recent advances and engineering applications Qing Xie, editor Singapore, Singapore Springer [2024] v, 290 Seiten Illustrationen, Diagramme 665 gr txt rdacontent n rdamedia nc rdacarrier Engineering materials Chapter 1 Study on the construction method of epoxy resin crosslinking model.- Chapter 2 Study of model construction methods for epoxy resin composites.- Chapter 3 Modulation of surface properties of epoxy resin by plasma modification.- Chapter 4 Regulation method and mechanism of functionalized modified nano filler on electrical properties of epoxy resin.- Chapter 5 Research on the influence of nanoparticles and surface microstructure on the hydrophobic and electrical properties of silicone rubber materials.- Chapter 6 Molecular dynamics simulation of the effect of water intrusion on the epoxy resin/glass fiber interface of composite insulator core.- Chapter 7 Preparation and thermal-mechanical property evaluation of cellulose insulation paper with differing nano-SiC contents This book highlights the latest advances in advanced insulating materials. Energy crisis and environmental pollution are two major themes currently faced by the human society. It is of unprecedented strategic importance to construct a strong smart grid with super/ultra-high voltage network as the backbone and clean energy transmission as the leading force. However, the performance of electrical equipment and devices is greatly determined by the properties of their insulating materials, especially when they have to work in extreme circumstances including high-temperature differences, intense radiation, and strong electric fields. The key advantage of polymers is that their properties could be adjusted by changing their chemical composition and molecular structure. Research on polymer insulating materials has been highly successful as progress has been made in characterizing these properties, designing molecular structures, and studying polymers’ specialized properties. On the other hand, nanodielectrics are prepared by adding certain nanoscale fillers into a polymer matrix to yield better electrical, thermal, and mechanical properties. When the particle pretreatment methods and the content or category of fillers are adjusted, nanodielectrics tend to have greater breakdown strength as well as better high-temperature resistance and space charge suppression. Therefore, this book covers investigations of properties of insulating materials that explore their interface effects and composite structures and introduces findings in methods that improve the performance of electrical devices. The book is not only used as a timely reference for engineering and technical personnel in related fields but also as a comprehensive textbook for college students Surfaces (Physics) Polymers Nanotechnology Materials—Analysis Thermodynamics Heat engineering Heat transfer Mass transfer Condensed matter Hardcover, Softcover / Physik, Astronomie/Atomphysik, Kernphysik (DE-588)4143413-4 Aufsatzsammlung gnd-content Xie, Qing edt Erscheint auch als Online-Ausgabe 978-981-99-9050-4 |
spellingShingle | Xie, Qing Electrical materials performance improvement, recent advances and engineering applications Surfaces (Physics) Polymers Nanotechnology Materials—Analysis Thermodynamics Heat engineering Heat transfer Mass transfer Condensed matter |
subject_GND | (DE-588)4143413-4 |
title | Electrical materials performance improvement, recent advances and engineering applications |
title_auth | Electrical materials performance improvement, recent advances and engineering applications |
title_exact_search | Electrical materials performance improvement, recent advances and engineering applications |
title_full | Electrical materials performance improvement, recent advances and engineering applications Qing Xie, editor |
title_fullStr | Electrical materials performance improvement, recent advances and engineering applications Qing Xie, editor |
title_full_unstemmed | Electrical materials performance improvement, recent advances and engineering applications Qing Xie, editor |
title_short | Electrical materials |
title_sort | electrical materials performance improvement recent advances and engineering applications |
title_sub | performance improvement, recent advances and engineering applications |
topic | Surfaces (Physics) Polymers Nanotechnology Materials—Analysis Thermodynamics Heat engineering Heat transfer Mass transfer Condensed matter |
topic_facet | Surfaces (Physics) Polymers Nanotechnology Materials—Analysis Thermodynamics Heat engineering Heat transfer Mass transfer Condensed matter Aufsatzsammlung |
work_keys_str_mv | AT xieqing electricalmaterialsperformanceimprovementrecentadvancesandengineeringapplications |