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Effects of scanning speed on creep behaviour of 316L stainless steel produced using selective laser melting

Authors
Yu, Jong MinDao, Van HungYoon, Kee Bong
Issue Date
Oct-2020
Publisher
WILEY
Keywords
additive manufacturing (AM); energy density; scanning speed; selective laser melting (SLM); small punch creep life
Citation
FATIGUE & FRACTURE OF ENGINEERING MATERIALS & STRUCTURES, v.43, no.10, pp 2312 - 2325
Pages
14
Journal Title
FATIGUE & FRACTURE OF ENGINEERING MATERIALS & STRUCTURES
Volume
43
Number
10
Start Page
2312
End Page
2325
URI
https://scholarworks.bwise.kr/cau/handle/2019.sw.cau/52740
DOI
10.1111/ffe.13298
ISSN
8756-758X
1460-2695
Abstract
Increasing numbers of critical components for the aerospace and power industries are fabricated using additive manufacturing (AM). To increase the productivity of high-temperature components by AM, the scanning speed needs to be maximized without sacrificing the required creep properties. In this study, five rectangular blocks were manufactured using selective laser melting while varying the scanning speed from 420 to 980 mm/s. Small punch creep tests were conducted at 650 degrees C using 10 x 10 x 0.5 mm specimens machined from each block. Creep deformation and rupture life were measured. Power law creep constants were also determined. Difference of creep behaviours were explained based on the microstructures showing pore defects and the measured metal density values. A 3D response surface plot was employed to predict the creep life as a function of the scanning speed and the energy density. As a consequence, a scanning speed range of 416 to 572 mm/s is recommended to maximize productivity and to increase creep resistance.
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