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The Modelling of Soil-Binder Composites

The Modelling of Soil-Binder Composites AbstractThe development of an appropriate soil-binder composite (stabilized soil) is associated with the selection of the appropriate strength class of the hydraulic binder (e.g. ash-cement) and its amount to stabilize the soil. Advanced statistical methods based on the use of the spline function were used in the analysis of tests of soil-binder composites. The analysis presents statistical modelling as a tool helpful in the design of soil-binder composites, showing possible interactions between the components of materials included in the mineral composition of composites. A logarithmic model of the compressive stress forecast was developed for soil-binder composites both with freezing cycles of the soil composition and without freezing cycles, in which the composites hardening time and the addition of ash-cement binders to the soil were continuous variables. http://www.deepdyve.com/assets/images/DeepDyve-Logo-lg.png Acta Scientiarum Polonorum Architectura de Gruyter

The Modelling of Soil-Binder Composites

The Modelling of Soil-Binder Composites

Acta Scientiarum Polonorum Architectura , Volume 21 (1): 6 – Mar 1, 2022

Abstract

AbstractThe development of an appropriate soil-binder composite (stabilized soil) is associated with the selection of the appropriate strength class of the hydraulic binder (e.g. ash-cement) and its amount to stabilize the soil. Advanced statistical methods based on the use of the spline function were used in the analysis of tests of soil-binder composites. The analysis presents statistical modelling as a tool helpful in the design of soil-binder composites, showing possible interactions between the components of materials included in the mineral composition of composites. A logarithmic model of the compressive stress forecast was developed for soil-binder composites both with freezing cycles of the soil composition and without freezing cycles, in which the composites hardening time and the addition of ash-cement binders to the soil were continuous variables.

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Publisher
de Gruyter
Copyright
© 2022 Leszek Rafalski et al., published by Sciendo
eISSN
2544-1760
DOI
10.22630/aspa.2022.21.1.1
Publisher site
See Article on Publisher Site

Abstract

AbstractThe development of an appropriate soil-binder composite (stabilized soil) is associated with the selection of the appropriate strength class of the hydraulic binder (e.g. ash-cement) and its amount to stabilize the soil. Advanced statistical methods based on the use of the spline function were used in the analysis of tests of soil-binder composites. The analysis presents statistical modelling as a tool helpful in the design of soil-binder composites, showing possible interactions between the components of materials included in the mineral composition of composites. A logarithmic model of the compressive stress forecast was developed for soil-binder composites both with freezing cycles of the soil composition and without freezing cycles, in which the composites hardening time and the addition of ash-cement binders to the soil were continuous variables.

Journal

Acta Scientiarum Polonorum Architecturade Gruyter

Published: Mar 1, 2022

Keywords: soil stabilization; soil-binder composite; modelling of composites

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