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Original Articles

Effect of Normal Loads on Tribological Properties of Bronze-Graphite Composite under Seawater Condition

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Pages 308-316 | Received 26 Jun 2012, Accepted 16 Dec 2013, Published online: 10 Mar 2014

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Articles from other publishers (7)

Hengqing Li, Yangzhen Liu, Baochao Zheng, Shuai Wang, Yanliang Yi, Yongzhen Zhang & Wei Li. (2023) On the tribological behaviors of Cu matrix composites with different Cu-coated graphite content. Journal of Materials Research and Technology 25, pages 83-94.
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Jun Jiang, Shanhong Wan, Gewen Yi, Junyang Wang, Jiewei Chang, Wujun Jin, Ji Lei, Bin Lu & Feijun Qu. (2022) A case study on the wear mechanism and stress evolution of graphite plugged bronze wear plate from the field trial. Engineering Failure Analysis 131, pages 105836.
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Jiaming Pan, Jinwei Yin, Yongfeng Xia, Dongxu Yao, Hanqin Liang, Kaihui Zuo & Yuping Zeng. (2020) The effects of β-Si 3 N 4 whiskers and Fe–Cr–C alloy on the tribological properties of bronze matrix composites . Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology 235:5, pages 952-962.
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Lina Si, Cheng Liu, Hongjuan Yan, Yanjie Wang, Ye Yang, Shuting Zhang & Yuyan Zhang. (2021) The influences of high temperature on tribological properties of Cu-based friction materials with a friction phase of SiO2/SiC/Al2O3. AIP Advances 11:2.
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Sang Xiong, Dong Liang, Hao Wu & Baosen Zhang. (2020) Synthesis, characterisation, and tribological evaluation of Mn 3 B 7 O 13 Cl nanoparticle as efficient antiwear lubricant in the sliding wear between tantalum strips and steel ball . Lubrication Science 32:3, pages 121-130.
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Peng Zhang, Lin Zhang, Dongbin Wei, Peifang Wu, Jingwu Cao, Cairang Shijia, Xuanhui Qu & Kangxi Fu. (2019) Effect of graphite type on the contact plateaus and friction properties of copper-based friction material for high-speed railway train. Wear 432-433, pages 202927.
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Linlin Su, Fei Gao, Xiaoming Han, Rong Fu & En Zhang. (2015) Tribological Behavior of Copper–Graphite Powder Third Body on Copper-Based Friction Materials. Tribology Letters 60:2.
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