Multiscale Phenomena in Plasticity: From Experiments to Phenomenology, Modelling and Materials Engineering, Jo?l L?pinoux; Dominique Mazi?re; Vassilis Pontiki
Описание: Reviews the various scales of the physical phenomena occurring during plastic flow from the atomic level to the constitutive laws, from both theoretical and experimental sides. This title demonstrates the importance of atomic scale phenomena on macroscopic mechanical behaviour in the case of cross-slip and its influence on fatigue properties.
Описание: This book elucidates the correlation of fatigue crack growth data to multiscale cracking, particularly to the understanding of micrographs influenced by mechanical disturbance and thermodynamic variables.
Описание: This book presents cutting-edge concepts, paradigms, and research highlights in the field of computational materials science and engineering, and provides a fresh, up-to-date perspective on solving present and future materials challenges.
Описание: Addresses the topical, crucial and original subject of parameter identification and optimization within multiscale modeling methods. This book presents an area of research that enables the design of materials and structures with better quality, strength and performance parameters. It describes micro and nano scale models along with case studies.
Описание: Integrating macroscopic properties with observations at lower levels, this book details advances in multiscale modelling and analysis pertaining to classes of composites which either have a wider range of relevant microstructural scales, such as metals, or do not have a very well-defined microstructure, e.g.
Описание: Today, multi-functional materials such as piezoelectric/ferroelectric ceramics, magneto-strictive and shape memory alloys are gaining increasing applications as sensors, actuators or smart composite materials systems for emerging high tech areas.
Автор: Xia Liang Название: Multiscale Structural Topology Optimization ISBN: 1785481002 ISBN-13(EAN): 9781785481000 Издательство: Elsevier Science Рейтинг: Цена: 11620.00 р. Наличие на складе: Есть у поставщика Поставка под заказ.
Описание: Multiscale Structural Topology Optimization discusses the development of a multiscale design framework for topology optimization of multiscale nonlinear structures. With the intention to alleviate the heavy computational burden of the design framework, the authors present a POD-based adaptive surrogate model for the RVE solutions at the microscopic scale and make a step further towards the design of multiscale elastoviscoplastic structures. . Various optimization methods for structural size, shape, and topology designs have been developed and widely employed in engineering applications. Topology optimization has been recognized as one of the most effective tools for least weight and performance design, especially in aeronautics and aerospace engineering. . This book focuses on the simultaneous design of both macroscopic structure and microscopic materials. In this model, the material microstructures are optimized in response to the macroscopic solution, which results in the nonlinearity of the equilibrium problem of the interface of the two scales. The authors include a reduce database model from a set of numerical experiments in the space of effective strain.
Описание: Intends to introduce the advances in engineering plasticity and its applications. This title covers a wide range of topics on metals, rock soil, rubber, ceramics, polymers, composites, and more, which are involved in engineering plasticity.
Описание: This book reviews the state-of-the-art in multiscale computer modeling, examining both its accomplishments and its challenges. Helps connect traditional biomedical engineering at the organ and tissue scale with cellular and molecular bioengineering.
Автор: Sol R. Bodner Название: Unified Plasticity for Engineering Applications ISBN: 1461351286 ISBN-13(EAN): 9781461351283 Издательство: Springer Рейтинг: Цена: 13974.00 р. Наличие на складе: Есть у поставщика Поставка под заказ.
Описание: Considerably simplified models of macroscopic material behavior, such as the idealization for metals of elastic-time independent plastic response with a yield (onset) criterion, have served the engineering profession well for many years.
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