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INITIAL STUDY OF A NOVEL TUNGSTEN-35 AT MANGANESE ALLOY BY MECHANICAL ALLOYING TECHNIQUE

机译:机械合金化技术初步研究了锰合金%锰合金的研究

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The effect of sintering temperature on the microstructure of a new tungsten-35 at % manganese alloy was investigated as an initial stage for developing new alloys for kinetic energy projectiles. The crystallography of as-sintered materials was studied by X-ray diffraction. The microstructural constituents were examined using SEM/EDS. The diffraction patterns for as-sintered alloys display strong tungsten peaks, as well as peaks attributed to manganese oxide. Backscattered images obtained by SEM and the corresponding spot analyses obtained by EDS confirmed the presence of manganese in the tungsten-rich phase with a content of 3.4, 3.7, and 3.6 at% after sintering for 1 hour at 1225°C, 1275°C, and 1350°C respectively. However, the solubility of manganese decreased to about 2.6 at% at 1425°C, which is attributed to the increased vaporization and oxidation of manganese. The results obtained in the current study indicate a limited solubility of manganese in tungsten.
机译:研究了烧结温度对在%锰合金中新钨-35的微观结构的影响作为开发动能射弹的新合金的初始阶段。通过X射线衍射研究了烧结材料的晶体学。使用SEM / EDS检查微结构成分。用于烧结合金的衍射图案显示强钨峰,以及归因于氧化锰的峰。通过SEM获得的反向散射图像和EDS获得的相应点分析证实了富含氧化钨的相中锰的存在,其含量为3.4,3.7和3.6,在1225℃,1275℃下烧结1小时后,分别为1350°C。然而,在1425℃下,锰的溶解度降低至约2.6at%,这归因于锰的蒸发和氧化增加。本研究中获得的结果表明锰在钨中的溶解度有限。

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