Fatigue crack growth mechanisms at the microstructure scale in as-fabricated and heat treated Ti-6A1-4V ELI manufactured by electron beam melting (EBM)

被引:78
作者
Galarraga, Haize [1 ]
Warren, Robert J. [1 ]
Lados, Diana A. [1 ]
Dehoff, Ryan R. [2 ,3 ]
Kirka, Michael M. [2 ,3 ]
机构
[1] Worcester Polytech Inst, Integrat Mat Design Ctr, 100 Inst Rd, Worcester, MA 01609 USA
[2] Oak Ridge Natl Lab, Mat Sci & Technol Div, Oak Ridge, TN 37831 USA
[3] Oak Ridge Natl Lab, Mfg Demonstrat Facil, Knoxville, TN 37932 USA
关键词
Additive manufacturing; Electron beam melting; Ti-6A1-4V; Fatigue crack growth mechanisms; Threshold modeling; TI-6AL-4V; ALLOY; STRESS; ORIENTATION; RATIO;
D O I
10.1016/j.engfracmech.2017.03.024
中图分类号
O3 [力学];
学科分类号
08 ; 0801 ;
摘要
Electron beam melting (EBM) is a metal powder bed fusion additive manufacturing (AM) technology that fabricates parts by selectively scanning consecutive powder layers with an electron beam. Additive manufacturing technologies are increasing in importance for aerospace and medical applications, where the demand for a fundamental understanding and predictability of static and dynamic material properties are high. Ti-6A1-4V is the most widely used and studied alloy for this technology, and is the focus of this work in its Extra Low Interstitial (ELI) variation. The layered manufacturing of metallic components by EBM creates a unique directional microstructure, and consequently, anisotropic properties. Microstructure evolution, and its influence on mechanical properties of the alloy in the as-fabricated condition, has been documented by various researchers. However, fatigue crack propagation and the effects of the directional structure have not been sufficiently studied, imposing a barrier for this technology's potential extension to high-integrity applications. In this study, fatigue crack growth (FCG) both parallel and perpendicular to the build directions was studied for different stress ratios and crack growth stages. The interaction between the directional as-fabricated EBM microstructure and FCG was investigated and compared to that of the equiaxed beta annealed microstructure obtained by annealing above the beta transus temperature. The FCG threshold, Delta K-th, was analytically modeled for the two relative crack propagation directions at different stress ratios, and FCG microstructural mechanisms were established for all three regions of crack propagation. (C) 2017 Elsevier Ltd. All rights reserved.
引用
收藏
页码:263 / 280
页数:18
相关论文
共 50 条
[41]  
Rengers S., 2012, SAMPE MIDWEST CHAPTE
[42]  
Rooney M., 2009, EVALUATION SELECT MA
[43]  
Safdar A., 2010, Microstructures and Surface Roughness of EBM Produced Ti-6A1-4V
[44]  
Schmidt R.A., 1973, PROGR FLAW GROWTH FR, P79, DOI DOI 10.1520/STP49638S
[45]  
Scott J., 2012, ADDITIVE MANUFACTURI, P1
[46]   Evaluation of Orientation Dependence of Fracture Toughness and Fatigue Crack Propagation Behavior of As-Deposited ARCAM EBM Ti-6Al-4V [J].
Seifi, Mohsen ;
Dahar, Matthew ;
Aman, Ron ;
Harrysson, Ola ;
Beuth, Jack ;
Lewandowski, John J. .
JOM, 2015, 67 (03) :597-607
[47]  
Sieniawski J., 2013, TITANIUM ALLOYS ADV, P69
[48]  
Svensson M, 2010, MAT PROC MED DEV C M, P189
[49]   Microstructure Evolution, Tensile Properties, and Fatigue Damage Mechanisms in Ti-6Al-4V Alloys Fabricated by Two Additive Manufacturing Techniques [J].
Zhai, Yuwei ;
Galarraga, Haize ;
Lados, Diana A. .
ICSI 2015 THE 1ST INTERNATIONAL CONFERENCE ON STRUCTURAL INTEGRITY FUNCHAL, 2015, 114 :658-666
[50]   Additive Manufacturing: Making Imagination the Major Limitation [J].
Zhai, Yuwei ;
Lados, Diana A. ;
Lagoy, Jane L. .
JOM, 2014, 66 (05) :808-816