Electromagnetic interference and electrical conductivity behavior of carbon/polycyanate composite with nickel nanostrands™ under fatigue
Document Type
Article
Publication Date
2-14-2011
Abstract
A conductive nanocomposite containing nickel nanostrands™ in carbon fiber-reinforced polymeric composite (M55 carbon fibers in toughened polycyanate resin matrix, RS-3) was investigated for electromagnetic interference (EMI) and electrostatic discharge (ESD) shielding effectiveness when subjected to the tension–tension fatigue load. These were measured in terms of dB attenuation and sheet resistance, respectively. Four configurations, one without nickel nanostrands and other three with different locations of nickel nanostrands layers, were investigated. The locations were outside surfaces, dispersed throughout the laminate thickness or the midplane. Fatigue strength was not affected by the addition of nickel nanostrands at any location. The addition of nickel nanostrands enhanced, in general, the EMI and ESD shielding effectiveness of the baseline polymeric composite with carbon fibers. However, the exterior location provided the maximum enhancement of EMI and ESD effectiveness. Furthermore, both EMI and ESD shielding effectiveness were practically constant under tension–tension fatigue loading condition up to 2 million cycles. This was because the nickel nanostrands were intact under fatigue loading condition.
DOI
Source Publication
Polymer Composites (ISSN 0272-8397)
Recommended Citation
Mall, S., Rodriguez, J. and Alexander, M.D. (2011), Electromagnetic interference and electrical conductivity behavior of carbon/polycyanate composite with nickel nanostrands™ under fatigue. Polym Compos, 32: 483-490. https://doi.org/10.1002/pc.21067
Comments
Published 2011 Society of Plastics Engineers
The full article is available from Wiley via subscription or purchase, using the DOI link below.