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具有短纤维增韧界面的复合材料夹芯梁断裂机制的实验和数值研究

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Keywords: 复合材料夹芯梁,界面增韧,短纤维,均匀分布,虚裂纹闭合技术

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Abstract:

对界面含短纤维的复合材料夹芯梁增韧特性进行了实验和数值研究。采用真空辅助树脂注射工艺制成复合材料夹芯梁,并测定了含增强与未增强复合材料夹芯梁的界面断裂韧性。基于单根短纤维在界面裂纹扩展时其剥离和拔出过程产生的能量耗散,建立了相应的细观模型。然后,假设短纤维在界面内随机均匀分布,得到在单位面积下短纤维能量耗散的宏观表达式。在宏观尺度上,建立了用于界面裂纹扩展分析的双悬臂梁有限元模型,通过引入非线性弹簧单元,以反映界面短纤维所产生的桥联特征,并采用虚裂纹闭合技术计算了裂纹尖端的能量释放率。通过典型复合材料夹芯梁断裂分析和参数讨论,证实了本文中提出的随机分布细观模型预测短纤维耗散能量的有效性。实验及数值结果表明,在复合材料夹芯结构界面中引入短纤维将是一种提高其界面断裂韧性的有效措施。

References

[1]  吴林志, 泮世东. 夹芯结构的设计及制备现状 [J]. 中国材料 进展, 2009, 28(4): 40-45. Wu Linzhi, Pan Shidong. Survey of design and manufacturing of sandwich structures [J]. Materials China, 2009, 28(4): 40-45.
[2]  Du Long, Jiao Guiqiong. Indentation study of Z-pin reinforced polymer foam core sandwich structures [J]. Composites Part A, 2009, 40(6/7): 822-829.
[3]  Potluri P, Kusak E, Reddy T Y. Novel stitch-bonded sandwich composite structures [J]. Composite Structures, 2003, 59(2):251-259.
[4]  Wang Bing, Wu Linzhi, Ma Li, et al. Fabrication and testing of carbon fiber reinforced truss core sandwich panels [J]. Journal of Materials Science & Technology, 2009, 25(4):547-550.
[5]  Mouritz A P. Review of Z-pinned composite laminates [J]. Composites Part A, 2007, 38(12): 2383-2397.
[6]  Sohn M S , Hu X Z. Mode Ⅱ delamination toughness of carbon-fibre/epoxy composites with chopped Kevlar fibre reinforcement [J]. Composites Science and Technology, 1994, 52 (3): 439-448.
[7]  Sohn M S, Hu X Z. Impact and high strain rate delamination characteristics of carbon fibre epoxy composites [J]. Theoretical and Applied Fracture Mechanics, 1996, 25(1):17-29.
[8]  孙先念, 刘书田. Z-pins对层合复合材料非对称分层增韧作用参数分析: I 型层间韧性 [J]. 复合材料学报, 2009, 26(5): 186-192. Sun Xiannian, Liu Shutian. Parametric analysis of enhancement of Z-pins on asymmetric delamination of Z-pinned laminated composites: Mode Ⅰ delamination toughness [J]. Acta Materiae Compositae Sinica, 2009, 26(5): 186-192.
[9]  Yan Wenyi, Liu Hongyuan, Mai Yiuwing. Numerical study on the mode Ⅰ delamination toughness of Z-pinned laminates [J]. Composites Science and Technology, 2003, 63(10): 1481-1493.
[10]  Huang Baozong, Hu Xiaozhi, Liu Jun. Modelling of inter-laminar toughening from chopped Kevlar fibers [J]. Composites Science and Technology, 2004, 64(13/14): 2165-2175.
[11]  Wang Can, Chen Haoran, Lei Zhenkun. Experimental investigation of interfacial fracture behavior in foam core sandwich beams with visco-elastic adhesive inteface [J]. Composite Structures, 2010, 92(5): 1085-1091.
[12]  Beaudoin James J. Handbook of fiber-reinforced concrete: Principles, properties, developments and applications [M]. New Jersey: Noyes Publications, 1990: 22-25.
[13]  Wu Xiangguo, Han Sangmook, Kim Sungwook, Kang Sutae. Shear failure load of SFR-UHPCC I-Beam without stirrup based on limit analysis of concrete plasticity [J]. Key Engineering Materials, 2006, 324/325: 491-494.
[14]  Krueger Ronald. Virtual crack closure technique: History, approach and applications [J]. Applied Mechanics Reviews, 2004, 57(2): 109-143.

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