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Crystal Plasticity, Materials Science, Simulation
Belgium

Biography

I was born in Siegen, Germany. After visiting the Rudolf-Steiner-Schule in Siegen and spending some time in Ghana and in east Africa, I started my academic education at the TU München. I continued with a PhD at the RWTH Aachen and worked as a post doc and group leader at the Max-Planck-Institut für Eisenforschung. Now, I am assistant professor for computational materials science at KU Leuven.

Activities

Employment (4)

KU Leuven: Leuven, Vlaams-Brabant, BE

2020-10-01 to present | Assistant Professor (Department of Materials Engineering and Department of Computer Science)
Employment
Source: Self-asserted source
Martin Diehl

Max-Planck-Institut für Eisenforschung GmbH: Düsseldorf, Nordrhein-Westfalen, DE

2010-05-01 to 2020-09-30 | Diplom Student => PhD Student => PostDoc => Group Lead (Microstructure Physics and Alloy Design)
Employment
Source: Self-asserted source
Martin Diehl

University of California Los Angeles: Los Angeles, CA, US

2019-06-15 to 2019-10-01 | Visiting Researcher (Department of Materials Science and Engineering)
Employment
Source: Self-asserted source
Martin Diehl

National Institute for Materials Science: Tsukuba, Ibaraki, JP

2017-06-01 to 2017-08-31 | Visiting Researcher (Research and Services Division of Materials Data and Integrated System)
Employment
Source: Self-asserted source
Martin Diehl

Education and qualifications (2)

Rheinisch Westfälische Technische Hochschule Aachen: Aachen, Nordrhein-Westfalen, DE

2011-06-01 to 2016-04-03 | Dr.-Ing. (Fakultät für Georessourcen und Materialtechnik)
Education
Source: Self-asserted source
Martin Diehl

TU München: München, Bayern, DE

2005-10-01 to 2010-11-15 | Dipl.-Ing. (Fakultät für Maschinenwesen)
Education
Source: Self-asserted source
Martin Diehl

Funding (2)

Thermo-chemo-mechanical coupling during thermomechanical processing of microalloyed steels (TCMPrecipSteel)

2015-07 to 2021-07 | Grant
Deutsche Forschungsgemeinschaft (Bonn, DE)
Source: Self-asserted source
Martin Diehl

Development of full field gradient plasticity FEM code to predict constitutive material model for dual phase steels

2011-06 to 2015-06 | Contract
Materials innovation institute (M2i) (Delft, NL)
GRANT_NUMBER:

M41.2.10410

Source: Self-asserted source
Martin Diehl

Works (46)

Accessing the accuracy of full-field crystal plasticity models using in situ high energy x-ray diffraction microscopy

Modelling and Simulation in Materials Science and Engineering
2025-03-15 | Journal article
Contributors: Sheng Zhang; Martin Diehl; Alireza Maldar; Xiaoqing Shang; Xiaoqin Zeng; Leyun Wang
Source: check_circle
Crossref

A Python Library for Pre- and Post-Processing of DAMASK Simulations

Journal of Open Source Software
2025-01-28 | Journal article
Contributors: Daniel Otto de Mentock; Sharan Roongta; Franz Roters; Philip Eisenlohr; Martin Diehl
Source: check_circle
Crossref

Crystal Plasticity

Comprehensive Mechanics of Materials
2024 | Journal article
Contributors: Martin Diehl
Source: check_circle
Web of Science Researcher Profile Sync

Comparison of Full-Field Crystal Plasticity Simulations to Synchrotron Experiments: Detailed Investigation of Mispredictions

Integrating Materials and Manufacturing Innovation
2024-09 | Journal article
Contributors: Nikhil Prabhu; Martin Diehl
Source: check_circle
Crossref

Material representativeness of a polymer matrix doped with nanoparticles as the random speckle pattern for digital volume correlation of fibre-reinforced composites

Composites Part B: Engineering
2024-05 | Journal article
Contributors: Thanasis Chatziathanasiou; Okan Demir; Jeroen Soete; Christian Breite; Mahoor Mehdikhani; Martin Diehl; Yentl Swolfs
Source: check_circle
Crossref

