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Moreover, lateritic soils formed under semi-arid conditions have engineering properties higher than those formed under tropical and sub-tropical conditions.
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BMGs exhibit useful engineering properties of high mechanical strength and high corrosion resistance.
Moreover, the engineering properties, containing high temperature stability, low temperature cracking resistance and moisture susceptibility, were conducted.
The influence of supplementary cementitious materials (SCMs), namely silica fume, metakaolin, fly ash and ground granulated blast-furnace slag, on the engineering properties of high strength concrete (HSC) has been investigated in this study.
The optimum curing condition and MgO type, which gave the highest engineering properties and the highest resistivity to elevated temperature were AC and MgO1250.
Cobalt-rich soft-magnetic alloys were recently developed as amorphous materials with promising engineering properties, e.g. high mechanical strength, excellent magnetic properties and high corrosion resistance.
Sheets made of intermetallic γ-TiAl based alloys possess promising engineering properties for lightweight high-temperature applications.
This material possesses many excellent engineering properties, including a high compressive strength, light weight and low thermal conductivity.
The current study aims at distinguishing the advantages of using commercial sulfate agents consisting of sodium sulfate (Na2SO4) and gypsum (CaSO4.2H2O) to improve the setting time and the engineering properties of a high volume Class F fly ash (HVFA) paste at early ages.
However thorough dispersion of nanomaterials in the cementitious matrix is critical for effective use of their distinct geometric and engineering properties towards development of higher-performance cementitious nanocomposites.
The poor engineering properties of soils containing high amounts of clay minerals can be altered through chemical stabilization, resulting in a material suitable for geotechnical applications.
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