Effect of ferrous, nickel, and tungsten fillers reinforcement on glass fiber reinforced vinyl ester/polyester composites

Author:

Hemath Mohit1ORCID,Rangappa Sanjay Mavinkere2,C Pandi Selvan Durai3,Ramesh Periyasamy4,Siengchin Suchart2ORCID,Al‐Romaizan Abeer Nasser5,Hussein Mahmoud A.5,Khan Anish6ORCID,Asiri Abdullah M.6,Althomali Raed H.7

Affiliation:

1. Department of Mechanical Engineering Alliance College of Engineering and Design, Alliance University Bengaluru India

2. Natural Composite Research Group Lab, Department of Materials and Production Engineering, The Siridhorn International Thai German Graduate School of Engineering King Mongkut's University of Technology North Bangkok Bangkok Thailand

3. Heavy Energy Projectile Factory HAPP Post Tiruchirappalli India

4. Department of Production Engineering National Institute of Technology Tiruchirappalli India

5. Chemistry Department, Faculty of Science King Abdulaziz University Jeddah Saudi Arabia

6. Center of Excellence for Advanced Materials Research King Abdulaziz University Jeddah Saudi Arabia

7. Department of Chemistry College of Arts and Science, Prince Sattam bin Abdulaziz University Wadi Al‐Dawasir Saudi Arabia

Abstract

AbstractThe present investigation targets the physical, mechanical, and thermal characteristics of glass fabric‐reinforced vinyl ester/polyester hybrid laminates filled with ferrous, nickel, and tungsten micro‐particles. The metal‐fillers‐glass fabric reinforced vinyl ester/polyester hybrid composites was produced by distributing 1 wt% ferrous, nickel, and tungsten with an ultrasonication probe‐assisted wet layup method. Polyester resin reinforced with glass fabrics and tungsten fillers (PRGT) presents improved mechanical characteristics compared with other hybrid laminates, with tensile, compression, and flexural strength values of 157.89 MPa, 163.74 MPa, and 167.29 MPa, respectively. The fractographic microstructure of tensile fracture PRGT laminates exhibits that glass fibers pull out, microcracks, and lower gaps, because of stronger filler‐fabric‐matrix adhesion when compared with other hybrid laminates. The artificial neural network modeling was conducted to choose the best composite among the various manufactured composites. Statistical analysis was observed from the one‐way ANOVA technique, substantiating that the physical, mechanical, and thermal characteristics of metal fillers‐reinforced hybrid composites were statistically significant.Highlights Metal‐fillers‐glass fabric reinforced vinyl ester/polyester hybrid composites. Selection of the best composite from developed composites by ANN. Tungsten fillers are a useful material for reinforcement.

Publisher

Wiley

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