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Fracture mechanics-based criteria for fatigue fracture of rolling bearings under the influence of defects

机译:基于裂缝力学的基于骨折骨折的抗滚动骨折的标准

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Fatigue tests were carried out on real bearings with various types of artificial defects on their outer-ring raceways. Finite element analysis (FEM) revealed that the stress intensity factor (SIF) ranges and stress ratios were complex and variable, depending on the gap fittings between the outer rings and housings, as well as on the sizes of the initial defects, both of which influenced the fatigue thresholds of the bearings. In order to establish a comprehensive evaluation of fatigue limits under several combinations of bearing geometries and defect sizes, fatigue crack-growth thresholds were also measured at different stress ratios by focusing on crack-closure behaviour. Based on all of the analytical and experimental results, fracture mechanics-based criteria were proposed for the assessment of fatigue fracture in rolling bearings.
机译:疲劳试验在实际轴承上进行,其外圈滚道上具有各种类型的人工缺陷。有限元分析(FEM)揭示了应力强度因子(SIF)范围和应力比是复杂的和可变的,这取决于外环和壳体之间的间隙配件,以及初始缺陷的尺寸影响了轴承的疲劳阈值。为了在轴承几何形状和缺陷尺寸的若干组合下建立疲劳限制的综合评估,通过专注于裂缝闭合行为,在不同的应力比下也测量疲劳裂纹生长阈值。基于所有分析和实验结果,提出了基于骨折力学的标准,用于评估滚动轴承疲劳骨折。

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