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Advances in Applied Ceramics
Structural, Functional and Bioceramics
Volume 111, 2012 - Issue 4
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Original Article

Current carrying friction and wear characteristics of Ti3AlC2 by novel method of infiltration sintering

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Pages 202-207 | Received 25 Jun 2011, Accepted 29 Oct 2011, Published online: 22 Nov 2013

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Read on this site (4)

S.M. Hosseini, A. Heidarpour & S. Ghasemi. (2020) Effects of ball milling sequences on the in-situ reactive synthesis of the Ti2SC MAX phase. Advances in Applied Ceramics 119:4, pages 204-211.
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X. Cheng, R. He, Z. Qu & M. Chen. (2016) Characterisation of graphene nanoplatelets reinforced hot pressed Ti3SiC2 ceramic. Advances in Applied Ceramics 115:1, pages 43-48.
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M. Xue, H. Tang & C. S. Li. (2014) Preparation and tribological behaviour of laminated Ti3AlC2 crystals as additive in base oil. Advances in Applied Ceramics 113:4, pages 245-250.
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T Ai, F Wang, Y Zhang, P Jiang & X Yuan. (2013) Synthesis and mechanism of ternary carbide Ti3AlC2 by in situ hot pressing process in TiC–Ti–Al system. Advances in Applied Ceramics 112:7, pages 424-429.
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Articles from other publishers (9)

Lei Yao, Chun-Cheng Zhu, Jiu-Xing Jiang & Bai-Bin Zhou. (2015) Mechanical properties of Ti3AlC2 ceramics before and after heat treatment. Rare Metals 41:8, pages 2777-2782.
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Yang Fu, Hongling Qin, Xiang Xu, Xiaolong Zhang & Zhiguang Guo. (2021) What are the Progresses and Challenges, from the Electrical Properties of Current-Carrying Friction System to Tribological Performance, for a Stable Current-Carrying Interface?. Journal of Bio- and Tribo-Corrosion 8:1.
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Zhaocang Meng, Canglong Wang, Jitao Liu, Yinlong Wang, Xiaolu Zhu, Lei Yang & Liang Huang. (2021) First-principles investigation of oxygen interaction with hydrogen/helium/vacancy irradiation defects in Ti 3 AlC 2 . Physical Chemistry Chemical Physics 23:9, pages 5340-5351.
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V. Ya. Podhurska, O. P. Ostash, B. D. Vasyliv, T. O. Prikhna, V. B. Sverdun, M. V. Karpets & T. B. Serbeniuk. 2021. Nanomaterials and Nanocomposites, Nanostructure Surfaces, and Their Applications. Nanomaterials and Nanocomposites, Nanostructure Surfaces, and Their Applications 607 614 .
Seyed Ali Hosseinizadeh, Alireza Pourebrahim, Hamidreza Baharvandi & Naser Ehsani. (2020) Synthesis of nano-layered Ti3SiC2 MAX phase through reactive melt infiltration (RMI): Metallurgical and thermodynamical parameters. Ceramics International 46:14, pages 22208-22220.
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Zhaocang Meng, Canglong Wang, Jitao Liu, Yinlong Wang, Xiaolu Zhu, Lei Yang & Liang Huang. (2020) New insight into the interaction between divacancy and H/He impurity in Ti 3 AlC 2 using first-principles studies . Physical Chemistry Chemical Physics 22:32, pages 18040-18049.
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Т. О. Prikhna, V. Ya. Podhurs’ka, О. P. Оstash, B. D. Vasyliv, V. B. Sverdun, М. V. Karpets’ & Т. B. Serbenyuk. (2019) Influence of the Technology of Production of Composites Based on the Max Phases of Titanium on the Process of Wear in Contact with Copper. Part 1. Two-Stage Technology. Materials Science 54:4, pages 589-595.
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Shutong Yang, Nengwen Hu, Xueqiang Gou, Canglong Wang, Xiaolu Zhu, Wenshan Duan & Lei Yang. (2016) Stability and migration of transmutation atoms (H/He) in Ti 3 AlC 2 : first principles calculations . RSC Advances 6:64, pages 59875-59881.
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Miao Miao Ruan, Xiao Ming Feng, Tao Tao Ai, Ning Yu & Kui Hua. (2015) Microstructure and Mechanical Properties of TiC/Ti<sub>3</sub>AlC<sub>2</sub> <i>In Situ</i> Composites Prepared by Hot Pressing Method. Materials Science Forum 816, pages 200-204.
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