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Using Finite Elements in Mechanical Design
Using Finite Elements in Mechanical Design
This revised third edition of a bestselling metallurgy text examines the behaviour of materials under stress and their reaction to a variety of hostile environments. It covers the entire scope of mechanical metallurgy, from an understanding of the continuum description of stress and strain, through crystalline and defect mechanisms of flow and fracture, and on to a consideration of major mechanical property tests and the basic metalworking process. It has been updated throughout, SI units have been added, and end-of-chapter study questions are included.
Reliability in Automotive and Mechanical Engineering
Defects generate a great economic problem for suppliers who are faced with increased duties. Customers expect increased efficiency and dependability of technical product of - also growing - complexity. The authors give an introduction to a theory of dependability for engineers. The book may serve as a reference book as well, enhancing the knowledge of the specialists and giving a lot of theoretical background and practical information, especially on the dependability analysis of whole systems.
The theory, concepts and approaches are well explained by examples and solutions. The topics include: Mathematical basis, Life span distributions, System dependability theory, Failure mode and effects analysis (FMEA), Fault tree analysis, Dependability test planning, Test evaluation, Calculation of repairable systems, Dependability protection programs.
Mechanical Vibrations and Shocks (Volume 1-5)
This five-volume set lays down the theoretical basis for the specification and testing of international standards related to product design. Manufactured product has to be designed to withstand the effects of the environmental factors (temperature, humidity) and also the effects of externally imposed mechanical shocks and vibrations, which might result in fatigue and other damage. This has given rise to the concept of the tailorization of product, leading to the tailorization of tests. Tailorization implies not only an understanding of the effects of the environment, but also presupposes proper understanding of the mechanical systems subjected to mechanical loads, and knowledge of the most frequent failure modes. This is implemented by the use of a simple theoretical model, enabling the effects of shocks and vibrations to be assessed, and the drafting of specifications, pre-sizing calculations and the establishment of rules for analysis and definitions of tests to be developed. Throughout, the theoretical treatments are placed in the context of the real environment and of laboratory tests - essential for the development of standards. The series culminates, in Volume V, in the development of specifications.
Handbook of Mechanical Engineering
Encyclopedias describe Mechanical Engineering as a professional engineering discipline that involves the application of principles of physics for analysis, design, manufacturing and maintenance of mechanical systems. It requires a solid understanding of key concepts including mechanics, kinematics, thermodynamics and energy. Mechanical engineers use these principles and others for example in the design and analysis of automobiles, aircrafts, heating and cooling systems, industrial equipment and machinery. In addition to these main areas, specialized fields are offered at universities to prepare future engineers for their position in industry, such as: mechatronics and robotics, transportation and logistics, cryogenics, fuel technology, automotive engineering, biomechanics, vibration, optics and others.
Accordingly, the Springer Handbook of Mechanical Engineering devotes its contents to these areas of interest for the practicing engineer as well as for the student at various levels and educational institutions.
Authors from all over the world have contributed with their expertise and support the globally working engineer in finding a solution for today’s mechanical engineering problems.
Shigley's Mechanical Engineering Design 8th .E and Solution
The eighth edition of Shigley's Mechanical Engineering Design maintains the basic approaches that have made this book the standard in machine design for over 40 years. At the same time it combines the straightforward focus on fundamentals instructors have come to expect with a modern emphasis on design and new applications. Overall coverage of basic concepts are clear and concise so that readers can easily navigate key topics. Problem sets have been improved, with new problems added to help students progressively work through them. The book has included ARIS, which will have algorithmic problems. The new co-author, Keith Nisbett has been brought on to this project and has added a key case study on power transmission. All standards have been updated, which will make this the most current text! The 8th edition of Shigley's Mechanical Engineering Design features a major new case study developed to help illuminate the complexities of shafts and axles. It includes new Finite Elements Chapter - an important modern topic. Parts I and II have been streamlined to improve readability and simplify the presentation without sacrificing content. Part III has been updated to reflect current standards, making this the most current book out in the market in terms of standards.
Materials Selection in Mechanical Design
Materials Selection in Mechanical Design, Third Edition /by Michael F. Ashby. Understanding materials, their properties and behavior is fundamental to engineering design, and a key application of materials science. Written for all students of engineering, materials science and design, this book describes the procedures for material selection in mechanical design in order to ensure that the most suitable materials for a given application are identified from the full range of materials and section shapes available. Fully revised and expanded for this third edition, Materials Selection in Mechanical Design is recognized as one of the leading texts, and provides a unique and genuinely innovative resource.
Features new to this edition
New chapters on topics including process selection, material and shape selection, design of hybrid materials, environmental factors and industrial design.
Online tutor resources -- fully worked Instructor's Manual, full color materials selection charts, image bank for lecture presentations.
Reader-friendly approach and attractive, easy to use two-color presentation.
Illustrated Sourcebook of Mechanical Components
A treasure chest of ideas and data, Robert O. Parmley's Illustrated Sourcebook of Mechanical Components is testimony to centuries of engineering genius that produced the components that make modern mechanical wonders possible. Designed to stimulate new ideas, this unique, lavishly illustrated and conveniently indexed reference shows you many designs and unique contributions hidden from technical literature for decades. This kaleidoscopic display of thousands of applications helps you find the perfect device quickly, including:
*Power transmission u gears and gearing...chains, sprockets and ratchets...belts and belting...shafts and couplings...clutches *Connections - seals and packings...tube and pipe connections...bushings and bearings...locking and clamping...wire and cable *Single components - washers...retaining rings... o-rings...grommets, spacers and inserts...balls..springs...pins...cams...threaded components *Assemblies: fastening and joining...design hints...mechansims...linkage...fabrication tips...innovative valving...pumps...creative assemblies You'll also find design formulas, structural data, nomograms, charts and unusual tables rarely found in conventional technical sources.
Mechanical Properties of Ceramics
This excellent text/reference presents a systematic introductory treatment of the current understanding, supplemented by empirical facts, of the subject and describes the role of microstructure in determining the effect of mechanical properties of ceramics. Chapters on each of the major types of structural ceramics provide a guide to achievable mechanical properties. Discusses design for specified levels of safety and for minimal life under service conditions. Includes scores of illustrations, tables and figures
Advances in Integrated Design and Manufacturing in Mechanical Engineering II
The 33 papers presented in this book were selected from amongst the 97 papers presented during the sixth edition of the International Conference on Integrated Design and Manufacturing in Mechanical Engineering during 28 sessions. Two keynote papers, one presented by Professor Stephen Lu, from the IMPACT Research Laboratory, University of Southern California, USA, on Supporting participative joint decisions in integrated design and manufacturing teams , and one written by Professor Stefan Rudolph from Stuttgart University about Know-How Reuse in the conceptual design phase of complex engineering products or:
Are you still constructing manually or do you generate already automatically , introduce the subject of the Conference and are followed by the different themes highlighted during the conference:
The design/manufacturing interface; Integrated design of manufacturing processes; Life cycle design and manufacturing approaches; Agility in design and manufacture; Knowledge in engineering; and Management in production systems.
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