隧道掘进机刀盘疲劳寿命可靠性建模

Chong Li, Peng Gao, L. Xie, Jian-min Ren
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引用次数: 0

摘要

传统的应力-强度干涉模型适用于时变失效模式的可靠性计算,但将这种干涉分析概念直接应用于疲劳、磨损、腐蚀等时变失效模式,即使是应力幅值不确定的恒幅加载下的结构疲劳可靠性也面临诸多挑战。为了考虑材料性能不确定性和载荷不确定性对结构临界位置疲劳可靠性的影响,将传统的应力-强度干涉模型重新解释为表示强度大于应力概率的统计平均值,反之亦然。因此,传统的应力与强度相似干涉的思想可以推广到两个不同维度的随机变量(如应力和疲劳寿命)干涉的情况。采用应力-寿命异维干涉模型,可以实现复杂结构系统在随机载荷作用下的疲劳可靠性分析,只要寿命分布可以表示为应力的函数。该模型充分考虑了隧道掘进机刀盘结构在不同工况下的应力状态和各构件疲劳寿命之间的统计相关性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Reliability Modeling for Fatigue Life of Cutterhead of Tunnel Boring Machine
Traditional stress-strength interference model is suitable for reliability calculation of time-independent failure modes, but applying such interference analysis concept directly to time-dependent failure modes such as fatigue, wear, and corrosion still faces many challenges, even for structural fatigue reliability under constant amplitude loading with uncertainty in stress amplitude. In order to consider the impact of material performance uncertainty and loading uncertainty on the fatigue reliability of structural critical locations, the traditional stress-strength interference model is reinterpreted as a statistical average representing the probability that the strength is greater than the stress, and vice versa. Thus, the traditional similar-interference idea between stress and strength can be extended to the situation where two dissimilar dimensional random variables (such as stress and fatigue life) interfere. By adopting the stress-life dissimilar-dimension interference model, the fatigue reliability analysis of a complex structural system subjected to random loading can be achieved, as long as the life distribution can be expressed as a function of stress. This model fully takes into account the stress state of cutterhead structure of tunnel boring machine (TBM) under different working conditions and the statistical correlation between the fatigue lives of individual elements.
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