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Shear-type Fatigue Crack Growth in SAE52100 Steel

机译:SAE52100钢的剪切型疲劳裂纹扩展

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Shear-type fatigue crack behavior in a bearing steel, SAE52100, was investigated in a biaxial fatigue testing machine using cylindrical specimens. Either of the following two types of artificial defect with the total length of 400 ~ 440 μm and the depth of 200 ~ 300 μm was introduced into the specimen surfaces: (a) a semi-elliptical pre-crack emanating from 2 adjacent holes by a tension-compression loading, (b) 3 adjacent holes oriented in the axial direction which had slits made by the focused ion beam technique at the both ends. Fully reversed torsion with a shear stress amplitude at specimen surface, τ_a= ~ 600 MPa, was applied to the specimens under the static axial compressive stress σ_m = -1000~-1200 MPa. In case of the defect (a), a shear-type crack propagated from the pre-crack in direction perpendicular to the specimen axis. At the specimen surface, the shear-type crack periodically branched from the crack tip and propagated 5~10 μm in Mode I directions. The shear-type crack growth was decelerated with an increase in the crack length and finally stopped at N ≌ 7.5×10~6 cycles and 2a ≌ 600 μm. On the other hand, in case of the defect (b), the shear-type crack propagated in axial direction, and the crack growth was accelerated with an increase in the crack length. In addition, the threshold stress in case without the compressive stress on crack-face was determined by a τ_a-decreasing test. The results revealed that the shear-type crack growth was strongly influenced by the crack-face friction and the existence of the Mode I blanched cracks.
机译:在使用圆柱形试样的双轴疲劳试验机中研究了SAE52100轴承钢中的剪切型疲劳裂纹行为。将以下两种类型的人工缺陷中的任一种(总长度为400〜440μm,深度为200〜300μm)引入到试样表面:(a)半椭圆形的预裂纹从两个相邻的孔通过裂纹产生拉伸压缩载荷,(b)在轴向上相邻的3个孔,在两端具有通过聚焦离子束技术制作的狭缝。在静态轴向压缩应力σ_m= -1000〜-1200 MPa的条件下,对试样施加全扭转扭转,试样表面的剪应力振幅为τ_a=〜600 MPa。在存在缺陷(a)的情况下,剪切型裂纹从预裂纹沿垂直于试样轴线的方向扩展。在试件表面,剪切型裂纹周期性地从裂纹尖端分支,并在模式I方向上传播5〜10μm。剪切型裂纹的扩展随着裂纹长度的增加而减慢,并最终在N≌7.5×10〜6个循环和2a≌600μm处停止。另一方面,在缺陷(b)的情况下,剪切型裂纹沿轴向扩展,并且随着裂纹长度的增加而加速了裂纹的扩展。另外,通过τ_a减小试验确定在裂纹面上没有压缩应力的情况下的阈值应力。结果表明,剪切型裂纹的扩展受裂纹面摩擦和I型变白裂纹的存在的强烈影响。

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