Mechanics of Moving Materials

Mechanics of Moving Materials
Title Mechanics of Moving Materials PDF eBook
Author Nikolay Banichuk
Publisher Springer Science & Business Media
Pages 264
Release 2013-11-08
Genre Science
ISBN 3319017454

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This book deals with theoretical aspects of modelling the mechanical behaviour of manufacturing, processing, transportation or other systems in which the processed or supporting material is travelling through the system. Examples of such applications include paper making, transmission cables, band saws, printing presses, manufacturing of plastic films and sheets, and extrusion of aluminium foil, textiles and other materials. The work focuses on out-of-plane dynamics and stability analysis for isotropic and orthotropic travelling elastic and viscoelastic materials, with and without fluid-structure interaction, using analytical and semi-analytical approaches. Also topics such as fracturing and fatigue are discussed in the context of moving materials. The last part of the book deals with optimization problems involving physical constraints arising from the stability and fatigue analyses, including uncertainties in the parameters. The book is intended for researchers and specialists in the field, providing a view of the mechanics of axially moving materials. It can also be used as a textbook for advanced courses on this specific topic. Considering topics related to manufacturing and processing, the book can also be applied in industrial mathematics.

Stability of Axially Moving Materials

Stability of Axially Moving Materials
Title Stability of Axially Moving Materials PDF eBook
Author Nikolay Banichuk
Publisher Springer Nature
Pages 642
Release 2019-09-05
Genre Technology & Engineering
ISBN 3030238032

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This book discusses the stability of axially moving materials, which are encountered in process industry applications such as papermaking. A special emphasis is given to analytical and semianalytical approaches. As preliminaries, we consider a variety of problems across mechanics involving bifurcations, allowing to introduce the techniques in a simplified setting. In the main part of the book, the fundamentals of the theory of axially moving materials are presented in a systematic manner, including both elastic and viscoelastic material models, and the connection between the beam and panel models. The issues that arise in formulating boundary conditions specifically for axially moving materials are discussed. Some problems involving axially moving isotropic and orthotropic elastic plates are analyzed. Analytical free-vibration solutions for axially moving strings with and without damping are derived. A simple model for fluid--structure interaction of an axially moving panel is presented in detail. This book is addressed to researchers, industrial specialists and students in the fields of theoretical and applied mechanics, and of applied and computational mathematics.

Making Things Move DIY Mechanisms for Inventors, Hobbyists, and Artists

Making Things Move DIY Mechanisms for Inventors, Hobbyists, and Artists
Title Making Things Move DIY Mechanisms for Inventors, Hobbyists, and Artists PDF eBook
Author Dustyn Roberts
Publisher McGraw Hill Professional
Pages 369
Release 2010-12-06
Genre Technology & Engineering
ISBN 0071741682

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Get Your Move On! In Making Things Move: DIY Mechanisms for Inventors, Hobbyists, and Artists, you'll learn how to successfully build moving mechanisms through non-technical explanations, examples, and do-it-yourself projects--from kinetic art installations to creative toys to energy-harvesting devices. Photographs, illustrations, screen shots, and images of 3D models are included for each project. This unique resource emphasizes using off-the-shelf components, readily available materials, and accessible fabrication techniques. Simple projects give you hands-on practice applying the skills covered in each chapter, and more complex projects at the end of the book incorporate topics from multiple chapters. Turn your imaginative ideas into reality with help from this practical, inventive guide. Discover how to: Find and select materials Fasten and join parts Measure force, friction, and torque Understand mechanical and electrical power, work, and energy Create and control motion Work with bearings, couplers, gears, screws, and springs Combine simple machines for work and fun Projects include: Rube Goldberg breakfast machine Mousetrap powered car DIY motor with magnet wire Motor direction and speed control Designing and fabricating spur gears Animated creations in paper An interactive rotating platform Small vertical axis wind turbine SADbot: the seasonally affected drawing robot Make Great Stuff! TAB, an imprint of McGraw-Hill Professional, is a leading publisher of DIY technology books for makers, hackers, and electronics hobbyists.

Mechanical Handling and Works Equipment

Mechanical Handling and Works Equipment
Title Mechanical Handling and Works Equipment PDF eBook
Author
Publisher
Pages 872
Release 1919
Genre Engineering
ISBN

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Condensed Catalogues of Mechanical Equipment

Condensed Catalogues of Mechanical Equipment
Title Condensed Catalogues of Mechanical Equipment PDF eBook
Author
Publisher
Pages 838
Release 1918
Genre
ISBN

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Automotive Industries

Automotive Industries
Title Automotive Industries PDF eBook
Author
Publisher
Pages 1148
Release 1928
Genre Aeronautics
ISBN

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Vols. for 1919- include an Annual statistical issue (title varies).

Deformation and Progressive Failure in Geomechanics

Deformation and Progressive Failure in Geomechanics
Title Deformation and Progressive Failure in Geomechanics PDF eBook
Author A. Asaoka
Publisher Elsevier
Pages 956
Release 1997-10-23
Genre Science
ISBN 9780080428383

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Progressive failure has been a classical problem in the field of geotechnical engineering and has attracted considerable attention in connection with slope stability and foundation problems. It is associated with strain localization or shear banding and is also related to damage in material structures. As knowledge of the progressive failure mechanism increases, it is now necessary to establish effective communications between researchers and engineers. The International Symposium on Deformation and Progressive Failure in Geomechanics provided an opportunity for discussing recent advances in this area. A total of 136 papers were contributed from 22 countries. As well as these, the symposium proceedings also contain 8 interim technical reports on the subject by the members of the Asian Technical Committee of the International Society for Soil Mechanics and Foundation Engineering and the Japanese Geotechnical Society National Committee on Progressive Failure in Geo-structures.