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The additive improves both the high temperature property in serve stage and workability during construction.
Currently, the studies regarding to modification to improve its high temperature property is not adequate.
However, it worsens the low temperature property, which should be paid more attentions in practice.
The effects of MTs on high temperature property, low temperature property and water stability property of asphalt mixtures were evaluated respectively through some indexes, such as dynamic stability, splitting strength at low temperature and freeze thaw splitting strength ratio.
MTs can improve the high temperature property and slightly decrease splitting strength at low temperature of asphalt mixtures.
Thus the bending beam rheometer (BBR) was adopted to investigate the low temperature property of FAM and HMA beams.
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Senkov, O. N., Scott, J. M., Senkova, S. V., Miracle, D. B. & Woodward, C. F. Microstructure and room temperature properties of a high-entropy TaNbHfZrTi alloy.
The theory has now reached a point where one can compute gaps for all observed fractions, finite temperature properties like polarization and relaxation rate.
Design approaches for further enhancement of ultrahigh temperature properties of oxide/non-oxide composites are discussed.
Elevated temperature properties and implications for codification of the alloys will be described.
However, few results were ever involved in their low temperature properties.
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