Behavioral Studies on Multi-Directionally Reinforced 4-D Orthogonal Composites on Various Preform Configurations

The main advantage of multidirectionally reinforced composites is the freedom to orient selected fiber types and hence derives the benefits of varying fibre volume fractions and there by accommodate the design loads of the final structure of composites. This technology provides the means to produce tailored composites with desired properties. Due to the high level of fibre integrity with through thickness reinforcement those composites are expected to exhibit superior load bearing characteristics with capability to carry load even after noticeable and apparent fracture. However, a survey of published literature indicates inadequacy in the design and test data base for the complete characterization of the multidirectional composites. In this paper the research objective is focused on the development and testing of 4-D orthogonal composites with different preform configurations and resin systems. A preform is the skeleton 4D reinforced composite other than the matrix. In 4-D performs fibre bundles are oriented in three directions at 1200 with respect to each other and they are on orthogonal plane with the fibre in 4th direction. This paper addresses the various types of 4-D composite manufacturing processes and the mechanical test methods followed for the material characterization. A composite analysis is also made, experiments on course and fine woven preforms are conducted and the findings of test results are discussed in this paper. The interpretations of the test results reveal several useful and interesting features. This should pave the way for more widespread use of the perform configurations for allied applications.





References:
[1] Wei Chou, Frank K KO, "Textile structural Composites”, TSU Elsevier Science & Technology books, volume 3, 1989.
[2] Lawrence E. McAllister, Walter L.Lachman, "Multidirectional Carbon-Carbon Composites, Fabrication of Composites”, Hand Book of Composites vol.4. 1983.
[3] John D. Buckley, Dan D. Edie, "Carbon-Carbon Materials and Composites”, 1993.
[4] L. Tong, AP. Mourtz, M.Bannister, "3-D Fibre Reinforced Polymer composites”, Elsevier Science Limited, 2002.
[5] G. Savage, Chapman & Hall, Carbon-Carbon Composites, G. Savage, Chapman & Hall 1993.
[6] Engineered Materials hand Book, Volume 1, Composites, and ASM International 1987.