Effect of basalt on the mechanical and thermal behavior of a lightweight concrete based on Typha australis

Author:

Azibert Oumar Abdelhakh,Alhadj Hisseine Issaka,Malloum Soultan,Djibril Sow,Salif Gaye

Publisher

Academic Journals

Reference13 articles.

1. Ababacar SD, Harouna MB, Oumar D, Mamadou BN, Mamadou W, Salif G (2021). Thermophysical characterization of Typhas Concrete for its integration into Construction. Journal of Building Construction and Planning Research 8(4)

2. Adam G, Mamadou BN, Oumar D, Harouna MB, Salif G (2021). Optimization of the Mechanical Formulation of Typha Concrete. International Journal of Innovative Technology and Exploring Engineering 9(3):2278-3075.

3. Ahmadou D, Macodou T, Mamadou BN, Oumar D, Harouna MB, Salif G (2020). Improving the Stability of the Inflatable Soil of Diamniadio by Using Typha Australis in Order to Value It in Partitioning Wall. Journal of Building Construction and Planning Research 8(4).

4. Azibert OA (2016). Improvement in the energy efficiency of buildings through the use of lightweight concrete based on Typha australis. Doctoral thesis. Thermal, energy systems and environment. University of This, Senegal.

5. Azibert OA, Abdallah DM, Ali A and Salif G (2021). Mechanical and Water Characterization of a Light Concrete Based on Typha Australis. Asian Journal of Physical and Chemical Sciences 9(2):36-43.

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