|
[1] Raghavendra, C. R., Basavarajappa, S. and Sogalad, I., 2019, “Electrodeposition of Ni-nano composite coatings: a review,” Inorganic and Nano-Metal Chemistry, Vol. 48, No.12, pp. 583-598. [2]Low, C. T. J., Wills, R. G. A. and Walsh, F.C., 2006, “Electrodeposition of composite coatings containing nanoparticles in a metal deposit,” Surface and Coatings Technology, Vol. 201, No.1-2, pp. 371-383. [3]Williams, R. V. and Martin, P. W., 2017, “Electrodeposited Composite Coatings,” Transactions of the IMF, Vol. 42, No.1, pp. 182-188. [4]Lelevic, A. and Walsh, F.C., 2019, “Electrodeposition of Ni P composite coatings: A review,” Surface and Coatings Technology, Vol. 378 , pp.124803. [5]Aruna, S. T., William Grips, V.K. and Rajam, K.S., 2009, “Ni-based electrodeposited composite coating exhibiting improved microhardness, corrosion and wear resistance properties,” Journal of Alloys and Compounds, Vol. 468, No.1-2, pp. 546-552. [6]Schlesinger, M. and Paunovic, M., 2011, Modern electroplating, John Wiley & Sons, pp. 79-114. [7]Fink, C. G., and Prince, J.D., 1928, “Codeposition of Copper and Graphite,” Transactions of the American Electrochemical Society , Vol. 54, pp. 315-321. [8]Williams, R. V. and Martin, P. W., 1964, “Electrodeposited Composite Coatings,” Transactions of the IMF, Vol. 42, No. 1, pp. 182-188. [9]Walsh, F. C. and Ponce de Leon, C., 2014, “A review of the electrodeposition of metal matrix composite coatings by inclusion of particles in a metal layer: an established and diversifying technology,” Transactions of the IMF, Vol. 92, No.2, pp. 83-98. [10]Guglielmi, N., 1972, “Kinetics of the Deposition of Inert Particles from Electrolytic Baths,” Journal of the Electrochemical Society, Vol.119, No.8, pp. 1009-1012. [11]Bazzard, Rosemary and Boden, P. J., 1972, “Nickel-Chromium Alloys by Codeposition,” Transactions of the IMF, Vol. 50, pp. 63–69,207– 210. [12]Brandes, EA, and Goldthorpe, D., 1967, “Co-deposition of metals and ceramic particles,” Metallurgia, Vol. 76, pp. 195–198. [13]Beltowska-Lehman, E., Bigos, A., Indyka, P. and Kot, M., 2012, “Electrodeposition and characterisation of nanocrystalline Ni–Mo coatings, Surface and Coatings Technology,” Vol. 211, pp. 67-71. [14]Celis, J. P., Roos, J. R. and Buelens, C., 1987, “A Mathematical Model for the Electrolytic Codeposition of Particles with a Metallic Matrix,” Journal of the Electrochemical Society, Vol.134, pp. 1402-1408. [15]Hwang, B. J. and Hwang, C. S., 1993, “Mechanism of Codeposition of Silicon Carbide with Electrolytic Cobalt,” Journal of the Electrochemical Society, Vol. 140, No.4, pp. 979-984. [16]Vereecken, P., Shao, I. and Searson, P., 2000, “Particle Codeposition in Nanocomposite Films,” Journal of The Electrochemical Society, Vol. 147, No.7, pp. 2572-2575. [17]Berçot, P., Peña-Muñoz, E. and Pagetti, J., 2002, “Electrolytic composite Ni–PTFE coatings: an adaptation of Guglielmi's model for the phenomena of incorporation,” Surface and Coatings Technology, Vol. 157, No.2, pp. 282-289. [18]Fransaer, J, Celis, J. P. and Roos, J. R., 1992, “Analysis of the Electrolytic Codeposition of Non‐Brownian Particles with Metals,” Journal of the Electrochemical Society, Vol. 139, pp. 413. [19]Maurin, G. and Lavanant, A., 1995, “Electrodeposition of nickel/silicon carbide composite coatings on a rotating disc electrode,” Journal of Applied Electrochemistry, Vol. 25, No.12, pp. 1113-1121. [20]Paydar, S., Jafari, A., Bahrololoom, M. E. and Mozafari, V., 2013, “Enhancing Ni electroplated matrix through mixed boron nitride–carbide reinforcement,” Vacuum, Vol. 92, pp. 52-57. [21]Bahadormanesh, B. and Dolati, A., 2010, “The kinetics of Ni–Co/SiC composite coatings electrodeposition,” Journal of Alloys and Compounds, Vol. 