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Local Bond Stress-Slip Models for Reinforcing Bars and Prestressing Strands in High-Peformance Fiber-Reinforced Cement Composites

机译:高性能纤维增强水泥复合材料中钢筋和预应力股线的局部粘结应力滑移模型

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Previous studies using pullout-type tests comprising monotonic, unidirectional cyclic, and reversed cyclic loads have shown that bond between reinforcing bars/prestressing strands and concrete can be significantly enhanced by replacing the conventional concrete with high-performance fiber-reinforced cement composites (HPFRCCs). This is attributed to the fact that, compared to plain concrete and conventional fiber-reinforced concrete (FRC), HPFRCCs exhibit a strain-hardening response under tension up to large strains, thereby preventing the concrete from deterioration under bond action.Pullout test results provide the bond stress versus slip relationship that can be considered the constitutive property of the steel-to-HPFRCC interface. Since the post-cracking tensile stress and strain of fiber-reinforced cement composites are the fundamental characteristics that distinguish them from conventional concrete, the HPFRC tensile stress-strain response obtained from direct tensile tests was used to derive the local bond stress-slip models presented in this paper. It is shown that the proposed models are more concise than previous models suggested for FRC and give good agreement with test results.
机译:先前使用包含单调,单向循环和反向循环载荷的拉拔式试验的研究表明,通过用高性能纤维增强水泥复合材料(HPFRCC)代替常规混凝土,可以显着增强钢筋/预应力绳股与混凝土之间的粘结力。这归因于以下事实:与普通混凝土和常规纤维增强混凝土(FRC)相比,HPFRCC在高张力下表现出应变硬化响应,从而防止了混凝土在粘结作用下变质。 拉拔测试结果提供了粘结应力与滑移的关系,可以将其视为钢与HPFRCC界面的本构性质。由于纤维增强水泥复合材料开裂后的拉伸应力和应变是它们与常规混凝土区别的基本特征,因此,使用直接拉伸试验获得的HPFRC拉伸应力-应变响应来推导提出的局部粘结应力-滑移模型。在本文中。结果表明,所提出的模型比先前为FRC提出的模型更为简洁,并且与测试结果具有很好的一致性。

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