Effects of reinforcing granular columns with fibres generated from plastic bottle waste

IF 1.6 Q3 ENGINEERING, GEOLOGICAL Geotechnical Research Pub Date : 2022-08-15 DOI:10.1680/jgere.22.00013
L. Sobhee-Beetul, D. Kalumba
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引用次数: 2

Abstract

Ordinary and reinforced granular columns were both tested in a laboratory to study the effect of internal reinforcing using plastic fibres which were generated through the recycling of post-consumer PET bottles. A series of vertical compression tests were undertaken to understand the impact of varying the moisture content of the silt bed and the fibre concentration. Prepared samples were vertically loaded up to a maximum compression of 50 mm and the load-vertical deformation characteristics were electronically recorded. Post testing, the deformation behaviour of the column was physically modelled using a paste of plaster of Paris to obtain the maximum bulging diameter. In general, reinforcing the granular columns enhanced the load carrying capacity, although the degree of improvement was dependent on the testing conditions. For experiments conducted on the softer silt beds, an increase in fibre content resulted in higher loading strengths. The largest enhancement was recorded in the test with wetter silt, and the fibre concentration was 0.1 %. This was equivalent to 3.5 times that which was recorded when an ordinary granular column was installed. In terms of lateral deformation, the smallest bulge was obtained in the test with the wetter silt and a fibre content of 0.025 %.
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用塑料瓶废料纤维加固颗粒柱的效果
普通颗粒柱和增强颗粒柱都在实验室进行了测试,以研究使用塑料纤维进行内部增强的效果,这些塑料纤维是通过回收消费后的PET瓶产生的。进行了一系列垂直压缩试验,以了解淤泥床含水率和纤维浓度变化的影响。将制备好的试样垂直加载至最大压缩50mm,并记录载荷-垂直变形特征。试验后,柱的变形行为是物理模拟使用石膏膏的巴黎,以获得最大胀形直径。总体而言,增强颗粒柱增强了承载力,但增强程度取决于试验条件。在较软的淤泥层上进行的试验中,纤维含量的增加导致了更高的加载强度。在较湿的淤泥中,纤维浓度为0.1%时,增强效果最大。这相当于安装普通颗粒柱时记录的3.5倍。在横向变形方面,当粉土较湿且纤维含量为0.025%时,试件的凸起量最小。
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来源期刊
Geotechnical Research
Geotechnical Research ENGINEERING, GEOLOGICAL-
CiteScore
4.50
自引率
26.30%
发文量
22
审稿时长
12 weeks
期刊介绍: Geotechnical Research covers the full scope of geotechnics and its related disciplines including: Soil, rock and fluid mechanics; geoenvironmental engineering; geothermal engineering; geotechnical design and construction issues; analytical and numerical methods; physical modelling; micromechanics; transportation geotechnics; engineering geology; environmental geotechnology; geochemistry; geohydrology and water management.
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