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Low cycle fatigue and creep behavior of recrystallized Molybdenum near room termperature

✍ Scribed by Z. M. Sun; Z. G. Wang; H. Hödl; B. Weiss; o. Prof. Dipl. Ing. Dr. R. Sticker


Publisher
John Wiley and Sons
Year
1995
Tongue
English
Weight
456 KB
Volume
26
Category
Article
ISSN
0933-5137

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✦ Synopsis


Abstract

The deformation behavior of pure recrystallized molybdenum under cyclic and static loads was investigated in the temperature range between 30°C and 10O°C, for stress amplitudes between 100 MPa and 250 MPa and for static loads up to 200 MPa. The results show that in spite of the low test temperatures and stress levels the Mo material exhibits considerable plastic strains which depend sensitively on frequenez and small changes in temperature.The activation energy deduced for the static and dynamic deformation is less than 0.98 eV which indicates thermally activated processes, to be explained by a dislocation kink model as described in the literature. The low‐temperature fatigue behavior appears strongly influenced by creep‐fatigue interaction phenomena.