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Meeting Materials Science & Technology 2020
Symposium Micro- and Nano-Mechanical Behavior of Materials
Presentation Title Processing, Characterization, and Modeling of Nano-twinned Alloys: Understanding the Role that Controlling and Tuning of Microstructure has in Dislocation-twin Interactions
Author(s) Francisco Andrade Chávez, Orcun Koray Celebi, Huseyin Sehitoglu, Jessica Krogstad
On-Site Speaker (Planned) Francisco Andrade Chávez
Abstract Scope Nanotwinned metallic systems have the potential to warrant an optimum combination of high strength, ductility and cracking resistance. Dislocation-twin interactions are responsible for the remarkable properties they exhibit, but realizing the full potential requires greater control over the nature and distribution of nanotwins. Here we use a combination of magnetron sputtering and molecular statics simulations as a route to develop a fundamental understanding of the mechanisms necessary to achieve such control of the microstructure. This is done through the manipulation of sputtering parameters, alloy chemistry and substrate interfacial strain. The nickel-titanium alloy system is used as a model system to manipulate the SFE, and thereby the likelihood for twinning. Preliminary results confirm that twin density can be directly modified through alloy chemistry and that interfacial strain modulation is effective in controlling twin orientation. Precise microstructural control facilitated by this work, will enable future systematic experimental exploration of specific dislocation-twin interactions.

OTHER PAPERS PLANNED FOR THIS SYMPOSIUM

An Integrated In Situ Solution for Automated Material Testing in SEM
Atomistic Simulations of Collisions between SiC Nanoparticles
Characterization of Dislocation Avalanches by In Situ Micropillar Compression Tests with Simultaneously Detected Acoustic Emission
Characterization of Electroless Copper Deposits on Electrospun PAN Fibers in Aligned and Random Configurations
Characterization of Fatigue Damage Behavior in Unidirectional Carbon Fiber Reinforced Plastic Laminates
Computer Vision Approach to Study Surface Deformation of Materials
Cyclo[18]carbon as an Ultra-flexible Material
Diffusion Induced Abnormal Softening Behaviors in Nanocrystals
Effects of Testing Temperature and Sample-size on Tensile Deformation of Metallic Glass
Exploring Small-scale Quasicrystal Plasticity in Unknown Temperature Regimes and Compositions
Gradatim Ferociter: Exploring the Grain Size Stability of Heterogeneous Copper in Thermal, Mechanical and Radiation Environments
In Situ Nanomechanical Testing of Piezoresistive Materials
In Situ Nanomechanics of Ni-based Superalloys and Bond Coating: Effect of Temperature
Introductory Comments: Micro- and Nano-Mechanical Behavior of Materials
Mechanical Behavior of Resilin-mimicking Materials
Mechanical Properties of Hybrid Core-shell Ceramic Nanoparticles
Microparticle Impacts at Supersonic Speeds, and the Role of Surface Layers
Persistent, Inelastic Cycling Behavior in Rare Earth Orthophosphate Ceramics
Processing, Characterization, and Modeling of Nano-twinned Alloys: Understanding the Role that Controlling and Tuning of Microstructure has in Dislocation-twin Interactions
Quantitative Evaluation of Large Nanoindentation Data Sets
Small-Scale Mechanical Behavior of Ion-irradiated Amorphous Metals versus Multi-Principal Alloys
Spatial-temporal Investigation of Shear Bands in Bulk Metallic Glasses
Temperature-dependent Intermittent Plasticity of Nb Microcrystals
Time-resolved Atomic-scale Observations of Deformation and Fracture of Nanostructured Materials
Twinning and Detwinning in Small-sized Crystals

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