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Huang, Dengpeng

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Huang, Dengpeng

M.Sc. Dengpeng Huang

Dengpeng Huang

Dengpeng Huang
Huang, Dengpeng
postdoc

Institute of Applied Dynamics

  • 2008 – 2012 B.Sc. Design, Manufacture and Automation in Mechanical Engineering, Shandong University, China
  • 2012 – 2015 M.Sc. Mechanical Manufacturing and Automation, Jilin University, China
  • 2015 – 2019 Doctoral candidate, Institute of Continuum Mechanics, Leibniz Universität Hannover, Germany
  • 2019 –  Visiting scholar, Institute for Structural Analysis, Technische Universität Dresden, Germany
  • 2020 – 2023 scientific staff, Institute of Applied Dynamics, Friedrich-Alexander-Universität Erlangen-Nürnberg, Germany

theses

2020

  • Huang D.:
    Meshfree Modelling of Metal Cutting using Phenomenological and Data-driven Material Models (Dissertation, 2020)
    URL: https://www.ltd.tf.fau.de/files/2021/05/huang_2020.pdf

2015

  • Huang D.:
    Investigation on Polishing Process for Freeform Optical Surfaces in an Off-axis Three Mirror System (Master thesis, 2015)

 

reviewed journal publications

2022

  • Huang D., Leyendecker S.:
    Optimal control of dielectric elastomer actuated multibody dynamical systems
    In: Soft Robotics (2022)
    ISSN: 2169-5172
    DOI: 10.1089/soro.2022.0162
  • Kumar S., Gosselet P., Huang D., Weissenfels C., Wriggers P.:
    Parallel multiphysics simulation for the stabilized Optimal Transportation Meshfree (OTM) method
    In: Journal of Computational Science 62 (2022)
    ISSN: 1877-7503
    DOI: 10.1016/j.jocs.2022.101739

2021

  • Huang D., Leyendecker S.:
    An electromechanically coupled beam model for dielectric elastomer actuators
    In: Computational Mechanics (2021)
    ISSN: 0178-7675
    DOI: 10.1007/s00466-021-02115-0

2020

  • Huang D., Fuhg JN., Weißenfels C., Wriggers P.:
    A machine learning based plasticity model using proper orthogonal decomposition
    In: Computer Methods in Applied Mechanics and Engineering 365 (2020), p. 113008
    ISSN: 0045-7825
    DOI: 10.1016/j.cma.2020.113008

2019

  • Huang D., Weißenfels C., Wriggers P.:
    Modelling of serrated chip formation processes using the stabilized optimal transportation meshfree method
    In: International Journal of Mechanical Sciences 155 (2019), p. 323-333
    ISSN: 0020-7403
    DOI: 10.1016/j.ijmecsci.2019.03.005

2017

  • Zhang L., Huang D., Zhou W., Fan C, Ji S., Zhao J.:
    Corrective polishing of freeform optical surfaces in an off-axis three-mirror imaging system
    In: International Journal of Advanced Manufacturing Technology 88 (2017), p. 2861-2869
    ISSN: 0268-3768
    DOI: 10.1007/s00170-016-8995-4
  • Huang D., Zhang L., Ji S., Zhao J.:
    Tool path generation for ultra-precision polishing of freeform optical surfaces in an off-axis three-mirror imaging system
    In: Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture 231 (2017), p. 814-824
    ISSN: 0954-4054
    DOI: 10.1177/0954405415599916

 

conferences and proceedings

2022

  • Capobianco G., Huang D., Sato Martin de Almagro R., Leyendecker S.:
    Introduction to Numerics (INUMS)
    invited lecture, FRASCAL Mini Lecture (Erlangen, 2022-06-24)
  • Huang D., Leyendecker S.:
    Dielectric Elastomer Actuated Multibody System Dynamics and Optimal Control
    92nd GAMM Annual Meeting (Aachen, 2022-08-15 - 2022-08-19)

