EventsThe Eighteenth International Conference of Experimental Mechanics
Published
This submission belongs to the session ICEM. ICEM 2018 of the event The Eighteenth International Conference of Experimental Mechanics
Published date
28 May, 2018
Citation
Asha Hall, Michael Coatney, Brandon Williams, Jin Hyeong Yoo, Oliver Myers, Natasha Bradley, 104 Nondestructive Damage Detection of a Magnetostrictive Composite Structure, in Proceedings of The Eighteenth International Conference of Experimental Mechanics, Brussels, 1 July–5 July 2018, MDPI: Basel, Switzerland, doi: 10.3390/ICEM18-05276
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104 Nondestructive Damage Detection of a Magnetostrictive Composite Structure

Michael Coatney 2
Jin Hyeong Yoo 3
Brandon Williams 4
Natasha Bradley 2
1. U.S. Army Research Laboratory
2. US Army Research Laboratory
3. US Naval Surface Warfare Center (NSWC)
4. Clemson University
Abstract

The integrity of composite structures gradually degrades due to the onset of damage such as matrix cracking, fiber/matrix debonding, and delamination. Over the last two decades, great strides have been made in structural health monitoring (SHM) community using various sensing techniques such as acoustic emission, eddy current, strain gages, etc., to diagnose damage in aerospace, mechanical and civil infrastructures. Embedded sensing offers the prospects of providing for real-time, in-service monitoring of damage were weight savings is a major factor in Aerospace Industry. In this present work, magnetostrictive particles such as Terfenol-D were embedded in a composite structure, along with multiple SHM techniques, to capture the damage in an IM7-carbon fiber reinforced polymer composite system undergoing fatigue loading. As the internal stress state increases, the change in the magnetization flux intensity was captured using a non-contact magnetic field sensor. A damage diagnosis system was established along with an acoustic emissions technique to further validate the damage captured by the embedded system. The goal of this project is to identify the change in the mechanical and magnetic property within a composite material during the evolution of damage. Several characterization techniques will be used to determine interfacial fiber-matrix interactions which will provide for a more comprehensive understanding of the composite interfaces.

Keywords
Embedded Structural Health Monitoring
Magnetostrictive Material
Damage Detection
"298 Characterization of the bond between Textile Reinforced Cement and Extruded Polystyrene by shear tests. "
046 A Novel Geometry for Shear Test Using Axial Tensile Setup