强磁场发生器用Cu-Ag合金机电性能研究

A. Kawecki, E. Sieja-Smaga, K. Korzeń, Magdalena Majchrowska, P. Noga
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引用次数: 0

摘要

产生强磁场脉冲的电磁铁绕组的各个部分、线路和结构可能是亚共晶Cu-Ag合金的一个应用。由于此类操作的独特性质(由洛伦兹力引起的高频和振幅的强烈振动以及由Jule热引起的显著和快速加热的可能性),这些类型的应用需要高电气性能和机械性能(拉伸强度,屈服强度,冲击强度)以及高热,疲劳和抗流变性。铜和银在固态中的溶解度有限,因此可以通过热处理有效地改变合金的微观结构,并通过冷塑性加工进一步塑造其高机械和电气性能。本文介绍了用连铸法制备银含量在3 ~ 7之间的Cu-Ag合金,并对铸件的理化、力学和电学性能进行了研究。讨论了塑性变形量及其对拉丝过程和线材力学性能的影响。定义了电阻的温度系数,以确定温度对电阻变化的动态影响。在铸态下进行显微组织分析。初步研究表明,制备的铸态Cu-Ag合金具有良好的力学性能和电学性能。下一阶段的研究包括选择有利的热处理参数,以提供最佳的合金微观结构,以及确定变形系数,从而进一步提高机械和电气性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Research on Mechanical and Electrical Properties of Cu-Ag Alloys Designed for the Construction of High Magnetic Field Generators
The individual sections, wiring and construction of electromagnet windings responsible for strong magnetic field impulses may be one application for hypoeutectic Cu-Ag alloys. High electrical properties and mechanical properties (tensile strength, yield strength, impact strength) as well as high heat, fatigue and rheological resistance are required for these kinds of applications due to the unique nature of such operations (strong vibrations of high frequency and amplitude resulting from Lorenz forces and the possibility of significant and rapid heating from Jule’s heat). The limited solubility of copper and silver in the solid state enables the effective modification of the alloys’ microstructure through heat treatment and further shaping of their high mechanical and electrical properties via cold plastic working. The article presents the manufacturing of Cu-Ag alloys with the weight percent of Ag between 3 and 7 using the continuous casting process along with research on the physicochemical, mechanical and electrical properties of the obtained casts. The research on the amount of plastic deformation and its influence on the wire drawing process and the mechanical and electrical properties of the wires is also discussed. The temperature coefficients of resistance were defined in order to determine the temperature influence on the electrical resistance changes dynamics. The microstructural analysis was carried out in the as-cast state. The preliminary research conducted indicates that the obtained Cu-Ag alloys in the as-cast state exhibit a set of high mechanical and electrical properties. The prospective next stage of research includes the selection of favourable heat treatment parameters which would provide optimally modified microstructure of the alloys, as well as determining the deformation coefficients allowing for further increases in the mechanical and electrical properties.
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