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Role of pyrolysis conditions on fracture behaviour of fibre reinforced composites

机译:热解条件对纤维增强复合材料裂缝行为的作用

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Fracture response of matrix prepared by pyrolysis of polysiloxane resin used for composite reinforced by long fibres was the main goal of this contribution. A set of composites with matrix prepared by partial pyrolysis of polysiloxane resin was studied. An effect of pyrolysis temperature on the composite behaviour and fracture resistance was monitored. An optimal procedure of pyrolysis was established. Heat treatment at 1550°C in air atmosphere was conducted on fully pyrolysed matrix to explore its high temperature potential. Determination of reliable parameters characterising micr-ostructural changes in the matrix by instrumented indentation technique was used. Both optical and scanning electron microscopy was employed in microstructural observations and fracture mechanism qualification. Observation of indents and associated cracking caused by microstructural changes as well as 3D surface reconstruction using confocal microscopy was employed.
机译:通过长纤维增强的聚硅氧烷树脂热解反应通过用于复合材料的聚硅氧烷树脂制备的基质的断裂响应是这一贡献的主要目标。研究了通过部分热解的聚硅氧烷树脂制备的一组复合材料。监测热解温度对复合行为和断裂抗性的影响。建立了热解的最佳过程。在空气气氛中在1550℃下进行热处理在完全热解的基质上进行,以探索其高温电位。使用仪表化压痕技术的测定表征基质中的微核变化的可靠参数。光学和扫描电子显微镜都采用微观结构观察和断裂机制鉴定。采用微观显微镜和3D表面重建引起的缩进和相关裂缝的观察。

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