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Investigations of the formation mechanism of nanostructured NbAl_3 via MASHS reaction

机译:MASHS反应形成NbAl_3纳米结构的机理研究

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The nanostructured NbAl_3 intermetallic compound was synthesized using the mechanically-activated self-propagating hightemperature synthesis (MASHS) technique. This process results from the combination of two steps: a short duration ball-milling of a pure elemental Nb+3Al powder mixture followed by a self-propagating high-temperature synthesis (SHS) reaction induced by the Nb+3Al reaction exothermicity. Synchrotron time-resolved XRD coupled with a 2D infrared camera were used to investigate the structural and thermal evolutions during the SHS reaction, and to study in situ the mechanism of NbAl_3 formation. The influence of the incoming heat flux and the mechanical activation effect on the phase transformation kinetics induced by the SHS process were studied. Owing to the temporal resolution of 100 and 200 ms between two consecutive diffraction patterns and IR images, respectively, it was shown that solid niobium reacts with liquid aluminium via a heterogeneous nucleation reaction, to form the NbAl_3 compound by successive combustion fronts.
机译:纳米结构的NbAl_3金属间化合物是使用机械活化的自蔓延高温合成(MASHS)技术合成的。该过程由两个步骤的组合产生:对纯元素Nb + 3Al粉末混合物进行短时球磨,然后由Nb + 3Al反应放热引起的自蔓延高温合成(SHS)反应。同步时间分辨XRD结合二维红外热像仪研究了SHS反应过程中的结构和热演化,并就位研究了NbAl_3的形成机理。研究了传入热通量和机械活化效应对SHS诱导的相变动力学的影响。由于两个连续的衍射图和IR图像之间的时间分辨率分别为100和200 ms,因此表明固态铌通过异质成核反应与液态铝反应,通过连续的燃烧前沿形成NbAl_3化合物。

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