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Original Articles

Effect of ZrB2 on the Microstructure and Wear Resistance of Ni-Based Composite Coating Produced on Pure Ti by Laser Cladding

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Pages 80-86 | Received 24 May 2010, Accepted 26 Aug 2010, Published online: 24 Nov 2010

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M. M. Quazi, M. A. Fazal, A. S. M. A. Haseeb, Farazila Yusof, H. H. Masjuki & A. Arslan. (2017) Laser Composite Surfacing of Ni-WC Coating on AA5083 for Enhancing Tribomechanical Properties. Tribology Transactions 60:2, pages 249-259.
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W.-J. Wang, Z.-K. Fu, J. Guo, Y.-Q. Zhang, Q.-Y. Liu & M.-H. Zhu. (2016) Investigation on Wear Resistance and Fatigue Damage of Laser Cladding Coating on Wheel and Rail Materials under the Oil Lubrication Condition. Tribology Transactions 59:5, pages 810-817.
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De-Xing Peng & Yuan Kang. (2015) Wear Behavior of Ceramic Powder and Solid Lubricant Cladding on Carbon Steel Surface. Tribology Transactions 58:1, pages 177-185.
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Zongxiao Zhu, Xiaowen Wang, Linjun Wang, Shengyu Zhu, Jun Cheng, Jie Guo, Hui Tan & Jun Yang. (2023) Effect of ZrB2 on the microstructure, mechanical and tribological properties of Mo–Si–B matrix composites. Ceramics International 49:15, pages 24681-24689.
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Guangsheng Zhang, Aixin Feng, Pu Zhao, Xiaoming Pan & Huibin Feng. (2023) Effect of Energy Density on the Microstructure and Wear Resistance of Nickel-Based WC Coatings by Laser Cladding of Preset Zr702 Alloy Plates. Coatings 13:5, pages 826.
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Maryna Storozhenko, Oleksandr Umanskyi, Vitaliy Krasovskyy, Oleksandr Terentiev, Valeriy Muratov & Dmytro Vedel. (2021) Wettability and Interface Phenomena in the ZrB2-NiCrBSiC System. Journal of Materials Engineering and Performance 30:11, pages 7935-7942.
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Jianfeng Li, Zhencai Zhu, Yuxing Peng & Gang Shen. (2021) Phase evolution and wear resistance of in-situ synthesized (Cr, W)23C6-WC composite ceramics reinforced Fe-based composite coatings produced by laser cladding. Vacuum 190, pages 110242.
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Sajad Arjmand, Gholam Hossein Akbari & Gholam Reza Khayati. (2021) Fabrication of in-situ Ni/Ni3Ti-NiTi-Fe2Ti-βCr2Ti reinforced Ti-based composite coating using tungsten inert gas processing. Journal of Alloys and Compounds 873, pages 159697.
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Qian Cheng, Haiyan Chen, Yue Hou, Yurong Xu, Li Fan & Lihua Dong. (2021) Microstructure and wear behavior of spherical NbC hardmetals with nickel-based binders on AISI 4145H steel. International Journal of Refractory Metals and Hard Materials 95, pages 105414.
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Yin Hua Shi & Qin Shi. (2021) Microstructure and Property of Novel γ-Fe/ (Cr, Fe)<sub>7</sub>C<sub>3</sub> Lamellar Eutectics Reinforced Composite Coating. Key Engineering Materials 871, pages 134-143.
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Tan Pan, Xinchang Zhang, Tomoya Yamazaki, Austin Sutton, Wenyuan Cui, Lan Li & Frank Liou. (2020) Characteristics of Inconel 625—copper bimetallic structure fabricated by directed energy deposition. The International Journal of Advanced Manufacturing Technology 109:5-6, pages 1261-1274.
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Zhencai Zhu, Jianfeng Li, Yuxing Peng & Gang Shen. (2020) In-situ synthesized novel eyeball-like Al2O3/TiC composite ceramics reinforced Fe-based alloy coating produced by laser cladding. Surface and Coatings Technology 391, pages 125671.
