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Improvements of Flexural Properties and Thermal Performance in Thin Geopolymer Based on Fly Ash and Ladle Furnace Slag Using Borax Decahydrates

  • Ng Yong-Sing
  • , Liew Yun-Ming
  • , Heah Cheng-Yong
  • , Mohd Mustafa Al Bakri Abdullah
  • , Phakkhananan Pakawanit
  • , Petrica Vizureanu
  • , Mohd Suhaimi Khalid
  • , Ng Hui-Teng
  • , Hang Yong-Jie
  • , Marcin Nabiałek
  • , Paweł Pietrusiewicz
  • , Sebastian Garus
  • , Wojciech Sochacki
  • , Agata Śliwa
  • Universiti Malaysia Perlis
  • Synchrotron Light Research Institute
  • Gh. Asachi Technical University
  • Technical Sciences Academy of Romania
  • Chemical Services and Environment (Technical Support) Section
  • Częstochowa University of Technology

Research output: Contribution to journalArticlepeer-review

15 Citations (Scopus)

Abstract

This paper elucidates the influence of borax decahydrate addition on the flexural and thermal properties of 10 mm thin fly ash/ladle furnace slag (FAS) geopolymers. The borax decahydrate (2, 4, 6, and 8 wt.%) was incorporated to produce FAB geopolymers. Heat treatment was applied with temperature ranges of 300C, 600C, 900C, 1000C and 1100C. Unexposed FAB geopolymers experienced a drop in strength due to a looser matrix with higher porosity. However, borax decahydrate inclusion significantly enhanced the flexural performance of thin geopolymers after heating. FAB2 and FAB8 geopolymers reported higher flexural strength of 26.5 MPa and 47.8 MPa, respectively, at 1000C as compared to FAS geopolymers (24.1 MPa at 1100C). The molten B2O3 provided an adhesive medium to assemble the aluminosilicates, improving the interparticle connectivity which led to a drastic strength increment. Moreover, the borax addition reduced the glass transition temperature, forming more refractory crystalline phases at lower temperatures. This induced a significant strength increment in FAB geopolymers with a factor of 3.6 for FAB8 at 900C, and 4.0 factor for FAB2 at 1000C, respectively. Comparatively, FAS geopolymers only achieved 3.1 factor in strength increment at 1100C. This proved that borax decahydrate could be utilized in the high strength development of thin geopolymers.

Original languageEnglish
Article number4178
JournalMaterials
Volume15
Issue number12
DOIs
Publication statusPublished - 1 Jun 2022

Keywords

  • borax decahydrate
  • flexural properties
  • thermal performance
  • thin geopolymer

ASJC Scopus subject areas

  • General Materials Science
  • Condensed Matter Physics

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