TY - GEN
T1 - The relationship between surface flashover properties and trap characteristics of nanocomposites
AU - Yu, Shihu
AU - Li, Shengtao
N1 - Publisher Copyright:
© 2016 IEEE.
PY - 2016/11/28
Y1 - 2016/11/28
N2 - It is known that nanocomposites may have better surface flashover properties, which are important to the use of dielectrics in electrical equipment. By changing the content of nanoparticles added into polymers, the surface flashover voltage of nanocomposites can be increased by 30 %. One reason is that the changing of nanoparticles makes a contribution to different trap characteristics. As the density and level of electron and hole type traps in nanocomposites, especially at the thickness less than 2 μm of the surface, differ with the varying particles, it is of great value to study the relationship between trap characteristics and surface flashover properties. In this paper, epoxy nanocomposite samples with different trap characteristics are prepared. The trap characteristics are controlled by changing the content of Al2O3 nanoparticles (0 wt %, 0.5 wt %, 1 wt %, 3 wt %, 5 wt %). Distribution of electron traps can be obtained with negative corona charging and thus we obtained the isothermal surface potential decay characteristics of different kinds of samples. Surface flashover voltages in vacuum under DC voltage were tested. The results we obtained implied the connection between trap characteristics and surface flashover properties. It shows that two types of electron traps (shallow trap and deep trap) can be obtained by controlling the particle content. The level and density of traps make different contribution to electron transport and electron emission at the surface, which influences the surface flashover of nanocomposites.
AB - It is known that nanocomposites may have better surface flashover properties, which are important to the use of dielectrics in electrical equipment. By changing the content of nanoparticles added into polymers, the surface flashover voltage of nanocomposites can be increased by 30 %. One reason is that the changing of nanoparticles makes a contribution to different trap characteristics. As the density and level of electron and hole type traps in nanocomposites, especially at the thickness less than 2 μm of the surface, differ with the varying particles, it is of great value to study the relationship between trap characteristics and surface flashover properties. In this paper, epoxy nanocomposite samples with different trap characteristics are prepared. The trap characteristics are controlled by changing the content of Al2O3 nanoparticles (0 wt %, 0.5 wt %, 1 wt %, 3 wt %, 5 wt %). Distribution of electron traps can be obtained with negative corona charging and thus we obtained the isothermal surface potential decay characteristics of different kinds of samples. Surface flashover voltages in vacuum under DC voltage were tested. The results we obtained implied the connection between trap characteristics and surface flashover properties. It shows that two types of electron traps (shallow trap and deep trap) can be obtained by controlling the particle content. The level and density of traps make different contribution to electron transport and electron emission at the surface, which influences the surface flashover of nanocomposites.
KW - deep trap
KW - nanocomposites
KW - shallow trap
KW - surface flashover
KW - trap density
KW - trap energy
UR - https://www.scopus.com/pages/publications/85007247361
U2 - 10.1109/CMD.2016.7757984
DO - 10.1109/CMD.2016.7757984
M3 - 会议稿件
AN - SCOPUS:85007247361
T3 - CMD 2016 - International Conference on Condition Monitoring and Diagnosis
SP - 960
EP - 963
BT - CMD 2016 - International Conference on Condition Monitoring and Diagnosis
PB - Institute of Electrical and Electronics Engineers Inc.
T2 - 2016 International Conference on Condition Monitoring and Diagnosis, CMD 2016
Y2 - 25 September 2016 through 28 September 2016
ER -