Murch / Öchsner / Belova | Advances in Mass and Thermal Transport in Engineering Materials | Buch | 978-3-0357-1222-3 | sack.de

Buch, Englisch, 208 Seiten, Format (B × H): 170 mm x 240 mm, Gewicht: 490 g

Murch / Öchsner / Belova

Advances in Mass and Thermal Transport in Engineering Materials

Buch, Englisch, 208 Seiten, Format (B × H): 170 mm x 240 mm, Gewicht: 490 g

ISBN: 978-3-0357-1222-3
Verlag: Trans Tech Publications


This volume of Diffusion Foundations is entitled Advances in Mass and Thermal Transport in Engineering Materials. The volume was designed to capture a very wide cross-section of research in the area in both experimental and modelling of mass and thermal transport and at both basic and applied levels. It is now very well recognized that the mass and thermal transport processes in engineering materials underpin much of the advance in the development of new materials and the improvement of existing materials. Whether it be the ongoing enhancement of the engineering properties of materials, the materials processing, the in-service longevity of materials or the recycling of materials, mass and thermal transport very frequently play direct and essential roles.
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Weitere Infos & Material


Preface
Chapter 1: Metals and Alloys
Analytical Investigation on the Evolution and Growth of ß-Ti and Fe-Nb-Based Intermetallics in Diffusion Coupled Joints of Ti6Al4V Nb SS
Influence of Heat Treatment on Microhardness and Phase Transformations in Cast and Homogenized 7075(-Sc-Zr) Aluminium Alloys
Interdiffusion Studies in the Co-Sb System
Simulation of Intrinsic Defects and Cd Site Occupation in LaIn3 and LuIn3
Development of New Wrought Mg Alloys: Improving the Corrosion Resistance by Addition of Alloying Elements
Chapter 2: Polymers, Composites and Ceramic Materials
Transport Coefficients of Ammonia Gas in Thermoplastic Polymers and Nanocomposites Used for Microelectronic Substrates Containers
Resin Injection Process in the Manufacture of a Polymer Composite Reinforced with NiTi Ribbons: A CFD Analysis
Microstructure and Properties of Lead-Free Perovskite Ceramics on the Base of KNN Perovskite
Thermal Analysis in an Intermittent Kiln with Thermal Insulation: An Experimental Design Approach
Chapter 3: Modelling and Numerical Analysis
The Influence of the Shape and Size of the Nanostructures to the Atoms and Molecules Transport
Numerical Analysis of an Isovolumetric Thermal Desorption Experiment
Effect of Solvent Concentration on Scaling Butane Solvent Enhanced Oil Recovery Processes Using Reservoir Simulation
Numerical Modeling of Heat and Mass Transport with Inner Heat Exchange in Unsaturated Porous Media
Molecular Dynamics Determination of the Lattice Thermal Conductivity of the Cubic Phase of Hafnium Dioxide
Atom Motion in Solids Following Nuclear Transmutation


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