[HTML][HTML] Review of soft fluidic actuators: Classification and materials modeling analysis

A Pagoli, F Chapelle, JA Corrales-Ramon… - Smart Materials and …, 2021 - iopscience.iop.org
Soft actuators can be classified into five categories: tendon-driven actuators, electroactive
polymers, shape-memory materials, soft fluidic actuators (SFAs), and hybrid actuators. The …

Review of soft fluidic actuators: classification and materials modeling analysis

A Pagoli, F Chapelle, JAC Ramon… - Smart Materials and …, 2021 - inria.hal.science
Soft actuators can be classified into five categories: tendon-driven actuators, electroactive
polymers, shape-memory materials, soft fluidic actuators (SFAs), and hybrid actuators. The …

Review of soft fluidic actuators: classification and materials modeling analysis

A Pagoli, F Chapelle, JAC Ramon, Y Mezouar… - Smart Materials and …, 2021 - hal.science
Soft actuators can be classified into five categories: tendon-driven actuators, electroactive
polymers, shape-memory materials, soft fluidic actuators (SFAs), and hybrid actuators. The …

Review of soft fluidic actuators: classification and materials modeling analysis

A Pagoli, F Chapelle… - Smart Material …, 2022 - ui.adsabs.harvard.edu
Soft actuators can be classified into five categories: tendon-driven actuators, electroactive
polymers, shape-memory materials, soft fluidic actuators (SFAs), and hybrid actuators. The …

Review of soft fluidic actuators: classification and materials modeling analysis

A Pagoli, F Chapelle, JAC Ramon… - Smart Materials and …, 2021 - uca.hal.science
Soft actuators can be classified into five categories: tendon-driven actuators, electroactive
polymers, shape-memory materials, soft fluidic actuators (SFAs), and hybrid actuators. The …

Review of soft fluidic actuators: classification and materials modeling analysis

A Pagoli, F Chapelle, JA Corrales-Ramon… - Smart Materials and …, 2021 - cir.nii.ac.jp
抄録< jats: title> Abstract</jats: title>< jats: p> Soft actuators can be classified into five
categories: tendon-driven actuators, electroactive polymers, shape-memory materials, soft …