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Regular Papers

Effect of HfC addition on microstructure of Ti(CN)–Ni cermet system

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Pages 251-256 | Published online: 19 Jul 2013

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J. Joardar, S. W. Kim & S. Kang. (2002) TRIBOLOGICAL EVALUATION OF ULTRAFINE Ti(CN) CERMETS. Materials and Manufacturing Processes 17:4, pages 567-576.
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Articles from other publishers (40)

Jialin Sun, Zhennan Cao, Le Zhao, Xiao Li, Lingtao Meng, Quanbin Du & Jun Zhao. (2023) Developing high performance in titanium carbide nanocomposites containing hybrid SiC nanowire and CNT. Journal of the European Ceramic Society 43:13, pages 5466-5473.
Crossref
A.Q. Li, N. Lin, R. Li, Z.G. Wu, Z.Y. Wang & C. Ma. (2023) Effects of hafnium content on microstructures and properties of newly developed (Ti,Hf)(C,N) ceramics. Ceramics International 49:13, pages 21471-21478.
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Wen Gao, Yang Zhou, Songze Wu, Ranran Cai, Yuanhao Zhao, Shibo Li & Zhenying Huang. (2022) Preparation, microstructure and mechanical properties of steel matrix composites reinforced by a 3D network TiC ceramics. Ceramics International 48:14, pages 20848-20857.
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Li Bo Guo, Jun Chao HeGuo Ping Li & Lian Wu Yan. (2021) Effect of Mo<sub>2</sub>C Addition on the Microstructure and Properties of TiC-High Manganese Steel-Bonded Carbide. Materials Science Forum 1035, pages 752-758.
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Guoping Li, Haojun Zhou, Jing Lu, Ning Wu, Yinghai Lyu & Fenghua Luo. (2020) TiC–High Mn Steel‐Bonded Cermets with Improved Strength and Impact Toughness. steel research international 92:3, pages 2000400.
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Guoping Li, Jixiang Jia, Yinghai Lyu, Jiazheng Zhao, Jing Lu, Yimin Li & Fenghua Luo. (2020) Effect of Mo addition mode on the microstructure and mechanical properties of TiC–high Mn steel cermets. Ceramics International 46:5, pages 5745-5752.
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Guoping Li, Haojun Zhou, Hao Yang, Mingchu Huang, Yingbiao Peng & Fenghua Luo. (2020) The Preparation Process, Microstructure and Properties of Cellular TiC-High Mn Steel-Bonded Carbide. Materials 13:3, pages 757.
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Jiaojiao Gao, Jinpeng Song & Ming Lv. (2018) Microstructure and Mechanical Properties of TiC0.7N0.3-HfC-WC-Ni-Mo Cermet Tool Materials. Materials 11:6, pages 968.
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Jiaojiao Gao, Jinpeng Song, Guoxing Liang, Jing An, Lei Cao, Juncai Xie & Ming Lv. (2017) Effects of HfC addition on microstructures and mechanical properties of TiC0.7N0.3-based and TiC0.5N0.5-based ceramic tool materials. Ceramics International 43:17, pages 14945-14950.
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Bolu Liu, Shuigen Huang, Jan Van Humbeeck & Jef Vleugels. (2017) Influence of HfH2 addition on the microstructure and mechanical properties of TiC-NiTi cermets. Materials & Design 133, pages 30-38.
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V. A. Zhilyaev & E. I. Patrakov. (2017) Influence of alloying the TiC0.5N0.5 carbonitride with zirconium on an interaction mechanism with the Ni–Mo melt. Russian Journal of Non-Ferrous Metals 58:4, pages 418-426.
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Vikas Verma & B. V. Manoj Kumar. (2017) Processing of TiCN?WC?Ni/Co Cermets via Conventional and Spark Plasma Sintering Technique. Transactions of the Indian Institute of Metals 70:3, pages 843-853.
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Mun Keun Lee & Jae-Hee Kim. (2017) Changes in the microstructure and mechanical properties of (Ti0.88W0.12)C and (Ti0.88W0.12) (C0.7N0.3)–20Ni upon Mo addition. Journal of Alloys and Compounds 698, pages 39-43.
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Jiwoong Kim, Hanjung Kwon & Chang Woo Kwon. (2017) Temperature dependent phase stability of Ti(C1−N ) solid solutions using first-principles calculations. Ceramics International 43:1, pages 650-657.
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Huijun Zhou, Chuanzhen Huang, Bin Zou, Hanlian Liu, Hongtao Zhu, Peng Yao & Jun Wang. (2014) Effects of metal phases and carbides on the microstructure and mechanical properties of Ti(C,N)-based cermets cutting tool materials. Materials Science and Engineering: A 618, pages 462-470.
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Huijun Zhou, Chuanzhen Huang, Bin Zou, Hanlian Liu, Hongtao Zhu, Peng Yao & Jun Wang. (2014) Effects of sintering processes on the mechanical properties and microstructure of Ti(C,N)-based cermet cutting tool materials. International Journal of Refractory Metals and Hard Materials 47, pages 71-79.
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Shinhoo Kang. 2014. Comprehensive Hard Materials. Comprehensive Hard Materials 139 181 .
