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LONGITUDINAL AND TRANSVERSE MODULI AND STRENGTHS OF LOW ANGLE 3-D BRAIDED COMPOSITES

机译:低角度3-D编织复合材料的纵向和横向模量及强度

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This paper presents the results of an experimental study conducted on a class of three-dimensional braided graphite-epoxy composites as well as the results of a modeling study to relate the microstructural variables such as volume fraction of fibers and braid angles to the anisotropic elastic moduli and strengths of these composites. In the experimental program, composite samples with a range of volume fractions (0.2-0.45) and a range of braid angles (0 degrees-30 degrees) were produced and tested in simple compression in both longitudinal and transverse directions. Such data is currently unavailable in literature on a single material system. Extreme care was taken in processing to minimize porosity and non-homogenieties in microstructure, and in proper strain gaging to ensure the reliability and reproducibility of our measurements. In the modeling study, the measured elastic moduli were compared against the currently employed isotrain and isostress models for these materials. At the present time, it is widely reported in literature that the predictions of isostrain model are fairly accurate. This study revealed that the isostrain model predictions can be in significant error and that a weighted average of the isostrain and isostress model predictions yielded the best comparisons against the experiments. For the strength of the composite in the longitudinal and transverse directions, correlations expressing these properties as a function of volume fraction and braid angle were motivated by micromechanics and experimental observations. The predictive capability of these correlations for the selected class of 3-D braided composites was found to be reasonable. [References: 17]
机译:本文介绍了对一类三维编织石墨-环氧树脂复合材料进行的实验研究结果,以及将微观结构变量(如纤维的体积分数和编织角)与各向异性弹性模量相关联的建模研究结果。和这些复合材料的强度。在实验程序中,生产了具有一定范围的体积分数(0.2-0.45)和一定范围的编织角(0度至30度)的复合样品,并在纵向和横向上进行了简单压缩。目前在单一材料系统的文献中尚无此类数据。在加工过程中要格外小心,以最大程度地减少微观结构中的孔隙率和非均匀性,并采取适当的应变计以确保我们测量的可靠性和可重复性。在建模研究中,将测得的弹性模量与这些材料的当前等值线和等应力模型进行了比较。目前,在文献中广泛报道了等渗模型的预测是相当准确的。这项研究表明,等应变模型的预测可能存在重大误差,并且等应变模型和等应力模型预测的加权平均值得出了与实验的最佳比较。对于复合材料在纵向和横向上的强度,通过微力学和实验观察来激发将这些性能表示为体积分数和编织角的函数。发现这些相关性对选定类别的3-D编织复合材料的预测能力是合理的。 [参考:17]

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