Rogala Wojciech, Anysz Hubert, Narloch Piotr
Institute of Construction Engineering, Faculty of Civil Engineering, Warsaw University of Technology, 00-637 Warsaw, Poland.
Materials (Basel). 2021 Mar 12;14(6):1390. doi: 10.3390/ma14061390.
The main advantage of the structural composite material known as cement-stabilized rammed earth (CSRE) is that it can be formulated as a sustainable and cost-saving solution. The use of the aggregates collected very close to a construction site allows economizing on transportation costs. Another factor that makes sustainability higher and the costs lower is a small addition of cement to the CSRE in comparison to the regular concrete. However, the low cement content makes the compressive strength of this structural material sensitive to other factors. One of them is the composition of the aggregates. Considering the fact that they are obtained locally, without full laboratory control of their composition, achieving the required compressive strength of CSRE is a challenge. To assess the possibility of achieving a certain compressive strength of CSRE, based on its core properties, the innovative algorithm of designing CSRE is proposed. Based on 582 crash-test of CSRE samples of different composition and compaction levels, along with the use of association analysis, the spreadsheet application is created. Applying the algorithm and the spreadsheet, it is possible to design the composition of CSRE with high confidence of achieving the required compressive strength. The algorithm considers a random character of aggregates locally collected and proposes multiple possible ways of increasing the confidence. They are verified through innovatively applied association analyses in the enclosed spreadsheet.
被称为水泥稳定夯实土(CSRE)的结构复合材料的主要优点在于,它可以被配置成一种可持续且节省成本的解决方案。使用在建筑工地附近采集的骨料能够节省运输成本。与普通混凝土相比,在CSRE中添加少量水泥,这是另一个提高可持续性并降低成本的因素。然而,水泥含量低使得这种结构材料的抗压强度对其他因素敏感。其中一个因素是骨料的成分。鉴于它们是在当地获取的,没有对其成分进行全面的实验室控制,要达到CSRE所需的抗压强度是一项挑战。为了评估基于CSRE的核心特性实现一定抗压强度的可能性,提出了设计CSRE的创新算法。基于对不同成分和压实水平的CSRE样本进行的582次抗压试验,结合关联分析的运用,创建了电子表格应用程序。应用该算法和电子表格,可以高置信度地设计出能达到所需抗压强度的CSRE成分。该算法考虑了当地采集骨料的随机性,并提出了多种提高置信度的可能方法。它们通过在随附的电子表格中创新性应用的关联分析进行验证。