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Meeting 2021 TMS Annual Meeting & Exhibition
Symposium 100 Years and Still Cracking: A Griffith Fracture Symposium
Presentation Title Quantitative Phase-Field Modeling of Crack Propagation in Multi-Phase Material Based on Griffith’s Fracture Theory
Author(s) Arezoo Emdadi, Mohsen Asle Zaeem
On-Site Speaker (Planned) Arezoo Emdadi
Abstract Scope A quantitative multi-phase-field model based on the regularized formulation of Griffith’s fracture theory is developed to predict crack propagation in homogeneous and heterogeneous brittle materials. The accuracy and transferability of the model are demonstrated by simulating crack propagation and benchmarking against fracture experiments of concrete in the form of fracture of L-shaped plates and wedge splitting tests, and four-point bending of ZrB2-based laminates and fibrous monolithic composites. Additionally, the effective fracture toughness of ZrB2-based ceramics with different engineered microarchitectures are numerically evaluated and validated by experimental results. To demonstrate the capability of the proposed model for study the fracture of polycrystalline systems, intergranular and transgranular crack propagation in ZrB2 bicrystal and polycrystalline systems under tensile loading are studied in detail. The developed multi-phase-field model can quantitatively provide guidelines for designing microscale architectures and properties of different phases to promote crack deflection and increase the fracture toughness in multi-phase brittle materials.
Proceedings Inclusion? Planned:
Keywords Computational Materials Science & Engineering, ICME, Ceramics

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A Griffith's Theory-based Model for Strength of Silicon Nitride Nanoporous Membranes from Atomistic Simulation Perspective
A Length-scale Independent Phase-Field Model for Quantitative Prediction of Ductile Fracture
Characterization of a Novel Crack Growth Mechanism in Ti-6Al-4V Subjected to Dwell Fatigue at Elevated Temperature
Crack Driving Force Expressions Using Compliance Approach in Clamped Beam Bending Geometry
Designing Ductility in BCC High Entropy Alloys?
Dislocation Pathways in Refractory Multi-principal Element Alloys
Dislocations Processes in Fracture and Toughening Mechanisms of UFG bcc Metals at Room Temperature
Domain Nucleation in Ferroelastic Microcrystals: Competition between Twinning, Slip and Fracture
EAM Potential for Liquid Metal Induced Fracture
Effect of Aspect Ratio on Stress Intensity Factor Solutions for Single Edge Notch Wire Fracture Test Specimen under Tensile and Clamped Bend Loading Conditions
Fracture-based Reuse of Single Crystal Wafers for High-Efficiency Photovoltaics
Fracture and Adhesion in Small Scale Devices– Microswitches, Microcantilevers and Micron-thick Films
Fracture Resistance of Hierarchical Metallic Nanocomposite Thin Films
High-strength and Thermal Stability of Nanotwinned Al Alloys
Imaging the Chemo-mechanical Coupled Fracture in Metal Passivation Layer by In-situ TEM
Improving Metal-polymer Adhesion through Alloy Development
In-situ Fracture along Distinct Interface Types
In Situ Observations and Measurements of Local Plastic Deformation and Fracture with 4D-STEM
Introductory Comments: 100 Years and Still Cracking: A Griffith Fracture Symposium
Leveraging Griffith’s Energy Balance in Extreme Environments
Modeling Insights into Micro Single-Edge Bend Fracture Toughness Testing of Multilayered Metal-ceramic Cu/TiN and Al/TiN Nanocomposite Thin Films
Modeling Mechanics of Nanoparticles: Everything but Size
Nanomechanics of Amorphous Silica: From Mechanical to Fracture Properties
On the Fracture of Multi-element Metallic Alloys
On the Transition from Shear Banding to Fracture in Metals: In Situ Analysis of Plastic Flow and Deformation Fields
Probing Small-scale Fracture and Plasticity in Quasicrystals and High-entropy Alloys
Quantitative Phase-Field Modeling of Crack Propagation in Multi-Phase Material Based on Griffith’s Fracture Theory
Reversing Griffith after 100 Years: Mechanics of the Solid-state Bonding
The Clamped Beam Bending as a Length Scale Compatible Fracture Test Geometry
The Curious Phenomenon of Prince Rupert's Drops
The Maximum Limit of Compressive Strength and Hardness of Nanocrystalline MgAl2O4 Spinel
The Role of Fracture in the Reduction of Iron Ore with Hydrogen
Transformation-induced Cracking in ZrO2 Shape-memory Ceramics: towards Cyclic Stability in Polycrystals

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