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Mean stress sensitivity and crack initiation mechanisms of spring steel for torsional and axial VHCF loading

机译:弹簧钢在扭转和轴向VHCF载荷下的平均应力敏感性和裂纹萌生机理

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摘要

The very high cycle fatigue (VHCF) properties of shot-peened VDSiCr spring steel have been investigated with the ultrasonic fatigue testing method. Fatigue behaviour under cyclic torsion and cyclic tension loading at load ratios between R= -1 and R= 0.5 is compared. For 90% of the VHCF failures under axial loading, fractured grain boundaries or inclusions in the interior of the material act as crack starters. In contrast, the initial crack is produced by cyclic shear in the interior or, less frequently, at the surface for more than 90% of the VHCF failures under torsional loading. The crack path deflects from mode Ⅱ/mode Ⅲ to mode 1 at the border of the initiating shear area. The change of crack path correlates to a stress intensity factor range for a crack loaded in shear mode of ΔK_(τ,ISA)= 5.6 ± 0.5 MPam~(1/2) for load ratio R = 0.1 and ΔK_(τ,ISA)=3.8 ±0.4 MPam~(1/2) for R= 0.35, respectively. Residual stresses due to shot-peening are stable during VHCF axial loading while they are reduced during VHCF torsional loading.
机译:用超声疲劳试验方法研究了喷丸VDSiCr弹簧钢的极高循环疲劳(VHCF)性能。比较了在R = -1和R = 0.5之间的载荷比下,循环扭转和循环拉伸载荷下的疲劳行为。对于轴向载荷下90%的VHCF失效,材料内部的裂纹晶界或夹杂物起裂纹的作用。相比之下,在裂纹载荷下,超过90%的VHCF破坏是由内部的周期性剪切或表面的周期性剪切产生的,这是最初的裂纹。裂纹路径在起始剪切区域的边界处从模式Ⅱ/模式Ⅲ偏转到模式1。对于剪切比为ΔK_(τ,ISA)= 5.6±0.5 MPam〜(1/2)且载荷比R = 0.1和ΔK_(τ,ISA)的裂纹,裂纹路径的变化与应力强度因子范围相关对于R = 0.35,分别为= 3.8±0.4MPam〜(1/2)。在VHCF轴向载荷期间,喷丸硬化引起的残余应力稳定,而在VHCF扭转载荷下,残余应力减小。

著录项

  • 来源
    《International Journal of Fatigue》 |2016年第2期|309-317|共9页
  • 作者单位

    Institute of Physics and Materials Science, BOKU, Peter-Jordan-Str. 82, A-1190 Vienna, Austria;

    Institute of Physics and Materials Science, BOKU, Peter-Jordan-Str. 82, A-1190 Vienna, Austria;

    Institute of Physics and Materials Science, BOKU, Peter-Jordan-Str. 82, A-1190 Vienna, Austria;

    Institute of Physics and Materials Science, BOKU, Peter-Jordan-Str. 82, A-1190 Vienna, Austria;

    Institute of Physics and Materials Science, BOKU, Peter-Jordan-Str. 82, A-1190 Vienna, Austria;

    Robert Bosch GmbH, Corporate Sector Research and Advance Engineering, Materials and Process Engineering Metals, P.O. 300240, 70442 Stuttgart, Germany;

    Robert Bosch GmbH, Corporate Sector Research and Advance Engineering, Materials and Process Engineering Metals, P.O. 300240, 70442 Stuttgart, Germany;

  • 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

    Cyclic torsion; Cyclic tension; Load ratio; VDSiCr spring steel; Very high cycle fatigue;

    机译:周期性扭转;循环张力;负载比;VDSiCr弹簧钢;极高的循环疲劳;

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