Guo Junlin, Yuan Kang, Xu Jianjiang, Wang Ying, Gan Dan, He Mingsheng
College of Water Conservancy & Architectural Engineering, Shihezi University, Shihezi 832003, China.
School of Civil Engineering, Chongqing University, Chongqing 400045, China.
Materials (Basel). 2023 Feb 2;16(3):1298. doi: 10.3390/ma16031298.
In order to alleviate the shortage of sand resources for construction, make full use of industrial waste and promote the development of green lightweight aggregate concrete in the desert and surrounding areas, this paper proposes a new lightweight ceramsite concrete, fly ash cenospheres and desert sand ceramsite concrete (FDCC). An orthogonal test was conducted to analyze the effects of the desert sand (DS) replacing ratio, fly ash cenosphere (FAC) replacing ratio and polymer emulsion (PLE) addition on the damage patterns, slump, apparent density and compressive strength of the FDCC. The results showed that the most influential factors for the slump, apparent density and compressive strength of the FDCC were the FAC replacing ratio, FAC replacing ratio and DS replacing ratio, respectively. Meanwhile, the PLE addition had little effect on the workability or mechanical performance of the FDCC. With the increase in the DS replacing ratio, the slump decreased rapidly and the compressive strength reached its peak value, increasing by 20.6% when the DS replacing ratio was 20%. With the increase in the FAC replacing ratio, the slump increased by 106%, the apparent density decreased gradually and the compressive decreased and then increased, reaching its lowest value when the FAC replacing ratio was 20%. According to the synthetic evaluation analysis, the optimum DS replacing ratio, FAC replacing ratio and PLE addition of the FDCC were 20%, 30% and 1%, respectively.
为缓解建筑用砂资源短缺问题,充分利用工业废弃物,推动沙漠及周边地区绿色轻集料混凝土发展,本文提出一种新型轻陶粒混凝土——粉煤灰空心微珠与沙漠砂陶粒混凝土(FDCC)。进行了正交试验,分析沙漠砂(DS)取代率、粉煤灰空心微珠(FAC)取代率和聚合物乳液(PLE)掺量对FDCC损伤模式、坍落度、表观密度和抗压强度的影响。结果表明,对FDCC坍落度、表观密度和抗压强度影响最大的因素分别是FAC取代率、FAC取代率和DS取代率。同时,PLE掺量对FDCC工作性能或力学性能影响较小。随着DS取代率的增加,坍落度迅速降低,抗压强度达到峰值,当DS取代率为20%时抗压强度提高了20.6%。随着FAC取代率的增加,坍落度增加了106%,表观密度逐渐降低,抗压强度先降低后增加,当FAC取代率为20%时达到最低值。综合评价分析得出,FDCC的最佳DS取代率、FAC取代率和PLE掺量分别为20%、30%和1%。