Influence of technological factors of melting on the structure and properties of modified heat‑resistant chrome bronzes

F. G. Lovshenko, I. A. Lozikov
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Abstract

The paper presents the results of a study of the influence of technological factors of open melting on the structure and properties of modified heat‑resistant chrome bronzes. The role of protective atmospheres and deoxidizers in the formation of the chemical composition of alloys is studied and their optimal combination is proposed, consisting in a combination of Cryolite and argon to protect the copper melt during alloying with its preliminary deoxidation with a modifier based on the composition “Cu – 10 % B”, developed and produced at a pilot production facility at the Belarusian‑Russian University. An idea of the kinetics of the dissolution process of a mechanically fused modifying ligature with a high content of an alloying component and its effect on the formation of the structure of cast materials is obtained. The optimal duration of the doping time and the base temperature, depending on the size of chromium inclusions and the state of the surface of its particles, are determined. The phase composition and physico‑mechanical properties of experimental bronzes have been studied.It has been established that the use of a mechanically fused modifying ligature with a high content of alloying component having chromium particles close to micro‑/nanodisperse size with a non‑oxidized surface and a highly effective deoxidizer modifier reduces the temperature and duration of melting, obtaining alloys with a microcrystalline type of structure (2–5 microns) and a complex of physico‑mechanical properties not inferior to, and in terms of heat resistance superior analogues, which is confirmed by the data of production tests at JSC “Belcard” (Grodno, RB) of contact spot welding electrodes made of experimental bronzes, which are 3.8 times more resistant than those used by the plant.
熔化技术因素对改性耐热铬青铜结构和性能的影响
本文介绍了开放式熔炼技术因素对改性耐热铬青铜结构和性能影响的研究结果。研究了保护气氛和脱氧剂在合金化学成分形成过程中的作用,并提出了它们的最佳组合,包括在合金化过程中使用冰晶石和氩气组合来保护铜熔体,并使用基于 "Cu - 10 % B "成分的改性剂进行初步脱氧,该改性剂是在白俄罗斯-俄罗斯大学的试验生产设备上开发和生产的。该研究对含有大量合金成分的机械熔融改性结扎的溶解过程动力学及其对铸件结构形成的影响进行了分析。根据铬夹杂物的大小及其颗粒表面状态,确定了掺杂时间的最佳持续时间和基础温度。对实验青铜的相组成和物理机械性能进行了研究。结果表明,使用机械熔融改性结扎,合金成分含量高,铬颗粒接近微/纳米分散尺寸,表面未氧化,同时使用高效脱氧剂改性剂,可降低熔化温度,缩短熔化时间、获得具有微晶型结构(2-5 微米)的合金,其物理机械性能不低于同类产品,在耐热性方面优于同类产品,"贝尔卡德 "股份公司(格罗德诺,罗得岛州)用实验青铜制造的接触式点焊电极的生产试验数据证实了这一点。8 倍。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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