共 134 条
[41]
EFFECT OF AIR AND VACUUM ENVIRONMENTS ON FATIGUE CRACK GROWTH-RATES IN TI-6AL-4V
[J].
METALLURGICAL TRANSACTIONS,
1974, 5 (02)
:391-398
[42]
SLOW FATIGUE CRACK GROWTH AND THRESHOLD BEHAVIOR IN AIR AND VACUUM OF COMMERCIAL ALUMINUM-ALLOYS
[J].
FATIGUE OF ENGINEERING MATERIALS AND STRUCTURES,
1979, 1 (02)
:203-&
[43]
Kitagawa H., 1976, P 2 INT C MECH BEHAV, P627
[44]
SHORT CRACK-GROWTH CLOSE TO THE FATIGUE LIMIT IN LOW-CARBON STEEL
[J].
SCRIPTA METALLURGICA,
1984, 18 (11)
:1231-1234
[45]
EFFECT OF STRESS CYCLE ASYMMETRY ON FATIGUE CRACK GROWTH
[J].
MATERIALS SCIENCE AND ENGINEERING,
1972, 9 (04)
:231-&
[46]
Knott J. F., 1977, Metal Science, V11, P399
[47]
KOCANDA S, 1978, Fatigue failure of metals
[48]
Krenn CR, 1997, HIGH CYCLE FATIGUE OF STRUCTURAL MATERIALS, P327
[49]
KRENN CR, 1998, C FAT DAM STRUCT MAT, V2