Measurement of Amorphous Peat Shear Strengthin the Direct Shear Box at High Displacement Rates

The ASTM standard provides guidelines for the drained direct shear test (DST) and requires the samples to be sheared at rates estimated from time to failure, tf≥50t50 (where t50 is the time required to achieve 50% consolidation). This paper investigates the potential of estimating the undrained stre...

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Main Authors: Amuda, Akeem Gbenga, Fauzan, Sahdi, Alsidqi, Hasan, Siti Noor Linda, Taib, Boylan, Noel, Aliaa, Mohamad
Format: Article
Language:English
Published: Springer Nature Switzerland 2018
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Online Access:http://ir.unimas.my/id/eprint/31743/1/Measurement%20of%20Amorphous%20Peat%20Shear%20Strengthin%20the%20Direct%20Shear%20Box%20at%20High%20Displacement%20Rates.pdf
http://ir.unimas.my/id/eprint/31743/
https://link.springer.com/article/10.1007/s10706-018-0643-3
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spelling my.unimas.ir.317432020-09-11T07:09:15Z http://ir.unimas.my/id/eprint/31743/ Measurement of Amorphous Peat Shear Strengthin the Direct Shear Box at High Displacement Rates Amuda, Akeem Gbenga Fauzan, Sahdi Alsidqi, Hasan Siti Noor Linda, Taib Boylan, Noel Aliaa, Mohamad TA Engineering (General). Civil engineering (General) The ASTM standard provides guidelines for the drained direct shear test (DST) and requires the samples to be sheared at rates estimated from time to failure, tf≥50t50 (where t50 is the time required to achieve 50% consolidation). This paper investigates the potential of estimating the undrained strength of peat in the DST owing to its ease of accessibility and simplicity over other laboratory tests. In this experimental study, peat samples were sheared at various displacement rates at tf/t50 values of 0.065–70. The samples tested at the ASTM specified rate of tf≥50t50 exhibit continuous increase and decrease in shear stress and volume respectively with increasing shear strain. Hence, determining the drained strength properties of peat in the DST apparatus is complicated. However, it is concluded that the shear stress ratio, τ/σ′v of the DST test samples sheared at rates corresponding to tf≤0.2t50, reasonably corresponds to that measured in undrained direct simple shear (DSS) tests on peat, found in the literature. Therefore, DST conducted at high displacement rates will be adequate for preliminary evaluation of the shear strength of peat at close to undrained conditions, when constant volume DSS apparatus is not available. Springer Nature Switzerland 2018 Article PeerReviewed text en http://ir.unimas.my/id/eprint/31743/1/Measurement%20of%20Amorphous%20Peat%20Shear%20Strengthin%20the%20Direct%20Shear%20Box%20at%20High%20Displacement%20Rates.pdf Amuda, Akeem Gbenga and Fauzan, Sahdi and Alsidqi, Hasan and Siti Noor Linda, Taib and Boylan, Noel and Aliaa, Mohamad (2018) Measurement of Amorphous Peat Shear Strengthin the Direct Shear Box at High Displacement Rates. Geotechnical and Geological Engineering, 37. pp. 1059-1072. https://link.springer.com/article/10.1007/s10706-018-0643-3 10.1007/s10706-018-0643-3
institution Universiti Malaysia Sarawak
building Centre for Academic Information Services (CAIS)
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaysia Sarawak
content_source UNIMAS Institutional Repository
url_provider http://ir.unimas.my/
language English
topic TA Engineering (General). Civil engineering (General)
spellingShingle TA Engineering (General). Civil engineering (General)
Amuda, Akeem Gbenga
Fauzan, Sahdi
Alsidqi, Hasan
Siti Noor Linda, Taib
Boylan, Noel
Aliaa, Mohamad
Measurement of Amorphous Peat Shear Strengthin the Direct Shear Box at High Displacement Rates
description The ASTM standard provides guidelines for the drained direct shear test (DST) and requires the samples to be sheared at rates estimated from time to failure, tf≥50t50 (where t50 is the time required to achieve 50% consolidation). This paper investigates the potential of estimating the undrained strength of peat in the DST owing to its ease of accessibility and simplicity over other laboratory tests. In this experimental study, peat samples were sheared at various displacement rates at tf/t50 values of 0.065–70. The samples tested at the ASTM specified rate of tf≥50t50 exhibit continuous increase and decrease in shear stress and volume respectively with increasing shear strain. Hence, determining the drained strength properties of peat in the DST apparatus is complicated. However, it is concluded that the shear stress ratio, τ/σ′v of the DST test samples sheared at rates corresponding to tf≤0.2t50, reasonably corresponds to that measured in undrained direct simple shear (DSS) tests on peat, found in the literature. Therefore, DST conducted at high displacement rates will be adequate for preliminary evaluation of the shear strength of peat at close to undrained conditions, when constant volume DSS apparatus is not available.
format Article
author Amuda, Akeem Gbenga
Fauzan, Sahdi
Alsidqi, Hasan
Siti Noor Linda, Taib
Boylan, Noel
Aliaa, Mohamad
author_facet Amuda, Akeem Gbenga
Fauzan, Sahdi
Alsidqi, Hasan
Siti Noor Linda, Taib
Boylan, Noel
Aliaa, Mohamad
author_sort Amuda, Akeem Gbenga
title Measurement of Amorphous Peat Shear Strengthin the Direct Shear Box at High Displacement Rates
title_short Measurement of Amorphous Peat Shear Strengthin the Direct Shear Box at High Displacement Rates
title_full Measurement of Amorphous Peat Shear Strengthin the Direct Shear Box at High Displacement Rates
title_fullStr Measurement of Amorphous Peat Shear Strengthin the Direct Shear Box at High Displacement Rates
title_full_unstemmed Measurement of Amorphous Peat Shear Strengthin the Direct Shear Box at High Displacement Rates
title_sort measurement of amorphous peat shear strengthin the direct shear box at high displacement rates
publisher Springer Nature Switzerland
publishDate 2018
url http://ir.unimas.my/id/eprint/31743/1/Measurement%20of%20Amorphous%20Peat%20Shear%20Strengthin%20the%20Direct%20Shear%20Box%20at%20High%20Displacement%20Rates.pdf
http://ir.unimas.my/id/eprint/31743/
https://link.springer.com/article/10.1007/s10706-018-0643-3
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