Controlled Creation of Contact Cracks in Additive Manufactured Components

Author:

Preston Daniel1ORCID,Ashour Ahmed1,Wright Julian1ORCID,Watts James1ORCID,Sanmartin Daniel1,Wood Jacques2

Affiliation:

1. Theta Technologies Limited, Exeter EX5 2FN, UK

2. Plymouth Science Park, Plymouth PL6 8BX, UK

Abstract

Techniques for the controlled seeding and growth of cracks are urgently required for non-destructive testing technique evaluation, particularly for additive manufactured (AM) samples. This paper describes a method that uses a combination of the tensile load and the resonance excitation of notched AM samples, with in situ monitoring of the resonance frequency serving to track the crack dimensions. Mechanical low-cycle fatigue cracks, ranging in length from ~0.3 mm to ~5 mm, were successfully created in five AM samples using this technique. The samples were non-destructively characterized using optical microscopy and Nonlinear Resonance (NLR) testing. The exploitation of resonance enabled the concentration of a significant number of stress cycles on the samples in much shorter timespans than conventional fatigue testing, enabling a high throughput while utilizing compact components. Furthermore, the tracking of the resonance frequency shift throughout the process enabled non-invasive and no-contact real-time condition monitoring.

Publisher

MDPI AG

Subject

Fluid Flow and Transfer Processes,Computer Science Applications,Process Chemistry and Technology,General Engineering,Instrumentation,General Materials Science

Reference18 articles.

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3. Shamsaei, N., Daniewicz, S., Hrabe, N., Beretta, S., Waller, J., and Seifi, M. (2020). Structural Integrity of Additive Manufactured Parts, ASTM International.

4. Artificial Seeding of Fatigue Cracks in NDI Reference Coupons;Yanishevsky;Insight Non-Destr. Test. Cond. Monit.,2010

5. Creep–Fatigue Crack Development from Short Crack Starters;Yan;Mater. High Temp.,2014

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