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A novel strain sensor based on 3D printing technology and 3D antenna design
53
Citations
18
References
2015
Year
Unknown Venue
Additive Manufacturing TechniquePrinting TechnologyFlexible 3DEngineeringMechanical EngineeringBiomedical EngineeringSensor TechnologyFlexible SensorNovel Strain SensorPrinted ElectronicsStretchable ElectronicsElectronic PackagingMaterials ScienceElectroactive MaterialFabrication TechniqueWearable ElectronicsStructural Health Monitoring3D PrintingFlexible ElectronicsMicrofabricationBioelectronicsAntenna DesignStrain SensorSensor Design
The additive manufacturing technique of 3D printing has become increasingly popular for time-consuming and complex designs. Due to the special mechanical properties of commercial NinjaFlex filament [1] and in-house-made electrically conductive adhesives (ECAs) [2], there is great potential for the 3D printed RF applications, such as strain sensors and flexible, wearable RF devices. This paper presents the flexible 3D printed strain sensor, as a 3D dipole antenna of ECA stretchable conductor on 3D printed Ninjaflex filament.
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