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FATIGUE CRACK GROWTH BEHAVIOR OF TC-128-B STEEL UNDER VARIABLE AMPLITUDE LOADING

机译:TC-128-B钢在可变幅度荷载下的疲劳裂纹生长行为

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Railroad tank cars are exposed to a high degree of variable amplitude loading that is comprised of both tensile compressive cycles. In order to consistently and accurately predict this type of loading, material properties, usage, and load interaction models must be used in concert. The objective of this study is to present the methodology necessary to generate tank car specific spectrum crack growth life prediction models. Experimental fatigue crack growth data from this project and previous efforts provided the baseline data necessary to develop NASGRO models and predict simplified over-load and under-load experiments. The methods were then advanced to predict spectrum crack growth experimental data representative of tank car usage. The results show that significant amounts of compressive loads in the tank car spectra essentially negate the need for a tensile stress based load interaction model. In order to provide consistently conservative prediction, the most basic model must be implemented instead of the more elaborate retardation models.
机译:铁路坦克汽车暴露于高度可变的幅度负载,该负载包括拉伸压缩循环。为了始终如一地准确地预测这种类型的加载,材料特性,使用和负载交互模型必须在音乐会中使用。本研究的目的是介绍产生坦克汽车特定光谱裂纹生长寿命预测模型所需的方法。该项目的实验疲劳裂纹增长数据和以往的努力提供了开发NASGRO模型所需的基线数据,并预测简化的过负载和负载欠载实验。然后将该方法提出,以预测蒸汽裂纹的增长实验数据代表坦克汽车使用。结果表明,坦克轿厢光谱中的大量压缩载荷基本上否定了基于拉伸应力的负荷相互作用模型的需求。为了提供一致的保守预测,必须实现最基本的模型而不是更精细的延迟模型。

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