Inverse design of dual-phase steel microstructures using generative machine learning model and Bayesian optimization

International Journal of Plasticity
2023-12 | Journal article
Contributors: Navyanth Kusampudi; Martin Diehl
Source: check_circle
Crossref

Two-stage 2D-to-3D reconstruction of realistic microstructures: Implementation and numerical validation by effective properties

Computer Methods in Applied Mechanics and Engineering
2023-07 | Journal article
Contributors: Paul Seibert; Alexander Raßloff; Karl A. Kalina; Joachim Gussone; Katrin Bugelnig; Martin Diehl; Markus Kästner
Source: check_circle
Crossref

Modeling Bainite Dual-Phase Steels: A High-Resolution Crystal Plasticity Simulation Study

Crystals
2023-04-13 | Journal article
Contributors: Francisco-José Gallardo-Basile; Franz Roters; Robin M. Jentner; Kinshuk Srivastava; Sebastian Scholl; Martin Diehl
Source: check_circle
Crossref
grade
Preferred source (of 2)‎

A machine learning model to predict yield surfaces from crystal plasticity simulations

International Journal of Plasticity
2023-02 | Journal article
Contributors: Anderson Nascimento; Sharan Roongta; Martin Diehl; Irene J. Beyerlein
Source: check_circle
Crossref

Crystal plasticity simulation of in-grain microstructural evolution during large deformation of IF-steel

Acta Materialia
2022-09 | Journal article
Contributors: Karo Sedighiani; Konstantina Traka; Franz Roters; Jilt Sietsma; Dierk Raabe; Martin Diehl
Source: check_circle
Crossref

Predicting grain boundary damage by machine learning

International Journal of Plasticity
2022-03 | Journal article
Part of ISSN: 0749-6419
Source: Self-asserted source
Martin Diehl

Determination and analysis of the constitutive parameters of temperature-dependent dislocation-density-based crystal plasticity models

Mechanics of Materials
2022-01 | Journal article
Part of ISSN: 0167-6636
Source: Self-asserted source
Martin Diehl

Large-deformation crystal plasticity simulation of microstructure and microtexture evolution through adaptive remeshing

International Journal of Plasticity
2021-11 | Journal article
Part of ISSN: 0749-6419
Source: Self-asserted source
Martin Diehl

Lath Martensite Microstructure Modeling: A High-Resolution Crystal Plasticity Simulation Study

Materials
2021-02-02 | Journal article
Contributors: Francisco-José Gallardo-Basile; Yannick Naunheim; Franz Roters; Martin Diehl
Source: check_circle
Crossref

Solving Material Mechanics and Multiphysics Problems of Metals with Complex Microstructures Using DAMASK—The Düsseldorf Advanced Material Simulation Kit

Advanced Engineering Materials
2020-03 | Journal article
Contributors: Martin Diehl; Ding Wang; Chuanlai Liu; Jaber Rezaei Mianroodi; Fengbo Han; Duancheng Ma; Piet J. J. Kok; Franz Roters; Pratheek Shanthraj
Source: check_circle
Crossref

Using spectral-based representative volume element crystal plasticity simulations to predict yield surface evolution during large scale forming simulations

Journal of Materials Processing Technology
2020-03 | Journal article
Contributors: Fengbo Han; Martin Diehl; Franz Roters; Dierk Raabe
Source: check_circle
Crossref

Coupled experimental-computational analysis of primary static recrystallization in low carbon steel

Modelling and Simulation in Materials Science and Engineering
2020-01-01 | Journal article
Contributors: Martin Diehl; Markus Kühbach
Source: check_circle
Crossref

DAMASK – The Düsseldorf Advanced Material Simulation Kit for modeling multi-physics crystal plasticity, thermal, and damage phenomena from the single crystal up to the component scale

Computational Materials Science
2019 | Journal article
EID:

2-s2.0-85055747068

Contributors: Roters, F.; Diehl, M.; Shanthraj, P.; Eisenlohr, P.; Reuber, C.; Wong, S.L.; Maiti, T.; Ebrahimi, A.; Hochrainer, T.; Fabritius, H.-O. et al.
Source: Self-asserted source
Martin Diehl via Scopus - Elsevier
grade
Preferred source (of 2)‎

