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Modeling the elastic modulus of 2D woven CVI SiC composites

机译:二维编织CVI SiC复合材料的弹性模量建模

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The use of fiber, interphase, CVI SiC minicomposites as structural elements for 2D-woven SiC fiber-reinforced chemically vapor infiltrated (CVI) SiC matrix composites is demonstrated to be a viable approach to model the elastic modulus of these composite systems when tensile loaded in an orthogonal direction. The 0 deg (loading direction) and 90 deg (perpendicular to loading direction) oriented mini-composites as well as the open porosity and excess SiC associated with CVI SiC composites were all modeled as parallel elements using simple Rule of Mixtures techniques. Excellent agreement for a variety of 2D woven Hi-Nicalon? fiber-reinforced and Sylramic-iBN reinforced CVI SiC matrix composites that differed in numbers of plies, constituent content, thickness, density, and number of woven tows in either direction (i.e, balanced weaves versus unbalanced weaves) was achieved. It was found that elastic modulus was not only dependent on constituent content, but also the degree to which 90 deg minicomposites carried load. This depended on the degree of interaction between 90 deg and 0 deg minicomposites which was quantified to some extent by composite density. The relationships developed here for elastic modulus only necessitated the knowledge of the fractional contents of fiber, interphase and CVI SiC as well as the tow size and shape. It was concluded that such relationships are fairly robust for orthogonally loaded 2D woven CVI SiC composite system and can be implemented by ceramic matrix composite component modelers and designers for modeling the local stiffness in simple or complex parts fabricated with variable constituent contents.
机译:事实证明,将纤维,相间CVI SiC微型复合材料用作2D编织SiC纤维增强的化学气相渗透(CVI)SiC基复合材料的结构元素是一种可行的方法,可以模拟在拉伸载荷下这些复合材料系统的弹性模量正交方向。使用简单的混合规则,将0度(加载方向)和90度(垂直于加载方向)取向的微型复合材料以及与CVI SiC复合材料相关的开孔率和过量SiC建模为平行元素。各种2D编织Hi-Nicalon的出色协议?获得了纤维增强和Sylramic-iBN增强的CVI SiC基复合材料,其层数,成分含量,厚度,密度和编织丝束的数量在两个方向上均不同(即,平衡编织与不平衡编织)。发现弹性模量不仅取决于成分含量,而且还取决于90度微型复合材料承受负荷的程度。这取决于90度和0度微型复合材料之间的相互作用程度,该程度在一定程度上通过复合材料密度进行了量化。此处为弹性模量建立的关系仅需要了解纤维,相间和CVI SiC的分数含量以及丝束的大小和形状。结论是,这种关系对于正交加载的2D机织CVI SiC复合材料系统是相当稳健的,并且可以由陶瓷基复合材料组件建模人员和设计人员实现,以建模具有可变成分含量的简单或复杂零件的局部刚度。

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