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电缆高分子绝缘材料因受高温等因素的影响容易发生老化,及时评估其老化状况有利于预防事故发生.文中采用共轭梯度反问题技术结合红外检测手段,对整体热老化后的绝缘材料导热率进行了定量评估.通过电缆热特征分析发现,电缆表面温度并不能真实反映绝缘层的整体热老化状况,而缆芯温度和接线端温度随着绝缘层老化的加剧而升高.文中通过不同红外测温误差和初始假设的数值实验对提出的热物性定量评估方法进行了验证,表明了其定量评估结果的可靠性及稳定性.

参考文献

[1] H.M.Hashemian .Aging management of instrumentation & control sensors in nuclear power plants[J].Nuclear engineering and design,2010(11):3781-3790.
[2] 王铁军,单潮龙.舰船电缆绝缘材料热老化寿命的差示扫描量热法研究[J].海军工程大学学报,2000(06):53-55.
[3] Gillen KT;Assink R;Bernstein R;Celina M .Condition monitoring methods applied to degradation of chlorosulfonated polyethylene cable jacketing materials[J].Polymer Degradation and Stability,2006(6):1273-1288.
[4] Kim C;Jin Z;Jiang PK;Zhu ZS;Wang GL .Investigation of dielectric behavior of thermally aged XLPE cable in the high-frequency range[J].Polymer Testing,2006(4):553-561.
[5] Hsu YT;Chang-Liao KS;Wang TK;Kuo CT .Monitoring the moisture-related degradation of ethylene propylene rubber cable by electrical and SEM methods[J].Polymer Degradation and Stability,2006(10):2357-2364.
[6] 吕事桂,杨立,李伟华.船用橡胶电缆整体老化剩余寿命研究[J].船海工程,2010(04):37-39.
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