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Updated: May 10, 2025

Fabrication and Design of Wood-Based High-Performance Composites
Published on: November 9, 2019
Evolutionary Algorithm-Based Design and Performance Evaluation of Wood-Plastic Composite Roof Panels for Low-Cost
Bassel Abdelshahid1, Khaled Nassar1, Passant Youssef2
1Construction Engineering Department, American University in Cairo, New Cairo 11835, Egypt.
Abstract:
Wood-plastic composites (WPCs) have emerged as a sustainable and cost-effective material for construction, particularly in low-cost housing solutions. However, designing WPC panels that meet structural, serviceability, and manufacturing constraints remains a challenge. This study focused on optimizing the cross-sectional shape of WPC roof panels using evolutionary algorithms to minimize material usage while ensuring compliance with deflection and stress constraints. Two evolutionary algorithms-the genetic algorithm (GA) and particle swarm optimization (PSO)-were employed to optimize sinusoidal and trapezoidal panel profiles. The optimization framework integrated finite element analysis (FEA) to evaluate structural performance under uniformly distributed loads and self-weight. The modulus of elasticity of the WPC material was determined experimentally through three-point bending tests, ensuring accurate material representation in the simulations. The trapezoidal profile proved to be the most optimal, exhibiting superior deflection performance compared with the sinusoidal profile. A comparative analysis of GA and PSO revealed that PSO outperformed GA in both solution optimality and convergence speed, demonstrating its superior efficiency in navigating the design space and identifying high-performance solutions. The findings highlight the potential of WPCs in low-cost housing applications and offer insights into the selection of optimization algorithms for similar engineering design problems.
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