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The addition of RA improves the high temperature performance of petroleum bitumen binders and mixtures.
The addition of graphene sheets (i.e., only 1 wt%) significantly improves the high rate capability for charging and discharging operation.
The increase in the Zn content from x = 1 to 1.5 improves the high temperature phase stability at 600 °C and 700 °C for 100 h, and chemical stability against a Gd0.2Ce0.8O1.9 (GDC) electrolyte.
The result of decreased penetration, increased softening point, elastic recovery, viscosity and complex modulus indicates that WTR/APAO compound modification improves the high temperature performance and rutting resistance of asphalt binders.
The presence of double bonds improves the high temperature properties and thermal stability, especially the thermo-oxidative one, lowers the melting and crystallization temperature and increases the glass transition temperature.
Bringing the nanoparticles at an interface of two materials as it is the typical configuration in solar cells, further improves the high angle scattering of metallic nanoparticles.
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It is found that APAO improves the high-temperature performance and reduced the temperature susceptibility of the modified asphalt binder.
The second most important cobalt outlet is in the making of high-temperature alloys, in which it improves the high-temperature strength and corrosion resistance of alloys based on more common metals, especially nickel and chromium.
The results indicated that addition of CNTs up to 5 wt.% effectively improves the high-temperature compressive strength of CNT/MCMB composite.
The presence of LaNi phase also improves the high-rate dischargeability, facilitating the bulk diffusion of protons through synergetic effects with the main Laves phase.
The mechanism of Nb that improves the high-temperature oxidation resistance of Ti-Al-xNb coatings includes preventing the internal diffusion of oxygen, inhibiting the formation of TiO2, promoting the formation of Al2O3 and increasing the adhesion of the oxide scales.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com