Impact Response of Novel Fibre-Reinforced Grouted Aggregate Rubberized Concrete

被引:26
|
作者
Murali, G. [1 ]
Poka, Laxminadh [1 ]
Parthiban, K. [1 ]
Haridharan, M. K. [2 ]
Siva, A. [3 ]
机构
[1] SASTRA Deemed Univ, Sch Civil Engn, Thanjavur, India
[2] Amrita Vishwa Vidyapeetham, Amrita Sch Engn, Dept Civil Engn, Coimbatore, Tamil Nadu, India
[3] Univ Santiago Chile, Dept Ingn Obras Civiles, Av Ecuador 3659, Santiago, Chile
关键词
Preplaced aggregate; Density; w; b ratios; Rubber; Fibre; Impact; CRUMB RUBBER; TIRE-RUBBER; DURABILITY PROPERTIES; TYRE-RUBBER; BEHAVIOR; COMPOSITE; STRENGTH; PERFORMANCE; RESISTANCE; PARTICLES;
D O I
10.1007/s13369-019-03819-5
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
The consumption of waste tyre rubber in concrete is considered to be a critical factor addressing environmental issues and sustainability. Rubberized concrete is a novel building material that poses high energy absorption capacity compared to normal concrete and finds many applications in civilian infrastructures. The concept of impact strength of fibre-reinforced grouted aggregate rubberized concrete (FRGARC) has been pioneered in this study. In the fabrication of FRGARC, combination of steel fibres and treated rubber aggregates was placed in the formwork, and then, a flowable grout was injected to fill the voids. The rubber used in this experiment was pre-treated by immersing in water with 10% NaOH solution for a time period of 0.5 h. The variables examined in this investigation are crumbed rubber aggregate replacement ratios of 5%, 10%, 15%, 20%, 25% and 30% with three different water/binder ratios (0.45, 0.50 and 0.55). Hooked-end steel fibres were used at a constant dosage of 0.5% volume of concrete. The density reduction factor, compressive strength (CS), number of impact that induced initial crack and failure, initial crack and failure energy increasing factor of FRGARC were studied. Linear and power regression equations were developed to assess the density reduction factor and initial crack and failure energy increasing factor. FRGARC exhibits reduction in CS with increasing rubber content, and it significantly contributes to the enhancement of initial crack and failure impact energy absorption capacity.
引用
收藏
页码:8451 / 8463
页数:13
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