|
|
碳化物抑制剂对WC-2.5TiC-10Co超细晶硬质合金微观组织及力学性能的影响* |
王文广1,2( ),张贺佳3,王全兆2,马宗义2,陈礼清3 |
1. 辽宁石油化工大学机械工程学院 抚顺 113001 2. 中国科学院金属研究所 沈阳 110016 3. 东北大学 轧制技术及连轧自动化国家重点实验室 沈阳 110819 |
|
Effects of Carbide Inhibitor on Microstructures and Mechanical Properties of Ultrafine Grained Carbide Cement WC-2.5TiC-10Co |
Wenguang WANG1,2,**( ),Hejia ZHANG3,Quanzhao WANG2,Zongyi MA2,Liqing CHEN3 |
1. School of Mechanical Engineering, Liaoning Shihua University, Fushun 113001, China 2. Institute of Metal Research, Chinese Academy of Sciences, Shenyang 110016, China 3. State Key Laboratory of Rolling and Automation, Northeastern University, Shenyang 110819, China |
引用本文:
王文广,张贺佳,王全兆,马宗义,陈礼清. 碳化物抑制剂对WC-2.5TiC-10Co超细晶硬质合金微观组织及力学性能的影响*[J]. 材料研究学报, 2015, 29(12): 881-888.
Wenguang WANG,
Hejia ZHANG,
Quanzhao WANG,
Zongyi MA,
Liqing CHEN.
Effects of Carbide Inhibitor on Microstructures and Mechanical Properties of Ultrafine Grained Carbide Cement WC-2.5TiC-10Co[J]. Chinese Journal of Materials Research, 2015, 29(12): 881-888.
1 | G. S. Upadhyaya, Materials science of cemented carbides-an overview, Mater. Des., 22(6), 483(2001) | 2 | Ji Xiong, Zhixing Guo, Mei Yang, Weicai Wan, Guangbiao Dong, Tool life and wear of WC-TiC-Co ultrafine cemented carbide during dry cutting of AISI H13 steel, Ceram. Int., 39, 337(2013) | 3 | Dilek Duman, Hasan Gokce and Huseyin Cimenoglu, Synthesis, microstructure, and mechanical properties of WC-TiC-Co ceramic composites, J. Eur. Ceram. Soc., 32, 1427(2012) | 4 | Jianxin Deng, Yousheng Li, Wenlong Song, Diffusion wear in dry cutting of Ti-6Al-4V with WC-Co carbide tools, Wear, 265, 1776(2008) | 5 | Shan Quan, Li Zulai, Jiang Yehua, Zhou Rong, Sui Yudong, Chen Zhihui, Effect of Co Addition on Microstructure of Matrix in Tungsten Carbide Surface Reinforced Composite, Chinese J. Mater. Res., 26(5), 551(2012) | 6 | Lu Shanping, Guo Yi, The Effect of Brazing Parameters on The Properties of WC-Co/NiCrBSi Composite Coating, Chinese J. Mater. Res., 13(2), 188(1999) | 7 | ZHANG Zhi, DENG Gang, HOU Xianneng, The application of WC-base hard alloy to rolling equipment, Powder Metall. Technol., 14(3), 35(2004) | 7 | (张智, 邓钢, 侯先能, WC基硬质合金在轧钢机中的应用, 粉末冶金工业, 14(3), 35(2004)) | 8 | Nobom Gretta Hashe, Johannes H. Neethling, Pearl R.Berndt, Hans-Olof Andren, Susanne Norgren, A comparison of the microstructures of WC-VC-TiC-Co and WC-VC-Co cemented carbides, Int. J. Refract. Met. Hard Mater., 25, 207(2007) | 9 | Berger S, Porat R, Rosen R., Nanocrystalline materials: a study of WC-based hard metals, Prog. Mater. Sci., 42, 311(1997) | 10 | Victor G.Zavodinsky, Ab intio study of inhibitors influence on growth of WC crystallites in WC/Co hard alloys, Int. Journal of Refractory Metals and Hard Materials, 31, 263-265(2012) | 11 | ZHANG Shouquan, Sintering behavior of ultra-fine grain cemented carbides with 0.2 μm sized grain, Mater. Sci. Eng. Powder Metall., 14(4), 237(2009) | 11 | (张守全, 0.2微米级超细晶硬质合金的烧结行为, 粉末冶金材料科学与工程, 14(4), 237(2009)) | 12 | T. Kagnaya, C. Boher, L. Lambert, M. Lazard, T. Cutard, Microstructural analysis of wear micromechanisms of WC-6Co cutting tools during high speed dry machining, Int. J. Refract. Met. Hard Mater., 42, 151(2014) | 13 | H. A.Abdel-Aal, M. Nouari, M. El