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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Anisotropic compressive properties of CNT/SiC composites produced by direct matrix infiltration of vertically aligned CNT forests
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Anisotropic compressive properties of CNT/SiC composites produced by direct matrix infiltration of vertically aligned CNT forests

机译:通过直接对齐CNT林的直接基质浸润产生的CNT / SiC复合材料的各向异性压缩性能

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摘要

Carbon nanotube-reinforced silicon carbide composites (CNT/SiC) produced by direct infiltration of matrix into a porous CNT arrays have been demonstrated to possess a unique microstructure and excellent micro-mechanical properties. Here, the study reports on the anisotropic compressive behavior of vertically aligned CNT-reinforced SiC composites (VACNT/SiC) produced by chemical vapor infiltration (CVI) of SiC matrix into the VACNT forests. Findings demonstrate that the longitudinal and transverse compressive strengths of VACNT/SiC specimens with a density of 1.54 g/cm(3) are 160 +/- 16 and 41 +/- 3 MPa, respectively. No matter which compressive mode they all exhibit a typical ductile failure with a similar load-displacement behavior but the stress concentration level of the transverse compression is lower than that of the longitudinal. The mechanisms describing the enhanced strength of these composites were clarified by examining the morphologies of fracture surfaces under scanning electron microscope. CNT pull-out, bridging, sequential breaking, and slippage of the walls of the CNT during failure were consistently observed in all fractured specimens. (C) 2017 Elsevier B.V. All rights reserved.
机译:通过直接渗透到多孔CNT阵列中产生的碳纳米管增强的碳化硅复合材料(CNT / SiC)已经证明了具有独特的微观结构和优异的微机械性能。这里,研究报告了通过SiC基质的化学蒸汽渗透(CVI)产生的垂直对齐的CNT增强SiC复合材料(VACNT / SiC)的各向异性压缩行为进入VACNT林。结果表明,密度为1.54g / cm(3)的纵向和横向压缩强度分别为1.54g / cm(3)为160 +/- 16和41 +/- 3MPa。无论哪种压缩模式,它们都表现出具有类似的负载位移行为的典型的延展性故障,但横向压缩的应力浓度水平低于纵向的应力浓度水平。通过检查扫描电子显微镜下裂缝表面的形态来阐明描述这些复合材料的增强强度的机制。在所有裂缝标本中一直观察到CNT壁的CNT拉出,桥接,顺序断裂和滑动和滑动。 (c)2017年Elsevier B.V.保留所有权利。

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