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Simultaneous IR and time-resolved X-ray diffraction measurements for studying self-sustained reactions

机译:同时进行IR和时间分辨X射线衍射测量以研究自持反应

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摘要

Self-propagating high-temperature synthesis provides an attractive practical method for producing advanced materials such as ceramics, composites and intermetallics. This kind of reaction has been investigated in situ using time-resolved X-ray diffraction, with an X-ray synchrotron beam (D43 beamline, LURE, Orsay) coupled to simultaneous IR thermography to study structural transformations and thermal evolution. With short acquisition times (30 ms per pattern) it has been possible to observe several steps before obtaining compounds. Two different compound formations have been described: (i) the different steps of reaction, aluminium melting, subsequent temperature increase and fast reaction between Al and Ni at such temperatures that only Ni and AlNi are solid and all other compositions are liquid and well identified; (ii) the formation of FeA1. Here, a portion of the iron seems to transform into its allotropic phase and this transition stabilizes the reaction temperature at similar to 1173 K. In addition, the aluminium melting during the reaction explains why the nanostructure induced by the mechanical activation is maintained in the end product. [References: 24]
机译:自蔓延高温合成提供了一种有吸引力的实用方法,可用于生产高级材料,例如陶瓷,复合材料和金属间化合物。已经使用时间分辨的X射线衍射原位研究了这种反应,并使用X射线同步加速器光束(D43光束线,LURE,Orsay)与同步IR热成像相结合,以研究结构转变和热演化。以较短的采集时间(每个模式30毫秒),可以在获得化合物之前观察几个步骤。已经描述了两种不同的化合物形成:(i)不同的反应步骤,铝的熔化,随后的温度升高以及Al和Ni之间的快速反应,在这样的温度下,只有Ni和AlNi为固体,而所有其他成分为液体并被很好地识别; (ii)FeA1的形成。在这里,一部分铁似乎转变为同素异形相,这种转变将反应温度稳定在大约1173K。此外,反应过程中的铝熔化解释了为什么最终保留了机械活化诱导的纳米结构产品。 [参考:24]

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