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Original Articles

Improved Braking Performance of Cu-Based Brake Pads by Utilizing Cu-Coated SiO2 Powder

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Pages 829-840 | Received 04 Feb 2020, Accepted 07 Apr 2020, Published online: 12 May 2020

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Vummitti Chandhan Kumar, K. Rajesh Kannan, G. Srivathsan, A. Vignesh Ram, Vallabhaneni Sravan, R. Vaira Vignesh & M. Govindaraju. (2023) Tribological characterization of functionally gradient composite (Cu–Fe–CeO2–Al2O3–Cg) for wind turbine brake pad. Tribology - Materials, Surfaces & Interfaces 17:1, pages 3-21.
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Articles from other publishers (4)

Lingzhi Wu, Peng Zhang, Bin Xu, Jie Liu, Haiqing Yin, Lin Zhang, Xue Jiang, Cong Zhang, Ruijie Zhang, Yongwei Wang & Xuanhui Qu. (2023) Data-driven design of brake pad composites for high-speed trains. Journal of Materials Research and Technology 27, pages 1058-1071.
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Yu Cheng, Yelong Xiao, Junhua Du, Dehui Ji & Mingxue Shen. (2023) Size effect of CrFe particles on tribological behavior and airborne particle emissions of copper metal matrix composites. Tribology International 183, pages 108376.
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Lekai Li, Jian Zhuang, Tianjian Tong, Jin Tong, Xucheng Zhao, Feipeng Cao, Wei Song, Donghai Wang, Yitong Tian, Yunhai Ma, Dongyu Chen & Qifeng Zhang. (2023) Effect of Wet Granulation on Tribological Behaviors of Cu-Based Friction Materials. Materials 16:3, pages 1075.
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Zhuoyuan Xu, Min Zhong, Wenhu Xu, Guoxin Xie & Haijun Hu. (2023) Effects of aluminosilicate particles on tribological performance and friction mechanism of Cu-matrix pads for high-speed trains. Tribology International 177, pages 107983.
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