assessment of strength development in blended cement admixed bangkok clay

Assessment Of Strength Development In Blended Cement Admixed Bangkok Clay

Assessment of strength development in blended cement ...

Apr 01, 2011 · The generalized strength development for the FA and BA blended cement admixed Bangkok clay is presented in the form (vide Fig. 11): (5) q D q 28 = 0.026 + 0.293 ln D where q D is the strength after D days of curing, q 28 is the 28 day-strength, D is the curing time (days).

Assessment of strength development in blended cement ...

The relationship among strength, clay–water/cement ratio, and curing time for the blended cement admixed Bangkok clay is finally developed and verified. It is useful to assess the strength at any curing time wherein water content, cement content, and ash content vary over a wide range by using the test result of a single laboratory trial. For the economic mix design (the most effective dispersing …

Assessment of strength development in blended cement ...

The present stone attemptsto analyze and assess the laboratory strength development in the blended cement admixed Bangkok clay. Two blended cements were used in this study, which are the fly ash blended cement and the biomass ash blended cement. The role of both the ashes on the cementitious products and the strength development is illustrated.

Assessment of strength development in blended cement ...

The relationship among strength, clay–water/ cement ratio, and curing time for the blended cement admixed Bangkok clay is finally developed and ver-ified. It is useful to assess the strength at any...

Assessment of strength development in cement-admixed ...

Oct 04, 2012 · Once 12.6% GX07 is added into the mix, the strength of stabilized soil is 4.93 times compared with that of cement-only soil. GX07 can obviously improve the strength of cemented-soil and has a good economic applicability. A strength model is proposed to predict strength development. This is a preview of subscription content, log in to check access.

STRENGTH DEVELOPMENT IN CEMENT ADMIXED BANGKOK …

strength development in the cement admixed Bangkok clay in both laboratory and ˆeld improvements. The framework of the analysis of the laboratory strength de-velopment is the clay-water/cement ratio hypothesis (Horpibulsuk and Miura, 2001; Miura et al., 2001) and the Abrams law (Abrams, 1918). The eŠect of the execu-

STRENGTH DEVELOPMENT IN CEMENT ADMIXED BANGKOK CLAY ...

In this paper, an attempt is made to identify the critical factors governing the strength development in cement admixed Bangkok clay in both the laboratory and the field. It is found that clay-water/cement ratio, w c / C is the prime parameter controlling the laboratory strength development when the liquidity index varies between 1 and 2.

Strength development in blended cement admixed saline clay ...

Jan 01, 2012 · The generalized strength development for the FA and BA blended cement admixed saline clay is presented in the form (vide Fig. 13): (4) q D q 28 = 0.099 + 0.281 ln D where q D is the strength after D days of curing, q 28 is the 28 day-strength and D is the curing time (days).

Strength development in blended cement admixed saline clay

63 ratio hypothesis is successfully used to analyze and assess the strength development of 64 blended cement admixed saline clay at various salt contents. An addition of 25% ash can save 65 on the input of cement up to 15.8%.

Applied Clay Science

The clay-water/cement ratio hypothesis was used suc- cessfully to analyze and assess the strength development of blended cement admixed saline clay at various salt contents. An addition of 25% ash can replace up to 15.8% of cement. © 2011 Elsevier B.V.

Strength and Pore Structure Development of High-Plasticity ...

S. Horpibulsuk, R. Rachan, and A. Suddeepong, “Assessment of strength development in blended cement admixed Bangkok clay,” Construction and Building Materials, vol. 25, no. 4, pp. 1521–1531, 2011. View at: Publisher Site | Google Scholar

Influence of Cement Treatment on Unconfined Compressive ...

Horpibulsuk S., Miura N., Nagaraj T.S.: Assessment of strength development in cement-admixed high water content clays with Abrams’ law as a basis. …

Chemical stabilization of soft Bangkok clay using the ...

Apr 01, 2013 · The plot of the strength development ratio and curing time on a logarithmic scale revealed that the blend of CCR and BA rendered a different stone reaction from cemented clay and fly ash (FA) and BA blended cement admixed clay. The strength development ratio of stabilized clay with a CCR and BA mixture exceeded those of cemented clay and FA and BA blended cement admixed clay after 28 …

Assessment of shrinkage characteristic in blended cement ...

Based on this premise, the clay– water/cement ratio hypothesis for blended cement admixed clay is proposed for analyzing and assessing the strength development.

Assessment of strength development of slag cement ...

Sep 30, 2018 · The slag cement was provided by CHC Resources Corp, a company specially processing the industry by-products into the new and useful construction materials in Taiwan .The slag cement used in this research is named “Type HSC 301 Soil improvement agents”, and is composed of water quenches slag, Portland cement type I, and some stone admixtures. . The physical and stone properties …

Strength and Microstructure of Cement Stabilized Clay ...

Based on this premise, the clay– water/cement ratio hypothesis for blended cement admixed clay is proposed for analyzing and assessing the strength development.

‪Suksun Horpibulsuk‬ - ‪Google Scholar‬

Assessment of strength development in blended cement admixed Bangkok clay S Horpibulsuk, R Rachan, A Suddeepong Construction and Building Materials 25 (4), 1521-1531 , 2011

Runglawan RACHAN | Mahanakorn University of Technology ...

Strength development in cement admixed bangkok clay: Laboratory and field investigations. Article. Apr 2011; Assessment of strength development in blended cement admixed Bangkok clay.

Biographical Data

development in cement admixed Bangkok clay: laboratory and field investigations”, Soils and Foundations, Vol.51, No.2. 5) Horpibulsuk, S., Rachan, R., and Suddeepong, A. (2011), “Assessment of strength development in blended cement admixed Bangkok clay”, Construction and Building Materials, Vol.25, No.4, pp.1521-1531.

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