ALUJEVIČ, Andro . Coupled Thermo-Elasto-Plasticity. Strojniški vestnik - Journal of Mechanical Engineering, [S.l.], v. 40, n.5-6, p. 189-192, november 2017. ISSN 0039-2480. Available at: <https://www.sv-jme.eu/article/coupled-thermo-elasto-plasticity/>. Date accessed: 27 nov. 2025. doi:http://dx.doi.org/.
Alujevič, A. (1994). Coupled Thermo-Elasto-Plasticity. Strojniški vestnik - Journal of Mechanical Engineering, 40(5-6), 189-192. doi:http://dx.doi.org/
@article{.,
author = {Andro Alujevič},
title = {Coupled Thermo-Elasto-Plasticity},
journal = {Strojniški vestnik - Journal of Mechanical Engineering},
volume = {40},
number = {5-6},
year = {1994},
keywords = {Thermo-Elasto-Plasticity; },
abstract = {A non-steady temperature field generates time-dependent deformation and stress fields. In turn, any deformation of the body is always associated with a change in temperature of the body. The dynamic problems must consider the evolution of mutually coupled fields of displacements and temperature. Inelastic deformations of solid bodies represent coupled thermo-mechanical processes even if the body deforms quasi-statically and/or isothermally. This is due to dissipation of the mechanical work into heat.},
issn = {0039-2480}, pages = {189-192}, doi = {},
url = {https://www.sv-jme.eu/article/coupled-thermo-elasto-plasticity/}
}
Alujevič, A. 1994 November 40. Coupled Thermo-Elasto-Plasticity. Strojniški vestnik - Journal of Mechanical Engineering. [Online] 40:5-6
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Alujevič, Andro. "Coupled Thermo-Elasto-Plasticity." Strojniški vestnik - Journal of Mechanical Engineering [Online], 40.5-6 (1994): 189-192. Web. 27 Nov. 2025
TY - JOUR AU - Alujevič, Andro PY - 1994 TI - Coupled Thermo-Elasto-Plasticity JF - Strojniški vestnik - Journal of Mechanical Engineering DO - KW - Thermo-Elasto-Plasticity; N2 - A non-steady temperature field generates time-dependent deformation and stress fields. In turn, any deformation of the body is always associated with a change in temperature of the body. The dynamic problems must consider the evolution of mutually coupled fields of displacements and temperature. Inelastic deformations of solid bodies represent coupled thermo-mechanical processes even if the body deforms quasi-statically and/or isothermally. This is due to dissipation of the mechanical work into heat. UR - https://www.sv-jme.eu/article/coupled-thermo-elasto-plasticity/
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author = {Alujevič, A.},
title = {Coupled Thermo-Elasto-Plasticity},
journal = {Strojniški vestnik - Journal of Mechanical Engineering},
volume = {40},
number = {5-6},
year = {1994},
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TY - JOUR AU - Alujevič, Andro PY - 2017/11/11 TI - Coupled Thermo-Elasto-Plasticity JF - Strojniški vestnik - Journal of Mechanical Engineering; Vol 40, No 5-6 (1994): Strojniški vestnik - Journal of Mechanical Engineering DO - KW - Thermo-Elasto-Plasticity, N2 - A non-steady temperature field generates time-dependent deformation and stress fields. In turn, any deformation of the body is always associated with a change in temperature of the body. The dynamic problems must consider the evolution of mutually coupled fields of displacements and temperature. Inelastic deformations of solid bodies represent coupled thermo-mechanical processes even if the body deforms quasi-statically and/or isothermally. This is due to dissipation of the mechanical work into heat. UR - https://www.sv-jme.eu/article/coupled-thermo-elasto-plasticity/
Alujevič, Andro"Coupled Thermo-Elasto-Plasticity" Strojniški vestnik - Journal of Mechanical Engineering [Online], Volume 40 Number 5-6 (11 November 2017)
Strojniški vestnik - Journal of Mechanical Engineering 40(1994)5-6, 189-192
© The Authors, CC-BY 4.0 Int. Change in copyright policy from 2022, Jan 1st.
A non-steady temperature field generates time-dependent deformation and stress fields. In turn, any deformation of the body is always associated with a change in temperature of the body. The dynamic problems must consider the evolution of mutually coupled fields of displacements and temperature. Inelastic deformations of solid bodies represent coupled thermo-mechanical processes even if the body deforms quasi-statically and/or isothermally. This is due to dissipation of the mechanical work into heat.