Light curing 3D printing preparing method for complex double-wall silicon-based ceramic core
A ceramic core and 3D printing technology, which is applied in the field of precision casting, can solve problems such as complex procedures and high costs, and achieve the effects of simplifying the process flow, reducing cost loss, and reducing process steps
Patent Information
- Authority / Receiving Office
- CN · China
- Current Assignee / Owner
- Publication Date
- 2020-05-05
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Abstract
Description
technical field
[0001] The invention relates to the field of precision casting, in particular to a preparation method for light-cured 3D printing of a complex double-walled silicon-based ceramic core for investment casting, which is suitable for precision casting of hollow engine blades and replaces the need for complex procedures in traditional investment casting The processing method of the double-wall core made by the set mold. Background technique
[0002] In "Made in China 2025", the US "National Advanced Manufacturing Strategic Plan", the European Space Agency's "Amazing Project", Japan's "Additive Manufacturing Research Program", Singapore's "Industrial Additive Manufacturing Project" and the European Union's "3D Printing Standardization Roadmap" Under the opportunity of the rapid development of global new manufacturing technology, additive manufacturing technology integrates computer-aided design, material processing and forming technology, based on digital model fil...
Examples
Embodiment
[0064] In this embodiment, the preparation method of single crystal double-walled hollow turbine blade based on light curing technology is as follows:
[0065] (1) Weigh 100g (v=46mL, ρ=2g / cm 3 ); monomer: 20g (18mL) of 1,6-hexanediol diacrylate, 10g (11mL) of diglycidyl hexahydrophthalate; dispersant: 4g (3.5mL) of dipentaerythritol hexaacrylate (DPHA) ), and mixed with sodium polyacrylate 0.8g, ammonium polyacrylate 0.2g, oleic acid 0.2g; photoinitiator: benzoin dimethyl ether 0.8g, 2,4,6-trimethylbenzoyl diphenylphosphine oxide 0.12 g, 0.12g of diarylsulfonium salt, 0.12g of triarylsulfonium salt; light absorber: 0.21g of 2,4-dihydroxybenzophenone, 2-(2′-hydroxyl-5′-methylbenzene base) 0.15g of benzotriazole; mineralizer: 8g of alumina, 6g of zirconia, the particle size of alumina is 20nm-40nm, and the particle size of zirconia is 20-40nm.
[0066] (2) Mix the spherical silicon-based ceramic powder mixed with micron-scale and nano-scale with mineralizer, and process it th...