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Estimation of random field material properties for chopped fibre composites and application to vibration modelling

机译:短切纤维复合材料随机场材料特性的估计及其在振动建模中的应用

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Typically there is variability in the material and geometrical properties of fibre-reinforced composites and this variability is often spatially correlated. Numerical models can predict the response of such panels, but the spatially correlated nature of the variability must be represented within the model. However, characterising spatially correlated variability is problematic. In this study, data is first generated by an automated optical process; light transmissibility measurements are taken of a dry chopped strand mat panel. The consequent image is post-processed to describe the fibre density as a random field using the Karhunen-Loeve decomposition. Previous measurements have shown a strong correlation between the density of the mat and the tensile modulus, so the information is then used to infer the statistics of the stiffness matrix in a Finite Element model. The panel is then cut into beams, from which mobility measurements provide an ensemble of measured mobility and natural frequencies. Subsequent realisations of the random field and corresponding Finite Element model are then used to predict the statistics of the vibration response of the beams and compare well with measured statistics. The method provides an automated approach to the characterisation of spatial variability and hence the prediction of the statistics vibration response. (C) 2015 Elsevier Ltd. All rights reserved.
机译:通常,纤维增强复合材料的材料和几何特性存在可变性,并且这种可变性通常在空间上相关。数值模型可以预测此类面板的响应,但必须在模型中表示变化的空间相关性。然而,表征空间相关的可变性是有问题的。在这项研究中,数据首先是通过自动光学过程生成的;对干燥的切碎的绞合毡面板进行透光率测量。使用Karhunen-Loeve分解对结果图像进行后处理,以将纤维密度描述为随机场。先前的测量结果表明,垫子的密度与拉伸模量之间存在很强的相关性,因此该信息随后用于推断有限元模型中刚度矩阵的统计信息。然后将面板切成束,从其进行的迁移率测量可提供测量的迁移率和固有频率的整体。然后使用随机场的后续实现和相应的有限元模型来预测梁振动响应的统计数据,并将其与测得的统计数据进行比较。该方法提供了一种自动化的方法来表征空间变异性,从而预测了统计振动响应。 (C)2015 Elsevier Ltd.保留所有权利。

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