Continuum micromechanics model for fired clay bricks: Upscaling of experimentally identified microstructural features to macroscopic elastic stiffness and thermal conductivity
Author:
Funder
FFG
Publisher
Elsevier BV
Subject
Mechanical Engineering,Mechanics of Materials,General Materials Science
Reference72 articles.
1. The effect of mineralogy, microstructure and firing temperature on the effective thermal conductivity of traditional hot processing ceramics;Allegretta;Appl. Clay Sci.,2017
2. ASTMC518-04. Standard test method for steady-state thermal transmission properties by means of the heat flow meter apparatus. 2004. doi: 10.1520/C0518-04. http://www.astm.org/cgi-bin/resolver.cgi?C518.
3. ASTME1530-06. Standard test method for evaluating the resistance to thermal transmission of materials by the guarded heat flow meter technique. 2006. doi: 10.1520/E1530-06. http://www.astm.org/cgi-bin/resolver.cgi?E1530.
4. Poromechanical scale transitions of failure stresses in wood: from the lignin to the spruce level;Bader;Jounal of Applied Mathematics adn Mechanics,2010
5. Extrusion in Ceramics;Bartusch,2007
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