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

机译:平均应力σ_m= 0时具有深槽口的高强度钢的疲劳极限可靠性预测

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摘要

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, thenigue tests were carried out on the notched speci-mens 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:由于分散了维氏硬度H_V> 400的高强度钢的疲劳极限,因此难以通过实验预测S-N曲线的疲劳极限。作者提出了一种通过应力强度模型预测高强度钢平面试样疲劳极限可靠性的非破坏性方法,该模型包括“小压痕载荷下基体硬度的统计特征”和“硬度的统计特征”。非传播由于材料的微观结构缺陷而产生的疲劳裂纹所必需的”。本文采用一种非破坏性方法,根据缺口附近的应力场特征,维氏硬度和缺陷尺寸的统计特征,预测具有非金属夹杂物和凹痕等微结构缺陷的高强度钢缺口试样的疲劳极限可靠性。被提议。特别是,该方法适用于在平均应力σ_m= 0时具有深凹口的结构。然后,对淬火的0.5%碳钢的凹口试样进行了冲蚀试验,H_V≈600改变了凹口根在恒定的切口深度下测量半径,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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