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İnce Kumlu Mühendislik Dolgularının Fiziksel Özellikleri Üzerine Pozzolan-Kireç Stabilizasyonunun Değerlendirilmesi

Year 2020, Volume: 8 Issue: 1, 80 - 90, 05.03.2020
https://doi.org/10.36306/konjes.698634

Abstract

Gevşemiş kumlar, mukavemet eksikliğinden dolayı depreme karşı hassastır ve doymuş kumlar bile sıvılaştırılabilir. Gevşek ince kumlardaki sorunları ele almak için, bu makalede, zemin iyileştirme için pozzolanik yöntemlerden biri olan hidratlı kireç ve zeolit, ince kumlu zeminlerin sıkıştırma özelliklerini geliştirmek için birlikte kullanılmıştır. İnce kumlu zeminlerin pratik olarak sıkıştırılmasına yardımcı olmak için, işlenmiş zeminin yüzde 3,4 ve 5 oranında kireç ve yüzde 8,10 ve 12 oranında zeolitle birlikte fiziksel özellikleri incelenmiştir. Maksimum kuru yoğunluğu ve indeks boşluk oranlarını elde etmek için bir seri Proctor testi, zeminin Özgül ağırlığı ve asgari endeksi yoğunluk yapılmıştır. Ek olarak, zeolitinhidrasyon hızı, hidrasyon işleminin etkin süresini ölçmek için modellenmiştir. Sonuçlar, zeolit uygulamasının daha iyi bir sıkıştırma özelliğine yol açtığını, ancak yalnızca kireçle muamele edilmiş topraklarda herhangi bir gelişme olmadığını göstermiştir.

References

  • Ahmadi, B., &Shekarchi, M. (2010). Use of natural Zeolite as a supplementary cementitious material. Cement and Concrete Composites, 32(2), 134-141.
  • da Silva, W. R. L., Šmilauer, V., &Štemberk, P. (2015). Upscaling semi-adiabatic measurements for simulating temperature evolution of mass concrete structures. Materials and Structures, 48(4), 1031-1041.
  • Jamhiri, B., &Parsaeimaram, M. (2019). Study on Integrated Liquefaction Hazard Mapping Developed by SPT, CPT, Downhole and LPI Index. Geological Behavior (GBR), 3(2), 6-14.
  • Jamhiri, B., Ebrahimi Fahadani, A., X, Yongfu. (2020). Investigating uncertainties in the source-site and the model-input within reliability-based deterministic and probabilistic liquefaction initiation analyses. Disaster Advances, 13(2), 55-62.
  • Jendele, L., Šmilauer, V., &Červenka, J. (2014). Multiscale hydro-thermo-mechanical model for early-age and mature concrete structures. Advances in Engineering Software, 72, 134-146.
  • Karakurt, C., &Topçu, İ. B. (2011). Effect of blended cements produced with natural Zeolite and industrial by-products on alkali-silica reaction and sulfate resistance of concrete. Construction and Building Materials, 25(4), 1789-1795.
  • Krolo, P. E. T. A. R., Krstulovic, R., Dabic, P., &Bubic, A. (2005). Hydration and leaching of the cement-zeolite composite. Ceramics- Silikaty, 49(3), 213-219.
  • Mertens, G., Snellings, R., Van Balen, K., Bicer-Simsir, B., Verlooy, P., &Elsen, J. (2009). Pozzolanic reactions of common natural Zeolites with lime and parameters affecting their reactivity. Cement and Concrete Research, 39(3), 233-240.
  • Najimi, M., Sobhani, J., Ahmadi, B., &Shekarchi, M. (2012). An experimental study on durability properties of concrete containing Zeolite as a highly reactive natural Pozzolan. Construction and Building Materials, 35, 1023-1033.
  • Snellings, R., Mertens, G., Cizer, Ö., &Elsen, J. (2010). Early age hydration and pozzolanic reaction in natural zeolite blended cements: Reaction kinetics and products by in situ synchrotron X-ray powder diffraction. Cement and Concrete Research, 40(12), 1704-1713
  • Snellings, R., Mertens, G., Hertsens, S., &Elsen, J. (2009). The Zeolite–lime Pozzolanic reaction: Reaction kinetics and products by in situ synchrotron X-ray powder diffraction. Microporous and mesoporous Materials, 126(1), 40-49.
  • Valipour, M., Pargar, F., Shekarchi, M., &Khani, S. (2013). Comparing a natural Pozzolan, Zeolite, to metakaolin and silica fume in terms of their effect on the durability characteristics of concrete: A laboratory study. Construction and Building Materials, 41, 879-888.
  • Varela, M. B., Ramírez, S. M., Ereña, I., Gener, M., & Carmona, P. (2006). Characterization and Pozzolanicity of zeolitic rocks from two Cuban deposits. Applied Clay Science, 33(2), 149-159.
  • Vogiatzis, D., Kantiranis, N., Filippidis, A., Tzamos, E., &Sikalidis, C. (2012). Hellenic Natural Zeolite as a replacement of sand in mortar: Mineralogy monitoring and evaluation of its influence on mechanical properties. Geosciences, 2(4), 298-307.

