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Synchrotron radiation computed tomography for experimental validation of a tensile strength model for unidirectional fibre-reinforced composites

机译:同步辐射计算机断层摄影术,用于单向纤维增强复合材料拉伸强度模型的实验验证

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摘要

Synchrotron radiation computed tomography has been used to analyse fibre break accumulation in unidirectional composites loaded in tension. The data are compared to model predictions. The model only slightly overestimated the composite failure strain, but predictions of fibre break density were too high, which can be mainly attributed to errors in the Weibull distribution. Both the number and percentage of interacting fibre break clusters were under-predicted by the model. This was attributed to an underestimation of stress concentrations in the model. While the experimental observations revealed mainly co-planar clusters, the model predicted mainly diffuse clusters. The experiments showed that the clusters did grow any further after their formation, while the model predicted a gradual development. Both local and dynamic stress concentrations were hypothesised to be key features for further exploration. The discrepancies identified, inform suggestions for directions advancing the state-of-the-art strength models of UD composites.
机译:同步辐射计算机断层摄影术已用于分析纤维在单向复合材料中的断裂积累。将数据与模型预测进行比较。该模型仅略微高估了复合材料的破坏应变,但是对纤维断裂密度的预测过高,这主要归因于威布尔分布中的误差。该模型未充分预测相互作用的纤维断裂簇的数量和百分比。这归因于模型中应力集中的低估。虽然实验观察结果显示主要是共面的星团,但模型预测的主要是弥散星团。实验表明,簇在形成后确实没有进一步增长,而模型预测了渐进的发展。假设局部和动态应力集中都是进一步探索的关键特征。识别出的差异为推进UD复合材料最新强度模型的方向提供了建议。

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