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Thermo-oxidative induced shrinkage in Organic Matrix Composites for High Temperature Applications: Effect of fibre arrangement and oxygen pressure

机译:高温应用中有机基复合材料的热氧化诱导收缩:纤维排列和氧气压力的影响

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The present paper focuses on thermo-oxidative induced chemical shrinkage in HTS/TACTIX carbon/epoxy Organic Matrix Composites for High Temperature Applications, providing an insight on the effect of the fibre arrangement and of the oxygen pressure as an accelerating parameter. In particular, measurement of matrix shrinkage in composites surface is carried out by Interferometric Microscopy for virgin samples (initial state) and for samples aged under oxygen pressure and air at atmospheric pressure: some discussion about the "structural" effect (arrangement of fibres, fibre volume fraction) on matrix shrinkage development of unidirectional composites is provided; a link between the measured surface matrix shrinkage and the evolution of the surface elastic indentation modulus measured in pure resin samples can be clearly established: moreover, it is shown that matrix shrinkage development in composites can be conveniently accelerated by the employment of oxygen pressure, as in pure resin systems. (C) 2016 Elsevier. Ltd. All rights reserved.
机译:本文重点研究了高温应用的HTS / TACTIX碳/环氧树脂有机基复合材料中的热氧化诱导的化学收缩,从而深入了解了纤维排列的影响以及作为加速参数的氧气压力。尤其是,对于原始样品(初始状态)以及在氧气压力和空气中处于大气压力下老化的样品,通过干涉显微术对复合材料表面的基体收缩进行测量:关于“结构”效应(纤维,纤维的排列)的一些讨论提供了单向复合材料的基体收缩率发展;可以清楚地建立所测量的表面基体收缩率与在纯树脂样品中测量的表面弹性压痕模量的演变之间的联系:此外,还表明,利用氧气压力可以方便地加速复合材料中基体收缩的发展,因为在纯树脂体系中。 (C)2016爱思唯尔。有限公司。保留所有权利。

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