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Adhesion Wear of Carbide Tool when Machining GH 907 被引量:2

Adhesion Wear of Carbide Tool when Machining GH 907
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摘要 The adhesion wear of cemented carbide tool when machining GH907 was studied with white light interferometer,infrared imaging,and SEM-EDS.The adhesion wear morphology,wear mechanism and the wear rule of adhesion were analyzed,and the effect of different cutting time and different cutting speed on adhesive wear were analyzed.The conclusion will provide useful references for the optimization of cutting parameters and the improvement of the tool life. The adhesion wear of cemented carbide tool when machining GH907 was studied with white light interferometer,infrared imaging,and SEM-EDS.The adhesion wear morphology,wear mechanism and the wear rule of adhesion were analyzed,and the effect of different cutting time and different cutting speed on adhesive wear were analyzed.The conclusion will provide useful references for the optimization of cutting parameters and the improvement of the tool life.
作者 邵芳
出处 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2010年第3期469-473,共5页 武汉理工大学学报(材料科学英文版)
基金 Funded by the National Natural Science Foundation of China (No. 50705052)
关键词 GH907 adhesion wear cemented carbide tool GH907 adhesion wear cemented carbide tool
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  • 1Davis J R. Tool Materials-ASM Specialty Handbook[M]. OH: ASM International, 1995.
  • 2Stephenson D A, Agapiou J S. Metal Cutting Theory and Practice[M]. New York: Marcel Dekker; 1997.
  • 3E O Ezugwu. Improvements in the Machining of Aero-Engine Alloys Using Self-propelled Rotary Tooling Technique[J]. Journal of Materials Processing Technology, 2007, 185 (1-3): 60-71.
  • 4F C Campbell. Superalloys[J]. Manufacturing Technology for Aerospace Structural Materials, 2006:211-272.
  • 5R L Kennedy, R M Forbes Jones, R M Davis, et al. Superalloys Made by Conventional Vacuum Melting and a Novel Spray Forming Process[J]. Vacuum 1996, 47(6-8): 819-824.
  • 6J S Wan, Z F Yue. A Low-cycle Fatigue Life Model of Nickel-based Single Crystal Superalloys under Multiaxial Stress State[J]. Materials Science and Engineering: A, 2005, 392(1-2): 145-149.
  • 7J W Brooks. Forging of Superalloys[J]. Materials & Design, 2000, 21(4): 297-303.
  • 8T Kitashima, H Harada. A New Phase-field Method for Simulating r' Precipitation in Multicomponent Nickel-base Superalloys[J]. Acta Materialia, 2009, 57(6): 2 020-2 028.
  • 9T Link, S Zabler, A Epishin, et al. Synchrotron Tomography of Porosity in Single-crystal Nickel-base Superalloys[J]. Materials Science and Engineering: A, 2006, 425(1-2): 47-54.
  • 10Florian Pyczak, Steffen Neumeier, Mathias Goken. Influence of Lattice Misfit on the Internal Stress and Strain States Before and After Creep Investigated in Nickel-base Superalloys Containing Rhenium and Ruthenium[J]. Materials Science and Engineering: A, 2006, 510-511 : 295-300.

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