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首页> 外文期刊>Nanotechnologies in Russia >Mechanochemical Synthesis and Compaction of Nanocomposites Based on Ni3Al Intermetallic Compound Containing Carbon and Carbide-Forming Elements
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Mechanochemical Synthesis and Compaction of Nanocomposites Based on Ni3Al Intermetallic Compound Containing Carbon and Carbide-Forming Elements

机译:基于含碳和碳化物形成元素的Ni3Al金属间化合物的纳米复合物的机械化学合成和压实

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摘要

Ni(Al, C) mixed (substitutional and interstitial) solid solutions have been synthesized by mechanical alloying; the atomic ratio of Ni and Al was constant at 3: 1, but the concentration of carbon was varied. A carbide-forming element CE (Ti, Nb, or Hf) was added to the formed solid solutions with nanocrystalline substructures; the size D of coherent scattering regions was 4–6 nm. These mixtures Ni(Al, C) + CE were subjected to mechanical activation (short-term milling) and subsequent hot isostatic pressing. According to X-ray phase analysis, compacted samples exhibited three phases: Ni_3AlC_x antiperovskit, Ni(Al) solid solution with D = 50–100 nm and corresponding metal monocarbides (TiC, NbC, or HfC; D ≈ 7 nm) located at boundaries. These results were confirmed by scanning electron and optical microscopy. Thus, we obtained the analog of the conventional high-temperature γ/γ' alloys hardened by grain-boundary nanoscale carbides, which prevent recrystallization.
机译:通过机械合金化合成了Ni(Al,C)混合(取代和填隙)固溶体。 Ni和Al的原子比恒定在3∶1,但是碳的浓度变化。将碳化物形成元素CE(Ti,Nb或Hf)添加到形成的具有纳米晶体亚结构的固溶体中。相干散射区的大小D为4–6 nm。对这些混合物Ni(Al,C)+ CE进行机械活化(短期研磨),然后进行热等静压。根据X射线相分析,压实样品表现出三个相:Ni_3AlC_x抗钙钛矿,D = 50–100 nm的Ni(Al)固溶体和位于边界处的相应金属单碳化物(TiC,NbC或HfC; D≈7 nm) 。这些结果通过扫描电子和光学显微镜证实。因此,我们获得了由晶界纳米级碳化物硬化而防止再结晶的常规高温γ/γ'合金的类似物。

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