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Predicting high temperature mechanical properties of CrN and CrAlN coatings from in-situ synchrotron radiation X-ray diffraction

机译:通过原位同步辐射X射线衍射预测CrN和CrAlN涂层的高温机械性能

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摘要

This contribution investigates the phase composition of CrN and CrAlN coatings by in-situ high temperature synchrotron radiation (SR-XRD), with the coatings deposited on steel substrate by closed field unbalance magnetron sputtering. Rietveld refinement on the SR-XRD spectra indicated CrN as the major phase, over the temperature range of 25 °C – 700 °C, for both coatings. At the high temperature of 700 °C, a Cr2N phase was observed in the CrN coating while the CrAlN coating also had a Cr phase. Williamson–Hall plots, from the refined data, afforded estimating variations of the strain and crystallite size of the major phase, up to 700 °C. The crystallite size (10 nm) for the CrAlN coating, at 25 °C, agrees very well with previous GI-XRD and TEM results obtained at room temperature Li et al. (2012).
机译:该贡献通过原位高温同步加速器辐射(SR-XRD)研究了CrN和CrAlN涂层的相组成,该涂层通过封闭场不平衡磁控溅射沉积在钢基材上。 SR-XRD光谱的Rietveld精炼结果表明,两种涂层在25°C – 700°C的温度范围内,CrN是主要相。在700°C的高温下,在CrN涂层中观察到Cr2N相,而CrAlN涂层也具有Cr相。威廉姆森-霍尔(Williamson-Hall)图通过精炼数据得出了高达700°C时主相的应变和微晶尺寸的变化。 CrAlN涂层在25°C时的微晶尺寸(10 nm)与先前在室温下获得的GI-XRD和TEM结果非常吻合。 (2012)。

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