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Interaction between a dislocation and monovalent anion in various alkali halide crystals

โœ Scribed by Y. Kohzuki


Publisher
John Wiley and Sons
Year
2010
Tongue
English
Weight
197 KB
Volume
45
Category
Article
ISSN
0232-1300

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โœฆ Synopsis


It was investigated from (L 0 /L) 2 versus ฯ† 0 curve that the Friedel relation between the effective stress and the average length of dislocation segments, L, is appropriate for the interaction between a dislocation and the monovalent anion in various alkali halides single crystals (NaCl: Br -, NaBr: Cl -or I -, KCl: Br -or I -, and RbCl: Br -or I -). Here, L 0 represents the average spacing of monovalent anions on a slip plane and ฯ† 0 is the bending angle at which the dislocation breaks away from the anion at the temperature of 0 K. This is because the anions are the weak obstacles such as impede the dislocation at ฯ† 0 above about 150 degrees, where the Friedel relation agrees with the Fleischer one (L 0 2 = L 2 (ฯ€-ฯ† 0 )/2). Furthermore, the values of (L/ L 0 ) were found to be within 4.05 to 5.87 for the crystals.


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Subject classification: 62.20.Hh; S9.11 Strain rate cycling tests were carried out under simultaneous Blaha effect measurement on NaCl single crystals doped with Br --. Curves of strain rate sensitivity (SRS) of flow stress versus stress decrement due to superimposition of oscillatory stress were ob