Zobrazeno 1 - 10
of 55
pro vyhledávání: '"Masami Mayuzumi"'
Publikováno v:
Zairyo-to-Kankyo. 59:430-435
ステンレス鋼の外面応力腐食割れ(ESCC)進展速度の温度依存性を検討した.ESCC進展速度は試験前半に大きく,時間の経過により小さくなった.試験中の最大ESCC進展速度をアレニウス則
Publikováno v:
CORROSION. 65:187-194
Resistance to atmospheric stress corrosion cracking (SCC) and crevice corrosion was examined for various candidate canister materials in the spent fuel dry storage condition using concrete casks. A constant load SCC test was conducted on the candidat
Publikováno v:
CORROSION. 64:929-938
The corrosion resistance of double, hot-dipped Zn-7Al alloy coating developed for structural steel was studied in a hot spring environment where hot water vapor, including ionic and gaseou...
Publikováno v:
Journal of Nuclear Materials. 379:42-47
Resistance to external stress corrosion cracking (ESCC) and crevice corrosion were examined for various candidate canister materials in the spent fuel dry storage condition using concrete casks. A constant load ESCC test was conducted on the candidat
Publikováno v:
Journal of the Japan Institute of Metals. 72:206-210
The dynamic strain aging phenomenon is believed to be one of the most important mechanisms that harden the weld-heat-affected zone of low-carbon austenitic stainless steels. Hence, we investigated the effects of the test temperature and strain rate d
Publikováno v:
Zairyo-to-Kankyo. 56:93-98
Publikováno v:
Corrosion Science. 49:149-157
A new hot dip Zn–7Al alloy coating was performed on a structural steel by double coating of fine Zn and Zn–7 wt.% Al alloy, to prevent severe corrosion in coastal area. The alloy-coated steels were exposed to seaside, quasi-industrial, and rural
Publikováno v:
MATERIALS TRANSACTIONS. 48:1431-1437
Chloride-induced stress corrosion crack growth rates were measured for candidate canister materials in a simulated marine atmospheric environment. Half-inch compact tension specimens were used to obtain stress corrosion crack growth rates by applying
Publikováno v:
Journal of the Japan Institute of Metals. 71:291-294
Publikováno v:
材料と環境. 55(No. 9):399-405