再生塑料废弃物与水泥对路面亚基稳定的影响

H. Ziani, Sadek Deboucha, Abderrachid Amriou, Hayat Touati, Inès Kebaili
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引用次数: 1

摘要

在道路建设中利用再生废物是各国可持续发展的一部分。塑料垃圾造成了生态问题,因为它不能生物降解。回收这些废物,在不同的地区重复使用,似乎是一个解决方案,以减少它。本文致力于使用各种再生塑料废物(RPW)(5%和10%)的添加剂,不含波特兰水泥化合物(PCC)(2%和4%),在普罗克特最佳润湿,以稳定Tixter干港(阿尔及利亚)连接高速公路的路段的基础层。结果表明,RPW可使土壤的CBR (California Bearing比)提高约139.32%,而5% RPW加2% PCC可使未浸渍土的CBR达到386.59%,浸渍土的CBR达到404.54%。而在UCS(无侧限抗压强度)试验中,分别添加5% RPW和4% PCC的样品,在浸泡和未浸泡的情况下,抗压强度从0增加到1471.18 KPa,从754.67KPa增加到2051.53KPa。这项研究为找到合适的土壤- rpw - pcc组合来稳定未来的道路提供了机会。
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 Recycled Plastic Waste and Cement on Pavement Sub-Base Stabilization
The use of recycled waste in road construction is part of the sustainable development of countries. Plastic waste poses an ecological problem because it is not biodegradable. Recycling this waste to reuse it in different areas seems to be a solution to reduce it. This article is devoted to the use of varieties of additions of recycled plastic waste (RPW) (5 and 10%) without and with Portland cement compound (PCC) (2 and 4%) moistened at the Proctor optimum, to stabilize the foundation layer of the section of the road connecting the highway at the Tixter dry port (Algeria). The results showed, that RPW increases the CBR (California Bearing Ration) of S0 approximately to 139.32%, however the use of 5% of RPW with 2% of PCC raises the CBR of the soil to 386.59% in unsoaked samples and 404.54% in soaked samples. Whereas, UCS (Unconfined Compressive Strength) tests, is marked by increases in compressive strength from 0 to1471.18 KPa and from 754.67KPa to 2051.53KPa of samples dosed with 5% RPW and 4% PCC, soaked and unsoaked respectively. This study offers the opportunity to find the right soil-RPW-PCC combination to stabilize future roads.
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