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Design Guidelines for Shielding Effectiveness, Current Carrying Capability, and the Enhancement of Conductivity of Composite Materials

NASA/CR-4784, Evans*, R.W., Design Guidelines for Shielding Effectiveness, Current Carrying Capability, and the Enhancement of Conductivity of Composite Materials, Prepared for Systems Analysis and Integration Laboratory, Science and Engineering Division NASA Marshall Space Flight Center, AL 35812, Contract NAS8-39983, by *Tec-Masters, Inc., 1500 Perimeter Parkway, Suite 400, Huntsville, AL 35806, August, 1997, pp. 69, Format(s): PDF 3441k

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These guidelines address the electrical properties of composite materials which may have an effect on electromagnetic compatibility (EMC). The main topics of the guidelines include the electrical shielding, fault current return, and lightning protection capabilities of graphite reinforced polymers, since they are somewhat conductive but may require enhancement to be adequate for EMC purposes. Shielding effectiveness depends heavily upon the conductivity of the material. Graphite epoxy can provide useful shielding against RF signals, but it is approximately 1,000 times more resistive than good conductive metals. The reduced shielding effectiveness is significant but is still useful in many cases. The primary concern is with gaps and seams in the material just as it is with metal. Current carrying capability of graphite epoxy is adequate for dissipation static charges, but fault currents through graphite epoxy may cause fire at the shorting contact and at joints. The effect of lightning on selected graphite epoxy material and mating surfaces is described, and protection methods are reviewed
Keywords:natural space environment, electromagnetic compatibility, electrical shielding, fault current, electrical and lightning effects on composites
CASI Document ID Number:97N30425
Subjects:Astronautics: Spacecraft Design, Testing And Performance
ID Code:382
Deposited On:03 July 2002