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Experimental Characterisation of Parameters Controlling the Compressive Failure of Pultruded Unidirectional Carbon Fibre Composites

机译:拉挤单向碳纤维复合材料压缩失效的参数实验表征

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The classical kink-band formation models predict that the compressive strength of UD carbon fibre reinforced composite materials (UD CFRP) is governed by fibre misalignment as well as of the mechanical shear properties. A new image analysis procedure for experimental determination of the fibre misalignment, the Fourier transform misalignment analysis (FTMA), has been developed. Moreover, a modified asymmetric Iosipescu test specimen geometry has been developed and validated for accurate measurement of the composite material shear properties without parasitic effects due to axial splitting. In the test procedure the shear strain distribution is measured using Digital Image Correlation (DIC) and the results calibrated based on FEA modelling results. Using the measured properties as input, the predictions of the classic compressive strength models have been compared with measured compressive strengths. Finally, an alternative approach to the classical kink band equilibrium has been proposed and demonstrated to provide more accurate predictions than the classical models.
机译:经典的扭结结构模型预测UD碳纤维增强复合材料(UD CFRP)的抗压强度受纤维未对准以及机械剪切性能的控制。开发了一种新的图像分析程序,用于实验纤维未对准,傅里叶变换错位分析(FTMA)。此外,已经开发并验证了改进的不对称iosipescu试样几何形状,以精确测量复合材料剪切特性而没有由于轴向分裂而没有寄生效应。在测试过程中,使用数字图像相关(DIC)测量剪切应变分布,并且基于FEA建模结果校准结果。使用测量的属性作为输入,将经典压缩强度模型的预测与测量的抗压强度进行了比较。最后,已经提出了一种替代方法,已经提出了典型的扭结频带均衡,并证明了比经典模型更准确的预测。

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