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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Self-propagating high-temperature synthesis mechanisms within the Ti-C-Ni system: A time resolved X-ray diffraction study
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Self-propagating high-temperature synthesis mechanisms within the Ti-C-Ni system: A time resolved X-ray diffraction study

机译:Ti-C-Ni体系中的自蔓延高温合成机理:时间分辨X射线衍射研究

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摘要

An experimental study on direct formation of TiC-Ni composite by self-propagating high-temperature synthesis (SHS) was conducted using a Ti-C-xNi systems (x = 5, 10, 15 wt.%). Composites of this kind are known to exhibit interesting structural and mechanical properties (high strength in shear and compression, high service temperature capabilities), thanks to the combination of metallic (ductility and toughness) and ceramic (high strength, modulus and hardness) properties. X-ray powder diffraction (XRPD) experiments performed on the combustion-synthesized products have shown that the main products were always TiC and Ni acting as a binding phase, but that the reaction might be incomplete in some cases, and the formation of a small amount of Ni-Ti compounds and metastable Ni3C was observed. To understand the chemical pathway, a time resolved X-ray diffraction experiment (TRXRD) using synchrotron radiation (ESRF ID-11, Materials Science Beamline) was performed to follow the reaction in situ on a time scale of -35 ms. This analysis showed that TiC was the first phase to form through solid-state diffusion of C into β-Ti, followed by Ti-Ni melt and finally the simultaneous appearance of metallic Ni and Ni3Ti, suggesting an eutectic reaction during the cooling stage. Using Rietveld refinement, some critical temperatures were estimated via thermal expansion/contraction of the lattice parameter of TiC during the combustion reaction.
机译:使用Ti-C-xNi系统(x = 5、10、15 wt。%)通过自蔓延高温合成(SHS)直接形成TiC-Ni复合材料的实验研究。由于金属(延展性和韧性)和陶瓷(高强度,模量和硬度)的组合,已知这种复合材料表现出令人感兴趣的结构和机械性能(高剪切和压缩强度,高使用温度性能)。对燃烧合成产物进行的X射线粉末衍射(XRPD)实验表明,主要产物始终为TiC和Ni作为结合相,但在某些情况下反应可能不完全,并形成小颗粒。观察到Ni-Ti化合物的量和亚稳态的Ni3C。为了理解化学途径,进行了使用同步加速器辐射(ESRF ID-11,材料科学束流线)的时间分辨X射线衍射实验(TRXRD),以在-35 ms的时间范围内原位追踪反应。该分析表明,TiC是通过C固态扩散到β-Ti中,然后是Ti-Ni熔体,最后同时出现金属Ni和Ni3Ti而形成的第一相,这表明在冷却阶段发生了共晶反应。使用Rietveld精炼,在燃烧反应过程中,通过TiC晶格参数的热膨胀/收缩来估算一些临界温度。

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