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This book presents the proceeding of the 8th in this successful series of conferences organised by the Centre for Composite Materials Engineering of the University of Newcastle upon Tyne and sponsored by the Institute of Mechanical Engineers (ImechE) and The Institute of Materials (IoM).The papers presented show how FRCs are being used in a steadily increasing range of technologies and how their properties make them appropriate choices for designers and processors interested in exploiting the potential of these highly versatile materials.Composites applications now extend well
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Um zukünftige Anforderungen an Batterien erfüllen zu können, müssen heutige Lithium-Ionen Batterien weiterentwickelt werden. Ein vielversprechender Ansatz, der die Steigerung von Energie- und Leistungsdichte verspricht, ist die Lithium-Ionen Festkörperbatterie. In dieser Arbeit wird ein Ersatzschaltbild-basiertes Modell, sowie dessen Parametrierung vorgestellt, welches die Energie-/Leistungsdichte einer Festkörperbatterie abhängig von Material, Geometrie und Mikrostruktur berechnen kann. In order to meet future battery requirements, today's lithium-ion batteries need to be improved. A promising approach that should enable to increase energy and power density is the all-solid-state battery. In this dissertation, an equivalent circuit based model is presented, as well as its parameterization, which can calculate the energy/power density of any all-solid-state battery depending on material, geometry and microstructure.
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Toughening Mechanisms in Composite Materials aims to provide a comprehensive and technically detailed coverage of composites and their toughening mechanisms. Unique in its direct and comprehensive approach, the book presents fundamental knowledge on composites' toughening mechanisms as well as a comprehensive treatment of numerical methods. This volume summarizes the current state-of-the-art and presents the most recent research outcomes in the field. It details the development of each of the techniques, beginning with basic principles, and new concepts are illustrated with examples wherever p
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Composites have long held the center-stage of research and development in the materials community. The concept of combining metals, ceramics and polymers - having various types, shapes and properties - into a single material exhibiting properties that none of its individual components possess, has created endless scope for the imagination of scientists and engineers. It has ignited numerous fields of research and development, and revolutionized many applications. However, in spite of the many advantages of composite materials, there remain troubling underlying problems arising from the complex
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Collection of selected, peer reviewed papers from the 1st International Conference on Advanced Composites for Marine Engineering (ICACME 2013), September 10-12, 2014, Beijing, China. The 43 papers are grouped as follows: Chapter 1: Numerical Methods and Analysis, Optimization, Algorithm and Modelling for Materials and Structures; Chapter 2: Applied Mechanics, Structural Analysis, Characterisation and Applications; Chapter 3: Advanced Composite Materials and Processes
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