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‡a(MiU)990161186020106381
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‡aMAIN
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‡aD 301.45/47-2:202
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‡aFletcher, E. E.
‡q(Ellis E.)
‡eauthor.
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‡aThe effects of high pressure, high temperature hydrogen on steel /
‡cby E. E. Fletcher and A. R. Elsea to Office of the Director of Defense Research and Engineering.
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‡aColumbus, Ohio :
‡bDefense Metals Information Center, Battelle Memorial Institute,
‡c1964
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‡a70 pages :
‡billustrations ;
‡c28 cm.
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‡atext
‡btxt
‡2rdacontent
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‡aunmediated
‡bn
‡2rdamedia
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‡avolume
‡bnc
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‡aDMIC report 202
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‡aResearch supported by the Technology Division, Wright-Patterson Air Force Base, Ohio.
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‡a"Reprinted September, 1967."
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‡a"March 26, 1964."
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‡aIncludes bibliographical references (pages 64-70).
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‡aThis report deals with the deleterious effects of hydrogen gas on steel at elevated temperatures and/or pressures. Hydrogen attack on steels is manifest as decarburization, intergranular fissuring, or blistering. These conditions result in lowered tensile strength, ductility, and impact strength. The reaction of hydrogen with iron carbide to form methane is probably the most important chemical reaction involved in the attack on steel by hydrogen. Attack of steel at elevated temperatures and pressures is limited or prevented by the following measures: (1) use of steel alloyed with strong carbide-forming elements, (2) use of liners of resistant alloy steels, and (3) substitution of resistant nonferrous alloys.
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‡aMode of access: Internet.
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‡aSteel
‡xHeat treatment.
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‡aElsea, A. R.,
‡eauthor.
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‡aDefense Metals Information Center (U.S.)
‡eissuing body.
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‡aTechnical Report Archive & Image Library (TRAIL)
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