Laser beam energy dependence of martensitic transformation in SLM fabricated NiTi shape memory alloy

被引:66
|
作者
Yang, Y. [1 ]
Zhan, J. B. [1 ]
Li, B. [1 ]
Lin, J. X. [1 ]
Gao, J. J. [2 ]
Zhang, Z. Q. [3 ]
Ren, L. [3 ]
Castany, P. [2 ]
Gloriant, T. [2 ]
机构
[1] Chinese Acad Sci, Fujian Inst Res Struct Matter, Key Lab Optoelect Mat Chem & Phys, Fuzhou 350002, Peoples R China
[2] Univ Rennes, INSA Rennes, UMR, CNRS 6226,ISCR, F-35000 Rennes, France
[3] Chinese Acad Sci, Inst Met Res, Titanium Alloys Dept, Shenyang 110016, Peoples R China
来源
MATERIALIA | 2019年 / 6卷
基金
美国国家科学基金会;
关键词
SLM fabrication; NiTi shape memory alloy; Laser beam energy; Martensitic transformation; THERMOMECHANICAL RESPONSE; FATIGUE BEHAVIOR; MICROSTRUCTURE; PARAMETERS; ANISOTROPY;
D O I
10.1016/j.mtla.2019.100305
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
In this study, a near equiatomic NiTi alloy was fabricated by selective laser melting method (SLM). The effects of laser power and scanning speed on the tensile properties, shape memory properties and microstructure were comparatively investigated. Since the shape memory NiTi alloy can be characterized by its martensitic start phase transformation (M-s temperature) and by its critical stress inducing martensitic transformation (sigma(c)), the evolution of these two parameters was investigated as the function of the delivered laser beam energy by differential scanning calorimetry and tensile tests. It was observed that the increase of the scanning speed under a certain laser power and the increase of the laser power under a certain laser beam energy density promote an increase of the critical stress (sigma(c)) and a decrease of the M-s temperature. Consequently, high laser beam energy suppresses the formation of the martensitic B19' phase and therefore stabilizes the austenitic B2 phase. XRD and TEM observations confirm the dependence of the B2 and B19' phase formation with the processing parameters. On the other hand, the relationship between the M-s temperature and the critical stress sigma(c) was also plotted in good accordance with the Clausius-Clapeyron equation. Two new coefficients called "Energy Dependence Coefficient of martensitic transformation Temperature (EDCT)" and "Energy Dependence Coefficient of critical Stress (EDCS)" were defined and calculated to describe the laser beam energy dependence of the martensitic phase transformation. These two new thermodynamic coefficients are thus very suitable to establish a link between the machine parameters (through the delivered laser beam energy) and the nature of the material (through the martensitic transformation) in the NiTi alloy fabricated by SLM.
引用
收藏
页数:9
相关论文
共 50 条
  • [1] MICROSTRUCTURE AND MARTENSITIC TRANSFORMATION OF SELECTIVE LASER MELTED NiTi SHAPE MEMORY ALLOY PARTS
    Biffi, Carlo A.
    Fiocchi, Jacopo
    Bassani, Paola
    Tuissi, Ausonio
    [J]. SECOND INTERNATIONAL CONFERENCE ON SIMULATION FOR ADDITIVE MANUFACTURING (SIM-AM 2019), 2019, : 72 - 82
  • [2] On the Transformation Behavior of NiTi Shape-Memory Alloy Produced by SLM
    Speirs M.
    Wang X.
    Van Baelen S.
    Ahadi A.
    Dadbakhsh S.
    Kruth J.-P.
    Van Humbeeck J.
    [J]. Shape Memory and Superelasticity, 2016, 2 (4) : 310 - 316
  • [3] Microstructure, Mechanical Properties, and Martensitic Transformation in NiTi Shape Memory Alloy Fabricated Using Electron Beam Additive Manufacturing Technique
    Dutkiewicz, Jan
    Rogal, Lukasz
    Kalita, Damian
    Kawalko, Jakub
    Weglowski, Marek Stanislaw
    Kwiecinski, Krzysztof
    Sliwinski, Piotr
    Danielewski, Hubert
    Antoszewski, Bogdan
    Cesari, Eduard
    [J]. JOURNAL OF MATERIALS ENGINEERING AND PERFORMANCE, 2022, 31 (02) : 1609 - 1621
  • [4] The microstructure of a selective laser melting (SLM)-fabricated NiTi shape memory alloy with superior tensile property and shape memory recoverability
    Zhang, Qingquan
    Hao, Shijie
    Liu, Yuting
    Xiong, Zhiwei
    Guo, Wenqian
    Yang, Ying
    Ren, Yang
    Cui, Lishan
    Ren, Luquan
    Zhang, Zhihui
    [J]. APPLIED MATERIALS TODAY, 2020, 19 (19)
  • [5] Microstructure, Mechanical Properties, and Martensitic Transformation in NiTi Shape Memory Alloy Fabricated Using Electron Beam Additive Manufacturing Technique
    Jan Dutkiewicz
    Łukasz Rogal
    Damian Kalita
    Jakub Kawałko
    Marek Stanisław Węglowski
    Krzysztof Kwieciński
    Piotr Śliwiński
    Hubert Danielewski
    Bogdan Antoszewski
    Eduard Cesari
    [J]. Journal of Materials Engineering and Performance, 2022, 31 : 1609 - 1621
  • [6] Energy landscape for martensitic phase transformation in shape memory NiTi
    Kibey, S.
    Sehitoglu, H.
    Johnson, D. D.
    [J]. ACTA MATERIALIA, 2009, 57 (05) : 1624 - 1629
  • [7] EFFECT OF AGING ON MARTENSITIC-TRANSFORMATION IN NITI SHAPE MEMORY ALLOY
    STROZ, D
    KWARCIAK, J
    MORAWIEC, H
    [J]. JOURNAL OF MATERIALS SCIENCE, 1988, 23 (11) : 4127 - 4131
  • [8] In situ observation on temperature dependence of martensitic transformation and plastic deformation in superelastic NiTi shape memory alloy
    Xiao, Yao
    Zeng, Pan
    Lei, Liping
    Zhang, Yanzhi
    [J]. MATERIALS & DESIGN, 2017, 134 : 111 - 120
  • [9] Fabrication of SLM NiTi Shape Memory Alloy via Repetitive Laser Scanning
    Khoo Z.X.
    Liu Y.
    Low Z.H.
    An J.
    Chua C.K.
    Leong K.F.
    [J]. Shape Memory and Superelasticity, 2018, 4 (1) : 112 - 120
  • [10] Stress induced martensitic transformation kinetics of polycrystalline NiTi shape memory alloy
    Andrzej, ZA
    Bogdan, RA
    Miyazaki, S
    [J]. MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2004, 378 (1-2): : 86 - 91