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Fatigue testing of thin CoNiCr wire up to 10~(10) cycles

机译:CoNiCr细线的疲劳测试长达10〜(10)个循环

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摘要

The CoNiCr alloy MP35N in the form of thin wires is commonly used as conductor in cardiac leads. The application requires high fatigue strength, in particular in the very high cycle fatigue (VHCF) regime. High frequency fatigue testing techniques are of great interest for material characterization and development since existing techniques require very long testing times. In this study, adapting the ultrasonic fatigue testing method to sub-millimeter wires has been accomplished for the first time. Fatigue tests of as-drawn low-Ti MP35N wire with 100 m diameter have been performed with a novel technique at 20 kHz cycling frequency at load ratio R = 0.3. Measured lifetimes show good agreement with conventional servo-hydraulic tension-tension fatigue data of the same material at 30 Hz. Ultrasonic tests were run up to 2×10~(10) cycles, and no fatigue limit was observed. Crack initiation occurs at Al_2O_3-inclusions at the surface, where the interfaces between particles and matrix fail. Sizes of the crack initiating inclusions, area_(inc)~(1/2), are between 1.9 m and 3.5 m Fatigue lifetimes can be approximated with a single S-N curve between 10~4 and 10~(10) cycles. No change of crack-initiation mode into the interior is observed when lifetimes extend into the VHCF regime. Inclusions can be considered as initial cracks, and a fracture mechanics concept is used to describe fatigue lifetimes. On average a stress intensity range as low as 1.0 Mpam~(1/2) can propagate the crack to fracture at lifetimes above 10~8 cycles.
机译:细导线形式的CoNiCr合金MP35N通常用作心脏导线中的导体。该应用需要很高的疲劳强度,特别是在非常高的循环疲劳(VHCF)状态下。高频疲劳测试技术对于材料表征和开发非常感兴趣,因为现有技术需要非常长的测试时间。在这项研究中,首次实现了将超声疲劳测试方法应用于亚毫米线材。已经采用一种新技术以20 kHz的循环频率在负载比R = 0.3的条件下对直径为100 m的拉伸后低钛MP35N焊丝进行了疲劳测试。测得的寿命与相同材料在30 Hz时的常规伺服液压张力-张力疲劳数据显示出良好的一致性。超声波测试运行至2×10〜(10)个循环,未观察到疲劳极限。裂纹萌生在表面的Al_2O_3-夹杂物处,颗粒与基体之间的界面失效。裂纹萌生夹杂物的面积arec_(inc)〜(1/2)在1.9 m至3.5 m之间。疲劳寿命可通过10〜4至10〜(10)个循环之间的一条S-N曲线来估算。当使用寿命延长到VHCF范围时,未观察到内部的裂纹萌生模式发生变化。夹杂物可以看作是初始裂纹,并且使用断裂力学概念来描述疲劳寿命。平均而言,低至1.0 Mpam〜(1/2)的应力强度范围可以在10〜8个循环以上的寿命内将裂纹扩展到断裂。

著录项

  • 来源
    《International Journal of Fatigue》 |2017年第5期|92-100|共9页
  • 作者单位

    Institute of Physics and Materials Science, University of Natural Resources and Life Sciences, Vienna, Austria;

    Medtronic plc, Core Technologies, Corporate Science and Technology, Minneapolis, USA;

    Institute of Physics and Materials Science, University of Natural Resources and Life Sciences, Vienna, Austria;

    Medtronic plc, Core Technologies, Corporate Science and Technology, Minneapolis, USA;

    Institute of Physics and Materials Science, University of Natural Resources and Life Sciences, Vienna, Austria;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Ultrasonic fatigue testing; Very high cycle fatigue; MP35N; As-drawn wire; Thin wire testing;

    机译:超声波疲劳测试;极高的循环疲劳;MP35N;拉丝;细线测试;

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