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钢纤维活性粉末混凝土梁抗裂性及承载性能计算方法

Calculation Method for the Cracking Resistance and Bearing Performance of SFRAC Beams.

作者信息

Zhu Qian, Liu Jie

机构信息

School of Civil Engineering and Architecture, Zhengzhou University of Aeronautics, Zhengzhou 450046, China.

School of Water Conservancy and Environment, Zhengzhou University, Zhengzhou 450001, China.

出版信息

Materials (Basel). 2023 Jul 1;16(13):4769. doi: 10.3390/ma16134769.

Abstract

The utilization of recycled aggregate (RCA) in preparing recycled concrete (RAC) is an effective measure to solve the increase in construction waste. Furthermore, applying RAC to flexural members is a viable practice. The addition of steel fiber to RAC to prepare steel fiber recycled concrete (SFRAC) solves the performance deterioration caused by the recycled aggregate, so it is necessary to study the effects of the recycled aggregate replacement rate and fiber-volume ratio on the crack resistance and bending performance of SFRAC beams. In this study, 13 beams were designed and manufactured, with the water-cement ratio, recycled aggregate replacement rate, and fiber-volume ratio as the primary variables, and the cracking moment and ultimate moment of the SFRAC beams were systematically studied. The results show that the cracking and ultimate moments of the SFRAC beams increased with decreases in the water-cement ratio or with increases in the fiber-volume ratio and were unaffected by the replacement rate of recycled aggregates. Based on the experimental results and theoretical analysis, a calculation model and formula for the cracking moment were established. The ultimate bearing capacity of SFRAC beams can be accurately determined using the ACI 318 and ACI 544 standards. The research results serve as a valuable reference for the design of SFRAC beams, effectively address the issue of performance degradation in RAC structural members, and promote the use of green building materials.

摘要

利用再生骨料(RCA)制备再生混凝土(RAC)是解决建筑垃圾增加问题的有效措施。此外,将RAC应用于受弯构件是一种可行的做法。在RAC中添加钢纤维制备钢纤维再生混凝土(SFRAC)解决了再生骨料导致的性能劣化问题,因此有必要研究再生骨料取代率和纤维体积率对SFRAC梁抗裂性能和抗弯性能的影响。本研究设计制作了13根梁,以水灰比、再生骨料取代率和纤维体积率为主要变量,系统研究了SFRAC梁的开裂弯矩和极限弯矩。结果表明,SFRAC梁的开裂弯矩和极限弯矩随水灰比的降低或纤维体积率的增加而增大,且不受再生骨料取代率的影响。基于试验结果和理论分析,建立了开裂弯矩的计算模型和公式。SFRAC梁的极限承载力可采用美国混凝土学会(ACI)318和ACI 544标准准确确定。研究结果为SFRAC梁的设计提供了有价值的参考,有效解决了RAC结构构件性能劣化的问题,促进了绿色建筑材料的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3028/10343393/50eb680c9903/materials-16-04769-g001.jpg

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