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Development of lightweight building blocks using expanded polystyrene

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  • Development of Lightweight Building Blocks Using Expanded Polystyrene
  • Development of lightweight building blocks using expanded polystyrene

Moudud Ahmmed 1, *, Zainul Abedin 2, Subrata Paul 3, Golam Kibria Bhuiyan 3, Hafijur Rahaman 1, Mohammad Afzal Hossain 1, Monirul Islam 3 and Arafat Ullah khan 3

1 Workshop Machinery and Maintenance Division (WMM), Bangladesh Rice Research Institute, Gazipur, Bangladesh.
2 Department of Farm Structure & Environmental Engineering (FSEE), Bangladesh Agricultural University, Mymensingh, Bangladesh.
3 Farm Machinery and Postharvest Technology Division (FMPHT), Bangladesh Rice Research Institute, Gazipur, Bangladesh.
 
Research Article
GSC Advanced Research and Reviews, 2023, 17(02), 047–059
Article DOI: 10.30574/gscarr.2023.17.2.0402
DOI url: https://doi.org/10.30574/gscarr.2023.17.2.0402
Received on 12 September 2023; revised on 03 November 2023; accepted on 06 November 2023
This study aimed to develop lightweight building blocks using Expanded Polystyrene (EPS) with varying percentages, assess their properties, including density, water absorption, porosity, and compressive strength, and evaluate the unit cost of the blocks. The heat-passing rate of the blocks was also investigated. EPS blocks were produced at the Concrete and Materials Testing Laboratory in the Farm Structure and Environmental Engineering Department, Bangladesh Agricultural University, Mymensingh. Local sand and ordinary Portland cement were utilized, with the EPS bead sizes ranging from 2.36mm to 6.35mm. Five different percentages of EPS beads (0%, 5%, 10%, 15%, and 20%) were selected for each block, and the cement-to-sand ratio was 1:4. A total of 75 EPS blocks were fabricated and cured in water for 28 days. The results showed that the density was highest for 0% EPS blocks (2139.75 kg/m3) and lowest for 20% EPS blocks (1699.08 kg/m3). Water absorption was most insufficient for 0% EPS blocks (4.39%) and highest for 20% EPS blocks (9.07%). The porosity was highest for 20% EPS blocks (14.37%) and lowest for 0% EPS blocks (6.74%). The heat passing rate was minimal for 0% EPS blocks and highest for 20% EPS blocks. Compressive strength was highest for 0% EPS blocks (13.37 MPa), moderate for 10% EPS blocks (10.87 MPa), and lowest for 20% EPS blocks (8.94 MPa). The unit cost of 100 blocks was highest for 0% EPS blocks (15.18 USD) and lowest for 20% EPS blocks (13.28 USD). Overall, the EPS blocks are recommended for construction due to their durability and compressive strength.
Expanded Polystyrene; Blocks; Strength; Cost
 
https://gscarr.gsconlinepress.com/sites/default/files/fulltext_pdf/GSCARR-2023-…

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Moudud Ahmmed, Zainul Abedin, Subrata Paul, Golam Kibria Bhuiyan, Hafijur Rahaman, Mohammad Afzal Hossain, Monirul Islam and Arafat Ullah khan. Development of lightweight building blocks using expanded polystyrene. GSC Advanced Research and Reviews, 2023, 17(2), 047-059. Article DOI: https://doi.org/10.30574/gscarr.2023.17.2.0402

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