FINITE-ELEMENT ANALYSIS OF THERMAL RESIDUAL-STRESSES AT GRADED CERAMIC-METAL INTERFACES .2. INTERFACE OPTIMIZATION FOR RESIDUAL-STRESS REDUCTION

被引:124
作者
DRAKE, JT
WILLIAMSON, RL
RABIN, BH
机构
[1] Idaho National Engineering Laboratory, EG and G Idaho Inc., Idaho Falls, ID 83415-2218
关键词
D O I
10.1063/1.354911
中图分类号
O59 [应用物理学];
学科分类号
摘要
An elastic-plastic finite element method numerical model previously developed (see Part I of this article) for predicting thermal residual stresses at graded ceramic-metal interfaces has been applied to determine interface conditions favorable for achieving residual stress reductions. Using Al2O3-Ni as a model system, and for a fixed specimen geometry, a study was performed to investigate the effects of different interlayer thicknesses and nonlinear composition profiles on strain and stress distributions established during cooling from an assumed elevated bonding temperature. For each interface condition, relative stress reductions were evaluated by comparing the magnitude of specific stress and strain components important for controlling interface failure with those predicted for a sharp (nongraded) interface. For the geometry considered, stress was reduced by thick graded interlayers and nonlinear composition profiles that distributed the largest property changes over the interlayer region having low elastic modulus and high plasticity. In contrast to the Part I results for a linear composition profile, the optimized interlayer condition effectively reduced the peak near-surface axial stress component.
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页码:1321 / 1326
页数:6
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