Metallurgical Coatings and Materials Surface Modifications ( Volume 17 )

Publication series :Volume 17

Author: Hintermann   H. E.;Spitz   J.  

Publisher: Elsevier Science‎

Publication year: 1991

E-ISBN: 9780444596710

P-ISBN(Paperback): 9780444890740

P-ISBN(Hardback):  9780444890740

Subject: O6 Chemistry;TB3 Engineering Materials

Language: ENG

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Description

The contributions in this volume represent the work of over ninety international researchers from universities, government laboratories and industry, with diverse backgrounds and interests in a wide range of coatings and surface modifications processes. The seventy-three papers, including seven invited talks and thirty-eight oral communications attest to the fact that surface science and engineering is still a rapidly growing field which attracts experts from the large materials, scientific and technical community.

Chapter

Front Cover

pp.:  1 – 4

Copyright Page

pp.:  5 – 8

Preface

pp.:  6 – 12

Table of Contents

pp.:  8 – 6

Chapter 3. Effect of ion implantation on titanium alloy/polyethylene and 316L stainless steel/polyethylene friction couples running in joint prostheses

pp.:  26 – 34

Chapter 4. Microscopic aspects of copper, zirconium and iron ion implantation in alumina

pp.:  34 – 44

Chapter 5. Fully computerized sclero-topometer for simulations and modelling of abrasive wear

pp.:  44 – 54

Chapter 6. X-ray stress analysis of neon implantation in laser-treated 304 stainless steel

pp.:  54 – 64

Chapter 7. Properties of arc-evaporated CrN and (Cr,Al)N coatings

pp.:  64 – 70

Chapter 8. Structure and mechanical properties of reactively sputtered chromium nitrides

pp.:  70 – 78

Chapter 9. Structure characterization of plasma-deoposited TiN coatings

pp.:  78 – 84

Chapter 10. Computer simulation of boron nitride deposition by ion-beam-assisted evaporation

pp.:  84 – 94

Chapter 11. Modification of properties of TiB2 coatings by ion beam mixing during deposition

pp.:  94 – 100

Chapter 12. Fretting wear of carbon-ion-implanted physical-vapour-deposited TiN coatings

pp.:  100 – 110

Chapter 13. Hard coatings in the system (Ti, Al)(C, N) prepared by pyrolysis of polymeric precursor films

pp.:  110 – 116

Chapter 14. CO2-laser-induced chemical vapour deposition of TiB2

pp.:  116 – 126

Chapter 15. Corrosion of sputtered titanium nitride films deposited on iron and stainless steel

pp.:  126 – 132

Chapter 16. Characterization of plasma-sprayed titanium coatings on stainless steel

pp.:  132 – 140

Chapter 17. Corrosion protection of metal implants by sputter-deposited biocompatible ceramic coatings

pp.:  140 – 148

Chapter 18. Study of the chemical composition of silicon nitride films obtained by chemical vapour deposition and plasma-enhanced chemical vapour deposition

pp.:  148 – 158

Chapter 19. Transformation of silicon nitride in oxygen plasma

pp.:  158 – 166

Chapter 20. Influence of pulse reversed current technique on the crystalline orientation and surface morphology of nickel electrodeposits

pp.:  166 – 172

Chapter 21. Plating of nickel-phosphorus multilayer alloys: current pulse effects on the microstructural and mechanical properties

pp.:  172 – 182

Chapter 22. Calcium phosphate coatings for orthopaedic prosthesis

pp.:  182 – 190

Chapter 23. Effect of YC13 addition on chromium pack diffusion type coating of an Ni-Co-ThO2 composite material

pp.:  190 – 196

Chapter 24. Residual stresses analyses of metallo-organic chemically vapour-deposited Cr7C3 coatings on SAE 4135 steel substrates

pp.:  196 – 204

Chapter 25. Characterization by glancing angle X-ray diffraction of the interface between austenitic stainless steel AISI 304 substrates and a TiN or Ti/TiN physical vapour deposition coating

