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首页> 外文期刊>International Journal of Refractory Metals & Hard Materials >Effects of fabrication method on initial powder characteristics and liquid phase sintering behaviour of tungsten
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Effects of fabrication method on initial powder characteristics and liquid phase sintering behaviour of tungsten

机译:制造方法对钨初始粉末特征及液相烧结行为的影响

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摘要

Direct electrochemical production of tungsten involves removal of oxygen in solid state from an important tungsten compound, calcium tungstate, in molten salts. A detailed experimental study was performed to characterize the liquid phase sintering behaviour of the tungsten powder (WE), which was produced by the direct electrochemical reduction technique. All of the tungsten heavy alloy (WHA) compositions covered in this study, contained four parts nickel, one part cobalt and over 90 wt% tungsten. The pellets were sintered at 1500 and 1550 degrees C under continuous flow of an equimolar hydrogen-argon gas mixture. A commercially available tungsten powder (W-C) was also used to prepare the same tungsten heavy alloy compositions as those prepared by the electrochemically produced tungsten powder to act as a control group. Scanning electron microscopy (SEM), X-ray diffraction (XRD), X-ray fluorescence (XRF) and hardness measurements were employed for characterization. The analyses provided that; the tungsten powder as obtained from the direct electrochemical reduction process contained some unreduced CaWO4 particles and they limited the grain growth and mass transport in the liquid phase. Although calculated relative densities were a bit lower than desired, the tungsten heavy alloys produced by the electrochemical reduction technique was promising for use when average grain size, dissolved tungsten contents and general/matrix hardness values are considered.
机译:直接电化学生产钨涉及从重要钨化合物,钨酸钙的固态中除去氧气的氧气。进行详细的实验研究以表征钨粉(We)的液相烧结行为,其通过直接电化学还原技术生产。本研究中涵盖的所有钨重合金(WHA)组合物,含有四个份镍,一部分钴和90%(重量)钨。在连续的等摩尔氢氩气体混合物的连续流动下,在1500和1550℃下烧结粒料。商业上可获得的钨粉(W-C)也用于制备相同的钨重合金组合物,因为通过电化学生产的钨粉制备的那些作为对照组。扫描电子显微镜(SEM),X射线衍射(XRD),X射线荧光(XRF)和硬度测量表征。分析提供了;从直接电化学还原过程中获得的钨粉末含有一些未更好的Cawo4颗粒,并且它们限制液相中的晶粒生长和质量输送。虽然计算的相对密度是低于所需的比特,但是通过电化学还原技术产生的钨重合金在平均晶粒尺寸,溶解钨含量和通用/基质硬度值时令人欣赏。

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