Damage tolerance-based methodology for fatigue lifetime estimation of a structural component produced by material extrusion-based additive manufacturing
Autor: | Florian Arbeiter, Martin Spoerk, Pavel Hutař, Lukáš Trávníček, Sandra Petersmann, Pavol Dlhý, Gerald Pinter |
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Rok vydání: | 2020 |
Předmět: |
Rapid prototyping
0209 industrial biotechnology Materials science Biomedical Engineering Fracture mechanics Fused filament fabrication 02 engineering and technology 021001 nanoscience & nanotechnology Industrial and Manufacturing Engineering Finite element method Reliability engineering 020901 industrial engineering & automation Spare part Component (UML) General Materials Science 0210 nano-technology Engineering (miscellaneous) Damage tolerance Reliability (statistics) |
Zdroj: | Additive Manufacturing. 36:101730 |
ISSN: | 2214-8604 |
Popis: | While additive manufacturing of polymers, especially material extrusion-based methods such as fused filament fabrication, has become increasingly popular for design studies, rapid prototyping and the production of non-critical spare parts, its application in structurally loaded components is still scarce. One of the reasons for this might be scepticism of engineers due to the lack of knowledge regarding the expected lifetime and reliability of these components under stress. Therefore, it is necessary to find fast, easy and reliable ways to determine the expected lifetime of a component without the need to apply expensive full-scale component testing for every new part. To realise this, finite element analysis combined with fracture mechanical lifetime calculations can be applied. In this paper, crack growth kinetics of the commonly used material poly(lactic acid) have been utilised to estimate the lifetime of a component under complex loading conditions, namely fatigue and friction. The calculated lifetime, based on a damage tolerant fracture mechanics approach, was found to be in good agreement to the results of full-scale component tests, proving the applicability of the chosen approach. Applying this knowledge can vastly decrease the necessary time during component design and encourage the additive manufacturing community towards applying their components also in structurally loaded applications. |
Databáze: | OpenAIRE |
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