Effects of cure cycle pressure and voids on some mechanical properties of carbon/epoxy laminates

P. Olivier, J.P. Cottu, B. Ferret
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引用次数: 291

Abstract

The effects of various curing pressures (resulting in different void contents) on some mechanical properties of carbon/epoxy laminates have been examined. Thermogravimetry and mechanical spectrometry were used to determine the initial water content of prepregs and the dependence of viscosity on temperature. The pressure conditions were defined with respect to these preliminary test results. A set of curing pressure routes was then designed to produce unidirectional laminates with void contents between 0.3 and 10 vol%. The mechanical properties of unidirectional laminates depend on the void content and this results in the determination of an optimal curing pressure route which involves minimizing the void content, while the mechanical properties are kept at their maximum level. To allow generalization of the experimental results, this study has been performed on two different composite materials.

固化循环压力和空隙对碳/环氧复合材料力学性能的影响
研究了不同的固化压力(导致不同的孔隙含量)对碳/环氧复合材料某些力学性能的影响。采用热重法和力学光谱法测定了预浸料的初始含水量和粘度随温度的变化关系。根据这些初步试验结果确定了压力条件。然后设计了一套固化压力路线,以生产孔隙含量在0.3至10 vol%之间的单向层压板。单向层压板的力学性能取决于孔隙含量,这就需要确定一个最佳的固化压力路线,其中包括最小化孔隙含量,同时保持力学性能在其最高水平。为了使实验结果一般化,本研究在两种不同的复合材料上进行。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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