Automation in the Virtual Testing of Mechanical Systems
eBook - PDF

Automation in the Virtual Testing of Mechanical Systems

Theories and Implementation Techniques

  1. 208 pages
  2. English
  3. PDF
  4. Available on iOS & Android
eBook - PDF

Automation in the Virtual Testing of Mechanical Systems

Theories and Implementation Techniques

About this book

Automation in the Virtual Testing of Mechanical Systems: Theories and Implementation Techniques provides a practical understanding of Knowledge-Based Engineering (KBE), an approach that is driving automation in engineering. Companies are using the technology to automate engineering tasks, achieving gains in output, and saving time. This book will be the main source of information available for implementing KBE systems, integrating KBE with the finite element methods, and showing how KBE is used to automate engineering and analysis of mechanical systems. The process of combining KBE with optimization techniques is explored, and the use of software tools is presented in some detail.

Features



  • Introduces automation with Knowledge-Based Engineering (KBE) in generic mechanical design


  • Develops a framework for generic mechanism modeling including a library format


  • Explores a KBE environment for generic design automation


  • Includes design cases in KBE


  • Gives a presentation of the interwoven technologies used in modern design environments

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Yes, you can access Automation in the Virtual Testing of Mechanical Systems by Ole Ivar Sivertsen,Bjorn Haugen in PDF and/or ePUB format, as well as other popular books in Design & Industrial Design. We have over one million books available in our catalogue for you to explore.

Information

Publisher
CRC Press
Year
2018
Print ISBN
9781138610767
eBook ISBN
9780429879074
Edition
1
Topic
Design

Table of contents

  1. Cover
  2. Half Title
  3. Title Page
  4. Copyright Page
  5. Contents
  6. Preface
  7. Acknowledgment
  8. Authors
  9. List of Abbreviations
  10. 1 Introduction
  11. 2 State-of-the-Art Knowledge-Based Engineering
  12. 3 State-of-the-Art FE-Based Dynamic Simulation
  13. 4 Framework for Generic Mechanism Modeling
  14. 5 Design Optimization
  15. 6 Environment for Design Automation
  16. 7 Interaction with the User
  17. 8 Automated Design Cases
  18. 9 Discussions and Conclusions
  19. References
  20. Index