边界条件对循环弯曲裂纹扩展机制的影响

G. Pucillo, L. Esposito, D. Leonetti
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引用次数: 2

摘要

最近列车速度和频率的增加决定了传递给上层建筑的荷载的增加。因此,铁路部件可能会遇到在设计阶段没有考虑到的服务负载。此外,机械系统部件之间的磨损和间隙变化可能会改变装配的内部边界条件。根据损伤容限理论,假设在构件的疲劳临界位置存在初始裂纹,分析该构件的裂纹扩展寿命需要精确的应力强度因子(SIF)评估。本文研究了具有半轴a和半轴c的半椭圆表面裂纹的边界条件对裂纹扩展寿命的影响。分析了两种情况:-肩部不受外力;-肩部与相邻的通用体接触。首先,利用虚拟裂纹闭合技术计算了单应力场的分布,考虑或不考虑肩部与相邻构件相互作用产生的接触力所引起的非线性效应。在上述两种情况下,相继采用了双参数扩展规律来预测循环弯曲荷载作用下的裂纹形状和裂纹深度的演变。为此,在计算中考虑了圆角根部应力集中系数和裂纹前缘初始长径比的不同值。发现纵横比演变成一个唯一的渐近线,考虑或不考虑在肩部接触引入的非线性,这个值取决于缺口的严重性。在肩部有和没有单边约束的情况下得到的无因次SIFs之比βcs / βfs与相对裂纹深度和裂纹形状无关。此外,缺口严重程度对无量纲SIF的影响似乎仅在自由表面附近的裂纹前缘部分是明显的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Boundary Conditions Effects on the Crack Growth Mechanism Under Cycling Bending
The recent increase of train speed and frequency determines a rise of the loads transmitted to the superstructure. Therefore, railway components might experience service loads that have not considered at the design stage. Moreover, wear and backlash modification between components of a mechanical system might be able to modify the internal boundary conditions of the assembly. According to damage tolerance philosophy, an initial flaw is assumed to exist in the fatigue critical location of a structural component, and the analysis of the crack propagation life for such component needs accurate Stress Intensity Factor (SIF) evaluations. In this study, the effects of the boundary conditions on the crack propagation life have been evaluated for a semi-elliptical surface crack having semi-axes a and c and growing from the root of a shoulder fillet notch in a round bar loaded in bending. Two cases have been analyzed: - the shoulder is free from external forces; - the shoulder is in contact with an adjacent generic body. At first, the SIF distribution has been calculated with the Virtual Crack Closure Technique, considering or not the nonlinear effect induced by the contact forces arising from the interaction between the shoulder and the neighboring component. Successively, in both the above cases a two-parameters propagation law has been utilized to predict the evolution of both crack shape and crack depth when a cyclic bending load is applied to the rod. For this purpose, different values of the Stress Concentration Factor at the root of the fillet, and of the initial aspect ratio of the crack front, were considered in the calculations. It is found that the aspect ratio evolves to a unique asymptote, taking or not into account the non-linearity introduced by the contact at the shoulder, and this value depends on the notch severity. The ratio between the dimensionless SIFs obtained with and without the unilateral constraint at the shoulder, βcs / βfs, does not depend on the relative crack depth and crack shape. Also, the effect of the notch severity on the dimensionless SIF appears to be evident only for the portion of the crack front in the vicinity of the free surface.
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