Geotechnical characterization of an innovative soil stabilization product (Aggrebind/Road Master) usable in the construction, rehabilitation and maintenance of road infrastructure and the construction of social housing in Cameroon

Conrad Dieudonné Bébé Ndi, Boris Nouaye, M. Mbessa, Robert D. Friedman
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Abstract

Building roads in developing countries has always been very expensive. An efficient and more affordable method is needed. AggreBind’s soil stabilization solutions, known as RoadMaster (RM1 / RM2) and AggreBind (AGB-WT/BT) are offered. The objective of the present study was to make a geotechnical characterization of this product with a view towards its use in the construction, rehabilitation and maintenance of road infrastructure in Cameroon.A series of laboratory tests were carried out; soil identification tests (particle size analysis, Atterberg limits), lift tests (Proctor and modified CBR test), determination of the optimum water content of the material, maximum dry density, immediate CBR index and the CBR index after immersion for 4 days.Only the 95% OPM CBR test was carried out on the soil with the additive AGB-WT/RM1 in order to characterize the effects of the product on the soil.In conclusion, AggreBind/RoadMaster can provide stable, dust-free roads and stabilized base courses for general roads and highways that meet or exceed the bearing capacity requirements of international road specifications. In addition, the use of this product reduces the cost of road construction by 40% to60% and increases in-situ load bearing capacity by 400% to 600%.
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一种创新的土壤稳定产品(Aggrebind/Road Master)的岩土工程特性,可用于喀麦隆道路基础设施的建设、修复和维护以及社会住房的建设
在发展中国家修建道路一直是非常昂贵的。需要一种更有效、更经济的方法。AggreBind的土壤稳定解决方案,被称为RoadMaster (RM1 / RM2)和AggreBind (AGB-WT/BT)。本研究的目的是对这种产品进行地质技术鉴定,以期将其用于喀麦隆道路基础设施的建造、修复和维修。进行了一系列实验室测试;土壤鉴定试验(粒度分析、Atterberg极限)、升力试验(Proctor和改进的CBR试验)、测定材料的最佳含水量、最大干密度、即时CBR指数和浸泡4天后的CBR指数。为了表征该产品对土壤的影响,仅在添加AGB-WT/RM1的土壤上进行了95% OPM CBR试验。综上所述,AggreBind/RoadMaster可以为普通道路和高速公路提供稳定、无尘的道路和稳定的基层,满足或超过国际道路规范的承载要求。此外,使用本产品可使道路施工成本降低40% ~ 60%,使原位承载能力提高400% ~ 600%。
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