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Prediction of brittle fracture in notched specimens under cyclic loading

机译:缺口载荷下缺口试样脆性断裂的预测

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Brittle fractures in steel can have devastating effects during its use, such as the collapse of buildings during earthquakes. This paper describes the effects of cyclic loading on the occurrence of brittle fracture and presents a brittle fracture prediction method. Notched specimens of steels with low and high fracture toughness were tested under monotonic and cyclic loading. A cumulative ductility estimation method was developed to predict the occurrence of brittle fracture using the Coffin-Manson law and Miner's rule. This method is based on the empirical relationship between the ductility amplitude or Weibull stress and the number of cycles at brittle fracture. Cumulative damage theory was also used to consider different cyclic amplitudes. The proposed approach can be employed to predict cumulative ductility at brittle fracture and showed a relatively high correlation coefficient between the calculated and experimental results. In addition, this approach can be used to predict brittle fracture using data from samples with different toughness and notch shapes in a unified manner, unlike many previous methods. (C) 2019 Elsevier Ltd. All rights reserved.
机译:钢材中的脆性断裂会在使用过程中产生毁灭性影响,例如地震中建筑物的倒塌。本文描述了循环载荷对脆性断裂发生的影响,并提出了一种脆性断裂预测方法。在单调和循环载荷下测试了具有低断裂韧性和高断裂韧性的带缺口试样。开发了一种累积延性估算方法,以使用科芬曼森定律和Miner规则预测脆性断裂的发生。该方法基于延性振幅或威布尔应力与脆性断裂的循环次数之间的经验关系。还使用累积损伤理论来考虑不同的循环振幅。所提出的方法可用于预测脆性断裂时的累积延性,并在计算结果和实验结果之间显示出相对较高的相关系数。另外,与许多以前的方法不同,该方法可用于以统一的方式使用来自具有不同韧性和缺口形状的样品的数据来预测脆性断裂。 (C)2019 Elsevier Ltd.保留所有权利。

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