Effect of scan rotation on the microstructure development and mechanical properties of 316L parts produced by laser powder bed fusion

被引:91
作者
Leicht, A. [1 ]
Yu, C. H. [2 ]
Luzin, V [3 ]
Klement, U. [1 ]
Hryha, E. [1 ]
机构
[1] Chalmers Univ Technol, Dept Ind & Mat Sci, Gothenburg, Sweden
[2] Linkoping Univ, Dept Management & Engn, Linkoping, Sweden
[3] Australian Nucl Sci Technol Org, Lucas Heights, NSW 2232, Australia
关键词
Additive manufacturing; Stainless steel; Microstructure; Texture; Scan strategy; Mechanical properties; STAINLESS-STEEL; 316L; TEXTURE; SLM; STRENGTH; STRATEGY; HARDNESS;
D O I
10.1016/j.matchar.2020.110309
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Additive manufacturing possesses appealing features for producing high-performance components, for a wide range of materials. One of these features is the ability to locally tailor the microstructure and in turn, the mechanical properties. This study investigates how the microstructure of stainless steel 316L parts produced by laser powder bed fusion are affected by alternating the laser scan orientation. The microstructure consists of large elongated grains with a fine cell substructure. This study established the correlation between the orientation of this substructure and the crystallographic orientation. The results show that by producing parts without any rotation a quite unique crystallographic orientation can be achieved. The grain structure primarily consisted of large < 101 > oriented grains, that were separated by thin bands of small < 100 > oriented grains with respect to the building direction. As rotation was added these bands were eliminated. Samples that were produced without any rotation generated the highest tensile strength (527 +/- 5.4 MPa), yield strength (449 +/- 2.4 MPa) and ductility (58 +/- 1.3%). The lowest mechanical properties were obtained for samples that were produced using a scan rotation of 67 degrees with the tensile strength of 485 +/- 4.8 MPa, yield strength of 427 +/- 5.4 MPa and ductility of 50 +/- 1.3%. This indicates that cell orientation and crystallographic orientation plays an essential role in the tensile properties of 316L parts produced by laser powder bed fusion (L-PBF).
引用
收藏
页数:9
相关论文
共 27 条
[1]   Scanning strategies for texture and anisotropy tailoring during selective laser melting of TiC/316L stainless steel nanocomposites [J].
AlMangour, Bandar ;
Grzesiak, Dariusz ;
Yang, Jenn-Ming .
JOURNAL OF ALLOYS AND COMPOUNDS, 2017, 728 :424-435
[2]   Texture control of 316L parts by modulation of the melt pool morphology in selective laser melting [J].
Andreau, Olivier ;
Koutiri, Imade ;
Peyre, Patrice ;
Penot, Jean-Daniel ;
Saintier, Nicolas ;
Pessard, Etienne ;
De Terris, Thibaut ;
Dupuy, Corinne ;
Baudin, Thierry .
JOURNAL OF MATERIALS PROCESSING TECHNOLOGY, 2019, 264 :21-31
[3]   Residual stress diffractometer KOWARI at the Australian research reactor OPAL: Status of the project [J].
Brule, Alain ;
Kirstein, Oliver .
PHYSICA B-CONDENSED MATTER, 2006, 385-86 (1040-1042) :1040-1042
[4]  
Dehoff RR, 2015, MATER SCI TECH-LOND, V31, P931, DOI 10.1179/1743284714Y.0000000734
[5]   Tailoring the texture of IN738LC processed by selective laser melting (SLM) by specific scanning strategies [J].
Geiger, Fabian ;
Kunze, Karsten ;
Etter, Thomas .
MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2016, 661 :240-246
[6]   A novel pole figure inversion method: specification of the MTEX algorithm [J].
Hielscher, R. ;
Schaeben, H. .
JOURNAL OF APPLIED CRYSTALLOGRAPHY, 2008, 41 :1024-1037
[7]   Hardness - strength relationships in fine and ultra-fine grained metals processed through constrained groove pressing [J].
Khodabakhshi, F. ;
Haghshenas, M. ;
Eskandari, H. ;
Koohbor, B. .
MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2015, 636 :331-339
[8]   Effect of process parameters on the microstructure, tensile strength and productivity of 316L parts produced by laser powder bed fusion [J].
Leicht, A. ;
Rashidi, M. ;
Klement, U. ;
Hryha, E. .
MATERIALS CHARACTERIZATION, 2020, 159
[9]   Calculating anisotropic piezoelectric properties from texture data using the MTEX open source package [J].
Mainprice, David ;
Bachmann, Florian ;
Hielscher, Ralf ;
Schaeben, Helmut ;
Lloyd, Geoffrey E. .
ROCK DEFORMATION FROM FIELD, EXPERIMENTS AND THEORY: A VOLUME IN HONOUR OF ERNIE RUTTER, 2015, 409 :223-249
[10]   Microstructure evolution of 316L produced by HP-SLM (high power selective laser melting) [J].
Montero-Sistiaga, Maria L. ;
Godino-Martinez, Miguel ;
Boschmans, Kurt ;
Kruth, Jean-Pierre ;
Van Humbeeck, Jan ;
Vanmeensel, Kim .
ADDITIVE MANUFACTURING, 2018, 23 :402-410