Microencapsulation based fire retardant eco-friendly jute composite

Author:

Jalalah Mohammed12ORCID,Zulfiqar Sumra3,Afzal Ayesha3,Khaliq Zubair3,Qadir Muhammad B4ORCID,Abid Ayesha5,Faisal M16,Alsaiari Mabkhoot17,Irfan Muhammad2,Harraz Farid A17

Affiliation:

1. Promising Centre for Sensors and Electronic Devices (PCSED), Advanced Materials and Nano-Research Centre, Najran University, Najran, Saudi Arabia

2. Department of Electrical Engineering, College of Engineering, Najran University, Najran, Saudi Arabia

3. Department of Materials, National Textile University, Faisalabad, Pakistan

4. Department of Textile Engineering, National Textile University, Faisalabad, Pakistan

5. Department of Polymer & Process Engineering, University of Engineering and Technology, Lahore, Pakistan

6. Department of Chemistry, Faculty of Science and Arts, Najran University, Najran, Saudi Arabia

7. Department of Chemistry, Faculty of Science and Arts at Sharurah, Najran University, Sharurah, Saudi Arabia

Abstract

Natural fiber reinforced composites (NFCs) are a promising replacement for conventional wood materials in furniture and households. However, the flammability of natural fibers limits their practical application. The composite matrix structure can be modified to enhance flame resistance. In this study, eco-friendly and cost-effective fire-retardants (FRs), micro-integrated Triphenyl Phosphate (m-TPP), and Aluminum Trihydroxide (ATH) were added physically in different concentrations to the epoxy resins (EPs). Underwriter Laboratories 94 (UL-94) flammability test revealed that the fire resistance of FR epoxy, EP88%m-TPP9%ATH3%, increased by increasing the TPP quantity with the highest V-0 rating. The thermo-gravimetric analysis (TGA) indicated a better internal structure of EP100%. However, no char residue was observed for EP100%. The highest char residue was found for EP88%m-TPP9%ATH3%, which confirmed its highest FR resistance. However, EP88%m-TPP9%ATH3% showed poor tensile, flexural, and compressional strengths. The m-TPP was a better FR than ATH. However, the mechanical stability of FR samples containing ATH is better than those containing m-TPP. Also, the addition of FRs reduced the tensile and flexural strengths; however, the compressional strength and modulus were significantly improved, which implied a potential use in the furniture industry.

Funder

Najran University

Publisher

SAGE Publications

Subject

Materials Chemistry,Polymers and Plastics,Ceramics and Composites

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