铸造碳化钨的特性及其在气体压力下的低温等离子体中制备的特殊性

IF 1.2 4区 材料科学 Q4 MATERIALS SCIENCE, MULTIDISCIPLINARY Journal of Superhard Materials Pub Date : 2024-07-08 DOI:10.3103/S1063457624030080
A. M. Stepanchuk, I. V. Andreiev, S. Y. Teslia
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引用次数: 0

摘要

摘要 对于铸造碳化钨,研究了在工作室内不同压力(高达 9 兆帕)下使用消耗电极在电弧炉中进行制备的条件。研究表明,碳化钨在熔化过程中会分解,形成由 WC、W2C 相和游离碳组成的产物。研究结果表明,在较高气体压力下合成的碳化物的整体显微硬度、晶粒压碎强度、耐磨性和磨蚀性都有所提高。研究表明,可以通过改变碳化钨的熔化条件来控制产品的成分,从而控制其性能。根据难熔化合物在超熔温度下的行为,对所获得的结果给出了解释,并提出了在低温等离子体中熔化的碳化钨结构和特性的形成机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Properties of Cast Tungsten Carbide and Peculiarities of Its Preparation in a Low-Temperature Plasma under Gas Pressure

For cast tungsten carbide, the conditions of preparation in an arc furnace with a consumable electrode under different pressures (up to 9 MPa) in the working chamber have been studied. It has been shown that tungsten carbide decomposes under melting to form a product composed of WC and W2C phases and free carbon. The results of studying the integral microhardness, grain crush strength, wear resistance, and abrasivity, which grow for carbides synthesized at a higher gas pressure, are presented. It has been shown that the composition of the product and, therefore, its properties can be controlled by varying the tungsten carbide melting conditions. Based on the behavior of refractory compounds at supermelting temperatures, an explanation is given to the obtained results, and a mechanism is proposed for the formation of the structure and properties of tungsten monocarbide melted in a low-temperature plasma.

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来源期刊
Journal of Superhard Materials
Journal of Superhard Materials MATERIALS SCIENCE, MULTIDISCIPLINARY-
CiteScore
1.80
自引率
66.70%
发文量
26
审稿时长
2 months
期刊介绍: Journal of Superhard Materials presents up-to-date results of basic and applied research on production, properties, and applications of superhard materials and related tools. It publishes the results of fundamental research on physicochemical processes of forming and growth of single-crystal, polycrystalline, and dispersed materials, diamond and diamond-like films; developments of methods for spontaneous and controlled synthesis of superhard materials and methods for static, explosive and epitaxial synthesis. The focus of the journal is large single crystals of synthetic diamonds; elite grinding powders and micron powders of synthetic diamonds and cubic boron nitride; polycrystalline and composite superhard materials based on diamond and cubic boron nitride; diamond and carbide tools for highly efficient metal-working, boring, stone-working, coal mining and geological exploration; articles of ceramic; polishing pastes for high-precision optics; precision lathes for diamond turning; technologies of precise machining of metals, glass, and ceramics. The journal covers all fundamental and technological aspects of synthesis, characterization, properties, devices and applications of these materials. The journal welcomes manuscripts from all countries in the English language.
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