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Evaluation Model of Aluminum Alloy Welded Joint Low-Cycle Fatigue Data Based on Information Entropy

机译:基于信息熵的铝合金焊接接头低周疲劳数据评估模型

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An evaluation model of aluminum alloy welded joint low-cycle fatigue data based on information entropy is proposed. Through calculating and analyzing the information entropy of decision attributes, quantitative contribution of stress concentration, plate thickness, and loading mode to the fatigue destruction are researched. Results reveal that the total information entropy of the fatigue data based on nominal stress, structural stress and equivalent structural stress are, respectively, 0.9702, 0.8881, and 0.8294. There is consistency between the reducing trend of the weight-based information entropy and the smaller and smaller standard deviation of the S-N curves. In the structural stress based S-N curve, total stress concentration factor is crucial for the distribution of the fatigue data and the weight based information entropy of membrane stress concentration factor is 0.6754, which illustrates that stress concentration is a key issue of welded structure to which ought to be attached great importance. Subsequently, in the equivalent structural stress-based S-N curve, the weight based information entropy of stress ratio is 0.5759, which plays an important role in the distribution of fatigue data. With the importance level of the attributes on the S-N curves investigated, the correction of R in the equivalent structural stress based master S-N curve method should be carried out to make the welding fatigue prediction much more accurate.
机译:提出了一种基于信息熵的铝合金焊接接头低周疲劳数据评估模型。通过计算和分析决策属性的信息熵,研究了应力集中,板厚和加载方式对疲劳破坏的定量影响。结果表明,基于标称应力,结构应力和等效结构应力的疲劳数据的总信息熵分别为0.9702、0.8881和0.8294。基于权重的信息熵的减少趋势与S-N曲线的标准偏差越来越小之间存在一致性。在基于结构应力的SN曲线中,总应力集中系数对于疲劳数据的分布至关重要,膜应力集中系数的基于权重的信息熵为0.6754,这说明应力集中是焊接结构应解决的关键问题。被高度重视。随后,在等效的基于结构应力的S-N曲线中,基于应力的权重信息熵为0.5759,这在疲劳数据的分布中起着重要作用。在研究了S-N曲线上的属性的重要性级别之后,应在基于等效结构应力的主S-N曲线方法中对R进行校正,以使焊接疲劳预测更加准确。

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