Additive micro-manufacturing of crack-free PDCs by two-photon polymerization of a single, low-shrinkage preceramic resin
Аддитивное микроизготовление безтрещинных PDC методом двухфотонной полимеризации единого предкерамического низкоусадочного смоляного состава
2020-05-25
SCID: 54.1/52r8mmfk
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additive micro-manufacturinglow linear shrinkagepolysiloxane precursorpreceramic resintwo-photon polymerization
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Abstract (AI)
Additive manufacturing (AM) methods are being integrated in ceramics fabrication either as the main manufacturing tool or for auxiliary purposes. By using polymers, powders and preceramic formulated materials, AM techniques are pushing towards higher resolution, lower shrinkage and shorter building time. Herein, we present the fabrication of ceramic microstructures (< 200 × 200 × 200 μm3) with sub-micrometer resolution based on two-photon polymerization (TPP). 3D structuring of a preceramic resin by photopolymerization produces a so-called green body. The final ceramic part is obtained after pyrolysis of the green body. The high-resolution 3D shaped structures that we demonstrated could be employed as tools or components for microdevices. We report a lower linear shrinkage of 30% of TPP green bodies from a polysiloxane precursor with low porosity, no cracks and no significant shape distortion after pyrolysis, which implies the potential for highly controllable manufacturing of micro-ceramic parts based on commercially available chemical compounds. The protocol for preparing, fabricating and developing the resin is detailed.
Key Findings
1
A polysiloxane-based preceramic resin yielded TPP green bodies that, after pyrolysis, exhibited low linear shrinkage of 30%.
2
Pyrolyzed parts showed low porosity, absence of cracks, and no significant shape distortion, enabling crack-free micro-ceramic components.
3
The approach demonstrates potential for highly controllable manufacturing of micro-ceramic parts using commercially available chemical compounds.
4
The paper provides a detailed protocol for preparing, fabricating, and developing the low-shrinkage preceramic resin for TPP-based additive micro-manufacturing.
5
Two-photon polymerization (TPP) was used to fabricate ceramic microstructures smaller than 200 × 200 × 200 μm^3 with sub-micrometer resolution.
Research Object
Ceramic microstructures (micro-ceramic parts) fabricated by two-photon polymerization and pyrolysis from a single low-shrinkage polysiloxane preceramic resin
Research Subject
Achieving crack-free, low-porosity, low linear-shrinkage (<≈30%) high-resolution (<1 μm) 3D microfabrication of ceramic parts via TPP of a single preceramic resin and subsequent pyrolysis
Publication Details
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2020-05-25
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