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Proceedings of the 11th IFToMM International Conference on Rotordynamics - Volume 1 (2024 ed.): Fulei Chu, Zhaoye Qin Proceedings of the 11th IFToMM International Conference on Rotordynamics - Volume 1 (2024 ed.)
Fulei Chu, Zhaoye Qin
R8,709 Discovery Miles 87 090 Ships in 10 - 15 working days

This book presents the proceedings of the 11th IFToMM International Conference on Rotordynamics, held in Beijing, China on 18-21 September 2023. This conference is a premier global event that brings together specialists from the university and industry sectors worldwide in order to promote the exchange of knowledge, ideas, and information on the latest developments and applied technologies in the dynamics of rotating machinery. The coverage is wide ranging, including, for example, new ideas and trends in various aspects of bearing technologies, issues in the analysis of blade dynamic behavior, condition monitoring of different rotating machines, vibration control, electromechanical and fluid-structure interactions in rotating machinery, rotor dynamics of micro, nano and cryogenic machines, and applications of rotor dynamics in transportation engineering. Since its inception 32 years ago, this conference has become an irreplaceable point of reference for those working in the field and this book reflects the high quality and diversity of content that the conference continues to guarantee.

Proceedings of the 11th IFToMM International Conference on Rotordynamics - Volume 2 (2024 ed.): Fulei Chu, Zhaoye Qin Proceedings of the 11th IFToMM International Conference on Rotordynamics - Volume 2 (2024 ed.)
Fulei Chu, Zhaoye Qin
R8,709 Discovery Miles 87 090 Ships in 10 - 15 working days

This book presents the proceedings of the 11th IFToMM International Conference on Rotordynamics, held in Beijing, China on 18-21 September 2023. This conference is a premier global event that brings together specialists from the university and industry sectors worldwide in order to promote the exchange of knowledge, ideas, and information on the latest developments and applied technologies in the dynamics of rotating machinery. The coverage is wide ranging, including, for example, new ideas and trends in various aspects of bearing technologies, issues in the analysis of blade dynamic behavior, condition monitoring of different rotating machines, vibration control, electromechanical and fluid-structure interactions in rotating machinery, rotor dynamics of micro, nano and cryogenic machines, and applications of rotor dynamics in transportation engineering. Since its inception 32 years ago, this conference has become an irreplaceable point of reference for those working in the field and this book reflects the high quality and diversity of content that the conference continues to guarantee.

Advanced Theory of Constraint and Motion Analysis for Robot Mechanisms (Hardcover): Jingshan Zhao, Zhijing Feng, Fulei Chu,... Advanced Theory of Constraint and Motion Analysis for Robot Mechanisms (Hardcover)
Jingshan Zhao, Zhijing Feng, Fulei Chu, Ning Ma
R3,733 Discovery Miles 37 330 Ships in 12 - 17 working days

"Advanced Theory of Constraint and Motion Analysis for Robot Mechanisms" provides a complete analytical approach to the invention of new robot mechanisms and the analysis of existing designs based on a unified mathematical description of the kinematic and geometric constraints of mechanisms.

Beginning with a high level introduction to mechanisms and components, the book moves on to present a new analytical theory of terminal constraints for use in the development of new spatial mechanisms and structures. It clearly describes the application of screw theory to kinematic problems and provides tools that students, engineers and researchers can use for investigation of critical factors such as workspace, dexterity and singularity.
Combines constraint and free motion analysis and design, offering a new approach to robot mechanism innovation and improvement.
Clearly describes the use of screw theory in robot kinematic analysis, allowing for concise representation of motion and static forces when compared to conventional analysis methods.
Includes worked examples to translate theory into practice and demonstrate the application of new analytical methods to critical robotics problems."

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