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Experimental investigation of cut-edge effect on mechanical properties of three-dimensional braided composites

机译:尖端对三维编织复合材料力学性能影响的实验研究

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摘要

Experimental characterization of the effect of cut-edge on the tensile, compressive and flexure properties in the braiding direction of the 3D braided composites is presented. The geometrical microstructure models of the uncut-edge and cut-edge composites are established for calculating the remainder lengths of braider yarns in the composites. The integrity of fiber architecture as reinforcement is destroyed for the cut-edge composites. So in order to determining the loss of the mechanical properties for the composites specimens, four schemes of cut-edge are discussed comparatively, single-edge cut on the width, single-edge cut on the thickness, both-edge cut on the width, edge cut on the thickness and width. Experimental results are coincident with the deduction based on the remainder lengths of braid yarns. The cut-edge on the width of specimen barely affects the bending properties of coupons, whereas, cut-edge on the thickness lowers the flexural modulus. The flexural modulus is reduced more when surface cut on the thickness is carrying tensile load under bending.
机译:提出了在3D编织复合材料的编织方向上尖端对拉伸,压缩和弯曲性能的影响的实验表征。建立了未切边和切边复合材料的几何微观结构模型,用于计算复合材料中编织纱的剩余长度。尖端复合材料破坏了纤维结构作为增强材料的完整性。因此,为了确定复合材料试样的机械性能损失,比较地讨论了四种切边方案:宽度上的单边切开,厚度上的单边切开,宽度上的双边切开,切边的厚度和宽度。实验结果与基于编织纱线剩余长度的推论相吻合。试样宽度上的切边几乎不会影响试样的弯曲性能,而厚度上的切边会降低弯曲模量。当在厚度上切割的表面在弯曲下承受拉伸载荷时,弯曲模量会进一步降低。

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