Mechanical tolerance stackup and analysis, Fischer, Bryan R.
Автор: Thompson, Mary Kathryn Thompson, John Martin Название: Ansys mechanical apdl for finite element analysis ISBN: 0128129816 ISBN-13(EAN): 9780128129814 Издательство: Elsevier Science Рейтинг: Цена: 7232 р. 8036.00-10% Наличие на складе: Есть у поставщика Поставка под заказ.
Описание: ANSYS Mechanical APDL for Finite Element Analysis provides a hands-on introduction to engineering analysis using one of the most powerful commercial general purposes finite element programs on the market. Students will find a practical and integrated approach that combines finite element theory with best practices for developing, verifying, validating and interpreting the results of finite element models, while engineering professionals will appreciate the deep insight presented on the program’s structure and behavior. Additional topics covered include an introduction to commands, input files, batch processing, and other advanced features in ANSYS. . The book is written in a lecture/lab style, and each topic is supported by examples, exercises and suggestions for additional readings in the program documentation. Exercises gradually increase in difficulty and complexity, helping readers quickly gain confidence to independently use the program. This provides a solid foundation on which to build, preparing readers to become power users who can take advantage of everything the program has to offer.
Автор: Javidinejad Amir Название: Essentials of Mechanical Stress Analysis ISBN: 1482258471 ISBN-13(EAN): 9781482258479 Издательство: Taylor&Francis Рейтинг: Цена: 12018 р. Наличие на складе: Поставка под заказ.
Developed with stress analysts handling multidisciplinary subjects in mind, and written to provide the theories needed for problem solving and stress analysis on structural systems, Essentials of Mechanical Stress Analysis presents a variety of relevant topics--normally offered as individual course topics--that are crucial for carrying out the analysis of structures. This work explores concepts through both theory and numerical examples, and covers the analytical and numerical approaches to stress analysis, as well as isotropic, metallic, and orthotropic composite material analyses.
Comprised of 13 chapters, this must-have resource:
Establishes the fundamentals of material behavior required for understanding the concepts of stress analysis
Defines stress and strain, and elaborates on the basic concepts exposing the relationship between the two
Discusses topics related to contact stresses and pressure vessels
Introduces the different failure criteria and margins of safety calculations for ductile and brittle materials
Illustrates beam analysis theory under various types of loading
Introduces plate analysis theory
Addresses elastic instability and the buckling of columns and plates
Demonstrates the concept of fatigue and stress to life-cycle calculations
Explores the application of energy methods for determining deflection and stresses of structural systems
Highlights the numerical methods and finite element techniques most commonly used for the calculation of stress
Presents stress analysis methods for composite laminates
Explains fastener and joint connection analysis theory
Provides MathCAD(R) sample simulation codes that can be used for fast and reliable stress analysis
Essentials of Mechanical Stress Analysis
is a quintessential guide detailing topics related to stress and structural analysis for practicing stress analysts in mechanical, aerospace, civil, and materials engineering fields and serves as a reference for higher-level undergraduates and graduate students.
Описание: Proceedings of the PVP Conference covering topics such as codes and standards, and design and analysis, related to pressure vessel and piping technologies for the power and process industries.Printed collection on 111 full-length, peer-reviewed technical papers. Topics include: Design & Analysis
Описание: An effective text must be well balanced and thorough in its approach to a topic as expansive as vibration, and Mechanical Vibration is just such a textbook. Written for both senior undergraduate and graduate course levels, this updated and expanded second edition integrates uncertainty and control into the discussion of vibration, outlining basic concepts before delving into the mathematical rigors of modeling and analysis. Mechanical Vibration: Analysis, Uncertainties, and Control, Second Edition provides example problems, end-of-chapter exercises, and an up-to-date set of mini-projects to enhance students' computational abilities and includes abundant references for further study or more in-depth information. The author provides a MATLAB primer on an accompanying CD-ROM, which contains original programs that can be used to solve complex problems and test solutions. The book is self-contained, covering both basic and more advanced topics such as stochastic processes and variational approaches. It concludes with a completely new chapter on nonlinear vibration and stability. Professors will find that the logical sequence of material is ideal for tailoring individualized syllabi, and A solutions manual is also available with qualifying course adoptions.
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