Innovnano builds new nanomaterial plant
July 26, 2011 by AboutNanoWires.com · Leave a Comment
Nondestructive Evaluation and Reliability of Micro- and Nanomaterial Systems (Proceedings of Spie)
July 29, 2010 by AboutNanoWires.com · Leave a Comment
Nondestructive Evaluation and Reliability of Micro- and Nanomaterial Systems (Proceedings of Spie)
This volume examines nondestructive evaluation and reliability of micro- and nanomaterial systems.
List Price: $ 70.00
Price: $ 70.00
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Nanomaterial Research Strategy
July 6, 2010 by AboutNanoWires.com · Leave a Comment
Nanomaterial Research Strategy
Research during the last two decades in science and engineering has resulted in the fabrication of atomically precise structures. Nanotechnology is generally defined as the ability to create and use materials, devices and systems with unique properties at the scale of approximately 1 to 100 nm. At this particle size, quantum mechanical effects often dominate and surface area per unit volume increases, resulting in materials that exhibit unique optical, mechanical, magnetic, conductive and sorptive properties. The use of nanotechnology in the consumer and industrial sectors is expected to increase significantly in the future. Nanotechnology offers society the promise of major benefits, but also raises questions of potential adverse effects. This new book discusses issues related to a research strategy.
List Price: $ 89.00
Price: $ 89.00
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MOLECULAR MODELING OF AL-FE2O3 NANOMATERIAL SYSTEM: Nanocrystalline Material Deformation and Shock Wave Propagation Analyses
May 27, 2010 by AboutNanoWires.com · Leave a Comment
Product Description
One of the recent advances in materials science has focused on developing materials that have two or more crystalline systems mixed at the nanoscale. Until now, the development and the analyses of such materials have primarily been experimental. In the current research, a framework based on classical molecular dynamics (MD) is developed for analyzing deformation mechanisms in nanostructural materials consisting of more than one crystalline system. The material system of focus is a combination of fcc-Al and ?-Fe2O3. The framework includes the development of an interatomic potential, a scalable parallel MD code, nanocrystalline composite structures, and methodologies for the quasistatic and dynamic strength analyses. The framework is applied to analyze the nanoscale mechanical behavior of the Al+Fe2O3 material system in two different settings. First, quasistatic strength analyses of nanocrystalline composites with average grain sizes varying from 3.9 nm to 7.2 nm are performed. Second, shock wave propagation analyses in single crystalline Al, Fe2O3, and one of their interfaces are carried out.
BUY FROM AMAZON–>> MOLECULAR MODELING OF AL-FE2O3 NANOMATERIAL SYSTEM: Nanocrystalline Material Deformation and Shock Wave Propagation Analyses
Metallic Nanomaterials
May 27, 2010 by AboutNanoWires.com · Leave a Comment
Product Description
The available books/book series in the market do not provide any information on application of material-specific Nanomaterials in life sciences. Such a book series is essential as it helps a person with materials background to be quickly aware of life science applications of specific nanomaterial and similarly a person with life science background to know material-specific utility in life sciences.
BUY FROM AMAZON–>> Metallic Nanomaterials






