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International Journal of Electro-Mechanics and Material Behaviour Cover

International Journal of Electro-Mechanics and Material Behaviour

| Peer-Reviewed Journal (Refereed Journal) | Online

About the Journal

International Journal of Electro-Mechanics and Material Behaviour is a peer-reviewed Online journal launched in 2023 and focused on electromechanical modeling and Micro-electromechanical systems. This journal aims to promote advances in electrical machines and instruments, research in kinematics and dynamic analysis, wear and degradation of materials, mechanical behavior of materials, fluid dynamics, and sophisticated motion control. The journal seeks work that presents innovation and promises future research, with an emphasis on contributions offering substantial results with lasting impact in the field.

Focus & Scope

The journal welcomes original research articles, computational and experimental papers, systematic literature reviews, case studies, short communications, and invited editorials in the following thematic areas:

  • Electromechanical Modeling and Design: electromagnetic and mechanical coupling in electromechanical systems, induction motors and electrical machines, energy harvesting and vibration-based power generation, analytical and numerical modeling methods, actuator design and performance, electromagnetic force analysis, and Galerkin and finite element techniques for coupled systems.
  • Micro-Electromechanical Systems (MEMS) and Nanoelectromechanical Systems (NEMS): micromachining and microfabrication processes, thin-film deposition and patterning, piezoelectric and electrostatic MEMS devices, reliability and failure analysis of microdevices, MEMS sensors and actuators, stress analysis in microstructures, and III-V semiconductor applications.
  • Smart Materials and Piezoelectric Devices: piezoelectric actuators and sensors, electrorheological and magnetorheological fluids, shape memory alloys and polymers, smart composites and adaptive structures, material characterization and testing, and integration of smart materials in mechanical systems.
  • Electrical Machines and Power Systems: induction and synchronous motor design and analysis, stator and rotor analysis, electromagnetic field distribution, eddy current losses, thermal and efficiency analysis, power electronics integration, and control of electrical machines.
  • Material Behavior and Characterization: mechanical properties of metals, ceramics, polymers, and composites, stress-strain analysis and failure criteria, elasticity and plasticity theory, crack propagation and fracture mechanics, microstructural analysis, material testing methodologies, and failure mode analysis.
  • Composite Materials and Advanced Manufacturing: fiber-reinforced and polymer matrix composites, additive manufacturing of composites, fused deposition modeling (FDM), composite structure design, multifunctional composites, composite property prediction, and manufacturing-process-property relationships.
  • Motion Control and Robotics: control system design and implementation, position and process control, robot kinematics and dynamics, actuator-sensor integration, real-time feedback systems, autonomous systems, soft robotics, and sophisticated motion algorithms.
  • Embedded Systems and Cyber-Physical Systems: microcontroller design and programming, embedded sensors and wireless networks, cyber-physical system architecture, data acquisition and real-time processing, security and authentication in embedded systems, IoT integration, and Raspberry Pi and Arduino applications.
  • Sustainable Energy and Harvesting Technologies: mechanical and vibrational energy harvesting, thermoelectric and piezoelectric energy conversion, photovoltaic systems integration, low-power design strategies, green materials and sustainability, and applications in portable and remote devices.

Keywords

electromechanical systems, MEMS and NEMS, piezoelectric devices, smart materials, embedded systems, motion control, energy harvesting, composite materials, additive manufacturing, cyber-physical systems

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