用于多功能复合材料的碳/钢纤维混合预制体的干纤维放置

IF 1.8 Q3 ENGINEERING, MANUFACTURING
Florian Kühn, Jan Rehra, D. May, S. Schmeer, P. Mitschang
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引用次数: 9

摘要

将钢纤维(SF)集成到碳纤维(CF)增强聚合物复合材料(CFRPC)中,可以在提高导电性的同时保持优异的机械性能,因为SF还有助于提高承载能力。由于其高延展性,也可以提高能量吸收和结构完整性。在本研究中,开发并验证了基于干纤维放置(DFP)的混合碳/SF预成形工艺。研究内容包括:粘接SF粗纱的生产,通过在CF- ncf上对铺展和非铺展SF粗纱进行DFP生产混合预制品,以及通过真空辅助树脂注入(VARI)生产混合层压板。通过显微图像和力学拉伸试验来评价层合板的质量。处理未铺展的顺丰粗纱可获得更高的顺丰体积含量和更均匀的预坯顺丰层(富基质区更少)。与铺开的SF粗纱相比,未铺开的SF粗纱样品中更均匀的SF层导致试样在拉伸载荷下具有更高的刚度和强度,因此效果最好。图形抽象
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dry fiber placement of carbon/steel fiber hybrid preforms for multifunctional composites
Abstract Integration of steel fibers (SF) in carbon fiber (CF) reinforced polymer composites (CFRPC) allows improvement of electrical conductivity while maintaining excellent mechanical properties, since SF also contribute to the load-carrying capacity. Due to their high ductility, also energy absorption and structural integrity can be improved. Within this study, a preforming process for hybrid carbon/SF preforms based on dry fiber placement (DFP) is developed and validated. The investigations cover the production of bindered SF rovings, the production of hybrid preforms via DFP of spread and nonspread SF rovings on CF noncrimp fabrics (CF-NCF) as well as the production of hybrid laminates via vacuum-assisted resin infusion (VARI). The laminate quality was evaluated by microscopic images and mechanical tensile testing. A higher SF volume content within the SF areas and more homogeneous SF layers in the preform (fewer matrix-rich zones) were achieved by processing nonspread SF rovings. The more homogeneous SF layers within the samples with nonspread SF rovings compared to spread SF rovings led to higher stiffness and strength of the specimens for tension loadings and therefore to best results. Graphical Abstract
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来源期刊
CiteScore
4.00
自引率
0.00%
发文量
11
审稿时长
16 weeks
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