The through-process texture analysis of plate rolling by coupling finite element and fast Fourier transform crystal plasticity analysis

Modelling and Simulation in Materials Science and Engineering
2019-12-01 | Journal article
Contributors: Noriki Fujita; Satoshi Igi; Martin Diehl; Franz Roters; Dierk Raabe
Source: check_circle
Crossref

Quantifying the Contribution of Crystallographic Texture and Grain Morphology on the Elastic and Plastic Anisotropy of bcc Steel

Metals
2019-11-22 | Journal article
Contributors: Martin Diehl; Jörn Niehuesbernd; Enrico Bruder
Source: check_circle
Crossref
grade
Preferred source (of 2)‎

On the interaction of precipitates and tensile twins in magnesium alloys

Acta Materialia
2019-10 | Journal article
Contributors: C. Liu; P. Shanthraj; J.D. Robson; M. Diehl; S. Dong; J. Dong; W. Ding; D. Raabe
Source: check_circle
Crossref

Numerical Benchmark of Phase-Field Simulations with Elastic Strains: Precipitation in the Presence of Chemo-Mechanical Coupling

Computational Materials Science
2018-12 | Journal article
Contributors: Reza Darvishi Kamachali; Christian Schwarze; Mingxuan Lin; Martin Diehl; Pratheek Shanthraj; Ulrich Prahl; Ingo Steinbach; Dierk Raabe
Source: check_circle
Crossref
grade
Preferred source (of 3)‎

On the role of the collinear dislocation interaction in deformation patterning and laminate formation in single crystal plasticity

Mechanics of Materials
2018-10 | Journal article
Contributors: Ding Wang; Martin Diehl; Franz Roters; Dierk Raabe
Source: check_circle
Crossref
grade
Preferred source (of 3)‎

An integrated crystal plasticity–phase field model for spatially resolved twin nucleation, propagation, and growth in hexagonal materials

International Journal of Plasticity
2018-07 | Journal article
Contributors: C. Liu; P. Shanthraj; M. Diehl; F. Roters; S. Dong; J. Dong; W. Ding; D. Raabe
Source: check_circle
Crossref
grade
Preferred source (of 3)‎

Development of damage-resistant dual-phase steels

Chernye Metally
2017 | Journal article
EID:

2-s2.0-85030869801

Contributors: Ponge, D.; Diehl, M.; Archie, F.; Zaefferer, S.; Roters, F.; Raabe, D.
Source: Self-asserted source
Martin Diehl via Scopus - Elsevier

Исследование распределения напряжений и деформаций в трехмерной микроструктуре двухфазной стали в рамках теории пластичности кристаллов

2017 | Journal article
SOURCE-WORK-ID:

0216192335456-19

Contributors: Diehl, M.; An, D.; Shanthraj, P.; Zaefferer, S.; Roters, F.; Raabe, D.; Diehl, Martin; An, Dayong; Zaefferer, Stefan; Roters, Franz et al.
Source: Self-asserted source
Martin Diehl via ResearcherID

Review and outlook: mechanical, thermodynamic, and kinetic continuum modeling of metallic materials at the grain scale

MRS Communications
2017-12-16 | Journal article
Contributors: Martin Diehl
Source: check_circle
Crossref
grade
Preferred source (of 3)‎

Crystal plasticity study on stress and strain partitioning in a measured 3D dual phase steel microstructure

Physical Mesomechanics
2017-09-23 | Journal article
Source: Self-asserted source
Martin Diehl
grade
Preferred source (of 3)‎

Coupled Crystal Plasticity–Phase Field Fracture Simulation Study on Damage Evolution Around a Void: Pore Shape Versus Crystallographic Orientation

JOM
2017-05-16 | Journal article
Contributors: Martin Diehl; Marcel Wicke; Pratheek Shanthraj; Franz Roters; Angelika Brueckner-Foit; Dierk Raabe
Source: check_circle
Crossref
grade
Preferred source (of 3)‎

