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Assessing Static and Dynamic Response Variability due to Parametric Uncertainty on Fibre-Reinforced Composites

机译:评估由于纤维增强复合材料的参数不确定性引起的静态和动态响应变化

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Composite structures are known for their ability to be tailored according to specific operating requisites. Therefore, when modelling these types of structures or components, it is important to account for their response variability, which is mainly due to significant parametric uncertainty compared to traditional materials. The possibility of manufacturing a material according to certain needs provides greater flexibility in design but it also introduces additional sources of uncertainty. Regardless of the origin of the material and/or geometrical variabilities, they will influence the structural responses. Therefore, it is important to anticipate and quantify these uncertainties as much as possible. With the present work, we intend to assess the influence of uncertain material and geometrical parameters on the responses of composite structures. Behind this characterization, linear static and free vibration analyses are performed considering that several material properties, the thickness of each layer and the fibre orientation angles are deemed to be uncertain. In this study, multivariable linear regression models are used to model the maximum transverse deflection and fundamental frequency for a given set of plates, aiming at characterizing the contribution of each modelling parameter to the explanation of the response variability. A set of simulations and numerical results are presented and discussed.
机译:复合结构因其能够根据特定的操作要求进行定制而闻名。因此,在对这些类型的结构或组件进行建模时,重要的是要考虑它们的响应可变性,这主要是由于与传统材料相比,参数不确定性很大。根据某些需求制造材料的可能性为设计提供了更大的灵活性,但同时也带来了更多的不确定性来源。无论材料和/或几何变化的起源如何,它们都会影响结构响应。因此,重要的是尽可能地预测和量化这些不确定性。通过目前的工作,我们打算评估不确定材料和几何参数对复合结构响应的影响。在此表征的背后,考虑到几种材料特性,每层的厚度和纤维取向角被认为是不确定的,进行线性静态和自由振动分析。在这项研究中,多变量线性回归模型用于对给定板组的最大横向挠度和基频进行建模,旨在表征每个建模参数对响应变异性解释的贡献。提出并讨论了一组仿真和数值结果。

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