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Effects of stochastic tow waviness on stiffness and strength of plain-weave ceramic matrix composites

机译:随机牵引波纹度对平纹陶瓷基复合材料刚度和强度的影响

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摘要

This article presents the development of a finite element model, which considers stochastic tow waviness using a Markov Chain algorithm and non-linear material properties using Binary Model, to predict the stress–strain and fracture behaviour of plain-weave ceramic matrix composites under uniaxial extension. The stochastic waviness is described by fluctuations in the centroid coordinates of tow positioning. The tow deviations are generated by marching sequentially from one grid point to next along a tow path. The deviations depend only on the deviation of the previous point using a probability transition matrix. A non-linear orthotropic constitutive model was implemented in a commercial finite element code Abaqus using a user-defined subroutine. Two 2 × 2 unit cell models of a plain-weave ceramic matrix composite laminate are created using stochastic tow elements generated by the virtual specimen generator, which was developed on the basis of the Markov Chain algorithm. A comparison has been made between the systematic and stochastic models to assess the effects of stochastic tow waviness on the stiffness and strength of the laminate. The numerical results have been validated by the comparison of predictions with the experimental data. The stochastic model which considers random waviness correlates well with the experimental data.
机译:本文介绍了有限元模型的开发,该模型考虑了使用Markov链算法的随机丝束起伏和使用二元模型的非线性材料特性,以预测单轴拉伸下平纹陶瓷基复合材料的应力-应变和断裂行为。 。随机波动是通过拖曳位置的质心坐标的波动来描述的。拖曳偏差是通过沿着拖曳路径从一个网格点到下一个网格点顺序前进而产生的。使用概率转换矩阵,偏差仅取决于先前点的偏差。使用用户定义的子例程在商业有限元代码Abaqus中实现了非线性正交各向异性本构模型。利用基于Markov Chain算法的虚拟样本生成器生成的随机拖曳元素,创建了平纹陶瓷基复合材料层压板的两个2××2晶胞模型。在系统模型和随机模型之间进行了比较,以评估随机拖曳波纹度对层压板的刚度和强度的影响。通过将预测结果与实验数据进行比较,验证了数值结果。考虑随机波动的随机模型与实验数据具有很好的相关性。

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