Stress Relaxation and Fatigue of Two Electromechanical Spring Materials Strengthened by Thermomechanical Processing

A. Fox
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引用次数: 10

Abstract

The reliable performance of electrical contacts often depends on the dimensional stability of the spring material used to operate these contacts. The fatigue and stressrelaxation behavior of two copper-base alloys, Copper Development Association Alloys 510 (5 percent tin phosphor bronze) and 725 (89%Cu-9%Ni-2%Sn), strengthened by thermomechanical processing has been investigated. Strengthening mechanisms resulting from a combination of cold work and low temperature heat treatment have been taken advantage cf to produce electromechanical spring materials which have good conductivity and corrosion resistance, have sufficient ductility forpunching and forming, are dimensionally stable for long periods of time and also adequately resist fatigue stressing. Test data are presented which show the materials processed in this manner to have significant advantages over currently available, commercial tempers in that they permit designs having higher working stresses and better material utilization, thus filling a need created by miniaturization.
热力强化两种机电弹簧材料的应力松弛与疲劳
电触点的可靠性能通常取决于用于操作这些触点的弹簧材料的尺寸稳定性。研究了两种铜基合金铜发育结合合金510(5%锡磷青铜)和725 (89%Cu-9%Ni-2%Sn)经热强化后的疲劳和应力松弛行为。利用冷加工和低温热处理相结合产生的强化机制来生产机电弹簧材料,这些材料具有良好的导电性和耐腐蚀性,具有足够的冲压和成形延展性,长时间尺寸稳定,并能充分抵抗疲劳应力。所提供的测试数据表明,与目前可用的商业回火相比,以这种方式加工的材料具有显著的优势,因为它们允许设计具有更高的工作应力和更好的材料利用率,从而满足小型化带来的需求。
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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