Structure parameter of interfacial interaction in Cf/C composites and its change during pore formation process

Alexey Astapov, Veniamin Pogodin
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Abstract

The Cf/C composite oxidation of polyacrylonitrile-based carbon fibers with a combined carbon matrix at 600 °C up to a weight loss of 80 wt% has been investigated. The changes in the open porosity, specific surface area, apparent and true densities of the composite as well as the ultimate strength and elastic modulus during three-point transverse bending tests have been analyzed. An analytical model for obtaining qualitative and semi-quantitative estimates of the change in integral pore size during oxidation of heterophase materials has been developed. The change in pore size is estimated through the evolution of open porosity P and materials specific surface area S. The model has been validated in the Cf/C composite oxidation study. The composite's mechanical properties dependences on the value of the integral pore size are obtained and analyzed. It is shown that the structural parameter P/S characterizes the change in the interphase interaction during pores formation and growth. It is established that the destruction mechanism depends on the value of the parameter P/S and dynamically changes with the oxidation of Cf/C composite. The use of P/S parameter as a criterion for estimation and control of composite materials structural integrity in open systems is proposed.
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Cf/C复合材料界面相互作用结构参数及其在孔隙形成过程中的变化
研究了在600℃下,用复合碳基体对聚丙烯腈基碳纤维进行Cf/C复合氧化,其重量损失可达80 wt%。分析了三点横向弯曲试验中复合材料的开孔率、比表面积、表观密度和真密度以及极限强度和弹性模量的变化规律。本文建立了一种分析模型,用于对异相材料氧化过程中整体孔径的变化进行定性和半定量估计。孔径的变化通过孔隙率P和材料比表面积s的变化来估计,该模型已在Cf/C复合氧化研究中得到验证。得到并分析了复合材料的力学性能与整体孔径值的关系。结果表明,结构参数P/S表征了孔隙形成和生长过程中相间相互作用的变化。建立了破坏机理取决于参数P/S的取值,并随着Cf/C复合材料的氧化而动态变化。提出了将P/S参数作为开放系统中复合材料结构完整性估计和控制的准则。
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24
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