Синтез порошка карбида гафния в атмосферной дуговой плазме

Ю.З. Васильева, Павел Вадимович Поваляев, А. П. Корчагина, С. А. Янковский, А.Я. Пак
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Abstract

The paper presents a method, implemented for the first time, for the thermal synthesis of hafnium carbide powder using a DC arc discharge initiated in the open-air atmosphere. Based on the results of the series of experiments, the dependences of the current strength of the power source and the time of thermal treatment on the phase composition of the resulting powder product were established. Required parameters have been determined to ensure the synthesis of a powder containing ~ 98 wt. % of the cubic phase of hafnium carbide: heat treatment of the initial mixture containing the stoichiometric ratio of hafnium to carbon for 60 s at a current of 220 A. The size, shape, and substructure of particles of the synthesized carbide are characterized. The differential thermal analysis carried out in an oxidizing medium showed that the obtained hafnium carbide powder is oxidized most intensively at a temperature of ~700°C.
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大气电弧等离子体碳化物粉末合成
本文首次提出了一种在露天环境下用直流电弧放电热合成碳化铪粉末的方法。根据一系列实验结果,建立了电源电流强度和热处理时间对粉末产品相组成的依赖关系。确定了合成含碳化铪立方相~ 98 wt. %的粉末所需的参数:在220 a的电流下,将含有铪与碳的化学计量比的初始混合物热处理60 s。对合成碳化物颗粒的大小、形状和亚结构进行了表征。在氧化介质中进行的差热分析表明,在~700℃的温度下,得到的碳化铪粉末氧化程度最高。
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