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Effects of compaction method and rubber content on the properties of concrete paving blocks

机译:压实方法和橡胶含量对混凝土铺路砖性能的影响

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摘要

A wide variety of recycled waste has been successfully used in the production of concrete paving blocks. It is known that the mechanical properties of these concrete products tend to be inconsistent, which is understandable in view of the range of mix designs as well as the variety of materials and compaction methods that were adopted in the production. In this study, recycled waste tyre (crumb rubber) was used to replace sand by volume at the level of 0%, 10%, 20% and 30% in order to investigate how the soft rubber particles behave under plant-machine compaction method during the production of rubberized concrete paving blocks (RCPB). In the hardened stage, the physical properties as well as mechanical properties of RCPB including density, compressive strength, bending strength and skid resistance were studied. The results showed that as a small proportion (~10%) of soft rubber particles was included in the mixture, the particles easily distorted and filled the voids between the solid particles. This filling mechanism reduced the porosity of concrete mixtures and effectively developed an adequate adhesion between the particles, resulting in higher gain in strengths. On the contrary, as the rubber ratio increased more than 10%, which the deformability is more predominant than the filling mechanism, this results in higher total stress concentrations and rebound stress of rubber particles, thus, increasing the porosity and micro-cracks, resulting in loss in strengths. Nevertheless, the presence of rubber in concrete did not demonstrate brittle failure, but rather a ductile which had an ability to withstand post-failure loads. In comparison, the mechanical properties of plant-made RCPB performed better than that of corresponding manually-made RCPB. Therefore, plant-compaction method is recommended for future RCPB production and crumb rubber content used to replace sand by volume should be kept at or less than 10%.
机译:各种各样的回收废料已成功地用于生产混凝土铺路砖。已知这些混凝土产品的机械性能趋于不一致,鉴于混合设计的范围以及生产中采用的各种材料和压实方法,这是可以理解的。在这项研究中,为了研究软橡胶颗粒在工厂-机器压实方法下的表现,使用了再生废轮胎(小块橡胶)以0%,10%,20%和30%的水平代替沙子。橡胶混凝土铺路砖(RCPB)的生产。在硬化阶段,研究了RCPB的物理性能以及机械性能,包括密度,抗压强度,抗弯强度和抗滑性。结果表明,当混合物中包含少量(〜10%)的软橡胶颗粒时,颗粒容易变形并填充了固体颗粒之间的空隙。这种填充机制降低了混凝土混合物的孔隙率,并有效地在颗粒之间形成了足够的附着力,从而提高了强度。相反,当橡胶比率增加10%以上时,其可变形性比填充机理更重要,这导致橡胶颗粒的总应力集中和回弹应力更高,从而增加了孔隙率和微裂纹,从而导致失去优势。尽管如此,混凝土中橡胶的存在并没有显示出脆性破坏,而是具有可承受破坏后载荷的韧性。相比之下,植物制成的RCPB的机械性能要好于相应的手工制造的RCPB。因此,建议在未来的RCPB生产中采用植物压实法,并且按体积代替砂子的碎屑橡胶含量应保持在10%以下。

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