Zhang Guang-Zhu, Wang Xiao-Yong
Department of Architectural Engineering, Kangwon National University, Chuncheon-Si 24341, Korea.
Materials (Basel). 2020 May 20;13(10):2356. doi: 10.3390/ma13102356.
In this study, the carrier effect of zeolite sands in reducing the autogenous shrinkage and optimizing the microstructure of ultra-high-performance concrete (UHPC) is studied. Pre-wetted calcined zeolite sand (CZ), calcined at 500 °C for 30 min, and natural zeolite sand (NZ), with 15 wt.% and 30 wt.% in UHPC, are used to partially replace standard sands. On that basis, a series of experiments are executed on the developed UHPC, including compressive strength, autogenous shrinkage, X-ray diffraction (XRD), and isothermal calorimetry experiments. With the increase of the zeolite sand content, the autogenous shrinkage of UHPC decreases gradually. Moreover, when the added CZ content is 30 wt.% (CZ30 specimen), it is effective in reducing autogenous shrinkage. Meanwhile, at the age of 28 days, the compressive strength of CZ30 is 97% of the control group. In summary, it is possible to effectively reduce the autogenous shrinkage of UHPC containing 30 wt.% CZ, without sacrificing its mechanical properties.
本研究探讨了沸石砂在降低超高性能混凝土(UHPC)自收缩及优化其微观结构方面的载体效应。采用在500℃下煅烧30分钟的预湿煅烧沸石砂(CZ)和天然沸石砂(NZ),分别以15 wt.%和30 wt.%的比例部分替代UHPC中的标准砂。在此基础上,对制备的UHPC进行了一系列试验,包括抗压强度、自收缩、X射线衍射(XRD)和等温量热试验。随着沸石砂含量的增加,UHPC的自收缩逐渐减小。此外,当CZ的添加量为30 wt.%(CZ30试件)时,能有效降低自收缩。同时,在28天龄期时,CZ30的抗压强度为对照组的97%。综上所述,在不牺牲含30 wt.% CZ的UHPC力学性能的前提下,有效降低其自收缩是可行的。