首页> 外文期刊>Philosophical transactions of the Royal Society. Mathematical, physical, and engineering sciences >Multi-scale damage modelling in a ceramic matrix composite using a finite-element microstructure meshfree methodology
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Multi-scale damage modelling in a ceramic matrix composite using a finite-element microstructure meshfree methodology

机译:使用有限元微结构无网格方法对陶瓷基复合材料进行多尺度损伤建模

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摘要

The problem of multi-scale modelling of damage development in a SiC ceramic fibre-reinforced SiC matrix ceramic composite tube is addressed, with the objective of demonstrating the ability of the finite-element microstructure meshfree (FEMME) model to introduce important aspects of the microstructure into a larger scale model of the component. These are particularly the location, orientation and geometry of significant porosity and the load-carrying capability and quasi-brittle failure behaviour of the fibre tows. The FEMME model uses finite-element and cellular automata layers, connected by a meshfree layer, to efficiently couple the damage in the microstructure with the strain field at the component level. Comparison is made with experimental observations of damage development in an axially loaded composite tube, studied by X-ray computed tomography and digital volume correlation. Recommendations are made for further development of the model to achieve greater fidelity to the microstructure.
机译:解决了SiC陶瓷纤维增强SiC基陶瓷复合管中损伤发展的多尺度建模问题,目的是证明有限元微结构无网格(FEMME)模型引入微结构重要方面的能力进入更大比例的组件模型。这些尤其是明显的孔隙率的位置,方向和几何形状,以及纤维束的承载能力和准脆性破坏行为。 FEMME模型使用通过无网格层连接的有限元和元胞自动机层,有效地将微观结构中的损伤与组件级的应变场耦合在一起。通过对X射线计算机断层扫描和数字体积相关性研究的轴向载荷复合管中损伤发展的实验观察进行了比较。提出了进一步开发模型的建议,以实现对微观结构的更高保真度。

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