Strength and Stiffness of Engineering Systems

Strength and Stiffness of Engineering Systems
Author: Frederick A. Leckie
Publisher: Springer Science & Business Media
Total Pages: 696
Release: 2009-04-29
Genre: Technology & Engineering
ISBN: 038749474X

This book offers comprehensive coverage of topics used in engineering solutions for the stiffness and strength of physical systems, with a range of scales from micrometers to kilometers. Coverage integrates a wide array of topics into a unified text, including such subjects as plasticity, fracture, composite materials, energy approaches, and mechanics of microdevices (MEMs). This integrated and unified approach reflects the reality of modern technology with its demands to learn the fundamentals of new subjects quickly.

Strength and Stiffness of Engineering Systems

Strength and Stiffness of Engineering Systems
Author: Frederick A. Leckie
Publisher: Springer
Total Pages: 696
Release: 2010-11-16
Genre: Technology & Engineering
ISBN: 9780387564654

This book offers comprehensive coverage of topics used in engineering solutions for the stiffness and strength of physical systems, with a range of scales from micrometers to kilometers. Coverage integrates a wide array of topics into a unified text, including such subjects as plasticity, fracture, composite materials, energy approaches, and mechanics of microdevices (MEMs). This integrated and unified approach reflects the reality of modern technology with its demands to learn the fundamentals of new subjects quickly.

Stiffness and Damping in Mechanical Design

Stiffness and Damping in Mechanical Design
Author: Eugene Rivin
Publisher: CRC Press
Total Pages: 536
Release: 1999-05-06
Genre: Science
ISBN: 9780203909881

Offers designers and users of mechanical systems an overview of structural stiffness and damping and their critical roles in mechanical design. The text assesses the relationship between stiffness and damping parameters in mechanical systems and structural materials. An accompanying disk contains detailed analyses of stiffness- and damping-critical systems.

Handbook on Stiffness & Damping in Mechanical Design

Handbook on Stiffness & Damping in Mechanical Design
Author: Eugene I. Rivin
Publisher: American Society of Mechanical Engineers
Total Pages: 0
Release: 2010
Genre: Technology & Engineering
ISBN: 9780791802939

This expanded and fully updated Handbook contains new results and adds some significant modifications, most notably a new section on "Negative Stiffness and Damping," which is critical for understanding dynamic processes in mechanical systems. The book will be useful for practicing engineers working in the field of machine design, design of machine elements, machine dynamics, mechatronics, robotics and precision engineering. It will also be a useful reference for educators, as well as advanced undergraduate and graduate students.

Earthquake Engineering

Earthquake Engineering
Author: Yousef Bozorgnia
Publisher: CRC Press
Total Pages: 958
Release: 2004-05-11
Genre: Technology & Engineering
ISBN: 0203486242

This multi-contributor book provides comprehensive coverage of earthquake engineering problems, an overview of traditional methods, and the scientific background on recent developments. It discusses computer methods on structural analysis and provides access to the recent design methodologies and serves as a reference for both professionals and res

Introduction to Civil Engineering Systems

Introduction to Civil Engineering Systems
Author: Samuel Labi
Publisher: John Wiley & Sons
Total Pages: 1060
Release: 2014-03-25
Genre: Technology & Engineering
ISBN: 1118415302

This book presents an integrated systems approach to the evaluation, analysis, design, and maintenance of civil engineering systems. Addressing recent concerns about the world's aging civil infrastructure and its environmental impact, the author makes the case for why any civil infrastructure should be seen as part of a larger whole. He walks readers through all phases of a civil project, from feasibility assessment to construction to operations, explaining how to evaluate tasks and challenges at each phase using a holistic approach. Unique coverage of ethics, legal issues, and management is also included.

Fundamentals of Engineering High-Performance Actuator Systems

Fundamentals of Engineering High-Performance Actuator Systems
Author: Kenneth Hummel
Publisher: SAE International
Total Pages: 226
Release: 2016-12-01
Genre: Technology & Engineering
ISBN: 0768083621

Actuators are the key to allowing machines to become more sophisticated and perform complex tasks that were previously done by humans, providing motion in a safe, controlled manner. As defined in this book, actuator design is a subset of mechanical design. It involves engineering the mechanical components necessary to make a product move as desired. Fundamentals of Engineering High-Performance Actuator Systems, by Ken Hummel, was written as a text to supplement actuator design courses, and a reference to engineers involved in the design of high-performance actuator systems. It highlights the design approach and features what should be considered when moving a payload at precision levels and/or speeds that are not as important in low-performance applications. The main areas covered in this book are: Fundamentals of actuator design Actuator performance Loads that the actuator and its surrounding structure must accommodate Constraints which determine the type of load the actuator needs to accommodate The design margin applied to components of any given design Environment which must include the interactions between product and the conditions it will have to perform under Component strength to ensure safety from failure Component stiffness Maintainability Reliability Cost

Planning and Design of Engineering Systems

Planning and Design of Engineering Systems
Author: Graeme Dandy
Publisher: CRC Press
Total Pages: 368
Release: 2017-12-06
Genre: Technology & Engineering
ISBN: 1351230670

This newly updated book offers a comprehensive introduction to the scope and nature of engineering work, taking a rigorous but common sense approach to the solution of engineering problems. The text follows the planning, modelling and design phases of engineering projects through to implementation or construction, explaining the conceptual framework for undertaking projects, and then providing a range of techniques and tools for solutions. It focuses on engineering design and problem solving, but also involves economic, environmental, social and ethical considerations. This third edition expands significantly on the economic evaluation of projects and also includes a new section on intractable problems and systems, involving a discussion of wicked problems and soft systems methodology as well as the approaches to software development. Further developments include an array of additional interest boxes, worked examples, problems and up-to date references. Case studies and real-world examples are used to illustrate the role of the engineer and especially the methods employed in engineering practice. The examples are drawn particularly from the fields of civil and environmental engineering, but the approaches and techniques are more widely applicable to other branches of engineering. The book is aimed at first-year engineering students, but contains material to suit more advanced undergraduates. It also functions as a professional handbook, covering some of the fundamentals of engineering planning and design in detail.

Structural Motion Engineering

Structural Motion Engineering
Author: Jerome Connor
Publisher: Springer
Total Pages: 626
Release: 2014-06-26
Genre: Technology & Engineering
ISBN: 3319062816

This innovative volume provides a systematic treatment of the basic concepts and computational procedures for structural motion design and engineering for civil installations. The authors illustrate the application of motion control to a wide spectrum of buildings through many examples. Topics covered include optimal stiffness distributions for building-type structures, the role of damping in controlling motion, tuned mass dampers, base isolation systems, linear control, and nonlinear control. The book's primary objective the satisfaction of motion-related design requirements such as restrictions on displacement and acceleration and seeks the optimal deployment of material stiffness and motion control devices to achieve these design targets as well as satisfy constraints on strength. The book is ideal for practicing engineers and graduate students.