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Study on Microstructure and Properties of Cu-9Ni-6Sn Alloy Applied for Electric Measurement

机译:电测量用Cu-9Ni-6Sn合金的组织与性能研究

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摘要

High strength elastic alloy has an important role in the manufacture of electrical equipment and machine building. Along with the development of information and telecommunications technology, the application of this alloy in electrical and electronic equipment is very increasingly. Even on boards or connectors of common electrical equipment such as computers, cell phones, these connectors are usually made of high strength elastic copper alloy. The design required features are small, precision built, with high mechanical strength and elasticity, heat resistance, abrasion and corrosion resistance in the operating environment to ensure its/the power and signal stability for a long time. The design trend is reduced in size but still assure the equipment quality is growing significantly and the corporation to manufacture equipment is researched thoroughly. Accordingly, this article presents the research results about the alloy copper with 9%Ni and 6%Sn which has the high elastic strength and elasticity properties of elastomers after heat treatment. The properties of the microstructure, hardness, conductivity, dry friction coefficient, the corrosion resistance of the alloy from which to determine the parameters for the materials selection procedure and the design of the manufacturing of magnetic contact of this alloy. The results of the study show that after heat treatment and deformation, the Cu-9Ni-6Sn has a strength of alloy up to 1200MPa, the elastic limit is 1100MPa and the conductivity is 8.4%IACS, respectively. The values ​​of this characteristic are consistent with the working conditions of the electrical contact. With the deformation process combined with the heat treatment process, the results of our research group created a single-phase homogeneous microstructure that is chemically stable with the spinodal decomposition in appropriate to the treatment of aging process. By modern methods, this paper demonstrates the durability of the alloy due to the spinodal decomposition during aging treatment at 350°C. This structure of spinodal decomposition is about 20-40nm in size, dispersed throughout the entire cross-section of the sample.
机译:高强度弹性合金在电气设备和机械制造中具有重要作用。随着信息和电信技术的发展,这种合金在电气和电子设备中的应用越来越多。即使在诸如计算机,手机之类的普通电气设备的板或连接器上,这些连接器通常也由高强度弹性铜合金制成。设计要求的特征是体积小,结构精巧,在工作环境中具有较高的机械强度和弹性,耐热性,耐磨性和耐腐蚀性,以确保长时间的电源/信号稳定性。设计趋势虽然减小了尺寸,但仍确保设备质量显着提高,并且对设备制造公司进行了深入研究。因此,本文介绍了具有9%Ni和6%Sn的合金铜的研究结果,该合金具有较高的弹性强度和热处理后弹性体的弹性。合金的微观结构,硬度,电导率,干摩擦系数,耐蚀性,可从中确定材料选择程序的参数以及该合金的磁触点制造设计。研究结果表明,经过热处理和变形后,Cu-9Ni-6Sn的合金强度高达1200MPa,弹性极限为1100MPa,电导率为8.4%IACS。该特性的值与电触点的工作条件一致。通过将变形过程与热处理过程相结合,我们的研究小组的结果创建了一个单相均质的微观结构,该结构在化学上稳定,且旋节线分解适合于时效处理。通过现代方法,本文证明了在350°C时效处理过程中由于旋节线分解而造成的合金耐久性。旋节线分解的这种结构的尺寸约为20-40nm,分散在整个样品的整个横截面上。

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