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Huang et al. [105] significantly improved the AD method using a bowl-like cathode to synthesize high oxidation resistant SWCNTs with lower level of defects (Fig. 2).
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This can be achieved by the application of high performance oxidation resistant coatings on the titanium alloys.
The development of robust high temperature oxidation resistant coatings for tungsten was evaluated for a Mo Si B coating system that was applied by a two step process.
A high performance oxidation resistant coating, based on the combination of surface modification techniques, electro-deposition and pack aluminizing, has been successfully developed to protect the titanium alloy, IMI 834 from oxidation and alpha case formation.
Several alternatives using high-temperature oxidation resistant coatings for outer-wall protection have been proposed worldwide but there is currently no solution for the inner-wall protection.
State of the art mechanical engineering is in need of high temperature and oxidation resistant materials.
In order to prevent this problem, the moulding tools must be coated with anti-sticking, high temperature and oxidation resistant coatings.
Technology development for these reactors include development of TRISO coated particle fuel, lead-bismuth eutectic and molten salt coolant technologies, BeO and graphite, oxidation resistant coatings, high creep strength alloys compatible to these coolants, high temperature instrumentation for these coolants, as well as high efficiency hydrogen production and electricity generation technologies.
Fe Cr Al alloys have been shown to be oxidation resistant at high temperatures.
The coatings obtained with the high-activity bed contained Al-rich phases of low symmetry, making for high brittleness and poor adhesion of the surface layers; those obtained with the low-activity bed, with NiAl as the outermost layer, are oxidation resistant at high temperatures and have a ductile structure with good adhesive properties.
Recent research efforts have established that Laves phase reinforced gamma titanium aluminides (i.e. γ+Laves) offer significant potential as oxidation resistant coating in high-temperature structural applications.
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