Investigation of creep threshold stresses using in situ TEM straining experiment in an Al―5Y2O3―10SiC composite
Creep behavior of metal matrix composites is similar to dispersion strengthen alloys and characterized by the presence of a threshold stress below which the creep rate is negligible. This threshold stress is attributed, at least in dispersion-strengthened alloys, to dislocation particle interactions...
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Published in: | Materials science & engineering. A, Structural materials : properties, microstructure and processing Vol. 527; no. 9; pp. 2390 - 2397 |
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Abstract | Creep behavior of metal matrix composites is similar to dispersion strengthen alloys and characterized by the presence of a threshold stress below which the creep rate is negligible. This threshold stress is attributed, at least in dispersion-strengthened alloys, to dislocation particle interactions in which the detachment of the dislocations from the particle is the rate-limiting step. Creep experiments were performed on an Al-5Y2O3-10SiC composite in the temperature range of 473 and 573K and the nature of the dislocation-particle interaction was determined by performing in situ straining experiments at elevated temperature in a transmission electron microscope. The threshold stress and the detachment stress are temperature dependent and the detachment stress is less than the threshold stress emphasizing the contribution of load transfer from the matrix to the reinforcement phase. |
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AbstractList | Creep behavior of metal matrix composites is similar to dispersion strengthen alloys and characterized by the presence of a threshold stress below which the creep rate is negligible. This threshold stress is attributed, at least in dispersion-strengthened alloys, to dislocation particle interactions in which the detachment of the dislocations from the particle is the rate-limiting step. Creep experiments were performed on an Al-5Y2O3-10SiC composite in the temperature range of 473 and 573K and the nature of the dislocation-particle interaction was determined by performing in situ straining experiments at elevated temperature in a transmission electron microscope. The threshold stress and the detachment stress are temperature dependent and the detachment stress is less than the threshold stress emphasizing the contribution of load transfer from the matrix to the reinforcement phase. Creep behaviour of metal matrix composites is similar to dispersion-strengthened alloys and characterised by the presence of a threshold stress below which the creep rate is negligible. This threshold stress is attributed, at least in dispersion-strengthened alloys, to dislocation particle interactions in which the detachment of the dislocations from the particle is the rate-limiting step. Creep experiments were performed on an Al-5Y2O3-10SiC composite in the temperature range 473-573 K and the nature of the dislocation-particle interaction was determined by performing in-situ straining experiments at elevated temperature using TEM. The threshold stress and the detachment stress were temperature dependent and the detachment stress was less than the threshold stress, emphasising the contribution of load transfer from the matrix to the reinforcement phase. |
Author | DESHMUKH, S. P MISHRA, R. S ROBERTSON, I. M |
Author_xml | – sequence: 1 givenname: S. P surname: DESHMUKH fullname: DESHMUKH, S. P organization: Department of Materials Science and Engineering, Missouri University of Science and Technology, Rolla, MO 65409, United States – sequence: 2 givenname: R. S surname: MISHRA fullname: MISHRA, R. S organization: Department of Materials Science and Engineering, Missouri University of Science and Technology, Rolla, MO 65409, United States – sequence: 3 givenname: I. M surname: ROBERTSON fullname: ROBERTSON, I. M organization: Department of Materials Science and Engineering, University of Illinois at Urbana, Champaign, IL 61801, United States |
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Keywords | Dislocation-particle interaction Creep Metal matrix composite Temperature effect Aluminium Creep rate Composite material Dispersion strengthened metal Dislocation Particle matrix interface Silicon carbide Transmission electron microscopy In situ TEM Yttrium oxide Threshold stress |
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Snippet | Creep behavior of metal matrix composites is similar to dispersion strengthen alloys and characterized by the presence of a threshold stress below which the... Creep behaviour of metal matrix composites is similar to dispersion-strengthened alloys and characterised by the presence of a threshold stress below which the... |
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SubjectTerms | Aluminum Applied sciences Creep Creep (materials) Creep rate Detachment Dislocations Dispersion hardening metals Exact sciences and technology Mechanical properties and methods of testing. Rheology. Fracture mechanics. Tribology Metal matrix composites Metals. Metallurgy Particulate composites Powder metallurgy. Composite materials Production techniques Stresses Threshold stress Transmission electron microscopy |
Title | Investigation of creep threshold stresses using in situ TEM straining experiment in an Al―5Y2O3―10SiC composite |
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