Buczyński Przemysław, Iwański Marek, Mazurek Grzegorz, Krasowski Jakub, Krasowski Maciej
Department of Transportation Engineering, Faculty of Civil Engineering and Architecture, Kielce University of Technology, Al. Tysiąclecia Państwa Polskiego 7, 25-314 Kielce, Poland.
Materials (Basel). 2020 Sep 24;13(19):4253. doi: 10.3390/ma13194253.
This article presents the test results for the physical and mechanical properties and fracture toughness of polymer-modified hydraulically-bound mixtures (HBM) produced with Portland cement for road base layers. The modifier used was a redispersible polymer powder (RPP) based on a vinyl ethylene acetate (EVA) copolymer obtained by spray drying. A three-level full factorial design with two factors was applied to determine the contents of Portland cement and polymer powder in the cement-bound mixture (CBM). Both Portland cement and polymer powder were added at three levels: 0%, 2%, and 4%. The assessment included basic physical properties (water absorption, density, and bulk density) and mechanical properties (stiffness modulus, axial compressive strength, and indirect tensile strength) of the CBM. Particular attention was paid to the assessment of fracture toughness in the semi-circular bending test. The results of the research show that polymer powder positively influenced the mechanical properties of CBM by improving its cohesion while maintaining its stiffness. Another benefit coming from the use of polymer powder was the CBM's increased resistance to cracking, which is the desired characteristic from the perspective of pavement durability.
本文介绍了用于道路基层的、由波特兰水泥制成的聚合物改性水硬性结合料混合物(HBM)的物理力学性能及断裂韧性的测试结果。所使用的改性剂是一种基于乙烯 - 醋酸乙烯酯(EVA)共聚物经喷雾干燥制得的可再分散聚合物粉末(RPP)。采用了具有两个因素的三级全因子设计来确定水泥结合料混合物(CBM)中波特兰水泥和聚合物粉末的含量。波特兰水泥和聚合物粉末均以三个水平添加:0%、2%和4%。评估内容包括CBM的基本物理性能(吸水率、密度和堆积密度)和力学性能(刚度模量、轴向抗压强度和间接抗拉强度)。在半圆弯曲试验中对断裂韧性的评估给予了特别关注。研究结果表明,聚合物粉末通过提高CBM的内聚力同时保持其刚度,对CBM的力学性能产生了积极影响。使用聚合物粉末的另一个好处是CBM抗裂性增强,从路面耐久性的角度来看,这是一个理想的特性。