Fractional thermoviscoelastic damping response in a non-simple micro-beam via DPL and KG nonlocality effect
Downloads
Published
DOI:
https://doi.org/10.58414/SCIENTIFICTEMPER.2025.16.4.18Keywords:
Thermoviscoelastic, Relaxation time, Non-Fourier effect, Damping, Non-local, Heat source, Non-simple micro-beam, Inverse quality factor.Dimensions Badge
Issue
Section
License
Copyright (c) 2025 The Scientific Temper

This work is licensed under a Creative Commons Attribution-NonCommercial-ShareAlike 4.0 International License.
This study introduces a novel framework for investigating thermoelastic damping (TED) in viscoelastic micro-scale rectangular beams using the Euler-Bernoulli beam theory (EBBT). A two-temperature thermoviscoelastic model is developed, uniquely integrating non-Fourier effects and fractional-order parameters through a generalized thermoelasticity approach with an internal heat source and the dual-phase-lag (DPL) thermal conduction model. This innovative approach addresses the limitations of classical models by incorporating size-dependent effects and spatially varying thermal properties, providing new insights into thermal-mechanical coupling in micro-scale systems. Explicit formulas are derived for the inverse quality factor and frequency shifts, with the study comprehensively analyzing the influence of parameters such as beam thickness, aspect ratios, end constraints, relaxation constants, and fractional-order parameters. Novel findings reveal critical thickness ranges and phase-lag effects that govern energy dissipation and system dynamics. The results highlight the divergence from existing models, emphasizing the importance of nonlocal and fractional-order frameworks for accurately predicting damping and frequency behavior. Practical applications of the study include the optimization of micro-electromechanical systems (MEMS), nano-scale resonators, sensors, and energy-harvesting devices. By bridging theoretical advancements with tangible engineering solutions, this research provides a robust foundation for future exploration in thermal management and micro-scale system design, marking a significant contribution to the field. Graphical representations illustrate the effects of temperature discrepancy factors on damping and frequency shifts in non-simple micro-beams, offering a comprehensive understanding of the interaction between thermal and mechanical responses.Abstract
How to Cite
Downloads
Similar Articles
- Kirti Gupta, Parul Goyal, Modified-multi objective firefly optimization algorithm for object oriented applications test suites optimization , The Scientific Temper: Vol. 14 No. 03 (2023): The Scientific Temper
- Engida Admassu, Classifying enset based on their disease tolerance using deep learning , The Scientific Temper: Vol. 14 No. 03 (2023): The Scientific Temper
- I.Bhuvaneshwarri, M. N. Sudha, An implementation of secure storage using blockchain technology on cloud environment , The Scientific Temper: Vol. 14 No. 03 (2023): The Scientific Temper
- S. C. Prabha, P. Sivaraaj, S. Kantha Lakshmi, Data analysis and machine learning-based modeling for real-time production , The Scientific Temper: Vol. 14 No. 03 (2023): The Scientific Temper
- Temesgen A. Asfaw, Deep learning hyperparameter’s impact on potato disease detection , The Scientific Temper: Vol. 14 No. 03 (2023): The Scientific Temper
- Ravikiran K, Neerav Nishant, M Sreedhar, N.Kavitha, Mathur N Kathiravan, Geetha A, Deep learning methods and integrated digital image processing techniques for detecting and evaluating wheat stripe rust disease , The Scientific Temper: Vol. 14 No. 03 (2023): The Scientific Temper
- Seema Bhakuni, Application of artificial intelligence on human resource management in information technolgy industry in India , The Scientific Temper: Vol. 14 No. 04 (2023): The Scientific Temper
- Suresha S, Corporate bonds vis-a-vis bond market: Global economy , The Scientific Temper: Vol. 14 No. 03 (2023): The Scientific Temper
- Isreal zewide, Abde S. Hajigame, Wondwosen Wondimu, Kibinesh Adimasu, Response of Bread Wheat (Triticum aestivum L.) Varieties to Blended NPSB Fertilizer Levels in Sori Saylem District, South-West Ethiopia , The Scientific Temper: Vol. 14 No. 02 (2023): The Scientific Temper
- Anju Bhatnagar, Assessment of antioxidant activity and phytochemical screening in leaf extract of Andrographis paniculate (Burm. f.) nees , The Scientific Temper: Vol. 14 No. 02 (2023): The Scientific Temper
<< < 33 34 35 36 37 38 39 40 41 42 > >>
You may also start an advanced similarity search for this article.

