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含有大量轮胎橡胶颗粒的混凝土的力学性能

Mechanical properties of concrete containing a high volume of tire-rubber particles.

作者信息

Khaloo Ali R, Dehestani M, Rahmatabadi P

机构信息

Civil Engineering Department, Sharif University of Technology, Center of Excellence in Structures and Earthquake Engineering, Tehran, Iran.

出版信息

Waste Manag. 2008 Dec;28(12):2472-82. doi: 10.1016/j.wasman.2008.01.015. Epub 2008 Mar 26.

Abstract

Due to the increasingly serious environmental problems presented by waste tires, the feasibility of using elastic and flexible tire-rubber particles as aggregate in concrete is investigated in this study. Tire-rubber particles composed of tire chips, crumb rubber, and a combination of tire chips and crumb rubber, were used to replace mineral aggregates in concrete. These particles were used to replace 12.5%, 25%, 37.5%, and 50% of the total mineral aggregate's volume in concrete. Cylindrical shape concrete specimens 15 cm in diameter and 30 cm in height were fabricated and cured. The fresh rubberized concrete exhibited lower unit weight and acceptable workability compared to plain concrete. The results of a uniaxial compressive strain control test conducted on hardened concrete specimens indicate large reductions in the strength and tangential modulus of elasticity. A significant decrease in the brittle behavior of concrete with increasing rubber content is also demonstrated using nonlinearity indices. The maximum toughness index, indicating the post failure strength of concrete, occurs in concretes with 25% rubber content. Unlike plain concrete, the failure state in rubberized concrete occurs gently and uniformly, and does not cause any separation in the specimen. Crack width and its propagation velocity in rubberized concrete are lower than those of plain concrete. Ultrasonic analysis reveals large reductions in the ultrasonic modulus and high sound absorption for tire-rubber concrete.

摘要

由于废旧轮胎带来的环境问题日益严重,本研究探讨了使用弹性和柔性的轮胎橡胶颗粒作为混凝土骨料的可行性。由轮胎碎片、橡胶粉以及轮胎碎片与橡胶粉的混合物组成的轮胎橡胶颗粒,被用于替代混凝土中的矿物骨料。这些颗粒被用于替代混凝土中矿物骨料总体积的12.5%、25%、37.5%和50%。制作并养护了直径15厘米、高30厘米的圆柱形混凝土试件。与普通混凝土相比,新拌橡胶混凝土的单位重量更低且工作性良好。对硬化混凝土试件进行的单轴压缩应变控制试验结果表明,其强度和切线弹性模量大幅降低。使用非线性指标也证明,随着橡胶含量的增加,混凝土的脆性显著降低。表明混凝土破坏后强度的最大韧性指标出现在橡胶含量为25%的混凝土中。与普通混凝土不同,橡胶混凝土的破坏状态发生得较为平缓且均匀,不会导致试件出现任何分离。橡胶混凝土中的裂缝宽度及其扩展速度低于普通混凝土。超声分析表明,轮胎橡胶混凝土的超声模量大幅降低且吸声性高。

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