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2篇 您的检索式:作者名="Zhuolin Cheng"
    题名 作者 年代 出处 被引量
1Power loss transition of stable ZnO varistor ceramics: Role of oxygen adsorption on the stability of interface states at the grain boundary显示文摘Highly stable ZnO varistor ceramics with steadily decreasing power loss have been put into applications in electrical and electronic systems for overvoltage protections, even with the absence of general understandings on their aging behaviors. In this paper, we investigated their aging nature via conducting comparative direct current (DC) aging experiments both in air and in nitrogen, during which variations of electrical properties and interface properties were measured and analyzed. Notably, continuously increasing power loss with severe electrical degradation was observed for the sample aged in nitrogen. The power loss transition was discovered to be closely related to the consumption of oxygen adsorption at the grain boundary (GB), which could, however, remain constant for the sample aged in air. The interface density of states (DOS) Ni, which is crucial for pinning the potential barrier, was proved to decrease in nitrogen, but keep stable in air. Therefore, it is concluded that the oxygen adsorption at the GB is significant for the stability of interface states, which further correlates to the long-term stability of modern stable ZnO varistor ceramics.Zhuolin Cheng Rou Li Yiwei Long Jianying Li Shengtao Li Kangning Wu 2023Journal of Advanced Ceramics2023,12,5:1
2A direct bonding copper degradation monitoring method for insulated gate bipolar transistor modules: Boundary‐dependent thermal network combined with feedback control显示文摘The direct bonding copper(DBC)substrates of insulated gate bipolar transistor(IGBT)modules degrade inevitably under cycling thermo‐mechanical stress,causing potential threat to the reliability of IGBT modules.However,little attention has been paid to monitoring their degradation.This paper proposes a DBC degradation monitoring method for IGBT modules,which combines boundary‐dependent thermal network and feedback control.A thermal network is employed to describe the internal material degradation of IGBT modules and can be extracted from a finite‐element method model.The boundary conditions including power losses and DBC degradation are considered,enabling the thermal network suitable for various working conditions and different DBC degradation conditions of IGBT modules.The DBC degradation is characterised by its equivalent thermal conductivities measured in the thermal cycling ageing experiments.On the basis of the boundary‐dependent thermal network,feedback control is applied to monitor DBC degradation by regulating boundary‐dependent thermal impedances.Finally,the proposed model is verified from the effectiveness and accuracy of DBC degradation monitoring and junction temperature calculation.This method casts new light on thermal network modelling and could provide a feasible method for the monitoring of DBC degradation.Xiaotong Zhang Zhuolin Cheng Xing Sun Kangning Wu Jianying Li 2023High Voltage2023,8,6:0
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