Cyclic Deformation of Microcantilevers Using In-Situ Micromanipulation

被引:5
|
作者
Iyer, A. H. S. [1 ]
Colliander, M. H. [1 ]
机构
[1] Chalmers Univ Technol, Dept Phys, Gothenburg, Sweden
关键词
Micromechanics; Cyclic bending; Bauschinger effect; Micromanipulators; Electron microscopy; FRACTURE-TOUGHNESS; MICRO-CANTILEVER; MECHANICAL-PROPERTIES; CRACK-GROWTH; THIN-FILMS; COPPER; PLASTICITY; TEMPERATURE; SCALE; MICROSTRUCTURE;
D O I
10.1007/s11340-021-00752-3
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Background The trend in miniaturisation of structural components and continuous development of more advanced crystal plasticity models point towards the need for understanding cyclic properties of engineering materials at the microscale. Though the technology of focused ion beam milling enables the preparation of micron-sized samples for mechanical testing using nanoindenters, much of the focus has been on monotonic testing since the limited 1D motion of nanoindenters imposes restrictions on both sample preparation and cyclic testing. Objective/Methods In this work, we present an approach for cyclic microcantilever bending using a micromanipulator setup having three degrees of freedom, thereby offering more flexibility. Results The method has been demonstrated and validated by cyclic bending of Alloy 718plus microcantilevers prepared on a bulk specimen. The experiments reveal that this method is reliable and produces results that are comparable to a nanoindenter setup. Conclusions Due to the flexibility of the method, it offers straightforward testing of cantilevers manufactured at arbitrary position on bulk samples with fully reversed plastic deformation. Specific microstructural features, e.g., selected orientations, grain boundaries, phase boundaries etc., can therefore be easily targeted.
引用
收藏
页码:1431 / 1442
页数:12
相关论文
共 50 条
  • [31] Comparison between In-Situ and Post-Irradiation Cyclic Deformation Structures in Ni by 150 MeV Proton Irradiation
    Yoshiie, Toshimasa
    Sato, Koichi
    Xu, Qiu
    Ishi, Yoshihiro
    Uesugi, Tomonori
    Kuriyama, Yasutosi
    Mori, Yoshiharu
    MATERIALS TRANSACTIONS, 2014, 55 (03) : 434 - 437
  • [32] Cyclic deformation and nano-contact adhesion of MEMS nano-bridges by in-situ TEM nanomechanical testing
    Lockwood, A. J.
    Bobji, M. S.
    Bunyan, R. J. T.
    Inkson, B. J.
    ELECTRON MICROSCOPY AND ANALYSIS GROUP CONFERENCE 2009 (EMAG 2009), 2010, 241
  • [33] Modeling of photoinduced deformation in silicon microcantilevers
    Guo, Yu-Lin
    Zhou, Jia
    Huang, Yiping
    Bao, Min Hang
    SENSORS, 2007, 7 (09): : 1713 - 1719
  • [34] In-Situ Assessment of Dynamic Deformation Modulus of Pavement Layers using Light Weight Deflectometer
    Duddu, Sidhu Ramulu
    Kommanamanchi, Vamsi
    Chennarapu, Hariprasad
    Mahopatra, Prabodh Kumar
    TRANSPORTATION INFRASTRUCTURE GEOTECHNOLOGY, 2024, 11 (04) : 2023 - 2045
  • [35] In-situ monitoring of the deformation during Fused Deposition Modeling process using CGS method
    Li, Jiaqiang
    Xie, Huimin
    Ma, Kang
    POLYMER TESTING, 2019, 76 : 166 - 172
  • [36] In-situ observation and quantification of membrane deformation in reverse osmosis, using optical coherence tomography
    Ranieri, Luigi
    Fortunato, Luca
    Vrouwenvelder, Johannes
    Picioreanu, Cristian
    Blankert, Bastiaan
    DESALINATION, 2024, 591
  • [37] Application of digital image correlation for in-situ deformation studies using transmission electron microscopy
    Robinson, Accalia
    Homer, Eric R.
    Thompson, Gregory B.
    SCRIPTA MATERIALIA, 2024, 252
  • [38] Unraveling cyclic deformation mechanisms of a rolled magnesium alloy using in situ neutron diffraction
    Wu, Wei
    Liaw, Peter K.
    An, Ke
    ACTA MATERIALIA, 2015, 85 : 343 - 353
  • [39] A measurement structure for in-situ electrical monitoring of cyclic delamination
    Moser, Sebastian
    Tscharnuter, Daniel
    Nelhiebel, Michael
    Reisinger, Michael
    Zechner, Johannes
    Cordill, Megan J.
    SURFACE & COATINGS TECHNOLOGY, 2022, 445
  • [40] Insights into Deformation Mechanisms from in-situ Diffraction Experiments
    Daymond, Mark R.
    ACTA CRYSTALLOGRAPHICA A-FOUNDATION AND ADVANCES, 2005, 61 : C32 - C32