Determination of the Physical-Mechanical Characteristics of Non-Cohesive Soils Stabilized with Fly Ash (Part II)

S. Iriciuc, G. Gimiga, I. Gălușcă
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Abstract

Abstract The unprecedented scale of road network development programs in our country requires the consumption of materials (natural aggregates, binders), often non-renewable and expensive, which are difficult to secure from traditional sources. Alternative solutions for the replacement of natural aggregates, binders, as viable alternatives to classical technologies, the adoption and continuous development of recycling technologies are concerns of researchers, designers and road builders. So, the stabilized mixtures successfully form the sub-grade layers of the rigid road structures or both the sub-grade layers and the base layers of the semi-rigid structures (Zarojanu, 1976). Compared to traditional, untreated, thick foundations, the stabilized foundations, consisting of a series of thinner layers (assizes), with considerably increased rigidity, ensure a more judicious distribution of traffic loads for lower overall thicknesses of the road structure (Boboc, 1995).
粉煤灰稳定非粘性土物理力学特性的测定(第二部分)
我国规模空前的道路网络发展计划需要消耗的材料(天然骨料、粘合剂)往往是不可再生的和昂贵的,这些材料很难从传统来源获得。研究人员、设计人员和道路建设者所关注的是替代天然骨料、粘合剂的替代办法,作为传统技术的可行替代办法,采用和持续发展回收技术。因此,稳定的混合料成功地形成刚性道路结构的路基层或半刚性结构的路基层和基层(Zarojanu, 1976)。与传统的、未经处理的厚地基相比,稳定地基由一系列较薄的层(分层)组成,刚性大大增加,确保了交通荷载在较低的道路结构总厚度下的更合理分布(Boboc, 1995)。
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