Laser Powder Bed Fusion of NiTiHf High-Temperature Shape Memory Alloy: Effect of Process Parameters on the Thermomechanical Behavior

被引:20
作者
Nematollahi, Mohammadreza [1 ]
Toker, Guher P. [2 ]
Safaei, Keyvan [1 ]
Hinojos, Alejandro [3 ]
Saghaian, S. Ehsan [2 ]
Benafan, Othmane [4 ]
Mills, Michael J. [3 ]
Karaca, Haluk [2 ]
Elahinia, Mohammad [1 ]
机构
[1] Univ Toledo, Dynam & Smart Syst Lab, Mech Ind & Mfg Engn Dept, Toledo, OH 43606 USA
[2] Univ Kentucky, Dept Mech Engn, Smart Mat Lab, Lexington, KY 40506 USA
[3] Ohio State Univ, Dept Mat Sci & Engn, Columbus, OH 43210 USA
[4] NASA Glenn Res Ctr, Cleveland, OH 44135 USA
关键词
HTSMA; NiTiHf; additive manufacturing; 3D printing; smart materials; shape memory alloy; laser powder bed fusion; TRANSFORMATION TEMPERATURES; PHASE-TRANSFORMATION; MICROSTRUCTURE; FABRICATION; SUPERALLOYS; COMPONENTS; INTEGRITY; STRESS; LAYER;
D O I
10.3390/met10111522
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Laser powder bed fusion has been widely investigated for shape memory alloys, primarily NiTi alloys, with the goal of tailoring microstructures and producing complex geometries. However, processing high temperature shape memory alloys (HTSMAs) remains unknown. In our previous study, we showed that it is possible to manufacture NiTiHf HTSMA, as one of the most viable alloys in the aerospace industry, using SLM and investigated the effect of parameters on defect formation. The current study elucidates the effect of process parameters (PPs) on the functionality of this alloy. Shape memory properties and the microstructure of additively manufactured Ni-rich NiTiHf alloys were characterized across a wide range of PPs (laser power, scanning speed, and hatch spacing) and correlated with energy density. The optimum laser parameters for defect-free and functional samples were found to be in the range of approximately 60-100 J/mm(3). Below an energy density of 60 J/mm(3), porosity formation due to lack-of-fusion is the limiting factor. Samples fabricated with energy densities of 60-100 J/mm(3) showed comparable thermomechanical behavior in comparison with the starting as-cast material, and samples fabricated with higher energy densities (>100 J/mm(3)) showed very high transformation temperatures but poor thermomechanical behavior. Poor properties for samples with higher energies were mainly attributed to the excessive Ni loss and resultant change in the chemical composition of the matrix, as well as the formation of cracks and porosities. Although energy density was found to be an important factor, the outcome of this study suggests that each of the PPs should be selected carefully. A maximum actuation strain of 1.67% at 400 MPa was obtained for the sample with power, scan speed, and hatch space of 100 W, 400 mm/s, and 140 mu m, respectively, while 1.5% actuation strain was obtained for the starting as-cast ingot. These results can serve as a guideline for future studies on optimizing PPs for fabricating functional HTSMAs.
引用
收藏
页码:1 / 21
页数:21
相关论文
共 68 条
[1]   Effect of a pre-aging treatment on the mechanical behaviors of Ni50.3Ti49.7 - xHfx (x ≤ 9 at.%) Shape memory alloys [J].
Amin-Ahmadi, Behnam ;
Gallmeyer, Thomas ;
Pauza, Joseph G. ;
Duerig, Tom W. ;
Noebe, Ronald D. ;
Stebner, Aaron P. .
SCRIPTA MATERIALIA, 2018, 147 :11-15
[2]   Coherency strains of H-phase precipitates and their influence on functional properties of nickel-titanium-hafnium shape memory alloys [J].
Amin-Ahmadi, Behnam ;
Pauza, Joseph G. ;
Shamimi, Ali ;
Duerig, Tom W. ;
Noebe, Ronald D. ;
Stebner, Aaron P. .
SCRIPTA MATERIALIA, 2018, 147 :83-87
[3]   Additive manufacturing of Ni-based superalloys: The outstanding issues [J].
Attallah, Moataz M. ;
Jennings, Rachel ;
Wang, Xiqian ;
Carter, Luke N. .
MRS BULLETIN, 2016, 41 (10) :758-764
[4]   Effects of cold and warm rolling on the shape memory response of Ni50Ti30Hf20 high-temperature shape memory alloy [J].
Babacan, N. ;
Bilal, M. ;
Hayrettin, C. ;
Liu, J. ;
Benafan, O. ;
Karaman, I. .
ACTA MATERIALIA, 2018, 157 :228-244
[5]   Transformation behavior in NiTi-20Hf shape memory alloys - Transformation temperatures and hardness [J].
Benafan, O. ;
Bigelow, G. S. ;
Scheiman, D. A. .
SCRIPTA MATERIALIA, 2018, 146 :251-254
[6]   High temperature shape memory alloy Ni50.3Ti29.7Hf20 torque tube actuators [J].
Benafan, O. ;
Gaydosh, D. J. .
SMART MATERIALS AND STRUCTURES, 2017, 26 (09)
[7]   Effect of Ultrasonic Nanocrystal Surface Modification on the Microstructure and Martensitic Transformation of Selective Laser Melted Nitinol [J].
Biffi, C. A. ;
Bassani, P. ;
Nematollahi, M. ;
Moghaddam, N. Shayesteh ;
Amerinatanzi, A. ;
Mahtabi, M. J. ;
Elahinia, M. ;
Tuissi, A. .
MATERIALS, 2019, 12 (19)
[8]   Laser ignition in Self-propagating High temperature Synthesis of porous NiTinol Shape Memory Alloy [J].
Biffi, C. A. ;
Bassani, P. ;
Sajedi, Zahra ;
Giuliani, P. ;
Tuissi, A. .
MATERIALS LETTERS, 2017, 193 :54-57
[9]   Effect of Composition and Applied Stress on the Transformation Behavior in NiXTi80-XZr20 Shape Memory Alloys [J].
Bigelow, G. S. ;
Benafan, O. ;
Garg, A. ;
Lundberg, R. ;
Noebe, R. D. .
SHAPE MEMORY AND SUPERELASTICITY, 2019, 5 (04) :444-456
[10]   Load-biased shape-memory and superelastic properties of a precipitation strengthened high-temperature Ni50.3Ti29.7Hf20 alloy [J].
Bigelow, G. S. ;
Garg, A. ;
Padula, S. A., II ;
Gaydosh, D. J. ;
Noebe, R. D. .
SCRIPTA MATERIALIA, 2011, 64 (08) :725-728