TY - JOUR
T1 - Microstructure and mechanical properties of 304L steel fabricated by arc additive manufacturing
AU - Ji, Lei
AU - Lu, Jiping
AU - Liu, Changmeng
AU - Jing, Chenchen
AU - Fan, Hongli
AU - Ma, Shuyuan
N1 - Publisher Copyright:
© The authors, published by EDP Sciences, 2017.
PY - 2017/10/25
Y1 - 2017/10/25
N2 - For 304L large structural parts used in nuclear power, it is hard and costly to fabricate and machine traditionally. Wire arc additive manufacturing (WAAM) has low cost and high material utilization, which provides an efficient way to fabricate the large structural parts. So in this study, WAAM is used to fabricate the parts of 304L stainless steel. Through the tensile test and metallographic analysis, the mechanical properties and microstructure of the 304L stainless steel fabricated by WAAM were explored. The results indicate that with the layers depositing, the cooling rate becomes slower, the dendrites become thicker and the morphology becomes more stable. Due to the existence of dendrites, the grain boundary strengthening effect is different between the transverse direction and longitudinal direction, and resulting in anisotropy of mechanical properties. However, the mechanical properties of the parts correspond to the forged piece, which lays the foundation for future applications.
AB - For 304L large structural parts used in nuclear power, it is hard and costly to fabricate and machine traditionally. Wire arc additive manufacturing (WAAM) has low cost and high material utilization, which provides an efficient way to fabricate the large structural parts. So in this study, WAAM is used to fabricate the parts of 304L stainless steel. Through the tensile test and metallographic analysis, the mechanical properties and microstructure of the 304L stainless steel fabricated by WAAM were explored. The results indicate that with the layers depositing, the cooling rate becomes slower, the dendrites become thicker and the morphology becomes more stable. Due to the existence of dendrites, the grain boundary strengthening effect is different between the transverse direction and longitudinal direction, and resulting in anisotropy of mechanical properties. However, the mechanical properties of the parts correspond to the forged piece, which lays the foundation for future applications.
UR - http://www.scopus.com/inward/record.url?scp=85033366387&partnerID=8YFLogxK
U2 - 10.1051/matecconf/201712803006
DO - 10.1051/matecconf/201712803006
M3 - Conference article
AN - SCOPUS:85033366387
SN - 2261-236X
VL - 128
JO - MATEC Web of Conferences
JF - MATEC Web of Conferences
M1 - 03006
T2 - 2017 International Conference on Electronic Information Technology and Computer Engineering, EITCE 2017
Y2 - 23 September 2017 through 24 September 2017
ER -