[HTML][HTML] Generation of 3D representative volume elements for heterogeneous materials: A review

S Bargmann, B Klusemann, J Markmann… - Progress in Materials …, 2018 - Elsevier
This work reviews state of the art representative volume element (RVE) generation
techniques for heterogeneous materials. To this end, we present a systematic classification …

A critical review of orientation microscopy in SEM and TEM

S Zaefferer - Crystal Research and Technology, 2011 - Wiley Online Library
Orientation microscopy (OM) refers to techniques for reconstruction of microstructures based
on the spatially resolved measurement of individual crystallographic phases and …

A framework for automated analysis and simulation of 3D polycrystalline microstructures.: Part 1: Statistical characterization

M Groeber, S Ghosh, MD Uchic, DM Dimiduk - Acta Materialia, 2008 - Elsevier
This is the first of a two-part paper aimed at developing a robust framework for the collection,
quantification and simulation of 3D polycrystalline microstructures. Serial-sectioning …

Three-dimensional orientation microscopy in a focused ion beam–scanning electron microscope: A new dimension of microstructure characterization

S Zaefferer, SI Wright, D Raabe - Metallurgical and Materials Transactions …, 2008 - Springer
In the present work, we report our recent progress in the development, optimization, and
application of a technique for the three-dimensional (3-D) high-resolution characterization of …

Periodic three-dimensional mesh generation for crystalline aggregates based on Voronoi tessellations

F Fritzen, T Böhlke, E Schnack - Computational Mechanics, 2009 - Springer
In this paper a method for the generation of three-dimensional periodic meshes for the
numerical simulation of polycrystalline aggregates is presented. The mesh construction is …

An introduction to three-dimensional X-ray diffraction microscopy

HF Poulsen - Journal of Applied Crystallography, 2012 - journals.iucr.org
Three-dimensional X-ray diffraction microscopy is a fast and nondestructive structural
characterization technique aimed at studies of the individual crystalline elements (grains or …

Intragranular three-dimensional stress tensor fields in plastically deformed polycrystals

Y Hayashi, D Setoyama, Y Hirose, T Yoshida, H Kimura - Science, 2019 - science.org
The failure of polycrystalline materials used in infrastructure and transportation can be
catastrophic. Multiscale modeling, which requires multiscale measurements of internal …

[HTML][HTML] Quantification of softening kinetics in cold-rolled pure aluminum and copper using High-Temperature Scanning Indentation

G Tiphéne, G Kermouche, P Baral, C Maurice… - Materials & Design, 2023 - Elsevier
Abstract The High-Temperature Scanning Indentation (HTSI) method enables the
continuous monitoring of various mechanical properties, including Young's modulus …

Observation of recovery and recrystallization in high-purity aluminum measured with forward modeling analysis of high-energy diffraction microscopy

CM Hefferan, J Lind, SF Li, U Lienert, AD Rollett… - Acta Materialia, 2012 - Elsevier
High-energy X-ray diffraction microscopy is a non-destructive materials characterization
technique that is capable of tracking the evolution of three-dimensional microstructures as …

Ensemble Kalman filter-based data assimilation for three-dimensional multi-phase-field model: Estimation of anisotropic grain boundary properties

A Yamanaka, Y Maeda, K Sasaki - Materials & Design, 2019 - Elsevier
Data assimilation (DA) has been used as a machine learning approach to estimate a
system's state and the unknown parameters in its numerical model by integrating observed …