World's Best Scientists 2026 revealed!

Overview

Yanling Tian is a researcher affiliated with the University of Warwick in the United Kingdom. Their work primarily spans the fields of engineering and materials science, with significant contributions to subfields including surfaces, coatings and films, control and systems engineering, biomedical engineering, mechanics of materials, and computational mechanics.

Their research covers several main topics such as surface modification and superhydrophobicity, adhesion, friction, and surface interactions, advanced sensor and energy harvesting materials, fluid dynamics and heat transfer, iterative learning control systems, piezoelectric actuators and control, and robotic mechanisms and dynamics.

Yanling Tian has published frequently in venues such as SSRN Electronic Journal, Colloids and Surfaces A: Physicochemical and Engineering Aspects, Journal of Bionic Engineering, International Journal of Mechanical Sciences, and Surface and Coatings Technology.

Recent papers authored or co-authored by Yanling Tian include:

  • "Robust and durable liquid-repellent surfaces," 2022, Chemical Society Reviews
  • "Programmable droplet transport on multi-bioinspired slippery surface with tridirectionally anisotropic wettability," 2022, Chemical Engineering Journal
  • "Recent progress in bio-inspired macrostructure array materials with special wettability-from surface engineering to functional applications," 2023, International Journal of Extreme Manufacturing
  • "A 2-DOF nano-positioning scanner with novel compound decoupling-guiding mechanism," 2020, Mechanism and Machine Theory
  • "Phase-field simulations of droplet impact on superhydrophobic surfaces," 2022, International Journal of Mechanical Sciences

Frequent collaborators working with Yanling Tian include:

  • Faze Chen (17 collaborations)
  • Zhen Yang (16 collaborations)
  • Dawei Zhang (10 collaborations)
  • Dawei Zhang (8 collaborations)
  • Lei Xia (8 collaborations)

Best Publications

  • Multi-morphology transition hybridization CAD design of minimal surface porous structures for use in tissue engineering

    Unknown

  • Insights into the wettability transition of nanosecond laser ablated surface under ambient air exposure

    Zhen Yang;Xianping Liu;Yanling Tian;Yanling Tian

  • A Novel Direct Inverse Modeling Approach for Hysteresis Compensation of Piezoelectric Actuator in Feedforward Applications

    Yanding Qin;Yanling Tian;Dawei Zhang;B. Shirinzadeh

  • Design and dynamics of a 3-DOF flexure-based parallel mechanism for micro/nano manipulation

    Y. Tian;B. Shirinzadeh;D. Zhang

  • Development of a novel flexure-based microgripper for high precision micro-object manipulation

    Mohd Nashrul Mohd Zubir;Bijan Shirinzadeh;Yanling Tian

  • Design of a Piezoelectric-Actuated Microgripper With a Three-Stage Flexure-Based Amplification

    Fujun Wang;Cunman Liang;Yanling Tian;Xingyu Zhao

  • Design and Control of a Compliant Microgripper With a Large Amplification Ratio for High-Speed Micro Manipulation

    Fujun Wang;Cunman Liang;Yanling Tian;Xingyu Zhao

  • Design and analysis of a novel flexure-based 3-DOF mechanism

    Umesh Bhagat;Bijan Shirinzadeh;Leon Clark;Peter Chea

  • Design and Computational Optimization of a Decoupled 2-DOF Monolithic Mechanism

    Yanding Qin;Bijan Shirinzadeh;Yanling Tian;Dawei Zhang

  • Modification of wettability property of titanium by laser texturing

    Cheng-juan Yang;Xue-song Mei;Yan-ling Tian;Yan-ling Tian;Da-wei Zhang

  • Fabrication of super-hydrophobic nickel film on copper substrate with improved corrosion inhibition by electrodeposition process

    Zhen Yang;Zhen Yang;Xianping Liu;Yanling Tian;Yanling Tian

  • Modification of wetting property of Inconel 718 surface by nanosecond laser texturing

    Zheng Yang;Zheng Yang;Yanling Tian;Yanling Tian;C.J. Yang;Fujun Wang

  • Laser interferometry-based guidance methodology for high precision positioning of mechanisms and robots

    B. Shirinzadeh;P. L. Teoh;Y. Tian;M. M. Dalvand

  • Design issues in a decoupled XY stage: Static and dynamics modeling, hysteresis compensation, and tracking control

    Yanding Qin;Yanding Qin;Bijan Shirinzadeh;Yanling Tian;Dawei Zhang

  • A flexure-based five-bar mechanism for micro/nano manipulation

    Yanling Tian;Yanling Tian;Bijan Shirinzadeh;Dawei Zhang

  • Development of a piezo-driven 3-DOF stage with T-shape flexible hinge mechanism

    Kunhai Cai;Yanling Tian;Fujun Wang;Dawei Zhang

  • A novel flexure-based microgripper with double amplification mechanisms for micro/nano manipulation.

    Xiantao Sun;Weihai Chen;Yanling Tian;Sergej Fatikow

  • Design and Kinematics Modeling of a Novel 3-DOF Monolithic Manipulator Featuring Improved Scott-Russell Mechanisms

    Yanding Qin;Bijan Shirinzadeh;Dawei Zhang;Yanling Tian

  • Analytical modeling for thermal errors of motorized spindle unit

    Teng Liu;Teng Liu;Weiguo Gao;Dawei Zhang;Yifan Zhang

  • Programmable Droplet Transport on Multi-Bioinspired Slippery Surface with Tridirectionally Anisotropic Wettability

    Unknown

  • Hybrid laser ablation and chemical modification for fast fabrication of bio-inspired super-hydrophobic surface with excellent self-cleaning, stability and corrosion resistance

    Zhen Yang;Zhen Yang;Xianping Liu;Yanling Tian;Yanling Tian

  • A novel piezo-driven microgripper with a large jaw displacement

    Xiantao Sun;Weihai Chen;Sergej Fatikow;Yanling Tian

Frequent Co-Authors

Dawei Zhang
Dawei Zhang Tianjin University
Fujun Wang
Fujun Wang Tianjin University
Bijan Shirinzadeh
Bijan Shirinzadeh Monash University
Sergej Fatikow
Sergej Fatikow Carl von Ossietzky University of Oldenburg
Ran Ding
Ran Ding Jilin University
Xin Liu
Xin Liu Dalian University of Technology
Kornel F. Ehmann
Kornel F. Ehmann Northwestern University
Xuesong Mei
Xuesong Mei Xi'an Jiaotong University

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