Identifying Structure–Property Relationships Through DREAM.3D Representative Volume Elements and DAMASK Crystal Plasticity Simulations: An Integrated Computational Materials Engineering Approach

JOM
2017-05-14 | Journal article
Contributors: Martin Diehl; Michael Groeber; Christian Haase; Dmitri A. Molodov; Franz Roters; Dierk Raabe
Source: check_circle
Crossref
grade
Preferred source (of 3)‎

A Flexible and Efficient Output File Format for Grain-Scale Multiphysics Simulations

Integrating Materials and Manufacturing Innovation
2017-03-25 | Journal article
Source: Self-asserted source
Martin Diehl
grade
Preferred source (of 2)‎

Crystal plasticity study of monocrystalline stochastic honeycombs under in-plane compression

Acta Materialia
2016 | Journal article
EID:

2-s2.0-84948127972

Contributors: Ma, D.; Eisenlohr, P.; Epler, E.; Volkert, C.A.; Shanthraj, P.; Diehl, M.; Roters, F.; Raabe, D.
Source: Self-asserted source
Martin Diehl via Scopus - Elsevier
grade
Preferred source (of 3)‎

Neighborhood influences on stress and strain partitioning in dual-phase microstructures: An investigation on synthetic polycrystals with a robust spectral-based numerical method

Meccanica
2016 | Journal article
EID:

2-s2.0-84955201318

Contributors: Diehl, M.; Shanthraj, P.; Eisenlohr, P.; Roters, F.
Source: Self-asserted source
Martin Diehl via Scopus - Elsevier
grade
Preferred source (of 2)‎

A virtual laboratory using high resolution crystal plasticity simulations to determine the initial yield surface for sheet metal forming operations

International Journal of Plasticity
2016-05 | Journal article
Contributors: Haiming Zhang; Martin Diehl; Franz Roters; Dierk Raabe
Source: check_circle
Crossref
grade
Preferred source (of 3)‎

Analytical bounds of in-plane Young's modulus and full-field simulations of two-dimensional monocrystalline stochastic honeycomb structures

Computational Materials Science
2015 | Journal article
EID:

2-s2.0-84938518551

Contributors: Ma, D.; Eisenlohr, P.; Shanthraj, P.; Diehl, M.; Roters, F.; Raabe, D.
Source: Self-asserted source
Martin Diehl via Scopus - Elsevier
grade
Preferred source (of 2)‎

Linking atomistic, kinetic Monte Carlo and crystal plasticity simulations of single-crystal tungsten strength

GAMM Mitteilungen
2015 | Journal article
EID:

2-s2.0-84941054217

Contributors: Cereceda, D.; Diehl, M.; Roters, F.; Shanthraj, P.; Raabe, D.; Perlado, J.M.; Marian, J.
Source: Self-asserted source
Martin Diehl via Scopus - Elsevier
grade
Preferred source (of 2)‎

Unraveling the temperature dependence of the yield strength in single-crystal tungsten using atomistically-informed crystal plasticity calculations

International Journal of Plasticity
2015-09 | Journal article
Contributors: David Cereceda; Martin Diehl; Franz Roters; Dierk Raabe; J.Manuel Perlado; Jaime Marian
Source: Self-asserted source
Martin Diehl via Crossref Metadata Search
grade
Preferred source (of 3)‎

An Overview of Dual-Phase Steels: Advances in Microstructure-Oriented Processing and Micromechanically Guided Design

Annu. Rev. Mater. Res.
2015-07 | Journal article
Contributors: C.C. Tasan; M. Diehl; D. Yan; M. Bechtold; F. Roters; L. Schemmann; C. Zheng; N. Peranio; D. Ponge; M. Koyama et al.
Source: Self-asserted source
Martin Diehl via Crossref Metadata Search
grade
Preferred source (of 3)‎

Numerically robust spectral methods for crystal plasticity simulations of heterogeneous materials

International Journal of Plasticity
2015-03 | Journal article
Contributors: P. Shanthraj; P. Eisenlohr; M. Diehl; F. Roters
Source: Self-asserted source
Martin Diehl via Crossref Metadata Search
grade
Preferred source (of 3)‎

