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Meeting 18th International Conference on the Strength of Materials (ICSMA 18)
Symposium Hael Mughrabi Honorary Symposium
Organizer(s) J. Wayne Jones, University of Michigan
John E. Allison, University of Michigan
Heinz Werner Höppel, Friedrich-Alexander-Universität Erlangen-Nürnberg FAU
Abstracts Due 02/28/2018
Proceedings Plan Undecided

Annealing Twin Networks and Fatigue Crack Initiation in Polycrystalline Superalloys
Atomistic Simulation of Dislocation Dipole Transformation and Their Effects on the Deformation and Fracture of some Metals
Crack Initiation Mechanisms during VHCF of Ni-Based Single Crystal Superalloys
Cyclic Deformation Behavior and γ-α´-Phase Transformation of Metastable Austenite AISI 347
Fatigue Failure Modes and Dislocation Mechanisms in a Polycrystalline Nickel Base Superalloy at Intermediate and High Temperature
Flow Stress and Electrical Resistivity in High Purity Al Deformed at 4K
Fracture of Metals at the Nanoscale
Gradient Nanostructure Improves Fatigue Properties through Progressive Microstructural Homogenization
Grain and Sub-Grain Level Strains ahead of an Evolving Fatigue Short Crack as Measured by X-Ray Techniques
Heterogeneous Structures: The Next Hot Research Area?!
In-Situ Investigations of Microstructural Changes during Cyclic Deformation of Aluminium by High Resolution Reciprocal Space Mapping
Influence of Inclusions and Small Defects on Cyclic Torsion and Cyclic Tension Very High Cycle Ffatigue of Martensitic Steels
Micro-Indentations As 3D X-Ray Microscopy Mesoscale Deformation Laboratories
New Insights Into Rate Limiting Deformation Processes in Ni-Base Superalloys
Non-Uniqueness of Fatigue Threshold in Nanocrystalline Ni-Co Alloy
Predicting Fatigue Behavior in Metals and Alloys: The PRISMS Center Fatigue Use Case
Probabilistic Prediction of Dwell Fatigue Lifetime in Microtextured Ti-6Al-4V
Rafting and Deformation Mechanisms during Creep of a Single Crystal Co-Base Superalloy
Rate Processes in Dislocation Dynamics: Effects on Dislocation Microstructure and Comparison with Experimental Data
Tailoring the Properties of a Ni-Based Superalloy via Modification of the Forging Process: An ICME Approach to Fatigue Performance
The Effect of Strain Amplitude on Dislocation Microstructure Evolution and Crack Initiation in Ni and Ni-Based Superalloy Microcrystals
Why does the Fatigue Endurance Limit scale with Ultimate Tensile Strength?

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