Thermomechanical Degradation of Sintered Copper under High-Temperature Thermal Shock

被引:0
|
作者
Paret, Paul [1 ]
Bhogaraju, Sri Krishna [2 ]
Busse, Dirk [3 ]
Dahlbuedding, Alexander [3 ]
Elger, Gordon [4 ]
Narumanchi, Sreekant [1 ]
机构
[1] Natl Renewable Energy Lab, Golden, CO 80401 USA
[2] CuNex GmbH, Ingolstadt, Germany
[3] Budatec GmbH, Berlin, Germany
[4] Tech Hsch Ingolstadt, Ingolstadt, Germany
来源
PROCEEDINGS OF THE IEEE 74TH ELECTRONIC COMPONENTS AND TECHNOLOGY CONFERENCE, ECTC 2024 | 2024年
关键词
sintered copper; reliability; thermal shock; image denoising; power electronics modules; DIE ATTACHMENT; PARTICLE PASTE; RELIABILITY; PACKAGE; JOINT;
D O I
10.1109/ECTC51529.2024.00196
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
The need for reliable bonded interface materials is critical to realize the performance benefits of wide-bandgap devices in power electronics modules, especially in operating temperatures greater than 150 degrees C. In this paper, we investigate the thermomechanical performance of sintered copper (Cu) as a large-area attachment, bonded between Cu baseplates and active-metal-bonded substrates, under accelerated thermal shock (-40 degrees C to 200 degrees C) conditions. In the fabrication phase of the samples, we used different stencil patterns and found that the grid and stripe patterns resulted in a better outgassing of the residual organics during the sintering process, thereby ensuring a substantially improved bond quality compared to a full-area print. The paste consisted of Cu microflakes, and we performed sintering using a Budatec SP300 sintering press at 275 degrees C with 15 MPa of bonding pressure for 5 minutes in a nitrogen atmosphere. Under accelerated experiments, we monitored the degradation of the sintered Cu bond in the samples through C-mode scanning acoustic microscope (C-SAM) images. To quantify the defect percentage in C-SAM images, we investigated image denoising techniques to exclude the pattern prints. Finally, we cross-sectioned a sample and obtained scanning electron microscope images, which revealed adhesive fracture as the dominant failure mechanism.
引用
收藏
页码:1219 / 1224
页数:6
相关论文
共 50 条
  • [21] Room and high-temperature mechanical and thermal properties of SIC fiber-reinforced SIC composite sintered under pressure
    Yoshida, K
    Yano, T
    JOURNAL OF NUCLEAR MATERIALS, 2000, 283 : 560 - 564
  • [22] Peculiar Features of Thermal Aging and Degradation of Rapidly Quenched Stainless Steels under High-Temperature Exposures
    A. V. Shulga
    Physics of Atomic Nuclei, 2017, 80 : 1574 - 1579
  • [23] Peculiar Features of Thermal Aging and Degradation of Rapidly Quenched Stainless Steels under High-Temperature Exposures
    Shulga, A. V.
    PHYSICS OF ATOMIC NUCLEI, 2017, 80 (10) : 1574 - 1579
  • [24] HIGH-TEMPERATURE OXIDATION OF SINTERED LANTHANUM HEXABORIDE
    GOGOTSI, YG
    KOTLYAR, DA
    KRESANOV, VS
    MOROZOV, VV
    SOVIET POWDER METALLURGY AND METAL CERAMICS, 1987, 26 (11): : 914 - 917
  • [25] Experimental Study on Directional Fracturing of Granite by High-Temperature Thermal Shock
    Chao Zhang
    Zijun Feng
    Chen Mi
    Zhengnan Chen
    Rock Mechanics and Rock Engineering, 2023, 56 : 1199 - 1217
  • [26] Experimental Study on Directional Fracturing of Granite by High-Temperature Thermal Shock
    Zhang, Chao
    Feng, Zijun
    Mi, Chen
    Chen, Zhengnan
    ROCK MECHANICS AND ROCK ENGINEERING, 2023, 56 (02) : 1199 - 1217
  • [27] FRICTION AND WEAR OF SINTERED ALUMINA AT HIGH-TEMPERATURE
    SENDA, T
    TAKAHASHI, C
    UEMATSU, S
    AMADA, S
    JSME INTERNATIONAL JOURNAL SERIES III-VIBRATION CONTROL ENGINEERING ENGINEERING FOR INDUSTRY, 1992, 35 (04): : 660 - 666
  • [28] Study of Thermal Shock Resistance of Pulsed High-Temperature Equipment Refractories
    Kashcheev, I. D.
    Zemlyanoi, K. G.
    Dzerzhinskii, R. V.
    Fedotov, A. V.
    REFRACTORIES AND INDUSTRIAL CERAMICS, 2016, 57 (04) : 369 - 372
  • [29] Study of Thermal Shock Resistance of Pulsed High-Temperature Equipment Refractories
    I. D. Kashcheev
    K. G. Zemlyanoi
    R. V. Dzerzhinskii
    A. V. Fedotov
    Refractories and Industrial Ceramics, 2016, 57 : 369 - 372
  • [30] High-temperature oxidation of sintered lanthanum hexaboride
    Gogotsi, Yu.G.
    Morozov, V.V.
    Kotlyar, D.A.
    Kresanov, V.S.
    Soviet powder metallurgy and metal ceramics, 1988, 26 (11): : 914 - 917