On the variation of wire texture with stacking fault energy in f.c.c. metals and alloys \* Wire textures of cold-drawn f.c.c. metals and alloys are describable as some combination of (100) and \* Received &iemh 2, 1965. i To produce this twinning one must, of course, impose the necessary stresses; a
The development of the rolling texture of f.c.c. metals dependent on relative stacking-fault energy
✍ Scribed by A. Mücklich; Dr. J. Tobisch; Prof. Dr. K. Kleinstück
- Publisher
- John Wiley and Sons
- Year
- 1978
- Tongue
- English
- Weight
- 594 KB
- Volume
- 13
- Category
- Article
- ISSN
- 0232-1300
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✦ Synopsis
Abstract
Neutronographic texture investigations are presented for nickel and Co32Ni – the representatives of f.c.c. metals of very high or extremely low relative stacking‐fault energies, resp., as well as for α‐brasses with zinc concentrations between 1 and 4 atomic percent, which are typical for mean values of γ/Gb. The discussion of the results is based on three‐dimensional distribution functions calculated by series expansion. For the main texture components a higher indexing as usually is assumed what is also due to the orientations of these minor components originating in the mechanical twinning. The origin of additional minor components of additional minor components is attributed to the formation of surface textures and recrystallization phenomena. The texture development at extreme relative stacking‐fault energies is associated with cross slip or microtwinning and partial glide, resp.
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