[1] Bretschneider J., Holste, C., Tippelt B.:
Cyclic plasticity of nickel single crystals at elevated temperatures. Acta Materialia 45 (1997), 3775–3783
DOI 10.1016/S1359-6454(97)00030-X
[2] Huang J., Ghoniem N. M., Kratochvíl J.: On the sweeping mechanism of dipolar dislocation loops under fatigue conditions. Modelling and Simulation in Materials Science and Engineering 12 (2004), pp. 917–928
[3] Kroupa F.:
Long-range elastic field of semi-infinite dislocation dipole and of dislocation jog. Phys. Status Solidi 9 (1965), 27–32
DOI 10.1002/pssb.19650090103
[4] Minárik V., Kratochvíl J., Mikula, K., Beneš M.:
Numerical simulation of dislocation dynamics. In: Numerical Mathematics and Advanced Applications, ENUMATH 2003 (peer reviewed proceedings) (M. Feistauer, V. Dolejší, P. Knobloch, K. Najzar, eds.), Springer–Verlag, Berlin 2004, pp. 631–641
MR 2121409 |
Zbl 1163.65309
[5] Minárik V., Kratochvíl, J., Mikula K.: Numerical simulation of dislocation dynamics by means of parametric approach. In: Proc. Czech Japanese Seminar in Applied Mathematics (M. Beneš, J. Mikyška, and T. Oberhuber, eds.), Faculty of Nuclear Sciences and Physical Engineering, Czech Technical University in Prague 2005, pp. 128–138
[7] Tippelt B.:
Influence of temperature on microstructural parameters of cyclically deformed nickel single crystals. Philos. Mag. Letters 74 (1996), 3, 161–166
DOI 10.1080/095008396180317