A SERVICE OF

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OVERVIEW OF TEXTILES
2-35
2.22 M.S. Dadkhah, J.G. Flintoff, T. Kniveton, and B.N. Cox, "Simple Models for Triaxially Braided
Composites," Composites 26, 91-102 (1995).
2.23 B.N. Cox, M.S. Dadkhah, R.V. Inman, and W.L. Morris, "Mechanisms of Compressive Failure
in 3D Composites," Acta Metall. Mater. 40, 3285-98 (1992).
2.24 B.N. Cox, M.S. Dadkhah, W.L. Morris and J.G. Flintoff, "Failure Mechanisms of 3D Woven
Composites in Tension, Compression, and Bending," Acta Metall. Mater. 42, 3967-84 (1994).
2.25 A. K. Roy, “In Situ Damage Observation and Failure in Model Laminates Containing Planar Yarn
Crimping of Woven Composites,” Mechanics of Composite Materials and Structures, in press..
2.26 M. S. Dadkhah, B. N. Cox, and W. L. Morris, "Compression-Compression Fatigue of 3D Woven
Composites," Acta Metall. Mater. 43[12], 4235-45 (1995).
2.27 D.E. Newland, "An Introduction to Random Vibrations and Spectral Analysis," 2nd Ed., John
Wiley and Sons, New York (1984).
2.28 W.S. Slaughter and N.A. Fleck, "Microbuckling of Fiber Composites with Random Initial Fiber
Waviness," J. Mech. Phys. Solids, in press.
2.29 S.K. Sharma, and B.V. Sankar, “Visualization of a Unit Cell of 3-D Braided Composite Plate,”
Quarterly Progress Report for the period January - March, 1993, NASA Mechanics of Textiles
Working Group, pp 93-95.
2.30 V. Chen, McDonnell-Douglas Aircraft Co., Long Beach, California, 1990.