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Investigating the feasibility of a new testing method for GFRP/polymer foam sandwich composites used in railway passenger vehicles

机译:调查铁路乘用车用于GFRP /聚合物泡沫夹层复合材料的新试验方法的可行性

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This paper investigates the feasibility and validity of a recently proposed testing method when applied to foam core sandwich composites to determine the impact resistance of train car body shells. The published method proved itself useful when applied to monolithic fibre reinforced plastic laminates, however, further analysis is required if sandwich composites are used due to the subtle differences compared to monolithic laminates. It is especially important for the front nose section of high-speed trains as these car body parts can be subjected to ballast flight at high impact velocities. Due to the aerodynamic design aspects, front nose sections generally incorporate complex 3D geometries, and sandwich composite materials are advantageous in this respect due to the ease of manufacturing of complex 3D shapes. Quasi-static punch tests (QSPT) were performed on E-glass fibre/epoxy resin/PET foam core sandwich plates. Numerical finite element model (FEM) was developed and validated with experiments in terms of penetration resistance and structural damage. Numerical model was used to investigate three railway impact related standards and high-velocity impact parameters (energy transfer, contact force, projectile velocity) were analysed for each case. Additionally, the foreseeable contribution of this work to the railway industry was given from multiple aspects.
机译:本文研究了最近提出的测试方法的可行性和有效性,当施加到泡沫芯夹层复合材料以确定火车车身壳的抗冲击性。本出现的方法证明了当应用于单片纤维增强塑料层压板时,本身可用,如果使用与单片层压板相比的微妙差异使用夹层复合材料,则需要进一步分析。对于高速列车的前鼻部截面尤其重要,因为这些车身部件可以在高冲击速度下进行镇流器飞行。由于空气动力学设计方面,前鼻部通常包含复杂的3D几何形状,并且由于复杂3D形状的易于制造,夹层复合材料在这方面是有利的。在E-玻璃纤维/环氧树脂/ PET泡沫芯夹芯板上进行准静态冲击试验(QSPT)。在渗透性抗性和结构损伤方面,开发了数值有限元模型(FEM)并验证了实验。数值模型用于调查三种铁路撞击相关标准,对每种情况的分析高速冲击参数(能量转移,接触力,射弹速度)。此外,从多个方面给出了这项工作对铁路行业的可预见贡献。

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