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High WS content was found to decrease the emissions of SO2 and HF below certain temperatures due to the formation of CaF2 and CaSO4 while the emissions of HCl were controlled by the firing temperature.
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The W content of the alloy was 23.2 at.%.
The corrosion resistance of the designed steels is improved with the increase of W content.
The H value increased with increasing W content up to 9.8 at.% and then decreased slightly with further increases in the W content up to 12.4 at.%.
The coefficient of friction and wear rate of sulfurized W-DLC coating were reduced with the increase of W content.
Films with higher W content (0.33< x ≤ 1) eventually crystallized in the WO3 triclinic structure.
The hardness increases with W content from ∼3 GPa up to ∼13 GPa.
Chinese low activation martensitic steel (CLAM) has been designed with decreased W content and increased Ta content to improve performance.
The microhardness of the alloyed layer increases with the total W content in the layer.
However the effect of the A2 antennas on W content is scattered depending on which antennas are powered.
W/Ni/Fe alloy coating with different tungsten (W) content were prepared on CuCrZr substrate by cold spray (CS) process.
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