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A study on the fatigue life prediction of the various gas-welded joints using a probabilistic statistics technique

机译:基于概率统计技术的各种气焊接头疲劳寿命预测研究

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摘要

Gas welding is a very important and useful technology in the fabrication of railroad cars and commercial vehicle structures. However, since the fatigue strength of gas-welded joints is considerably lower than that of the base of material due to stress concentration at the weld, the fatigue strength assessment of gas-welded joints is very important for the reliability and durability of railroad cars and establishment of criteria for long-life fatigue design. In this study, after evaluating the fatigue strength using a simulated specimen that satisfies not only the structural characteristics but also the mechanical condition of the actual structure, the fatigue design criteria are determined and applied to the fatigue design of the gas welded body structure. To save time and cost for the fatigue design, we investigated an accelerated life-prediction using a probabilistic statistics technique based on the theory of statistical reliability. The (Δσ a )R-Nf relationship was obtained from actual fatigue test data, including welding residual stress. On the basis of these results, the (Δσa)R-(Nf)ALP relationship that was derived from statistical probability analysis was compared with the actual fatigue test data. Therefore, it is expected that the accelerated life prediction will provide a useful method of determining the criteria for fatigue design and predicting a specific target life.
机译:气焊是铁路车辆和商用车辆结构制造中非常重要和有用的技术。但是,由于焊缝处的应力集中,气焊接头的疲劳强度大大低于材料基底的疲劳强度,因此气焊接头的疲劳强度评估对于有轨电车的可靠性和耐久性非常重要。建立长寿命疲劳设计标准。在这项研究中,在使用不仅满足结构特征而且还满足实际结构机械条件的模拟试样评估疲劳强度之后,确定了疲劳设计标准,并将其应用于气焊车身结构的疲劳设计。为了节省疲劳设计的时间和成本,我们使用了基于统计可靠性理论的概率统计技术来研究加速寿命预测。 (Δσ a R -N f 关系是从包括焊接残余应力在内的实际疲劳试验数据获得的。根据这些结果,(Δσ a R -(N f ALP 关系为将统计概率分析得出的结果与实际疲劳测试数据进行比较。因此,期望加速寿命预测将提供确定疲劳设计标准和预测特定目标寿命的有用方法。

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