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Dynamics --- Kinematics --- Multibody systems
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This enhanced fourth edition of Dynamics of Multibody Systems includes an additional chapter that provides explanations of some of the fundamental issues addressed in the book, as well as new detailed derivations of some important problems. Many common mechanisms such as automobiles, space structures, robots and micromachines have mechanical and structural systems that consist of interconnected rigid and deformable components. The dynamics of these large-scale multibody systems are highly nonlinear, presenting complex problems that in most cases can only be solved with computer-based techniques. The book begins with a review of the basic ideas of kinematics and the dynamics of rigid and deformable bodies before moving on to more advanced topics and computer implementation. The book's wealth of examples and practical applications will be useful to graduate students, researchers and practising engineers working on a wide variety of flexible multibody systems.
Dynamics. --- Multibody systems. --- Kinematics.
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Product design --- Multibody systems --- Product design --- Multibody systems
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This book presents the proceedings of the IUTAM Symposium on Optimal Design and Control of Multibody Systems 2022, covering research papers in the realm of optimal structural and control design for both rigid and flexible multibody systems. It delves into the application of the adjoint approach, enabling the undertaking of extensive topology optimizations to unearth body designs that excel under time- and design-dependent loads. Encompassing presentations on (adjoint) sensitivity analysis, structural optimization, optimal control, robust optimization, artificial intelligence, machine learning, and computational methods and software development, the IUTAM Symposium 2022 showcased the latest breakthroughs and innovative methodologies. This book presents 14 meticulously peer-reviewed proceedings papers from the event, evenly split between the Optimal Design and Optimal Control panels.
Multibody systems. --- Vibration. --- Mechanics, Applied. --- Multibody Systems and Mechanical Vibrations. --- Engineering Mechanics.
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The clutch systems have a variety of disturbing dynamic phenomena. One of them, the problem of dynamic engagement, firstly is considered by measurement and analytically. Then a 3D-multibody system is created in order to describe the clutch system dynamics. This model is applied for the research of the problem of dynamic engagement, the engagement rattle and the clutch pedal vibrations. To validate the model the simulation results are compared with the experimental results.
Kupplungssystem --- dynamic phenomena --- dynamische Phänomenen --- multibody system --- Mehrkörpersystemclutch
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This book is an integrated approach to kinematic and dynamic analysis. The matrix techniques presented are general and fully applicable to two- or three-dimensional systems. They lend themselves to programming and digital computation and can act as the basis of a usable tool for designers. Techniques have broad applicability to the design analysis of all multibody mechanical systems. The more powerful and more flexible the approach, and the less specialisation and reprogramming required for each application, the better. The matrix methods presented have been developed using these ideas as primary goals. Matrix methods can be applied by hand to such problems as the slider-crank mechanism, but this is not the intent of this text, and often the rigor required for such an attempt becomes quite burdensome in comparison with other techniques. The matrix methods have been extensively tested, both in the classroom and in the world of engineering industry.
Machinery, Dynamics of. --- Multibody systems --- Dynamics, Rigid --- Mathematical models. --- Mathematics.
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This book gathers the proceedings of the 16th IFToMM World Congress, which was held in Tokyo, Japan, on November 5–10, 2023. Having been organized every four years since 1965, the Congress represents the world’s largest scientific event on mechanism and machine science (MMS). The contributions cover an extremely diverse range of topics, including biomechanical engineering, computational kinematics, design methodologies, dynamics of machinery, multibody dynamics, gearing and transmissions, history of MMS, linkage and mechanical controls, robotics and mechatronics, micro-mechanisms, reliability of machines and mechanisms, rotor dynamics, standardization of terminology, sustainable energy systems, transportation machinery, tribology and vibration. Selected by means of a rigorous international peer-review process, they highlight numerous exciting advances and ideas that will spur novel research directions and foster new multidisciplinary collaborations.
Multibody systems. --- Vibration. --- Mechanics, Applied. --- Manufactures. --- Robotics. --- Multibody Systems and Mechanical Vibrations. --- Machines, Tools, Processes. --- Robotic Engineering. --- Machinery --- Mechanical engineering
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This book presents the Proceedings of the 15th International Conference on Vibration Problems (ICoVP 2023) and covers vibration problems of engineering both in theoretical and applied fields. Various topics covered in this volume are Vibration in Oil and Gas, Structural Dynamics, Structural Health Monitoring, Rotor Dynamics, Measurement Diagnostics in Vibration, Computational methods in Vibration and Wave Mechanics, Dynamics of Coupled Systems, Dynamics of Micro and Macro Systems, Multi-body dynamics, Nonlinear dynamics Reliability of dynamic systems, Vibrations due to solid/liquid phase interaction, Vibrations of transport systems, Seismic Isolation, Soil dynamics, Geotechnical earthquake engineering Dynamics of concrete structures, Underwater shock waves (Tsunami), Vibration control, uncertainty quantification and reliability analysis of dynamic structures, Vibration problems associated with nuclear power reactors, Earthquake engineering, impact and wind loading and vibration in composite structures and fracture mechanics. This book will be useful for both professionals and researchers working on vibrations problems in multidisciplinary areas.
Multibody systems. --- Vibration. --- Mechanics, Applied. --- Solids. --- Machinery. --- Multibody Systems and Mechanical Vibrations. --- Solid Mechanics. --- Machinery and Machine Elements.
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The 2nd International Conference of Mechanical System Dynamics (ICMSD2023) is devoted to “Technology Innovations by Understanding Mechanical Dynamics”, with 18 sessions to promote research in dynamic theories on complex structures, multidisciplinary integration, and advanced technologies for applications. It is held on September 1–5 in Peking University, Beijing, China. The conference is expected to provide a platform for academic researchers and engineers in the field of mechanical system dynamics to exchange scientific and technical ideas.
Dynamics. --- Nonlinear theories. --- Tribology. --- Multibody systems. --- Vibration. --- Mechanics, Applied. --- Applied Dynamical Systems. --- Multibody Systems and Mechanical Vibrations.
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This work enters in the scheme of work at The Multibody and Mechatronic Systems Laboratory of the University of Liège, that aims at optimizing trajectory control by taking into account robot flexibility. A Delta robot ``ABB IRB 340'' will one of the subjects of this study. This work will focus on designing a ``Rigid Body Dynamic Model'' of this robot as a step towards the goals of the Multibody and Mechatronics Systems Laboratory.
kinematics --- dynamics --- robotics --- model identification --- multibody modeling --- multibody mechanics --- Delta robot --- feedfoward --- control --- Samcef --- Mecano --- Ingénierie, informatique & technologie > Ingénierie mécanique
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