An investigation into performance properties of sustainable polypropylene composites reinforced with basalt fiber and fly ash

Author:

Maurya Atul Kumar12ORCID,Mahadeva Rajesh3,Manik Gaurav23ORCID,Patole Shashikant P.3

Affiliation:

1. National Institute for Materials Advancement (NIMA) Pittsburg State University Pittsburg Kansas USA

2. Department of Polymer and Process Engineering Indian Institute of Technology Roorkee Saharanpur India

3. Department of Physics Khalifa University of Science and Technology Abu Dhabi United Arab Emirates

Abstract

AbstractThe presented work explores the fabrication and performance analysis of a 10–20 wt% basalt fiber (BF) reinforced styrene‐ethylene‐butylene‐styrene toughened polypropylene (PP) composite. The effect of hybridization of 5 wt% cetrimonium bromide (CTAB) treated submicron particulate fly ash (FA) on various properties of the composites was investigated. The composites containing 5 wt% FA and 20 wt% BF offered the highest tensile and flexural strengths of ~48 and 99 MPa, respectively. Likewise, an impact strength of 1.08 kJ/m2 was possessed by the composite containing 5 wt% FA and 10 wt% BF. Thermomechanical and thermal decomposition analysis depicted a desirable increase in the storage modulus, glass transition temperature and a positive shift in the degradation temperature of all the composites compared to base matrix. The use of PP with naturally available basalt fiber, along with waste fly ash for the composite could be environmental benign and welcomed by industry.

Publisher

Wiley

Subject

Materials Chemistry,Polymers and Plastics,General Chemistry,Ceramics and Composites

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