By Shireen Afshan, Daniel Balint, Jianguo Lin (auth.), Holm Altenbach, Serge Kruch (eds.)
This quantity provides the most important consequence of the IUTAM symposium on “Advanced fabrics Modeling for Structures”. It discusses advances in hot temperature fabrics learn, and likewise to offers a dialogue the hot horizon of this basic box of utilized mechanics. the subjects conceal a wide area of analysis yet position a selected emphasis on multiscale methods at numerous size scales utilized to non linear and heterogeneous fabrics.
Discussions of recent ways are emphasized from a number of comparable disciplines, together with steel physics, micromechanics, mathematical and computational mechanics.
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In: Proceedings of CREEP8: 8th International Conference on Creep and Fatigue at Elevated Temperatures, CREEP2007-26152, pp. 399–418. ASME, San Antonio (2007) 4. : A mathematical representation of the multiaxial bauschinger effect. Mater. High Temp. 24(1), 1–26 (2007) 5. : Metallurgical Failures in Fossil Fired Boilers. Wiley, New York (1993) 6. : Determination of material properties in the Chaboche unified viscoplasticity model. J. Mater. Des. Appl. 224(1), 19–29 (2010) 7. : Creep-fatigue analysis of the steel AISI type 316 component failure.
The influence of surface tension on the effective stiffness of nanosize plates. Doklady Phys. 54(2), 98–100 (2009) 10. : Size-dependent response of ultra-thin films with surface effects. Int. J. Solids Struct. 45(2), 568–579 (2008) 11. : Thin plate theory including surface effects. Int. J. Solids Struct. 43(16), 4631–4647 (2006) 12. : Self-instabilityand bending behaviors of nano plates. Acta Mechanica Solida Sinica 22(6), 630–643 (2009) 13. : Effects of surface and initial stresses on the bending stiffness of trilayer plates and nanofilms.
Coupled with this increased TMF is the requirement to improve overall plant efficiency and hence reduce the level of CO2 emissions. This may be achieved through the use of an ultra-supercritical (USC) cycle, with plant components subjected to increased steam pressure and temperature. With Type IV cracking already observed in plant components operating under a subcritical cycle , there is a need for the development of accurate life prediction methods for power plant components. To achieve this, effective and efficient computational methods are required to predict the life of plant components.