2021

  • Huang D., Leyendecker S.:
    Modelling of dielectric elastomer actuated flexible multibody dynamics
    conference, ECCOMAS Thematic Conference on Multibody Dynamics (Budapest, 2021-12-12 - 2021-12-15)
  • Huang D., Leyendecker S.:
    Modelling of Electromechanical Coupling in Geometrically Exact Beam Dynamics
    14th WCCM-ECCOMAS Congress 2020 (online, 2021-01-11 - 2021-01-15)
    DOI: 10.23967/wccm-eccomas.2020.207
    URL: https://www.scipedia.com/public/Huang_Leyendecker_2021a

2020

  • Huang D., Leyendecker S.:
    On computational aspects of electromechanical coupling in geometrically exact beam dynamics
    Online symposium on flexible multibody system dynamics (Zoom, 2020-09-21 - 2020-09-21)

2019

  • D. Huang, C. Weißenfels, P. Wriggers.:
    A machine learning based plasticity model for FE application.
    XV International Conference on Computational Plasticity. (Barcelona, 2019-09-03 - 2019-09-05)
  • D. Huang, C. Weißenfels, P. Wriggers.:
    Combining of machine learning algorithm with OTM for metal cutting simulation.
    90th GAMM Annual Meeting (Vienna, 2019-02-18 - 2019-02-22)
  • D. Huang, C. Weißenfels, P. Wriggers.:
    Modelling of ductile fracture in chip formation using OTM method.
    VI International Conference on Computational Modeling of Fracture and Failure of Materials and Structures (CFRAC) (Braunschweig, 2019-06-12 - 2019-06-14)

2018

  • D. Huang, C. Weißenfels, P. Wriggers.:
    Modelling and simulation of metal cutting processes by use of the OTM method.
    89th GAMM Annual Meeting (Munich, 2018-03-19 - 2018-03-23)
  • D. Huang, C. Weißenfels, P. Wriggers.:
    Modelling of metal cutting processes using stabilized OTM method.
    6th European Conference on Computational Mechanics (ECCM) (Glasgow, 2018-06-11 - 2018-06-15)

2017

  • D. Huang, C. Weißenfels, P. Wriggers.:
    Numerical simulation of contact using OTM method.
    88th GAMM Annual Meeting (Ilmenau@Weimar, 2017-03-06 - 2017-03-10)
  • D. Huang, C. Weißenfels, P. Wriggers.:
    Simulation of ductile damage and fracture at finite strain by OTM method.
    XIV International Conference on Computational Plasticity. (Barcelona, 2017-09-05 - 2017-09-07)

 

further publications

 

  • Electromechanically coupled beam models for stacked dielectric elastomer actuators

    (Third Party Funds Single)

    Term: 2020-01-01 - 2022-12-31
    Funding source: DFG-Einzelförderung / Sachbeihilfe (EIN-SBH)
    Abstract

    Stacked dielectric elastomer actuators bear analogy to the behaviour of human muscles in terms of contracting in length direction when stimulated. They are suitable for point-by-point application of a force. Therefore, dielectric elastomers allow for a sophisticated, efficient and noiseless actuation of systems. However, the use of elastic actuators is also accompanied by new control challenges. As the computational cost for solving optimal control problems is significantly affected by the number of model degrees of freedom, reduced and problem specific actuator models are superior to general but cost-intensive finite element models.

    →More information

Exercise (UE)

  • Exercises Dynamics

    • 2 SWS; Early study
    • Date:
      • Mon 12:15-13:45, Room H7 (exclude vac) (Course Übung zur Dynamik starrer Körper) ICS
      • Mon 16:15-17:45, Room 01.021 (exclude vac) (Course Übung zur Dynamik starrer Körper) ICS
      • Thu 10:15-11:45, Room H17 Maschinenbau (exclude vac) (Course Übung zur Dynamik starrer Körper) ICS

Tutorial (TUT)

  • Tutorial Dynamics

    • 2 SWS; Early study
    • Date:
      • Mon 18:15-19:45, Room H11 (exclude vac) ICS

 

Institute of Applied Dynamics
Friedrich-Alexander-Universität Erlangen-Nürnberg

Immerwahrstrasse 1
91058 Erlangen
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