4.7 Article

Influence of post-processing on very high cycle fatigue resistance of Inconel 718 obtained with laser powder bed fusion

期刊

INTERNATIONAL JOURNAL OF FATIGUE
卷 153, 期 -, 页码 -

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.ijfatigue.2021.106510

关键词

Additive manufacturing; Laser powder bed fusion; Inconel 718; Very high cycle fatigue; Hot isostatic pressing

资金

  1. National Natural Science Foundation of China [11872259, 11672196]

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The combination effect of hot isostatic pressing (HIP) and machining is found to be the most effective in improving fatigue resistance. Smaller pore defects may potentially serve as crack initiation sites, highlighting the importance of machining to reduce surface roughness and remove pore-rich layers. The study also shows a linear relationship between the ratio of pore area to rough area and fatigue life in logarithmic coordinates.
The pore defects and surface roughness derived from additive manufacturing restrict applications in the production of ultra-long service time parts. Due to the high sensitivity of very high cycle fatigue (VHCF) resistance to defects, smaller defects may also become potential crack initiation sites. To remove these defects and consequently improve fatigue strength, three different post-processing routes, hot isostatic pressing (HIP, 1160 degrees C/ 1500 bar/3h +/- 30 min), machining, and their combinations, are employed on samples in this research. Threedimensional X-ray tomography (3D-XRT) shows that pores larger than 25 mu m in diameter are mainly located in the macropore-rich layer with 300 mu m thickness below the surface. HIP can effectively close the pores, but this does not translate into an increase in fatigue performance, which is attributed to the increased roughness. Machining with a certain depth can significantly reduce the surface roughness and remove the macropore-rich layer. Therefore, it can improve fatigue resistance. The co-effect of HIP and machining is confirmed to be the most effective solution to improve fatigue resistance. Taking the depth-width ratio of the micro-depression as the characteristic size of the surface roughness, it found that the fatigue life is closely related to the characteristic size of the micro depression. For the pore-induced fatigue failure, the fatigue resistance is related to the pore size and the location. The area of the crack initiation (rough area, abbreviation as RA) is introduced and root Area(pore)/Areav(RA) is calculated to reflect the pore characterization including the size and location, and the ratio of the pore area to the RA area is found to be have a linear relationship to the fatigue life in single logarithmic coordinates.

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