Michael Zaiser

About Michael Zaiser

Michael Zaiser, With an exceptional h-index of 46 and a recent h-index of 30 (since 2020), a distinguished researcher at Friedrich-Alexander-Universität Erlangen-Nürnberg, specializes in the field of Plasticity, Fracture.

His recent articles reflect a diverse array of research interests and contributions to the field:

Mechanical Properties of Interfaces between Mg and SiC: An Ab Initio Study

Creep failure of hierarchical materials

Multiscale modeling of dislocations: combining peridynamics with gradient elasticity

Geometrically necessary dislocations and related kinematic hardening in gradient grained materials: A nonlocal crystal plasticity study

Failure precursors and failure mechanisms in hierarchically patterned paper sheets in tensile and creep loading

A computationally efficient implementation of continuum dislocation dynamics: Formulation and application to ultrafine-grained Mg polycrystals

Enhanced fault tolerance in biomimetic hierarchical materials: A simulation study

Relating plasticity to dislocation properties by data analysis: scaling vs. machine learning approaches

Michael Zaiser Information

University

Position

Professor of Materials Simulation, FAU Erlangen-Nürnberg

Citations(all)

7987

Citations(since 2020)

2990

Cited By

6265

hIndex(all)

46

hIndex(since 2020)

30

i10Index(all)

124

i10Index(since 2020)

77

Email

University Profile Page

Friedrich-Alexander-Universität Erlangen-Nürnberg

Google Scholar

View Google Scholar Profile

Michael Zaiser Skills & Research Interests

Plasticity

Fracture

Top articles of Michael Zaiser

Title

Journal

Author(s)

Publication Date

Mechanical Properties of Interfaces between Mg and SiC: An Ab Initio Study

Metals

Zhipeng Yao

Samaneh Nasiri

Mingjun Yang

Michael Zaiser

2024/4/16

Creep failure of hierarchical materials

Scientific Reports

Mahshid Pournajar

Paolo Moretti

Seyyed Ahmad Hosseini

Michael Zaiser

2024/2/20

Multiscale modeling of dislocations: combining peridynamics with gradient elasticity

Materials Theory

Jonas Ritter

Michael Zaiser

2024/2/5

Geometrically necessary dislocations and related kinematic hardening in gradient grained materials: A nonlocal crystal plasticity study

International Journal of Plasticity

Xu Zhang

Jianfeng Zhao

Guozheng Kang

Michael Zaiser

2023/4/1

Failure precursors and failure mechanisms in hierarchically patterned paper sheets in tensile and creep loading

Physical Review Applied

Mahshid Pournajar

Tero Mäkinen

Seyyed Ahmad Hosseini

Paolo Moretti

Mikko Alava

...

2023/8/3

A computationally efficient implementation of continuum dislocation dynamics: Formulation and application to ultrafine-grained Mg polycrystals

Journal of the Mechanics and Physics of Solids

Xi Luo

Michael Zaiser

2023/3/1

Enhanced fault tolerance in biomimetic hierarchical materials: A simulation study

Physical Review Materials

Seyyed Ahmad Hosseini

Paolo Moretti

Michael Zaiser

2023/5/26

Relating plasticity to dislocation properties by data analysis: scaling vs. machine learning approaches

Materials Theory

Stefan Hiemer

Haidong Fan

Michael Zaiser

2023/1/3

Enhancing dehydrogenation performance of MgH2/graphene heterojunctions via noble metal intercalation

International Journal of Hydrogen Energy

Ying Deng

Mingjun Yang

Michael Zaiser

Shan Yu

2023/5/22

Effects of disorder on deformation and failure of brittle porous materials

Journal of Statistical Mechanics: Theory and Experiment

Jonas Ritter

Shucheta Shegufta

Michael Zaiser

2023/5/4

Disordered mechanical metamaterials

Michael Zaiser

Stefano Zapperi

2023/11

Atomistic Simulations of Dislocation-Void Interactions in Concentrated Solid Solution Alloys

Metals

Aviral Vaid

Michael Zaiser

Erik Bitzek

2023/9/27

Size-dependent yield stress in ultrafine-grained polycrystals: A multiscale discrete dislocation dynamics study

International Journal of Plasticity

Songjiang Lu

Qianhua Kan

Michael Zaiser

Zhenhuan Li

Guozheng Kang

...

2022/2/1

Predicting creep failure by machine learning-which features matter?

Forces in Mechanics

Stefan Hiemer

Paolo Moretti

Stefano Zapperi

Michael Zaiser

2022/12/1

Atomistic aspects of load transfer and fracture in CNT-reinforced aluminium

Materialia

Samaneh Nasiri

Kai Wang

Mingjun Yang

Julien Guénolé

Qianqian Li

...

2022/5/1

Thermodynamic considerations on a class of dislocation-based constitutive models

Journal of the Mechanics and Physics of Solids

Ronghai Wu

Michael Zaiser

2022/2/1

Hierarchical slice patterns inhibit crack propagation in brittle sheets

Physical Review Applied

Michael Zaiser

Seyyed Ahmad Hosseini

Paolo Moretti

Tero Mäkinen

Juha Koivisto

...

2022/10/14

Pinning of dislocations in disordered alloys: effects of dislocation orientation

Materials Theory

Michael Zaiser

Ronghai Wu

2022/1/6

Evading strength and ductility trade-off in an inverse nacre structured magnesium matrix nanocomposite

Acta Materialia

Xi Luo

Ke Zhao

Xu He

Yuanli Bai

Vincent De Andrade

...

2022/4/15

Pinning of extended dislocations in atomically disordered crystals

Acta Materialia

Aviral Vaid

Erik Bitzek

Samaneh Nasiri

Michael Zaiser

2022/9/1

See List of Professors in Michael Zaiser University(Friedrich-Alexander-Universität Erlangen-Nürnberg)

Co-Authors

H-index: 128
Alessandro Vespignani

Alessandro Vespignani

North Eastern University

H-index: 57
Stefano Zapperi

Stefano Zapperi

Università degli Studi di Milano

H-index: 34
István Groma

István Groma

Eötvös Loránd Tudományegyetem

H-index: 14
Paolo Moretti

Paolo Moretti

Friedrich-Alexander-Universität Erlangen-Nürnberg

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