Post-Processing of 3D-Printed Polymers
Постобработка полимеров, напечатанных методом 3D-печати
2021-08-25
SCID: 54.1/a2t7xhys
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3D-printed polymersadditive manufacturingmechanical propertiespost-processing methodssurface properties
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Abstract (AI)
Additive manufacturing, commonly known as 3D printing, is an advancement over traditional formative manufacturing methods. It can increase efficiency in manufacturing operations highlighting advantages such as rapid prototyping, reduction of waste, reduction of manufacturing time and cost, and increased flexibility in a production setting. The additive manufacturing (AM) process consists of five steps: (1) preparation of 3D models for printing (designing the part/object), (2) conversion to STL file, (3) slicing and setting of 3D printing parameters, (4) actual printing, and (5) finishing/post-processing methods. Very often, the 3D printed part is sufficient by itself without further post-printing processing. However, many applications still require some forms of post-processing, especially those for industrial applications. This review focuses on the importance of different finishing/post-processing methods for 3D-printed polymers. Different 3D printing technologies and materials are considered in presenting the authors’ perspective. The advantages and disadvantages of using these methods are also discussed together with the cost and time in doing the post-processing activities. Lastly, this review also includes discussions on the enhancement of properties such as electrical, mechanical, and chemical, and other characteristics such as geometrical precision, durability, surface properties, and aesthetic value with post-printing processing. Future perspectives is also provided towards the end of this review.
Key Findings
1
Post-printing treatments can enhance electrical, mechanical, and chemical properties, as well as geometrical precision, durability, surface characteristics, and aesthetic value.
2
Post-processing is often essential for industrial applications of 3D-printed polymers, although some printed parts require no further treatment.
3
Post-processing methods are assessed in relation to their processing cost and time requirements.
4
The review evaluates finishing methods across different polymer additive-manufacturing technologies and materials, considering their advantages and disadvantages.
5
The review provides future perspectives on post-processing of 3D-printed polymers.
Research Object
3D-printed polymers
Research Subject
finishing and post-processing methods and their effects on the electrical, mechanical, chemical, geometric, durability, surface, and aesthetic properties of 3D-printed polymers
Publication Details
Publication Date
2021-08-25
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