EVALUATION OF POZZOLAN-LIME STABILIZATION ON PHYSICAL PROPERTIES OF FINE SANDY ENGINEERING FILLS

Year 2020, Volume: 8 Issue: 1, 80 - 90, 05.03.2020
https://doi.org/10.36306/konjes.698634

Abstract

Loose sands are susceptible to the earthquake due to lack of strength and even saturated sands may experience liquefaction. To address problems in loose fine sands, in this article, hydrated lime and zeolite as one of the pozzolanic methods for soil improvement are instrumented together to improve fine sandy soils’ compaction properties. To provide aid for practical compaction of fine sandy soils, physical properties of treated soils with 3, 4 and 5 percent of lime and 8, 10 and 12 percent of zeolite are investigated. A series of Proctor tests, Specific Gravity of soil’s solids and Minimum Index Density was performed to obtain maximum dry density and index void ratios. Additionally, the hydration rate of zeolite is modeled by Arrhenius method to quantify the effective duration of hydration process. Results showed that application of zeolite led to a better compaction property while treated soils only with lime did not show any improvement.

References

  • Ahmadi, B., &Shekarchi, M. (2010). Use of natural Zeolite as a supplementary cementitious material. Cement and Concrete Composites, 32(2), 134-141.
  • da Silva, W. R. L., Šmilauer, V., &Štemberk, P. (2015). Upscaling semi-adiabatic measurements for simulating temperature evolution of mass concrete structures. Materials and Structures, 48(4), 1031-1041.
  • Jamhiri, B., &Parsaeimaram, M. (2019). Study on Integrated Liquefaction Hazard Mapping Developed by SPT, CPT, Downhole and LPI Index. Geological Behavior (GBR), 3(2), 6-14.
  • Jamhiri, B., Ebrahimi Fahadani, A., X, Yongfu. (2020). Investigating uncertainties in the source-site and the model-input within reliability-based deterministic and probabilistic liquefaction initiation analyses. Disaster Advances, 13(2), 55-62.
  • Jendele, L., Šmilauer, V., &Červenka, J. (2014). Multiscale hydro-thermo-mechanical model for early-age and mature concrete structures. Advances in Engineering Software, 72, 134-146.
  • Karakurt, C., &Topçu, İ. B. (2011). Effect of blended cements produced with natural Zeolite and industrial by-products on alkali-silica reaction and sulfate resistance of concrete. Construction and Building Materials, 25(4), 1789-1795.
  • Krolo, P. E. T. A. R., Krstulovic, R., Dabic, P., &Bubic, A. (2005). Hydration and leaching of the cement-zeolite composite. Ceramics- Silikaty, 49(3), 213-219.
  • Mertens, G., Snellings, R., Van Balen, K., Bicer-Simsir, B., Verlooy, P., &Elsen, J. (2009). Pozzolanic reactions of common natural Zeolites with lime and parameters affecting their reactivity. Cement and Concrete Research, 39(3), 233-240.
  • Najimi, M., Sobhani, J., Ahmadi, B., &Shekarchi, M. (2012). An experimental study on durability properties of concrete containing Zeolite as a highly reactive natural Pozzolan. Construction and Building Materials, 35, 1023-1033.
  • Snellings, R., Mertens, G., Cizer, Ö., &Elsen, J. (2010). Early age hydration and pozzolanic reaction in natural zeolite blended cements: Reaction kinetics and products by in situ synchrotron X-ray powder diffraction. Cement and Concrete Research, 40(12), 1704-1713
  • Snellings, R., Mertens, G., Hertsens, S., &Elsen, J. (2009). The Zeolite–lime Pozzolanic reaction: Reaction kinetics and products by in situ synchrotron X-ray powder diffraction. Microporous and mesoporous Materials, 126(1), 40-49.
  • Valipour, M., Pargar, F., Shekarchi, M., &Khani, S. (2013). Comparing a natural Pozzolan, Zeolite, to metakaolin and silica fume in terms of their effect on the durability characteristics of concrete: A laboratory study. Construction and Building Materials, 41, 879-888.
  • Varela, M. B., Ramírez, S. M., Ereña, I., Gener, M., & Carmona, P. (2006). Characterization and Pozzolanicity of zeolitic rocks from two Cuban deposits. Applied Clay Science, 33(2), 149-159.
  • Vogiatzis, D., Kantiranis, N., Filippidis, A., Tzamos, E., &Sikalidis, C. (2012). Hellenic Natural Zeolite as a replacement of sand in mortar: Mineralogy monitoring and evaluation of its influence on mechanical properties. Geosciences, 2(4), 298-307.
There are 14 citations in total.

Details

Primary Language English
Subjects Engineering
Journal Section Research Article
Authors

Babak Jamhırı This is me 0000-0002-1462-7109

Publication Date March 5, 2020
Submission Date February 28, 2019
Acceptance Date June 26, 2019
Published in Issue Year 2020 Volume: 8 Issue: 1

Cite

IEEE B. Jamhırı, “EVALUATION OF POZZOLAN-LIME STABILIZATION ON PHYSICAL PROPERTIES OF FINE SANDY ENGINEERING FILLS”, KONJES, vol. 8, no. 1, pp. 80–90, 2020, doi: 10.36306/konjes.698634.