Thermo-mechanical fatigue life prediction of SiC power device based on finite element simulation

被引:0
|
作者
Li, Dao-Hang [1 ]
Liu, Tian-Yi [1 ]
Yi, Wenwen [2 ]
Xu, Wen-Jing [1 ]
Zhang, Bowen [1 ]
Liu, Yi [1 ]
Mei, Yun-Hui [1 ]
机构
[1] Tiangong Univ, Sch Elect Engn, Tianjin, Peoples R China
[2] Gen Motors Co, Warren, MI USA
基金
中国国家自然科学基金;
关键词
thermo-mechanical fatigue; life prediction; SiC power device; electro-thermal-mechanical;
D O I
10.1109/ICEPT63120.2024.10668726
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
This paper establishes a prediction method for the thermo-mechanical fatigue life of SiC power devices based on electro-thermal-mechanical coupling finite element simulation. The Anand constitutive model is used to describe the cyclic mechanical behavior of sintered silver at high temperature, and the Coffin-Manson equation is used to evaluate the thermo-mechanical fatigue damage of sintered silver. Firstly, a non-contact strain measurement and control technology is developed. Secondly, this paper conducted static shear tests on sintered silver interconnect specimens at different strain rates and temperatures, and found that the shear strength of the material decreases with decreasing shear strain rate and decreases with increasing temperature. Moreover, the material constants of the Anand constitutive model for sintered silver were identified based on the static shear stress-strain curve. Thirdly, cyclic shear tests were conducted on sintered silver interconnect specimens, and finite element simulation of the tests were also conducted. The effectiveness of the simulation was verified by comparing the experimental and simulated stress-strain results. Afterwards, the electro-thermal-mechanical coupling finite element simulation of a SiC power devices under power cycling was conducted, and the key dangerous parts of the device under power cycling were identified, then the stress-strain response history of the key dangerous parts was further extracted. Finally, the Coffin-Manson equation was used to calculate the thermo-mechanical fatigue damage and predict the failure life of SiC power devices. By comparing the experimental and predicted life results, it was found that the prediction error was within a factor of 2, indicating that the established method can provide satisfactory prediction results and provide key technical support for the fatigue life design of SiC power devices.
引用
收藏
页数:5
相关论文
共 50 条
  • [41] Thermo-Mechanical Analysis of SiC Schottky-Barrier Diode Press-Pack Packaging using Finite Element Simulation
    Wang, Zhao
    Feng, Ke
    Yang, Xiaofei
    2018 1ST WORKSHOP ON WIDE BANDGAP POWER DEVICES AND APPLICATIONS IN ASIA (WIPDA ASIA), 2018, : 12 - +
  • [42] Research on Thermo-mechanical Fatigue Life Prediction Model of Ni-base Superalloy
    Cui H.
    Qian C.
    Zhongguo Jixie Gongcheng/China Mechanical Engineering, 2024, 35 (01): : 67 - 73and82
  • [43] Thermo-mechanical fatigue life prediction method under multiaxial variable amplitude loading
    Wang, Jin-Jie
    Shang, De-Guang
    Sun, Yu-Juan
    Li, Luo-Jin
    Li, Dao-Hang
    INTERNATIONAL JOURNAL OF FATIGUE, 2019, 127 : 382 - 394
  • [44] Thermo-mechanical fatigue behavior and life prediction of the Al-Si piston alloy
    Wang, M.
    Pang, J. C.
    Zhang, M. X.
    Liu, H. Q.
    Li, S. X.
    Zhang, Z. F.
    MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2018, 715 : 62 - 72
  • [45] THERMO-MECHANICAL FATIGUE LIFE PREDICTION OF HEAVY DUTY DIESEL ENGINE CYLINDER HEADS
    Guo, Xuyang
    Cheng, Ying
    Zhang, Ziming
    PROCEEDINGS OF THE ASME INTERNATIONAL MECHANICAL ENGINEERING CONGRESS AND EXPOSITION, 2013, VOL 15, 2014,
  • [46] An energy based analysis of thermo-mechanical fatigue
    Radhakrishnan, VM
    TRANSACTIONS OF THE INDIAN INSTITUTE OF METALS, 1996, 49 (04) : 357 - 369
  • [47] Thermo-mechanical fatigue behavior and life prediction of selective laser melted inconel 718
    Zou, C. L.
    Pang, J. C.
    Li, W. B.
    Wang, N.
    Feng, Y. Y.
    Li, S. X.
    Zhang, H.
    Zhang, Z. F.
    MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2025, 919
  • [48] Thermo-Mechanical Analysis and Design for SOD Package Based on Finite Element Method
    Shi, Yuning
    Chen, Haibin
    Wu, Jingshen
    Shiu, Ivan
    Wong, Fei
    IEEE TRANSACTIONS ON COMPONENTS PACKAGING AND MANUFACTURING TECHNOLOGY, 2012, 2 (04): : 650 - 659
  • [49] Thermo-Mechanical Design Considerations in 3D-Integrated SiC Power Device Package
    McCluskey, F. Patrick
    Yun, He
    Buxbaum, Clifton Edward
    Yuruker, Sevket
    Mandel, Raphael
    Ohadi, Michael
    Park, Yongwan
    Chakraborty, Shiladri
    Khaligh, Alireza
    Boteler, Lauren
    Hinojosa, Miguel
    PROCEEDINGS OF THE NINETEENTH INTERSOCIETY CONFERENCE ON THERMAL AND THERMOMECHANICAL PHENOMENA IN ELECTRONIC SYSTEMS (ITHERM 2020), 2020, : 1374 - 1378
  • [50] Thermo-mechanical fatigue failure mechanisms and probabilistic fatigue life assessment of C/SiC composites based on GM-Bootstrap method
    Xu, Peifei
    Wang, Heng
    Wu, Jun
    Lu, Fangzhou
    Chen, Qiang
    Zhang, Peiwei
    Li, Yanbin
    Zhang, Dahai
    Zhou, Zhengong
    Fei, Qingguo
    MATERIALS TODAY COMMUNICATIONS, 2025, 44