The Importance of the Mode II Term on the Analysis of Angled Cracks in Unidirectional Carbon Fiber Composites

Jacob Biddlecom, G. Pataky
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Abstract

Carbon fiber reinforced polymers (CFRP) have been used in many high-performance applications where strength to weight ratio is an important characteristic. The goal of this research was to analyze the effects of Mode II, also known as shear loading, on the displacement fields surrounding a crack for unidirectional carbon fiber composites. Tensile and fatigue experiments were conducted on angled unidirectional CFRP coupled with digital image correlation (DIC) to analyze the full field displacement. Angled CFRP cracks experienced mixed mode loading which required addition insight due to the complex stresses on the fiber/matrix interface. The experimental displacement fields acquired from DIC were used as inputs for an anisotropic regression analysis to determine the mode I and mode II stress intensity factor ranges. The results from the regression analysis were used to predict the displacement fields around a crack. When comparing the experimental results with the predicted results, the inclusion of Mode II increased the agreement between predicted and experimental displacement fields around a crack tip for two different fiber orientation angles. Crack growth rate analysis and analytical stress intensity factor ranges were used to expand on the agreement of the results as well as bring to light CFRP specific fracture mechanisms that lead to disagreements.
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模态II项在单向碳纤维复合材料角度裂纹分析中的重要性
碳纤维增强聚合物(CFRP)已用于许多高性能应用,其中强度与重量比是一个重要的特性。本研究的目的是分析II型载荷(也称为剪切载荷)对单向碳纤维复合材料裂纹周围位移场的影响。采用数字图像相关(DIC)技术对单向角度碳纤维布进行拉伸和疲劳试验,分析其全场位移。角度CFRP裂缝经历混合模式加载,由于纤维/基体界面上的复杂应力,这需要额外的洞察力。将DIC获得的实验位移场作为输入,进行各向异性回归分析,确定I型和II型应力强度因子范围。利用回归分析的结果对裂缝周围的位移场进行了预测。当实验结果与预测结果进行比较时,模态II的加入增加了两种不同纤维取向角下裂纹尖端周围预测位移场与实验位移场的一致性。利用裂纹扩展速率分析和分析应力强度因子范围来扩大结果的一致性,并揭示导致不一致的CFRP特定断裂机制。
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