Polymeric Materials as Artificial Muscles: An Overview

Author:

Ariano Paolo1,Accardo Daisy12,Lombardi Mariangela12,Bocchini Sergio1,Draghi Lorenza3,De Nardo Luigi34,Fino Paolo12

Affiliation:

1. Istituto Italiano di Tecnologia, Center for Space Human Robotics, Torino - Italy

2. Politecnico di Torino, Department of Applied Science and Technology, INSTM RU, Torino - Italy

3. Politecnico di Milano, Department of Chemistry, Materials, and Chemical Engineering “G. Natta”, Milano - Italy

4. Unità di Ricerca Consorzio INSTM, Politecnico di Milano, Milano - Italy

Abstract

Purpose The accurate selection of materials and the fine tuning of their properties represent a fundamental aspect in the realization of new active systems able to produce actuating forces, such as artificial muscles. In this regard, exciting opportunities for the design of new advanced systems are offered by materials belonging to the emerging class of functional polymers: exploiting their actuation response, specific devices can be realized. Along this direction, materials showing either shape-memory effect (SME) or shape-change effect (SCE) have been the subject of extensive studies aimed at designing of actuators as artificial muscles. Here, we concisely review active polymers in terms of properties and main applications in artificial muscle design. Structure The main aspects related to material properties in both shape-memory polymers (SMPs) and electroactive polymers (EAPs) are reviewed, based on recent scientific literature. SME in thermally activated SMPs is presented by preliminarily providing a definition that encompasses the new theories regarding their fundamental properties. EAPs are briefly presented, describing the working mechanisms and highlighting the main properties and drawbacks, in view of their application as actuators. For both classes of materials, some key examples of effective application in artificial muscles are offered. Outlook The potential in polymer architecture design for the fabrication of actively moving systems is described to give a perspective on the main achievements and new research activities.

Publisher

SAGE Publications

Subject

Biomedical Engineering,Biomaterials,General Medicine,Bioengineering,Biophysics

Reference53 articles.

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