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Articles

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

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Pages 305-323 | Published online: 02 Apr 2012

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Read on this site (3)

Nisrin R. Abdelal, Mohammed H. Al-Saleh & Mohammad R. Irshidat. (2018) Utilizing Vacuum Bagging Process to Prepare Carbon Fiber/CNT-Modified-epoxy Composites with Improved Mechanical Properties. Polymer-Plastics Technology and Engineering 57:3, pages 175-184.
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Gholam Hossein Majzoobi & Farhan Khodaee. (2015) Determination of tensile and shear strengths using a new test specimen. Advances in Materials and Processing Technologies 1:1-2, pages 254-262.
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J. H. Kim, M. Shioya & M. Nakatani. (2000) Relation between interfacial shear strength and compressive strength of carbon fiber/epoxy resin composite strands. Composite Interfaces 7:5-6, pages 443-458.
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Articles from other publishers (14)

Addisu Workiye & Eyassu Woldesenbet. (2023) Flexural Strength and Porosity of NaOH-Treated Maize Stalk Cellulose-Fibers-Reinforced Geopolymer Composites. Proceedings of Engineering and Technology Innovation 25, pages 44-53.
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Jae-Hyuk Choi, Wonjin Na & Woong-Ryeol Yu. (2022) Machine learning-assisted modelling of stress concentration factor of unidirectional fiber composites for predicting their tensile strength. Modelling and Simulation in Materials Science and Engineering 31:2, pages 025001.
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Jiaming Liu, Yubo Zhang, Zhongkai Guo, Shichao Liu, Junjia Zhang, Jinchuan Jie, Ying Fu & Tingju Li. (2021) Enhancement of fiber–matrix adhesion in carbon fiber reinforced Al-matrix composites with an optimized electroless plating process. Composites Part A: Applied Science and Manufacturing 142, pages 106258.
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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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Caroline Lüders. (2020) Nonlinear-Elastic Orthotropic Material Modeling of an Epoxy-Based Polymer for Predicting the Material Behavior of Transversely Loaded Fiber-Reinforced Composites. Journal of Composites Science 4:2, pages 46.
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Ichsan Setya Putra, Bentang Arief Budiman, Poetro Lebdo Sambegoro, Sigit Puji Santosa, Andi Isra Mahyuddin, Kikuo Kishimoto & Kazuaki Inaba. (2019) The influence of fiber surface profile and roughness to fiber–matrix interfacial properties. Journal of Composite Materials 54:11, pages 1441-1452.
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W.H. Liu & L.W. Zhang. (2019) A novel XFEM cohesive fracture framework for modeling nonlocal slip in randomly discrete fiber reinforced cementitious composites. Computer Methods in Applied Mechanics and Engineering 355, pages 1026-1061.
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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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Guangbin Cai, Masashi Wada, Isamu Ohsawa, Satoshi Kitaoka & Jun Takahashi. (2019) Interfacial adhesion of recycled carbon fibers to polypropylene resin: Effect of superheated steam on the surface chemical state of carbon fiber. Composites Part A: Applied Science and Manufacturing 120, pages 33-40.
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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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Wonjin Na, Geunsung Lee, Minchang Sung & Woong-Ryeol Yu. Prediction of tensile and flexural strength of unidirectional CFRP considering the interfacial shear strength. Prediction of tensile and flexural strength of unidirectional CFRP considering the interfacial shear strength.
Geunsung Lee, Kwang Duk Ko, Young Chang Yu, Jinyong Lee, Woong-Ryeol Yu & Ji Ho Youk. (2015) A facile method for preparing CNT-grafted carbon fibers and improved tensile strength of their composites. Composites Part A: Applied Science and Manufacturing 69, pages 132-138.
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Masayuki Nakada, Yasushi Miyano, Masaya Kinoshita, Ryuju Koga, Tsuguyuki Okuya & Rokuro Muki. (2016) Time–Temperature Dependence of Tensile Strength of Unidirectional CFRP. Journal of Composite Materials 36:22, pages 2567-2581.
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