首页> 外文期刊>Advanced Powder Technology: The internation Journal of the Society of Powder Technology, Japan >Effect of substitution of Si by Al on microstructure and synthesis behavior of Ti5Si3 based alloys fabricated by mechanically activated self-propagating high-temperature synthesis
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Effect of substitution of Si by Al on microstructure and synthesis behavior of Ti5Si3 based alloys fabricated by mechanically activated self-propagating high-temperature synthesis

机译:Al替代Si对机械活化自蔓延高温合成Ti5Si3基合金组织和合成行为的影响

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摘要

The effect of substitution of Si by Al and mechanical activation on microstructure, phase composition, ignition and combustion temperature of Ti5Si3 based alloys and composites that were prepared by mechanically activated self-propagating high-temperature synthesis (MASHS) method was investigated. For this purpose elemental powders of titanium, silicon and aluminum were mixed according to the 5Ti + 3(1 - X)Si + 3XA1 formula, where X= 0, 0.2, 0.4, 0.6. The samples were characterized by X-ray diffraction (XRD) analytical technique and scanning electron microscope (SEM) equipped with an energy-dispersive spectrum (EDS) analyzer. The results have shown that formation of Ti5Si3 during milling stage is postponed by adding Al into the system. Presence of Al in the Ti-Si system have a significant effect on the phase composition of the final products. Substitutional solid solution of Ti5(Si, Al)3 and Ti5Si3-Ti3Al composite are formed by increasing Al amount in the system. Furthermore combustion temperature and crystallites size of Ti5Si3 is reduced with addition of Al into the Ti-Si system. Moreover, solubility of Al in Ti5Si3 is increased with enhancing the X up to 0.4, after that, the solubility of Al in Ti5Si3 is ceased, due to achieving the solubility limit of Al in the Ti5Si3. The average crystallites size of Ti5Si3 are decreased with increasing milling time prior to the reaction.
机译:研究了通过机械活化的自蔓延高温合成(MASHS)方法制备的Ti5Si3基合金和复合材料,通过Al替代Si和机械活化对Si,Ti5Si3基合金和复合材料的组织,相组成,着火和燃烧温度的影响。为此,根据5Ti + 3(1- X)Si + 3XA1公式混合钛,硅和铝的元素粉末,其中X = 0、0.2、0.4、0.6。通过X射线衍射(XRD)分析技术和配有能量色散光谱(EDS)分析仪的扫描电子显微镜(SEM)对样品进行表征。结果表明,通过向系统中添加Al可以延缓研磨阶段Ti5Si3的形成。 Ti-Si系统中Al的存在对最终产品的相组成有重大影响。 Ti5(Si,Al)3和Ti5Si3-Ti3Al复合材料的替代固溶体通过增加体系中的Al量形成。此外,通过将Al添加到Ti-Si系统中,可降低Ti5Si3的燃烧温度和晶粒尺寸。此外,随着X提高至0.4,Al在Ti5Si3中的溶解度增加,此后,由于达到了Al在Ti5Si3中的溶解度极限,Al在Ti5Si3中的溶解度停止了。反应前随着研磨时间的增加,Ti5Si3的平均晶粒尺寸减小。

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