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Intralayer hybridization of triaxially braided composite lamina using carbon and basalt fibers: Experimental and numerical study

机译:三轴编织复合薄膜使用碳和玄武岩纤维的杂交:实验性和数值研究

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摘要

The objective of this study is to investigate the tensile properties of hybrid triaxially braided composites of carbon and basalt fibers. Two non-hybrid preforms and two hybrid preforms were prepared using a circular braiding machine. Then, the prepared preforms were fabricated by vacuum assisted resin transfer molding. Uniaxial tensile tests were performed in longitudinal and transverse directions. Experimental results showed improved tensile moduli in longitudinal direction when carbon and basalt fibers were used as axial and braid yarns, respectively. In general, most tensile properties improved when triaxially braided carbon composite material was hybridized with basalt fibers. In addition, an attempt was made to predict the tensile behavior of triaxially braided composites using meso-scale finite element modeling. Comparison of the results showed that the current meso-scale finite element modeling could not capture the nonlinear behavior of the hybrid composites. However, the linear responses were well predicted. Therefore, possible sources of error and solutions to overcome them were discussed.
机译:本研究的目的是研究碳和玄武岩纤维的杂化三轴编织复合材料的拉伸性能。使用圆形编织机制备两个非混合预制件和两个混合预制件。然后,通过真空辅助树脂转移模塑制造制备的预制件。单轴拉伸试验在纵向和横向上进行。当碳和玄武岩纤维用作轴向和编织纱线时,实验结果表明,当碳和玄武岩纤维作为轴向和编织纱线时,沿纵向的拉伸模量。通常,当三轴编织的碳复合材料与玄武岩纤维杂交时,大多数拉伸性能改善。另外,尝试使用中间尺度有限元建模预测三轴编织复合材料的拉伸行为。结果的比较表明,目前的Meso级有限元建模不能捕获混合复合材料的非线性行为。然而,线性响应良好预测。因此,讨论了可能的误差源和克服它们的解决方案。

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