Nov 12, 2017 · This paper presents a study of motion of an artificial flagellum microrobot in a viscous environment in COMSOL Multiphysics.
The design of an artificial flagellum microrobot, consisting of a piezoelectric layered beam divided into several segments, may be able to swim in blood ...
This paper presents a study of motion of an artificial flagellum microrobot in a viscous environment in COMSOL Multiphysics. The microrobot is essentially a ...
Artificial Flagellum Microrobot. Design and Simulation in COMSOL ... Authors: Enrique Mancha; José Emilio Traver; Inés Tejado; Javier Prieto; Blas M.
Performance study of propulsion of N-link artificial Eukaryotic flagellum swimming microrobot within a fractional order approach.
2019. Artificial flagellum microrobot. Design and simulation in COMSOL. E Mancha, JE Traver, I Tejado, J Prieto, BM Vinagre, V Feliu. ROBOT 2017: Third Iberian ...
This paper presents a study of motion of an artificial flagellum microrobot in a viscous environment in COMSOL Multiphysics. The microrobot is essentially a ...
Performance study of propulsion of N-link artificial Eukaryotic flagellum swimming microrobot within a fractional order approach: From simulations to hardware- ...
Mar 7, 2020 · This paper presents a study of motion of an artificial eukaryotic flagellum (AEF) microrobot in COMSOL Multiphysics®.
This paper presents a study of motion of an ar- tificial eukaryotic flagellum (AEF) microrobot in. COMSOL Multiphysics. The microrobot is es- sentially a body, ...