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Prediction of the fracture performance of defect-free steel bars for civil engineering applications using finite element simulation

机译:基于有限元模拟的土木工程用无缺陷钢筋断裂性能预测

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摘要

The size of bars for civil engineering applications makes it impossible for traditional classical fracture mechanics to be employed to predict their fracture performance. This paper presents finite element simulations of the fracture performance of bars conducted with micromechanical fracture mechanics approach. Appropriate element size, orientation and aspect ratio were found to be essential for predicting the fracture shape of bars. It is demonstrated that finite element simulation with micromechanical-based phenomenological shear failure model can predict the fracture performance of defect-free bars and thus serves as an alternative to using non-standardised classical fracture mechanics specimens for bars' fracture performance prediction.
机译:用于土木工程应用的钢筋尺寸使传统的经典断裂力学无法用于预测其断裂性能。本文介绍了采用微机械断裂力学方法进行的钢筋断裂性能的有限元模拟。发现适当的元件尺寸,方向和长宽比对于预测钢筋的断裂形状至关重要。结果表明,基于微力学的现象学剪切破坏模型的有限元模拟可以预测无缺陷钢筋的断裂性能,从而替代了使用非标准化经典断裂力学样本进行钢筋断裂性能的预测。

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