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An Improved Projection Method for Determination of Fatigue Parameters of Metal Structures Based on Spherical Direction Cosine Group Construction

机译:一种改进的投影方法,用于基于球面方向余弦组构造测定金属结构疲劳参数的研究

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摘要

The key components of railway rolling stock are almost constantly in the multiaxial stress state in service. To evaluate the fatigue strength of the structure, stress parameters should be obtained beforehand. The traditional projection method assumes that the maximum principal stress is the maximum tensile stress, and then the projection process is performed without taking the tension/compression states of principal stresses into account. To address these inadequacies, a method for fatigue parameter determination was proposed based on principal stress projection toward a spherical direction cosine group. This method can determine the direction of maximum tensile stress and preserve the tension/compression attribute of stress during calculating the maximum stress and the minimum stress. Therefore, the physical meaning of present improved method is more apparent than the traditional projection method, and its algorithm is simple and effective. The fatigue strength assessments of a welded bogie frame were performed utilizing the traditional projection method and present method, respectively. Results obtained show that maximum stresses calculated by the improved method can be 19.4% higher than those obtained by the traditional one at some nodes, while the minimum stresses and the stress ratios derived by these two methods can even be of opposite sign. The present method, which takes the tension/compression properties of principal stresses into consideration, is more reasonable, as compared with the traditional projection method, and thus, its fatigue strength assessment results are more credible.
机译:铁路滚动股票的关键部件几乎在服务中的多轴应力状态下几乎不断。为了评估结构的疲劳强度,应事先获得应力参数。传统的投影方法假设最大主应力是最大拉应力,然后进行投影过程而不考虑主应力的张力/压缩状态。为了解决这些不足,基于朝向球形方向余弦组的主应力投影提出了一种疲劳参数测定方法。该方法可以确定最大拉应力的方向,并在计算最大应力和最小应力期间保持应力的张力/压缩属性。因此,现有改进方法的物理意义比传统的投影方法更加明显,其算法简单有效。利用传统的投影方法和本方法进行焊接转向架框架的疲劳强度评估。得到的结果表明,通过改进方法计算的最大应力可以比传统一个节点在传统1码上高的19.4%,而这两种方法的最小应力和应力比率甚至可以是相反的标志。与传统投影方法相比,考虑到主应力的张力/压缩性能,更合理的本方法更合理,因此其疲劳强度评估结果更可信。

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