硫磺与轮胎和塑料瓶粉混合部分取代沥青对沥青混凝土性能的影响

Parfait Isidore Mbenkoue Mbida, Déodonne Kunwufine, Charles Bwemba, Michel Mbessa
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摘要

本文讨论了硫与轮胎和塑料瓶粉末的混合物部分替代沥青对沥青混凝土性能的影响。采用的方法是用轮胎粉、塑料瓶粉和硫含量分别为40%、28%和32%的混合物代替沥青,对对照沥青混凝土进行二级配方试验,并对10%、20%、30%和40%的改性沥青混凝土进行二级配方试验。对控制沥青混凝土和改性沥青混凝土(湿法生产)进行的PCG、Duriez和车辙试验的结果揭示了三个主要发现,特别是在可加工性、抗简单压缩性和车辙方面。实验结果表明,基本参数有增大的趋势。当替代量达到40%时,密实度提高了22.73%,这反映了材料可加工性的显著改善。单抗压强度在替代量为40%时提高34.02%,突出了强降水条件下裂纹形成和扩展的局限性。在车辙方面,当取代量达到40%时,材料的磁化率下降了16%,这反映了材料在强降水动态机械应力下的行为有了显著改善。这些行为的改善是由于将塑料瓶粉末插入颗粒骨架的间隙中,从而减少了其细胞结构,以及硫与轮胎粉末和硫与塑料瓶粉末之间的相互作用,即交联或硫化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influence of the Partial Substitution of Bitumen by a Mixture of Sulphur and Tyre and Plastic Bottle Powders on the Behaviour of Bituminous Concrete
This article deals with the influence of the partial substitution of bitumen by a mixture of sulphur and tyre and plastic bottle powders on the characterization of asphalt concrete. The approach adopted was to subject a control asphalt concrete to level 2 formulation tests as well as those modified at 10%, 20%, 30% and 40% by substituting bitumen with a mixture of tyre powder, plastic bottle powder and sulphur at 40%, 28% and 32% respectively. The results of the PCG, Duriez and rutting tests carried out on the control and modified bituminous concretes (manufactured using the wet process) revealed three (03) major findings, in particular with regard to workability, resistance to simple compression and rutting. The experimental results show an increasing trend in the essential parameters. At 40% substitution, there was a 22.73% increase in compactness, reflecting a significant improvement in the material’s workability. With regard to simple compressive strength, the increase is 34.02% at 40% substitution, highlighting the limitation of crack formation and propagation under heavy precipitation. With regard to rutting, the 16% drop in susceptibility at 40% substitution reflects a significant improvement in the behaviour of the material under dynamic mechanical stresses in heavy precipitation. The improvement in these behaviours results from the insertion of the plastic bottle powder into the interstices of the granular skeleton, thus reducing its cellular structure, and also from the interactions between the sulphur with the tyre powder and the sulphur with the plastic bottle powder, i.e. cross-linking or vulcanisation.
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