Triaxial testing response of compacted iron ore tailings considering a broad spectrum of confining pressures

IF 3.3 2区 工程技术 Q2 ENGINEERING, GEOLOGICAL
João Paulo Sousa Silva , Ana Luisa Cezar Rissoli , Pedro Pazzoto Cacciari , António Joaquim Pereira Viana da Fonseca , Hugo Carlos Scheuermann Filho , Alexia Cindy Wagner , João Vítor de Azambuja Carvalho , Lucas Festugato , Nilo Cesar Consoli
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Abstract

The filtered tailings disposal (dry stacking) up to 300 m high is an alternative to overcome the drawbacks related to the slurry tailings storage in large impoundments as it is safer and demands smaller portions of the existing landform. Even so, the understanding of the denser and dewatered material response over a broad range of confining pressures is essential to safely design tall dry stacking tailings facilities. Accordingly, the present research assesses the mechanical behavior of compacted iron ore tailings through triaxial tests. A series of compression and extension drained and undrained triaxial tests were conducted over a wide spectrum of confinements (σ́3 ranging from 75 to 8,000 kPa) to check possible particle breakage occurrence and effects. The influence of the initial density due to compaction was, as well, evaluated since the tests were performed using specimens molded at distinct dry unit weight values. The results were analyzed in the light of the critical state soil mechanics and have indicated the existence of a curvilinear critical state line in the ν: log plane. Small particle breakage has occurred and can be associated with reduction in surface roughness, breakage of asperities, and reduction in particle angularity. Moreover, a tendency for static liquefaction was observed amongst the loosest specimens sheared under the lowest confining levels.

考虑到各种约束压力的压实铁矿尾矿三轴测试响应
高达 300 米的过滤式尾矿处理(干堆放)是克服在大型蓄水池中贮存浆状尾矿弊端的另一种方法,因为这种方法更安全,对现有地貌的要求也更小。尽管如此,要安全地设计高堆放尾矿设施,就必须了解较致密材料和脱水材料在各种约束压力下的反应。因此,本研究通过三轴试验评估了压实铁矿石尾矿的力学行为。在广泛的约束压力范围内(σ́3 从 75 kPa 到 8,000 kPa 不等)进行了一系列压缩和延伸排水和不排水三轴试验,以检查可能发生的颗粒破碎及其影响。由于试验使用的试样是在不同的干单位重量值下成型的,因此还对压实引起的初始密度的影响进行了评估。根据临界状态土壤力学对结果进行了分析,结果表明在 ν: log ṕ 平面上存在一条曲线临界状态线。小颗粒破损已经发生,这可能与表面粗糙度降低、尖角破损和颗粒角度减小有关。此外,在最低密实度下剪切的最松散试样中也观察到了静态液化的趋势。
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来源期刊
Soils and Foundations
Soils and Foundations 工程技术-地球科学综合
CiteScore
6.40
自引率
8.10%
发文量
99
审稿时长
5 months
期刊介绍: Soils and Foundations is one of the leading journals in the field of soil mechanics and geotechnical engineering. It is the official journal of the Japanese Geotechnical Society (JGS)., The journal publishes a variety of original research paper, technical reports, technical notes, as well as the state-of-the-art reports upon invitation by the Editor, in the fields of soil and rock mechanics, geotechnical engineering, and environmental geotechnics. Since the publication of Volume 1, No.1 issue in June 1960, Soils and Foundations will celebrate the 60th anniversary in the year of 2020. Soils and Foundations welcomes theoretical as well as practical work associated with the aforementioned field(s). Case studies that describe the original and interdisciplinary work applicable to geotechnical engineering are particularly encouraged. Discussions to each of the published articles are also welcomed in order to provide an avenue in which opinions of peers may be fed back or exchanged. In providing latest expertise on a specific topic, one issue out of six per year on average was allocated to include selected papers from the International Symposia which were held in Japan as well as overseas.
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