Wu Xiaoxin, Zhou Jinghai, Kang Tianbei, Wang Fengchi, Ding Xiangqun, Wang Shanshan
School of Civil Engineering, Shenyang Jianzhu University, Shenyang 110168, China.
School of Material Science and Engineering, Shenyang Jianzhu University, Shenyang 110168, China.
Materials (Basel). 2019 Apr 12;12(8):1196. doi: 10.3390/ma12081196.
This paper aims to study the effectiveness of adding waste polypropylene fibers into recycled aggregate concrete (RAC) on shrinkage cracking. The influences of fiber properties (length and content) on the shrinkage performance of RAC are investigated. Firstly, through the plat-ring-type shrinkage test and free shrinkage test, both of the early age and long-term shrinkage performance of waste fiber recycled concrete (WFRC) were measured. Then, X-ray industrial computed tomography (ICT) was carried out to reflect the internal porosity changes of RAC with different lengths and contents of fibers. Furthermore, the compressive strength and flexural strength tests are conducted to evaluate the mechanical performance. The test results indicated that the addition of waste fibers played an important role in improving the crack resistance performance of the investigated RAC specimens as well as controlling their shrinkage behaviour. The initial cracking time, amount and width of cracks and shrinkage rate of fiber-reinforced specimens were better than those of the non-fiber-reinforced specimen. The addition of waste fibers at a small volume fraction in recycled concrete had not obviously changed the porosity, but it changed the law of pore size distribution. Meanwhile, the addition of waste fibers had no significant effect on the compressive strength of RAC, but it enhanced the flexural strength by 43%. The specimens reinforced by 19-mm and 0.12% (volume fraction) waste fibers had the optimal performance of cracking resistance.
本文旨在研究在再生骨料混凝土(RAC)中添加废弃聚丙烯纤维对收缩开裂的影响。研究了纤维性能(长度和含量)对RAC收缩性能的影响。首先,通过平板环式收缩试验和自由收缩试验,测定了废纤维再生混凝土(WFRC)的早期和长期收缩性能。然后,进行X射线工业计算机断层扫描(ICT),以反映不同纤维长度和含量的RAC内部孔隙率变化。此外,进行抗压强度和抗弯强度试验以评估力学性能。试验结果表明,添加废弃纤维对提高所研究的RAC试件的抗裂性能以及控制其收缩行为起到了重要作用。纤维增强试件的初始开裂时间、裂缝数量和宽度以及收缩率均优于无纤维增强试件。在再生混凝土中添加少量废弃纤维并未明显改变孔隙率,但改变了孔径分布规律。同时,添加废弃纤维对RAC的抗压强度没有显著影响,但抗弯强度提高了43%。用19毫米和0.12%(体积分数)废弃纤维增强的试件具有最佳的抗裂性能。