Yoo Sun-Jae, Yuan Tian-Feng, Hong Se-Hee, Yoon Young-Soo
School of Civil, Environmental and Architectural Engineering, Korea University, 145 Anam-Ro, Seongbuk-Gu, Seoul 02841, Korea.
Materials (Basel). 2020 Dec 8;13(24):5603. doi: 10.3390/ma13245603.
In this study, the performance of reinforced concrete slabs strengthened using four methods was investigated under impact loads transferred from the top side to bottom side. The top and bottom sides of test slabs were strengthened by no-slump high-strength, high-ductility concrete (NSHSDC), fiber-reinforced-polymer (FRP) sheet, and sprayed FRP, respectively. The test results indicated that the test specimens strengthened with FRP series showed a 4% increase in reaction force and a decrease in deflection by more than 20% compared to the non-strengthened specimens. However, the specimen enhanced by the NSHSDC jacket at both the top and bottom sides exhibited the highest reaction force and energy dissipation as well as the above measurements because it contains two types of fibers in the NSHSDC. In addition, the weight loss rate was improved by approximately 0.12% for the NSHSDC specimen, which was the lowest among the specimens when measuring the weight before and after the impact load. Therefore, a linear relationship between the top and bottom strengthening of the NSHSDC and the impact resistance was confirmed, concluding that the NSHSDC is effective for impact resistance when the top and bottom sides are strengthened. The results of the analysis of the existing research show that the NSHSDC is considered to have high impact resistance, even though it has lower resistance than the steel fiber reinforced concrete and ultra-high-performance-concrete, it can be expected to further studies on strengthening of NSHSDC.
在本研究中,对采用四种方法加固的钢筋混凝土板在从顶面传递到底面的冲击荷载作用下的性能进行了研究。试验板的顶面和底面分别采用无坍落度高强度、高延性混凝土(NSHSDC)、纤维增强聚合物(FRP)板和喷射FRP进行加固。试验结果表明,与未加固的试件相比,采用FRP系列加固的试件反力提高了4%,挠度减小了20%以上。然而,顶面和底面均采用NSHSDC套加固的试件表现出最高的反力和能量耗散以及上述测量结果,因为NSHSDC中含有两种纤维。此外,NSHSDC试件的重量损失率提高了约0.12%,这是在测量冲击荷载前后重量时所有试件中最低的。因此,证实了NSHSDC顶面和底面加固与抗冲击性之间的线性关系,得出结论:当顶面和底面均进行加固时,NSHSDC对抗冲击有效。现有研究的分析结果表明,NSHSDC被认为具有较高的抗冲击性,尽管其强度低于钢纤维混凝土和超高性能混凝土,但有望对NSHSDC的加固进行进一步研究。