Cross-Coupled Heat and Moisture Transport Part 2/1: Applications in Mechanics
Author:
Affiliation:
1. HAS-TUB Research Group for Dynamics of Machines and Vehicles Department of Applied Mechanics TU Budapest Műegyetem 5, H-1111 , Hungary
2. Department of Nuclear Engineering , University of California , Berkeley , 4103 Etcheverry Hall 94710 CA, USA
Abstract
Publisher
Walter de Gruyter GmbH
Subject
Mechanical Engineering
Link
https://www.sciendo.com/pdf/10.2478/scjme-2018-0044
Reference17 articles.
1. [1] A. Szekeres. Cross-Coupled Heat and Moisture Transport Part 1 – Theory. Journal of Thermal Stresses2012 (35), 1 – 21.10.1080/01495739.2012.637827
2. [2] P. Kraus, J. Úradníček, M. Musil, M. Bachratý. Effective Thermo-Structural Analysis for Disc Brake System Simulation. Journal of Mechanical Engineering – Strojnícky časopis2018 (68), No. 2, 125 – 130. DOI: 10.2478/scjme-2018-002210.2478/scjme-2018-0022
3. [3] M. Repka, J. Sládek, V. Sládek, M. Wünsche. Evaluation of Fracture Parameters for Cracks in Coupled Thermoelasticity for Functionally Graded Materials. Journal of Mechanical Engineering – Strojnícky časopis2015 (65), No. 1, 57 – 76. DOI:10.1515/scjme-2016-000410.1515/scjme-2016-0004
4. [4] A. Nadai. Theory of Flow and Fracture of Solids, McGraw-Hill Book Company, Inc. New York-Toronto-London, 1950.
5. [5] A. Fick. Über Diffusion. Ann. der Phys. 94 1855, 59 – 86,10.1002/andp.18551700105
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