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Atomistic Modeling of Mechanical Properties of Polymeric Glasses

Atomistic Modeling of Mechanical Properties of Polymeric Glasses PDF Author: Doros Nicolas Theodorou
Publisher:
ISBN:
Category :
Languages : en
Pages : 130

Book Description


Atomistic Modeling of Mechanical Properties of Polymeric Glasses

Atomistic Modeling of Mechanical Properties of Polymeric Glasses PDF Author: Doros Nicolas Theodorou
Publisher:
ISBN:
Category :
Languages : en
Pages : 130

Book Description


Mechanical Properties of Model Polymer Glasses

Mechanical Properties of Model Polymer Glasses PDF Author: Kenji Yoshimoto
Publisher:
ISBN:
Category :
Languages : en
Pages : 184

Book Description


Properties and Behavior of Polymers, 2 Volume Set

Properties and Behavior of Polymers, 2 Volume Set PDF Author: Wiley
Publisher: John Wiley & Sons
ISBN: 1118582837
Category : Technology & Engineering
Languages : en
Pages : 1605

Book Description
The book provides comprehensive, up-to-date information on the physical properties of polymers including, viscoelasticity, flammability, miscibility, optical properties, surface properties and more. Containing carefully selected reprints from the Wiley's renowned Encyclopedia of Polymer Science and Technology, this reference features the same breadth and quality of coverage and clarity of presentation found in the original.

Static and Dynamic, Atomistic Level Modeling of Polymeric Glasses

Static and Dynamic, Atomistic Level Modeling of Polymeric Glasses PDF Author: Peter John Ludovice
Publisher:
ISBN:
Category :
Languages : en
Pages : 355

Book Description


Molecular Modeling and Multiscaling Issues for Electronic Material Applications

Molecular Modeling and Multiscaling Issues for Electronic Material Applications PDF Author: Artur Wymyslowski
Publisher: Springer
ISBN: 3319128620
Category : Technology & Engineering
Languages : en
Pages : 203

Book Description
This book offers readers a snapshot of the progression of molecular modeling in the electronics industry and how molecular modeling is currently being used to understand materials to solve relevant issues in this field. The reader is introduced to the evolving role of molecular modeling, especially seen from the perspective of the IEEE community and modeling in electronics. This book also covers the aspects of molecular modeling needed to understand the relationship between structures and mechanical performance of materials. The authors also discuss the transitional topic of multiscale modeling and recent developments on the atomistic scale and current attempts to reach the submicron scale, as well as the role that quantum mechanics can play in performance prediction.

Virtual Testing and Predictive Modeling

Virtual Testing and Predictive Modeling PDF Author: Bahram Farahmand
Publisher: Springer Science & Business Media
ISBN: 0387959246
Category : Science
Languages : en
Pages : 420

Book Description
Thematerialsusedinmanufacturingtheaerospace,aircraft,automobile,andnuclear parts have inherent aws that may grow under uctuating load environments during the operational phase of the structural hardware. The design philosophy, material selection, analysis approach, testing, quality control, inspection, and manufacturing are key elements that can contribute to failure prevention and assure a trouble-free structure. To have a robust structure, it must be designed to withstand the envir- mental load throughout its service life, even when the structure has pre-existing aws or when a part of the structure has already failed. If the design philosophy of the structure is based on the fail-safe requirements, or multiple load path design, partial failure of a structural component due to crack propagation is localized and safely contained or arrested. For that reason, proper inspection technique must be scheduled for reusable parts to detect the amount and rate of crack growth, and the possible need for repairing or replacement of the part. An example of a fail-sa- designed structure with crack-arrest feature, common to all aircraft structural parts, is the skin-stiffened design con guration. However, in other cases, the design p- losophy has safe-life or single load path feature, where analysts must demonstrate that parts have adequate life during their service operation and the possibility of catastrophic failure is remote. For example, all pressurized vessels that have single load path feature are classi ed as high-risk parts. During their service operation, these tanks may develop cracks, which will grow gradually in a stable manner.

