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Meeting 2023 TMS Annual Meeting & Exhibition
Symposium Material Behavior Characterization via Multi-Directional Deformation of Sheet Metal
Presentation Title Examining Temperature, Strain Rate, and Strain State on TRIP-assisted Steel Forming Behavior
Author(s) Christopher Finfrock, Nathan Smith, Melissa Thrun, Amy Clarke, Kester D. Clarke
On-Site Speaker (Planned) Kester D. Clarke
Abstract Scope TRansformation Induced Plasticity (TRIP) assisted alloys take advantage of metastable phase changes during deformation to increase strain hardening rate and delay strain localization. The stability of the metastable phases is important and may be affected by deformation parameters such as temperature, strain rate, and strain path. However, decoupling the effects of these parameters can be difficult especially when considering high strength metals that may generate significant heat from work during deformation. Here, we present outcomes of experiments to separate the effects of strain rates, temperatures, and strain states relevant to forming of high strength alloys at or near room temperature.
Proceedings Inclusion? Planned:
Keywords Iron and Steel, Mechanical Properties, Shaping and Forming

OTHER PAPERS PLANNED FOR THIS SYMPOSIUM

A Novel Anisotropic Continuum Damage Evolution Model Coupled with Anisotropic Hardening under Non-proportional Deformation Paths
A Practical Edge Fracture Limit for the Advanced High Strength Steels
Anisotropic Behaviour and Deformation Mechanism of Ti407 Sheets with Reduced Al Content
Characterization and Modeling of Anisotropic Fracture of Advanced High Strength Steels
Characterization of Commercially Pure Titanium Twinning under Proportional Loading Paths
Determination of Optimum Tension-compression Loops/Cycles for Estimating Yoshida-Uemori Constitutive Model Parameters for Advanced Lightweighting Materials
Examining Temperature, Strain Rate, and Strain State on TRIP-assisted Steel Forming Behavior
Predicting Strength and Ductility of Multi-directionally Deformed Steel Plate: a Coupled Distortional Hardening and Continuum Damage Mechanics
Simplifying Complex Loading for Training Advanced Constitutive Models: Treating Sheet Metal Like It’s Not 2D

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