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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Effect of the impact energy on the chemical homogeneity of a (Ti,Ta,Nb)(C,N) solid solution obtained via a mechanically induced self-sustaining reaction
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Effect of the impact energy on the chemical homogeneity of a (Ti,Ta,Nb)(C,N) solid solution obtained via a mechanically induced self-sustaining reaction

机译:冲击能量对通过机械诱导的自我维持反应获得的(Ti,Ta,Nb)(C,N)固溶体的化学均匀性的影响

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摘要

A titanium-tantalum-niobium carbonitride solid solution, (Ti,Ta,Nb)(C,N), was synthesised in a planetary mill via a mechanochemical process that involves a mechanically induced self-sustaining reaction (MSR) from stoichiometric Ti/Ta/Nb/C mixtures that are milled under a nitrogen atmosphere. The influence of the spinning rate of the planetary mill, which determines the impact energy of the milling process, on the ignition time (t(ig)) of the MSR process as well as the chemical homogeneity of the final product was analysed. The results indicated that the dependence of tig on the spinning rate followed a potential function with a potential factor of 4.85, implying a remarkable reduction in the milling time required to induce the self-sustaining reaction at increasing spinning rates (i.e., from 4200 min at 200 rpm to 15 min at 800 rpm). However, the chemical and structural characterisation of the obtained products at ignition without any extra milling treatment indicated that a single solid solution phase was only obtained at the lowest spinning rates (i.e., less than 300 rpm). At increasing rates, the relative amount of the intended solid solution phase continuously decreased, and new undesirable secondary phases were formed. Despite the long milling times required for the milling experiments that were performed at the slowest spinning rates, iron contamination from the milling media was negligible due to the low intensity milling regime. (C) 2017 Elsevier B.V. All rights reserved.
机译:通过机械化学方法在行星磨机中合成钛 - 钽 - 铌碳氮化物固溶体,(Ti,Ta,Nb)(C,N),其涉及来自化学计量Ti / Ta的机械诱导的自我维持反应(MSR) / Nb / c在氮气氛下研磨的混合物。分析了行星磨机的纺纱速率的影响,该轧机确定研磨过程的冲击能量,对MSR过程的点火时间(T(Ig))以及最终产物的化学均匀性进行分析。结果表明,TIG对纺纱速率的依赖性随着潜在的函数,其潜在因子为4.85,暗示在增加纺丝率时诱导自我维持反应所需的铣削时间(即,从4200分钟为4.000分钟所需的铣削时间而显着降低800 rpm的200 rpm至15分钟)。然而,在没有任何额外研磨处理的点火中的所得产物的化学和结构表征表明,仅在最低纺丝率(即小于300rpm)的最低纺丝率(即,小于300rpm)中获得单个固溶溶液相。在增加速率下,预期固溶体相的相对量连续降低,形成了新的不希望的二次相。尽管以最慢的纺丝率进行的铣削实验所需的长铣削时间,但由于强度铣削制度低,铣削介质的铁污染可忽略不计。 (c)2017年Elsevier B.V.保留所有权利。

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