3D/4D Printing of Polymers: Fused Deposition Modelling (FDM), Selective Laser Sintering (SLS), and Stereolithography (SLA)
3D/4D-печать полимеров: плавленое осаждение (FDM), селективное лазерное спекание (SLS) и стереолитография (SLA)
2021-09-15
SCID: 54.1/uywj6mrt
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4D printingFused Deposition Modelling (FDM)Selective Laser Sintering (SLS)Stereolithography (SLA)additive manufacturingmagneto-active polymersmaterial-process-properties correlationpolymer-based 3D printing
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Abstract (AI)
Additive manufacturing (AM) or 3D printing is a digital manufacturing process and offers virtually limitless opportunities to develop structures/objects by tailoring material composition, processing conditions, and geometry technically at every point in an object. In this review, we present three different early adopted, however, widely used, polymer-based 3D printing processes; fused deposition modelling (FDM), selective laser sintering (SLS), and stereolithography (SLA) to create polymeric parts. The main aim of this review is to offer a comparative overview by correlating polymer material-process-properties for three different 3D printing techniques. Moreover, the advanced material-process requirements towards 4D printing via these print methods taking an example of magneto-active polymers is covered. Overall, this review highlights different aspects of these printing methods and serves as a guide to select a suitable print material and 3D print technique for the targeted polymeric material-based applications and also discusses the implementation practices towards 4D printing of polymer-based systems with a current state-of-the-art approach.
Key Findings
1
Guidelines are provided to select suitable print materials and 3D printing techniques for targeted polymeric applications based on material-process-property relationships.
2
The paper addresses advanced material-process requirements for transitioning these methods to 4D printing, exemplified by magneto-active polymers.
3
The review compares three widely used polymer-based 3D printing techniques: FDM, SLS, and SLA, correlating material, process, and properties.
4
The review highlights implementation practices and current state-of-the-art approaches for 4D printing of polymer-based systems using FDM, SLS, and SLA.
Research Object
Polymer-based 3D/4D printed parts produced by Fused Deposition Modelling (FDM), Selective Laser Sintering (SLS), and Stereolithography (SLA)
Research Subject
Correlation of polymer material–process–properties across FDM, SLS, and SLA and assessment of advanced material–process requirements for enabling 4D printing (exemplified by magneto-active polymers)
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2021-09-15
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References available in scid.ai3
A Review of Vat Photopolymerization Technology: Materials, Applications, Challenges, and Future Trends of 3D Printing2021
Photopolymerization-based additive manufacturing of ceramics: A systematic review2021
FDM-Based 3D Printing of Polymer and Associated Composite: A Review on Mechanical Properties, Defects and Treatments2020