Wu Shaofeng, Jiang Shao-Fei, Shen Sheng, Wu Zhaoqi
College of Civil Engineering, Fuzhou University, Fuzhou 350108, China.
Materials (Basel). 2019 Jan 21;12(2):324. doi: 10.3390/ma12020324.
Anti-washout underwater concrete (AWC) is widely used in nondrainage strengthening; however, there still exist some problems with it, such as high strength loss and poor interfacial bond in practical engineering application. Based on the study of self-stressed concrete (SSC), a research on the mix ratio for the C30 self-stressed anti-washout underwater concrete (SSAWC) was carried out in this paper in hope of solving the above problems, specifically, by adding an expansive agent to the AWC. The parameters, such as strength, fluidity, anti-dispersity, and expansibility, were picked as target indices in determination of the mix ratio. The orthogonal test design and range analysis were used to determine the reasonable mix ratio and study the influence of various parameters on the performance of SSAWC. The experimental program conducted includes a series of strength, fluidity, anti-dispersity, and expansibility tests on 18 groups of specimens. The results show that C30 SSAWC has an excellent performance using the optimal mix ratio. Compared with AWC, the expansibility and self-stress of the SSAWC can be easily observed, and the compressive strength ratio of the SSAWC casted in water to that casted in air is much bigger. This implies that SSAWC is applicable to the nondrainage strengthening.
水下不分散混凝土(AWC)在防渗加固工程中应用广泛,但在实际工程应用中仍存在一些问题,如强度损失大、界面粘结性能差等。基于对自应力混凝土(SSC)的研究,本文开展了C30自应力水下不分散混凝土(SSAWC)配合比的研究,以期解决上述问题,具体方法是在AWC中添加膨胀剂。在配合比设计中,选取强度、流动性、抗分散性和膨胀性等参数作为目标指标。采用正交试验设计和极差分析确定合理的配合比,并研究各参数对SSAWC性能的影响。所进行的试验方案包括对18组试件进行一系列强度、流动性、抗分散性和膨胀性试验。结果表明,采用最优配合比的C30 SSAWC具有优异的性能。与AWC相比,SSAWC的膨胀性和自应力易于观察,水中浇筑的SSAWC与空气中浇筑的抗压强度比要大得多。这表明SSAWC适用于防渗加固工程。