Affiliation:
1. Voronezh State Technical University
Abstract
In the present work, we studied dislocation amplitude-independent internal friction (AIIF) for segment of edge dislocation. Results obtained were compared with results of the Koehler-Granato-Lücke string model. Expression for dislocation effective rigidity and effective mass, obtained earlier by applying generalized susceptibility of dislocation, is used. Dependences of dislocation effective rigidity on dislocation segment length, dislocation effective mass on frequency and segment length, internal friction on for various values of frequency and segment length are plotted. Case of elastic interaction of the dislocation segment with pinning points is also investigated. It was found that main effect of elastic interaction the dislocation with the pinning points is reduces to influence in the effective rigidity. Plots of internal friction dependence on frequency for various values of distance between the dislocation and the pinning points are constructed.
Publisher
Trans Tech Publications, Ltd.
Subject
Mechanical Engineering,Mechanics of Materials,General Materials Science
Reference27 articles.
1. M.S. Blanter, Yu.V. Pigusov (Eds.), Internal Friction Method in Metal Researches, A Handbook, Metallurgiya, Moscow, (1991).
2. J.S. Koehler, The influence of dislocations and impurities on the damping and the elastic constants of metal single crystals, in: W. Shockley, J.H. Hollomon, R. Maurer, F. Seitz (Eds.), Imperfections in Nearly Perfect Crystals, Wiley, New York, 1952, pp.197-212.
3. A.V. Granato, K. Lücke, Theory of mechanical damping due to dislocations, J. Appl. Phys. 27 (1956) 583-593.
4. A.V. Granato, K. Lücke, Application of dislocation theory to internal friction phenomena at high frequencies, J. Applied Physics. 27 (1956) 789-805.
5. D. Εshelby, The Equation of motion of a dislocation, Phys. Rev. 90 (1953) 248-255.
Cited by
1 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献
1. Internal friction caused by electron drag of edge dislocation bending vibrations in the peierls relief;II INTERNATIONAL SCIENTIFIC AND PRACTICAL CONFERENCE “TECHNOLOGIES, MATERIALS SCIENCE AND ENGINEERING”;2023