Pulse electrodeposition of Ni-P matrix composite coatings reinforced by SiC particles

被引:78
作者
Zoikis-Karathanasis, A. [1 ]
Pavlatou, E. A. [1 ]
Spyrellis, N. [1 ]
机构
[1] Natl Tech Univ Athens, Lab Gen Chem, Sch Chem Engn, GR-15780 Athens, Greece
关键词
Pulse electrodeposition; Composite coatings; Nickel-phosphorus alloy; Silicon carbide; X-ray diffraction; Microhardness; PHYSICOCHEMICAL PROPERTIES; CORROSION-RESISTANCE; WEAR-RESISTANCE; HEAT-TREATMENT; NICKEL; CODEPOSITION; NI-P-AL2O3; LAYERS;
D O I
10.1016/j.jallcom.2010.01.057
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Ni-P/SiC composite coatings were produced under both direct and extended pulse current conditions from an additive-free modified Watts type bath at various hydrodynamic conditions. Structural analysis revealed an amorphous phase of Ni-P matrix for the majority of coatings, except for those prepared under low duty cycle and high frequency pulses that exhibited mainly the crystalline Ni2P5 compound. The practice of pulse plating regime led to composite coatings with higher incorporation rate of SiC particles (up to 22 wt.%) and microhardness values (up to 7.2 GPa) than those produced under direct current conditions. It has been revealed that increased micron-SiC codeposition percentage resulted in decrease of P content in the amorphous matrix and increase of the deposits' hardness values. After annealing at 400 C the amorphous matrix was crystallized to phases of Ni, Ni2P, and Ni3P, the formation of which depends on the P content. As-plated deposits exhibiting Ni12P5 phase preserved this crystalline structure after thermal treatment. Annealed coatings exhibited almost double values of microhardness relative to those of the as-deposited coatings. (C) 2010 Elsevier B.V. All rights reserved.
引用
收藏
页码:396 / 403
页数:8
相关论文
共 42 条
[1]   Comparision of physicochemical properties of Cr, Ni-P, Ni-Mo, Ni'W'-P and Mn-Zn alloys coatings [J].
Agladze, T ;
Bagaev, S ;
Gabe, D ;
Kudryavtsev, V ;
Raub, C ;
Schachameyer, S ;
Spyrelis, N ;
Tsupak, T .
TRANSACTIONS OF THE INSTITUTE OF METAL FINISHING, 1997, 75 :30-34
[2]   The effect of heat treatment on the structure and abrasive wear resistance of autocatalytic NiP and NiP-SiC coatings [J].
Apachitei, I ;
Tichelaar, FD ;
Duszczyk, J ;
Katgerman, L .
SURFACE & COATINGS TECHNOLOGY, 2002, 149 (2-3) :263-278
[3]   Effect of reinforcing submicron SiC particles on the wear of electrolytic NiP coatings - Part 1. Uni-directional sliding [J].
Aslanyan, IR ;
Bonino, JP ;
Celis, JP .
SURFACE & COATINGS TECHNOLOGY, 2006, 200 (09) :2909-2916
[4]   Effects of annealing temperatures on the physicochemical properties of nickel-phosphorus deposits [J].
Bai, A ;
Hu, CC .
MATERIALS CHEMISTRY AND PHYSICS, 2003, 79 (01) :49-57
[5]   Preparation and characterization of autocatalytic low phosphorus nickel coatings containing submicron silicon nitride particles [J].
Balaraju, J. N. ;
Rajam, K. S. .
JOURNAL OF ALLOYS AND COMPOUNDS, 2008, 459 (1-2) :311-319
[6]  
BERKH O, 1995, PLAT SURF FINISH, V82, P62
[7]  
Berkh O, 1996, MET FINISH, V94, P35
[8]   An investigation on corrosion resistance of as-applied and heat treated Ni-P/nanoSiC coatings [J].
Bigdeli, Faryad ;
Allahkaram, Saeed Reza .
MATERIALS & DESIGN, 2009, 30 (10) :4450-4453
[9]   Thermal stability of electrodeposited Ni-P alloys [J].
Bonino, JP ;
BruetHotellaz, S ;
Bories, C ;
Pouderoux, P ;
Rousset, A .
JOURNAL OF APPLIED ELECTROCHEMISTRY, 1997, 27 (10) :1193-1197
[10]   ON THE AMORPHOUS AND CRYSTALLINE STATE OF ELECTRODEPOSITED NICKEL-PHOSPHORUS COATINGS [J].
BREDAEL, E ;
BLANPAIN, B ;
CELIS, JP ;
ROOS, JR .
JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 1994, 141 (01) :294-298