Utilization of Ionic Organic Polymer to Improve Performance and Properties of Problematic Soils

سال انتشار: 1402
نوع سند: مقاله ژورنالی
زبان: انگلیسی
مشاهده: 75

فایل این مقاله در 19 صفحه با فرمت PDF قابل دریافت می باشد

استخراج به نرم افزارهای پژوهشی:

لینک ثابت به این مقاله:

شناسه ملی سند علمی:

JR_CEJ-9-12_005

تاریخ نمایه سازی: 2 اردیبهشت 1403

چکیده مقاله:

Problematic soils with high compressibility and low shear strength are often treated with traditional chemical stabilizing additives such as cement and lime to improve their engineering properties. Polymers were employed to improve and reinforce a variety of material qualities in a wide range of applications. The use of polymer SBS (stabilizer base stabilizer) to improve the characteristics of problematic soils is discussed in this research. Two types of soils were used. The first type, "soil A Burj," is collapsible soil and was collected from Burj El-Arab city, while the second type, "soil B Dam," is fine sand and was obtained from Damietta city. The untreated and treated samples were subjected to sieve analysis, hydrometer, liquid limits, standard compaction, collapse potential (CP), direct shear, California Bearing Ratio (CBR) testing, and SEM, TEM, chemical, and microstructural analysis tests. Three different polymer SBS concentrations in water were used (۱:۳۰۰, ۱:۱۵۰, and ۱:۱۰). The results showed that by adding the polymer SBS, LL and OWC decreased exhibiting more plastic behavior compared to the non-treated samples. Also, the CP decreased with adding the polymer SBS, and the degree of collapsibility was enhanced from trouble to moderate trouble condition. The shear strength, internal friction angle, and CBR value were also improved. In summary, the best results were produced when a polymer ratio of ۱:۱۵۰ was used and a curing time of at least ۲۸ days was provided. Doi: ۱۰.۲۸۹۹۱/CEJ-۲۰۲۳-۰۹-۱۲-۰۵ Full Text: PDF

مراجع و منابع این مقاله:

لیست زیر مراجع و منابع استفاده شده در این مقاله را نمایش می دهد. این مراجع به صورت کاملا ماشینی و بر اساس هوش مصنوعی استخراج شده اند و لذا ممکن است دارای اشکالاتی باشند که به مرور زمان دقت استخراج این محتوا افزایش می یابد. مراجعی که مقالات مربوط به آنها در سیویلیکا نمایه شده و پیدا شده اند، به خود مقاله لینک شده اند :
  • Ayeldeen, M., Negm, A., El-Sawwaf, M., & Kitazume, M. (2017). ...
  • Rezaei, M., Ajalloeian, R., & Ghafoori, M. (2012). Geotechnical Properties ...
  • Umesh, T. S., Dinesh, S. V., & Sivapullaiah, P. V. ...
  • Li, Z., Zhu, Z., Zhao, Y., Zeng, C., & Zhang, ...
  • Katha, B. R. (2002). Shrinkage strain characterization of expansive soils ...
  • Houston, S. L., Houston, W. N., Zapata, C. E., & ...
  • Cerato, A. B., Miller, G. A., & Hajjat, J. A. ...
  • Das, B. M., & Sivakugan, N. (2018). Principles of foundation ...
  • Basma, A. A., & Tuncer, E. R. (1994). Evaluation and ...
  • Abdelaziz, T. (2007). Response of Shallow Foundations resting on Collapsible ...
  • ECP-202. (2012). Egyptian Code for Soil Mechanics—Design and Construction of ...
  • Latifi, N., Marto, A., & Eisazadeh, A. (2016). Experimental Investigations ...
  • Oldham, J. C., Eaves, R. C., & White, D. W. ...
  • Waheed, M., & Asmael, N. (2018). Improvement of engineering soil ...
  • Blanck, G., Cuisinier, O., & Masrouri, F. (2013). Soil treatment ...
  • Latifi, N., Marto, A., & Eisazadeh, A. (2015). Analysis of ...
  • Orts, W. J., Roa-Espinosa, A., Sojka, R. E., Glenn, G. ...
  • Sojka, R. E., Bjorneberg, D. L., Entry, J. A., Lentz, ...
  • Al-Khanbashi, A., Mohamed, A. M.O., Moet, A. and Hadi, B. ...
  • Yang, Q. wen, Pei, X. jun, & Huang, R. qiu. ...
  • Gu, B., & Doner, H. E. (1992). The interaction of ...
  • Azzam, W. R. (2014). Utilization of polymer stabilization for improvement ...
  • Georgees, R. N., Hassan, R. A., & Evans, R. P. ...
  • Liu, J., Bai, Y., Song, Z., Lu, Y., Qian, W., ...
  • Latifi, N., Horpibulsuk, S., Meehan, C. L., Abd Majid, M. ...
  • Lora, J. H., & Glasser, W. G. (2002). Recent industrial ...
  • Sukmak, P., Horpibulsuk, S., & Shen, S. L. (2013). Strength ...
  • Hasan, S. H., & Shafiqu, Q. S. (2017). Expansive Clayey ...
  • Wang, Y., Liu, J., Lin, C., Qi, C., Chen, Z., ...
  • Mirzababaei, M., Arulrajah, A., & Ouston, M. (2017). Polymers for ...
  • Mousavi, F., Abdi, E., & Rahimi, H. (2014). Effect of ...
  • Xia, W., Wang, Q., Yu, Q., Yao, M., Sun, D., ...
  • Shafiqu, Q. S. M., & Hasan, S. H. (2018). Improvement ...
  • Geng, L., Liu, Y., Xu, Q., Han, F., Yu, X., ...
  • ASTM D421. (2007). Standard Practice for Dry Preparation of Soil ...
  • ASTM D422. (2007). Standard Test Method for Particle-Size Analysis of ...
  • ASTM D4318. (2018). Standard Test Methods for Liquid Limit, Plastic ...
  • ASTM D1557. (2021). Standard Test Method for Laboratory Compaction Characteristics ...
  • ASTM D5333. (1996). Standard test method for measurement of collapse ...
  • ASTM D3080-04. (2012). Standard Test Method for Direct Shear Test ...
  • ASTM D1883-21. (2021). Standard Test Method for California Bearing Ratio ...
  • Rajoria, V., & Kaur, S. (2015). Effect of polymer stabilizer ...
  • Dai, D., Peng, J., Wei, R., Li, L., & Lin, ...
  • Zhu, X., Liu, J., Xue, J., Zhang, F., Chen, Z., ...
  • Mpofu, P., Addai-Mensah, J., & Ralston, J. (2004). Flocculation and ...
  • Anderson, R. L., Ratcliffe, I., Greenwell, H. C., Williams, P. ...
  • Bell, F. G. (2013). Engineering properties of soils and rocks. ...
  • NAPA. (1999). Guidelines for use of HMA overlays to rehabilitate ...
  • Shu, H., Yu, Q., Niu, C., Liu, J., Xia, W., ...
  • Tiwari, N., Satyam, N., & Singh, K. (2020). Effect of ...
  • Chang, I., Im, J., Prasidhi, A. K., & Cho, G. ...
  • Nugent, R. A., Zhang, G., & Gambrell, R. P. (2009). ...
  • Chang, I., & Cho, G. C. (2012). Strengthening of Korean ...
  • Khatami, H. R., & O’Kelly, B. C. (2013). Improving Mechanical ...
  • Theng, B. K. G. (1982). Clay-Polymer Interactions: Summary and Perspectives. ...
  • Hussain, F., Hojjati, M., Okamoto, M., & Gorga, R. E. ...
  • نمایش کامل مراجع