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Surface Engineering for Corrosion and Wear Resistance

Introduction to Surface Engineering for Corrosion and Wear Resistance [Pg.1]

SURFACE ENGINEERING is a multidisciplinary activity intended to tailor the properties of the surfaces of engineering components so that their function and serviceability can be improved. The ASM Handbook defines surface engineering as treatment of the surface and near-surface regions of a material to allow the surface to perform functions that are distinct from those fimctions demanded fi om the bulk of the material (Ref 1). The desired properties or characteristics of surface-engineered components include  [Pg.1]

Improved corrosion resistance through barrier or sacrificial protection Improved oxidation and/or sulfidation resistance Improved wear resistance Reduced fiictional energy losses [Pg.1]

Improved mechanical properties, for example, enhanced fatigue or toughness [Pg.1]

Improved electronic or electrical properties Improved thermal insulation Improved aesthetic appearance [Pg.1]


Harris, S. J., Green, P. D. and Cobb, R. C., Thermally Sprayed Al-Zn-In-Sn Alloys in 3rd Int. Conf. on Advances in Surface Engineering for Corrosion and Wear Resistance, Newcastle-upon-Tyne, 1-10(1992)... [Pg.479]

Davis JR (ed) (2001) Surface engineering for corrosion and wear resistance. ASM International, Ohio... [Pg.358]

ASM, Introduction to Surface Engineering for Corrosion and Wear Resistance. ytSW, (2001) 1-11. [Pg.156]


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Corrosion and wear

Corrosion resistance

Corrosion surface

Corrosive wear

Surface engineering

Surface resistance

Surface resistivity

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