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Qin Shi, Hejun Zhu & Changsheng Li. (2020) The Effects of the Addition of Ti3SiC2 on the Microstructure and Properties of Laser Cladding Composite Coatings. Coatings 10:5, pages 498.
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İbrahim MUTLU, Bekir GÜNEY & İbrahim ERKURT. (2020) Investigation of the effect of Cr2O3-2 % TiO2 coating on braking performance. International Journal of Automotive Engineering and Technologies 9:1, pages 29-41.
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Y Q Li, X D Wang, C B Long, Z P Sun, X L Wei & L C Zhou. (2020) Erosion behavior and damage evolution of Ti-6Al-4V aero-engine titanium alloy. IOP Conference Series: Materials Science and Engineering 770:1, pages 012083.
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Jianfeng Li, Zhencai Zhu, Yuxing Peng & Gang Shen. (2020) In Situ Synthesized (Cr, Fe)7C3-Reinforced Composite Coatings via Laser Cladding Deposition of Fe-Based Alloys and Carbon Fibers. Journal of Materials Engineering and Performance 29:1, pages 391-398.
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BEKİR GÜNEY & İBRAHİM MUTLU. (2019) TRIBOLOGICAL PROPERTIES OF BRAKE DISCS COATED WITH Cr 2 O 3 –40% TiO 2 BY PLASMA SPRAYING . Surface Review and Letters 26:10, pages 1950075.
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Jianfeng Li, Zhencai Zhu, Yuxing Peng & Gang Shen. (2019) Effect of Carbon Fiber Addition on the Microstructure and Wear Resistance of Laser Cladding Composite Coatings. Coatings 9:10, pages 684.
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N Zhang, N N Zhang, H T Zhang, J P Xuan & Y Zhang. (2018) Microstructure and tribological performance of ZrB 2 –NiCr composite coating deposited by APS . Materials Research Express 5:10, pages 106510.
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Bekir Güney & İbrahim Mutlu. (2017) Dry friction behavior of NiCrBSi-%35W 2 C coated brake disks . Materials Testing 59:5, pages 497-505.
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Fei Weng, Huijun Yu, Chuanzhong Chen, Jianli Liu, Longjie Zhao & Jingjie Dai. (2016) Microstructure and property of composite coatings on titanium alloy deposited by laser cladding with Co42+TiN mixed powders. Journal of Alloys and Compounds 686, pages 74-81.
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Chao Chang, Davide Verdi, Miguel Angel Garrido & Jesus Ruiz-Hervias. (2016) Micro-scale mechanical characterization of Inconel cermet coatings deposited by laser cladding. Boletín de la Sociedad Española de Cerámica y Vidrio 55:4, pages 136-142.
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Chun GUO, Jian-Song ZHOU & Jian-Min CHEN. (2012) Microstructure and Tribological Properties of Ti<SUB>5</SUB>Si<SUB>3</SUB> Coating <I>In-situ</I> Synthesized on Titanium Substrate by Laser Cladding. Journal of Inorganic Materials 27:9, pages 970-976.
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Jian-min CHEN, Chun GUO & Jian-song ZHOU. (2012) Microstructure and tribological properties of laser cladding Fe-based coating on pure Ti substrate. Transactions of Nonferrous Metals Society of China 22:9, pages 2171-2178.
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Chun Guo, Jiansong Zhou, Jierong Zhao, Lingqian Wang, Youjun Yu, Jianmin Chen & Huidi Zhou. (2011) Microstructure and Tribological Properties of a HfB2-Containing Ni-Based Composite Coating Produced on a Pure Ti Substrate by Laser Cladding. Tribology Letters 44:2, pages 187-200.
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C Guo, J-S Zhou, J-R Zhao & J-M Chen. (2011) Improvement of the tribological properties of pure Ti by laser cladding intermetallic compound composite coating. Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology 225:8, pages 864-874.
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