[1] 徐滨士. 表面工程新技术[M]. 北京:国防工业出版社,2002. XU Binshi. New technology of surface engineering[M]. Beijing:National Defense Industry Press,2002.
[2] 薛群基,王立平. 类金刚石碳基薄膜材料[M]. 北京:科学出版社,2012. XUE Qunji,WANG Liping. Thin film materials of carbon-base DLC[M]. Beijing:Science Press,2012.
[3] HAUERT R. A review of modified DLC coatings for biological applications[J]. Diamond & Related Materials,2003,12(3-7):583-589.
[4] MAURER C,SCHULZ U. Erosion resistant titanium based PVD coatings on CFRP[J]. Wear,2013,302(s1-2):937-945.
[5] 夏光明,周建桥,闵小兵,等. 涂层技术概述及工程应用[J]. 金属材料与冶金工程,2012,40(1):53-59. XIA Guangming,ZHOU Jianqiao,MIN Xiaobing,et al. Overview on coating technology and its engineering application[J]. Metal Materials and Metallurgy Engineering,2012,40(1):53-59.
[6] TRAPEZON A G,LYASHENKO B A,LYSENKOV M O. Fatigue strength of metals with hardening coatings[J]. Strength of Materials,2013,45(3):284-294.
[7] SIDKY P S,HOCKING M G. Review of inorganic coatings and coating processes for reducing wear and corrosion[J]. British Corrosion Journal,1999,34(3):171-183.
[8] MO J L,ZHU M H,LEYLAND A,et al. Impact wear and abrasion resistance of CrN,AlCrN and AlTiN PVD coatings[J]. Surface & Coatings Technology,2013,215(4):170-177.
[9] CASSAR G,BANFIELD S,WILSON A B,et al. Impact wear resistance of plasma diffusion treated and duplex treated/PVD-coated Ti-6Al-4V alloy[J]. Surface & Coatings Technology,2012,206(10):2645-2654.
[10] 吴凤芳. PVD氮化物涂层的冲蚀磨损特性及机理的研究[D]. 济南:山东大学,2011. WU Fengfang. Research on the erosion characteristics and wear mechanisms of nitride coatings[D]. Jinan:Shandong University,2011.
[11] CAI F,HUANG X,YANG Q. Mechanical properties,sliding wear and solid particle erosion behaviors of plasma enhanced magnetron sputtering CrSiCN coating systems[J]. Wear,2015,324-325:27-35.
[12] KUPTSOV K A,KIRYUKHANTSEV-KORNEEV P V,SHEVEYKO A N,et al. Comparative study of electrochemical and impact wear behavior of TiCN,TiSiCN,TiCrSiCN,and TiAlSiCN coatings[J]. Surface & Coatings Technology,2013,216(216):273-281.
[13] WIECIŃSKI P,SMOLIK J,GARBACZ H,et al. Erosion resistance of the nanostructured Cr/CrN multilayer coatings on Ti6Al4V alloy[J]. Vacuum,2014,107(18):277-283.
[14] CHANG Y Y,WU C J. Mechanical properties and impact resistance of multilayered TiAlN/ZrN coatings[J]. Surface & Coatings Technology,2013,231(9):62-66.
[15] FENG C,JIANG S. Cavitation erosion resistance of diamond-like carbon coating on stainless steel[J]. Applied Surface Science,2014,292(3):16-26.
[16] WELLMAN R G,NICHOLLS J R. Erosion,corrosion and erosion-corrosion of EB PVD thermal barrier coatings[J]. Tribology International,2008,41(7):657-662.
[17] SHANOV V,TABAKOFF W,METWALLY M. Erosive wear of CVD ceramic coatings exposed to particulate flow[J]. Surface & Coatings Technology,1992,54-55(9):25-31.
[18] SHANOV V,SINGH R N,TABAKOFF W. CVD diamond coating for erosion protection at elevated temperatures[J]. Journal of Materials Engineering and Performance,2002,11(2):220-225.
[19] BHUSHAN B,BHUSHAN B. Modern tribology handbook[M]. Boca Raton:CRC Press,2001.
[20] KULU P,HUSSAINOVA I,VEINTHAL R. Solid particle erosion of thermal sprayed coatings[J]. Wear,2005,258(1-4):488-496.
[21] 姚梦佳,李春福,何俊波,等. 抗冲蚀磨损涂层的研究进展[J]. 材料导报,2015(s2):283-286. YAO Mengjia,LI Chunfu,HE Junbo,et al. Progresses of anti-erosion coatings[J]. Materials Review,2015(s2):283-286.
