Dash Apurv, Vaßen Robert, Guillon Olivier, Gonzalez-Julian Jesus
Forschungszentrum Jülich GmbH, Institute of Energy and Climate Research: Materials Synthesis and Processing (IEK-1), Jülich, Germany.
Nat Mater. 2019 May;18(5):465-470. doi: 10.1038/s41563-019-0328-1. Epub 2019 Apr 1.
To prevent spontaneous oxidation during the high-temperature synthesis of non-oxide ceramics, an inert atmosphere is conventionally required. This, however, results in high energy demand and high production costs. Here, we present a process for the synthesis and consolidation of oxidation-prone materials, the 'molten salt shielded synthesis/sintering' process (MS), which uses molten salts as a reaction medium and also to protect the ceramic powders from oxidation during high-temperature processing in air. Synthesis temperatures are also reduced, and the final product is a highly pure, fine and loose powder that does not require additional milling steps. MS has been used for the synthesis of different ternary transition metal compounds (MAX phases, such as TiSiC, TiAlN, MoAlB), binary carbides (TiC) and for the sintering of titanium. The availability of high-quality powders, combined with energy and cost savings, may remove one of the bottlenecks for the industrial application of these materials.
为防止在非氧化物陶瓷的高温合成过程中发生自发氧化,传统上需要惰性气氛。然而,这会导致高能源需求和高生产成本。在此,我们提出一种用于合成和固结易氧化材料的工艺,即“熔盐屏蔽合成/烧结”工艺(MS),该工艺使用熔盐作为反应介质,同时在空气中高温处理期间保护陶瓷粉末不被氧化。合成温度也会降低,最终产物是一种高纯、细且疏松的粉末,无需额外的研磨步骤。MS已用于合成不同的三元过渡金属化合物(MAX相,如TiSiC、TiAlN、MoAlB)、二元碳化物(TiC)以及用于钛的烧结。高质量粉末的可得性,再加上能源和成本的节省,可能会消除这些材料工业应用的一个瓶颈。