TY - GEN
T1 - Laser annealing effects on DC surface flashover of PMMA and polystyrene
AU - Zirnheld, J.
AU - Olabisi, S.
AU - Strzempka, P.
AU - Burke, K.
AU - Ali, Y. S.
AU - Belkind, A.
AU - Tompa, G.
PY - 2008
Y1 - 2008
N2 - This research focuses on the effects of laser annealing on DC surface flashover characteristics of Polymethyl Methacrylate (PMMA) and Polystyrene (PS) dielectric samples. While many factors can contribute to flashover performance of a dielectric, such as insulator parameters, insulator operating environment and the interface between electrode and dielectric, micro scale structures on the surface of dielectrics have been identified as a major factor that affects the flashover performance. In an effort to increase flashover hold-off voltage, excimer laser annealing was used to melt and recrystallize the surface of the dielectric samples yielding smaller grain size and a more uniform surface. Samples were subdivided into three major categories governed by the ambient gas that the samples were annealed in: vacuum, SF 6, and nitrogen. Results were compared with unannealed benchmarks. Other processing variables include number of pulses per unit area and laser fluence, ranging from 250 mj/cm 2 to 1000 mj/cm 2. All samples are cylindrical in shape with a diameter of 51 mm and a thickness of 6.24 mm. The results demonstrated a correlation between the annealed energy and the flashover voltage.
AB - This research focuses on the effects of laser annealing on DC surface flashover characteristics of Polymethyl Methacrylate (PMMA) and Polystyrene (PS) dielectric samples. While many factors can contribute to flashover performance of a dielectric, such as insulator parameters, insulator operating environment and the interface between electrode and dielectric, micro scale structures on the surface of dielectrics have been identified as a major factor that affects the flashover performance. In an effort to increase flashover hold-off voltage, excimer laser annealing was used to melt and recrystallize the surface of the dielectric samples yielding smaller grain size and a more uniform surface. Samples were subdivided into three major categories governed by the ambient gas that the samples were annealed in: vacuum, SF 6, and nitrogen. Results were compared with unannealed benchmarks. Other processing variables include number of pulses per unit area and laser fluence, ranging from 250 mj/cm 2 to 1000 mj/cm 2. All samples are cylindrical in shape with a diameter of 51 mm and a thickness of 6.24 mm. The results demonstrated a correlation between the annealed energy and the flashover voltage.
UR - https://www.scopus.com/pages/publications/62949130862
U2 - 10.1109/IPMC.2008.4743635
DO - 10.1109/IPMC.2008.4743635
M3 - Conference contribution
AN - SCOPUS:62949130862
SN - 9781424415359
T3 - Proceedings of the 2008 IEEE International Power Modulators and High Voltage Conference, PMHVC
SP - 276
EP - 279
BT - Proceedings of the 2008 IEEE International Power Modulators and High Voltage Conference, PMHVC
T2 - 2008 IEEE International Power Modulators and High Voltage Conference, PMHVC
Y2 - 27 May 2008 through 31 May 2008
ER -