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Das Buch schlägt eine Brücke zwischen dem werkstoffkundlichen Fachwissen und den typischen Aufgaben von Wirtschaftsingenieuren. Besondere Eignung des Buches für Wirtschaftsingenieure ist gegeben durch: - Sehr breites Spektrum von Werkstoffen, für viele Zweige der Technik - Gut strukturierte Darstellung verschiedener Werkstoffgruppen - Neben technischer auch wirtschaftliche Betrachtung von Werkstoffen - Viele Anwendungsbeispiele direkt aus der Praxis - Verständliche Erklärungen ohne theoretische Vertiefungen - Betonung des nachhaltigen Wirtschaftens (Recycling) von Werkstoffen Der Inhalt Werkstoffe und ihre Bedeutung.- Einteilung und strukturelle Betrachtung von Werkstoffen (Grundbegriffe).- Eigenschaften von Werkstoffen und ihre Ermittlung (mit Hinweisen zu Normen und Regelwerken).- Grundlagen der Metallkunde.- Eisenwerkstoffe.- Leichtmetalle (Aluminium, Magnesium, Titan).- Schwermetalle (Kupfer, Nickel, Hartmetalle).- Grundlagen der Kunststoffkunde.- Kunststoffe (Thermoplaste, Duroplaste, Elastomere).- Keramische Werkstoffe (Silikat-, Oxid-, Nichtoxidkeramik).- Faserverbundwerkstoffe.- Werkstoffe mit besonderen Eigenschaften (Halbleiter, piezoelektrische Werkstoffe, Formgedächtnislegierungen).- Auswahl von Werkstoffen. Die Zielgruppen Studierende in Wirtschaftsingenieurwesen Studierende in Ingenieurwissenschaften Berufstätige Ingenieure Die Autorin Frau Bozena Arnold (ehemals Boczek) Promotion auf dem Gebiet der Werkstoffwissenschaften an der TU Warschau. Langjährige Lehrtätigkeit an verschiedenen Hochschulen in Polen und in Deutschland. - Zuletzt 1993-2012 Professorin für Werkstofftechnik an der HAW Hamburg - Dort 2005-2011 Leiterin des Instituts für Werkstoffkunde und Schweißtechnik IWS - Seit 2008 Dozentin für Werkstofftechnik (im Dienst der HAW) am Shanghai-Hamburg College - Seit 1999 Dozentin für Werkstofftechnik an der FH Nordakademie in Elmshorn im Studiengang Wirtschaftsingenieurwesen.
Mechanical engineering. --- Structural materials. --- Metals. --- Manufactures. --- Mechanical Engineering. --- Structural Materials. --- Metallic Materials. --- Manufacturing, Machines, Tools, Processes. --- Building materials.
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Beiträge internationaler und nationaler Autoren zu Baustoffen und Baukonstruktionen, aus der Forschung sowie aus der Praxis stellen einen aktuellen Überblick der Entwicklung dar und würdigen den Beitrag von Professor Harald Budelmann zur Entwicklung der Baustofftechnologie und deren Anwendung. Entwicklungen der Baustofftechnologie, insbesondere die Entwicklung und der Einsatz moderner Hochleistungsbetone stehen im Mittelpunkt. Einen großen Anteil nehmen Fragen zur Dauerhaftigkeit und zur Nachhaltigkeit in der Baustoffentwicklung ein, wobei praxisbezogene Beiträge zur Zustandserfassung, zu Schädigungsprozessen und zur Instandsetzung das Bild ergänzen. Auch der Bemessung von Bauteilen und der Modellierung der Eigenschaften von Baustoffen und Bauteilen widmen sich Beiträge des Werks.
Building materials. --- Building repair. --- Buildings—Repair and reconstruction. --- Structural materials. --- Building Materials. --- Building Repair and Maintenance. --- Structural Materials. --- Building. --- Construction industry.