In situ observation of collective grain-scale mechanics in Mg and Mg-rare earth alloys

2014 | Journal article
EID:

2-s2.0-84906709190

Contributors: Wang, F.; Sandlöbes, S.; Diehl, M.; Sharma, L.; Roters, F.; Raabe, D.
Source: Self-asserted source
Martin Diehl via Scopus - Elsevier
grade
Preferred source (of 2)‎

Integrated experimental-simulation analysis of stress and strain partitioning in multiphase alloys

2014 | Journal article
EID:

2-s2.0-84908214186

Contributors: Tasan, C.C.; Diehl, M.; Yan, D.; Zambaldi, C.; Shanthraj, P.; Roters, F.; Raabe, D.
Source: Self-asserted source
Martin Diehl via Scopus - Elsevier
grade
Preferred source (of 2)‎

Strain localization and damage in dual phase steels investigated by coupled in-situ deformation experiments and crystal plasticity simulations

International Journal of Plasticity
2014 | Journal article
EID:

2-s2.0-84922689409

Contributors: Tasan, C.C.; Hoefnagels, J.P.M.; Diehl, M.; Yan, D.; Roters, F.; Raabe, D.
Source: Self-asserted source
Martin Diehl via Scopus - Elsevier
grade
Preferred source (of 2)‎

A spectral method solution to crystal elasto-viscoplasticity at finite strains

International Journal of Plasticity
2013 | Journal article
EID:

2-s2.0-84876895772

Contributors: Eisenlohr, P.; Diehl, M.; Lebensohn, R.A.; Roters, F.
Source: Self-asserted source
Martin Diehl via Scopus - Elsevier
grade
Preferred source (of 2)‎

Crystal Plasticity Modeling

Microstructural Design of Advanced Engineering Materials
2013 | Book
EID:

2-s2.0-85017337495

Contributors: Roters, F.; Diehl, M.; Eisenlohr, P.; Raabe, D.
Source: Self-asserted source
Martin Diehl via Scopus - Elsevier

Crystal Plasticity Modeling

Microstructural Design of Advanced Engineering Materials
2013-07 | Other
Contributors: Franz Roters; Martin Diehl; Philip Eisenlohr; Dierk Raabe
Source: Self-asserted source
Martin Diehl via Crossref Metadata Search
grade
Preferred source (of 2)‎

DAMASK: The Düsseldorf advanced material simulation kit for studying crystal plasticity using an fe based or a spectral numerical solver

2012 | Conference paper
EID:

2-s2.0-84867356417

Source: Self-asserted source
Martin Diehl
grade
Preferred source (of 3)‎

Peer review (90 reviews for 28 publications/grants)

Review activity for Acta materialia. (5)
Review activity for Advanced theory and simulations. (2)
Review activity for Computational materials science. (1)
Review activity for Computer methods in applied mechanics and engineering. (2)
Review activity for Crystals. (4)
Review activity for European journal of mechanics. (3)
Review activity for Extreme mechanics letters. (2)
Review activity for Integrating materials and manufacturing innovation. (7)
Review activity for International journal of mechanical sciences. (1)
Review activity for International journal of plasticity. (12)
Review activity for International journal of solids and structures. (2)
Review activity for JOM. (1)
Review activity for Journal of Iron and Steel Research International. (1)
Review activity for Journal of iron and steel research, international. (1)
Review activity for Journal of Materials Research and Technology. (1)
Review activity for Journal of materials science. (1)
Review activity for Journal of materials science. (4)
Review activity for Journal of the mechanics and physics of solids. (1)
Review activity for Materialia. (1)
Review activity for Materials and design. (5)
Review activity for Materials characterization. (3)
Review activity for Materials letters. (1)
Review activity for Materials science & engineering. (1)
Review activity for Materials today communications. (1)
Review activity for Mathematics and mechanics of solids (1)
Review activity for Mechanics of materials. (8)
Review activity for Metals. (7)
Review activity for Modelling and simulation in materials science and engineering. (11)