Hydrogen Permeation Resistant Coatings Metadata

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Title

  • Main Title Hydrogen Permeation Resistant Coatings

Creator

  • Author: Korinko, Paul
    Creator Type: Personal
  • Author: Adams, Thad
    Creator Type: Personal
  • Author: Creech, Greggory
    Creator Type: Personal

Contributor

  • Sponsor: United States. Department of Energy.
    Contributor Type: Organization

Publisher

  • Name: Savannah River Site (S.C.)
    Place of Publication: Aiken, South Carolina
    Additional Info: Savannah River Site (SRS), Aiken, SC

Date

  • Creation: 2005-06-15

Language

  • English

Description

  • Content Description: As the National Hydrogen Economy continues to develop and evolve the need for structural materials that can resist hydrogen assisted degradation will become critical. To date austenitic stainless steel materials have been shown to be mildly susceptible to hydrogen attack which results in lower mechanical and fracture strengths. As a result, hydrogen permeation barrier coatings may be applied to these ferrous alloys to retard hydrogen ingress. Hydrogen is known to be very mobile in materials of construction. In this study, the permeation resistance of bare stainless steel samples and coated stainless steel samples was tested. The permeation resistance was measured using a modular permeation rig using a pressure rise technique. The coating microstructure and permeation results will be discussed in this document as will some additional testing.

Subject

  • Keyword: Building Materials
  • Keyword: Alloys
  • Keyword: Testing
  • STI Subject Categories: 08 Hydrogen
  • STI Subject Categories: 36 Materials Science
  • Keyword: Stainless Steels
  • Keyword: Hydrogen
  • Keyword: Construction
  • Keyword: Microstructure
  • Keyword: Coatings
  • Keyword: Fracture Properties

Collection

  • Name: Office of Scientific & Technical Information Technical Reports
    Code: OSTI

Institution

  • Name: UNT Libraries Government Documents Department
    Code: UNTGD

Resource Type

  • Article

Format

  • Text

Identifier

  • Report No.: WSRC-MS-2005-00155
  • Grant Number: DE-AC09-96SR18500
  • Office of Scientific & Technical Information Report Number: 881355
  • Archival Resource Key: ark:/67531/metadc885682
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