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Formgedächtnislegierungen (FGL) sind Funktionswerkstoffe, die in der Lage sind, sich an eine zuvor eingeprägte Form zu erinnern. Diese Reversibilität in der Gestaltänderung ist das Resultat einer temperatur- oder spannungsinduzierten Phasentransformation. Durch diese einzigartigen Eigenschaften können diese Materialien zum einen als Stellelemente in mechatronischen Systemen oder zum anderen als hoch elastische Federelemente eingesetzt werden. Der besondere Vorteil von Formgedächtnislegierungen im Bereich der Stellelemente liegt in einer enormen Energiedichte. Damit bieten diese Legierungen entscheidende Vorteile auf dem Gebiet des Leichtbaus. Generell gibt dieses Fachbuch eine zuverlässige Hilfestellung für Ingenieure, die insbesondere Formgedächtnisaktoren in Ihre Produkte integrieren wollen. Der Inhalt - Grundlagen der Formgedächtnistechnik: Funktionscharakteristika, Effekte, Legierungen - Potentiale von Formgedächtnisbauteilen: Aktoren, Sensoren, Feder-/ Dämpfungselemente - Systemintegration von Formgedächtnisaktoren: Aktorbauformen, Verbindungstechniken - Besondere Bauweisen von Formgedächtnisaktoren: Dünnschichtverbund-Bauweise, Agonist-Antagonist-Bauweise, partiell aktivierte Bauweise - Auslegung von Formgedächtnisaktoren: Analytische und numerische Auslegung von Draht- und Federaktoren - Regelungsstrategien für Formgedächtnisaktoren: Nutzung des internen Sensoreffektes - Kritische Eigenschaften von Formgedächtnislegierungen: Ermüdungsverhalten, dynamisches Verhalten, Optimierungsstrategien - Anwendungs- und Standardisierungspotentiale von Formgedächtnisaktoren: Thermisch aktivierte Systeme, elektrisch aktivierte Systeme, Standardaktoren, Baukastensysteme - Leitfaden zur Entwicklung von Formgedächtnisaktoren: methodischer Vorgehensplan, beispielhafte Entwicklung eines FGL-basierten Pneumatikventils - Technologietrends in der Formgedächtnistechnik: Hochtemperaturlegierungen, adaptive Rückstellung, lokale Konfiguration Die Zielgruppe Konstrukteure, Produktentwickler, Mechatroniker, angewandte Wissenschaftler sowie Studenten an Hochschulen und Universitäten aus den Fachbereichen Maschinenbau oder Mechatronik Die Autoren Dr. Sven Langbein ist Gesellschafter der FG-Innovation GmbH aus Bochum und arbeitet in dem Unternehmen als Entwicklungsleiter. Dr. Alexander Czechowicz ist Koordinator der Projekte zum Thema Formgedächtnistechnik bei der Forschungsgemeinschaft Werkzeuge und Werkstoffe e.V. aus Remscheid.
Mechanical engineering. --- Structural materials. --- Physics. --- Mechanical Engineering. --- Structural Materials. --- Applied and Technical Physics. --- Alloys --- Shape memory effect. --- Shape memory alloys. --- Thermomechanical properties.
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Self-healing materials are man-made materials which have the built-in capability to repair damage. Failure in materials is often caused by the occurrence of small microcracks throughout the material. In self-healing materials phenomena are triggered to counteract these microcracks. These processes are ideally triggered by the occurrence of damage itself. Thus far, the self-healing capacity of cement-based materials has been considered as something "extra". This could be called passive self-healing, since it was not a designed feature of the material, but an inherent property of it. Centuries-old buildings have been said to have survived these centuries because of the inherent self-healing capacity of the binders used for cementing building blocks together. In this State-of-the-Art Report a closer look is taken at self-healing phenomena in cement-based materials. It is shown what options are available to design for this effect rather than have it occur as a "coincidental extra".
Cement composites. --- Engineering. --- Self-healing materials. --- Engineering & Applied Sciences --- Engineering - General --- Cementitious composites --- Continuum mechanics. --- Civil engineering. --- Structural materials. --- Civil Engineering. --- Structural Materials. --- Continuum Mechanics and Mechanics of Materials. --- Smart materials --- Cement --- Composite materials --- Materials. --- Mechanics. --- Mechanics, Applied. --- Solid Mechanics. --- Engineering --- Public works --- Applied mechanics --- Engineering, Mechanical --- Engineering mathematics --- Classical mechanics --- Newtonian mechanics --- Physics --- Dynamics --- Quantum theory --- Engineering materials --- Industrial materials --- Engineering design --- Manufacturing processes --- Materials --- Architectural materials --- Architecture --- Building --- Building supplies --- Buildings --- Construction materials --- Structural materials
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This book describes clearly various research topics investigated for these 10 years in the Research Center of Advanced Structural and Functional Materials Design in Osaka University, Japan. Every chapter is aimed at understanding most advanced researches in materials science by describing its fundamentals and details as much as possible. Since both general explanations and cutting-edge commentaries are given for each topic in this book, it provides a lot of useful information for ordinary readers as well as materials scientists & engineers who wish to understand the future development in materials science fields of metals, alloys, ceramics, semiconductors etc. In particular, this book deals with special fusion area of structural and functional materials such as medical bone materials, of which contents are very unique features as materials science textbook.
