Probing Crystal Plasticity at the Nanoscales, Arief Suriadi Budiman
Автор: Fisher Timothy S Название: Thermal Energy at the Nanoscale ISBN: 9814449784 ISBN-13(EAN): 9789814449786 Издательство: World Scientific Publishing Рейтинг: Цена: 5069.00 р. Наличие на складе: Есть у поставщика Поставка под заказ.
Описание: These lecture notes provide a detailed treatment of the thermal energy storage and transport by conduction in natural and fabricated structures. Thermal energy in two carriers, i.e. phonons and electrons -- are explored from first principles. For solid-state transport, a common Landauer framework is used for heat flow. Issues including the quantum of thermal conductance, ballistic interface resistance, and carrier scattering are elucidated. Bulk material properties, such as thermal and electrical conductivity, are derived from particle transport theories, and the effects of spatial confinement on these properties are established.
Автор: Maradudin Название: Light Scattering and Nanoscale Surface Roughness ISBN: 038725580X ISBN-13(EAN): 9780387255804 Издательство: Springer Рейтинг: Цена: 14365.00 р. Наличие на складе: Есть у поставщика Поставка под заказ.
Описание: This book covers both experimental and theoretical aspects of nanoscale light scattering and surface roughness.Topics include: Spherical particles located on a substrate, surface and buried interface roughness, surface roughness of polymer thin films, magnetic and thermal fluctuations at planar surfaces, speckle patterns, scattering of electromagnetic waves from a metal, multiple wavelength light scattering, nanoroughness standards, Beckmann-Kirchoff scalar scattering theory, random and nonrandom (patterned) surfaces, surface plasmons, instrumentation and experimental methods.
Автор: Philip G. Born Название: Crystallization of Nanoscaled Colloids ISBN: 3319002295 ISBN-13(EAN): 9783319002293 Издательство: Springer Рейтинг: Цена: 19564.00 р. Наличие на складе: Есть у поставщика Поставка под заказ.
Описание: Exploring processes that create ordered assemblies from disordered nanoparticles, this work examines the self-assembly of particles, a process widely employed, but not yet well understood. Offers new models describing the competition of different influences.
Автор: Krukovich Название: Plasticity of Boronized Layers ISBN: 3319400118 ISBN-13(EAN): 9783319400112 Издательство: Springer Рейтинг: Цена: 20896.00 р. Наличие на складе: Есть у поставщика Поставка под заказ.
Описание:
This book presents the physico-technical basis and current state of the technology of boronized layers. Special attention is given to the layer structure and morphology of allocated phases and distributions in a superficial zone of chemical compounds. Two- and multi-component phases of alloys and diffusion processes in a self-organizing mode are discussed. Surface hardening by boronizing increases the life time of mechanical tools. This is important for the mining industry, agriculture, textile and chemical industry. The book is important for thermochemical treatment and surface hardening of metals and alloys.
Описание: This thesis addresses elementary dislocation processes occurring in single-crystalline alloys based on Fe-Al, and investigates correspondences between dislocation distribution inside crystals characterized by transmission electron microscopy (TEM) and surface patterns observed using atomic force microscopy (AFM). Fe-Al alloys with different degrees of ordering were prepared and deformed in compression at ambient temperature in-situ inside the AFM device. The evolution of slip line structures was captured in the sequences of AFM images and wavy slip bands, while cross slip at the tip of the slip band and homogeneous fine slip lines were also identified. Further, the thesis develops a technique for constructing 3D representations of dislocations observed by TEM without the prohibitive difficulties of tomography, and creates 3D models of dislocation structures. Generally speaking, the thesis finds good agreement between AFM and TEM observations, confirming the value of AFM as a relevant tool for studying dislocations.
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