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再生材料对泡沫沥青冷拌混合料性能的影响

The Influence of Recycled Materials on Cold Mix with Foamed Bitumen Properties.

作者信息

Buczyński Przemysław, Šrámek Juraj, Mazurek Grzegorz

机构信息

Department of Transportation Engineering, Faculty of Civil Engineering and Architecture, Kielce University of Technology, Al. Tysiąclecia Państwa Polskiego 7, 25-314 Kielce, Poland.

Department of Construction Management, University of Zilina, Univerzitna 8215/1, 010 26 Zilina, Slovakia.

出版信息

Materials (Basel). 2023 Jan 31;16(3):1208. doi: 10.3390/ma16031208.

Abstract

The utilization of recycled materials is an important issue in the context of environmental protection. The large amounts of recycled material recovered from the demolition of asphalt road structures indicate the need to find new ways of utilizing them. In the case of road renovation projects, large amounts of recycled materials are, in most cases, recovered in the form of reclaimed asphalt pavement (RAP), reclaimed concrete (RC) and recycled aggregate (RA). To focus on the effects of the use of recovered materials (RAP, RC and RA), the same composition was used for all of the analyzed mixtures in terms of foamed bitumen (FB) and Portland cement (CEM) content. The scope of laboratory tests included the specification of the following parameters: the amount of air void content Vm, the determination of axial compression strength at +25 °C, indirect tensile strength (ITS) at +25 °C, water resistance, TSR, water and frost resistance, WR stiffness modulus (IT-CY) at 13 °C, dynamic dynamicmodulus. The plan of the experiment assumed addition recycled material in quantities between 20% and 80% in increments of 20%. The obtained results indicate that both the type and quantity of recycled material significantly affect the properties of the cold-recycled mixture with foamed bitumen. Using reclaimed asphalt pavement and recycled cement concrete guarantees high levels of stiffness in the recycled mixture. Howeverin the case of recycled aggregate, the authors did not observe any visible changes in the dynamicdynamic modulus, irrespective of the loading conditions. It was also indicated that it is necessary to reduce the quantity of reclaimed asphalt pavement in the composition of the FB-RCM mix to maintain the required air void content.

摘要

在环境保护背景下,回收材料的利用是一个重要问题。从拆除沥青道路结构中回收的大量材料表明需要找到新的利用方式。在道路翻新项目中,大多数情况下,大量回收材料是以再生沥青路面(RAP)、再生混凝土(RC)和再生骨料(RA)的形式回收的。为了关注回收材料(RAP、RC和RA)的使用效果,就泡沫沥青(FB)和波特兰水泥(CEM)含量而言,所有分析混合物都采用了相同的成分。实验室测试范围包括以下参数的确定:空隙率Vm、+25°C时的轴向抗压强度、+25°C时的间接抗拉强度(ITS)、耐水性、TSR、耐水和抗冻性、13°C时的WR刚度模量(IT-CY)、动态模量。实验计划假定以20%的增量添加20%至80%之间数量的回收材料。所得结果表明,回收材料的类型和数量均显著影响泡沫沥青冷再生混合物的性能。使用再生沥青路面和再生水泥混凝土可确保再生混合物具有较高的刚度水平。然而,对于再生骨料,无论加载条件如何,作者均未观察到动态模量有任何明显变化。研究还表明,有必要减少FB-RCM混合料成分中再生沥青路面的数量,以维持所需的空隙率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/61f1/9919279/2532f04fd0f4/materials-16-01208-g001.jpg

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