Quasistatic Thermoelastic State of a Layered Functionally Graded Cylinder with Regard for Thermal Radiation
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Springer Science and Business Media LLC
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https://link.springer.com/content/pdf/10.1007/s10958-024-07216-8.pdf
Reference7 articles.
1. B. V. Protsiuk, “Static problems of thermoelasticity for a layered functionally graded thermosensitive cylinder”, Mat. Met. Fiz.- Mekh. Polya, 64, No. 2, 70–81 (2021).
2. B. V. Protsiuk, “Thermoelastic state of a piecewise inhomogeneous orthotropic thermosensitive cylinder”, Mat. Met. Fiz.-Mekh. Polya, 62, No. 3, 57–73 (2019); English translation: J. Math. Sci., 263, No. 1, 62–83 (2022); https://doi.org/10.1007/s10958-022-05907-8.
3. B. V. Protsiuk and V. M. Siniuta, “Nonstationary axisymmetric temperature field of an unbounded cylinder with thermal characteristics variable over thickness”, Mat. Met. Fiz.-Mekh. Polya, 62, No. 2, 74–81 (2019); English translation: J. Math. Sci., 261, No. 1, 85–94 (2022); https://doi.org/10.1007/s10958-022-05739-6.
4. R. Kushnir and B. Protsiuk, “Determination of the thermal fields and stresses in multilayer solids by means of the constructed Green functions”, in: Encyclopedia of Thermal Stresses, Ed. R. B. Hetnarski, Springer, Dordrecht etc.: Vol. 2 (2014), pp. 924–931; https://doi.org/10.1007/978-94-007-2739-7_608.
5. S.-Y. Lee and C.-C. Huang, “Analytic solutions for heat conduction in functionally graded circular hollow cylinders with timedependent boundary conditions”, Math. Probl. Eng., 2013, No. 3, 1–8 (2013); https://doi.org/https://doi.org/10.1155/2013/816385.
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