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Mechanical Properties of High-Strength Carbon Fibres.Effect of Surface Treatments

机译:高强度碳纤维的力学性能。表面处理的影响

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The present contribution deals with the use of different models accounting for the mechanical response of high-strength carbon fibres. In particular, analytical models based on Weibull type of statistical distributions will be employed to analyse the dependence of the strength of carbon fibres on length. This dependence is relevant for interpreting the results of conventional fragmentation tests, which are traditionally performed to characterise the level of fibre/matrix adhesion in fibre reinforced composites. The objective of this work is to compare alternative models, such as the so-called “end-effect” model, for determining the tensile strength of carbon fibres at small gauge lengths. To validate these models, tensile tests were performed with five different high strength, ex-PAN, carbon fibres: a fresh, untreated sample, and four samples which were prepared after submitting the previous one to various surface treatments. Specifically, plasma oxidation was carried out under three different conditions of power and/or time of exposure. A sample oxidised by the manufacturer, presumably using an electrochemical treatment, was also included. Results showed that the end-effect model represents well the behaviour of the untreated and plasma treated under the mildest conditions carbon fibres. Overall, all treatments tend to decrease the tensile strength of the fibres, with the commercial treatment being the most damaging when compared to any of the plasma treatments carried out.
机译:本贡献涉及使用不同模型核算高强度碳纤维的机械响应。特别地,将采用基于Weibull类型的统计分布的分析模型来分析碳纤维强度在长度上的依赖性。这种依赖性与解释常规碎裂试验的结果,传统上是为了表征纤维增强复合材料中的纤维/基质粘附水平。这项工作的目的是比较替代模型,例如所谓的“终效”模型,用于确定小规格长度下碳纤维的拉伸强度。为了验证这些模型,用五种不同的高强度,外平锅,碳纤维进行拉伸试验:新鲜,未处理的样品和在将前一个表面处理后制备的四种样品进行制备。具体地,在三种不同的功率和/或暴露时间条件下进行等离子体氧化。还包括制造商氧化的样品,推测使用电化学处理。结果表明,终效模型代表了在最阳热条件下处理的未处理和血浆的行为。总体而言,所有治疗往往会降低纤维的拉伸强度,商业治疗是与所进行的任何血浆治疗相比最损害。

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