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Design Issues for Concrete Reinforced with Steel Fibers, Including Fibers Recovered from Used Tires

机译:用钢纤维加固混凝土的设计问题,包括从二手轮胎中回收的纤维

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摘要

The writers are investigating the use of steel fibers, recovered from used tires (RSF), as concrete reinforcement, aiming at the development of design recommendations. This paper presents part of this research and examines initially an existing design guideline, developed by RILEM for steel fiber-reinforced concrete (SFRC), in order to assess the suitability of the guideline for the flexural design of concrete reinforced with RSF (RSFRC). This examination indicates that, although the RILEM guideline is in general suitable for the flexural design of RSFRC, there are some fundamental issues related to the evaluation of the tensile stress-strain behavior of SFRC that affect the accuracy of the guideline. Thus, based on this conclusion, a new approach is outlined for the evaluation of the tensile stress - strain behavior of SFRC and models are derived for different types of RSF and industrially produced fibers. These models are applied to the flexural design of concrete reinforced with RSF (RSFRC) and results are compared with those obtained by using the RILEM tensile stress-strain models. It is concluded that the model proposed in this study is more conservative and accurate than the RILEM models. Recommendations are also made on values of tensile strain to be used as the ultimate limit state, when predicting the resistance capacity of SFRC and RSFRC. © 2006 ASCE.
机译:作者正在研究从废轮胎(RSF)中回收的钢纤维作为混凝土增强材料的用途,旨在制定设计建议。本文介绍了这项研究的一部分,并初步检查了由RILEM开发的用于钢纤维增强混凝土(SFRC)的现有设计准则,以评估该准则对用RSF增强的混凝土抗弯设计(RSFRC)的适用性。这项检查表明,尽管RILEM准则通常适用于RSFRC的挠曲设计,但仍有一些与SFRC的拉伸应力-应变行为评估有关的基本问题会影响准则的准确性。因此,基于此结论,概述了评估拉应力的新方法-SFRC的应变行为,并推导了不同类型的RSF和工业生产纤维的模型。这些模型被应用于用RSF(RSFRC)加固的混凝土的抗弯设计,并将结果与​​使用RILEM拉应力-应变模型获得的结果进行比较。结论是,本研究提出的模型比RILEM模型更为保守和准确。还建议了在预测SFRC和RSFRC的电阻容量时用作最终极限状态的拉伸应变值。 ©2006 ASCE。

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