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Characterization and analysis of in-plane shear behavior for glass warp knitted non-crimp fabrics based on bias extension experiment

机译:基于偏置延伸实验的玻璃翘曲针织非压接织物面内剪切行为的表征及分析

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摘要

In this article, the in-plane shear rigidity modulus of five commercially available fabrics of glass warp knitted non-crimp fabrics (WKNCFs) was experimentally investigated by uniaxial bias extension test (UBE). The aim was to characterize and compare the shear behavior of relatively high areal density fabrics, while these fabrics could have good potential to be widely used in the composites field. In this work, five fabrics were included: a uni-directional, 2 bi-axial, and 2 tri-axial fabrics. To characterize the shear properties, stress equations were established to deliver the in-plane modulus of shear rigidity as a function to shear angle. The fabric structure of uni-axial or multi-axial had a different influence on the shear resistance mechanics along with the influence of the stitching pattern; both were also presented in the comparison of deformation mechanisms. It was found that the shear behavior of all five fabrics was dissimilar to each other.
机译:在本文中,通过单轴偏置延伸试验(UBE)实验研究了五种市售玻璃经线针织非卷曲织物(WKNCFS)的平面内剪切刚性模量。目的是表征和比较相对较高的面密度织物的剪切行为,而这些织物可以具有良好的潜力可广泛用于复合材料场。在这项工作中,包括五种织物:单向,2双轴和2个三轴织物。为了表征剪切性能,建立应力方程以将剪切刚度的面内模量作为剪切角度。单轴或多轴的织物结构对剪切电阻力学的影响不同,以及缝合图案的影响;两者也呈现在变形机制的比较中。结果发现,所有五种织物的剪切行为彼此不同。

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