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EFFECTIVE PROPERTY ESTIMATION OF CMC MINICOMPOSITES CONSIDERING POROSITY

机译:考虑孔隙度的CMC微复合材料的有效性能估算

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Ceramic matrix composites (CMCs) are a promising subclass of composite materials suitable for high temperature applications. CMCs exhibit multiple damage mechanisms such as matrix cracking, interphase debonding, fiber sliding, fiber pullout, delaminations etc. Additionally, process induced defects such as matrix porosity exists at multiple length scales and has a considerable influence on the mechanical and failure behavior of CMCs. In the current work, the effect ofintra-tow porosity, which exist at the micro-scale, on the mechanical behavior of CMCs has been investigated by numerical homogenization. Micro-scale response of 3 phase CMCs with intra tow pores has been obtained by finite element analysis based homogenization. Pores have been modeled as non-intersecting ellipsoids in a square unit cell representative of matrix material. The effective mechanical properties of porous matrix at the micro scale has been obtained from numerical homogenization, which are in good agreement with Mori-Tanaka mean field theory. The obtained matrix elastic properties have then been included in a three phase unit cell consisting of fiber, interphase and matrix representative of CMC micro structure. The effect of porosity volume fraction and aspect ratio on the effective elastic properties of the composite have been reported. Homogenization approach to model statistical distribution of pore size obtained from X-ray computed tomography of CMC minicomposite has been proposed.
机译:陶瓷基复合材料(CMC)是适用于高温应用的有前途的复合材料子类。 CMC具有多种破坏机制,例如基体开裂,相间脱粘,纤维滑动,纤维拉出,分层等。此外,过程引起的缺陷(例如基体孔隙率)在多个长度尺度上均存在,并且对CMC的机械性能和破坏行为具有相当大的影响。在目前的工作中,已经通过数值均化研究了微观尺度上存在的丝束内孔隙率对CMCs力学行为的影响。通过基于均质化的有限元分析已经获得了带有拖曳孔的三相CMC的微尺度响应。在代表基质材料的方形晶胞中,毛孔已被建模为非相交的椭圆体。通过数值均化已经获得了微观尺度上多孔基体的有效力学性能,这与Mori-Tanaka平均场理论非常吻合。然后将获得的基质弹性性能包含在一个三相单元格中,该单元格由代表CMC微观结构的纤维,相间和基质组成。已经报道了孔隙体积分数和纵横比对复合材料的有效弹性的影响。提出了一种均质化方法,该方法用于对从CMC小型复合材料的X射线计算机断层摄影术获得的孔径统计分布进行建模。

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