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首页> 外文期刊>Powder Metallurgy and Metal Ceramics >HARD ALLOY WC-24 percent Ni OBTAINED IN THE SOLID PHASE FROM ULTRAFINE WC, NiO, AND C POWDERS.I. DENSITY AND STRUCTURE OF SPECIMENS
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HARD ALLOY WC-24 percent Ni OBTAINED IN THE SOLID PHASE FROM ULTRAFINE WC, NiO, AND C POWDERS.I. DENSITY AND STRUCTURE OF SPECIMENS

机译:从超细WC,NiO和C粉末中在固相中获得的硬质合金WC-24%Ni.I.标本的密度和结构

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We have studied the density and structure of specimens of the alloy WC - 24 mass percent Ni, obtained by combining into one step the processes of synthesis of the metallic phase and compaction of the ultrafine mixture of WC - Ni powders by high-energy pressing and sintering. We have established that reduction of nickel monoxide by carbon occurs at temperatures of 650-750 deg C and does not affect the shrinkage process which in the case of sintering begins only at a temperature of 1050 deg C. High-energy pressing of briquettes sintered at the indicated temperature reduces their porosity from 30-25 deg down to 8-4 deg. Specimens of porosity <1 percent can be obtained by pressing at 1150 deg C or 1050 deg C in the case of triple pressing. Raising the temperature-at which the briquettes are heated is accompanied by enlargement of the pores together with a decrease in the total porosity, but at temperatures of 1300 deg C (sintering) and 1250 deg C (pressing), the pore dimensions are sharply reduced. The high density of the specimens pressed at low temperature does not provide low electrical resistance, which suggests the presence of weakly connected boundaries. When the specimens are sintered and pressed in the solid phase, we observe the growth of tungsten carbide particles. It is most rapid at 1150-1250 deg C, while at 1050 deg C the particle growth process slows down. Reduction of the metal oxide when the powders are heated promotes formation of structure in the higher temperature range.
机译:我们已经研究了WC-24质量%Ni合金的试样的密度和结构,该试样是通过将金属相的合成过程和通过高能压制和压实WC-Ni粉末的超细混合物的压实过程合并为一个步骤而获得的烧结。我们已经确定,在650-750摄氏度的温度下,碳会还原一氧化镍,并且不会影响仅在1050摄氏度的温度下开始烧结的收缩过程。所示温度将其孔隙率从30-25度降低到8-4度。在三重压制的情况下,可通过在1150℃或1050℃压制获得小于1%的孔隙率样品。加热煤球的温度升高时,孔隙增大,总孔隙率降低,但在1300摄氏度(烧结)和1250摄氏度(加压)的温度下,孔隙尺寸急剧减小。在低温下压制的样品的高密度不能提供低电阻,这表明存在弱连接的边界。当样品在固相中烧结并压制时,我们观察到碳化钨颗粒的生长。在1150-1250℃时最快,而在1050℃时,颗粒生长过程变慢。加热粉末时金属氧化物的还原促进在较高温度范围内结构的形成。

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