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Relation between interfacial shear strength and compressive strength of carbon fiber/epoxy resin composite strands

Pages 443-458 | Published online: 02 Apr 2012

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Srinivas Nunna, Anil R. Ravindran, Jens Mroszczok, Claudia Creighton & Russell J. Varley. (2023) A review of the structural factors which control compression in carbon fibres and their composites. Composite Structures 303, pages 116293.
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Aleksandra M. Pawlak, Tomasz Górny, Łukasz Dopierała & Piotr Paczos. (2022) The Use of CFRP for Structural Reinforcement—Literature Review. Metals 12:9, pages 1470.
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Masayoshi Ido, Tsukasa Arai & Masatoshi Shioya. (2020) Viscoelastic Characteristics in Fragmentation Tests of Carbon Fiber and Glass Fiber Reinforced Polypropylene Composites炭素繊維及びガラス繊維強化ポリプロピレン複合材料のフラグメンテーション試験における粘弾性挙動. Journal of the Japan Society for Composite Materials 46:5, pages 204-211.
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Masayoshi Ido, Ryohei Kimura, Haruki Kobayashi & Masatoshi Shioya. (2019) Fatigue Mechanism Analysed Based on the Changes in Microstructure and Axial Compression Strength of a Poly(<i>p</i>-phenylene-2,6-benzobisoxazole) Fiber. Journal of Fiber Science and Technology 75:12, pages 186-192.
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Masatoshi Shioya. (2019) Basic of the Elastic and Fracture Behavior for Thermoplastic Composites熱可塑性複合材料の弾性特性・破壊特性の基礎. Seikei-Kakou 31:6, pages 222-225.
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Wonjin Na, Geunsung Lee, Minchang Sung, Heung Nam Han & Woong-Ryeol Yu. (2017) Prediction of the tensile strength of unidirectional carbon fiber composites considering the interfacial shear strength. Composite Structures 168, pages 92-103.
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Masatoshi Shioya. (2016) Analysis on Fracture Behavior of High Strength Fibers Using Micromechanical Testsマイクロメカニカルテストによる高強度繊維の破壊特性の解析. Seikei-Kakou 28:9, pages 352-356.
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