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Evaluation of the effects of hydrogen peroxide on common aviation structural materials

Author: Xianfu Zhou; United States. Office of Aerospace Medicine.; United States. Federal Aviation Administration.; Auburn University.
Publisher: Washington, DC : Civil Aerospace Medical Institute, Federal Aviation Administration ; Auburn, AL : National Air Transportation Center of Exellence for Research in the Intermodal Transport Environment, Ft. Belvior, Va. : Available to the public through the Defense Technical Information Center Springfield, Va. : Available to the public through the National Technical Information Service 2009.
Edition/Format:   Print book : National government publication : EnglishView all editions and formats
Summary:
"Infected passengers can unintentionally contaminate the interior of aircraft; deliberate biological contamination from criminals and international adversaries is also possible. Previous work has provided information regarding the delivery mechanism and capability of STERIS Corporation's Vaporized Hydrogen Peroxide (VHP*) technology as a decontaminat/disinfectant/sanitizer for transportation vehicles like aircraft,  Read more...
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Additional Physical Format: Online version:
Evaluation of the effects of hydrogen peroxide on common aviation structural materials.
(OCoLC)549097468
Material Type: Government publication, National government publication, Internet resource
Document Type: Book, Internet Resource
All Authors / Contributors: Xianfu Zhou; United States. Office of Aerospace Medicine.; United States. Federal Aviation Administration.; Auburn University.
OCLC Number: 535713195
Notes: Format not distributed to depository libraries.
"DOT/FAA/AM-09/23."
"Work was accomplished under Public law 108-76"--Report documentation page.
"December 2009."
Description: v, 16 pages : illustrations ; 28 cm
Responsibility: S.F. Chou [and others].

Abstract:

"Infected passengers can unintentionally contaminate the interior of aircraft; deliberate biological contamination from criminals and international adversaries is also possible. Previous work has provided information regarding the delivery mechanism and capability of STERIS Corporation's Vaporized Hydrogen Peroxide (VHP*) technology as a decontaminat/disinfectant/sanitizer for transportation vehicles like aircraft, buses, subway trains, ambulances, etc. The present report documents a materials compatibility evaluation of the effects of hydrogen peroxide exposure on the physical and mechanical properties of the following commercial grade structural materials: 2024-T351, 2024-T6 and 7075-T6 aluminum, 304 stainless steel, carbon fiber/epoxy composites and glass fiber/epoxy composites, including FR4 laminate materials widely used for printed circuit boards. Measurements of changes in sample weights due to absorption, oxidation, or corrosion were made as were evaluations of changes in tensile and flexural mechanical properties. The tensile properties of samples of the metallic samples were unaffected by exposures to either vapor phase or 35% liquid phase hydrogen peroxide. In addition, the carbon fiber/epoxy, glass fiber/carbon fiber epoxy, and the FR4 printed circuit board materials exhibited no significant changes in flexural strength or strain at peak load after 10 VHP exposures. However, some mechanical degradation in the composite samples was observed after 168 hour exposure to 35% liquid hydrogen peroxide. It is recommended that condensation be avoided during application of vapor phase hydrogen peroxide"--Report documentation page.

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