Microstructure refinement and its effect on specific strength and bio-corrosion resistance in ultralight Mg-4Li-1Ca (LC41) alloy by hot rolling
DSpace at IIT Bombay
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Title |
Microstructure refinement and its effect on specific strength and bio-corrosion resistance in ultralight Mg-4Li-1Ca (LC41) alloy by hot rolling
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Creator |
NENE, SS
KASHYAP, BP PRABHU, N ESTRIN, Y AL-SAMMAN, T |
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Subject |
Magnesium-lithium alloys
Deformation twins Specific strength Bio-corrosion resistance Simulated body fluid SIMULATED BODY-FLUID MAGNESIUM-LITHIUM ALLOYS MG-CA ALLOYS MECHANICAL-PROPERTIES AZ31 ALLOY DEFORMATION |
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Description |
Mg-4Li-1Ca (LC41) alloy was hot rolled at 300 degrees C, which resulted in refinement of the grain size from 100 mu m to 5 mu m by recrystallization in the presence of fine uniformly dispersed eutectic (alpha-Mg + Mg2Ca). Evidence of profuse deformation twinning in the microstructure suggested twinning to be the important mode of deformation in the present material. Room temperature tensile tests of the alloy at a strain rate of 10(-4) s(-1) exhibited substantially high specific strength of 142 kN m/kg owing to its low density and combined effect of grain boundary strengthening and dispersion strengthening in the presence of Mg2Ca phase. LC41 alloy also showed an increase in the overall bio-corrosion resistance (R-p = 0.266 k Omega cm(2)) in simulated body fluid (SBF) as a result of a change in the corrosion mechanism from localized to uniform corrosion. The reported combination of excellent properties is a clear indication that the new ternary alloy LC41 has a significant potential for use in lightweight structural and biomedical applications. (C) 2014 Elsevier B.V. All rights reserved.
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Publisher |
ELSEVIER SCIENCE SA
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Date |
2014-12-28T17:07:03Z
2014-12-28T17:07:03Z 2014 |
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Type |
Article
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Identifier |
JOURNAL OF ALLOYS AND COMPOUNDS, 615501-506
0925-8388 1873-4669 http://dx.doi.org/10.1016/j.jallcom.2014.06.151 http://dspace.library.iitb.ac.in/jspui/handle/100/16961 |
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Language |
English
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