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Multiscale modelling of hybrid glass fibres reinforced graphene platelets polyamide PA6 matrix composites for crashworthiness applications

机译:用于耐撞性应用的混杂玻璃纤维增​​强石墨烯薄片聚酰胺PA6基复合材料的多尺度建模

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摘要

This work investigates the crashworthiness response for a hierarchical modelling of hybrid composite material consisting of short-glass fibres reinforced graphene platelets polyamide PA6 matrix. A multiscale approach, using both mean-field homogenisation and finite element FE techniques, is employed to derive the overall response. Graphene is considered as platelets GPL embedded within an elasto plastic matrix phase. The 2-phases composite response is, therefore, computed under the Mori-Tanaka micromechanics scheme by accounting for the GPL spatial orientation. The modelling of hybrid 3-phases composites consists of a hierarchical double-scale approach, which includes the 2-phases GPL/polymer composite and short glass fibres as reinforcements. Numerical characterisations involving tensile, compression, fracture toughness and Charpy impact tests enable the determination of damage/failure thresholds for crashworthiness applications. The full crash box is simulated by implementing the constitutive 3-phases composite using a user-defined Digimat/LS-DYNA linkage. Numerical results, which are compared to those from conventional steel and glass fibres composites, show the contribution of the GPL volume fraction in the improvement of the specific energy absorption SEA.
机译:这项工作调查了由短玻璃纤维增​​强的石墨烯薄片聚酰胺PA6基质组成的混合复合材料的分层建模的耐撞性响应。采用均场均化和有限元有限元技术的多尺度方法来得出整体响应。石墨烯被认为是嵌入弹性塑料基质相中的血小板GPL。因此,两相复合响应是在Mori-Tanaka微力学方案下通过考虑GPL空间方向来计算的。混合三相复合材料的建模包含一个分层的双尺度方法,该方法包括两相GPL /聚合物复合材料和短玻璃纤维作为增强材料。涉及拉伸,压缩,断裂韧性和夏比冲击试验的数值表征可以确定耐撞性应用的损坏/破坏阈值。通过使用用户定义的Digimat / LS-DYNA链接实现本构三相组合,可以模拟完整的碰撞盒。与常规钢和玻璃纤维复合材料的数值结果相比,数值结果表明GPL体积分数对提高比能吸收SEA的贡献。

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