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Prediction of fatigue limit reliability of high strength steel with deep notch under mean stress σm = 0

机译:平均应力σ m = 0时具有深槽口的高强度钢疲劳极限可靠性的预测

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Because a fatigue limit of high strength steel with Vickers hardness H V > 400 is scattered, it is difficult to predict the fatigue limit for S-N curve experimentally. The authors have proposed a nondestructive method for predicting the fatigue limit reliability of plain specimen of the high strength steel by the stress-strength model which consists of “statistical characteristics of hardness of a matrix under a small indentation load” and “statistical characteristics of hardness required for non-propagations of fatigue cracks from microstructural defects in a material”. In this paper, a nondestructive method for predicting the fatigue limit reliability of notched specimen of the high strength steel with microstructural defects such as non-metallic inclusions and pits from characteristics of a stress field near a notch, statistical characteristics of Vickers hardness and defect size is proposed. Especially, the method is applied to a structure with a deep notch under a mean stress σ m = 0. Then, fatigue tests were carried out on the notched specimens of quenched-tempered 0.5% carbon steels with H V ≃ 600 changing a notch root radius under a constant notch depth, and the validity of the prediction method is examined by comparing predicted results to experimental ones.
机译:由于维氏硬度H V m = 0时具有深凹口的结构。然后,对含H的0.5%碳钢回火的凹口试样进行了疲劳测试。 V ≃600在恒定的切口深度下更改切口根半径,并通过将预测结果与实验结果进行比较来检验预测方法的有效性。

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