Nguyen Tri N M, Kim Jung J
Department of Civil Engineering, Kyungnam University, Changwon-si 51767, Korea.
Materials (Basel). 2021 May 13;14(10):2544. doi: 10.3390/ma14102544.
The present study deals with tests on the energy absorption capacity and compressive strength of styrene-butadiene rubber (SBR) latex-modified cementitious materials. Different polymer-cement ratios (P/C) of 0, 5, 10, 15, and 20% were carried out with the Charpy impact test at 7, 14, and 28 days of curing. The observations showed an increase in the energy absorption capacity of the SBR latex-modified cement paste in correspondence with the increase in curing times, as well as the increase in the P/C ratios. The P/C ratio of 10% was the optimal ratio for observing the highest energy absorption capacity of the SBR latex-modified cement paste, with a 43% increase observed. In addition, a linear relationship between compressive strength and the energy absorption capacity at 28 days was proposed. Based on that, the energy absorption capacity of SBR latex-modified cement paste can be analyzed or predicted by the compressive strength results, regardless of the P/C ratios. Finally, the two-parameter Weibull distribution was proved to fit by the observation data from the Charpy impact test.
本研究涉及对丁苯橡胶(SBR)胶乳改性胶凝材料的能量吸收能力和抗压强度的测试。采用0、5、10、15和20%的不同聚合物与水泥比例(P/C),在养护7天、14天和28天时进行夏比冲击试验。观察结果表明,SBR胶乳改性水泥浆体的能量吸收能力随着养护时间的增加以及P/C比例的增加而提高。10%的P/C比例是观察SBR胶乳改性水泥浆体最高能量吸收能力的最佳比例,观察到能量吸收能力提高了43%。此外,还提出了28天时抗压强度与能量吸收能力之间的线性关系。基于此,无论P/C比例如何,都可以通过抗压强度结果来分析或预测SBR胶乳改性水泥浆体的能量吸收能力。最后,夏比冲击试验的观察数据证明符合双参数威布尔分布。