Proceedings ... SPE Annual Technical Conference and Exhibition
Author: Society of Petroleum Engineers (U.S.). Technical Conference and Exhibition
Publisher:
Published: 1988
Total Pages: 856
ISBN-13:
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Author: Society of Petroleum Engineers (U.S.). Technical Conference and Exhibition
Publisher:
Published: 1988
Total Pages: 856
ISBN-13:
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Publisher: Taylor & Francis
Published:
Total Pages: 476
ISBN-13:
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Publisher: Taylor & Francis
Published:
Total Pages: 618
ISBN-13:
DOWNLOAD EBOOKAuthor: C. T. Sun
Publisher: CRC Press
Published: 2002-10-24
Total Pages: 1685
ISBN-13: 0849315018
DOWNLOAD EBOOKAuthor: Otto G. Piringer
Publisher: John Wiley & Sons
Published: 2008-06-25
Total Pages: 632
ISBN-13: 3527621431
DOWNLOAD EBOOKPlastics are the most important class of packaging materials. This successful handbook, now in its second edition, covers all important aspects of plastic packaging and the interdisciplinary knowledge needed by food chemists, pharmaceutical chemists, food technologists, materials scientists, process engineers, and product developers alike. This is an indispensable resource in the search for the optimal plastic packaging. Materials characteristics, additives and their effects, mass transport phenomena, quality assurance, and recent regulatory requirements from FDA and European Commission are covered in detail with ample data.
Author: British Library. Document Supply Centre
Publisher:
Published: 1999
Total Pages: 844
ISBN-13:
DOWNLOAD EBOOKAuthor: Gail Williamson
Publisher: Geological Society of London
Published: 1999
Total Pages: 312
ISBN-13: 9781862390430
DOWNLOAD EBOOKAuthor: Peter Martin
Publisher: John Wiley & Sons
Published: 2011-09-06
Total Pages: 586
ISBN-13: 047063927X
DOWNLOAD EBOOKThis book provides a clear and understandable text for users and developers of advanced engineered materials, particularly in the area of thin films, and addresses fundamentals of modifying the optical, electrical, photo-electric, triboligical, and corrosion resistance of solid surfaces and adding functionality to solids by engineering their surface, structure, and electronic, magnetic and optical structure. Thin film applications are emphasized. Through the inclusion of multiple clear examples of the technologies, how to use them,and the synthesis processes involved, the reader will gain a deep understanding of the purpose, goals, and methodology of surface engineering and engineered materials. Virtually every advance in thin film, energy, medical, tribological materials technologies has resulted from surface engineering and engineered materials. Surface engineering involves structures and compositions not found naturally in solids and is used to modify the surface properties of solids and involves application of thin film coatings, surface functionalization and activation, and plasma treatment. Engineered materials are the future of thin film technology. Engineered structures such as superlattices, nanolaminates, nanotubes, nanocomposites, smart materials, photonic bandgap materials, metamaterials, molecularly doped polymers and structured materials all have the capacity to expand and increase the functionality of thin films and coatings used in a variety of applications and provide new applications. New advanced deposition processes and hybrid processes are being used and developed to deposit advanced thin film materials and structures not possible with conventional techniques a decade ago. Properties can now be engineered into thin films that achieve performance not possible a decade ago.
Author: British Library. Lending Division
Publisher:
Published: 1986-07
Total Pages: 780
ISBN-13:
DOWNLOAD EBOOKAuthor: David Glocker
Publisher: John Wiley & Sons
Published: 2016-07-11
Total Pages: 637
ISBN-13: 1119310512
DOWNLOAD EBOOKMedical Coatings and Deposition Technologies is an important new addition to the libraries of medical device designers and manufacturers. Coatings enable the properties of the surface of a device to be controlled independently from the underlying bulk properties; they are often critical to the performance of the device and their use is rapidly growing. This book provides an introduction to many of the most important types of coatings used on modern medical devices as well as descriptions of the techniques by which they are applied and methods for testing their efficacy. Developers of new medical devices and those responsible for producing them will find it an important reference when deciding if a particular functionality can be provided by a coating and what limitations may apply in a given application. Written as a practical guide and containing many specific coating examples and a large number of references for further reading, the book will also be useful to students in materials science & engineering with an interest in medical devices. Chapters on antimicrobial coatings as well as coatings for biocompatibility, drug delivery, radiopacity and hardness are supported by chapters describing key liquid coating processes, plasma-based processes and chemical vapor deposition. Many types of coatings can be applied by more than one technique and the reader will learn the tradeoffs given the relevant design, manufacturing and economic constraints. The chapter on regulatory considerations provides important perspectives regarding the marketing of these coatings and medical devices.