書誌事項

Advances in fiber composite materials

edited by Takehito Fukuda, Zenichiro Maekawa, Toru Fujii

(Current Japanese materials research, vol. 12)

Elsevier, 1994

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注記

Includes bibliographical references and index

内容説明・目次

内容説明

Each chapter in this book provides a review in the field of polymer matrix composites (PMC) research emphasizing various points of view of mechanics, chemistry, applied mathematics and materials science. It is divided into four sections. Section I is devoted to fundamental aspects of damage and fracture. A new statistical method is proposed for the estimation of fiber orientation in short fiber reinforced composites. Matrix crack opening displacement in cross-ply laminates is theoretically calculated. Experimental evidences are shown for an intimate relation between surface treatment of graphite fibers and the fracture of their composites. An exhaustive observation of damage in quasi-isotropic laminates is done using a scanning acoustic microscope. A devised test procedure for evaluating creep damage proves the versatility of acoustic emission monitoring. In section II, material degradation due to fatigue in PMC's is focused on. A procedure is given for the prediction of fatigue life of GF composites subject to various random load patterns. The mechanism of delamination fatigue crack growth in UD-CF is studied from a fractography point of view. Experimental evidence shows that the fatigue life of PMC's are affected by the unloading duration as well as the loading one. Section III on design looks at optimum laminate configuration based on reliability and the development of computer codes for the design of composite structures. The last section covers fiber surface treatment and sizing agents on various composite properties, SMC moulding and surface finishing after cutting.

目次

  • Part 1 Mechanical behaviour and fracture: mechanical behaviour of fiber reinforced composites with complex fiber orientation, Z. Maekawa et al
  • matrix crack opening displacement in cross-ply composite laminates, S. Motogi et al
  • fracture mechanism for high-modulus pitch-based CFRP, E. Tsushima et al
  • investigation of the fracture mechanism in aramid/epoxy composites and damage evaluation with a scanning acoustic microscope, K. Komai et al
  • acoustic emission monitoring of the progress of damage during a short-term creep test on notched plain woven E-glass/epoxy composites, T. Uenoya. Part 2 Fatigue: fatigue design with composites, T. Tanimoto
  • fractography of the delamination fatigue crack growth in CFRP laminates, M. Hojo and K. Tanaka
  • effect of the wave profile in pulse loading on the fatigue of plastics reinforced by plain woven glass fabric, S. Amijima et al. Part 3 Design: optimum laminate configuration for fibrous composites based on reliability, M. Miki et al
  • development of a computer program for the design of composite structures, M. Zako and T. Tsujikami. Part 4 Manufacturing: surface treatment of carbon fiber and its effect on the interfacial strength between a fiber and the matrix resin, Y. Nakanishi and K. Fujita
  • die design procedure and its application to SMC moulding, T. Hirai
  • study on the surface finish after cutting glass fiber reinforced plastics, H. Inoue and T. Yuge.

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