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Preparation of nitrides dispersed Al-Ti alloy by reactive ball milling in N-2 gas

机译:N-2气体中反应球磨制备氮化物弥散的Al-Ti合金

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The nitride dispersed Al-Ti alloys have been prepared by reactive ball milling (RBM) of elemental powders of Al and Ti in nitrogen gas. XRD and TEM analyses showed that when Al-10, 20 wt. % Ti elemental powder mixtures were ball milled in nitrogen gas, no nitrides could be observed in Al-Ti alloy powders. In order to accelerate the formation of Ti nitrides, when only Ti powder was milled in nitrogen gas at the first stage and then a second stage milling was carried out with as-milled Ti powder and elemental Al powder in the two-step RBM, TiN readily formed and dispersed in the: Al matrix. The particle size and grain size were effectively reduced by the hard and brittle TiN and dissolved nitrogen atoms. High resolution TEM analysis showed that the TiN, having the grain size of 5 nm, existed between the Al matrix. The hardness of Al-Ti alloys milled in nitrogen gas was higher than that of Al-Ti alloys milled in Ar gas. It seems that the TiN is an effective dispersion strengthener in Al-Ti alloys. After annealing treatment at 500 degrees C, the hardness of Al-Ti alloys hardly decreased with annealing time and they exhibited a good thermal stability. (C) 1998 Elsevier Science S.A. All rights reserved. [References: 14]
机译:氮化物分散的Al-Ti合金是通过在氮气中对Al和Ti的元素粉末进行反应球磨(RBM)制备的。 XRD和TEM分析表明,当Al-10为20wt。将%Ti元素粉末混合物在氮气中球磨,在Al-Ti合金粉末中未观察到氮化物。为了促进Ti氮化物的形成,当在第一步中仅在氮气中研磨Ti粉,然后在两步RBM,TiN中对研磨后的Ti粉和元素Al粉进行第二阶段的研磨。容易形成并分散在:Al基体中。坚硬易碎的TiN和溶解的氮原子可有效降低粒径和晶粒尺寸。高分辨率TEM分析表明,在Al基体之间存在具有5nm的晶粒尺寸的TiN。在氮气中研磨的Al-Ti合金的硬度高于在氩气中研磨的Al-Ti合金的硬度。 TiN似乎是Al-Ti合金中有效的分散增强剂。在500℃下进行退火处理后,Al-Ti合金的硬度几乎不随退火时间而降低,并且表现出良好的热稳定性。 (C)1998 Elsevier Science S.A.保留所有权利。 [参考:14]

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