Material Design

Material Design

Author: Thomas Schröpfer

Publisher: Walter de Gruyter

Published: 2012-12-13

Total Pages: 192

ISBN-13: 3034611668

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The approach of "Informing Architecture by Materiality" opens the way to an innovative use of materials in the design professions. Taking material qualities and properties such as texture, elasticity, transparency and fluidity as a point of departure, the concept described and employed here transcends the conventional definitions of building materials. Instead, the focus is on a multitude of material operations, like folding and bending, carving and cutting, weaving and knitting, mirroring and screening. The featured design strategies and methods address established and "new" materials alike. They are applied both to the scale of the detail and the entire building. The examples comprise prototype structures as well as large building projects. Eight chapters deal with surfaces and layers, joints and juctions, weaving and texturing, nanoscale transformations, responsiveness, the integration of ephemeral factors like wind and light as well as material collections providing professional resources. Written by renowned experts in this field, the book features many examples from international contemporary architecture. The introductory part provides the conceptual background, while a final chapter describes consequences for pressing issues of today, like sustainability or life cycle assessment.


Learning Material Design

Learning Material Design

Author: Kyle Mew

Publisher: Packt Publishing Ltd

Published: 2015-12-29

Total Pages: 187

ISBN-13: 1785288717

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Master Material Design and create beautiful, animated interfaces for mobile and web applications About This Book Master the highly acclaimed Material Design paradigm and give your apps and pages the look that everyone is talking about Get a mix of key theoretical concepts combined with enough practical examples to put each theory into practice so you can create elegant material interfaces with Android Studio and Polymer Written by Kyle Mew, successful author with over a decade of mobile and web development experience, this book has both the touch of a developer as well as an experienced writer Who This Book Is For This book is ideal for web developers and designers who are interested in implementing Material Design in their mobile and web apps. No prior knowledge or experience of Material Design is required, but some familiarity with procedural languages such as Java and markup languages such as HTML will provide an advantage. What You Will Learn Implement Material Design on both mobile and web platforms that work on older handsets and browsers Design stylish layouts with the Material Theme Create and manage cards, lists, and grids Design and implement sliding drawers for seamless navigation Coordinate components to work together Animate widgets and create transitions and animation program flow Use Polymer to bring Material Design to your web pages In Detail Google's Material Design language has taken the web development and design worlds by storm. Now available on many more platforms than Android, Material Design uses color, light, and movements to not only generate beautiful interfaces, but to provide intuitive navigation for the user. Learning Material Design will teach you the fundamental theories of Material Design using code samples to put these theories into practice. Focusing primarily on Android Studio, you'll create mobile interfaces using the most widely used and powerful material components, such as sliding drawers and floating action buttons. Each section will introduce the relevant Java classes and APIs required to implement these components. With the rules regarding structure, layout, iconography, and typography covered, we then move into animation and transition, possibly Material Design's most powerful concept, allowing complex hierarchies to be displayed simply and stylishly. With all the basic technologies and concepts mastered, the book concludes by showing you how these skills can be applied to other platforms, in particular web apps, using the powerful Polymer library. Style and approach Learning Material Design combines the theories behind material design with practical examples of how these can be implemented and further reinforcing the guidelines covering style, layout and structure.


Sustainable Material, Design, and Process

Sustainable Material, Design, and Process

Author: Ravi Kant

Publisher: CRC Press

Published: 2023-09-07

Total Pages: 253

ISBN-13: 1000931005

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This text emphasizes the importance of sustainable material, design, and manufacturing processes, and how the needs are changing day by day. It comprehensively covers important topics including material recycling, optimal utilization of resources, green materials, biocomposites, clean and green synthesis, stable material properties, utilization of renewable energy sources, ergonomic design, and sustainable design. The text examines the design process, manufacturing, and upscaling of next-generation materials and their application in diverse industries. The text is primarily written for graduate students and academic researchers in the fields of manufacturing engineering, materials science, mechanical engineering, and environmental engineering. Presents an in-depth understanding of the progress of the need for new innovative and next-generation materials. Discusses biocomposites and green materials for eco-friendly products in a comprehensive manner. Explores recycling techniques of materials for sustainable manufacturing. Presents conceptual framework of sustainable product development. Covers important topics such as process optimization, renewable energy, and 3D printing in detail. The text discusses the designing process of these new materials, manufacturing, and upscaling of these materials along with their selection for industrial applications. It further focuses on improving surface homogeneity in nanoparticle scattering during dip coating for stable and efficient wettability during oil/water separation. It will serve as an ideal reference text for graduate students and academic researchers in the fields of manufacturing engineering, materials science, mechanical engineering, and environmental engineering.


