Push-pull fatigue of lif at elevated temperatures—I. Mechanical properties
✍ Scribed by B.S. Majumdar; S.J. Burns
- Publisher
- Elsevier Science
- Year
- 1982
- Weight
- 839 KB
- Volume
- 30
- Category
- Article
- ISSN
- 0001-6160
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✦ Synopsis
The mechanical behavior of LiF single crystals, fatigued at elevated temperatures. shows some similarity to that of f.c.c. and b.c.c. crystals. Cyclic stress saturation is characteristic of crystals cycled at temperatures of 3OO'C and above. While a plateau is observed in the cyclic stress-strain curves at 3OO'C. a monotonically increasing type of behavior is observed at 400'C. The saturation stress is a strong function of strain rate at all temperatures, with the strain-rate sensitivity being a function of both the plastic strain amplitude and temperature. Details of the microstructural observations are given in a second paper.
R&m&-Le comportement mCcanique de monocristaux de LiF. soumis B un essai de fatique B ternerature elevee. presente certaines similitudes avec celui de monocristaux c.f.c. et C.C. Une saturation de la contrainte cyclique caractirise les cristaux dCform& g 3OO'C et en-dessus. Alors qu'on observe un palier dans les courbes contrainte-d&formation cycliques B 3oo"C, on observe ?I 4OO'C un accroissement monotone. La contrainte g saturation dtpend fortement de la vitesse de deformation g toutes temptratures: la sensibiliti g la vitesse de d&formation dkpend de l'amplitude de la deformation plastique et de la temperature. Les details des observations sur la microstructure sont p&en& dans un second article. Zusammenfassung-Das mechanische Verhalten von LiF-Einkristallen zeigt wghrend der Ermiidung bei hiiherer Temperatur gewisse Ahnlichkeiten mit dem Verhalten von kfz. und krz. Kristallen. Die Spannungssgttigung ist charakteristisch Wr Kristalle. die bei 3oo'C oder hiiher ermiidet werden. Bei 300°C wird ein Plateau in der zyklischen Spannungs-Dehnungskurve beobachtet. bei 400°C dagegen ergibt sich ein monoton ansteigendes Verhalten. Die Slttigungsspannung hIngt bei simtlichen Temperaturen stark von der Dehngeschwindigkeit ab, wobei die Dehngeschwindigkeitsempfindlichkeit eine Funktion von plastischer Dehnungsamplitude und Temperatur ist. Die Beobachtungen der Xlikrostruktur werden in einer weiteren &beii behandelt.
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