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Mechanical behavior of novel sandwich composite panels based on 3D-knitted spacer fabrics

机译:基于3D编织间隔织物的新型夹芯复合板的力学性能

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摘要

In the present work, the mechanical performance of novel sandwich composite panels based on 3D-knitted spacer fabrics has been investigated. Composite panels were produced using three different types of spacer fabrics having different structural parameters. The sandwich panels were fabricated based on an unsaturated polyester resin using a modified vacuum-assisted resin transfer molding process which allowed the formation of low-density core structures. The produced sandwich composite panels were characterized for flexural, compressive, and impact properties. The effect of different fabric structural parameters (such as cross-thread density, linear density of yarn used in face and core, and structure of face) on the processability and mechanical behavior of composite panels has been thoroughly investigated. The results showed that the composite panels based on spacer fabrics having lesser cross-thread density and made of coarser yarns performed better with respect to compressive and impact properties, whereas the best flexural properties were obtained in case of spacer fabrics with high cross-thread density and made of finer yarns.
机译:在本工作中,已经研究了基于3D编织间隔织物的新型三明治复合板的机械性能。使用具有不同结构参数的三种不同类型的间隔织物生产复合板。夹层板是使用改进的真空辅助树脂传递模塑工艺基于不饱和聚酯树脂制造的,该工艺可以形成低密度的芯结构。所生产的夹芯复合板具有弯曲,压缩和冲击性能。充分研究了不同织物结构参数(例如,交叉线密度,面和芯中使用的纱线的线密度和面的结构)对复合板的可加工性和机械性能的影响。结果表明,基于交叉线密度较小的间隔织物并由较粗的纱线制成的复合板在压缩和冲击性能方面表现更好,而在交叉线密度较高的间隔织物中获得最佳的挠曲性能并由细纱制成。

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