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Published in: Tribology Letters 1/2020

01-03-2020 | Original Paper

Optimization and Validation of a Load-Controlled Numerical Model for Single Asperity Scratch

Authors: Kannaki Pondicherry, Dhanraj Rajaraman, Timothy Galle, Stijn Hertelé, Dieter Fauconnier, Patrick De Baets

Published in: Tribology Letters | Issue 1/2020

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Abstract

Abrasive wear due to particles sliding along a surface (two-body abrasion) or in between two surfaces (three-body abrasion) often leads to early failure of machine components exposed to, e.g., slurry, sand, wear debris, and so on. The primary cause for failure due to abrasive wear is the interaction between abrasive particles and the material surface. Simulation of an entire abrasive system is complicated and involves several challenges. Therefore, a single scratch test is the most fundamental and simplest abstraction of abrasive wear that can be simulated using finite-element modeling (FEM). A novel load-controlled quasi-static explicit three-dimensional (3D) scratch model has been developed using ABAQUS (6.14) for the current study. The FE model was validated using experimentally performed scratch tests on an abrasion-resistant martensitic steel. The influence of load and indenter geometry on scratch geometry was studied in detail. Future work will focus on introducing damage and strain rate dependent material behavior into the model in order to deepen the understanding of the interaction between an abrasive and the material.

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Metadata
Title
Optimization and Validation of a Load-Controlled Numerical Model for Single Asperity Scratch
Authors
Kannaki Pondicherry
Dhanraj Rajaraman
Timothy Galle
Stijn Hertelé
Dieter Fauconnier
Patrick De Baets
Publication date
01-03-2020
Publisher
Springer US
Published in
Tribology Letters / Issue 1/2020
Print ISSN: 1023-8883
Electronic ISSN: 1573-2711
DOI
https://doi.org/10.1007/s11249-020-1283-3

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