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首页> 外文期刊>Archives of Metallurgy and Materials >High Purity Tungsten Spherical Particle Preparation From WC-Co Spent Hard Scrap
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High Purity Tungsten Spherical Particle Preparation From WC-Co Spent Hard Scrap

机译:WC-Co废旧硬质废料制备高纯度钨球形颗粒

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摘要

Tungsten carbide-cobalt hard metal scrap was recycled to obtain high purity spherical tungsten powder by a combined hydrometallurgy and physical metallurgy pathway. Selective leaching of tungsten element from hard metal scrap occurs at solid / liquid interface and therefore enlargement of effective surface area is advantageous. Linear oxidation behavior of Tungsten carbide-cobalt and the oxidized scrap is friable to be pulverized by milling process. In this regard, isothermally oxidized Tungsten carbide-cobalt hard metal scrap was mechanically broken into particles and then tungsten trioxide particle was recovered by hydrometallurgical method. Recovered tungsten trioxide was reduced to tungsten particle in a hydrogen environment. After that, tungsten particle was melted and solidified to make a spherical one by RF (Ratio Frequency) thermal plasma process. Well spherical tungsten micro-particle was successfully obtained from spent scrap. In addition to the morphological change, thermal plasma process showed an advantage for the purification of feedstock particle.
机译:通过湿法冶金和物理冶金相结合的方式,回收碳化钨-钴硬质金属废料,以获得高纯度的球形钨粉。钨元素从硬质金属废料中选择性浸出发生在固/液界面,因此有效表面积的增加是有利的。碳化钨-钴和氧化废料的线性氧化行为易碎,可通过研磨工艺进行粉碎。在这方面,将等温氧化的碳化钨-钴硬质金属废料机械破碎成颗粒,然后通过湿法冶金法回收三氧化钨颗粒。在氢气环境下,回收的三氧化钨被还原成钨颗粒。之后,通过RF(Ratio Frequency)热等离子体处理使钨粒子熔融固化成球形。从废金属中成功地获得了球形的钨微粒。除形态变化外,热等离子体工艺还显示出纯化原料颗粒的优势。

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