IUTAM Symposium on Modelling Nanomaterials and Nanosystems

IUTAM Symposium on Modelling Nanomaterials and Nanosystems PDF Author: R. Pyrz
Publisher: Springer Science & Business Media
ISBN: 1402095570
Category : Technology & Engineering
Languages : en
Pages : 337

Book Description
Recent interest in nanotechnology is challenging the community to analyse, develop and design nanometer to micrometer-sized devices for applications in new generations of computer, electronics, photonics and drug delivery systems. To successfully design and fabricate novel nanomaterials and nanosystems, we must necessarily bridge the gap in our understanding of mechanical properties and processes at length scales ranging from 100 nanometers (where atomistic simulations are currently possible) to a micron (where continuum mechanics is experimentally validated). For this purpose the difficulties and complexity originate in the substantial differences in philosophy and viewpoints between conventional continuum mechanics and quantum theories. The challenge lies in how to establish the relationship between a continuum mechanical system and its atomistic counterpart in order to define continuum variables that are calculable within an atomic system.

Atomistic Simulations of Glasses

Atomistic Simulations of Glasses PDF Author: Jincheng Du
Publisher: John Wiley & Sons
ISBN: 1118939069
Category : Technology & Engineering
Languages : en
Pages : 564

Book Description
A complete reference to computer simulations of inorganic glass materials In Atomistic Simulations of Glasses: Fundamentals and Applications, a team of distinguished researchers and active practitioners delivers a comprehensive review of the fundamentals and practical applications of atomistic simulations of inorganic glasses. The book offers concise discussions of classical, first principles, Monte Carlo, and other simulation methods, together with structural analysis techniques and property calculation methods for the models of glass generated from these atomistic simulations, before moving on to practical examples of the application of atomistic simulations in the research of several glass systems. The authors describe simulations of silica, silicate, aluminosilicate, borosilicate, phosphate, halide and oxyhalide glasses with up-to-date information and explore the challenges faced by researchers when dealing with these systems. Both classical and ab initio methods are examined and comparison with experimental structural and property data provided. Simulations of glass surfaces and surface-water reactions are also covered. Atomistic Simulations of Glasses includes multiple case studies and addresses a variety of applications of simulation, from elucidating the structure and properties of glasses for optical, electronic, architecture applications to high technology fields such as flat panel displays, nuclear waste disposal, and biomedicine. The book also includes: A thorough introduction to the fundamentals of atomistic simulations, including classical, ab initio, Reverse Monte Carlo simulation and topological constraint theory methods Important ingredients for simulations such as interatomic potential development, structural analysis methods, and property calculations are covered Comprehensive explorations of the applications of atomistic simulations in glass research, including the history of atomistic simulations of glasses Practical discussions of rare earth and transition metal-containing glasses, as well as halide and oxyhalide glasses In-depth examinations of glass surfaces and silicate glass-water interactions Perfect for glass, ceramic, and materials scientists and engineers, as well as physical, inorganic, and computational chemists, Atomistic Simulations of Glasses: Fundamentals and Applications is also an ideal resource for condensed matter and solid-state physicists, mechanical and civil engineers, and those working with bioactive glasses. Graduate students, postdocs, senior undergraduate students, and others who intend to enter the field of simulations of glasses would also find the book highly valuable.

Computational Science – ICCS 2009

Computational Science – ICCS 2009 PDF Author: Gabrielle Allen
Publisher: Springer Science & Business Media
ISBN: 3642019722
Category : Computers
Languages : en
Pages : 940

Book Description
The two-volume set LNCS 5544-5545 constitutes the refereed proceedings of the 9th International Conference on Computational Science, ICCS 2009, held in Baton Rouge, LA, USA in May 2008. The 60 revised papers of the main conference track presented together with the abstracts of 5 keynote talks and the 138 revised papers from 13 workshops were carefully reviewed and selected for inclusion in the three volumes. The general main track of ICSS 2009 was organized in about 20 parallel sessions addressing the following topics: e-Science Applications and Systems, Scheduling, Software Services and Tools, New Hardware and Its Applications, Computer Networks, Simulation of Complex Systems, Image Processing, Optimization Techniques, and Numerical Methods.

Nano-tribology and Materials in MEMS

Nano-tribology and Materials in MEMS PDF Author: Sujeet K. Sinha
Publisher: Springer Science & Business Media
ISBN: 3642369359
Category : Technology & Engineering
Languages : en
Pages : 276

Book Description
This book brings together recent developments in the areas of MEMS tribology, novel lubricants and coatings for nanotechnological applications, biomimetics in tribology and fundamentals of micro/nano-tribology. Tribology plays important roles in the functioning and durability of machines at small length scales because of the problems associated with strong surface adhesion, friction, wear etc. Recently, a number of studies have been conducted to understand tribological phenomena at nano/micro scales and many new tribological solutions for MEMS have been proposed.