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Synthesis and Characterization of Nanocrystalline Ni_3Al Intermetallic via Mechanical Alloying and Reaction Synthesis

机译:通过机械合金化和反应合成的纳米晶Ni_3Al金属间质的合成与表征

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Stoichiometric nanocrystalline Ni_3Al was prepared by mechanical alloying of elemental Ni and Al powders under argon gas atmosphere for different time (4-48h). The nanostructured Ni_3Al powders were consolidated into bulk compacts and sintered in a small DTA furnace under flowing Argon to observe the exothermic reaction between the Stoichiometric Ni and Al. The estimated crystallite size showed that the mechanically alloyed Ni_3Al grain size decrease from 127 nm to 9.36nm with increasing mechanical alloying time from 4h to 48h. Agglomerations of the powder particles prevalently occurred as observed from the SEM micrographs. Saturation magnetization, M_s value of the mechanically alloyed powders decreases as milling time increases due to smaller amount of elemental nickel responding to the applied fields. Following reaction synthesis of the compacted powders, thermal profile analysis revealed the presence of exothermic peaks in the DTA curves at about 400°C. Relative densities of the sintered compact were measured and found to be from 77-88% with the exception for the 48h mechanically alloyed sintered compact from milling balls contaminations. XRD results of the sintered compacts mechanically alloyed for 18h and above revealed the formation of pure nanocrystalline Ni_3Al. Crystallites size estimations showed the occurrence of grain growth during sintering.
机译:通过在氩气气氛下的元素Ni和Al粉末在氩气气氛下进行不同时间(4-48h)来制备化学计量纳米晶Ni_3Al。将纳米结构的Ni_3AL粉末固结成块状块,并在流动的氩气下烧结在流动的氩气以观察到化学计量Ni和Al之间的放热反应。估计的微晶尺寸表明,机械合金的Ni_3Al晶粒尺寸从127nm至9.36nm降低,随着4小时至48h的增加。从SEM显微照片观察到的粉末颗粒的附聚物普遍存在。饱和磁化强度,机械合金粉末的M_S值随着铣削时间增加而降低,由于较少量的元素镍响应于所施加的田地。在反应合成压实粉末之后,热曲线分析显示在约400℃下的DTA曲线中存在放热峰的存在。测量烧结结构的相对密度,发现48h机械合金化烧结紧凑型的77-88%,从研磨球污染的情况下。机械合金化的烧结块的XRD结果为18小时,揭示了纯纳米晶体Ni_3Al的形成。微晶尺寸估计显示烧结过程中籽粒生长的发生。

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