Molecular Dynamics and  X-ray Powder Diffraction  Simulations: Investigation of Nano-polycrystalline Microstructure at the Atomic Scale - Alberto Leonardi - Libros - LAP LAMBERT Academic Publishing - 9783659407642 - 18 de julio de 2013
En caso de que portada y título no coincidan, el título será el correcto

Molecular Dynamics and X-ray Powder Diffraction Simulations: Investigation of Nano-polycrystalline Microstructure at the Atomic Scale

Precio
Mex$ 1.139
sin IVA

Pedido desde almacén remoto

Entrega prevista 6 - 16 de oct.
Recibe notificaciones sobre nuevos lanzamientos de Alberto Leonardi
Añadir a tu lista de deseos de iMusic

Aún no valorado

Atomistic simulations based on Molecular Dynamics were used to model the lattice distortions in metallic nano-polycrystalline microstructures. Complex microstructures were generated with a new modified Voronoi tessellation method which provides a direct relation between generation parameters and statistical properties of the resulting model. Line Profile Analysis (LPA) was employed to retrieve the microstructure information from the powder diffraction patterns. The study provided a new point of view on the role of the grain boundary regions in nano-polycrystalline aggregates, exploring the interference effects between different domains and between grain boundary and crystalline regions. Usual concepts of solid mechanics were brought in the atomistic models to describe the strain effects on the powder diffraction pattern. The new concept of Directional Pair Distribution Function (D-PDF) was developed. D-PDFs provide a representation of the strain field which is directly comparable with the results of LPA. The D-PDF opens a new chapter in powder diffraction as new insights and a more sound interpretation of the results are made possible with this new approach to diffraction LPA.

Medios de comunicación Libros     Paperback Book   (Libro con tapa blanda y lomo encolado)
Publicado 18 de julio de 2013
ISBN13 9783659407642
Editores LAP LAMBERT Academic Publishing
Páginas 164
Dimensiones 150 × 10 × 225 mm   ·   262 g
Lengua Alemán