结构工程
威布尔分布
接头(建筑物)
疲劳极限
焊接
有限元法
概率逻辑
振动疲劳
残余应力
压力(语言学)
材料科学
非线性系统
应力集中
工程类
数学
复合材料
统计
物理
量子力学
哲学
语言学
摘要
Abstract The paper attempts to predict the probabilistic fatigue strength scatter bands of a welded bicycle frame joint. The experimental data of the base material and the weld material were approximated by a nonlinear probabilistic model of the Weibull distribution. The fatigue strength for the material at the fatigue crack location was estimated considering the mean stress, residual stress, fatigue notch factor, and hardness profile. The output finite element numerical data of the real welded joint were compared with a nonlocal multiaxial fatigue criterion. The implementation of the volumetric method takes into account the stress gradient effect in the three‐dimensional geometry of the weld toe. The comparative localization of the minimum stress and the real crack indicates the validity of the numerical model. The predicted fatigue strength determines the possible failure of a welded joint at 5·10 5 cycles.
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