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Both composites could be separated after the reaction and reused for at least three cycles without loss of activity.
Both composites could be sintered to full density at 1500°C for 2 h due to the presence of a liquid phase.
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It is found that the Ni Nb Zr system is a readily glass-forming system, and both fully amorphous alloys and amorphous crystalline composites could be synthesized.
Thus, the properties of PCL PG composites could be tailored by controlling the phosphate glass blend composition.
If the energy density of composites could be boosted close to that of existing lithium-ion batteries, then it would take only the roof, the bonnet and the boot lid to power an electric vehicle for 130km, he says.
FAC bearing composites could be seen the most dense among all the composites.
LiFePO4/C composites could be obtained from all synthesis processes.
These composites could be used in packaging where good barrier and thermal properties are required [16].
The mentioned composites could be also a viable alternative to glass and aluminum in aeronautics.
The dispersion and intercalation of the composites could be observed in the SEM micrographs.
Rather than building the shell from aluminium, for example, Stone argues tougher and lighter carbon composites could be used instead.
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