Strength and compaction characteristics of kaolin clay blended with industrial wastes
Author:
Publisher
Elsevier BV
Subject
General Medicine
Reference17 articles.
1. Efficient & effective improvement and stabilization of clay soil with waste materials;Safi;Mater. Today:. Proc.,2022
2. Improvement of mechanical strength of low-plasticity clay soil using geopolymer-based materials synthesized from glass powder and copper slag;Tajaddini;Case Studies Construction Materials,2023
3. Gupta, Deepak, et al. “Performance of pond ash and rice husk ash in clay: a comparative study.”Recycled Waste Materials: Proceedings of EGRWSE 2018. Springer Singapore, 2019.
4. Waste materials for construction of road embankment and pavement layers;Havanagi;International journal of environmental engineering research,2012
5. Effect of copper slag and cement by-pass dust addition on mechanical properties of concrete;Al-Jabri;Constr. Build. Mater.,2006
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