Fu Ru, Li Wei
Faculty of Engineering, China University of Geosciences, Wuhan 430074, China.
Polymers (Basel). 2021 Dec 6;13(23):4261. doi: 10.3390/polym13234261.
Mixing soil with waste tire rubber granules or fibres is a practical and promising solution to the problem of global scrap tire pollution. Before successful applications, the mechanical behaviour of the soil-rubber mixture must be thoroughly investigated. Comprehensive laboratory studies (compaction, permeability, oedometer and triaxial tests) were conducted on the completely decomposed granite (CDG)-rubber mixtures, considering the effects of rubber type (rubber granules GR1 and rubber fibre FR2) and rubber content (0-30%). Results show that, for the CDG-rubber mixture, as the rubber content increases, the compaction curves become more rubber-like with less obvious optimum moisture content. The effect on permeability becomes clearer only when the rubber content is greater than 30%. The shape effect of rubber particles in compression is minimal. In triaxial shearing, the inclusion of rubber particles tends to reduce the stiffness of the mixtures. After adding GR1, the peak stress decreases with the increasing rubber content due to the participation of soft rubber particles in the force transmission, while the FR2 results in higher peak stress especially at higher rubber contents because of the reinforcement effect. For the CDG-GR1 mixture, the friction angle at the critical state (') decreases with the increasing rubber content, mainly due to the lower inter-particle friction of the CDG-rubber interface compared to the pure CDG interface, while for the CDG-FR2 mixture, the ' increases with the increasing rubber content, again mainly due to the reinforcement effect.
将土壤与废旧轮胎橡胶颗粒或纤维混合是解决全球废旧轮胎污染问题的一种切实可行且颇具前景的方法。在成功应用之前,必须对土壤 - 橡胶混合物的力学性能进行深入研究。针对完全分解花岗岩(CDG) - 橡胶混合物开展了全面的实验室研究(压实、渗透性、固结和三轴试验),考虑了橡胶类型(橡胶颗粒GR1和橡胶纤维FR2)以及橡胶含量(0 - 30%)的影响。结果表明,对于CDG - 橡胶混合物,随着橡胶含量的增加,压实曲线变得更像橡胶的曲线,最佳含水量不太明显。只有当橡胶含量大于30%时,对渗透性的影响才变得更明显。橡胶颗粒在压缩中的形状效应最小。在三轴剪切中,加入橡胶颗粒往往会降低混合物的刚度。加入GR1后,由于软橡胶颗粒参与力的传递,峰值应力随着橡胶含量的增加而降低,而FR2由于增强作用,尤其是在较高橡胶含量时会导致更高的峰值应力。对于CDG - GR1混合物,临界状态下的摩擦角(')随着橡胶含量的增加而减小,主要是因为与纯CDG界面相比,CDG - 橡胶界面的颗粒间摩擦力较低,而对于CDG - FR2混合物,'随着橡胶含量的增加而增大,同样主要是由于增强作用。