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Analytical modeling and finite element simulation of the plastic collapse of sandwich beams with pin-reinforced foam cores

机译:销钉泡沫芯夹芯梁塑性塌陷的分析模型和有限元模拟

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Analytical predictions ire presented for the plastic collapse strength of lightweight sandwich beams having pin-reinforced foam cores that are loaded in 3-point bending. Both polymer and aluminum foam Cores ire considered, whilst the facesheet and the pins are made of either composite or metal. Four different failure modes are account for: metal facesheet yield or composite facesheet microbuckling, facesheet wrinkling, plastic shear of the core, and facesheet indentation beneath the loading rollers. A micromechanics-based model is developed and combined with the homogenization approach to Calculate the effective properties of pin-reinforced foam cores. To Calculate the elastic buckling strength of pin reinforcements, the pin-reinforced foam core is treated as assemblies Of simply supported Columns resting upon an elastic foundation. Minimum mass design of the sandwich is then obtained as a function of the prescribed Structural load index, subjected to the constraint that none of the above failure Modes occurs. Collapse mechanism maps are constructed and compared with the failure maps of foam-cored sandwich beams without pin reinforcements. Finite element simulations are carried Out to verify the analytical model and to Study the performance and failure mechanisms of the sandwich subject to loading types other than 3-point bending. The results demonstrate that the weaker the foam is, the more optimal the pin-reinforced foam core becomes, and that sandwich beams with pin-reinforced polymer foam cores are Structurally more efficient than foam- or truss-cored sandwich beams.
机译:对于具有销增强的泡沫芯的轻质夹芯梁的塑性破坏强度的分析预测,三点弯曲加载。不考虑使用聚合物和铝泡沫芯,而面板和插销则由复合材料或金属制成。造成四种不同的失效模式:金属面板的屈服或复合面板的微屈曲,面板的起皱,型芯的塑性剪切以及加载辊下方的面板压痕。建立了基于微力学的模型,并与均质化方法相结合来计算销增强泡沫芯的有效性能。为了计算销钉增强件的弹性屈曲强度,将销钉增强的泡沫芯视为位于弹性基础上的简单支撑柱的组合。然后,根据规定的结构载荷指数获得三明治的最小质量设计,并受上述任何失效模式都不发生的约束。构造倒塌机制图,并将其与没有销钉增强的泡沫芯夹心梁的破坏图进行比较。进行了有限元模拟,以验证分析模型,并研究三点弯曲以外的载荷类型下三明治结构的性能和破坏机理。结果表明,泡沫越弱,销钉增强的泡沫芯变得越理想,并且带有销钉增强的聚合物泡沫芯的夹层梁在结构上比泡沫或桁架芯的夹心梁更有效。

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