Biophysics -- Experiments -- Technique. --- Materials science --- Building materials --- Chemical & Materials Engineering --- Engineering & Applied Sciences --- Materials Science --- Research --- Structural design. --- Materials --- Design. --- Engineering --- Engineering materials --- Industrial materials --- Materials science. --- Structural materials. --- Optical materials. --- Electronic materials. --- Materials Science. --- Structural Materials. --- Characterization and Evaluation of Materials. --- Optical and Electronic Materials. --- Engineering design --- Manufacturing processes --- Architectural design --- Strains and stresses --- Materials. --- Surfaces (Physics). --- Optics --- Physics --- Surface chemistry --- Surfaces (Technology) --- Electronic materials --- Material science --- Physical sciences --- Architectural materials --- Architecture --- Building --- Building supplies --- Buildings --- Construction materials --- Structural materials
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From simple cases such as hook and latch attachments found in Velcro to articulated-wing flying vehicles, biology often has been used to inspire many creative design ideas. The scientific challenge now is to transform the paradigm into a repeatable and scalable methodology. Biologically Inspired Design explores computational techniques and tools that can help integrate the method into design practice. With an inspiring foreword from Janine Benyus, Biologically Inspired Design contains a dozen chapters written by some of the leading scholars in the transdisciplinary field of bioinspired design, such as Frank Fish, Julian Vincent and Jeannette Yen from biology, and Amaresk Chakrabarti, Satyandra Gupta and Li Shu from engineering. Based in part on discussions at two workshops sponsored by the United States National Science Foundation, this volume introduces and develops several methods and tools for bioinspired design including: Information-processing theories, Natural language techniques, Knowledge-based tools, and Functional approaches and Pedagogical techniques. By exploring these fundamental theories, techniques and tools for supporting biologically inspired design, this volume provides a comprehensive resource for design practitioners wishing to explore the paradigm, an invaluable guide to design educators interested in teaching the method, and a preliminary reading for design researchers wanting to investigate bioinspired design.
Industrial design --- New products --- Environmental aspects. --- Engineering. --- Computer-aided engineering. --- Engineering design. --- Structural materials. --- Engineering Design. --- Computer-Aided Engineering (CAD, CAE) and Design. --- Structural Materials. --- Computer aided design. --- Materials. --- Engineering --- Engineering materials --- Industrial materials --- Engineering design --- Manufacturing processes --- CAD (Computer-aided design) --- Computer-assisted design --- Computer-aided engineering --- Design --- Design, Engineering --- Strains and stresses --- Materials --- Architectural materials --- Architecture --- Building --- Building supplies --- Buildings --- Construction materials --- Structural materials --- CAE --- Data processing --- Architectural design --- Biomimicry. --- Data processing. --- Technological innovations.
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This report is a useful tool for countries starting to recycle aggregates or construction and demolition waste. It contains the latest developments in this field, introduces a completely new approach to the procedure of proportioning concrete mixtures with recycled aggregate, references recent publications, opinions and discrepancies in relation to the durability of recycled concrete, such as freeze-thaw standards, studies of chloride penetration and diffusion, and sulfate attacks, the use of the fine fraction <4mm, quality assurance of concrete recycled aggregate, sustainability and recycling construction waste and global impact assessment of urban renewal based on sustainable recycling strategies for construction and demolition waste. This volume will be of interest to recyclers, researchers and consumers.
