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Optimal notched specimen parameters for accurate fatigue critical distance determination

机译:最佳缺口试样参数,可准确确定疲劳临界距离

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摘要

The critical distance value should theoretically be determined from the plain specimen fatigue limit and the threshold stress intensity factor, though usually ordinary notch geometries are considered. In this paper, we proposed an optimized sharp notch with the aims of simple and reliable manufacture and, more importantly, a local strong stress gradient able to minimize the sensitivity on the deduced critical distance value. A numerical procedure is proposed to find the critical distance from the fatigue strength of the notched specimen, by implementing the line method with simple formulas based on dimensionless equations and specific coefficients derived from accurate FE analyses. A definition of the boundaries for a valid critical distance evaluation is also introduced and discussed. Finally, an application example is provided on a quenched and tempered steel also comparing the obtained critical distances with the threshold derived values.
机译:理论上,临界距离值应根据普通试样的疲劳极限和阈值应力强度因子确定,尽管通常会考虑普通的缺口几何形状。在本文中,我们提出了一种优化的尖锐缺口,其目的是简单可靠地制造,并且更重要的是,该局部强应力梯度能够最大程度地减小对推导出的临界距离值的敏感性。通过采用基于无量纲方程的简单公式和通过精确有限元分析得出的特定系数,通过简单的公式实施直线法,提出了一种数值方法来找到与缺口试样疲劳强度的临界距离。还介绍和讨论了有效临界距离评估的边界定义。最后,在淬火和回火钢上提供一个应用示例,还将获得的临界距离与阈值导出值进行比较。

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