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首页> 外文期刊>Journal of advanced concrete technology >Compressive Stress-Strain Relationship of High Strength Steel Fiber Reinforced Concrete
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Compressive Stress-Strain Relationship of High Strength Steel Fiber Reinforced Concrete

机译:高强度钢纤维混凝土的压应力-应变关系

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Many stress-strain models of high strength steel fiber reinforced concrete (SFRC) were proposed to account for major characteristics of SFRC; however, the presence of bond strength between steel fibers and matrix was not considered in most studies. In this study, the bond strength is considered in the proposed stress-strain model. The empirical expres-sions for determining the proposed stress-strain model are obtained by regressing 61 of stress-strain curves of SFRC. The compression tests on SFRC specimens are also conducted to verify the proposed stress-strain model. In addi-tion, the comparison study between pullout energy obtained from fiber pullout tests and that obtained by using empirical equation are presented, since the bond strength is an important parameter to describe fiber characteristics. By treating steel fibers as confinements, the mechanical properties of SFRC are expressed in terms of reinforcing index, equivalent bond strength, and ultimate compressive stress. The proposed stress-strain model has good agreements with the experi-mental stress-strain curves obtained either in this study or by other researchers. Furthermore, by considering the bond strength between fibers and matrix and treating steel fibers as confinements, the post-peak behavior of SFRC can be well described and avoid either overestimating or underestimating the post-peak behavior.
机译:考虑到SFRC的主要特性,提出了许多高强度钢纤维增强混凝土(SFRC)的应力应变模型。但是,大多数研究并未考虑钢纤维与基体之间的粘结强度。在这项研究中,在建议的应力应变模型中考虑了粘结强度。通过对SFRC的应力-应变曲线进行回归分析61得到确定拟议的应力-应变模型的经验表达式。还对SFRC样品进行了压缩试验,以验证所提出的应力应变模型。此外,由于粘结强度是描述纤维特性的重要参数,因此对纤维拉拔试验获得的拉拔能量与使用经验公式获得的拉拔能量进行了比较研究。通过将钢纤维作为约束,SFRC的机械性能用增强指数,等效粘结强度和极限压缩应力表示。所提出的应力-应变模型与本研究或其他研究人员获得的实验应力-应变曲线具有良好的一致性。此外,通过考虑纤维与基体之间的粘结强度并将钢纤维视为约束,可以很好地描述SFRC的峰后行为,避免高估或低估峰后行为。

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