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Research Article

Variable stiffness wires based on magnetorheological liquid metals

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Pages 232-243 | Received 29 Jan 2022, Accepted 07 Apr 2022, Published online: 29 Apr 2022

References

  • Ashtiani M, Hashemabadi SH, Ghaffari A. A review on the magnetorheological fluid preparation and stabilization. J Magn Magn Mater. 2015;374:716–730.
  • Liu B, Li WH, Kosasih PB, et al. Development of an MR-brake-based haptic device. Smart Mater Struct. 2006;15:1960–1966.
  • de Vicente J, Klingenberg DJ, Hidalgo-Alvarez R. Magnetorheological fluids: a review. Soft Matter. 2011;7:3701–3710.
  • Ding Y, Zhang L, Zhu HT, et al. A new magnetorheological damper for seismic control. Smart Mater Struct. 2013;22:115003.
  • Chooi WW, Oyadiji SO. Design, modelling and testing of magnetorheological (MR) dampers using analytical flow solutions. Comput Struct. 2008;86:473–482.
  • Cha SW, Kang SR, Hwang YH, et al. Design and control of a parallel mechanism haptic master for robot surgery using magneto-rheological clutches and brakes. J Intell Mater Syst Struct. 2018;29:3829–3844.
  • Rizzo R. An innovative multi-gap clutch based on magneto-rheological fluids and electrodynamic effects: magnetic design and experimental characterization. Smart Mater Struct. 2017;26:015007.
  • Sassi S, Cherif K, Mezghani L, et al. An innovative magnetorheological damper for automotive suspension: from design to experimental characterization. Smart Mater Struct. 2005;14:811–822.
  • Wang T, Cheng HB, Dong ZC, et al. Removal character of vertical jet polishing with eccentric rotation motion using magnetorheological fluid. J Mater Process Technol. 2013;213:1532–1537.
  • Dickey MD. Stretchable and soft electronics using liquid metals. Adv Mater. 2017;29:1606425.
  • Tang SY, Tabor C, Kalantar-Zadeh K, et al. Gallium liquid metal: the Devil’s Elixir. Annu Rev Mater Res. 2021;51:381–408.
  • Markvicka EJ, Bartlett MD, Huang XN, et al. An autonomously electrically self-healing liquid metal-elastomer composite for robust soft-matter robotics and electronics. Nat Mater. 2018;17:618–624.
  • Yun GL, Tang SY, Sun SS, et al. Liquid metal-filled magnetorheological elastomer with positive piezoconductivity. Nat Commun. 2019;10. DOI:10.1038/s41467-019-09325-4.
  • Tang SY, Sivan V, Petersen P, et al. Liquid metal actuator for inducing chaotic advection. Adv Funct Mater. 2014;24:5851–5858.
  • Shu J, Tang SY, Zhao SZP, et al. Rotation of liquid metal droplets solely driven by the action of magnetic fields. Appl Sci. 2019;9:1421.
  • Deng YG, Jiang Y, Liu J. Low-melting-point liquid metal convective heat transfer: a review. Appl Therm Eng. 2021;193:117021.
  • Zhang PP, Guo W, Guo ZH, et al. Dynamically crosslinked dry ion-conducting elastomers for soft iontronics. Adv Mater. 2021;33:2101396.
  • Ma Z, Ai J, Shi Y, et al. A superhydrophobic droplet‐based magnetoelectric hybrid system to generate electricity and collect water simultaneously. Adv Mater. 2020;32:2006839.
  • Zhang X, Ai J, Ma Z, et al. Liquid metal based stretchable magnetoelectric films and their capacity for mechanoelectrical conversion. Adv Funct Mater. 2020;30:2003680.
  • Shu J, Ge DA, Wang EL, et al. A liquid metal artificial muscle. Adv Mater. 2021;33:2103062.
  • Chrimes AF, Berean KJ, Mitchell A, et al. Controlled electrochemical deformation of liquid-phase gallium. ACS Appl Mater Interfaces. 2016;8:3833–3839.
  • Tang SY, Khoshmanesh K, Sivan V, et al. Liquid metal enabled pump. Proc Natl Acad Sci U S A. 2014;111:3304–3309.
  • Cole T, Tang SY. Liquid metals as soft electromechanical actuators. Mater Adv. 2022;3:173–185.
  • Ren L, Sun SS, Casillas-Garcia G, et al. A liquid-metal-based magnetoactive slurry for stimuli-responsive mechanically adaptive electrodes. Adv Mater. 2018;30:1802595.
  • Hu L, Wang HZ, Wang XF, et al. Magnetic liquid metals manipulated in the three-dimensional free space. ACS Appl Mater Interfaces. 2019;11(8):8685–8692.
  • Wang HZ, Chen S, Li HW, et al. A liquid gripper based on phase transitional metallic ferrofluid. Adv Funct Mater. 2021;31:2100274.
  • He Y, Tang J, Kalantar-Zadeh K, et al. Noncontact rotation, levitation, and acceleration of flowing liquid metal wires. Proc Natl Acad Sci U S A. 2022;119. DOI:10.1073/pnas.2117535119.
  • Cui YT, Liang F, Xu S, et al. Interfacial wetting behaviors of liquid Ga alloys/FeGa3 based on metallic bond interaction. Colloids Surf A. 2019;569:102–109.
  • Allioux FM, Han JL, Tang JB, et al. Nanotip formation from liquid metals for soft electronic junctions. ACS Appl Mater Interfaces. 2021;13:43247–43257.
  • Guo R, Sun X, Yuan B, et al. Magnetic liquid metal (Fe-EGaIn) based multifunctional electronics for remote self-healing materials, degradable electronics, and thermal transfer printing. Adv Sci. 2019;6:1901478.
  • Byun SH, Sim JY, Zhou ZA, et al. Mechanically transformative electronics, sensors, and implantable devices. Sci Adv. 2019;5(11):eaay0418.
  • Zhang CL, Li L, Yang XH, et al. Study on the nucleating agents for gallium to reduce its supercooling. Int J Heat Mass Transfer. 2019;148:119055.
  • Tang SY, Mitchell DRG, Zhao QB, et al. Phase separation in liquid metal nanoparticles. Matter. 2019;1:192–204.