Iqbal Safdar, Kamiński Marcin
Department of Structural Mechanics, Faculty of Civil Engineering, Architecture and Environmental Engineering, Lodz University of Technology, 93-590 Lodz, Poland.
Materials (Basel). 2024 Jun 2;17(11):2682. doi: 10.3390/ma17112682.
Cellular materials are fundamental elements in civil engineering, known for their porous nature and lightweight composition. However, the complexity of its microstructure and the mechanisms that control its behavior presents ongoing challenges. This comprehensive review aims to confront these uncertainties head-on, delving into the multifaceted field of cellular materials. It highlights the key role played by numerical and mathematical analysis in revealing the mysterious elasticity of these structures. Furthermore, the review covers a range of topics, from the simulation of manufacturing processes to the complex relationships between microstructure and mechanical properties. This review provides a panoramic view of the field by traversing various numerical and mathematical analysis methods. Furthermore, it reveals cutting-edge theoretical frameworks that promise to redefine our understanding of cellular solids. By providing these contemporary insights, this study not only points the way for future research but also illuminates pathways to practical applications in civil and materials engineering.
多孔材料是土木工程中的基本元素,以其多孔性质和轻质组成而闻名。然而,其微观结构的复杂性以及控制其行为的机制带来了持续的挑战。这篇全面的综述旨在直面这些不确定性,深入探究多孔材料的多方面领域。它强调了数值和数学分析在揭示这些结构神秘弹性方面所起的关键作用。此外,该综述涵盖了一系列主题,从制造过程的模拟到微观结构与力学性能之间的复杂关系。这篇综述通过遍历各种数值和数学分析方法,提供了该领域的全景视图。此外,它还揭示了有望重新定义我们对多孔固体理解的前沿理论框架。通过提供这些当代见解,本研究不仅为未来研究指明了方向,还阐明了在土木和材料工程中实际应用的途径。