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Fluidization and coating of very dense powders by fluidized bed chemical vapour depositionud

机译:通过流化床化学气相沉积法对非常致密的粉末进行流化和涂覆 ud

摘要

The hydrodynamic behaviour of a very dense tungsten powder, 75 µm in median diameter and 19,300 kg/m3 in grain density, has been studied in a fluidized bed at room temperature using nitrogen and argon as carrier gas. Even if fluidization was achieved, the small bed expansion indicated that it was imperfect. Then, the fluidization was studied at 400 °C in order to investigate the feasibility of coating this powder by Fluidized Bed Chemical Vapour Deposition (FBCVD). In particular, the influence of the H0/D ratio (initial fixed bed height to reactor diameter) on the bed thermal behaviour was analysed. It appeared that at least 1.5 kg of powder (corresponding to a H0/D ratio of 1.8) was necessary to obtain an isothermal bed at 400°C. Finally, first results about alumina coatings on the tungsten powder by FBCVD from aluminium acetylacetonate are detailed. They show that for the quite low temperatures tested, the coatings are uniform on all bed particles and are formed of amorphous carbon containing alumina. This study demonstrates the efficiency to combine fluidization (instead of spouted bed) and CVD to coat such very dense powders.
机译:在室温下,使用氮气和氩气作为载气,研究了一种非常致密的钨粉的流体力学行为,该钨粉的中值直径为75 µm,颗粒密度为19,300 kg / m3。即使实现了流化,床的小膨胀也表明它是不完善的。然后,在400°C下研究了流态化,以研究通过流化床化学气相沉积(FBCVD)涂覆该粉末的可行性。特别地,分析了H0 / D比(初始固定床高度对反应器直径)对床热行为的影响。似乎至少需要1.5千克粉末(相当于H0 / D比为1.8)才能在400°C下获得等温床。最后,详细介绍了用乙酰丙酮铝通过FBCVD在钨粉上进行氧化铝涂层的初步结果。他们表明,在测试的相当低的温度下,涂层在所有床颗粒上都是均匀的,并且由无定形的含碳氧化铝形成。这项研究证明了结合流化(而不是喷射床)和CVD来涂覆这种非常致密的粉末的效率。

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