Golewski Grzegorz Ludwik
Department of Structural Engineering, Faculty of Civil Engineering and Architecture, Lublin University of Technology, Nadbystrzycka 40 Str., 20-618 Lublin, Poland.
Materials (Basel). 2022 Aug 31;15(17):6023. doi: 10.3390/ma15176023.
This study presents test results and in-depth discussion regarding the measurement of the fracture mechanics parameters of new concrete composites based on quaternary blended cements (QBC). A composition of the two most commonly used mineral additives, i.e., fly ash (FA) and silica fume (SF), in combination with nanosilica (nS), has been proposed as a partial replacement for ordinary Portland cement (OPC) binder. Four series of concrete were made, one of which was the reference concrete (REF) and the remaining three were QBC. During the research, the main mechanical parameters of compressive strength () and splitting tensile strength (), as well as fracture mechanics parameters and the critical stress intensity factor KIcS, along with critical crack-tip opening displacements () were investigated. Based on the tests, it was found that the total addition of siliceous materials, i.e., SF + nS without FA, increases the strength and fracture parameters of concrete by approximately 40%. On the other hand, supplementing the composition of the binder with SF and nS with 5% of FA additive causes an increase in all mechanical parameters by approximately 10%, whereas an increase by another 10% in the FA content in the concrete mix causes a significant decrease in all the analyzed factors by 10%, compared to the composite with the addition of silica modifiers only.
本研究给出了关于基于四元混合水泥(QBC)的新型混凝土复合材料断裂力学参数测量的试验结果及深入讨论。提出了两种最常用的矿物添加剂,即粉煤灰(FA)和硅灰(SF),与纳米二氧化硅(nS)组合的一种成分,作为普通硅酸盐水泥(OPC)粘结剂的部分替代品。制备了四组混凝土,其中一组为参考混凝土(REF),其余三组为QBC。在研究过程中,研究了抗压强度()和劈裂抗拉强度()的主要力学参数,以及断裂力学参数和临界应力强度因子KIcS,以及临界裂纹尖端开口位移()。基于试验发现,硅质材料(即不含FA的SF + nS)的总添加量使混凝土的强度和断裂参数提高了约40%。另一方面,用5%的FA添加剂补充粘结剂的成分,会使所有力学参数提高约10%,而与仅添加硅质改性剂的复合材料相比,混凝土混合料中FA含量再增加10%会导致所有分析因素显著降低10%。