Copolymer based powdered material for selective laser sintering and preparation method thereof
A powder material and laser sintering technology, applied in the field of new materials, can solve the problems of difficult-to-form thin-walled parts, low strength and low forming temperature of SLS formed parts, and achieve the effects of low preheating temperature, low equipment requirements, and not easy to age.
- Summary
- Abstract
- Description
- Claims
- Application Information
AI Technical Summary
Problems solved by technology
Method used
Examples
Embodiment 1
[0024] (1) Cool the SAN resin with a glass transition temperature of 105°C and a melt index of 50g / 10min in a cryogenic freezer to -150°C, and pulverize it with a high-speed impact mill;
[0025] (2) The powder obtained in step (1) is sieved by air flow to obtain copolymer powder with an average particle size of 45 microns and a particle size distribution between 10 and 90 microns.
[0026] (3) Add 10Kg of copolymer powder obtained in step (2), 5g of carbon black with an average particle size of 50nm and 10g of nano-alumina into a high-speed mixer, and uniformly mix to obtain a copolymer-based powder material.
[0027] The copolymer-based powder material prepared in Example 1 contains very little carbon black and flow aids, and can be used for SLS forming with complex structures and thin-walled initial blanks, and then undergo post-treatments such as impregnating wax to obtain wax for investment casting mold.
Embodiment 2
[0029] (1) Cool the SAN resin with a glass transition temperature of 100°C and a melt index of 60g / 10min to -150°C in a cryogenic freezer, and pulverize it with a high-speed impact mill;
[0030] (2) The powder obtained in step (1) is sieved by air flow to obtain copolymer powder with an average particle size of 45 microns and a particle size distribution between 10 and 100 microns.
[0031] (3) Add 10Kg of copolymer powder obtained in step (2), 50g of carbon black with an average particle diameter of 60nm and 200g of nano silicon dioxide into a high-speed mixer, and uniformly mix to obtain a copolymer-based powder material.
[0032] In the copolymer-based powder material prepared in Example 2, there are more carbon black and flow aids, which can play a role in strengthening the SLS formed part. This powder material can be used for SLS forming with complex structure and thin-walled initial blank. After impregnation with epoxy resin, etc., functional parts that can meet general...
Embodiment 3
[0034] (1) Cool the SAN resin with a glass transition temperature of 105°C and a melt index of 60g / 10min in a cryogenic freezer to -140°C, and pulverize it with a high-speed impact mill;
[0035] (2) The powder obtained in step (1) is sieved by air flow to obtain copolymer powder with an average particle size of 55 microns and a particle size distribution between 10 and 100 microns.
[0036] (3) the 10Kg copolymer powder that step (2) obtains, 20g mean particle diameter are 100nm carbon black and 80g nanometer calcium carbonate add in the high-speed mixer, carry out uniform mixing, obtain copolymer base powder material.
[0037] Composition and proportioning of the copolymer-based powder material prepared by three embodiments of table 1
[0038]
PUM
Property | Measurement | Unit |
---|---|---|
glass transition temperature | aaaaa | aaaaa |
melt flow index | aaaaa | aaaaa |
particle size | aaaaa | aaaaa |
Abstract
Description
Claims
Application Information
- R&D Engineer
- R&D Manager
- IP Professional
- Industry Leading Data Capabilities
- Powerful AI technology
- Patent DNA Extraction
Browse by: Latest US Patents, China's latest patents, Technical Efficacy Thesaurus, Application Domain, Technology Topic, Popular Technical Reports.
© 2024 PatSnap. All rights reserved.Legal|Privacy policy|Modern Slavery Act Transparency Statement|Sitemap|About US| Contact US: help@patsnap.com