首页> 外文期刊>Journal of Materials Science >DAMAGE CHARACTERIZATION OF TWO-DIMENSIONAL WOVEN AND THREE-DIMENSIONAL BRAIDED SIC-SIC COMPOSITES
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DAMAGE CHARACTERIZATION OF TWO-DIMENSIONAL WOVEN AND THREE-DIMENSIONAL BRAIDED SIC-SIC COMPOSITES

机译:二维编织和三维编织SiC-SIC复合材料的损伤表征

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A comprehensive investigation of the room temperature behaviour of two-dimensional woven and three-dimensional braided SiC-SiC composites fabricated by the chemical vapour infiltration route has been conducted. A morphological study of the residual porosity in the composites revealed the existence of primarily two populations of pores: small intrayarn pores and larger interyarn pores. The sizes and the shapes of the two types of pores depended largely on the fibre architecture; the two step braided composite in which the majority of the fibre yarns were orientated along the axial direction exhibited the smallest pore size. The pore size and shapes in turn influenced the onset of damage in the composites under tensile loading. Damage was found to be initially matrix dominated, thus being essentially independent of the fibre architecture. At higher stress levels, however, fibre dominated damage prevailed. Unlike the tensile behaviour, where damage led to non-linearity in the stress-strain curve, the compressive behaviour of the composites was linear elastic almost up to failure. The off-axis tensile properties as well as compression after tension behaviour of the two-dimensional woven composites were also investigated. The information obtained from these tests provides the basis for the modelling of damage in these materials. [References: 13]
机译:对通过化学气相渗透途径制备的二维机织和三维编织SiC-SiC复合材料的室温行为进行了全面研究。复合材料中残余孔隙率的形态研究表明,主要存在两种孔:小纱内孔和大纱间孔。两种类型的孔的大小和形状在很大程度上取决于纤维结构。其中大部分纤维纱线沿轴向取向的两步编织复合材料具有最小的孔径。孔的尺寸和形状反过来影响了复合材料在拉伸载荷下的破坏开始。发现损坏最初是基体控制的,因此基本上与光纤结构无关。但是,在较高的应力水平下,纤维占主导地位的损坏占了上风。与拉伸行为不同,在拉伸行为中,损伤导致应力-应变曲线呈非线性,而复合材料的压缩行为几乎是线性弹性,直至断裂。还研究了二维机织复合材料的离轴拉伸性能以及拉伸行为后的压缩。从这些测试中获得的信息为这些材料的损坏建模提供了基础。 [参考:13]

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