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中等应变率下单向玻璃纤维增强环氧树脂基复合材料的剪切本构关系
Shear constitutive relationship of unidirectional glass fiber reinforced epoxy composites under intermediate strain rate

DOI: 10.13801/j.cnki.fhclxb.20170601.001

Keywords: 中等应变率,单向玻璃纤维增强环氧树脂基复合材料,剪切性能,本构关系,参数识别
intermediate strain rate
,unidirectional glass fiber reinforced epoxy composites,shear property,constitutive relationship,parameters identification

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[1]  GOWTHAM H L, POTHNIS J R, RAVIKUMAR G, et al. High strain rate in-plane shear behavior of composites[J]. Polymer Testing, 2013, 32(8):1334-1341.
[2]  汪洋, 夏源明. 不同应变率下Kevlar纤维束拉伸力学性能的实验研究[J]. 复合材料学报, 1999, 16(1):45-51. WANG Yang, XIA Yuanming. Experimental study on tensile mechanical properties of kevlar fiber bundles under different strain rate[J]. Acta Materiae Compositae Sinica, 1999, 16(1):45-51(in Chinese).
[3]  曾智, 李玉龙, 郭亚洲, 等. 两种典型铺层玻璃纤维复合材料的拉伸力学行为[J]. 航空材料学报, 2013, 33(3):74-80. ZENG Zhi, LI Yulong, GUO Yazhou, et al. Tension mechanical behavior of two angle-ply of glass-fiber reinforced composites[J]. Journal of Aeronautical Materials, 2013, 33(3):74-80(in Chinese).
[4]  MEDINA J L, HARDING J. The effect of strain rate on the through-thickness tensile stiffness and strength properties of fiber-reinforced epoxy composites[J]. Journal de Physique IV, 2000:275-280.
[5]  DANIEL I M, ISHAI O. Engineering mechanics of composite materials[M]. Oxford:Oxford University Press, 1994, 170-175.
[6]  ZHU D, RAJAN S D, MOBASHER B, et al. Modal analysis of a servo-hydraulic high speed machine and its application to dynamic tensile testing at an intermediate strain rate[J]. Experimental Mechanics, 2011, 51(8):1347-1363.
[7]  MACARTHY M, XIAO J, PETRINICN, et al. Modelling of bird strike on an aircraft wing leading edge made from fibre metal laminates Part 1:Material modeling[J]. Applied Composite Materials, 2004, 11(5):295-315.
[8]  HARDING J. Effect of strain rate and specimen geometry on the compressive strength of woven glass-reinforced epoxy laminates[J]. Composites, 1993, 24(4):323-332.
[9]  WELSH L M, HARDING J. Effect of strain rate on the tensile failure of woven reinforced polyester resin composites[J]. Journal de Physique, 1985, 46(8):405-414.
[10]  HALLETT S R, RUIZ C, HARDING J. The effect of strain rate on the interlaminar shear strength of a carbon/epoxy cross-ply laminate:Comparison between experiment and numerical prediction[J]. Composites Science & Technology, 1999, 59(5):749-758.
[11]  PARDO S, BAPTISTE D, DéCOBERT F, et al. Tensile dynamic behaviour of a quasi-unidirectonal E-glass/polyester composite[J]. Composites Science & Technology, 2002, 62(4):579-584.
[12]  RYOU H, CHUNG K, LIM J H. Mechanical analysis of woven composites at high strain rates and its application to predicting impact behavior[J]. Metals and Materials International, 2008, 14(6):679-687.
[13]  TSAI J L, SUN C T. Strain rate effect on in-plane shear strength of unidirectional polymeric composites[J]. Compo-sites Science & Technology, 2005, 65(13):1941-1947.
[14]  HAYES S, ADAMS D. Rate sensitive tensile impact properties of fully and partially loaded unidirectional composites[J]. Journal of Testing & Evaluation, 1982, 10(2):61-68.
[15]  HSIAO H M, DANIEL I M. Strain rate behaviour of composite materials[J]. Composites Part B:Engineering, 1998, 29(5):521-533.
