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Physico-mechanical properties of rubberized lightweight aggregate concrete for tunnel pavements

机译:隧道路面橡胶轻质骨料混凝土的物理机械性能

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Both asphalt concrete (AC) and Portland cement concrete (PCC) are limited in applications in tunnel pavements, due to special conditions in tunnel. To improve the fire resistance, durability and comfort of the tunnel pavements material, rubber particles, lightweight aggregate and polymer were added into PCC. Experimental results showed that physico-mechanical properties such as strength, rigidity, shrinkage and abrasion resistance got worse when rubber particles and lightweight aggregate were added, but when polymer was mixed, the physico-mechanical properties were enhanced dramatically. Microstructure analysis indicated that the interface transition zone (ITZ) influenced the physico-mechanical properties of concrete directly;;the ITZ bondage between rubber particles or lightweight aggregate and cement matrix was very poor, which was the main reason for the decline of physico-mechanical properties;;when polymer was mixed into the concrete, the ITZ structure were improved, which made the strain energy absorbing function of rubber particles can be exerted entirely, the flexibility and the strength of ITZ were boosted, thereby the physico-mechanical properties of concrete were improved.
机译:由于隧道的特殊条件,沥青混凝土(AC)和波特兰水泥混凝土(PCC)有限于隧道路面的应用。为了提高耐火性,隧道铺路材料,橡胶颗粒,轻质骨料和聚合物的耐久性和舒适性被加入PCC中。实验结果表明,当加入橡胶颗粒和轻质骨料时,物理机械性能如强度,刚性,收缩和耐磨性,但是当聚合物混合时,急剧增强了物理机械性能。微观结构分析表明,界面过渡区(ITZ)直接影响了混凝土的物理机械性能;橡胶颗粒或轻质聚集体和水泥基质之间的ITZ键合非常差,这是物理机械下降的主要原因特性;当聚合物混合到混凝土中时,改善了ITZ结构,这使得橡胶颗粒的应变能吸收功能可以完全施加,柔韧性和ITZ的强度升高,从而进行了混凝土的物理机械性能改善了。

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