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Hygro-thermo-mechanical modelling of multilayered plates: Hybrid composite laminates, fibre metal laminates and sandwich plates

机译:多层板的湿热力学建模:混合复合材料层压板,纤维金属层压板和夹心板

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摘要

A new layerwise mixed model is developed for the coupled hygro-thermo-mechanical static analysis of multilayered plates, addressing hybrid composite laminates, fibre metal laminates and sandwich plates under hygro-thermo-mechanical loadings. This model is based on a mixed least-squares formulation, i.e. a strong form model, with a layerwise variable description for displacements, transverse stresses and in-plane strains, along with temperature, transverse heat flux and in-plane components of the thermal gradient, as well as moisture, transverse moisture flux and in-plane components of the moisture gradient, all taken as independent variables. This mixed formulation ensures that the interlaminar C-0 continuity requirements, where the material properties change, are fully fulfilled a priori by all independent variables. The effects of hygrothermal environments in the behaviour of multilayered plates are here demonstrated considering hybrid composite laminates, fibre metal laminates and sandwich plates with different side-to-thickness ratios under a series of hygro-thermo-mechanical loadings. Three-dimensional (3D) exact solutions are used to assess the results by the present model and some further by an alternative weak form model in the framework of Carrera Unified Formulation (CUF). The present model is shown to predict a highly accurate quasi-3D hygro-thermo-mechanical description of the through-thickness distributions of displacements and stresses, temperature and heat flux, moisture and moisture flux, all together.
机译:开发了一种新的分层混合模型,用于多层板的湿热力学静态耦合分析,解决了湿热机械载荷下的混合复合材料层压板,纤维金属层压板和夹心板。该模型基于混合的最小二乘公式,即强形式模型,具有位移,横向应力和面内应变以及温度,横向热通量和热梯度面内分量的分层变量描述,以及水分,横向水分通量和水分梯度的平面内分量,均作为独立变量。这种混合配方可确保所有自变量完全满足先验条件,即层间C-0连续性要求(材料性能发生变化)。湿热环境对多层板性能的影响在此证明了在一系列湿热机械载荷作用下,混合复合层压板,纤维金属层压板和夹心板的边厚比不同。三维(3D)精确解用于在Carrera统一公式化(CUF)框架下通过当前模型评估结果,并通过替代弱形式模型进一步评估结果。本模型显示可预测位移和应力,温度和热通量,湿气和湿气通量的全厚度分布的高度精确的准3D湿热机械描述。

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