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Articles

Effect of Graphite with and Without Copper Coating on Consolidation Behaviour and Sintering of Copper–Graphite Composite

Pages 201-206 | Published online: 19 Jul 2013

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Yiran Wang, Yimin Gao, Jun Takahashi, Yi Wan, Xiangdong He, Yunqian Zhang, Bing Xiao & Chao Zhang. (2020) The study of microstructure characterization: Cu modified Cu-Ni-graphite composite. Composite Interfaces 27:3, pages 249-262.
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N. Vijaya Sai, M. Komaraiah & A. V. Sita Rama Raju. (2008) Preparation and Properties of Sintered Copper–Tin Composites Containing Copper Coated or Uncoated Fly Ash. Materials and Manufacturing Processes 23:7, pages 651-657.
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Articles from other publishers (38)

Baoqiang Hou, Nanlong Zhang, Qiang Zhi, Xiaonan Zhou, Bo Wang & Jianfeng Yang. (2023) Role of Cr-carbide Coating on Graphite Particles in the Mechanical and Wear Behavior of Graphite/Copper Composites. Tribology Letters 72:1.
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Aref Mazloum, Jaroslav Kováčik, Štefan Emmer & Igor Sevostianov. (2022) Copper–graphite composites: Cross-property connections between electrical conductivity and thermal expansion coefficient for 0–90 vol% of graphite. Mathematics and Mechanics of Solids, pages 108128652211177.
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Cong Liu, Yanguo Yin, Congmin Li, Ming Xu, Rongrong Li & Qi Chen. (2022) Tailoring Cu nano Bi self-lubricating alloy material by shift-speed ball milling flake powder metallurgy. Journal of Alloys and Compounds 903, pages 163747.
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Cong Liu, Yanguo Yin, Congmin Li, Ming Xu, Rongrong Li & Qi Chen. (2022) Preparation and properties of lead-free FeS/Cu-Bi composites by flake powder metallurgy via shift-speed ball milling. Advanced Powder Technology 33:5, pages 103545.
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Jinyi Wu, Yanchun Zhou, Jingyang Wang, Wei Wang & Chengke Yan. (2022) Interfacial reaction between Cu and Ti 2 SnC during processing of Cu–Ti 2 SnC composite . International Journal of Materials Research 96:11, pages 1314-1320.
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S. Shakibhamedan, S. Sheibani & A. Ataie. (2020) High Performance Cu Matrix Nanocomposite Fabricated Through Spark Plasma Sintering of Cu and Cu-Coated CNT. Metals and Materials International 27:10, pages 4271-4285.
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S. Shakibhamedan, N. Kiani & S. Sheibani. (2020) Kinetic study on the copper electroless coating on carbon nanotubes. Diamond and Related Materials 108, pages 107987.
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Xiaofang Jiang, Junjie Song, Shuna Chen, Yunfeng Su, Hengzhong Fan, Yongsheng Zhang & Litian Hu. (2020) In-situ fabricated bulk metallic glass/graphite composites with a 3D lubricating layer: Tribological properties under dry sliding and in seawater. Tribology International 148, pages 106301.
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Rutie Liu, Kai Cheng, Jie Chen, Xiang Xiong & Xueyang Lin. (2020) Friction and wear properties of high temperature and low temperature sintered copper-graphite brushes at different ambient temperatures. Journal of Materials Research and Technology 9:4, pages 7288-7296.
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Yiran Wang, Yimin Gao, Jun Takahashi, Yi Wan, Mengting Li, Bing Xiao, Yunqian Zhang & Xiangdong He. (2020) Investigation of modification of Cu-Ni-graphite composite by silver. Materials Chemistry and Physics 239, pages 121990.
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Yiran Wang, Yimin Gao, Jun Takahashi, Yi Wan, Bing Xiao, Yunqian Zhang, Xiangdong He & Jun Li. (2019) Titanium-modified graphite reinforced Cu-Ni composite by multi-arc ion plating technology. Vacuum 168, pages 108829.
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Kai Cheng, Rutie Liu, Xiang Xiong, Xueyang Lin & Jie Chen. (2019) The Effect of Sintering Temperature on the Microstructures and Properties of Resin-Bonded Copper–Graphite Brush Materials. Tribology Letters 67:3.
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Xiaoyang Wang & Hongqiang Ru. (2019) Effect of Lubricating Phase on Microstructure and Properties of Cu–Fe Friction Materials. Materials 12:2, pages 313.
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Xiaofang Jiang, Junjie Song, Yunfeng Su, Yongsheng Zhang & Litian Hu. (2018) Novel Design of Copper–Graphite Self-Lubricating Composites for Reliability Improvement Based on 3D Network Structures of Copper Matrix. Tribology Letters 66:4.
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ZiCheng Ling, Xiang Xu, Peng Liu, Cui Xia Yan & Qing Nan Shi. (2018) Effects of cobalt content on the microstructural and mechanical/electrical properties of graphene reinforced copper matrix composites. Materials Research Express 5:7, pages 076511.
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Abdollah Saboori, Mehran Dadkhah, Paolo Fino & Matteo Pavese. (2018) An Overview of Metal Matrix Nanocomposites Reinforced with Graphene Nanoplatelets; Mechanical, Electrical and Thermophysical Properties. Metals 8:6, pages 423.
