 |
|
|
Prix pour la Suisse:
95.00
CHF
|

|
Prix à l'exportation:
65.00
euros
|
|
|
|
|
Solidication is one of the oldest processes for producing complex shapes for applications ranging from art to industry, and it remains as one of the most important commercial processes for many materials. Since the 1980s, numerous fundamental developments in the understanding of solidication processes and microstructure formation have come from both analytical theories and the application of computational techniques using commonly available powerful computers. This book integrates these new developments in a comprehensive volume that also presents and places them in the context of more classical theories. The three-part text is aimed at graduate and professional engineers. The first part, Fundamentals and Macroscale Phenomena, presents the thermodynamics of solutions and then builds on that subject to motivate and describe equilibrium phase diagrams. Transport phenomena are discussed next, focusing on the issues of most importance to liquid-solid phase transformations, then moving on to describing in detail both analytical and numerical approaches to solving such problems. The second part, Microstructure, employs these fundamental concepts for the treatment of nucleation, dendritic growth, microsegregation, eutectic and peritectic solidication, and microstructure competition. This part concludes with a chapter describing the coupling of macro- and microscopic phenomena in microstructure development. The third and final part describes various types of Defects that may occur, with emphasis on, porosity, hot tearing and macrosegregation, presented using the modeling tools and microstructure descriptions developed earlier.
|
Graduate and professional engineers.
Preface - Nomenclature and dimensionless groups - Overview - Fundamentals and Macroscale Phenomena - Thermodynamics - Phase diagrams - Balance equations - Analytical solutions for solidification - Numerical methods for solidification - Microstructure - Nucleation - Dendritic growth - Eutectics, peritectics and microstructure selection - Microsegregation and homogenization - Macro- and microstructures - Defects - Porosity - Deformation during solidification and hot tearing - Macrosegregation - Index
|
 |
 |
|
 |
 |
|
|
Photovoltaic technology has now developed to the extent that it is close to fulfilling the vision of a solar-energy world, as devices based on this technology are becoming efficient, low-cost and durable. This book provides a comprehensive treatment of thin-film silicon, the most prevalent PV material, in terms of its semiconductor nature, starting out with the physical properties, but concentrating on device applications.
|
 |
|
|
The use of neural implants for stimulation and recording show excellent promise in restoring certain functions to the central nervous system; and neuroprostheses remain one of the most important tools of neuroscientists for the elucidation of the brains function.
|
 |
|
|
Barely five weeks after the opening of the Rolex Learning Center, the verdict fellthe buildings architects, Kazuyo Sejima and Ryue Nishizawa (SAANA), were announced the winners of the 2010 Pritzker Prize, the most prestigious prize in architecture.
|
 |
|
|
The dye-sensitized solar cell (DSC) is a photovoltaic converter that mimics natural photosynthesis. Like green plants and algae it uses a molecular absorber, the dye, to harvest sunlight and generate electric charges.
|
 |