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Mechanical properties of triaxially braided composites: Experimental and analytical results

机译:三轴编织复合材料的机械性能:实验和分析结果

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摘要

The unnotched tensile properties of 2-D triaxial braid reinforced composites from both an experimental and an analytical viewpoint are studied. The materials are graphite fibers in an epoxy matrix. Three different reinforcing fiber architectures were considered. Specimens were cut from resin transfer molded (RTM) composite panels made from each braid. There were considerable differences in the observed elastic constants from different size strain gage and extensometer reading. Larger strain gages gave more consistent results and correlated better with the extensometer reading. Experimental strains correlated reasonably well with analytical predictions in the longitudinal, 0 degrees, fiber direction but not in the transverse direction. Tensile strength results were not always predictable even in reinforcing directions. Minor changes in braid geometry led to disproportionate strength variations. The unit cell structure of the triaxial braid was discussed with the assistance of computer analysis of the microgeometry. Photomicrographs of braid geometry were used to improve upon the computer graphics representations of unit cells. These unit cells were used to predict the elastic moduli with various degrees of sophistication. The simple and the complex analyses were generally in agreement but none adequately matched the experimental results for all the braids.
机译:从实验和分析的角度研究了二维三轴编织增强复合材料的无缺口拉伸性能。这些材料是环氧基质中的石墨纤维。考虑了三种不同的增强纤维架构。从由每个编织物制成的树脂传递模塑(RTM)复合材料板切割样品。不同尺寸的应变计和引伸计读数在观察到的弹性常数方面存在很大差异。应变计越大,得出的结果越一致,并且与引伸计读数的相关性越好。实验应变与纤维在纵向(0度)方向上的分析预测合理地相关,但在横向方向上却没有。即使在增强方向上,抗拉强度结果也不总是可预测的。编织物几何形状的微小变化导致强度变化不成比例。通过微几何学的计算机分析讨论了三轴编织物的晶胞结构。编织物几何的显微照片用于改进晶胞的计算机图形表示。这些单位单元用于预测各种复杂程度的弹性模量。简单和复杂的分析通常是一致的,但没有一个与所有辫子的实验结果完全匹配。

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