Journal
International Journal of Mechanical System Dynamics (IJMSD) showcases the importance of mechanical system dynamics within modern industrial equipment and product.
We publish innovative research in an area that is the foundation of science, technology, and industry. With your help, we can provide a global open access forum for engineers and scientists. Through rapid publication of impactful research on dynamics for high-level system performance.
Why publish in IJMSD?
Incorporates fundamental theory, as well as an application-oriented approach for solving engineering problems for mechanical system dynamics.
Emphasizes the “system” point of view and system-level tools to better understand the dynamics.
Covers the dynamics associated with not only various machinery and structures of different scales, but also integrated mechanical systems involving coupled dynamics with a multi-physics and multi-disciplinary nature.
Open access means that your research will be available online to everyone, resulting in more shares, downloads, and citations.
An experienced and prestigious Editorial Board: 35 internationally renowned scientists and experts from 11 countries, including academicians, society presidents, and journal Editors-in-Chief.
Rapid reporting and dissemination of significant findings shared via a single platform.
Language polishing of the accepted paper by a native English speaker and also a prominent and experienced expert in the field of mechanical system dynamics.
Mechanical system dynamics is one of the pillars of almost all industries such as machinery, aero & astronautics, marine engineering, transportation, biology, etc. The last two decades have witnessed a rapid and considerable growing number of research on the areas of mechanical system dynamics. IJMSD specializes on mechanical system dynamics to satisfy the rapidly growing requirement for high-level system performance.
About the journal
IJMSD invites papers based on both fundamental and applied research concerning dynamics theory, modeling, computation, analysis, software, design, control, manufacturing, testing, and evaluation of general mechanical systems., with an emphasis on the “system” point of view. Topics include but are not limited to:
Modeling, computation, and software development
Design, optimization, diagnostics and control
Measurement and testing
Application of mechanical system dynamics in practical engineering:
Manned / unmanned aerial vehicles, underwater / surface / amphibious vessels, tracked / wheeled vehicles, high-speed trains, robots, machine tools, wind turbines, civil buildings, etc.
advanced manufacturing and production, such as additive manufacturing, 4D printing, virtual manufacturing, 3D assembly
Production process of energetic/polymeric material
Energy storage, energy conversions, and low carbon dioxide emissions





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