首页> 外文期刊>Journal of Non-Crystalline Solids: A Journal Devoted to Oxide, Halide, Chalcogenide and Metallic Glasses, Amorphous Semiconductors, Non-Crystalline Films, Glass-Ceramics and Glassy Composites >Microstructural aspects and positron annihilation study on solid state synthesis of amorphous and nanocrystalline Al60-xTi40Six alloys prepared by mechanical alloying
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Microstructural aspects and positron annihilation study on solid state synthesis of amorphous and nanocrystalline Al60-xTi40Six alloys prepared by mechanical alloying

机译:机械合金化制备非晶态和纳米晶Al60-xTi40Six合金的固相合成的微观结构和正电子study灭研究

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摘要

Mechanical alloying of Al60-xTi40Six (x = 10,20,30) by high-energy ball milling yields a composite microstructure comprising varying proportions of amorphous and nanocrystalline phases. The microstructural evolution of these alloys at different stages of milling was monitored by X-ray diffraction, high-resolution transmission electron microscopy and energy dispersive X-ray spectroscopy. Furthermore, the role/influence of atomic defect and its density/distribution on partial solid state amorphization of the present alloys was investigated by positron annihilation spectroscopy. The results indicate that positron lifetime, contrary to the anticipated trend, initially decreases with the progress of partial amorphization, and subsequently shows a marginal increase with continued milling when strain induced nucleation of nanocrystalline aluminides occurs in the microstructure. We propose a possible mechanism responsible for reduction in the positron lifetime with the progress of partial amorphization from a nanocrystalline aggregate, and an increase in the lifetime when a reverse transformation (amorphous to nanocrystalline) takes place. (c) 2005 Elsevier B.V. All rights reserved.
机译:通过高能球磨对Al60-xTi40Six(x = 10,20,30)进行机械合金化,可得到包含不同比例的非晶相和纳米晶相的复合组织。通过X射线衍射,高分辨率透射电子显微镜和能量色散X射线光谱法监测了这些合金在铣削不同阶段的组织演变。此外,通过正电子an没光谱研究了原子缺陷及其密度/分布对本合金部分固态非晶化的作用/影响。结果表明,与预期趋势相反,正电子的寿命最初随着部分非晶化的进行而减少,随后在微观结构中发生应变诱导的纳米晶铝化物成核时,随着继续研磨而显示出边际增加。我们提出了一种可能的机制,该机制负责随着纳米晶聚集体的部分非晶化的进行而减少正电子的寿命,并在发生反向转变(非晶态至纳米晶)时增加寿命。 (c)2005 Elsevier B.V.保留所有权利。

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