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Meeting MS&T24: Materials Science & Technology
Symposium Light Alloys, Advanced Forming Processes and Characterization
Presentation Title Effect of Rolling Temperature on Texture Development and Formability of Pure Ti Sheet
Author(s) Jong Woo Won, Yong Tack Hyun
On-Site Speaker (Planned) Jong Woo Won
Abstract Scope This work investigated the effect of rolling temperature (25 ‒ 800 °C) on rolling-texture development and sheet formability of pure Ti. The rolling temperature significantly affected the development of the typical transverse-direction (TD)-split basal texture in pure Ti sheet by altering the tilting angle of (0001) basal poles. The tilting angle of (0001) poles was determined more by the relative activities of basal <a> slip and pyramidal <c+a slip rather than prismatic <a> slip. After subsequent recrystallization annealing, sheet formability was examined. Despite their different textures, the sheets previously rolled at the different rolling temperatures showed similar formability. This similarity occurred because any given texture could not simultaneously provide in-plane stretching uniformity and thinning capability during sheet forming.

OTHER PAPERS PLANNED FOR THIS SYMPOSIUM

Advanced Averaging Transverse Strain Measurement Technology for Automotive Sheet Metal
Developing Multifunctional Al-based Alloys by Solid Stir Processing
Effect of Rolling Temperature on Texture Development and Formability of Pure Ti Sheet
Effects of Trace Elements on Microstructure and Mechanical Properties of Dual-Phase Mg-Li Based Alloys
Enhanced Mechanical Properties of the Lightweight Ti-Rich Medium-Entropy Alloys by Thermo-Mechanical Treatment
High Speed Extrusion of ZK60 Mg Alloy by Friction Extrusion Process
Microstructure and Mechanical Analysis of a High Pressure Die Cast Recycled AlSi10MnMg(Fe) Alloy
Microstructure Modification and Mechanical Properties Improvement of Lightweight Ti-Rich Medium-Entropy Alloys through Minor Boron Addition
Precipitate Evolution and Properties of 7xxx Aluminum Alloy Under the Influence Magnetic Field Annealing
Solute Clustering Effects on the Microscopic Deformation Behavior of Al-Zn-Mg-Cu Alloys

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