TY  - JOUR
T1  - Design and simulation analysis of a composite cooling structure combining solid-liquid phase change material and liquid cooling for IGBTs
AU  - Zhao, Yuxuan
AU  - Zhang, Hong
AU  - Xie, Peng
AU  - Sun, Xiaoxia
AU  - Shen, Lili
N1  - Publisher Copyright:
© Published under licence by IOP Publishing Ltd.
PY  - 2025
Y1  - 2025
N2  - In response to the temperature fluctuations during the operation of IGBT, a composite cooling structure that integrates solid-liquid phase change materials (PCM) and liquid cooling technology has been designed and simulated. A numerical simulation model of the heat source - heat sink-liquid cooling plate has been established. The results indicate that the double-sided composite cooling structure of the heat sink and liquid cooling can effectively reduce the maximum temperature of the IGBT by more than 2°C, and under a power density of 497 MW/m3, the phase change alloy heat sink delays the time for the IGBT to reach the danger temperature by 18.3 seconds, resulting in a 210% increase in the effective temperature control duration.
AB  - In response to the temperature fluctuations during the operation of IGBT, a composite cooling structure that integrates solid-liquid phase change materials (PCM) and liquid cooling technology has been designed and simulated. A numerical simulation model of the heat source - heat sink-liquid cooling plate has been established. The results indicate that the double-sided composite cooling structure of the heat sink and liquid cooling can effectively reduce the maximum temperature of the IGBT by more than 2°C, and under a power density of 497 MW/m3, the phase change alloy heat sink delays the time for the IGBT to reach the danger temperature by 18.3 seconds, resulting in a 210% increase in the effective temperature control duration.
UR  - http://www.scopus.com/pages/publications/105011277235
U2  - 10.1088/1742-6596/3043/1/012137
DO  - 10.1088/1742-6596/3043/1/012137
M3  - Conference article
AN  - SCOPUS:105011277235
SN  - 1742-6588
VL  - 3043
JO  - Journal of Physics: Conference Series
JF  - Journal of Physics: Conference Series
IS  - 1
M1  - 012137
T2  - 8th International Conference on Mechanical, Electrical and Material Application, MEMA 2025
Y2  - 28 March 2025 through 30 March 2025
ER  -