 | | Mechanics of Solids A Journal of Russian Academy of Sciences | | Founded
in January 1966
Issued 6 times a year
Print ISSN 0025-6544 Online ISSN 1934-7936 |
Archive of Issues
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| In English (Mech. Solids): | | 5430 |
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| Kangjian Wang and Man Zhou, "High-Order Non-Singular Memory-Dependent Dual-Phase-Lag Transient Impact Thermo-Mechanical Response Analysis of Non-Idealized Laminated Viscoelastic Polymer Composites," Mech. Solids. 60 (8), 7125-7140 (2025) |
| Year |
2025 |
Volume |
60 |
Number |
8 |
Pages |
7125-7140 |
| DOI |
10.1134/S0025654425605580 |
| Title |
High-Order Non-Singular Memory-Dependent Dual-Phase-Lag Transient Impact Thermo-Mechanical Response Analysis of Non-Idealized Laminated Viscoelastic Polymer Composites |
| Author(s) |
Kangjian Wang (School of Architectural Engineering and Art Design, Suzhou Vocational Institute of Industrial Technology, Suzhou, Jiangsu, 215104 China, wangkjw@163.com)
Man Zhou (School of Civil Engineering, Wuhan University, Wuhan, 430072 China, civilzm1988@163.com) |
| Abstract |
Non-idealized laminated viscoelastic polymer composites are extensively applied in nonisothermal environments to reduce unwanted responses. To predict transient thermo-mechanical
impact response of such structure, this work aims to establish new non-Fourier thermo-viscoelasticity
model based on high-order non-singular fractional dual-phase-lag heat conduction law with Atangana-Baleanu and Tempered-Caputo definitions. The 1D multi-variable partial differential control
equations are solved by Laplace transformation. Dimensionless numerical results reveal that higherorder phase-lag parameters of temperature gradient and heat flux, material constants ratios and nonidealized interfacial conditions significantly affect the thermal wave propagations and thermo-visco-elastic impact responses. |
| Keywords |
Non-idealized laminated viscoelastic polymer composites, High-order dual-phase-lag heat conduction, Non-singular fractional derivative, Non-Fourier thermo-viscoelasticity, Transient heat- shock loadings |
| Received |
07 October 2025 | Revised |
27 November 2025 | Accepted |
12 December 2025 |
| Link to Fulltext |
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