Future of additive manufacturing: Overview of 4D and 3D printed smart and advanced materials and their applications
Будущее аддитивного производства: обзор 4D- и 3D-печатных умных и передовых материалов и их приложений
2020-07-07
SCID: 54.1/qeh8q3ua
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3D printing4D printingadditive manufacturingdeployable structureselectrical responseextreme environment applicationshealth monitoringlight responsemagnetic responsemetamaterialsmoisture responsepH responseself-healing materialsshape-memory materialssmart materialssoft roboticsspace applicationsstimuli-responsive materialsthermal responsetuneable metamaterials
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Abstract (AI)
4D printing is an emerging field in additive manufacturing of time responsive programmable materials. The combination of 3D printing technologies with materials that can transform and possess shape memory and self-healing capabilities means the potential to manufacture dynamic structures readily for a myriad of applications. The benefits of using multifunctional materials in 4D printing create opportunities for solutions in demanding environments including outer space, and extreme weather conditions where human intervention is not possible. The current progress of 4D printable smart materials and their stimuli-responsive capabilities are overviewed in this paper, including the discussion of shape-memory materials, metamaterials, and self-healing materials and their responses to thermal, pH, moisture, light, magnetic and electrical exposures. Potential applications of such systems have been explored to include advancements in health monitoring, electrical devices, deployable structures, soft robotics and tuneable metamaterials.
Key Findings
1
4D printed smart materials and metamaterials create opportunities for use in extreme or inaccessible environments, including outer space.
2
4D printing combines 3D printing with time-responsive, programmable materials that transform after manufacture.
3
Multifunctional 4D-printable materials offer shape-memory and self-healing capabilities enabling dynamic structures for diverse applications.
4
Potential application areas include health monitoring, electrical devices, deployable structures, soft robotics, and tunable metamaterials.
5
Stimuli-responsive behaviors covered include responses to thermal, pH, moisture, light, magnetic, and electrical stimuli.
Research Object
4D printable smart and advanced materials used in additive manufacturing (including shape-memory materials, metamaterials, and self-healing materials)
Research Subject
Stimuli-responsive behaviors and programmable transformations (shape-memory, self-healing, metamaterial tunability) of these materials under thermal, pH, moisture, light, magnetic and electrical stimuli and their potential applications in health monitoring, electrical devices, deployable structures, soft robotics and tunable metamaterials
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2020-07-07
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