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首页> 外文期刊>International Journal of Fatigue >Fatigue crack initiation and growth at holes in a high strength bainitic roller bearing steel when loaded with non-proportional shear and compressive cycles
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Fatigue crack initiation and growth at holes in a high strength bainitic roller bearing steel when loaded with non-proportional shear and compressive cycles

机译:承受非比例剪切和压缩循环的高强度贝氏体滚子轴承钢中孔的疲劳裂纹萌生和扩展

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摘要

Fatigue initiation from an artificial defect was investigated for a bainitic high strength roller bearing steel. Thin walled pipe specimens with small holes were subjected to multi-axial and non-proportional load cycles. The experimental fatigue crack positions around the hole were predicted with the Findley critical plane criterion. The criterion also ranked the severeness of three load sequences with respect to fatigue risk. Crack growth simulations and crack life measurements with strain gauges confirmed the ranking between the load sequences. Three uni-axial fatigue series with stress gradients were used to determine surface endurance data for the Findley criterion.
机译:研究了贝氏体高强度滚动轴承钢从人为缺陷引起的疲劳。带有小孔的薄壁管样品经受了多轴和非比例载荷循环。用Findley临界平面准则预测孔周围的实验疲劳裂纹位置。该标准还针对疲劳风险对三个载荷序列的严重性进行了排序。裂纹增长模拟和使用应变仪的裂纹寿命测量结果确认了载荷序列之间的排名。使用三个具有应力梯度的单轴疲劳序列来确定Findley准则的表面耐久性数据。

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