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Effect of vacuum thermal cycling on the compression and shear performance of composite sandwich structures containing pyramidal truss cores

机译:真空热循环对含锥体桁架芯的复合夹芯结构压缩和剪切性能的影响

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Composite pyramidal-truss core sandwich panels, in which the lattice core is strengthened by reinforced frames between dispersive nodes, were manufactured via water-jet cutting and interlocking assembly. The coefficients of thermal expansion and outgassing (mass loss) ratios of the composite laminates were determined. Subsequently, the effect of vacuum thermal cycling on the compression and shear performance of the composite sandwich panels with pyramidal-truss cores was studied using theoretical and experimental methods. In particular, the out-of-plane compression stiffness and strength, as well as the shear stiffness and strength of the structures subjected to vacuum thermal cycling, were predicted using theoretical equations. The compression and shear performance improved initially and then deteriorated with an increase in the vacuum thermal cycling-time. The observed failure modes depended on the number of vacuum thermal cycles. In addition, the catastrophic response of the composite sandwich panels with pyramidal-truss cores was investigated, and their possible failure modes (including the crushing and localized buckling of composite struts) were complemented with results of analytical modeling. The truss cores collapsed mainly due to crushing and localized-buckling processes, caused by matrix outgassing and debonding of the interface between the carbon fibers and epoxy resin, after prolonged thermal cycling. (C) 2018 Elsevier Ltd. All rights reserved.
机译:通过水射流切割和互锁组件制造的复合金字塔形桁架芯夹心板中,通过分散节点之间的加强框架加强了格形芯。确定了复合层压板的热膨胀系数和除气(质量损失)比。随后,使用理论和实验方法研究了真空热循环对具有锥体桁架芯的复合夹芯板的压缩和剪切性能的影响。特别地,使用理论方程式预测了经受真空热循环的结构的面外压缩刚度和强度以及剪切刚度和强度。压缩和剪切性能最初得到改善,然后随着真空热循环时间的增加而恶化。观察到的故障模式取决于真空热循环的次数。此外,研究了具有锥体桁架芯的复合夹芯板的灾难性响应,并通过分析建模的结果来补充其可能的破坏模式(包括复合支杆的压溃和局部屈曲)。长时间热循环后,由于矩阵排气和碳纤维与环氧树脂之间的界面脱粘,导致桁架芯塌陷,主要是由于压碎和局部屈曲过程。 (C)2018 Elsevier Ltd.保留所有权利。

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