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Reason for the transition of fatigue crack initiation site from surface to subsurface inclusions in high-strength steels

机译:高强度钢中疲劳裂纹萌生部位从表面夹杂物转变为表面夹杂物的原因

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The fatigue crack initiation in high-strength steels at surface inclusions is linked to high stress amplitudes. Low stress amplitudes are associated with a crack initiation at subsurface inclusions. The aim of the paper is to gain insight regarding the factors that lead to the transition of the crack initiation site from the surface to the interior. On the basis of fatigue tests and fracture mechanics evaluation, it was determined that the transition of the crack initiation site is effected by a constant threshold value for crack initiation at the surface and different crack propagation rates at the surface as opposed to the interior. It is shown that with lower stress amplitudes no critical inclusions with stress intensity factors above this threshold value are positioned at the specimen's surface. Therefore, the cumulative number of inclusions on the surface is calculated based on the cumulative number of inclusions in a metallographic section.
机译:高强度钢在表面夹杂物处的疲劳裂纹萌生与高应力振幅有关。低应力幅度与地下包裹体的裂纹萌生有关。本文的目的是获得有关导致裂纹萌生部位从表面过渡到内部的因素的见解。根据疲劳试验和断裂力学评估,确定裂纹起始部位的转变受表面裂纹起始的恒定阈值和与内部相对的表面裂纹扩展速率不同的影响。结果表明,在较低的应力振幅下,应力强度因子高于此阈值的临界夹杂物不会位于试样表面。因此,基于金相截面中的夹杂物的累积数来计算表面上的夹杂物的累积数。

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