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Fatigue damage assessment of a riveted connection made of puddle iron from the Fao bridge using the modified probabilistic interpretation technique

机译:使用修改的概率解释技术从粮农组织桥梁采用水坑铁的疲劳损伤评估

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The cumulative concept proposed by Palmgren and Miner [1] maintains that the damage level can be expressed in terms of the number of cycles applied at a given stress range divided by the number of cycles needed to produce failure for the same stress range. Failure occurs when the summation of these damage increments at several stress ranges becomes unity. After this formulation, this rule is repeatedly tested for different materials under multi-step and variable amplitude loading programs [2]. Though its applicability has been often questioned, it has been practically adopted by all design codes related to structural and mechanical fatigue design. In this paper, a fatigue damage assessment of a riveted connection made of puddle iron from the Fao bridge [3-6] using the modified probabilistic interpretation technique (MPIT) is applied [7]. This technique is a generalization of the Van Leeuwen and Siemes [8, 9] work by considering a probabilistic S-N field providing a statistical distribution of the Miner number although based on a log-normal distribution. This generalization was proposed by Fernandez-Canteli [10], based on the probabilistic model developed by Castillo and Fernandez-Canteli [11].
机译:Palmgren和矿工提出的累积概念保持损伤水平可以根据在给定的应力范围内施加的循环的数量来表示损伤水平,除以产生相同应力范围的失效所需的循环的数量。当这些损坏的总和在几个压力范围内的损伤增量时发生故障变为Unity。在该制剂之后,在多步骤和可变幅度加载程序下对不同材料重复测试该规则[2]。尽管其适用性经常质疑,但所有与结构和机械疲劳设计有关的所有设计代码都已经采用。在本文中,应用了使用改进的概率解释技术(MPIT)的粮农组织桥梁(MPIT)从粮农组织桥(MPIT)铆接连接的疲劳损伤评估[7]。通过考虑提供矿物号的统计分布,该技术是van Leeuwen和SiEMES [8,9]的概括工作,尽管基于对数正态分布,但是占用的概念分布。根据Castillo和Fernandez-Canteli开发的概率模型,由Fernandez-Caneli [10]提出了这种概括[11]。

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