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Influence of the radial spacing between cathodes on the surface composition of iron samples sintered by hollow cathode electric discharge

机译:阴极之间的径向间距对空心阴极放电烧结铁样品表面成分的影响

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摘要

The present work reports an investigation of the influence of the radial spacing between cathodes on the iron sintering process by hollow cathode electrical discharge, with surface enrichment of the alloying elements Cr and Ni. Pressed cylindrical samples of 9.5 mm diameter and density of 7.0 ± 0.1 g/cm³ were prepared by compaction of Ancorsteel 1000C iron powder. These samples, constituting the central cathode, were positioned concentrically in the interior of an external cathode machined from a tube of stainless steel AISI 310 (containing: 25% Cr, 16% Ni, 1.5% Mn, 1.5% Si, 0.03% C and the remainder Fe). Sintering was done at 1150 °C, for 120 min, utilizing radial spacings between the central and hollow cathodes of 3, 6 and 9 mm and a gas mixture of 80% Ar and 20% H2, with a flow rate of 5 cm³/s at a pressure of 3 Torr. The electric discharge was generated using a pulsed voltage power source, with a period of 200 mus. The radial spacing had only a slight influence on the quantity of atoms of alloying elements deposited and diffused on the surface of the sample. Analysis with a microprobe showed the presence of chrome (up to 4.0%) and nickel (up to 3.0%, in at. %) at the surface of the samples. This surface enrichment can be attributed to the mechanism of sputtering of the metallic atoms present in the external cathode, with the deposition of these elements on the sample surface and consequent diffusion within the sample.
机译:本工作报告了对阴极之间的径向间距对空心阴极放电对铁烧结过程的影响的研究,同时合金元素Cr和Ni的表面富集。通过压制Ancorsteel 1000C铁粉制备直径为9.5 mm且密度为7.0±0.1 g /cm³的压制圆柱形样品。这些构成中心阴极的样品同心放置在由AISI 310不锈钢管制成的外部阴极内部(包含:25%Cr,16%Ni,1.5%Mn,1.5%Si,0.03%C和其余的铁)。烧结在1150°C下进行120分钟,利用中心,空心阴极之间的径向间距分别为3、6和9 mm,以及80%Ar和20%H2的气体混合物,流速为5cm³/ s在3托的压力下。使用周期为200 mus的脉冲电压电源产生放电。径向间距对在样品表面上沉积和扩散的合金元素的原子数量仅产生很小的影响。用微探针分析显示样品表面存在铬(最高4.0%)和镍(最高3.0%,以原子%计)。这种表面富集可以归因于外部阴极中存在的金属原子的溅射机理,这些元素在样品表面上的沉积以及随之而来的在样品中的扩散。

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