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Synthesis of nanocomposites and amorphous alloys by mechanical alloying

机译:机械合金化合成纳米复合材料和非晶态合金

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Mechanical alloying (MA) is a powder metallurgy processing technique that involves repeated cold welding, fracturing, and rewelding of powder particles in a high-energy ball mill. Due to the specific advantages offered by this technique, MA was used to synthesize a variety of advanced materials. This article presents two specific examples of synthesis of nanocomposites containing a high volume fraction of the reinforcement phase in Al and TiAl matrices. It was possible to uniformly disperse 50 vol% of nanometric (50 nm) Al _2O_3 in Al and achieve high strength and modulus of elasticity. Similarly, it was possible to disperse 60 vol% of Ti 5Si3 phase in the γ-TiAl intermetallic. Fully consolidated material showed superplastic behavior at 950°C and a strain rate of 4 × 10~(-5) s~(-1). Amorphous phases were produced by MA of blended elemental powder mixtures in several Fe-based compositions. From the systematic investigations carried out, it was possible to deduce the criteria for glass formation and understand the interesting phenomenon of mechanical crystallization. By conducting some controlled experiments, it was also possible to explain the mechanism of amorphization in these mechanically alloyed powder blends. Other examples of synthesis of advanced materials, e.g., photovoltaic materials and energetic materials, have also been briefly referred to. This article concludes with an indication of the topics that need special attention for further exploitation of these materials.
机译:机械合金化(MA)是一种粉末冶金加工技术,涉及在高能球磨机中对粉末颗粒进行反复的冷焊,破碎和再焊接。由于该技术提供的特殊优势,MA被用于合成多种先进材料。本文提供了两个特定的合成例,这些合成例是在Al和TiAl矩阵中包含高体积分数的增强相的纳米复合材料。可以将50 vol%的纳米(50 nm)Al _2O_3均匀分散在Al中,并获得高强度和弹性模量。类似地,可以将60vol%的Ti 5Si3相分散在γ-TiAl金属间化合物中。完全固结的材料在950°C时表现出超塑性行为,应变率为4×10〜(-5)s〜(-1)。非晶态相是通过MA将几种元素基铁的混合粉末混合物制成的。通过进行系统的研究,可以推断出玻璃形成的标准并了解机械结晶的有趣现象。通过进行一些受控实验,也有可能解释这些机械合金化粉末混合物中非晶化的机理。还简要地提及了合成高级材料例如光伏材料和高能材料的其他例子。本文最后指出了需要进一步注意这些材料的主题。

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