Mansori, Tribo-energetic correlation of tool thermal properties to wear of WC-Co inserts in high speed dry machining of aeronautical grade titanium alloys, Wear, 266, 432(2009) | 14 | Z. N. Farhat, Microstructural characterization of WC-TiC-Co cutting tools during high-speed machining of P20 mold steel, Mater. Charact., 51, 117(2003) | 15 | ZHANG Chongcai, YANG Wei, Influence of TaC on the performance of high titanium submicron W-Ti-Co cemented carbide, Powder Metall. Technol., 32(1), 14(2014) | 15 | (张崇才, 杨伟, TaC对高钛亚微米钨钛钴硬质合金性能的影响, 粉末冶金技术, 32(1), 14(2014)) | 16 | Jonathan Weidow, Hans-Olof Andrén, Grain and phase boundary segregation in WC-Co with TiC, ZrC, NbC or TaC additions, Int. J. Refract. Met. Hard Mater., 29, 38(2011) | 17 | Shiwei Huang, Ji Xiong, Zhixing Guo, Weicai Wan, Limei Tang, Hua Zhong, Wei Zhou, Bitong Wang, Oxidation of WC-TiC-TaC-Co hard materials at relatively low temperature, Int. J. Refract. Met. Hard Mater., 48, 134(2015) | 18 | M. Mmahmoodan, H. Allakbarzadeh, R. Gholamipour, Sintering of WC-10%Co nano powders containing TaC and VC grain growth inhibitors, Trans.Nonferrous Met. Soc. China, 21, 1080(2011) | 19 | Farid Akhtar, Islam S. Humail, S.J. Askari, Jianjun Tian,Guo Shiju, Effect of WC particle size on the microstructure, mechanical properties and fracture behavior of WC-(W, Ti, Ta)C-6 wt%Co cemented carbides, Int. J. Refract. Met. Hard Mater., 25, 405(2007) | 20 | Kyong H. Lee, Seung I. Cha, Byung K. Kim, Soon H.Hong, Effect of WC/TiC grain size ratio on microstructure and mechanical properties of WC-TiC-Co cemented carbides, Int. J. Refract. Met. Hard Mater., 24, 109(2006) | 21 | Byung-Kwon Yoon, Bo-Ah Lee, Suk-Joong L.Kang, Growth behavior of rounded (Ti, W)C and faceted WC grains in a Co matrix during liquid phase sintering, Acta Materialia, 53, 4677(2005) | 22 | Nobom G. Hashe, Johannes H.Neethling, Hans-Olof Andren, Susanne Norgren, Pearl R. Berndt, The influence of sintering in nitrogen gas on the microstructure of a WC-VC-TiC-Co cemented carbide, Int. J. Refract. Met. Hard Mater., 26, 404(2008) | 23 | FU Xiancai, SHEN Wenxia, YAO Tianyang, HOU Wenhua, Physical Chemistry, 5th edition (Beijing, Higher Education Press, 2005) P.235 | 23 | (傅献彩, 沈文霞, 姚天杨, 侯文华, 物理化学(上册), 第五版, (北京, 高等教育出版社, 2005) P.235) | 24 | T. Yamamoto, Y. Ikuhara, T. Sakuma, High resolution transmission electron microscopy study in VC-doped WC-Co compound, Sci. Technol. Adv. Mater., 1, 97(2000) | 25 | S. Lay, S. Hamar-Thibault, A. Lackner, Location of VC in VC, Cr3C2 codoped WC—Co cermets by HREM and EELs, Int. J. Refract. Met. Hard Mater., 20, 61(2002) | 26 | C. W. Morton, D. J. Wills, K. Stjernnberg, The temperature ranges of maximum effectiveness of grain growth inhibitors in WC alloy, Int. J. Refract. Met. Hard Mater., 23, 287(2005) | 27 | A. Petersson, J. Agren, Sintering shrinkage of WC-Co materials with bimodal grain size distributions, Acta Mater., 53, 1665(2005) | 28 | Guoqiang Li, Yi Zhao, SuSeng Pang, Analytical modeling of particle size and cluster effects on particulate-filled composite, Mater. Sci. Eng., A271, 43(1999) |
|
|
Viewed |
|
|
|
Full text
|
|
|
|
|
Abstract
|
|
|
|
|
Cited |
|
|
|
|
|
Shared |
|
|
|
|
|
Discussed |
|
|
|
|