[16]  董立民, 夏源明. 纤维束的冲击拉伸实验研究[J]. 复合材料学报, 1990, 7(4):11-17. DONG Limin, XIA Yuanming. Experimental study on impact tensile of fiber beams[J]. Acta Materiae Compositae Sinica, 1990, 7(4):11-17(in Chinese).
[17]  ZHEN W, YUAN J, XIA Y. A dynamic Monte-Carlo simulation for unidirectional composites under tensile impact[J]. Composites Science & Technology, 1998, 58(3):487-495.
[18]  WANG Z, XIA Y M. Experimental evaluation of the strenth distribution of fibers under high strain rates by bimodal weibull distribution[J]. Composites Science and Technology, 1997, 57(12):1599-1607.
[19]  WANG W B, SHENOI R A. Investigating high strain rate behaviour of unidirectional composites by a visco-elastic model[J]. Journal of Ship Mechanics, 2009, 13:406-415.
[20]  王正浩, 赵桂平, 马君峰, 等. 碳/环氧树脂复合材料应变率效应的实验研究[J]. 复合材料学报, 2007, 24(2):113-119. WANG Zhenghao, ZHAO Guiping, MA Junfeng, et al. Experiment study on the strain rate behavior of carbon/epoxy composite materials[J]. Acta Materiae Compositae Sinica, 2007, 24(2):113-119(in Chinese).
[21]  余海东, 郭永进. 基于Khan-Huang模型高强度钢DP600率相关特性实验与本构模型研究[J]. 固体力学学报, 2008, 29(2):200-204. YU Haidong, GUO Yongjin. Study on the rate-dependent experiment and constitutive model of high strength steel DP600 based on Khan-Huang model[J]. Chinese Journal of Solid Mechanics, 2008, 29(2):200-204(in Chinese).
[22]  KAWATA K, HASHIMOTO S, TAKEDA N. Mechanical behaviours in high velocity tension of composites[C]. ICCM-Ⅳ. Progress in Sceince and Engineering of Composites, Tokyo, 1982:829-836.
[23]  OKOLI O I. The effects of strain rate and failure modes on the failure energy of fibre reinforced composites[J]. Compo-site Structures, 2001, 54(2):299-303.
[24]  WANG W, MAKAROV G, SHENOI R A. An analytical model for assessing strain rate sensitivity of unidirectional composite laminates[J]. Composite Structures, 2005, 69(1):45-54.
[25]  BROWN K A, BROOKS R, WARRIOR N A. The static and high strain rate behaviour of a commingled E-glass/polypropylene woven fabric composite[J]. Composites Science & Technology, 2010, 70(2):272-283.
[26]  SHOKRIEH M M, OMIDI M J. Investigation of strain rate effects on in-plane shear properties of glass/epoxy composites[J]. Composite Structures, 2009, 91(1):95-102.
[27]  SHOKRIEH M M, MOSALMANI R, OMIDI M J. A strain-rate dependent micromechanical constitutive model for glass/epoxy composites[J]. Composite Structures, 2015, 121:37-45.
[28]  蒋邦海, 张若棋. 一种碳纤维织物增强复合材料的层间冲击拉伸力学性能实验研究[J]. 复合材料学报, 2005, 22(5):107-112. JIANG Banghai, ZHANG Ruoqi. Experimental study on the interlaminar tensile properties for a kind of carbon fiber woven reinforced composite under impact loading[J]. Acta Materiae Compositae Sinica, 2005, 22(5):107-112(in Chinese).
[29]  王礼立, 董新龙, 孙紫建. 高应变率下计及损伤演化的材料动态本构行为[J]. 爆炸与冲击, 2006, 26(3):193-198. WANG Lili, DONG Xinlong, SUN Zijian. Dynamic constitutive behavior of material at high strain rate taking account of damage evolution[J]. Explosion and Shock Waves, 2006, 26(3):193-198(in Chinese).
[30]  杨俊杰, 沈军, 张密林. 聚合物基复合材料动态拉伸力学性能研究进展[J]. 纤维复合材料, 2009, 4(43):43-46. YANG Junjie, SHEN Jun, ZHANG Milin. Study on the dynamic tensile mechanical performance of fiber reinforced composites with polymer matrix[J]. Fiber Composites, 2009, 4(43):43-46(in Chinese).

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