Self-Heating and Fatigue Assessment of Laser Powder Bed Fusion NiTi Alloy with High Cycle Fatigue Mechanisms Identification

Author:

Cullaz Timothee12,Saint-Sulpice Luc2ORCID,Elahinia Mohammad1ORCID,Arbab Chirani Shabnam3ORCID

Affiliation:

1. Mechanical Industrial and Manufacturing Engineering Department, University of Toledo, Toledo, OH 43606, USA

2. ENI Brest, UMR CNRS 6027, IRDL, 29200 Brest, France

3. ENSTA Bretagne, UMR CNRS 6027, IRDL, 29200 Brest, France

Abstract

Rapid methods for assessing the fatigue properties of materials have been developed, among which the self-heating method stands out as particularly promising. This approach analyzes the thermal signal of the specimen when subjected to cyclic loading. In this research, the self-heating method was utilized for the first time with laser powder bed fusion (LPBF) of NiTi alloys, examining two specific loading conditions: loading ratios of 0.1 and 10. A thorough examination of the material self-heating behavior was conducted. For comparative purposes, conventional fatigue tests were also conducted, alongside interrupted fatigue tests designed to highlight the underlying mechanisms involved in high cycle fatigue and potentially self-heating behavior. The investigation revealed several key mechanisms at play, including intra-grain misorientation, the emergence and growth of persistent slip bands, and the formation of stress-induced martensite. These findings not only deepen our understanding of the fatigue behavior of LPBF NiTi alloys but also highlight the self-heating method potential as a tool for studying material fatigue.

Publisher

MDPI AG

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