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Transient current in a semi-crystalline PET controlled by the injection and transport of space charges

机译:半结晶PET中的瞬态电流受空间电荷的注入和传输控制

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Injection and transport of space charges have been observed in a semi-crystalline PET under 6.25 kV/mm dc at 60°C. Measurements were made 30 s after volt-off along a 74 h poling using the Laser-Induced Pressure Pulse (LIPP) method. They revealed only negative charges that spread throughout the inter-electrode gap and accumulated near the anode. The space charge distribution stabilized after about 30 hours. Once stabilized, the distribution of charges led to an increase of the field at the anode of 30% and a decrease of the field at the cathode of 20%. The measured density of charges held at the anode was in good agreement with the computed densities of charges induced by the space charges. The measured transient current is similar to the current derived from the charges induced at the anode. This suggests that in these conditions the transient current is a kind of displacement current entirely due to the transport of the space charges. A criterion taking into account the fields at the anode and at the cathode is proposed to explain the end of the transient régime.
机译:在60℃,6.25 kV / mm dc的半结晶PET中观察到空间电荷的注入和传输。断电后30 s沿极化74 h使用激光感应压力脉冲(LIPP)方法进行测量。他们只揭示了遍布电极间间隙并在阳极附近积累的负电荷。大约30小时后,空间电荷分布趋于稳定。一旦稳定,电荷的分布导致阳极处的电场增加30%,而阴极处的电场减少20%。在阳极处保持的测得的电荷密度与空间电荷引起的计算出的电荷密度非常吻合。测得的瞬态电流类似于从阳极感应的电荷得出的电流。这表明,在这些条件下,瞬态电流完全是由于空间电荷的传输而引起的位移电流。提出了考虑阳极和阴极场的准则来解释瞬态制度的终结。

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