Mohammed Tarek Uddin, Mahmood Aziz Hasan
Department of Civil and Environmental Engineering, Islamic University of Technology, Gazipur 1704, Bangladesh.
Ultrasonics. 2016 Jul;69:129-36. doi: 10.1016/j.ultras.2016.04.006. Epub 2016 Apr 6.
Investigation was carried out to study the effects of maximum aggregate size (MAS) (12.5mm, 19.0mm, 25.0mm, 37.5mm, and 50.0mm) on ultrasonic pulse velocity (UPV) of concrete. For investigation, first class bricks were collected and broken to make coarse aggregate. The aggregates were tested for specific gravity, absorption capacity, unit weight, and abrasion resistance. Cylindrical concrete specimens were made with different sand to aggregate volume ratio (s/a) (0.40 and 0.45), W/C ratio (0.45, 0.50, and 0.55), and cement content (375kg/m(3) and 400kg/m(3)). The specimens were tested for compressive strength and Young's modulus. UPV through wet specimen was measured using Portable Ultrasonic Non-destructive Digital Indicating Tester (PUNDIT). Results indicate that the pulse velocity through concrete increases with an increase in MAS. Relationships between UPV and compressive strength; and UPV and Young's modulus of concrete are proposed for different maximum sizes of brick aggregate.
开展了一项研究,以探究最大集料粒径(12.5毫米、19.0毫米、25.0毫米、37.5毫米和50.0毫米)对混凝土超声脉冲速度(UPV)的影响。为进行研究,收集了一等砖并将其破碎以制成粗集料。对集料进行了比重、吸水能力、单位重量和耐磨性能测试。制作了不同砂与集料体积比(s/a)(0.40和0.45)、水灰比(0.45、0.50和0.55)以及水泥含量(375千克/立方米和400千克/立方米)的圆柱形混凝土试件。对试件进行了抗压强度和杨氏模量测试。使用便携式超声无损数字指示测试仪(PUNDIT)测量了湿试件的UPV。结果表明,混凝土中的脉冲速度随最大集料粒径的增加而提高。针对不同最大尺寸的砖集料,提出了UPV与抗压强度以及UPV与混凝土杨氏模量之间的关系。