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The Effect of Stochastically Varying Creep Parameters on Residual Stresses in Ceramic Matrix Composites

机译:随机变化蠕变参数对陶瓷基复合材料残余应力的影响

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Constituent properties, along with volume fraction, have a first order effect on the mi-croscale fields within a composite material and influence the macroscopic response. Therefore, there is a need to assess the significance of stochastic variation in the constituent properties of composites at the higher scales. The effect of variability in the parameters controlling the time-dependent behavior, in a unidirectional SCS-6 SiC fiber-reinforced R.BSN matrix composite lamina, on the residual stresses induced during processing is investigated numerically. The generalized method of cells micromechanics theory is utilized to model the ceramic matrix composite lamina using a repeating unit cell. The primary creep phases of the constituents are approximated using a Norton-Bailey, steady state, power law creep model. The effect of residual stresses on the proportional limit stress and strain to failure of the composite is demonstrated. Monte Carlo simulations were conducted using a normal distribution for the power law parameters and the resulting residual stress distributions were predicted.
机译:组成特性以及体积分数,对复合材料内的Mi-Croscale场具有第一阶效应,并影响宏观反应。因此,需要评估随机变化在较高尺度的复合材料的组成特性中的意义。在数值上研究了控制在单向SCS-6 SiC纤维增强R.BSN矩阵复合薄片的单向SCS-6 SiC纤维增强R.BSN矩阵复合薄层中的参数中的变化的影响。使用重复单元电池利用微孔微机械理论的广义方法使用重复单元细胞来模拟陶瓷基质复合薄膜。使用Norton-Bailey,稳态,电力法蠕变模型近似的成分的初级蠕变阶段。证明了残余应力对复合材料的比例极限应力和菌株的影响。 Monte Carlo模拟是使用正常分布进行电力法参数的,并预测所得到的残余应力分布。

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