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Bistable composite laminates: Effects of laminate composition on cured shape and response to thermal load

机译:双稳态复合层压板:层压板组合物对固化形状和热负荷响应的影响

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摘要

This paper develops a finite element (FE) approach using commercial ANSYS V11.0 software to accurately predict the cured shape of bistable composites by including the influence of manufacturing imperfections, such as resin rich areas and ply-thickness variations. Laminate composition was characterised by optical microscopy and their cured shapes measured using a Peak Motus motion analysis system. The FE model accurately predicts observed differences between laminate curvature in the two stable states. Localised reversal of curvature resulting from through-thickness shear stress is also predicted. Structural response to thermal loading was experimentally characterised showing a temperature dependent deflection rate and a residual curvature caused by non-reversible residual stresses. FE-predictions show good agreement with experiment over the range 20-110 ℃. The presented data highlights the importance of manufacturing processes and materials selection in the design of thermally stressed multi-stable composite structures.
机译:本文开发了一种使用商用ANSYS V11.0软件的有限元(FE)方法,通过包括制造缺陷(例如树脂富集区域和层厚度变化)的影响来准确预测双稳态复合材料的固化形状。通过光学显微镜表征层压组合物,并使用Peak Motus运动分析系统测量其固化形状。 FE模型准确地预测了在两种稳定状态下层压板曲率之间观察到的差异。还可以预测厚度方向的切应力导致的局部曲率反转。实验表征了对热负荷的结构响应,显示出温度依赖性的挠曲率和不可逆残余应力引起的残余曲率。在20-110℃的温度范围内,有限元预测与实验显示出良好的一致性。呈现的数据突出了在热应力多稳态复合结构设计中制造工艺和材料选择的重要性。

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