Inhaltsbereich
Publication
(Co) Author: Skrotzki, W.
| Paper (ISI journals) [11] |
Paper (further journals) [1] |
All [12] |
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(2010): Microstructure and texture in Ni50Mn29Ga21 deformed by high-pressure torsion. Scripta Materialia, 62, 9, 650-653.
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(2009): Microstructure development during high strain torsion of NIAl. Journal of Engineering Materials and Technology, 131, 1, 011101/1-011101/9.| EDOC: 12973 | 10.1115/1.3030882 |
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(2009): Texture formation and Swift effect in high strain torsion of NiAl. Journal of Engineering Materials and Technology, 131, 1, 011102/1-011102/10.| EDOC: 12974 | 10.1115/1.3030896 |
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(2008): High strain torsion of a TiAl-based alloy. Materials Science and Engineering A - Structural Materials Properties Microstructure and Processing, 483-484, 512-516.
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(2007): Grain refinement and texture formation in torsion deformed NiAl. International Journal of Materials Research, 2007, 4, 276-282.| EDOC: 10902 |
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(2005): Shear texture formation during high-strain torsion of titanium aluminides. Solid State Phenomena, 105, 303-308.| EDOC: 8163 |
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(2005): Torsional creep of polycrystalline NiAl. Scripta Materialia, 52, 4, 289-293.
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(2005): Dynamic Recrystallization of Torsion Deformed NiAl. Materials Science Forum, 495/497, 743-748.| EDOC: 8470 |
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(2002): Local texture measurements with high-energy synchrotron radiation on NiAl deformed in torsion. Materials Science Forum, 408/412, 161-166.| EDOC: 8271 |
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(2002): Influence of texture and hydrostatic pressure on the room temperature compression of NiAl polycrystals. Materials Science and Engineering A: Structural Materials: Properties, Microstructure and Processing, 329-331, 235-240.
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(2001): Texture induced plastic anisotropy of NiAl polycrystals. Materials Science and Engineering A: Structural Materials: Properties, Microstructure and Processing, 319, 364-367.
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(2003): Torsion texture measurements with high-energy synchrotron radiation on NiAl. Textures and Microstructures, 35, 3-4, 163-173.


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