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Possibility Of Using Waste Tire Rubber And Fly Ash With Portland Cement As Construction Materials

机译:使用废轮胎橡胶和粉煤灰与硅酸盐水泥作为建筑材料的可能性

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摘要

The growing amount of waste rubber produced from used tires has resulted in an environmental problem. Recycling waste tires has been widely studied for the last 20 years in applications such as asphalt pavement, waterproofing systems and membrane liners. The aim of this study is to evaluate the feasibility of utilizing fly ash and rubber waste with Portland cement as a composite material for masonry applications. Class C fly ash and waste automobile tires in three different sizes were used with Portland cement. Compressive and flexural strength, dry unit weight and water absorption tests were performed on the composite specimens containing waste tire rubber. The compressive strength decreased by increasing the rubber content while increased by increasing the fly ash content for all curing periods. This trend is slightly influenced by particle size. For flexural strength, the specimens with waste tire rubber showed higher values than the control mix probably due to the effect of rubber fibers. The dry unit weight of all specimens decreased with increasing rubber content, which can be explained by the low specific gravity of rubber particles. Water absorption decreased slightly with the increase in rubber particles size. These composite materials containing 10% Portland cement, 70% and 60% fly ash and 20% and 30% tire rubber particles have sufficient strength for masonry applications.
机译:由废轮胎产生的废橡胶的数量增加导致了环境问题。在过去的20年中,回收废轮胎已在沥青路面,防水系统和膜衬等应用中得到了广泛的研究。这项研究的目的是评估将粉煤灰和橡胶废料与硅酸盐水泥作为砖石应用复合材料的可行性。三种不同尺寸的C级粉煤灰和废旧汽车轮胎与波特兰水泥一起使用。对包含废轮胎橡胶的复合样品进行抗压和抗折强度,干重和吸水率测试。在所有固化期间,通过增加橡胶含量可降低抗压强度,而通过增加粉煤灰含量可提高抗压强度。这种趋势受粒度的影响很小。对于弯曲强度,废轮胎橡胶的样品显示出比对照混合物更高的值,这可能是由于橡胶纤维的影响。所有样品的干燥单位重量均随橡胶含量的增加而降低,这可以用橡胶颗粒的低比重来解释。随着橡胶颗粒尺寸的增加,吸水率略有下降。这些包含10%的波特兰水泥,70%和60%的粉煤灰以及20%和30%的轮胎橡胶颗粒的复合材料具有足够的强度,可用于石工应用。

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  • 来源
    《Waste Management》 |2009年第5期|1541-1546|共6页
  • 作者单位

    Balikesir University, Engineering and Architecture Faculty, Department of Civil Engineering, Cagis Campus, 10145 Balikesir, Turkey;

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  • 正文语种 eng
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