The influence of Nd on the corrosion behavior of electroless-deposited Fe–P
-
Yan Meng
Abstract
Fe – Nd – P layers were prepared by electroless deposition. Discussed in this paper is the influence of the rare earth element Nd on the deposition rate, mixed potential, anti-corrosion performance, structure, and surface morphology of the deposit. The results show that the deposition rate increases with the addition of Nd and the increment can be as high as 30 %. The addition of Nd also improves the homogeneity of the deposit, eliminates pores, and reduces the particle size. Electroless Fe – P deposits incorporated with Nd also exhibit significantly improved anti-corrosion performance, especially in alkaline media.
References
[1] A.Ludwig, E.Quandt: J. Appl. Phys.87 (2000) 469.10.1063/1.373132Suche in Google Scholar
[2] K.-M.Yin, B.-T.Lin: Surf. Coat. Tech.78 (1996) 205.10.1016/0257-8972(94)02410-3Suche in Google Scholar
[3] W.Arabczyk, U.Narkiewicz, D.Moszynâski: Appl. Catal. A-Gen.182 (1999) 379.10.1016/S0926-860X(99)00034-4Suche in Google Scholar
[4] A.RüdigerU.Köster: Mat. Sci. Eng.294–296 (2000) 890.10.1016/S0921-5093(00)01037-6Suche in Google Scholar
[5] S.J.Pang, T.Zhang, K.Asami: Corros. Sci.44 (2002) 1847.10.1016/S0010-938X(02)00002-1Suche in Google Scholar
[6] A.Brenner, G.J.Riddell: National Bureau of Standards, Vol. XXXVII (1946) 31.10.6028/jres.037.019Suche in Google Scholar
[7] W.Fernengel, W.Rodewald, R.Blank, P.Schrey, M.Katter, B.Wall: J. magn. magn mater.196–197 (1999) 288.Suche in Google Scholar
[8] S.J.Pang, T.Zhang, K.Asami: Acta Mater.50 (2002) 489.10.1016/S1359-6454(01)00366-4Suche in Google Scholar
[9] P.Tartaj, T.Glez-Carren, O.Bomati-Migue, etal.: Phys. Rev. B69 (2004) 094401-1-8.10.1103/PhysRevB.69.094401Suche in Google Scholar
[10] C.Ruscior, E.Croiala: J. Electrochem. Soc.18 (1971) 696.10.1149/1.2408146Suche in Google Scholar
[11] C.M.Chu, J.Chin: Inst. Chem. Engrs.34 (2003) 689.Suche in Google Scholar
[12] L.S.Sanches, S.H.Domingues, A.Carubelli, L.H.Mascaro: J. Braz. Chem. Soc.14 (2003) 556.10.1590/S0103-50532003000400011Suche in Google Scholar
[13] G.Blackwood, B.Balakrisnan, Y.Z.Huang, C.K.Tan: J. magn. magn. mater.223 (2001) 103.10.1016/S0304-8853(00)00716-2Suche in Google Scholar
[14] F.S.Hoor, C.L.Aravinda, M.F.Ahmed, S.M.Mayanna: J. Power Sources103 (2001) 147.10.1016/S0378-7753(01)00824-2Suche in Google Scholar
[15] W.-Y.Ching, Y.-N.Xu: J. magn. magn. mater.209 (2000) 28.10.1016/S0304-8853(99)00638-1Suche in Google Scholar
[16] S.H.Choi, J.H.Oh, T.Ko: J. magn. magn mater.272–276 (2004) 2233.Suche in Google Scholar
[17] F.E.Atalay: J. magn. magn. mater.272–276 (2004) 2415.10.1016/j.jmmm.2003.12.842Suche in Google Scholar
[18] B.W.Zhang, H.W.Xie: Mater. Sci. Eng. A281 (2000) 286.10.1016/S0921-5093(99)00720-0Suche in Google Scholar
[19] K.D.Sen, P. C.Schmidt, A.Weiss: Theoretical Chemistry Accounts: Theory, Computation, and Modeling58 (1980) 69.Suche in Google Scholar
[20] T.-Y.Chan, S.-T.Lin: J. Mater. Process. Tech.89–90 (1999) 165.Suche in Google Scholar
© 2007, Carl Hanser Verlag, München
Artikel in diesem Heft
- Contents
- Contents
- Basic
- Texture and microstructure evolution of ECAP processed AlMg1Mn0.14 alloy
- Modelling grain refinement in fcc metals during equal-channel angular pressing by route “C”
- Fabrication of high strength nanostructured aluminium alloys by hydrostatic extrusion
- Comparison of the plastic strain distribution during equal-channel angular pressing (ECAP) using 2D and 3D FEM modeling
- Deformation twins in ultrafine grained commercial aluminum
- Compressive behaviour of ultrafine-grained AA6063T6 over a wide range of strains and strain rates
- Grain refinement response during twist extrusion of an Al-0.13% Mg alloy
- Preparation of NiO–LiFeO2 solid solutions: the role of mechanical and thermal treatments
- Applied
- Fatigue strength and fracture behavior of steels with and without interstitial carbon at room temperature in air
- The influence of Nd on the corrosion behavior of electroless-deposited Fe–P
- Time-dependent directional solidification of binary Al–Cu alloys in the initial transient
- Effect of V2O5 doping on the microstructure and local composition of textured Sr0.4Ba0.6Nb2O6 ceramics
- Microstructure and mechanical properties of AZ91D alloy prepared by a semi-solid diecasting process
- Development of SMD 32.768 kHz tuning fork type crystals
- Notifications
- DGM News
Artikel in diesem Heft
- Contents
- Contents
- Basic
- Texture and microstructure evolution of ECAP processed AlMg1Mn0.14 alloy
- Modelling grain refinement in fcc metals during equal-channel angular pressing by route “C”
- Fabrication of high strength nanostructured aluminium alloys by hydrostatic extrusion
- Comparison of the plastic strain distribution during equal-channel angular pressing (ECAP) using 2D and 3D FEM modeling
- Deformation twins in ultrafine grained commercial aluminum
- Compressive behaviour of ultrafine-grained AA6063T6 over a wide range of strains and strain rates
- Grain refinement response during twist extrusion of an Al-0.13% Mg alloy
- Preparation of NiO–LiFeO2 solid solutions: the role of mechanical and thermal treatments
- Applied
- Fatigue strength and fracture behavior of steels with and without interstitial carbon at room temperature in air
- The influence of Nd on the corrosion behavior of electroless-deposited Fe–P
- Time-dependent directional solidification of binary Al–Cu alloys in the initial transient
- Effect of V2O5 doping on the microstructure and local composition of textured Sr0.4Ba0.6Nb2O6 ceramics
- Microstructure and mechanical properties of AZ91D alloy prepared by a semi-solid diecasting process
- Development of SMD 32.768 kHz tuning fork type crystals
- Notifications
- DGM News