Austenitic stainless steel, manufacturing method for the same, and structure using the same
There are provided an austenitic stainless steel having high stress corrosion crack resistance, characterized by containing, in percent by weight, 0.030% or less C, 0.1% or less Si, 2.0% or less Mn, 0.03% or less P, 0.002% or less S, 11 to 26% Ni, 17 to 30% Cr, 3% or less Mo, and 0.01% or less N, th...
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creator | Sakaguchi, Yasuhiro Iwamura, Toshihiko Kanasaki, Hiroshi Mimaki, Hidehito Taneike, Masaki Suzuki, Shunichi Takamori, Kenrou Ooki, Suguru Anahara, Naoki Hiranuma, Naoki Yonezawa, Toshio |
description | There are provided an austenitic stainless steel having high stress corrosion crack resistance, characterized by containing, in percent by weight, 0.030% or less C, 0.1% or less Si, 2.0% or less Mn, 0.03% or less P, 0.002% or less S, 11 to 26% Ni, 17 to 30% Cr, 3% or less Mo, and 0.01% or less N, the balance substantially being Fe and unavoidable impurities; a manufacturing method for an austenitic stainless steel, characterized in that a billet consisting of the said austenitic stainless steel is subjected to solution heat treatment at a temperature of 1000 to 1150° C.; and a pipe and a in-furnace structure for a nuclear reactor to which the said austenitic stainless steel is applied. |
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a manufacturing method for an austenitic stainless steel, characterized in that a billet consisting of the said austenitic stainless steel is subjected to solution heat treatment at a temperature of 1000 to 1150° C.; and a pipe and a in-furnace structure for a nuclear reactor to which the said austenitic stainless steel is applied.</abstract><oa>free_for_read</oa></addata></record> |
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title | Austenitic stainless steel, manufacturing method for the same, and structure using the same |
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