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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) | Hybrid Open Access

About the Journal

International Journal of Electro-Mechanics and Material Behavior is a peer-reviewed hybrid open-access 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.

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Journal Information

Title: International Journal of Electro-Mechanics and Material Behaviour
Abbreviation: ijemb
Issues Per Year: 2 Issues
Publisher: STM Journals
DOI: 10.37591/IJEMB
Starting Year: 2023
Subject: Electro-Mechanics
Publication Format: Hybrid Open Access
Language: English
Copyright Policy: CC BY-NC-ND
Type: Peer-reviewed Journal (Refereed Journal)

Address:

STM Journals, An imprint of Consortium e-Learning Network Pvt. Ltd. A-118, 1st Floor, Sector-63, Noida, U.P. India, Pin - 201301

Editorial Board

View Full Editorial Board

ijemb maintains an Editorial Board of practicing researchers from around the world, to ensure manuscripts are handled by editors who are experts in the field of study.

Editor in Chief

Editor

Dr. Pankaj Thakur, HOD

ICFAI University, Himachal Pradesh, India,

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Latest Articles

Ahead of Print

HARMONICALLY VARYING MOVING LOAD ON TIME DEPENDENT UNIFORM BEAM RESTNG ON PASTERNAK FOUNDATION

In this paper, we investigated elastic beam whose properties does not varies with spatial coordinate but constant along the span L of the beam.

Time Dependent Boundary Conditions, Pasternak Foundation, Harmonically Varying Moving Load, Damping Coefficient, Circular frequency of the Moving Load.

Piezoelectricity: For Power Generation

Undeniably, piezoelectric materials are an exciting possibility for serving as a workable energy source; the question is whether technologies at this point in their development are ready for wide-scale application.

Power Generation, Piezoelectricity, energy collector, Piezoelectric slates, Piezoelectric breakwater.

Recent Advancements and Current Status of Hydrogen Fuel Cells: Materials, Systems, Applications, and Commercialization Prospects

In the transportation, stationary electricity, and industrial sectors, hydrogen fuel cells have become a crucial clean-energy technology that can help achieve worldwide decarbonization.

Hydrogen fuel cell; PEMFC; SOFC; Green hydrogen; Electrolyzer; Catalyst; MEA; Durability

ELECTROMAGNETIC PROPULSION TRAIN FOR FUTURE TRANSPORTATION

The Electromagnetic Propulsion Train project focuses on the development and analysis of a prototype system that achieves linear motion through the application of controlled electromagnetic forces.

Electromagnetic Propulsion, Magnetic Force, Arduino, Linear Motion, Sustainable Transport

Advancement in Biodegradable Equipment for Flexible and Sustainable Electronics

Biodegradable electronics are a quickly developing area focused on reducing the environmental impact of traditional electronic waste by using materials that can break down naturally after use.

Biodegradable Electronics, Medical Devices, Environment, Transient Electronics, Conductive Polymers, Flexible Devices, Sustainable Materials

Conductive Polymers for Electro-Mechanical Systems: Structure–Property Relationships and Mechanical Behavior Under Stress

Conductive polymers represent a unique class of functional materials that combine the electrical characteristics of metals with the mechanical flexibility of polymers.

Conductive polymers, electro-mechanical systems, mechanical stress, structure–property relationships, polymer nanocomposites, electro-mechanical coupling, smart materials, flexible strain sensors, structural health monitoring, wearable actuators, smart structures, fatigue behaviour