Aggregates (Building materials) --- Construction and demolition debris --- Recycling. --- C & d debris --- C & d waste --- C/D debris --- C/D waste --- Construction and demolition waste --- Construction debris --- Demolition debris --- Mineral aggregates --- Engineering. --- Building materials. --- Waste management. --- Structural materials. --- Building Materials. --- Waste Management/Waste Technology. --- Structural Materials. --- Factory and trade waste --- Building materials --- Building construction. --- Waste disposal. --- Materials. --- Engineering --- Engineering materials --- Industrial materials --- Engineering design --- Manufacturing processes --- Materials --- Architectural materials --- Architecture --- Building --- Building supplies --- Buildings --- Construction materials --- Structural materials
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This e-book is a suitable reference on the technical and scientific competence related to effective application and integration of cool materials in the built environment. The e-book is an overview on the following: The role of cool materials in the built environment. Major cool materials techniques and their benefits and drawbacks. Research trends in cool materials for the built environment. Technical guidelines for instrumentation, testing and rating of cool materials. Policy and economic aspects of cool materials necessary for the management of built environments Case studies where t
Urban heat island. --- Building materials. --- Architectural materials --- Architecture --- Building --- Building supplies --- Buildings --- Construction materials --- Structural materials --- Materials --- Heat island, Urban --- Urban climatology
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Proceedings of the FISITA 2012 World Automotive Congress are selected from nearly 2,000 papers submitted to the 34th FISITA World Automotive Congress, which is held by Society of Automotive Engineers of China (SAE-China ) and the International Federation of Automotive Engineering Societies (FISITA). This proceedings focus on solutions for sustainable mobility in all areas of passenger car, truck and bus transportation. Volume 7: Vehicle Design and Testing (I) focuses on: •Vehicle Performance Development •Vehicle Integration Platformized and Universal Design •Development of CAD /CAE/CAM and CF Methods in Automotive Practice •Advanced Chassis, Body Structure and Design •Automotive Ergonomic, Interior and Exterior Trim Design •Vehicle Style and Aerodynamic Design •New Materials and Structures Above all researchers, professional engineers and graduates in fields of automotive engineering, mechanical engineering and electronic engineering will benefit from this book. SAE-China is a national academic organization composed of enterprises and professionals who focus on research, design and education in the fields of automotive and related industries. FISITA is the umbrella organization for the national automotive societies in 37 countries around the world. It was founded in Paris in 1948 with the purpose of bringing engineers from around the world together in a spirit of cooperation to share ideas and advance the technological development of the automobile.
Internal combustion engines --Design and construction --Congresses. --- Mechanical Engineering --- Engineering & Applied Sciences --- Automotive Engineering --- Automobiles --- Design and construction --- Testing --- Autos (Automobiles) --- Cars (Automobiles) --- Gasoline automobiles --- Motorcars (Automobiles) --- Engineering. --- Engineering design. --- Materials. --- Computer engineering. --- Automotive Engineering. --- Engineering Design. --- Structural Materials. --- Electrical Engineering. --- Computers --- Engineering --- Engineering materials --- Industrial materials --- Engineering design --- Manufacturing processes --- Design, Engineering --- Industrial design --- Strains and stresses --- Construction --- Industrial arts --- Technology --- Materials --- Design --- Motor vehicles --- Transportation, Automotive --- Automotive engineering. --- Structural materials. --- Electrical engineering. --- Electric engineering --- Architectural materials --- Architecture --- Building --- Building supplies --- Buildings --- Construction materials --- Structural materials
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Presently, there is an intense race throughout the world to develop good enough thermoelectric materials which can be used in wide scale applications. This book focuses comprehensively on very recent up-to-date breakthroughs in thermoelectrics utilizing nanomaterials and methods based in nanoscience. Importantly, it provides the readers with methodology and concepts utilizing atomic scale and nanoscale materials design (such as superlattice structuring, atomic network structuring and properties control, electron correlation design, low dimensionality, nanostructuring, etc.). Furthermore, also indicates the applications of thermoelectrics expected for the large emerging energy market. This book has a wide appeal and application value for anyone being interested in state-of-the-art thermoelectrics and/or actual viable applications in nanotechnology.
Thermoelectric materials --- Nanostructured materials --- Chemical & Materials Engineering --- Engineering & Applied Sciences --- Materials Science --- Engineering. --- Nanoparticles. --- Construction --- Materials. --- Structural Materials. --- Nanoscale Science and Technology. --- Nanotechnology and Microengineering. --- Applied and Technical Physics. --- Energy Efficiency. --- Industrial arts --- Technology --- Engineering --- Engineering materials --- Industrial materials --- Engineering design --- Manufacturing processes --- Materials --- Particles --- Structural materials. --- Nanoscale science. --- Nanoscience. --- Nanostructures. --- Nanotechnology. --- Physics. --- Energy efficiency. --- Consumption of energy --- Energy efficiency --- Fuel consumption --- Fuel efficiency --- Power resources --- Energy conservation --- Natural philosophy --- Philosophy, Natural --- Physical sciences --- Dynamics --- Molecular technology --- Nanoscale technology --- High technology --- Nanoscience --- Physics --- Nano science --- Nanoscale science --- Nanosciences --- Science --- Architectural materials --- Architecture --- Building --- Building supplies --- Buildings --- Construction materials --- Structural materials --- Thermoelectric materials. --- Nanostructured materials.
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