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Surface Engineering for Manufacturing Applications

Surface Engineering for Manufacturing Applications

Surface Engineering for Manufacturing Applications

Volume 890:
Steve J. Bull, University of Newcastle upon Tyne
Paul R. Chalker, University of Liverpool
ShaoChen Chen, University of Texas, Austin
Wen Jin Meng, Louisiana State University
Roya Maboudian, University of California, Berkeley
March 2006
890
Hardback
9781558998445
$36.99
USD
Hardback
Paperback

    Surface interactions and modifications have become increasingly critical for a broad range of manufacturing technologies. Applications can be in traditional manufacturing sectors and in manufacturing processes for microelectronics, optics, and micro-/nanoelectromechanical systems (MEMS/NEMS). Many applications demand engineered surfaces at different length scales that will function under extreme conditions. The goal of this book is to advance understanding of these diverse applications. In the field of tribological coatings, the increasing sophistication of coating processes to provide control over materials and composition gradients is being exploited to tailor properties such as adhesion, stresses, thermal barrier and wear resistance. Understanding the influence of nanostructure in coatings has become pivotal in the development of hard and wear-resistant materials. Modeling and simulation continue to make contributions to the understanding and predication of surface properties and surface interactions. Advances in this field have focused on the microstructure and organization of organic thin films. In tribology, the combination of modeling, with experimental probe techniques, is increasing our understanding of erosion and wear mechanisms.

    Product details

    March 2006
    Hardback
    9781558998445
    308 pages
    228 × 152 mm
    0.568kg
    Out of stock in print form with no current plan to reprint
      Editors
    • Steve J. Bull , University of Newcastle upon Tyne
    • Paul R. Chalker , University of Liverpool
    • ShaoChen Chen , University of Texas, Austin
    • Wen Jin Meng , Louisiana State University
    • Roya Maboudian , University of California, Berkeley