pp.:  204 – 212

Chapter 26. Plasma process for thermodiffusional titanium nitriding

pp.:  212 – 220

Chapter 27. Morphological study of an alumina-glass coating

pp.:  220 – 224

References

pp.:  224 – 226

Chapter 28. Mechanical properties of Cu/Al multilayered thin films

pp.:  226 – 232

Chapter 29. Real structure of near-surface regions in austenite single crystals after implantation with 30 keV N+ ions studied by synchrotron radiation under grazing incidence conditions

pp.:  232 – 240

Chapter 30. Modification of surfaces of polymers by ion bombardment for improvement of mechanical properties

pp.:  240 – 248

Chapter 31. Resistivity and magnetoresistance of monocrystalline TaSi2 and VSi2

pp.:  248 – 256

Chapter 32. Ceramic coatings and laser treatment

pp.:  256 – 266

Chapter 33. The effects of xenon bombardment on the dissolution and reprecipitation of carbonitrides produced in nitrogen-implanted low carbon steel

pp.:  266 – 274

Chapter 34. Tribological behaviour of sprayed coatings for shaft restoration

pp.:  274 – 284

Chapter 35. Structural and semiconducting characteristics of electro-deposited calcium chalcogenide thin films

pp.:  284 – 292

Chapter 36. Structure and properties of TiSi2 thin films and TiSi2–Si(111) interfaces

pp.:  292 – 304

Chapter 37. Induction brazing of diamond with Ni–Cr hardfacing alloy under argon atmosphere

pp.:  304 – 310

Chapter 38. Interface phenomena and bonding mechanism of thermally-sprayed metal and ceramic composites

pp.:  310 – 320

Chapter 39. Electronic structure investigation at a zirconia-nickel interface

pp.:  320 – 328

Chapter 40. A novel shear test for plasma-sprayed coatings

pp.:  328 – 336

Chapter 41. Characterization of ceramic coatings by photothermal radiometry

pp.:  336 – 344

Chapter 42. Interfacial fracture toughness of vacuum-plasma-sprayed coatings

pp.:  344 – 354

Chapter 43. Overview of the characterization methods of the growth mechanisms of low pressure diamond

pp.:  354 – 364

Chapter 44. Influence of the deposition gas on the properties of plasma-deposited carbonized layers

pp.:  364 – 370

Chapter 45. Hard diamond-like carbon films prepared by various physical vapour deposition techniques

pp.:  370 – 380

Chapter 46. Plasma polymerization of CF4 + H2 mixtures on the surface of polyethylene and polyvinylidene fluoride substrates

pp.:  380 – 390

Chapter 47. Implantation-assisted deposition of hard carbon coatings on steel substrates

pp.:  390 – 396

Chapter 48. High intensity pulsed ion beams in the surface modification of soilds —experiments carried out in Poland

pp.:  396 – 404

Chapter 49. Morphological modification of TiC by laser irradiation

pp.:  404 – 410

Chapter 50. Laser melting of plasma-nitrided steel samples

pp.:  410 – 414

Chapter 51. Laser surface alloying of steel with TiC

pp.:  414 – 420

Chapter 52. Remelting of surface coatings on steel by CO2 laser radiation

pp.:  420 – 428

Chapter 53. Laser surface alloying of carbon steel and α-Fe with CrB2 particles

pp.:  428 – 436

Chapter 54. Deposition of silica coatings on Incoloy 800H substrates using a high power laser

pp.:  436 – 446

Chapter 55. Influence of an intermediate layer on the residual stress field in a laser clad

pp.:  446 – 454

Chapter 56. Laser surface alloying using metal salt precursors

pp.:  454 – 460

Chapter 57. Corrosion resistance of Fe–Ni–Cr laser surface alloys

pp.:  460 – 468

Author Index

pp.:  468 – 470

Subject Index

pp.:  470 – 476

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