[22] 刘成龙,林英英,王玥霁,等. 金属材料表面抗空蚀涂层的研究进展[J]. 材料导报,2011,25(1):127-131. LIU Chenglong,LIN Yingying,WANG Yueji,et al. Progress in coatings on the surface of metals for anti-cavitation corrosion[J]. Materials Review,2011,25(1):127-131.
[23] THAKUR L,ARORA N,JAYAGANTHAN R,et al. An investigation on erosion behavior of HVOF sprayed WC-CoCr coatings[J]. Applied Surface Science,2011,258(3):1225-1234.
[24] HONG S,WU Y,ZHANG J,et al. Effect of ultrasonic cavitation erosion on corrosion behavior of high-velocity oxygen-fuel (HVOF) sprayed near-nanostructured WC-10Co-4Cr coating[J]. Ultrasonics Sonochemistry,2015,27:374-378.
[25] DALLAIRE S. Hard arc-sprayed coating with enhanced erosion and abrasion wear resistance[J]. Journal of Thermal Spray Technology,2001,10(3):511-519.
[26] IRISSOU E,DADOUCHE A,LIMA R S. Tribological characterization of plasma-sprayed CoNiCrAlY-BN abradable coatings[J]. Journal of Thermal Spray Technology,2014,23(1-2):252-261.
[27] PRAVEEN A S,SARANGAN J,SURESH S,et al. Erosion wear behaviour of plasma sprayed NiCrSiB/Al2O3,composite coating[J]. International Journal of Refractory Metals & Hard Materials,2015,52:209-218.
[28] LI X Z,WANG Y T,XU G,et al. Thick Ni based amorphous composite coating with good erosion wear resistance[J]. Material Research Innovations,2015,18(S4):S4-777-S4-781.
[29] ARENSBURGER D S,ZIMAKOV S Y,KULU P A. Coatings deposited by the high-velocity flame spraying method[J]. Powder Metallurgy & Metal Ceramics,2001,40(3-4):127-134.
[30] 李太江,李巍,李勇,等. 超音速火焰喷涂制备NiCr金属陶瓷涂层的抗高温硫腐蚀与冲蚀磨损性能[J]. 中国电机工程学报,2012,32(20):120-125. LI Taijiang,LI Wei,LI Yong,et al. Performance of HVOF NiCr cermets coating against high temperature sulfur corrosion and erosion[J]. Proceedings of the Chinese Society for Electrical Engineering,2012,32(20):120-125.
[31] YASIR M,ZHANG C,WANG W,et al. Enhancement of impact resistance of Fe-based amorphous coating by Al2O3,dispersion[J]. Materials Letters,2016,171:112-116.
[32] 李国禄,李楠楠,王海斗,等. 不同喷涂工艺制备的Al2O3-13%TiO2涂层表面自由能与冲蚀磨损性能研究[J]. 机械工程学报,2016,52(10):59-66. LI Guolu,LI Nannan,WANG Haidou,et al. Research on surface free energy and erosion wear property of Al2O3-13%TiO2 coatings prepared by different spraying processes[J]. Journal of Mechanical Engineering,2016,52(10):59-66.
[33] 庞佑霞,许焰,张昊,等. 微/纳米复合涂层的抗冲蚀磨损性能[J]. 材料工程,2013(9):60-63. PANG Youxia,XU Yan,ZHANG Hao,et al. Erosion resistance of micro/nano composite coating[J]. Journal of Materials Engineering,2013(9):60-63.
[34] 杨静,周永生,李良锋,等. 氯化橡胶涂层冲蚀磨损行为的研究[J]. 摩擦学学报,2016,36(1):110-116. YANG Jing,ZHOU Yongsheng,LI Liangfeng,et al. Slurry erosion wear behaviors of chlorinated rubber paint[J]. Tribology,2016,36(1):110-116.
[35] 张荣,马颖,郝远. 等离子体电解沉积表面技术及其发展[J]. 材料导报,2008,22(s3):156-159. ZHANG Rong,MA Ying,HAO Yuan. Plasma electrolytic deposition technology and its development[J]. Materials Review,2008,22(s3):156-159.
[36] 张世欣,刘仁,王小成,等. 铝基体上等离子体电解氧化陶瓷涂层的冲蚀性能[J]. 金属热处理,2015,40(9):84-87. ZHANG Shixin,LIU Ren,WANG Xiaocheng,et al. Erosion performance of plasma electrolytic oxidation ceramic coating on aluminum substrate[J]. Heat Treatment of Metals,2015,40(9):84-87.