504, No.2, pp. 514-518. [22]Jin, P., Sun, C., Zhang, Z., Zhou, C. and Williams, T, 2020, “Fabrication of the Ni-W-SiC thin film by pulse electrodeposition,” Surface and Coatings Technology, Vol. 392, pp. 125738. [23]Paydar, S., Jafari, A., Bahrololoom, M. E. and Mozafari, V., 2015, “Influence of BN and B4C particulates on wear and corrosion resistance of electroplated nickel matrix composite coatings,” Tribology - Materials, Surfaces & Interfaces, Vol. 9, No.2, pp. 105-110. [24]Liu, Y., Ren, L., Yu, S. and Han, Z., 2008, “Influence of current density on nano-Al2O3/Ni+Co bionic gradient composite coatings by electrodeposition,” Journal of University of Science and Technology Beijing, Mineral, Metallurgy, Material, Vol. 15, No.5, pp. 633-637. [25]Huang, P. C., Hou, K. H., Hong, J. J., Lin, Me. H. and Wang, G. L., 2021, “Study of fabrication and wear properties of Ni–SiC composite coatings on A356 aluminum alloy,” Wear, Vol. 477, pp. 203772. [26]Karbasi, M., Yazdian, N. and Vahidian, A.,2012, “Development of electro-co-deposited Ni–TiC nano-particle reinforced nanocomposite coatings,” Surface and Coatings Technology, Vol.207, pp. 587-593. [27]Jin, P., Sun, C., Zhang, Z., Zhou, C. and Williams, T, 2020, “Fabrication of the Ni-W-SiC thin film by pulse electrodeposition,” Surface and Coatings Technology, Vol. 392, pp. 125738. [28]Wang, Y., Zhou, Q., Li, K., Zhong, Q. and Bui, Q. B., 2015, “Preparation of Ni–W–SiO2 nanocomposite coating and evaluation of its hardness and corrosion resistance,” Ceramics International, Vol. 41, No.1, Part A, pp. 79-84. [29]Feng, Q., Li, T., Yue, H., Qi, K., Bai, F. and Jin, J., 2008, “Preparation and characterization of nickel nano-Al2O3 composite coatings by sediment co-deposition,” Applied Surface Science, Vol. 254, No.8, pp. 2262-2268. [30]Özkan, S., Hapçı, G., Orhan, G. and Kazmanlı, K., 2013, “Electrodeposited Ni/SiC nanocomposite coatings and evaluation of wear and corrosion properties,” Surface and Coatings Technology, Vol. 232, pp. 734-741. [31]Ünal, E. and Karahan, İ.H., 2018, “Effects of ultrasonic agitation prior to deposition and additives in the bath on electrodeposited Ni-B/hBN composite coatings,” Journal of Alloys and Compounds, Vol. 763, pp. 329-341. [32]Mersagh Dezfuli, S. and Sabzi, M., 2019, “Deposition of ceramic nanocomposite coatings by electroplating process: A review of layer-deposition mechanisms and effective parameters on the formation of the coating,” Ceramics International, Vol.45, No.17, Part A, pp. 21835-21842. [33]Chen, L., Wang, L., Zeng, Z. and Zhang, J., 2006, “Effect of surfactant on the electrodeposition and wear resistance of Ni–Al2O3 composite coatings,” Materials Science and Engineering: A, Vol. 434, No.1-2, pp. 319-325. [34]Lari Baghal, S.M., Amadeh, A., Heydarzadeh Sohi, M. and Hadavi, S. M. M., 2013, “The effect of SDS surfactant on tensile properties of electrodeposited Ni–Co/SiC nanocomposites,” Materials Science and Engineering: A, Vol. 559, pp. 583-590. [35]Kartal, M., Uysal, M., Gul, H., Alp, A. and Akbulut, H., 2015, “Effect of surfactant concentration in the electrolyte on the tribological properties of nickel-tungsten carbide composite coatings produced by pulse electro co-deposition,” Applied Surface Science, Vol. 354, pp. 328-336. [36]Kılıç, F., Gül, H., Aslan, S., Alp, A. and Akbulut, H., 2013, “Effect of CTAB concentration in the electrolyte on the tribological properties of nanoparticle SiC reinforced Ni metal matrix composite (MMC) coatings produced by electrodeposition,” Colloids and Surfaces A: Physicochemical and Engineering Aspects, Vol. 419, pp. 53-60. [37]Gyawali, G., Kim, H. S., Tripathi, K., Kim, T. H. and Lee, S. W., 2014, “Fabrication and Characterization of Electrodeposited Ni–SiC–h/BN Composite