为探究Kevlar 49单束的尺寸效应及应变率敏感性,首先,利用MTS万能试验机对不同标距(25、50、100、150、200和300 mm)的Kevlar 49单束进行了准静态(应变率为1/600 s-1)拉伸测试;然后,利用Instron落锤冲击系统对标距为25 mm的试样进行了动态(应变率为40~160 s-1)拉伸测试;最后,利用Weibull模型进行统计分析,量化了不同标距和应变率下Kevlar 49单束拉伸强度的随机变化程度.结果表明:Kevlar 49单束的拉伸力学性能与标距和应变率有相关性;拉伸强度随标距的增加而减小,但随应变率的增加而增大;峰值应变和韧性均随标距和应变率的增加而减小;提取的Weibull参数可用于数值模拟及工程应用.
参考文献
[1] | Jian-Guo Dai;Yu-Lei Bai;J. G. Teng.Behavior and Modeling of Concrete Confined with FRP Composites of Large Deformability[J].Journal of composites for construction,20116(6):963-973. |
[2] | V. Fiore;G. Di Bella;A. Valenza.Glass-basalt/epoxy hybrid composites for marine applications[J].Materials & design,20114(4):2091-2099. |
[3] | 汪洋;夏源明.不同应变率下Kevlar49纤维束拉伸力学性能的实验研究[J].复合材料学报,1999(1):45-51. |
[4] | Yang Wang;Yuanming Xia.The effects of strain rate on the mechanical behaviour of kevlar fibre bundles: an experimental and theoretical study[J].Composites, Part A. Applied science and manufacturing,199811(11):1411-1415. |
[5] | D. Zhu;B. Mobasher;J. Erni.Strain rate and gage length effects on tensile behavior of Kevlar 49 single yarn[J].Composites, Part A. Applied science and manufacturing,201211(11):2021-2029. |
[6] | Zhu, D.;Rajan, S.D.;Mobasher, B.;Peled, A.;Mignolet, M..Modal Analysis of a Servo-Hydraulic High Speed Machine and its Application to Dynamic Tensile Testing at an Intermediate Strain Rate[J].Experimental Mechanics,20118(8):1347-1363. |
[7] | Xiao XR.Dynamic tensile testing of plastic materials[J].Polymer Testing,20082(2):164-178. |
[8] | J. Sharda;C. Deenadayalu;B. Mobasher;S. D. Rajan.Modeling of Multilayer Composite Fabrics for Gas Turbine Engine Containment Systems[J].Journal of Aerospace Engineering,20061(1):38-45. |
上一张
下一张
上一张
下一张
计量
- 下载量()
- 访问量()
文章评分
- 您的评分:
-
10%
-
20%
-
30%
-
40%
-
50%