Damage behavior evaluation of thermoplastic resin based CF/PA6 laminate composites with fiber discontinuity

被引:0
|
作者
Koyanagi K. [1 ]
Kitamura R. [2 ]
Matsuba A. [3 ]
Kouno Y. [4 ]
Nakatani H. [5 ]
Sakai T. [6 ]
Ogihara S. [2 ]
机构
[1] Department of Mechanical Engineering, Graduate School of Science and Technology, Tokyo University of Science, Yamazaki, Noda
[2] Department of Mechanical Engineering, Faculty of Science and Technology, Tokyo University of Science, Yamazaki, Noda
[3] Eastern Region Industrial Research Center, Hiroshima Prefectural Technology Research Institute, Higashifukatsu-cho, Fukuyama
[4] Western Region Industrial Research Center, Hiroshima Prefectural Technology Research Institute, Agaminami, Kure
[5] Department of Mechanical and Physical Engineering, Osaka City University, Sumiyoshi-ku, 558-8585, Osaka
[6] Graduate School of Science and Engineering, Saitama University, Sakura-ku, 338-8570, Saitama
关键词
Acoustic Emission; Damage growth; Delamination; Fiber discontinuity; Laminate composites; Thermoplastic resin;
D O I
10.2472/jsms.65.561
中图分类号
学科分类号
摘要
The tensile tests of the unidirectional CFRP laminate composites (CF/PA6) with fiber discontinuity were performed, and mechanical properties were obtained. The laminate stacking sequence of the specimens is [024], and the specimens have fiber discontinuity of 6, 12 and 18 layers. And, the damage growth behaviors were investigated by microscopic observation and acoustic emission (AE) monitoring. Furthermore, the delamination onset stresses were predicted by the simple analysis model. As a result, the stress-strain curves showed nonlinear behavior, and nonlinear starting points became early with increase of the fiber discontinuity layers. It is found that the initial damage of the specimen was the crack between fiber discontinuity end/resin interface by microscopic observation and AE monitoring. And, the delamination between continuous/discontinuous ply around the resin occurred. After that, the resin at the fiber discontinuity was broken at the time of maximum applied stress, then the delamination grew extensively in the specimen, finally the specimens was broken. In addition, the delamination onset stresses were predicted by analysis model using energy release rate, and these stresses were almost agree with experimental values. ©2016 The Society of Materials Science.
引用
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页码:561 / 566
页数:5
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