ExLibris header image
SFX Logo
Title: Hardness of electrodeposited microcrystalline and nanocrystalline γ-phase Zn-Ni alloys
Source:

Scripta Materialia [1359-6462] Brooks, I yr:2001


Collapse list of basic services Basic
Sorry, no full text available...
Please use the document delivery service (see below)  
Holding information
Holdings in library search engine ALBERT GO
Document delivery
Request document via Library/Bibliothek GO
Users interested in this article also expressed an interest in the following:
1. Lin, C S. "Microstructure and formability of ZnNi alloy electrodeposited sheet steel." Metallurgical and materials transactions. A, Physical metallurgy and materials science 31.2 (2000): 475-485. Link to Full Text for this item Link to SFX for this item
2. Zhao, H L. "High work-hardening effect of the pure NiAl intermetallic compound fabricated by the combustion synthesis and hot pressing technique." Materials letters 65.17-18 (2011): 2604-2606. Link to SFX for this item
3. Kim, Y. "A study of the method of evaluation of the frictional characteristics of ZnNi coated steel sheets." Journal of materials processing technology 36.2 (1993): 187-197. Link to SFX for this item
4. Jahangiri, M. "Application and conceptual explanation of an energy-based approach for the modelling and prediction of sliding wear." Wear 274 (2012): 168-174. Link to SFX for this item
5. Song, J. "Time-dependent deformation behavior of interfacial intermetallic compound layers in electronic solder joints." Journal of materials research 25.4 (2010): 629-632. Link to SFX for this item
6. Park, H. "The role of texture and morphology in optimizing the corrosion resistance of zinc-based electrogalvanized coatings." Corrosion science 40.4-5 (1998): 525-545. Link to SFX for this item
7. Bruet-Hotellaz. "Structure of zinc-nickel alloyelectrodeposits." Journal of materials science 34.4 (1999): 881-886. Link to Full Text for this item Link to SFX for this item
8. Belkhir, N. "Surface behavior during abrasive grain action in the glass lapping process." Applied surface science 255.18 (2009): 7951-7958. Link to SFX for this item
9. Leonard, Benjamin D. "A Numerical and Experimental Investigation of Fretting Wear and a New Procedure for Fretting Wear Maps." Tribology transactions 55.3 (2012): 313-324. Link to SFX for this item
10. Robertson, S G. "A kinetic and electrochemical study of the zincate immersion process for aluminium." Journal of Applied Electrochemistry 25.7 (1995): 659-666. Link to Full Text for this item Link to SFX for this item
11. Rodriguez Tembleque, L. "A boundary elements formulation for 3D fretting-wear problems." Engineering analysis with boundary elements 35.7 (2011): 935-943. Link to SFX for this item
12. Kris, De M. "A novel energy-based generic wear model at the asperity level." Wear 270.11-12 (2011): 760-770. Link to SFX for this item
13. Menezes, P. "Studies on Friction and Formation of Transfer Layer in HCP Metals." Journal of tribology 131.3 (2009): 31604-9. Link to SFX for this item
14. Barber, J P. "A Survey of Armature Transition Mechanisms." IEEE transactions on magnetics 39.1 (2003): 47-51. Link to SFX for this item
15. Bellezze, T. "Electrochemical study on the corrosion resistance of CrIII-based conversion layers on zinc coatings." Surface & coatings technology 155.2-3 (2002): 221-230. Link to Full Text for this item Link to SFX for this item
16. Seo, M. "Localised investigation of coarse grain gold with the scanning droplet cell and by the Laue method." Electrochimica Acta 1999. 3769-3777. Link to Full Text for this item Link to SFX for this item
17. HINZ, D. "MODELING THE EFFECT OF COINCIDENCE SITE LATTICE BOUNDARIES ON GRAIN-GROWTH TEXTURES." Physical review 52.14 (1995): 9900-9909. Link to Full Text for this item Link to SFX for this item
View More...
View Less...
Select All Clear All

Expand list of advanced services Advanced