A novel micro mechanical model for prediction of multiaxial high cycle fatigue at small scales

A novel micro mechanical model for prediction of multiaxial high cycle fatigue at small scales
Author: Eslami, Reza
Publsiher: KIT Scientific Publishing
Total Pages: 144
Release: 2017-05-03
Genre: Electronic Book
ISBN: 9783731505839

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A Novel Micro mechanical Model for Prediction of Multiaxial High Cycle Fatigue at Small Scales

A Novel Micro mechanical Model for Prediction of Multiaxial High Cycle Fatigue at Small Scales
Author: Reza Eslami
Publsiher: Unknown
Total Pages: 130
Release: 2020-10-09
Genre: Science
ISBN: 1013282833

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The grain microstructure and damage mechanisms at the grain level are the key factors that influence fatigue of metals at small scales. This is addressed in this work by establishing a new micro-mechanical model for prediction of multiaxial high cycle fatigue (HCF) at a length scale of 5-100?m. The HCF model considers elasto-plastic behavior of metals at the grain level and microstructural parameters, specifically the grain size and the grain orientation. This work was published by Saint Philip Street Press pursuant to a Creative Commons license permitting commercial use. All rights not granted by the work's license are retained by the author or authors.

Micromechanical study on the deformation behaviour of directionally solidified NiAl Cr eutectic composites

Micromechanical study on the deformation behaviour of directionally solidified NiAl Cr eutectic composites
Author: Kumar, Amritesh
Publsiher: KIT Scientific Publishing
Total Pages: 160
Release: 2017-11-06
Genre: Electronic Book
ISBN: 9783731506942

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Phase field Modeling of Phase Changes and Mechanical Stresses in Electrode Particles of Secondary Batteries

Phase field Modeling of Phase Changes and Mechanical Stresses in Electrode Particles of Secondary Batteries
Author: Zhang, Tao
Publsiher: KIT Scientific Publishing
Total Pages: 224
Release: 2021-09-27
Genre: Technology & Engineering
ISBN: 9783731510024

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Most storage materials exhibit phase changes, which cause stresses and, thus, lead to damage of the electrode particles. In this work, a phase-field model for the cathode material NaxFePO4 of Na-ion batteries is studied to understand phase changes and stress evolution. Furthermore, we study the particle size and SOC dependent miscibility gap of the nanoscale insertion materials. Finally, we introduce the nonlocal species concentration theory, and show how the nonlocality influences the results.

On the Electro Chemo Mechanical Coupling in Solid State Batteries and its Impact on Morphological Interface Stability

On the Electro Chemo Mechanical Coupling in Solid State Batteries and its Impact on Morphological Interface Stability
Author: Ganser, Markus
Publsiher: KIT Scientific Publishing
Total Pages: 272
Release: 2021-03-09
Genre: Technology & Engineering
ISBN: 9783731510475

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Solid state batteries with a lithium metal electrode are considered the next generation of high energy battery technology. Unfortunately, lithium metal is prone to harmful protrusion or dendrite growth which causes dangerous cell failure. Within this work the problem of protrusion growth is tackled by deriving a novel electro-chemo-mechanical theory tailored for binary solid state batteries which is then used to discuss the impact of mechanics on interface stability by numerical studies.

Structure evolution in tribological interfaces studied by multilayer model alloys

Structure evolution in tribological interfaces studied by multilayer model alloys
Author: Cihan, Ebru
Publsiher: KIT Scientific Publishing
Total Pages: 194
Release: 2020-10-21
Genre: Technology & Engineering
ISBN: 9783731509998

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Recent studies of deformation mechanisms of metals and alloys pioneer the better investigation of the friction and wear behavior of materials with well-defined initial microstructures. Within this scope, in this work, the effect of sub-surface deformations on the resulting friction and wear behavior has been searched by means of a systematic experimental study on Au-Ni metallic multilayer model alloy system.

Dynamic Model based Analysis of Oxygen Reduction Reaction in Gas Diffusion Electrodes

Dynamic Model based Analysis of Oxygen Reduction Reaction in Gas Diffusion Electrodes
Author: Röhe, Maximilian
Publsiher: KIT Scientific Publishing
Total Pages: 178
Release: 2024-01-09
Genre: Electronic Book
ISBN: 9783731512349

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In this work, the first simulation model of oxygen depolarized cathodes (ODC), which are silver catalyst-based gas diffusion electrodes, is presented that considers the phase equilibrium of the gas-liquid interface and structure-related inhomogeneities in electrolyte distribution. By means of the model it has been identified that mass transport of water and ions in the liquid phase is a crucial factor for electrode performance and how it is influenced by the electrode structure.

Modeling transport properties and electrochemical performance of hierarchically structured lithium ion battery cathodes using resistor networks and mathematical half cell models

Modeling transport properties and electrochemical performance of hierarchically structured lithium ion battery cathodes using resistor networks and mathematical half cell models
Author: Birkholz, Oleg
Publsiher: KIT Scientific Publishing
Total Pages: 246
Release: 2022-10-05
Genre: Science
ISBN: 9783731511724

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Hierarchically structured active materials in electrodes of lithium-ion cells are promising candidates for increasing gravimetric energy density and improving rate capability of the system. To investigate the influence of cathode structures on the performance of the whole cell, efficient tools for calculating effective transport properties of granular systems are developed and their influence on the electrochemical performance is investigated in specially adapted cell models.