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- Electroactive_polymers abstract "Electroactive polymers, or EAPs, are polymers that exhibit a change in size or shape when stimulated by an electric field. The most common applications of this type of material are in actuators and sensors. A typical characteristic property of an EAP is that they will undergo a large amount of deformation while sustaining large forces.The majority of historic actuators are made of ceramic piezoelectric materials. While these materials are able to withstand large forces, they commonly will only deform a fraction of a percent. In the late 1990s, it has been demonstrated that some EAPs can exhibit up to a 380% strain, which is much more than any ceramic actuator. One of the most common applications for EAPs is in the field of robotics in the development of artificial muscles; thus, an electroactive polymer is often referred to as an artificial muscle.".
- Electroactive_polymers thumbnail EAP-example2.png?width=300.
- Electroactive_polymers wikiPageID "1490017".
- Electroactive_polymers wikiPageRevisionID "594853911".
- Electroactive_polymers hasPhotoCollection Electroactive_polymers.
- Electroactive_polymers subject Category:Electrical_engineering.
- Electroactive_polymers subject Category:Polymers.
- Electroactive_polymers subject Category:Smart_materials.
- Electroactive_polymers subject Category:Transducers.
- Electroactive_polymers type Abstraction100002137.
- Electroactive_polymers type Chemical114806838.
- Electroactive_polymers type Compound114818238.
- Electroactive_polymers type Material114580897.
- Electroactive_polymers type Matter100020827.
- Electroactive_polymers type Part113809207.
- Electroactive_polymers type PhysicalEntity100001930.
- Electroactive_polymers type Polymer114994328.
- Electroactive_polymers type Polymers.
- Electroactive_polymers type Relation100031921.
- Electroactive_polymers type SmartMaterials.
- Electroactive_polymers type Substance100019613.
- Electroactive_polymers comment "Electroactive polymers, or EAPs, are polymers that exhibit a change in size or shape when stimulated by an electric field. The most common applications of this type of material are in actuators and sensors. A typical characteristic property of an EAP is that they will undergo a large amount of deformation while sustaining large forces.The majority of historic actuators are made of ceramic piezoelectric materials.".
- Electroactive_polymers label "Electroactive polymers".
- Electroactive_polymers label "Elektroaktive Polymere".
- Electroactive_polymers label "Polymère électroactif".
- Electroactive_polymers label "Polímero electroactivo".
- Electroactive_polymers label "Электроактивные полимеры".
- Electroactive_polymers label "人工筋肉".
- Electroactive_polymers label "电活性聚合物".
- Electroactive_polymers sameAs Elektroaktive_Polymere.
- Electroactive_polymers sameAs Polímero_electroactivo.
- Electroactive_polymers sameAs Polymère_électroactif.
- Electroactive_polymers sameAs 人工筋肉.
- Electroactive_polymers sameAs m.055fhs.
- Electroactive_polymers sameAs Q543275.
- Electroactive_polymers sameAs Q543275.
- Electroactive_polymers sameAs Electroactive_polymers.
- Electroactive_polymers wasDerivedFrom Electroactive_polymers?oldid=594853911.
- Electroactive_polymers depiction EAP-example2.png.
- Electroactive_polymers isPrimaryTopicOf Electroactive_polymers.