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Structural evolution of B2-NiAl synthesized by high-energy ball milling

机译:高能球磨合成B2-NiAl的结构演变

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Structural evolution during the synthesis of B2-NiAl intermetallic compound by mechanical alloying of equiatomic elemental mixtures was studied by Rietveld analysis, DSC and HTXRD. The lattice parameter, crystallite size, microstrain, amount of phase and ordering of the B2 phase were monitored as a function of milling time. Formation of the B2-NiAl phase shows a sigmoidal behavior, which suggests that Johnson-Mehl-Avrami nucleation and interface-controlled growth are the responsible mechanisms in the transformation. Almost complete transformation (~ 97 mol%) was obtained after 25 h of milling. A specific phase transformation sequence during milling was not absolutely determined, however, the sequence Ni + Al → NiAl_3 → Ni_2Al_3 → B2-NiAl was identified by HTXRD. This sequence was confirmed by DSC. The transformation temperature of the B2-NiAl phase and the presence of additional intermetallic compounds show a direct dependence on the Ni-Al layer spacing. Using a production-scale Simoloyer horizontal Attritor Mill, the presence of Ni_2Al_3 phase was observed prior to the full synthesis of B2-NiAl.
机译:通过Rietveld分析,DSC和HTXRD研究了通过等原子元素混合物的机械合金化合成B2-NiAl金属间化合物的结构演变。监测晶格参数,微晶尺寸,微应变,相的数量和B2相的有序性作为研磨时间的函数。 B2-NiAl相的形成显示出S型现象,这表明Johnson-Mehl-Avrami形核和界面控制的生长是该转变的主要机制。研磨25小时后,几乎完全转化(〜97 mol%)。铣削过程中的特定相变顺序没有绝对确定,但是,通过HTXRD可以识别顺序Ni + Al→NiAl_3→Ni_2Al_3→B2-NiAl。 DSC证实了该序列。 B2-NiAl相的转变温度和其他金属间化合物的存在直接依赖于Ni-Al层间距。使用生产规模的Simoloyer卧式粉碎机,在完全合成B2-NiAl之前观察到Ni_2Al_3相的存在。

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