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首页> 外文期刊>Fatigue & fracture of engineering materials and structures >An algorithm for fast critical plane search in computer-aided engineering durability analysis under multiaxial random loadings: Application to the Carpinteri-Spagnoli-Vantadori spectral method
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An algorithm for fast critical plane search in computer-aided engineering durability analysis under multiaxial random loadings: Application to the Carpinteri-Spagnoli-Vantadori spectral method

机译:多轴随机荷载计算机辅助工程耐久性分析中快速关键平面搜索算法:应用于Carpinteri-Spagnoli-Vantadori光谱法

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摘要

This paper presents a new algorithm to implement the Carpinteri-Spagnoli-Vantadori (CSV) multiaxial fatigue criterion for random loading and to shorten the computation time. This goal is achieved after calculating the exact expressions of stress spectral moments in every rotated plane, which allow the maximum variance and expected maximum peak of normal/shear stress to be computed directly. This permits the new algorithm to determine the five rotations of the critical plane without using 'for/end' loops (which represent a slow numerical operation), although some information on stress signals examined is lost. Two examples are presented to demonstrate the advantages of the new algorithm in comparison with its standard version, which are particularly remarkable when considering the stress output of all finite element model nodes. The approach behind the new algorithm can be extended to other multiaxial spectral criteria that use angular rotations or direction cosines to locate the critical plane or the direction of maximum stress variance.
机译:本文提出了一种新的算法,用于实现随机加载的Carpinteri-Spagnoli-Vantadori(CSV)多轴疲劳标准,并缩短计算时间。在计算每个旋转平面中的应力光谱矩的精确表达之后实现该目标,这允许直接计算最大方差和预期的正常/剪切应力的最大峰值。这允许新算法确定临界平面的五个旋转而不使用“用于/结束”环(其表示慢速数值),尽管检查了检查应力信号的一些信息丢失。提出了两个示例以证明新算法的优点与其标准版本相比,这在考虑所有有限元模型节点的应力输出时特别显着。新算法背后的方法可以扩展到其他多轴频谱标准,该标准使用角度旋转或方向余弦来定位临界平面或最大应力方向方向。

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