Fatigue Fracture of a Music-Wire Spring Caused by Poor Electroplating Practice

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Abstract

A cadmium-plated music-wire return spring that operated in a pneumatic cylinder designed for infinite life at a maximum stress level of 620 MPa failed after 240,000 cycles. An extremely hard and small kernel, which looked like a weld deposit, was observed at the center of the fractured surface. The kernel was assumed to have resulted from extreme localized overheating. These springs were reported to have been barrel electroplated after fabrication. The intermittent contact with the dangler (suspended cathode contact) as the barrel rotated allowed high local currents when the last contact was broken was revealed to have resulted in an arc that caused local melting of the metal being plated. The molten metal was interpreted to have been quenched instantly by the plating solution and by the mass of the cold metal of the spring. The hard spot caused by arcing during plating was concluded to be the reason of the fatigue failure. Rack plating or barrels with fixed button contacts at many points instead of dangler-type contacts were recommended to avoid hard spots.
电镀工艺不良引起的乐丝弹簧疲劳断裂
在设计为无限寿命的最大应力水平为620兆帕的气缸中运行的镀镉音乐丝复位弹簧在24万次循环后失效。在断裂面中心观察到一个极硬的小核,看起来像焊缝沉积。内核被认为是由极端的局部过热造成的。据报道,这些弹簧在制造后已被桶状电镀。当筒体旋转时,与悬钩子(悬浮阴极接触)的间歇性接触允许高局部电流,当最后一次接触被打破时,显示出导致电弧导致被镀金属的局部熔化。熔化的金属被解释为被镀液和弹簧的冷金属的质量立即淬火。结果表明,电镀过程中电弧产生的硬斑是导致疲劳失效的原因。为了避免出现硬点,建议采用机架电镀或在许多点上安装固定按钮触点的桶,而不是采用悬挂式触点。
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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