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@article{189394,
author = {KARUMANCHI MEERAVALI and ERAGAMREDDY MAHESWAR REDDY and NETHINTI NAVEENKUMAR and KOTHAPALLI ANIL KUMAR and MANIKE PRADEEP and PATNALA JYOTHI AMBICA and KANKIPATI GANGADHAR},
title = {Stabilization of soft-soils with nano-aluminiumoxide},
journal = {International Journal of Innovative Research in Technology},
year = {2025},
volume = {12},
number = {7},
pages = {5894-5899},
issn = {2349-6002},
url = {https://ijirt.org/article?manuscript=189394},
abstract = {This study investigates the stabilization of soft soils using nano-aluminium oxide (nano-Al2O3) as an innovative additive to enhance geotechnical properties. Soft soils typically exhibit low strength, high compressibility, and poor load-bearing capacity, posing challenges for construction and infrastructure development. The incorporation of nano-aluminium oxide aims to improve soil stability by promoting particle bonding, reducing permeability, and increasing shear strength. Laboratory tests were conducted to evaluate the effects of varying nano-Al2O3 concentrations on key parameters such as unconfined compressive strength, Atterberg limits, and consolidation characteristics. Results demonstrate significant improvements in soil strength and stiffness, with optimal nano-Al2O3 content yielding enhanced durability and reduced settlement potential. The findings suggest that nano-aluminium oxide is a promising stabilizing agent for soft soils, offering an effective and sustainable solution for ground improvement in geotechnical engineering applications.},
keywords = {Nano-aluminium oxide; soft soil stabilization; geotechnical properties; soil strength enhancement; unconfined compressive strength},
month = {December},
}
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