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1)  thermally stimulated current method
热刺激电流法
2)  Thermally stimulated current (TSC)
热刺激电流
1.
Thermally stimulated current (TSC) is used to obtain the parameters of dielectrics,but the parasitic galvanic current existing in test influences the consequence.
热刺激电流测试(TSC)中寄生电流的存在对测试结果会产生一定的影响。
3)  Thermally stimulated current
热刺激电流
1.
In order to study the change regularity of trap parameters in polyimide under high stress step voltage,the thermally stimulated current and conductive current were measured during the electrical ageing process.
聚酰亚胺是变频电机中重要的绝缘材料,为了解它不同承受电压形式时其绝缘老化过程和失效机理与传统交、直流电压下存在的很大差异,在高场强方波电压下对聚酰亚胺膜进行电老化,测试了不同老化时间后聚酰亚胺膜的电导电流和热刺激电流(TSC)以分析聚酰亚胺膜活化能和陷阱密度等微观参数的变化规律。
2.
,the amount of charge,trap energy level)in magnet wire under pulse width modulated(PWM)voltages were investigated by thermally stimulated current(TSC)to understand the relationship between t.
在此基础上,通过热刺激电流和脉冲下局部放电参数的关系,揭示了老化时间和陷阱参数(如峰值位置、陷阱能级)的联系。
3.
The problem of thermally stimulated current (TSC)measurement on nanocomposites polyimide is addressed.
研究纳米复合聚酰亚胺薄膜热刺激电流(TSC)测试的影响因素和陷阱参数计算方法,并对不同样本和不同老化条件下的TSC结果进行分析。
4)  TSC
热刺激电流
1.
The Measurement of TSC in Solid Insulation with Inverter Driven Motors;
变频电机绝缘介质热刺激电流的测量
2.
The differences of dielectric loss between AC aging and square wave pulse aging are studied based on change curves of tan δ combining the results of thermally stimulated current(TSC).
变频电机匝间绝缘承受来自逆变器的连续高压脉冲方波的作用,为探讨工频正弦电压作用下具有很大差异的老化机理,通过采用工频正弦和高压脉冲方波两种电压源对模拟变频电机匝间绝缘的绞线对试样进行了电热联合老化对比试验,测量损耗角正切tanδ随老化时间的变化趋势,并结合热刺激电流测量结果,分析了电压形式对匝间绝缘介质损耗产生和发展的作用机理。
3.
This paper tries to investigate the aging performance of the composite insulators by means of thermally stimulated current (TSC) technique.
通过采用热刺激电流法对合成绝缘子材料进行热刺激电流(TSC)的探索性对比测试,力图探索热刺激电流法在评价合成绝缘子特性中的应用可能性。
5)  thermally stimulated current(TSC)
热刺激电流
1.
A measurement system of pA level thermally stimulated current(TSC)was designed to measure the TSC of the polymer and investigate the space charge accumulation and the trapping parameter in polymer.
本文设计了一个pA级的热刺激电流测量系统。
6)  TSD current
热刺激放电电流
补充资料:热刺激电流
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CAS号:

性质:又称热刺激电流。以一定的升温速度加热高聚物驻极体,则原来“冻结”的极化电荷就要释放出来,这种现象就称为热释电。通过此方法可测定高分子的玻璃化转变,研究高分子压电性能及高分子运动多重转变。

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