Shoe Material Design Guide

Shoe Material Design Guide

Author: Wade Motawi

Publisher: Walid Motawi

Published: 2018-03-12

Total Pages: 195

ISBN-13: 099870704X

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Do you want to be a professional shoe designer? You must learn how to select and specify shoe materials correctly. The Shoe Material Design Guide details all the shoe materials you will need to make modern athletic, classic casual, and high fashion footwear. Each chapter covers a specific shoe material type. You will learn how each material is made, the options available to you, and how to specify the material correctly. Inside you will find chapters on leather, textiles, synthetics, laces, glue, reinforcements, hardware, logos, midsoles, outsoles, and more! See exactly how each material is used inside real production shoes. Annotated cross-sections of over 30 different shoe types. Look inside basketball shoes, running shoes, track spikes, hiking boots, work boots, high heels, cowboy boots, and many more! You will also find information on topics such as material testing, sustainable production, exotic materials, and more. Written as a companion to our best selling How Shoes Are Made, The Shoe Material Design Guide digs deeper into the world of footwear materials and design. 8.5 x 11 28 chapters, 195 pages with over 330 color photos.


Introduction to Composite Materials Design

Introduction to Composite Materials Design

Author: Ever J. Barbero

Publisher: CRC Press

Published: 2017-10-25

Total Pages: 534

ISBN-13: 1315296489

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The third edition of Introduction to Composite Materials Design is a practical, design-oriented textbook aimed at students and practicing engineers learning analysis and design of composite materials and structures. Readers will find the third edition to be both highly streamlined for teaching, with new comprehensive examples and exercises emphasizing design, as well as complete with practical content relevant to current industry needs. Furthermore, the third edition is updated with the latest analysis techniques for the preliminary design of composite materials, including universal carpet plots, temperature dependent properties, and more. Significant additions provide the essential tools for mastering Design for Reliability as well as an expanded material property database.


Fibre Metal Laminates

Fibre Metal Laminates

Author: Ad Vlot

Publisher: Springer Science & Business Media

Published: 2001-09-30

Total Pages: 556

ISBN-13: 9781402000386

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Like New, No Highlights,No Markup,all pages are intact.


Homogenization and materials design of mechanical properties of textured materials based on zeroth-, first- and second-order bounds of linear behavior

Homogenization and materials design of mechanical properties of textured materials based on zeroth-, first- and second-order bounds of linear behavior

Author: Lobos Fernández, Mauricio

Publisher: KIT Scientific Publishing

Published: 2018-07-09

Total Pages: 224

ISBN-13: 3731507706

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This work approaches the fields of homogenization and of materials design for the linear and nonlinear mechanical properties with prescribed properties-profile. The set of achievable properties is bounded by the zeroth-order bounds (which are material specific), the first-order bounds (containing volume fractions of the phases) and the second-order Hashin-Shtrikman bounds with eigenfields in terms of tensorial texture coefficients for arbitrarily anisotropic textured materials.


Integrated Design of Multiscale, Multifunctional Materials and Products

Integrated Design of Multiscale, Multifunctional Materials and Products

Author: David L. McDowell

Publisher: Butterworth-Heinemann

Published: 2009-09-30

Total Pages: 393

ISBN-13: 0080952208

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Integrated Design of Multiscale, Multifunctional Materials and Products is the first of its type to consider not only design of materials, but concurrent design of materials and products. In other words, materials are not just selected on the basis of properties, but the composition and/or microstructure iw designed to satisfy specific ranged sets of performance requirements. This book presents the motivation for pursuing concurrent design of materials and products, thoroughly discussing the details of multiscale modeling and multilevel robust design and provides details of the design methods/strategies along with selected examples of designing material attributes for specified system performance. It is intended as a monograph to serve as a foundational reference for instructors of courses at the senior and introductory graduate level in departments of materials science and engineering, mechanical engineering, aerospace engineering and civil engineering who are interested in next generation systems-based design of materials. - First of its kind to consider not only design of materials, but concurrent design of materials and products - Treatment of uncertainty via robust design of materials - Integrates the "materials by design approach" of Olson/Ques Tek LLC with the "materials selection" approach of Ashby/Granta - Distinquishes the processes of concurrent design of materials and products as an overall systems design problem from the field of multiscale modeling - Systematic mathematical algorithms and methods are introduced for robust design of materials, rather than ad hoc heuristics--it is oriented towards a true systems approach to design of materials and products


Materials Design Using Computational Intelligence Techniques

Materials Design Using Computational Intelligence Techniques

Author: Shubhabrata Datta

Publisher: CRC Press

Published: 2016-10-26

Total Pages: 196

ISBN-13: 131535568X

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Several statistical techniques are used for the design of materials through extraction of knowledge from existing data banks. These approaches are getting more attention with the application of computational intelligence techniques. This book illustrates the alternative but effective methods of designing materials, where models are developed through capturing the inherent correlations among the variables on the basis of available imprecise knowledge in the form of rules or database, as well as through the extraction of knowledge from experimental or industrial database, and using optimization tools.