Probabilistic Strength Estimation for Ceramic-Metal Joints with Various Interlayer Thicknesses( Reliability Engineering in Materials and Structures)

Manabu Takahashi, N. Okabe, Xia Zhu, Ken-ichiro Kagawa
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引用次数: 1

Abstract

Residual stress generated by thermal expansion coefficient mismatch between ceramic and metal is an important problem affecting the strength of ceramic-metal joints. An interlayer, which is a ductile metal, is often inserted between ceramic and metal in order to relax this residual stress. In this study, the residual stress produced in the joint-cooling process is analyzed and 4-point bending tests are carried out. From the viewpoint of experimental observations and fracture mechanics, the effects of interlayer thickness on joint strength in ceramic/metal joints are discussed considering the superimposed stress distribution of the residual stress and the bending stress. Joint strength is then estimated based on fracture mechanics and fracture probability considering the superimposed stress, crack size and position of pre-existing defects in the ceramics. The optimum interlayer thickness for the present specimen is identified, and the estimation method is extended to the analysis of generic joint strength using normalized strength of ceramic by expressing joint strength in terms of normalized strength considering the scatter of joint strength and the effective volume.
不同夹层厚度陶瓷-金属连接的概率强度估计(材料与结构可靠性工程)
陶瓷与金属热膨胀系数不匹配所产生的残余应力是影响陶瓷-金属接头强度的重要问题。通常在陶瓷和金属之间插入一层具有延展性的金属夹层,以缓解这种残余应力。本文对接头冷却过程中产生的残余应力进行了分析,并进行了四点弯曲试验。从实验观察和断裂力学的角度出发,考虑残余应力和弯曲应力的叠加应力分布,讨论了层间厚度对陶瓷/金属接头接头强度的影响。然后根据断裂力学和断裂概率,综合考虑陶瓷中已有缺陷的叠加应力、裂纹尺寸和位置,估计接头强度。确定了当前试件的最佳层间厚度,并将该估计方法推广到利用陶瓷归一化强度分析一般接缝强度,将接缝强度表示为考虑接缝强度分散和有效体积的归一化强度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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