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A probabilistic approach for assessing discontinuities in structural steel components based on Charpy-V-notch tests

机译:基于夏比-V缺口测试的概率结构钢部件间断性评估方法

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Available acceptance and rejection criteria for discontinuities in steel components of a welded assembly focus only on a minimum limit for the steel fracture toughness and a maximum limit for the size of the discontinuity. However, other critical parameters such as the uncertainty in the fracture toughness value and the working stress type in the steel component are not taken into account. The uncertainty in the fracture toughness increases as the steel component becomes thicker, which in combination with an increase in the demand for thick steel components in construction is cause for concern. Proposed in this paper is a probabilistic approach for the assessment of discontinuities that accounts for the variability of the fracture toughness throughout the material as well as the working stress type. A database of Charpy-V-notch (CVN) impact test results was developed for steel plates of different grades, thicknesses and at different temperatures. Each dataset was fitted with a statistical distribution, which was then converted to the corresponding fracture toughness. Through logistic regression and linear fracture mechanics an expression was developed to calculate the probability of a discontinuity's stress intensity factor exceeding the fracture toughness of the material. By determining an acceptance limit of this probability value based on the working stress type of the component and assembly (importance) the proposed approach can be implemented to accept or refuse a discontinuity in a steel component. (C) 2017 Elsevier Ltd. All rights reserved.
机译:焊接组件中钢构件间断的可用接受和拒绝标准仅集中于钢断裂韧性的最小极限和间断尺寸的最大极限。但是,未考虑其他关键参数,例如断裂韧性值的不确定性和钢组件中的工作应力类型。随着钢构件变厚,断裂韧性的不确定性增加,这与在建筑中对钢构件的需求增加有关。本文提出了一种用于评估不连续性的概率方法,该方法考虑了整个材料的断裂韧度以及工作应力类型的变化。针对不同等级,厚度和不同温度的钢板,建立了夏比V型缺口冲击试验结果数据库。每个数据集都具有统计分布,然后将其转换为相应的断裂韧性。通过逻辑回归和线性断裂力学,开发了一个表达式来计算不连续应力强度因子超过材料断裂韧性的可能性。通过根据零件和组件的工作应力类型(重要性)确定此概率值的可接受极限,可以实施所提出的方法来接受或拒绝钢零件中的不连续性。 (C)2017 Elsevier Ltd.保留所有权利。

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