Investigating damage resistance in aerospace radome applications: Experimental analysis of hybrid sandwich composites

Author:

Iqbal Zafar1,Umer Malik Adeel1,Asim Kamran2ORCID,Khan Haris Ali3ORCID

Affiliation:

1. School of Surface & Materials Engineering (SCME), National University of Science & Technology (NUST), Islamabad, Pakistan

2. Department of Aircraft Maintenance Engineering Technology, University of Management & Technology (UMT), Lahore, Pakistan

3. Department of Aerospace Engineering, (CAE), National University of Science & Technology (NUST), Islamabad, Pakistan

Abstract

This research introduces an innovative hybrid sandwich composite structure tailored for specific applications, featuring a foam core and dissimilar face sheets made of Kevlar and S-Glass materials to address in-phase electromagnetic properties, UV protection, and impact response. Building on our prior work on design optimization for electromagnetic performance and aero/inertial loading, this paper investigates the low-velocity impacts (LVIs) response of the composite structure through drop-weight testing at various energy levels. Utilizing computed tomography (CT) scanning for damage analysis, distinct failure modes were observed for different face sheet combinations, with notable variations (energy absorption characteristics) in damage depth and width between the S-Glass and Kevlar face sheets. This study, unprecedented in existing literature, proposes hybrid sandwich structures with superior specific impact strength compared to various composite sandwich structures documented in the published literature expanding its utility beyond radomes.

Publisher

SAGE Publications

Subject

Materials Chemistry,Polymers and Plastics,Mechanical Engineering,Mechanics of Materials,Ceramics and Composites

Reference32 articles.

1. Modelling of effects of nose radomes on radar antenna performance

2. Dual-Band A-Sandwich Radome Design for Airborne Applications

3. Davis D, Mathew F, Jamaludheen KP, et al. Design and analysis of different types of aircraft radome. International Journal of Engineering Research & Technology, (IJERT), NCRAIME – 2015 (Volume 3 – Issue 26), Namakkal, Tamilnadu, 30-07-2018.

4. Kraus JD, Marhefka RJ. Antennas for all applications. New York: McGraw-Hill, 2008, pp. 20–60.

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