材料
Online ISSN : 1880-7488
Print ISSN : 0514-5163
ISSN-L : 0514-5163
水素雰囲気中の疲労き裂進展挙動
吉岡 純夫出水 通之輔熊沢 道夫
著者情報
ジャーナル フリー

1983 年 32 巻 355 号 p. 435-440

詳細
抄録
The fatigue crack growth behavior in hydrogen gas environment was examined using compact tension specimens of five kinds of materials, i. e., low alloy steels (Ni-Mo-V, Ni-Cr-Mo-V), austenitic alloy steels (18Mn-5Cr, SUH660) and a copper alloy (Be-Cu). The fatigue crack growth rates in laboratory air and hydrogen gas were obtained and the relation between the fatigue crack growth rate and fracture morphology was discussed based on the fractographical observations.
The main results obtained are as follows.
(1) The effect of hydrogen gas on the fatigue crack growth rate was classified into following four types. (a) The effect of hydrogen gas was not observed (18Mn-5Cr, SUH660). (b) A slight decrease in fatigue crack growth rate was observed (Be-Cu). (c) A considerable increase in fatigue crack growth rate was observed, but the effect of frequency was not observed (Ni-Mo-V). (d) A considerable increase in fatigue crack growth rate was observed, and the effect of frequency was also observed (Ni-Cr-Mo-V).
(2) In the materials of types (c) and (d), the cleavage fracture was observed and the area percentage of the intergranular fracture on the fracture surface increased in hydrogen gas. The change of fracture morphology in hydrogen gas had a direct influence on the fatigue crack growth rate.
(3) A good correspondence between the striation spacing and the fatigue crack growth rate was observed in both air and hydrogen gas except for Ni-Cr-Mo-V steel.
著者関連情報
© 日本材料学会
前の記事 次の記事
feedback
Top