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Evaluation of Polymer Composites Using the WSM Method: A Comparative Analysis of MMCs, CMCs, Bio-Composites, and CFRPs

Evaluation Polymer Composites WSM Method is a B.Tech project topic for Aerospace / Aeronautical Engineering. Explore the IEEE-style abstract, reference…

Evaluation Polymer Composites WSM Method is a B.Tech project topic for Aerospace / Aeronautical Engineering. It gives students a clear starting point for research, implementation planning, and documentation.

Evaluation Polymer Composites WSM Method Project Details

Abstract

In this study, we have analyzed different kinds of polymer composites such as metal matrix composites (MMCs), ceramic matrix composites (CMCs), natural fiber composites, carbon fiber reinforced plastics (CFRPs), and one more variant of natural fiber composites. We have used Weighted Sum Method (WSM) for multi-criteria analysis of the mechanical, thermal, chemical, and environmental aspects of the composites. The study identifies materials behaving in a different way, and that no individual composite outperforms in all the properties. Among the composites, Natural Fiber Composites scored the highest as the best composite material with optimum properties, and the most environmental friendly. Second placed Metal Matrix Composites are known for good mechanical property

along with increased thermal conductivity. These results show that the selection of materials should be appropriate for each case. Each composite type has its own advantages: Natural Fiber Composites are sustainable, MMCs are mechanically strong, CMCs are thermally stable, and CFRPs have high strength-to-weight ratios. Engineers are guided through these trade-offs in the design, use, and selection of the composite materials based on their properties. This study aids engineers in selecting suitable composite materials for particular purposes.

Reference Paper Evaluation of Polymer Composites Using the WSM Method: A Comparative Analysis of MMCs, CMCs, Bio-Composites, and CFRPs
Domain Aerospace / Aeronautical Engineering
Sub-Domain Composite Materials
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