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The effect of Cu-macroalloying on beta-NiAl intermetallic compound obtained by mechanical alloying

机译:铜微合金化对机械合金化制得的β-NiAl金属间化合物的影响

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The synthesis and bending strength of nanocrystalline beta-phase NiAl intermetallic compound macroalloyed with copper are discussed in this paper. Nanocrystalline NiCuAl powders were prepared by mechanical alloying of elemental Ni, Al and Cu powders under argon atmosphere. The alloyed nanocrystalline powders were consolidated by double action pressing at a pressure of 1.20 GPa and sintered at 1000 deg C during 20 min to 80 percent dense compacts. X-ray diffraction patterns show that 40 mm was enough to transform Ni, Cu and Al elemental powders into NiAl intermetallic compound. The crystallite size measurements revealed that the grain size of the NiCuAl phase decreased from 8.5 to 5.4 nm with increasing mechanical alloying time from 40 to 240 min. Bending strength shows an increment as the copper content is raised up to 7.5 at. percent. After this point bending strength values decrease. The modulus of elasticity shows the same behavior as the bending strength.
机译:讨论了铜合金纳米晶β相NiAl金属间化合物的合成及抗弯强度。纳米晶NiCuAl粉末是通过在氩气氛下将元素Ni,Al和Cu粉末机械合金化而制备的。合金化的纳米晶体粉末通过在1.20 GPa的压力下进行双作用压制而固结,并在20分钟内于1000摄氏度下烧结成80%的致密压块。 X射线衍射图表明40 mm足以将Ni,Cu和Al元素粉末转变为NiAl金属间化合物。晶粒尺寸测量表明,随着机械合金化时间从40分钟增加到240分钟,NiCuAl相的晶粒尺寸从8.5纳米减小到5.4纳米。当铜含量提高到7.5 at时,弯曲强度显示出增加。百分。在此之后,弯曲强度值降低。弹性模量表现出与弯曲强度相同的行为。

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