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Technical Note

Processing of Carbon Fibre Reinforced Copper Based Composites with Chromium Additions for Control of Interface Adhesion

Pages 281-284 | Published online: 19 Jul 2013

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Y. Z. Wan, Y. L. Wang, H. L. Luo & G. X. Cheng. (2000) Effect of interfacial bonding strength on thermal expansion behaviour of PM Al2O3/copper alloy composites. Powder Metallurgy 43:1, pages 76-78.
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Articles from other publishers (6)

Ambuj Saxena, Shashi Prakash Dwivedi, Nagendra Kumar Maurya & Ashish Kumar Srivastava. (2021) Investigation on mechanical properties and deformation behavior of copper-based three-phase metal matrix composite: Experimental and micro-macro-mechanical finite element analysis. Proceedings of the Institution of Mechanical Engineers, Part L: Journal of Materials: Design and Applications 235:8, pages 1850-1867.
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Walid M. Daoush, Turki S. Alkhuraiji, Moath A. Khamis & Turki S. Albogmy. (2019) Microstructure and electrical properties of carbon short fiber reinforced copper composites fabricated by electroless deposition followed by powder metallurgy process. Carbon Letters 30:3, pages 247-258.
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Sang Bok Lee, Katsuyuki Matsunaga, Yuichi Ikuhara & Sang-Kwan Lee. (2007) Effect of alloying elements on the interfacial bonding strength and electric conductivity of carbon nano-fiber reinforced Cu matrix composites. Materials Science and Engineering: A 449-451, pages 778-781.
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Y.Z. Wan, Y.L. Wang, H.L. Luo, X.H. Dong & G.X. Cheng. (2000) Effects of fiber volume fraction, hot pressing parameters and alloying elements on tensile strength of carbon fiber reinforced copper matrix composite prepared by continuous three-step electrodeposition. Materials Science and Engineering: A 288:1, pages 26-33.
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S.W. Russell, S.A. Rafalski, R.L. Spreitzer, J. Li, M. Moinpour, F. Moghadam & T.L. Alford. (1995) Enhanced adhesion of copper to dielectrics via titanium and chromium additions and sacrificial reactions. Thin Solid Films 262:1-2, pages 154-167.
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W.K. Wtosiński, W. Olesińska, K. Pietrzak & D. Kaliński. (2019) Carbon Fibre - Copper Composites Obtained by Foil Casting. Advanced Composites Letters 3:2, pages 096369359400300.
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