Coatings,” Journal of Materials Science & Technology, Vol. 30, No.8, pp. 796-802. [38]Sajjadnejad, M., Haghshenas, S. M. S., Tavakoli Targhi, V., Setoudeh, N., Hadipour, A., Moghanian, A. and Hosseinpour, S., 2021, “Wear behavior of alkaline pulsed electrodeposited nickel composite coatings reinforced by ZnO nanoparticles,” Wear, Vol. 468-469, pp. 203591. [39]Shrestha, N. K., Masuko, M. and Saji, T., 2003, “Composite plating of Ni/SiC using azo-cationic surfactants and wear resistance of coatings,” Wear, Vol. 254, No.5-6, p. 555-564. [40]Wu, M., Jia, W. and Lv, P., 2017, “Electrodepositing Ni-TiN nanocomposite Layers with Applying Action of Ultrasonic Waves,” Procedia Engineering, Vol.174, pp. 717-723. [41]Sheu, H. H., Wang, Q. Y., Huang, P. C., Cheng, A. Y., Liu, Y. M., Hou, K. H. and Ger, M. D., 2021, “Effect of Trimethylamine Borane (TMAB) on the Corrosion Resistance and Mechanical Properties of Nickel-Based Composite Coatings,” International Journal of Electrochemical Science, Vol. 16, pp. 21049. [42]Zhang, H., Wang, J., Chen, S., Wang, H., He, Y. and Ma, C., 2021, “Ni–SiC composite coatings with improved wear and corrosion resistance synthesized via ultrasonic electrodeposition,” Ceramics International, Vol. 47, No.7, Part A, pp. 9437-9446. [43]Jappes, J. T. W., Brintha, N. C., Khan, M. A. and Christo, N. J., 2021, “Effect of modified method of coating on particle incorporation and wear resistance of nickel – phosphorus – diamond composite coatings,” Materials Today: Proceedings, Vol. 45, pp. 1509-1513. [44]Raghavendra, C.R., Basavarajappa, S., Sogalad, I., Kumbar, V. S. and Salunkhe, P. S., 2021, “Wear behavior and pin temperature of Ni-Al2O3 nano composite coating by electro co-deposition process,” Materials Today: Proceedings, Vol. 38, pp. 2162-2166. [45]Hou, K. H., Han, T. W., Sheu, H. H. and Ger, M. D., 2014, “Preparation and wear resistance of electrodeposited Ni–W/diamond composite coatings,” Applied Surface Science, Vol. 308, pp. 372-379. [46]Li, X., Shen, Q., Zhang, Y., Wang, L. and Nie, C., 2021, “Wear behavior of electrodeposited nickel/graphene composite coating,” Diamond and Related Materials, Vol. 119, pp. 108589. [47]He, Y., Wang, S. C., Walsh, F. C., Chiu, Y. L. and Reed, P. A. S., 2016, “Self-lubricating Ni-P-MoS2 composite coatings,” Surface and Coatings Technology, Vol. 307, pp. 926-934. [48]Iacovetta, D., Tam, J. and Erb, U., 2015, “Synthesis, structure, and properties of superhydrophobic nickel–PTFE nanocomposite coatings made by electrodeposition,” Surface and Coatings Technology, Vol. 279, pp. 134-141. [49]高誠輝, 2006, 非晶態合金度及其鍍層性能,科學出版社,北京,pp. 39-47。 [50]Chandrasekar, M. S. and Pushpavanam, M., 2008, “Pulse and pulse reverse plating—Conceptual, advantages and applications,” Electrochimica Acta, Vol. 53, No.8, pp. 3313-3322. [51]Stachowiak, G. and Batchelor, A. W., 2013, Engineering tribology, Butterworth-Heinemann, pp. 501-571. [52]Pham-Ba, S., Brink, T. and Molinari, J. F., 2020, “Adhesive wear and interaction of tangentially loaded micro-contacts,” International Journal of Solids and Structures, Vol. 188-189, pp. 261-268. [53]Davis, J.R., 2001, Surface engineering for corrosion and wear resistance, ASM international. [54]Stachowiak, G. W. and Batchelor, A.W., 2013, Engineering tribology, Butterworth-heinemann. [55]楊聰仁,1992,“腐蝕概論”,防蝕工程學刊 ,第6卷,第2期,pp. 57-65。 [56]Medelien, V., 2002, “The influence of B4C and SiC additions on the morphological, physical, chemical and corrosion properties of Ni coatings,” Surface and Coatings Technology, Vol. 154, No.1, pp. 104-111. [57]Ger, M. D. and Hwang, B. J., 2002, “Effect of surfactants on codeposition of PTFE particles with electroless Ni-P coating,” Materials Chemistry and Physics, Vol. 76, No.1, pp. 38-45.
|