Andreas Menzel
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- 2022
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Mark
Extremal states and coupling properties in electroelasticity
2022) In Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences 380(2234).(
- Contribution to journal › Article
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Mark
A micromechanically motivated multiscale approach for residual distortion in laser powder bed fusion processes
(
- Contribution to journal › Article
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Mark
On the determination of thermal boundary conditions for parameter identifications of thermo-mechanically coupled material models
(
- Contribution to journal › Article
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Mark
A thermo-viscoplasticity model for metals over wide temperature ranges- application to case hardening steel
(
- Contribution to journal › Article
- 2021
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Mark
An isogeometric finite element approach to fibre-reinforced composites with fibre bending stiffness
(
- Contribution to journal › Article
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Mark
Preface on mechanics of additive manufacturing—Part I
(
- Contribution to journal › Debate/Note/Editorial
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Mark
Preface on mechanics of additive manufacturing—Part II
(
- Contribution to journal › Debate/Note/Editorial
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Mark
Structural optimisation of diffusion driven degradation processes
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- Contribution to journal › Article
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Mark
Identification of thermal material parameters for thermo-mechanically coupled material models : Verification and model dependency
(
- Contribution to journal › Article
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Mark
An electro-mechanically coupled computational multiscale formulation for electrical conductors
(
- Contribution to journal › Article
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Mark
An energy-relaxation-based framework for the modeling of magnetic shape memory alloys—Simulation of three-dimensional effects under homogeneous loading conditions
(
- Contribution to journal › Article
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Mark
A finite element implementation of the stress gradient theory
(
- Contribution to journal › Article
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Mark
Simulation of wear and effective friction properties of microstructured surfaces
(
- Contribution to journal › Article
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Mark
Mechanism-Based Modelling of Wear in Sheet-Bulk Metal Forming
2021) p.434-457(
- Chapter in Book/Report/Conference proceeding › Book chapter
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Mark
Fundamentals of electro-mechanically coupled cohesive zone formulations for electrical conductors
(
- Contribution to journal › Article