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ZrN/W multilayered coatings with different nanoscale modulation periods have been synthesized at different deposition time using ion beam assisted deposition.
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My periods have stopped, too.
The films were made to have modulation periods ranging from 40 to 200 nm.
The multilayers were designed to have different modulation periods and characterized using X-ray diffraction analysis, transmission electron microscopy and energy dispersive X-ray spectrum.
In this study, nanolayered CrAlTiN (CrN/AlTiN) coatings with different modulation periods, along with multilayered CrAlTiN AlTiN coatings having different number of layers and different thickness of individual layers, were fabricated, characterized and evaluated.
The HR-TEM results showed that the nanocomposite nitride coatings have nano-scale multilayer structure with modulation periods ranged from 20 nm to 25 nm.
As compared with a monolithic AlN film, films of various modulation periods with the Al volume fraction of 0.5 were found to have lower hardness.
The results showed that the TiN/TaN coatings exhibited good modulation periods and a sharp interface between TiN and TaN layers and had cubic structure.
They have been deposited by reactive dc magnetron sputtering on high-speed steel substrates with modulation periods between 6.5 and 8 nm.
These structures have been deposited by dc magnetron sputtering on high-speed steel and stainless-steel substrates and designed with modulation periods of approximately 13 nm, up to a total thickness of 2.8 μm.
It is shown that multilayers with a modulation period smaller than 3.4 nm have clear benefit from the reduced intermixing obtained by utilizing a two-stage ion energy modulation for each individual layer.
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