[37] CHEN Y,CHENG T,NIE X. Wear failure behaviour of titanium-based oxide coatings on a titanium alloy under impact and sliding forces[J]. Journal of Alloys & Compounds,2013,578(6):336-344.
[38] BAYER R G,ENGEL P A,SIRICO J L. Impact wear testing machine[J]. Wear,1972,19(3):343-354.
[39] BAYER R G,ENGEL P A,SACHER E. Impact wear phenomena in thin polymer films[J]. Wear,1975,32(2):181-194.
[40] ANTONOV M,HUSSAINOVA I,SERGEJEV F,et al. Assessment of gradient and nanogradient PVD coatings behaviour under erosive,abrasive and impact wear conditions[J]. Wear,2009,267(5-8):898-906.
[41] ABDOLLAH M F B,YAMAGUCHI Y,AKAO T,et al. Deformation-wear transition map of DLC coating under cyclic impact loading[J]. Wear,2012,s274-275(3):435-441.
[42] ABDOLLAH M F B. Future developments of a deformation-wear transition map of DLC coating[J]. Tribology Online,2012,7(3):107-111.
[43] SARLIN E,APOSTOL M,LINDROOS M,et al. Impact properties of novel corrosion resistant hybrid structures[J]. Composite Structures,2014,108:886-893
[44] LINDROOS M,APOSTOL M,KUOKKALA V T,et al. Experimental study on the behavior of wear resistant steels under high velocity single particle impacts[J]. International Journal of Impact Engineering,2015,78:114-127.
[45] SATO Y,IWABUCHI A,UCHIDATE M,et al. Dynamic corrosion properties of impact-fretting wear in high-temperature pure water[J]. Wear,2015,s330-331:182-192.
[46] LIN Y W,CAI Z B,CHEN Z Q,et al. Influence of diameter-thickness ratio on alloy Zr-4 tube under low-energy impact fretting wear[J]. Materials Today Communications,2016,8:79-90.
[47] 王璋,蔡振兵,孙阳,等. 基于冲击动能控制的Cr-DLC涂层动力学响应和磨损行为[J]. 中国表面工程,2017,30(4):78-86. WANG Zhang,CAI Zhenbing,SUN Yang,et al. Dynamic response and wear behavior of Cr-DLC coating under impact kinetic energy controlled mode[J]. China Surface Engineering,2017,30(4):78-86.
[48] WANG Z,CAI Z B,SUN Y,et al. Low velocity impact wear behavior of MoS2/Pb nanocomposite coating under controlled kinetic energy[J]. Surface & Coatings Technology,2017,326:53-62.
[49] 王璋,蔡振兵,孙阳,等. 纯铁在球/面接触下的冲击微动磨损行为研究[J]. 摩擦学学报,2017,37(2):225-232. WANG Zhang,CAI Zhenbing,SUN Yang,et al. Impact fretting wear behavior of pure iron under ball-to-flat contact[J]. Tribology,2017,37(2):225-232.
[50] CAI Z B,GUAN H D,CHEN Z Q,et al. Impact fretting wear behavior of 304 stainless steel thin-walled tubes under low-velocity[J]. Tribology International,2017,105:219-228.
[51] SUN Y,CAI Z B,CHEN Z Q,et al. Impact fretting wear of Inconel 690 tube with different supporting structure under cycling low kinetic energy[J]. Wear,2017,s376-377:625-633.
[52] GUAN H D,CAI Z B,REN Y P,et al. Impact-fretting wear behavior of Inconel 690 alloy tubes effected by pre-compressive stress[J]. Journal of Alloys and Compounds,2017,724:910-920.
[53] STRONGE W J,YU T X. Dynamic models for structural plasticity[M]. London:Springer,1993.
[54] 邱自学,袁江. 落锤式冲击试验机及其多参数测试系统[J]. 电子测量与仪器学报,2006,20(1):52-55. QIU Zixue,YUAN Jiang. Drop weight impact tester and its measuring system for multi-parameters[J]. Journal of Electronic Measurement and Instrumentation,2006,20(1):52-55.
[55] 姜祎,刘明,杜令忠,等. 热喷涂涂层结合强度的冲击测量法[J]. 中国表面工程,2017,30(3):131-138. JIANG Yi,LIU Ming,DU Lingzhong,et al. Evaluation of impact indentation adhesion test of thermal spray coatings[J]. China Surface Engineering,2017,30(3):131-138.
