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Modern Analytical Electromagnetic Homogenization, Tom G Mackay, A Lakhtakia


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Автор: Tom G Mackay, A Lakhtakia
Название:  Modern Analytical Electromagnetic Homogenization
ISBN: 9781627054263
Издательство: NBN International
Классификация:
ISBN-10: 162705426X
Обложка/Формат: Paperback
Страницы: 140
Вес: 0.24 кг.
Дата издания: 30.07.2015
Серия: Physics
Язык: English
Иллюстрации: Colour illustrations
Размер: 254 x 178 x 7
Читательская аудитория: General (us: trade)
Ключевые слова: Electricity, electromagnetism & magnetism
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Поставляется из: Англии
Описание: Electromagnetic homogenization is the process of estimating the effective electromagnetic properties of composite materials in the long-wavelength regime, wherein the length scales of nonhomogeneities are much smaller than the wavelengths involved. This is a bird’s-eye view of currently available homogenization formalisms for particulate composite materials. It presents analytical methods only, with focus on the general settings of anisotropy and bianisotropy.The authors largely concentrate on ‘effective’ materials as opposed to ‘equivalent’ materials, and emphasize the fundamental (but sometimes overlooked) differences between these two categories of homogenized composite materials. The properties of an ‘effective’ material represents those of its composite material, regardless of the geometry and dimensions of the bulk materials and regardless of the orientations and polarization states of the illuminating electromagnetic fields. In contrast, the properties of ‘equivalent’ materials only represent those of their corresponding composite materials under certain restrictive circumstances.


Applied RVE Reconstruction and Homogenization of H eterogeneous Materials

Автор: R?mond
Название: Applied RVE Reconstruction and Homogenization of H eterogeneous Materials
ISBN: 1848219016 ISBN-13(EAN): 9781848219014
Издательство: Wiley
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Цена: 22010.00 р.
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Описание: Applied RVE Reconstruction and Homogenization of Heterogeneous Materials

Statistical correlation functions are a well-known class of statistical descriptors that can be used to describe the morphology and the microstructure-properties relationship. A comprehensive study has been performed for the use of these correlation functions for the reconstruction and homogenization in nano-composite materials. Correlation functions are measured from different techniques such as microscopy (SEM or TEM), small angle X-ray scattering (SAXS) and can be generated through Monte Carlo simulations. In this book, different experimental techniques such as SAXS and image processing are presented, which are used to measure two-point correlation function correlation for multi-phase polymer composites.

Higher order correlation functions must be calculated or measured to increase the precision of the statistical continuum approach. To achieve this aim, a new approximation methodology is utilized to obtain N-point correlation functions for multiphase heterogeneous materials. The two-point functions measured by different techniques have been exploited to reconstruct the microstructure of heterogeneous media.

Statistical continuum theory is used to predict the effective thermal conductivity and elastic modulus of polymer composites. N-point probability functions as statistical descriptors of inclusions have been exploited to solve strong contrast homogenization for effective thermal conductivity and elastic modulus properties of heterogeneous materials.

Finally, reconstructed microstructure is used to calculate effective properties and damage modeling of heterogeneous materials.


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