About this Special Issue
With the rapid advancement of stealth technology, electromagnetic compatibility, and intelligent structural systems, wave-absorbing composite materials have become an important class of multifunctional materials with applications in aerospace, defense, telecommunications, and civil infrastructure. However, these materials often experience complex service conditions, including mechanical loading, thermal cycling, moisture exposure, and impact damage, which can affect both electromagnetic absorption performance and structural reliability.
This Special Issue aims to highlight recent advances in the design, analysis, manufacturing, characterization, and evaluation of damage-tolerant wave-absorbing composite materials. It provides a platform for researchers and engineers to share innovative developments addressing the integration of electromagnetic functionality with mechanical durability, including multi-physics coupling, multi-scale modeling, intelligent design strategies, and experimental validation.
Aims & Scope
This Special Issue welcomes original research articles, review articles, and short communications covering, but not limited to, the following areas:
• Damage evolution mechanisms in wave-absorbing composites under mechanical, thermal, and electromagnetic loading conditions
• Multi-physics and multi-scale modeling approaches for functional composite materials
• Damage-tolerant design strategies, including topology optimization and metamaterial-inspired architectures
• Hybrid reinforcement strategies for improving toughness and electromagnetic absorption performance
• Self-healing and self-sensing multifunctional composite systems
• Advanced manufacturing and processing technologies, including additive manufacturing
• Experimental characterization and non-destructive evaluation (NDE) techniques
• Environmental degradation, fatigue, fracture, and impact resistance of wave-absorbing composites
• Radar absorbing structures (RAS) and multifunctional composite applications in aerospace, defense, and civil infrastructure
Keywords
Wave-absorbing composites; Damage tolerance; Structural–electromagnetic integration; Impact resistance; Fatigue and fracture; Multi-scale modeling; Non-destructive evaluation (NDE); Self-healing materials; Additive manufacturing; Environmental degradation; Radar absorbing structures; Multifunctional composites.
Article Types
• Original Research Articles
• Review Articles
• Short Communications
• Technical Notes
Why Submit to this Special Issue?
• Opportunity to showcase recent advances in damage-tolerant wave-absorbing composite materials.
• Platform for researchers working across materials science, mechanical engineering, electromagnetic materials, and multifunctional structures.
• Contribution to emerging technologies in aerospace, defense, telecommunications, and sustainable infrastructure applications.
• Increased visibility through a focused collection of research addressing current challenges and future directions in advanced composite materials.
Important Dates
Special Issue Opening Date: 15 August 2026
Manuscript Submission Deadline: 15 November 2026
Final Publication Date: 15 December 2026
Topics of Interest
Topics will be displayed here when added from the Special Issue administration area.
Guest Editor
Prof. Yiming Zhao
Guest Editor biography and institutional information can be added from admin.
Damage Tolerance Design of Wave-Absorbing Composite Materials
Special Issue Brochure
Provide authors and researchers with a concise brochure covering the theme, Guest Editor, scope, topics and submission deadline.
From Submission to Publication
Submit
Select this Special Issue during manuscript submission.
Editorial Check
Scope, presentation and basic requirements are assessed.
Peer Review
Independent scholarly review and editorial evaluation.
Publish
Accepted articles become part of the curated collection.
Submit to this Special Issue
Contribute your research to this focused collection in Global Open Access Journal of Science.