Modelling and numerical computation of transient internal damping due to thermal expansion mismatch between matrix and particles in metal matrix composites
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Metals and Alloys,Mechanical Engineering,Mechanics of Materials
Reference6 articles.
1. Internal damping due to dislocation movements induced by thermal expansion mismatch between matrix and particles in metal matrix composites
2. C. Girard, G. Lormand, R. Fougères and A. Vincent, J. Alloys Comp., in press.
3. A dislocation model for internal damping due to the thermal expansion mismatch between matrix and particles in microheterogeneous materials
4. Proc. 12th Risø Int. Symp. on Metallurgy and Materials Science;Hamann,1991
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1. Mechanical spectroscopy of thermal stress relaxation at metal–ceramic interfaces in Aluminium-based composites;Acta Materialia;2000-12
2. Mechanical Spectroscopy of Thermal Stress Relaxation in Aluminium Alloys Reinforced with Short Alumina Fibres;physica status solidi (a);1998-05
3. On internal damping in metal matrix composites: Role of particle-matrix interfacial region;Scripta Materialia;1997-01
4. Experimental Evidences of Thermo-Elasto-Plastic Strain Incompatibilities in Microheterogeneous Metal Based Materials;IUTAM Symposium on Micromechanics of Plasticity and Damage of Multiphase Materials;1996
5. Low-temperature thermal cycling of metal-matrix composites studied by the ultrasonic low-frequency stress-coupling technique;Journal of Alloys and Compounds;1994-09
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