The effect of building orientation on the very-high-cycle fatigue (VHCF) response of Ti-6Al-4V specimens produced through selective laser melting (SLM) process with three different building orientations (0°, 45° and 90°) has been experimentally assessed. The fatigue performance decreases with different building orientations from 0° to 90°. The fatigue crack origin has been found to be always an internal defect both at high-cycle fatigue and VHCF regime independent of building orientations. Size of defects induced fatigue failures and the stress intensity factor range decrease with the number of cycles to failure. By considering the VHCF strength at 109 cycles, the median value decreases from 217 MPa (0°) to 201 MPa (45°) and finally to 155 MPa (90°), with a 40% reduction from 0° to 90°. The building orientation significantly influences both the defect size and the resulting VHCF response. © 2020 Elsevier Ltd

Very-high-cycle fatigue behavior of Ti-6Al-4V manufactured by selective laser melting: Effect of build orientation / Qian, G.; Li, Y.; Paolino, D. S.; Tridello, A.; Berto, F.; Hong, Y.. - In: INTERNATIONAL JOURNAL OF FATIGUE. - ISSN 0142-1123. - 136:(2020). [10.1016/j.ijfatigue.2020.105628]

Very-high-cycle fatigue behavior of Ti-6Al-4V manufactured by selective laser melting: Effect of build orientation

Berto F.
Conceptualization
;
2020

Abstract

The effect of building orientation on the very-high-cycle fatigue (VHCF) response of Ti-6Al-4V specimens produced through selective laser melting (SLM) process with three different building orientations (0°, 45° and 90°) has been experimentally assessed. The fatigue performance decreases with different building orientations from 0° to 90°. The fatigue crack origin has been found to be always an internal defect both at high-cycle fatigue and VHCF regime independent of building orientations. Size of defects induced fatigue failures and the stress intensity factor range decrease with the number of cycles to failure. By considering the VHCF strength at 109 cycles, the median value decreases from 217 MPa (0°) to 201 MPa (45°) and finally to 155 MPa (90°), with a 40% reduction from 0° to 90°. The building orientation significantly influences both the defect size and the resulting VHCF response. © 2020 Elsevier Ltd
2020
Buildings; Defects; Melting; Selective laser melting; Silicon compounds; Ternary alloys; Titanium alloys; Welds, Building orientation; Fatigue design; Fatigue performance; High cycle fatigue; Number of cycles to failure; Selective laser melting (SLM); Stress intensity factor range; Very high cycle fatigue, Fatigue of materials; Building direction; Fatigue design; High-cycle fatigue (HCF); Selective laser melting (SLM); Titanium alloy; Very-high-cycle fatigue (VHCF)
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Very-high-cycle fatigue behavior of Ti-6Al-4V manufactured by selective laser melting: Effect of build orientation / Qian, G.; Li, Y.; Paolino, D. S.; Tridello, A.; Berto, F.; Hong, Y.. - In: INTERNATIONAL JOURNAL OF FATIGUE. - ISSN 0142-1123. - 136:(2020). [10.1016/j.ijfatigue.2020.105628]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1688100
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