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Abdollah Saboori, Seyed Moheimani, Mehran Dadkhah, Matteo Pavese, Claudio Badini & Paolo Fino. (2018) An Overview of Key Challenges in the Fabrication of Metal Matrix Nanocomposites Reinforced by Graphene Nanoplatelets. Metals 8:3, pages 172.
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Y.P. Deepthi & M. Krishna. (2018) Optimization Of Electroless Copper Coating Parameters On Graphite Particles Using Taguchi And Grey Relational Analysis. Materials Today: Proceedings 5:5, pages 12077-12082.
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Abdollah Saboori, Matteo Pavese, Claudio Badini & Paolo Fino. (2017) A Novel Approach to Enhance the Mechanical Strength and Electrical and Thermal Conductivity of Cu-GNP Nanocomposites. Metallurgical and Materials Transactions A 49:1, pages 333-345.
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G.C. Yao, Q.S. Mei, J.Y. Li, C.L. Li, Y. Ma, F. Chen & M. Liu. (2016) Cu/C composites with a good combination of hardness and electrical conductivity fabricated from Cu and graphite by accumulative roll-bonding. Materials & Design 110, pages 124-129.
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A. Demir. (2016) Fabrication and Characterisation of Bronze Pads and Comparison with Commercial Bronze Pads. Acta Physica Polonica A 129:4, pages 880-882.
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Bunyod Allabergenov & Sungjin Kim. (2013) Investigation of electrophysical and mechanical characteristics of porous copper-carbon composite materials prepared by spark plasma sintering. International Journal of Precision Engineering and Manufacturing 14:7, pages 1177-1183.
Crossref
Bunyod Allabergenov, Oybek Tursunkulov, Soo Jeong Jo, Amir Abidov, Christian Gomez, Sung Bum Park & Sungjin Kim. 2012. Advances in Sintering Science and Technology II. Advances in Sintering Science and Technology II 151 161 .
Thomas Hutsch, Thomas Schubert, Thomas Weissgaerber & Bernd Kieback. (2012) Graphite metal composites with tailored physical properties. Emerging Materials Research 1:2, pages 107-114.
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Li Li Duan & Xu Ran. (2012) Tribological Properties and Wear Mechanism of Copper-Graphite Composite. Advanced Materials Research 472-475, pages 618-621.
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Huijun Yang & Ruiying Luo. (2011) Effect of coal tar pitch modified by sulfur as a binder on the mechanical and tribological properties of bronze-impregnated carbon-matrix composites. Materials Science and Engineering: A 528:6, pages 2929-2935.
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Liu Ru-Tie, Xiong Xiang, Chen Fu-Sheng, Lu Jin-zhong, Hong Li-Ling & Zhang Yi-Qing. (2011) Tribological performance of graphite containing tin lead bronze?steel bimetal under reciprocal sliding test. Tribology International 44:2, pages 101-105.
Crossref
Anil Kumar, Mandeep Kaur, Rajeev Kumar, Pinaki Ranjan Sengupta, Vasantha Raman, Gopal Bhatia & Kedar Nath Sood. (2009) Development of pitch-based carbon?copper composites. Journal of Materials Science 45:5, pages 1393-1400.
Crossref
Lixin Xia, Guangye Liu, Jian Wang & Song Luo. (2009) Facile synthesis of micron-sized hollow copper spheres with ZSM-5 molecular sieve as a template. Journal of Raman Spectroscopy 40:8, pages 876-880.
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Shi Guo Du, Jun Yan, Hai Ping Cui & Xian Jie Liu. (2007) Preparation of Copper Particles Coated with Amorphous Titania. Key Engineering Materials 336-338, pages 2655-2657.
Crossref
Jun Yan, Jian Zheng Yi, Hai Ping Cui, Xin Kang Du & Jian Jiang Wang. (2007) Study of the Technology of Chemical Copper Plating on Al-CuO Agglomerated Powders. Key Engineering Materials 280-283, pages 591-592.
Crossref
Jinyi Wu, Yanchun Zhou, Jingyang Wang, Wei Wang & Chengke Yan. (2005) Interfacial reaction between Cu and Ti 2 SnC during processing of Cu-Ti 2 SnC composite . Zeitschrift f?r Metallkunde 96:11, pages 1314-1320.
Crossref
G.P. Ling & Y. Li. (2005) Influencing factors on the uniformity of copper coated nano-Al2O3 powders prepared by electroless plating. Materials Letters 59:13, pages 1610-1613.
Crossref
Paula Queipo, Marcos Granda, Ricardo Santamarı́a & Rosa Menéndez. (2004) Preparation of pitch-based carbon–copper composites for electrical applications. Fuel 83:11-12, pages 1625-1634.
Crossref
Seijiro Maki, Yasunori Harada & Kenichiro Mori. (2004) Resistance Sintering of Copper-Graphite Powder Mixture under Pressure. Materials Science Forum 449-452, pages 281-284.
Crossref
Hirotaka Kato, Masahiro Takama, Yoshiro Iwai, Kazuo Washida & Yoshinori Sasaki. (2003) Wear and mechanical properties of sintered copper–tin composites containing graphite or molybdenum disulfide. Wear 255:1-6, pages 573-578.
Crossref
S.F Moustafa, S.A El-Badry, A.M Sanad & B Kieback. (2002) Friction and wear of copper–graphite composites made with Cu-coated and uncoated graphite powders. Wear 253:7-8, pages 699-710.
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L.M Pedersen, J.J Bentzen & N Brams?. (2001) Dimensional response of metal matrix graphite particle composites to sintering. Scripta Materialia 44:5, pages 743-749.
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