[1] UKPAI J I,BARKER R,HU Xinming,et al. Exploring the erosive wear of X65 carbon steel by acoustic emission method[J]. Wear,2013,301(1-2):370-382. [2] 马壮,杨杰,孙方红,等. 纯铜材表面煤矸石陶瓷涂层的制备及耐冲蚀磨损性能[J]. 材料保护,2014,47(2):22-23. MA Zhuang,YANG Jie,SUN Fanghong,et al. The preparation and resistance to erosion wear of gangue ceramic coating on pure copper surface[J]. Material Protection,2014,47(2):22-23. [3] AQRA F,AYYAD A. Surface free energy of alkali and transition metal nanoparticles[J]. Applied Surface Science,2014,314:308-313. [4] 李国禄,王韶云,王海斗,等. 等离子喷涂NiCrBSi涂层接触疲劳过程中残余应力变化规律研究[J]. 机械工程学报,2012,48(10):23-27. LI Guolu,WANG Shaoyun,WANG Haidou,et al. Study on the residual stress of plasma sprayed NiCrBSi coating in contact fatigue process[J]. Journal of Mechanical Engineering,2012,48(10):23-27. [5] RAIASEKARAN N,MOHAN S. Structure,microstructure and corrosion properties of brush-plated Cu-Ni alloy[J]. Journal of Applied Electrochemistry,2009,39(10):1911-1916. [6] LUGSCHEIDER E,BOBZIN K. The influence on surface free energy of PVD-coatings[J]. Surface and Coatings Technology,2001,142-147:755-760. [7] 孙方宏,张志明,沈荷生,等. 纳米金刚石薄膜的制备与应用[J]. 机械工程学报,2007,43(24):118-122. SUN Fanghong,ZHANG Zhiming,SHEN Hesheng,et al. Fabrication and application of nanocrysialline diamond films[J]. Chinese Journal of Mechanical Engineering,2007,43(24):118-122. [8] 王志平,程涛涛,丁坤英. 颗粒致密度对WC-10Co-4Cr涂层性能的影响[J]. 机械工程学报,2011,47(24):63-38. WANG Zhiping,CHENG Taotao,DING Kunying. Effect of particle-density on the performance of WC-10Co-4Cr coating[J]. Journal of Mechanical Engineering,2011,47(24):63-68. [9] PIAO Zhongyu,XU Binshi,WANG Haidou,et al. Characterization of Fe-based alloy coating deposited by supersonic plasma spraying[J]. Fusion Engineering and Design,2013,88(11):2933-2938. [10] DU Lingzhong,XU Binshi,DONG Shiyun,et al. Sliding wear behavior of the supersonic plasma sprayed WC-Co coating in oil containing sand[J]. Surface and Coatings Technology,2008,202(15):3709-3714. [11] TIAN Zongjun,WANG Dongsheng,SHEN Lida,et al. Study on nanostructured Al 2 O 3 -13TiO 2 ceramic coatings by plasma-spraying[J]. Rare Metal Materials and Engineering,2009,38(10):1740-1744. [12] LI Guolu,MA Jianlong,WANG Haidou,et al. Effects of argon gas flow rate on the microstructure and micromechanical properties of supersonic plasma sprayed nanostructured Al 2 O 3 -13wt.%TiO 2 coatings[J]. Applied Surface Science,2014,311:124-130. [13] KANG Jiajie,MA Jianlong,LI Guolu,et al. Bimodal distribution characteristic of microstructure and mechanical properties of nanostructured composite ceramic coatings prepared by supersonic plasma spraying[J]. Materials and Design,2014,64:755-759. [14] SUN Chencheng,LEE S C,DAI S B,et al. Surface free energy of non-stick coatings deposited using closed field unbalanced magnetron sputter ion plating[J]. Surface & Coatings Technology,2007,253:4094-4098. [15] RUBIO F,RUBIO J,OTEO J L. Effect of the measurement temperature on the dispersive component of the surface free energy of a heat treated SiO 2 xerogel[J]. Journal of Sol-Gel Science and Technology,2000,18:115-118. [16] OWENS D K,WENDT R C. Estimation of the surface free energy of polymers[J]. Journal of Applied Polymer Science,1969,13(8):1741-1747. [17] Van OSS C J. Use of the combined Lifshitz-van der Waals and Lewis acid-base approaches in determining the apolar and polar contributions to surface and interfacial tensions and free energies[J]. Journal of Adhesion Science and Technology,2002,16(6):669-677. [18] Van OSS C J,CHAUDHURY M K,GOOD R J. Interfacial Lifshitz-van der Waals and polar interactions in macroscopic systems[J]. Chemical Reviews,1988,88(6):927-941. |