基于废青铜BrO5C25在煤油中电分散所得电荷的减摩合金的组成、结构和性能

E. Ageev, A. Pereverzev, V. Yemelyanov, V. V. Serebrovsky
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摘要

目的。以含碳介质照明煤油中获得的BrO5C25青铜的电蚀电荷为基础,研究了抗磨合金的组成、结构和性能。BrO5S25合金废料的分散是在电分散导电材料的装置上进行的。将BrO5C25合金废料作为金属废料加以利用。照明用煤油作为工作液。由于暴露于电极和废物之间的短期放电,它们随着细颗粒的形成而被破坏。为了获得压实的材料,使用了赫尔佐格TP 20手动台式压力机。利用现代设备和物理材料科学的辅助方法,对烧结产物的组成、结构和性能进行了研究。表面形貌分析表明,合金组织晶粒细,相分布均匀,气孔数量少。元素组成分析发现,新合金表面含有碳,其余元素Sn、Cu和Pb分布相对均匀。分析表明,合金中存在Cu、CuSn、SnO、CuO、PbO、Pb等相。合金中没有形成碳化物的元素。通过实验确定了BrO5C25青铜电蚀分散电荷的组成、结构和性能对合金毛坯的摩擦学性能有影响。特别是,在作为固体润滑剂的煤油中获得的电侵蚀电荷在合金中存在游离碳,导致摩擦系数降低。结果表明,用电蚀电荷制备的合金比用工业电荷制备的合金具有更高的显微硬度值。合金显微硬度的显著增加可以解释为在分散过程中工作流体中金属蒸气淬火时形成的高硬度颗粒的存在。电蚀材料中存在的小组分有助于增加压缩密度和减少工件的孔隙率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Composition, Structure and Properties of Antifriction Alloys Based on the Charge Obtained by Electrodispersion of Bronze Waste BrO5C25 in Kerosene
Purpose. Study of the composition, structure and properties of antifriction alloys based on the electroerosion charge of bronze BrO5C25 obtained in a carbon–containing medium lighting kerosene.Methods. Dispersion of the waste of the BrO5S25 alloy was carried out at an installation for electrodispersing electrically conductive materials. The waste of the BrO5C25 alloy was used as metal waste. Lighting kerosene was used as the working fluid.As a result of exposure to short-term electrical discharges between the electrodes and the waste, their destruction occurred with the formation of fine particles. To obtain compacted materials, a Herzog TP 20 manual table press was used. Modern equipment and complementary methods of physical materials science were used to study the composition, structure and properties of the sintered products obtained.Results. Surface analysis showed that the alloys have a fine-grained structure, uniform phase distribution and a small number of pores. The analysis of the elemental composition found that carbon is contained on the surface of the new alloys, and all other elements Sn, Cu and Pb are distributed relatively evenly. The analysis of the studied alloys showed the presence of phases in them: Cu, CuSn, SnO, CuO, PbO, Pb. There are no carbide-forming elements in the alloy. It has been experimentally established that the composition, structure and properties of the charge dispersed by electroerosion of bronze BrO5C25 affect the tribological properties of the alloy blanks. In particular, the presence of free carbon in the alloy from the electroerosion charge obtained in kerosene, which acts as a solid lubricant, leads to a decrease in the coefficient of friction.Conclusion. It is shown that alloys obtained from an electroerosive charge have higher microhardness values in comparison with an alloy obtained from an industrially used charge. A significant increase in the microhardness of alloys is explained by the presence of highly hard particles formed during the quenching of metal vapors in the working fluid during dispersion. The presence of small fractions in electroerosive materials contributes to an increase in the density of compressions and a decrease in the porosity of workpieces.
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