Reprint

Experimental Research and Computational Analysis of Eco- and Bio-Materials

Edited by
September 2024
198 pages
  • ISBN978-3-7258-2074-0 (Hardback)
  • ISBN978-3-7258-2073-3 (PDF)

This is a Reprint of the Special Issue Experimental Research and Computational Analysis of Eco- and Bio-Materials that was published in

Chemistry & Materials Science
Engineering
Physical Sciences
Summary

This Special Issue of Materials presents a comprehensive exploration of eco- and biomaterials, focusing on their experimental research and computational analysis. As sustainability becomes a critical focus in engineering and medical fields, this collection highlights the innovative use of natural and synthetic materials that interact with organic tissues and support sustainable construction practices. The studies featured here provide in-depth insights into the mechanical properties, structural integrity, and durability of these materials, combining empirical evidence with advanced computational models. This Special Issue is an essential resource for scientists, engineers, and industry professionals interested in the latest advancements in sustainable materials, offering practical applications and methodologies that enhance the development of eco-friendly and biologically compatible materials. Perfect for those seeking to stay at the forefront of sustainable material science, this collection serves as a vital reference for both academic research and industrial application.

Format
  • Hardback
License and Copyright
© 2024 by the authors; CC BY-NC-ND license
Keywords
3D scanning; excavation; excavation support; support plate; deflection arrow; finite difference method; corrugated steel plate shear wall (CSPW); finite element method (FEM); lateral performance; hysteretic performance; atmospheric corrosion; aluminium-timber composite structures; aluminium alloy; engineering wood products; laminated veneer lumber (LVL); toothed plate; bolted connection; shear connection; push-out test; sandwich panels; thin-walled beam; failure scenario; connections; laboratory experiment; fractional derivative; fractional plasticity; nonassociated; state dependence; water vapour; operational moisture; numerical analysis; dew point; flexible waterproofing materials; sensitivity analysis; corrugated board; trays; open-top packaging; paperboard packaging; box compression test; package design; McKee formula; cutout; multilayer corrugated board; numerical homogenization; effective stiffness; geometrical imperfections; buckling; paperboard packaging; finite element method; box compression test; numerical model; cutout; compression force; n/a