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首页> 外文期刊>Journal of advanced concrete technology >Behavioral Simulation Model for SFRC and Application to Flexural Fatigue in Tension
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Behavioral Simulation Model for SFRC and Application to Flexural Fatigue in Tension

机译:SFRC的行为模拟模型及其在拉伸疲劳中的应用

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摘要

A fatigue behavioral simulation for steel fiber reinforced concrete (SFRC) subjected to high cycle repetition of loads is presented. The fatigue constitutive models for normal strength concrete developed in the past decades are extended to those for SFRC with regard to tension, compression and shear transfer along dispersed cracking. The hysteretic path-dependency of SFRC is extensively focused on as well as post-cracking tension softening, because it greatly affects the stress-strain amplitudes of SFRC inside structures. The interaction of multi-directional cracks is taken into account based upon the fixed crack approach for enabling the damage evolution under the principal stress rotation. The rate effect on the stress and strain relation is also formulated to take into account the nonlinearity related to both loading rates and numbers of cycles. These proposed models for SFRC are experimentally verified in view of S-N diagrams of flexural tension for practical use.
机译:提出了钢纤维混凝土(SFRC)在高周反复荷载下的疲劳行为模拟。在过去的几十年中,普通强度混凝土的疲劳本构模型在沿分散裂缝的拉伸,压缩和剪切传递方面已扩展到SFRC模型。 SFRC的滞回路径相关性以及裂纹后的张力软化受到了广泛关注,因为它极大地影响了结构内部SFRC的应力-应变幅度。基于固定裂纹方法,考虑了多向裂纹的相互作用,以便在主应力旋转下使损伤演化。还制定了速率对应力和应变关系的影响,以考虑到与加载速率和循环次数有关的非线性。这些建议的SFRC模型是根据实际使用的S-N弯曲张力图通过实验验证的。

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