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New Publication |
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Surface Engineering
Surface Engineering is a synergistic combination of bulk
and surface materials to yield a system with specific properties which can
be produced by neither the bulk material nor the surface material on its
own. In the modern industrial world, this approach is being increasingly
adopted to achieve increased reliability and enhanced performance of
degradation-prone industrial components. It encompasses coating and surface
treatment processes, capable of altering surface properties to provide
improved resistance against deterioration due to mechanisms such as
corrosion, oxidation, wear or failure under an excessive heat load. The wide
spectrum of surface technologies accessible to design engineers today
include electro-deposition, diffusion coatings, thermal spraying, physical
and chemical vapour deposition, sol-gel coatings, plasma and laser assisted
surface modification etc. Advances in the field of coatings technology in
recent years have made it possible to realise the immense potential of
surface engineering in diverse industry segments. Although surface
engineering is of growing industrial relevance globally, the industry in the
developing countries is yet to exploit the state-of-the-art surface
modification technologies to their full potential and ongoing R&D efforts in
this area are also far short of what this important field demands.
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| 1. | Diffusion Coatings (D. K. Das) | |||||||||||
| 2. | Thermally Sprayed Coatings (Srikant V. Joshi) | |||||||||||
| 3. | Detonation Spray Coating Technology: Capabilities and Applications. (D. Srinivasa Rao) | |||||||||||
| 4. | Cold Gas Dynamic Spraying (G. Sivakumar and S. V. Joshi) | |||||||||||
| 5. | Sol Gel Coating: Basic Science, Processing and Applications (U. S. Hareesh) | |||||||||||
| 6. | Laser Assisted Surface Modification of Engineering Metals and Alloys (Jyotsna Dutta Majumdar and Indranil Manna) | |||||||||||
| 7. | Surface Engineering with Low Pressure Plasma (S. Mukherji) | |||||||||||
| 8. | Thin Film Processing: An Overview (A. Subrahmanyam) | |||||||||||
| 9. | Micro Arc Oxidation Vs Hard Anodizing: Process Features & Coating Properties (L. Rama Krishna) | |||||||||||
| 10. | Nanostructured Multilayer Superlattice Coatings and Nanocomposite Coatings (Harish C. Barshilia) | |||||||||||
| 11. | Electro-Spark Coating (K. R. C. Soma Raju) | |||||||||||
| 12. | High Temperature Coating (A. S. Khanna) | |||||||||||
| 13. | Synthesis, Triboligical Properties and Application of Carbon Based Coatings (V. D. Vankar and S. K. Arora) | |||||||||||
| 14. | Diode Laser Treatment and HVOF Coating to combat Cavitation and Silt Erosion in Power Industry (B. K. Pant, Vivek Arya, S. P. Gupta and B. S. Mann) | |||||||||||
| 15. | An Introduction to Characterization of Coatings (Ravi C. Gundakaram) | |||||||||||
| 16. | Evaluation of Tribological Coatings (B. Venkataraman) | |||||||||||
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COUNTRY REPORTS |
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| 17. | Development in Surface Engineering in Egypt (Randa Abdel Karim, Egypt) | |||||||||||
| 18. | Status of Surface Treatment Industry andEvaluation of Characteristic Properties of Surface Coating Techniques (S. S. K. Muthurathne and Sarath Jayatileke, Sri Lanka) | |||||||||||
| 19. | Preparation of Coating Films of Pb(Mg1/3, Nb2/3)O3 - PbTiO3-PbZrO3 by Sol-Gel Method and Their Dielectric Properties Measurement (Silvester Tursiloadi, Indonesia) | |||||||||||
| 20. | Extending the Service Life of Oil Pumps by Detonation Coating and Status of Surface Engineering (Khalil Azimeh, Syria) | |||||||||||
| 21. | Corrosion Protection and Finishing of Automobiles and Status of Surface Engineering (Shahid Tufail Sheikh, Pakistan) | |||||||||||
| 22. | An Overview of the Beneficiation, Environmental Issues and R&D of Industrial Minerals in Indonesia (Husaini, Indonesia) | |||||||||||