期刊文献+

Fracture Behavior of CrN Coatings Under Indentation and Dynamic Cycle Impact

Fracture Behavior of CrN Coatings Under Indentation and Dynamic Cycle Impact
下载PDF
导出
摘要 Fracture behavior of CrN coatings deposited on the surface of silicon and AISI52100 steel by different energy ion beam assisted magnetron sputtering technique (IBAMS) was studied using indentation and dynamic cycle impact. It is found that, for the coatings on silicon substrate, the cracks form in the indentation corners and then propagate outward under Vickers indentation. The coating prepared using ion assisted energy of 800 eV shows the highest fracture resistance due to its compact structure. Under Rockwell indentation, only finer radial cracks are found in the CrN coating on AISI 52100 steel without ion assisting while in the condition of ion assisting energy of 800 eV, radial, lateral cracks and spalling appear in the vicinity of indentation. The fracture of CrN coatings under dynamic cycle impact is similar to fatigue. The impact fracture resistance of CrN coatings increases with the increase of ion assisting energy. Fracture behavior of CrN coatings deposited on the surface of silicon and AISI52100 steel by different energy ion beam assisted magnetron sputtering technique (IBAMS) was studied using indentation and dynamic cycle impact. It is found that, for the coatings on silicon substrate, the cracks form in the indentation corners and then propagate outward under Vickers indentation. The coating prepared using ion assisted energy of 800 eV shows the highest fracture resistance due to its compact structure. Under Rockwell indentation, only finer radial cracks are found in the CrN coating on AISI 52100 steel without ion assisting while in the condition of ion assisting energy of 800 eV, radial, lateral cracks and spalling appear in the vicinity of indentation. The fracture of CrN coatings under dynamic cycle impact is similar to fatigue. The impact fracture resistance of CrN coatings increases with the increase of ion assisting energy.
作者 田林海 唐宾
出处 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2012年第3期411-414,共4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. 50771070) Shanxi Province Science and Technology Key Projects (No. 20100321078-02)
关键词 CrN coatings IBAMS fracture behaviors INDENTATION dynamic cycle impact CrN coatings IBAMS fracture behaviors indentation dynamic cycle impact
  • 相关文献

参考文献2

二级参考文献23

  • 1刘军海,苏启生,陆明珠.亚微压入法硬度测量[J].理化检验(物理分册),1994,30(6):32-34. 被引量:1
  • 2Neralla S, Kumar D, Yarmolenko S, et al. Mechanical properties of nanocomposite metal-ceramic thin films[J]. Composites: Part B , 2004, 35(2): 157-162.
  • 3Berger M, Wiklund U, Eriksson M, et al. The multilayer effect in abrasion- optimising the combination of hard and tough phases[J]. Surface and Coatings Technology, 1999, 116 - 119:1138 - 1144.
  • 4Malshe A P, Jiang W P, Dhamdhere A R. Nanostructured coatings for machining and wear-resistant applications[J]. JOM, 2002, 54(9): 28- 32.
  • 5Kamiya S, Kimura H, Saka M, et al. A new method for measurement of the toughness of brittle thin films[J]. Thin Solid Films, 2001, 389(1 - 2) : 180 - 186.
  • 6Emmanuelle H, André R, Michel I, et al. Mechanical properties of W and W(C) thin films: Young's modulus, fracture toughness and adhesion[J]. Thin Solid Films, 1998, 332(1 - 2): 195 - 201.
  • 7Wiklund U, Bromark M, Larsson M, et al. Cracking resistance of thin hard coatings estimated by four-point bending[J]. Surface and Coatings Technology, 1997,91(1-2): 57-63.
  • 8Lawn B R, Evans A G, Marshall D B. Elastic/plastic indentation damage in ceramics: the median/radial crack system[J]. Journal of the American Ceramic Society, 1980, 63(9 - 10): 574 - 581.
  • 9Mehrotra P K, Quinto D T. Technique for evaluating mechanical properties of hard coatings[J]. J Vac Sci Technol, 1985, A3(6): 2401-2405.
  • 10Harding D S, Oliver W C, Pharr G M. Cracking during nanoindentation and its use in the measurement of fracture toughness [J]. Materials Research Society Symposium-Proceedings, 1995, 356: 663 - 668.

共引文献38

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部