E. Chicardi, Y. Torres, J.M. C?rdoba, M.J. Sayagu?s, J.A. Rodr?guez & F.J. Gotor. (2013) Effect of sintering time on the microstructure and mechanical properties of (Ti,Ta)(C,N)-based cermets. International Journal of Refractory Metals and Hard Materials 38, pages 73-80.
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E. Chicardi, J.M. Córdoba, M.J. Sayagués & F.J. Gotor. (2012) Absence of the core–rim microstructure in TixTa1−xCyN1−y-based cermets developed from a pre-sintered carbonitride master alloy. International Journal of Refractory Metals and Hard Materials 33, pages 38-43.
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Bikramjit Basu & Mitjan Kalin. 2011. Tribology of Ceramics and Composites. Tribology of Ceramics and Composites 377 406 .
Bikramjit Basu & Mitjan Kalin. 2011. Tribology of Ceramics and Composites. Tribology of Ceramics and Composites 351 361 .
Jiwoong Kim & Shinhoo Kang. (2011) Microstructure evolution and mechanical properties of (Ti0.93W0.07)C–xWC–20Ni cermets. Materials Science and Engineering: A 528:7-8, pages 3090-3095.
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Yongzhong Jin, Ying Liu, Yankun Wang & Jinwen Ye. (2009) Study on phase evolution during reaction synthesis of ultrafine (Ti, W, Mo, V)(CN)–Ni composite powders. Materials Chemistry and Physics 118:1, pages 191-196.
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J.W. Kim, S.Y. Ahn & S. Kang. (2009) Effect of the complete solid-solution phase on the microstructure of Ti(CN)-based cermet. International Journal of Refractory Metals and Hard Materials 27:2, pages 224-228.
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B.V. Manoj Kumar & Bikramjit Basu. (2008) Mechanisms of material removal during high temperature fretting of TiCN?Ni based cermets. International Journal of Refractory Metals and Hard Materials 26:6, pages 504-513.
Crossref
Mukesh Bhardwaj & R. Balasubramaniam. (2008) Influence of material structure on the electrochemical behavior of nickel–titanium carbonitride composites. Materials Characterization 59:10, pages 1474-1480.
Crossref
B.V. Manoj Kumar, Bikramjit Basu, Joze Vizintin & Mitjan Kalin. (2011) Tribochemistry in sliding wear of TiCN–Ni-based cermets. Journal of Materials Research 23:5, pages 1214-1227.
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Yan Li, Ning Liu, Xiaobo Zhang & Chunlan Rong. (2008) Effect of Mo addition on the microstructure and mechanical properties of ultra-fine grade TiC–TiN–WC–Mo2C–Co cermets. International Journal of Refractory Metals and Hard Materials 26:3, pages 190-196.
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B.V. Manoj Kumar & Bikramjit Basu. (2008) Fretting Wear Properties of TiCN-Ni Cermets: Influence of Load and Secondary Carbide Addition. Metallurgical and Materials Transactions A 39:3, pages 539-550.
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Yan Li, Ning Liu, Xiaobo Zhang & Chunlan Rong. (2008) Effect of WC content on the microstructure and mechanical properties of (Ti,W)(C, N)–Co cermets. International Journal of Refractory Metals and Hard Materials 26:1, pages 33-40.
Crossref
B.V. Manoj Kumar, J. Ram Kumar & Bikramjit Basu. (2007) Crater wear mechanisms of TiCN?Ni?WC cermets during dry machining. International Journal of Refractory Metals and Hard Materials 25:5-6, pages 392-399.
Crossref
C. Heiligers, M. Herrmann, I.J. Sigalas & J.H. Neethling. (2007) Microstructure and properties of hot-pressed (Hf, Ti) C. International Journal of Refractory Metals and Hard Materials 25:4, pages 300-309.
Crossref
Xian Juan Ni, Long Hao Qi & Wei Pan. (2007) Effect of Cr<sub>2</sub>C<sub>3</sub> Addition on Microstructure and Mechanical Properties of Ti(CN)-Based Cermets. Key Engineering Materials 336-338, pages 1524-1526.
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B. V. Manoj Kumar, R. Balasubramaniam & Bikramjit Basu. (2006) Electrochemical Behavior of TiCN–Ni‐Based Cermets. Journal of the American Ceramic Society 90:1, pages 205-210.
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B. V. Manoj Kumar, Bikramjit Basu, S. Kang & J. Ramkumar. (2006) Erosion Wear Behavior of TiCN–Ni Cermets Containing Secondary Carbides (WC/NbC/TaC). Journal of the American Ceramic Society 89:12, pages 3827-3831.
Crossref
J. Joardar, S.W. Kim & Shinhoo Kang. (2006) GI-XRD studies on surface structure of ultrafine Ti(C0.5N0.5)-WC-Ni cermets at high temperature. Wear 261:3-4, pages 360-366.
Crossref
Sungwon Kim, Kyoung‐hoon Min & Shinhoo Kang. (2004) Rim Structure in Ti(C 0.7 N 0.3 )–WC–Ni Cermets . Journal of the American Ceramic Society 86:10, pages 1761-1766.
Crossref
E.T. Jeon, J. Joardar & S. Kang. (2002) Microstructure and tribo-mechanical properties of ultrafine Ti(CN) cermets. International Journal of Refractory Metals and Hard Materials 20:3, pages 207-211.
Crossref
S Ahn & S Kang. (2001) Effect of various carbides on the dissolution behavior of Ti(C0.7N0.3) in a Ti(C0.7N0.3)–30Ni system. International Journal of Refractory Metals and Hard Materials 19:4-6, pages 539-545.
Crossref
Sun‐Yong Ahn & Shinhoo Kang. (2004) Formation of Core/Rim Structures in Ti(C,N)‐WC‐Ni Cermets via a Dissolution and Precipitation Process. Journal of the American Ceramic Society 83:6, pages 1489-1494.
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