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http://dx.doi.org/10.5370/JEET.2014.9.2.643

A Study on the Properties of CSPE According to Accelerated Thermal Aging Years  

Lee, Jung-Hoon (Department of Electrical Engineering, Wonkwang University)
Kang, Myeong-Kyun (Department of Electrical Engineering, Wonkwang University)
Jeon, Jun-Soo (Department of Electrical Engineering, Wonkwang University)
Lee, Seung-Hoon (Department of Electrical Engineering, Wonkwang University)
Kim, In-Yong (Department of Electrical Engineering, Wonkwang University)
Park, Hyun-Shin (Department of Electrical Engineering, Wonkwang University)
Shin, Yong-Deok (Department of Electrical Engineering, Wonkwang University)
Publication Information
Journal of Electrical Engineering and Technology / v.9, no.2, 2014 , pp. 643-648 More about this Journal
Abstract
The accelerated thermal aging of CSPE (chlorosulfonated polyethylene) was carried out for 40.41, 121.22, and 202.04 days at $100^{\circ}C$, which are equivalent to 20, 60, and 100years of aging at $50^{\circ}C$, respectively. The volume electrical resistivities of the accelerated thermally aged CSPE samples for 0, 40.41, 121.22, and 202.04 days were $1.107{\times}10^{14}-2.097{\times}10^{14}$, $7.752{\times}10^{13}-1.556{\times}10^{14}$, $7.693{\times}10^{13}-1.521{\times}10^{14}$, and $7.380{\times}10^{13}-1.304{\times}10^{14}{\Omega}{\cdot}cm$, respectively, at room temperature. The permittivities of the accelerated thermally aged CSPE samples for 0, 40.41, 121.22, and 202.04 days were $2.89{\times}10^{-11}-3.65{\times}10^{-11}$, $3.40{\times}10^{-11}-3.70{\times}10^{-11}$, $3.50{\times}10^{-11}-3.82{\times}10^{-11}$, and $3.76{\times}10^{-11}-4.13{\times}10^{-11}$ F/m, respectively, at room temperature. The EAB (elongation at break) of the accelerated thermally aged CSPE samples for 0, 40.41, 121.22, and 202.04 days were 98.8-101.3, 59.5-60.3, 37.8-39.2, and 41.8-44.3%, respectively, at room temperature. The apparent densities of the accelerated thermally aged CSPE samples for 0, 40.41, 121.22, and 202.04 days were 1.603-1.614, 1.611-1.613, 1.622-1.628, and $1.618-1.620g/cm^3$, respectively, at room temperature. The measured currents of the accelerated thermally aged CSPE and the standard sample were almost constant after 5 min of applying a 300-V/mm electric field to the CSPE. The V-I slope of the accelerated thermally aged CSPE sample was increased if the applied electric field was increased at room temperature, and the V-I slope of the accelerated thermally aged CSPE was higher than that of standard CSPE.
Keywords
Accelerated thermally aged CSPE; Volume electrical resistivity; Permittivity; EAB; Apparent density; V-I slope;
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1 Korea Advanced Institute of Science and Technology, Department of Nuclear and Quantum Engineering, Accident of Fukushima NPPs in Japan: Outcomes and impact, and lessons learned (Interim Report), 2011.
2 Y. D. Shin, J. H. Lee, C. S. Goo, I. Y. Kim, and B. S. Jin, "Effects on Measuring Temperature of Volume Electrical Resistivity of the Accelerated Thermal Aging CSPE", pp. 1020-1021, KIEE summer conference, 2012.
3 US NRC NUREG/CR-7000, "Essential Elements of an Electric Cable Condition Monitoring Program", Brookhaven National Laboratory, Upton, NY, 2010.
4 K. T. Gillen, R. Assink, R. Bernstein, and M. Celina, "Condition Monitoring Methods Applied to Degradation of Chlorosulfonated Polyethylene Cable Jacketing Materials", Polymer Degradation and Stability, 2006.
5 Z. Gu, G. Song, W. Liu, J. Gao, W. Dou, and P. Lu, "Preparation and Properties of Chlorosulfonated Polyethylene/Organomontmorillonite Nanocomposites", Journal of Applied Polymer Science, 2010.
6 In-Yong Kim, Cheol-Soo Goo, Jung-Hoon Lee, Beom-soo Jin, Myeong-Kyun Kang, Yong-Deok Shin, "A Study of Validation of Condition Monitoring Method of NPPs Cable through Volume Electrical Resistivity", pp. 76-79,ICHVE, 2012.
7 Sung-Kae Chung and Deok-chool Lee, "High Voltage Engineering" Munundang, 1996.
8 K. T. Gillen, R. Assink, R. Bernstein, and M. Celina, "Condition Monitoring Methods Applied to Degradation of Chlorosulfonated Polyethylene Cable Jacketing Materials", Polymer Degradation and Stability, 2006.
9 Z. Gu, G. Song, W. Liu, J. Gao, W. Dou, and P. Lu, "Preparation and Properties of Chlorosulfonated Polyethylene/Organomontmorillonite Nanocomposites", Journal of Applied Polymer Science, 2010.
10 Cheo-Ho Lee, "Characteristic and Evaluation of Polymeric Insulating Materials II", Journal of the Electrical World/Monthly Magazine, August, pp. 42-52, 2011.
11 Korea Atomic Energy Research Institute, "Development of Evaluation Technique on Ageing Degradation of Organic Polymer in Nuclear Power Plant Final Report", 1999.