[56] AL-MOUSAWI M M,REID S R,DEANS W F. The use of the split Hopkinson pressure bar techniques in high strain rate materials testing[J]. Journal of Mechanical Engineering Science,1997,211(4):273-292.
[57] SHIM J,MOHR D. Using split Hopkinson pressure bars to perform large strain compression tests on polyurea at low,intermediate and high strain rates[J]. International Journal of Impact Engineering,2009,36(9):1116-1127.
[58] 索涛,邓琼,苗应刚,等. 基于Hopkinson压杆实验技术的含能材料动态力学性能测试方法研究进展[J]. 火炸药学报,2010,33(2):5-9. SUO Tao,DENG Qiong,MIAO Yinggang,et al. Progress in experimental determination of dynamic mechanical behaviors of energetic materials based on split hopkinson pressure bar[J]. Chinese Journal of Explosives & Propellants,2010,33(2):5-9.
[59] 马峰,蔡珣. 膜基界面结合强度表征和评价[J]. 表面技术,2001,30(5):15-19. MA Feng,CAI Xun. Characterization and evaluation of the interfacial bond strength between coating and substrate[J]. Surface Technology,2001,30(5):15-19.
[60] CHALKER P R,BULL S J,RICKERBY D S. A review of the methods for the evaluation of coating-substrate adhesion[J]. Materials Science & Engineering A,1991,140(91):583-592.
[61] 杨金霞. 基体拉伸法测试膜基界面结合力的研究[D]. 天津:天津大学,2007. YANG Jinxia. Study on interface bonding strength between films and substrates by substrate straining method[D]. Tianjin:Tianjin University,2007.
[62] TING B Y,RAMALINGAM S,WINER W O. An experimental investigation of the film-to-substrate bond strength of sputtered thin film using a semi-quantitative test method[J]. Journal of Tribology,1985,107(4):478-482.
[63] 郑小玲,游敏. 拉伸法测定涂层界面强度的适用性研究[J]. 粘接,2003,24(2):7-9. ZHENG Xiaoling,YOU Min. The adaptability of tensile method in determination of interfacial strength of coating layer and metal substrate[J]. Adhesion,2003,24(2):7-9.
[64] MARSHALL D B,LAWN B R,EVANS A G. Elastic/plastic indentation damage in ceramics:The lateral crack system[J]. Journal of the American Ceramic Society,1980,63(9-10):574-581.
[65] HUTCHINSON J W,SUO Z. Mixed mode cracking in layered materials[J]. Advances in Applied Mechanics,1991,29(8):63-191.
[66] VLASSAK J J,DRORY M D,NIX W D. A simple technique for measuring the adhesion of brittle films to ductile substrates with application to diamond-coated titanium[J]. Journal of Materials Research,1997,12(12):1900-1910.
[67] KRIESE M D,GERBERICH W W,MOODY N R. Quantitative adhesion measures of multilayer films:Part Ⅱ. Indentation of W/Cu,W/W,Cr/W[J]. Journal of Materials Research,1999,14(7):3007-3018.
[68] 李坤明,包亦望,万德田,等. 压痕法和十字交叉法评价类金刚石硬质涂层的界面结合强度[J]. 硅酸盐学报,2010,38(1):119-125. LI Kunming,BAO Yiwang,WAN Detian,et al. Interfacial bonding strength of diamond-like carbon coating using indentation and cross-bonded methods[J]. Journal of the Chinese Ceramic Society,2010,38(1):119-125.
[69] 冯爱新,张永康,谢华琨,等. 划痕试验法表征薄膜涂层界面结合强度[J]. 江苏大学学报,2003,24(2):15-19. FENG Aixin,ZHANG Yongkang,XIE Huakun,et al. Characterization of interfacial adhesion and bond strength between thin film coating and substrate by scratch testing[J]. Journal of Jiangsu University,2003,24(2):15-19.
[70] BURNETT P J,RICKERBY D S. The scratch adhesion test:An elastic-plastic indentation analysis[J]. Thin Solid Films,1988,157(2):233-254.
[71] BULL S J,BERASETEGUI E G. Chapter 7-An overview of the potential of quantitative coating adhesion measurement by scratch testing[J]. Tribology & Interface Engineering,2006,51(2):136-165.
[72] RANDALL N X,FAVARO G,FRANKEL C H. The effect of intrinsic parameters on the critical load as measured with the scratch test method[J]. Surface & Coatings Technology,2001,137(2):146-151.
