铁-钛-碳(金刚石)成分的机械合金化

S. Kovaliova, T.Yu. Kiseleva, T. F. Grigoreva, V. Zhornik, E. Devyatkina, S. Vosmerikov
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引用次数: 0

摘要

利用 X 射线衍射分析、扫描电子显微镜和莫斯鲍尔光谱法研究了在 AGO-2 行星球磨机条件下形成的铁-钛(x=20-40 wt.%)、铁/钛-金刚石和铁-钛-碳粉末结构。研究表明,在 20 分钟的高能量机械作用下,熔点高且溶解度有限的金属会相互作用,形成纳米结构的铁合金和晶界相,类似于总含量为 22-24 % 的 Fe(Ti)、Ti(Fe) 和 FeTi 固溶体。在 Fe-20wt.%Ti 成分中,钛达到 X 射线无定形状态,当钛含量超过 20 wt.% 时,𝛼-钛结晶相保持在 5-10 wt.%。当铁/钛-金刚石混合物被机械活化时,就会形成具有金属基体结构的复合颗粒,其金刚石尺寸为 0.3-1.5 𝜇m。已证实钛能加速铁与金刚石和碳化钛的晶界和体积相互作用过程。在所研究的粉末成分中,形成了以铁和 TiC、Fe3C 化合物为基础的固溶体,其总含量为铁/40 重量%钛-金刚石的总含量高达 62%;铁/钛-碳化物的总含量高达 34%。在金刚石-铁混合物的类似条件下,固溶体的晶界相不超过 26%。X 射线衍射没有检测到石墨的形成。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mechanical alloying in compositions iron–titanium–carbon (diamond)
X-ray diffraction analysis, scanning electron microscopy and M¨ossbauer spectroscopy have been applied to the study of Fe-xTi (x=20–40 wt.%), Fe/xTi-diamond and Fe–Ti–C powders structure formation under the conditions of an AGO-2 planetary ball mill. It has been shown that metals with high melting points and limited solubility under high-energy mechanical action for 20 min interact to form an alloy of nanostructured iron and grain-boundary phases similar to solid solutions of Fe(Ti), Ti(Fe) and FeTi with a total content of 22–24 %. In the Fe-20wt.%Ti composition, titanium reaches an X-ray amorphous state, and when the titanium content is above 20 wt.% 𝛼-Ti crystalline phase remains in an amount of 5–10 wt.%. When the Fe/xTi-diamond mixture is mechanically activated, composite particles with a metal matrix structure with a diamond size of 0.3–1.5 𝜇m are formed. It has been established titanium accelerates the process of grain-boundary and volumetric interaction of iron with diamond and titanium carbide. In the powder compositions under study, a solid solution is formed based on iron and TiC, Fe3C compounds with their total content: Fe/40 wt.%Ti-diamond up to 62%; Fe/TiC up to 34%. Under similar conditions in a diamond-iron mixture, the grain-boundary phases of the solid solution do not exceed 26%. The formation of graphite has not detected by X-ray diffraction.
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