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- W4225145462 endingPage "104638" @default.
- W4225145462 startingPage "104638" @default.
- W4225145462 abstract "The purpose of this article is to examine the dynamic behavior of shear deformation beams subjected to high-speed thermal and mechanical loadings. The structure's theoretical equations are derived by employing the first-order shear deformation theory and nonlinear strain-displacement relationships. Loading is accomplished in two different time stages. Initially, the beam is subjected to stress and strain due to fast surface heating. We explore the circumstances that result in dynamic bending or buckling. After that, the bent beam is abruptly exposed to consistent pressure over time. For this reason, two-parameter mechanical loading is proposed. The first parameter indicates the final loading amount, while the second specifies the loading rate. As a consequence of this load, heat-induced displacements are decreased. Additionally, it is investigated whether mechanical loading results in snap-through in the structure based on the Budiansky criterion. The transient heat conduction equation is solved analytically, and the temperature profile is obtained over time. The nonlinear dynamic partial differential equations are then solved by the Chebyshev collocation, Newmark, and Newton-Raphson numerical methods. Moreover, the effect of a nonlinear viscoelastic foundation on the beam response is examined in this research. After demonstrating validation, some novel outcomes are provided to characterize the system's response in various situations. Dynamic response of a beam under two-step thermal and mechanical loading resting on the nonlinear elastic foundation. • Nonlinear dynamic analysis of beams under two-step thermal and mechanical loads. • Utilizing a nonlinear viscoelastic foundation to control the beam response. • Investigation the occurrence of dynamic thermal buckling in beams under heat shock. • Dynamic snap-through buckling of beams subjected to two-parameter pressure loading using the Budiansky criterion. • Chebyshev method and Newmark and Newton-Raphson procedures to calculate the system response." @default.
- W4225145462 created "2022-05-01" @default.
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- W4225145462 date "2022-09-01" @default.
- W4225145462 modified "2023-10-17" @default.
- W4225145462 title "Nonlinear dynamic analysis of thermally deformed beams subjected to uniform loading resting on nonlinear viscoelastic foundation" @default.
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- W4225145462 doi "https://doi.org/10.1016/j.euromechsol.2022.104638" @default.
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