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首页> 外文期刊>Journal of Materials Science >Effect of interface structures on the fracture behavior of two-dimensional carbon/carbon composites by isothermal chemical vapor infiltration
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Effect of interface structures on the fracture behavior of two-dimensional carbon/carbon composites by isothermal chemical vapor infiltration

机译:等温化学气相渗透对界面结构对二维碳/碳复合材料断裂行为的影响

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摘要

The interface structures and fracture behavior of the two-dimensional carbon/carbon composites by isothermal vapor infiltration have been investigated. The results show that the graphene layers exhibit long-range order in high/textured pyrocarbon matrix and are curved in about 5-nm interface region of the fiber/high-textured. Some globular nanoparticles are formed on the fiber surface and the high-textured layer about 10 nm exists in the interface of the fiber/low-textured. The graphene layers stacks are scrolled and folded in the medium-textured and they are waved together in the interface of the fiber/medium-textured. The pseudo-plastic fracture behavior of the two-dimensional carbon/carbon composites is resulted from the dominant high-textured matrix and a moderate interfacial bonding force. A strong adhesion of the fiber/low-textured and the thicker fiber increased by surrounding low-textured layer result in the increasing flexural strength. The single medium-textured and a very strong bonding force of the fiber/medium-textured lead to the brittle fracture behavior.
机译:研究了等温蒸气渗透作用下二维碳/碳复合材料的界面结构和断裂行为。结果表明,石墨烯层在高/结构化的热碳基体中表现出远距离有序,并在纤维/高结构化的约5nm界面区域弯曲。一些球形纳米颗粒形成在纤维表面上,并且大约10nm的高织构层存在于纤维/低织构的界面中。石墨烯叠层在中纹理结构中滚动并折叠,然后在纤维/中纹理结构的界面中一起波动。二维碳/碳复合材料的假塑性断裂行为是由主要的高织构基体和适度的界面结合力引起的。纤维/低纹理纤维和较粗纤维的强粘附力通过包围低纹理层而增加,导致弯曲强度增加。纤维/中等质地的单一中等质地和非常强的结合力导致脆性断裂行为。

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