[73] 中华人民共和国机械工业部. JB/T8554-1997,气相沉积薄膜与基体附着力的划痕试验法[S]. 北京:机械科学研究院,1997. Ministry of Machinery and Industry of the People' Republic of China. JB/T8554-1997,Scratch test method for adhesion between vapor deposition films and substrates[S]. Beijing:Institute of Mechanical Science,1997.
[74] 石宗利,黄元林,王彦平,等. Ag-Cu/Ti纳米双层膜结合强度测试方法研究[J]. 实验力学,2002,17(2):170-176. SHI Zongli,HUANG Yuanlin,WANG Yanping,et al. A study on the testing methods of the adhesion strength of Ag-Cu/Ti nano-bilayer film system[J]. Journal of Experimental Mechanics,2002,17(2):170-176.
[75] BOUZAKIS K D,CHARALAMPOUS P,SKORDARIS G,et al. Fatigue and adhesion characterization of DLC coatings on steel substrates by perpendicular and inclined impact tests[J]. Surface & Coatings Technology,2015,275:207-213.
[76] LAWES S D A,HAINSWORTH S V,FITZPATRICK M E. Impact wear testing of diamond-like carbon films for engine valve-tappet surfaces[J]. Wear,2010,268(11):1303-1308.
[77] 王艳,周仲荣. 钛合金表面非平衡磁控溅射制备TiN薄膜的冲击磨损性能[J]. 中国表面工程,2010,23(4):7-10. WANG Yan,ZHOU Zhongrong. Impact wear performance of TiN film grown on Ti alloys by unbalanced magnetron sputtering[J]. China Surface Engineering,2010,23(4):7-10.
[78] 石世宏,傅戈雁,李婷,等. 激光涂层及多冲后的组织结构变化[J]. 中国机械工程,2005,16(11):1005-1008. SHI Shihong,FU Geyan,LI Ting,et al. Organization variety of laser cladding layer under repeated impact load[J]. China Mechanical Engineering,2005,16(11):1005-1008.
[79] MANHABOSCO T M,MÜLLER I L. Tribocorrosion of diamond-like carbon deposited on Ti6Al4V[J]. Tribology Letters,2009,33(3):193-197.
[80] ZHOU L Y,ZHANG H,PEI X Q,et al. Erosive wear of transparent nanocomposite coatings[J]. Tribology International,2013,61(61):62-69.
[81] LAGUNA-CAMACHO J R,MÁRQUEZ-VERA C A,PATIÑO-VALDEZ A A,et al. A study of the erosive wear damage on a recycled polymer coating[J]. Wear,2015,s332-333:836-843.
[82] BOUZAKIS K D,ASIMAKOPOULOS A,SKORDARIS G,et al. The inclined impact test:A novel method for the quantification of the adhesion properties of PVD films[J]. Wear,2007,262(11-12):1471-1478.
[83] BOUZAKIS K D,ASIMAKOPOULOS A,MICHAILIDIS N,et al. The inclined impact test,an efficient method to characterize coatings' cohesion and adhesion properties[J]. Thin Solid Films,2004,s469-470(1):254-262.
[84] KIM G S,LEE S Y,HAHN J H,et al. Effects of the thickness of Ti buffer layer on the mechanical properties of TiN coatings[J]. Surface & Coatings Technology,2002,171(1-3):83-90.
[85] 何光宇,李应红,柴艳,等. 航空发动机压气机叶片砂尘冲蚀防护涂层关键问题综述[J]. 航空学报,2015,36(6):1733-1743. HE Guangyu,LI Yinghong,CHAI Yan,et al. Review of key issues on coating against sand erosion of aero-engine compressor blade[J]. Acta Aeronautica ET Astronautica Sinica,2015,36(6):1733-1743.
[86] BORAWSKI B,SINGH J,TODD J A,et al. Multi-layer coating design architecture for optimum particulate erosion resistance[J]. Wear,2011,271(11):2782-2792.
[87] BORAWSKI B,TODD J A,SINGH J,et al. The influence of ductile interlayer material on the particle erosion resistance of multilayered TiN based coatings[J]. Wear,2011,271(11-12):2890-2898.
[88] BOUZAKIS K D,VIDAKIS N,LEYENDECKER T,et al. Determination of the fatigue behaviour of thin hard coatings using the impact test and a FEM simulation[J]. Surface & Coatings Technology,1996,s86-87(96):549-556.
[89] BOUZAKIS K D,SIGANOS A,LEYENDECKER T,et al. Thin hard coatings fracture propagation during the impact test[J]. Thin Solid Films,2004,460(1-2):181-189.