IP Library Granted Patent US 11,613,076
Granted Patent B2
US 11,613,076 · App. 16/320,588 · Granted Mar 28, 2023

Three-dimensional printing processes using 1,1-di-activated vinyl compounds

Inventors: Kurt G. Olson (Gibsonia, PA); Aditya Gottumukkala (Monroeville, PA); Cynthia Kutchko (Pittsburgh, PA)
Assignee: PPG Industries Ohio, Inc.
B29C64/165B29C64/00B29C64/10B29C64/176B29C64/182B29C64/20B29C64/205B29C64/227B29C64/245B29C64/25B29C64/255B29C64/30B29C64/307B29C64/40B33Y30/00B33Y40/00B33Y40/10B33Y40/20B33Y50/00B33Y70/00B33Y70/10B33Y99/00C08L35/02B29K2035/00B29K2305/10B29K2305/12B29K2309/08B33Y10/00B33Y80/00G03G2215/2054G05B2219/49023G05B2219/49246Y10T156/1722Y10T156/1798
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Quick Facts
Patent No.
US 11,613,076
App. No.
16/320,588
Granted
Mar 28, 2023
Kind
B2
Abstract

A process for producing an article by three-dimensional printing includes applying a 1,1-di-activated vinyl compound-containing liquid binder over a predetermined area of a layer of solid particles. The liquid binder infiltrates gaps between the solid particles to form a first cross-sectional layer of an article, and the 1,1-di-activated vinyl compound reacts to solidify the liquid binder and bind the solid particles in the first cross-sectional layer of the article. Also provided is an article produced by the three-dimensional printing process, set forth herein.

Claims (33)

1. A process for producing an article by three-dimensional printing, the process comprising:

positioning a layer of solid particles in a planar bed, wherein the solid particles comprise an activator compound chemically and/or physically adsorbed onto surfaces of the solid particles;

applying a liquid binder over a predetermined area of the layer of solid particles, the liquid binder comprising a 1,1-di-activated vinyl compound, or a multifunctional form thereof, or a combination thereof;

infiltrating gaps between the solid particles with the liquid binder in the predetermined area of the layer of solid particles to form a first cross-sectional layer of an article; and

reacting the 1,1-di-activated vinyl compound, or multifunctional form thereof, or combination thereof, thereby solidifying the liquid binder and binding the solid particles in the first cross-sectional layer of the article.

2. The process of claim 1 , further comprising:

(i) positioning a second layer of solid particles in the planar bed over the first cross-sectional layer of the article;

(ii) applying additional liquid binder over a predetermined area of the second layer of solid particles, the liquid binder comprising the 1,1-di-activated vinyl compound, or multifunctional form thereof, or combination thereof;

(iii) infiltrating gaps between the solid particles with the additional liquid binder in the predetermined area of the second layer of solid particles to form a second cross-sectional layer of the article, wherein the second cross-sectional layer of the article is located over and in physical contact with the first cross-sectional layer of the article; and

(iv) reacting the 1,1-di-activated vinyl compound, or multifunctional form thereof, or combination thereof, thereby solidifying the liquid binder and binding the solid particles in the second cross-sectional layer of the article, and binding together the first and second cross-sectional layers of the article.

3. The process of claim 2 , wherein steps (i)-(iv) are repeated a plurality of times to produce a plurality of bonded cross-sectional layers that together comprise the article.

4. The process of claim 1 , wherein reacting the 1,1-di-activated vinyl compound, or multifunctional form thereof, or combination thereof, comprises polymerizing the 1,1-di -activated vinyl compound, or multifunctional form thereof, or combination thereof.

5. The process of claim 4 , wherein the polymerization occurs spontaneously upon contact of the liquid binder and the solid particles.

6. The process of claim 1 , wherein reacting the 1,1-di-activated vinyl compound, or multifunctional form thereof, or combination thereof, comprises applying an activator compound over at least a portion of the first cross-sectional layer of the article.

7. The process of claim 6 , wherein the activator compound comprises a tertiary amine compound.

8. The process of claim 6 , wherein the activator compound activates polymerization of the 1,1-di-activated vinyl compound, or multifunctional form thereof, or combination thereof.

9. The process of claim 1 , wherein the activator compound comprises an amine compound.

10. The process of claim 9 , wherein the activator compound comprises an aminosilane compound.

11. The process of claim 6 , wherein the activator compound activates polymerization of the 1,1-di-activated vinyl compound, or multifunctional form thereof, or combination thereof.

12. The process of claim 11 , wherein the solid particles comprise inorganic particles.

13. The process of claim 12 , wherein the solid particles comprise titanium dioxide, zirconium dioxide, zinc oxide, magnesium oxide, an iron oxide, a chromium oxide, silicon dioxide, an aluminum oxide, a metal, an alloy, or a glass, or a combination of any thereof.

14. The process of claim 13 , wherein the solid particles comprise glass particles.

15. The process of claim 14 , wherein the solid particles comprise silica.

16. The process of claim 15 , wherein the solid particles comprise organic particles.

17. The process of claim 16 , wherein the solid particles comprise thermoplastic particles.

18. The process of claim 1 , wherein the 1,1-di-activated vinyl compound comprises a methylene dicarbonyl compound, a dihalo vinyl compound, a dihaloalkyl disubstituted vinyl compound, or a cyanoacrylate compound, or a multifunctional form of any thereof, or a combination of any thereof.

19. The process claim 18 wherein the 1,1-di-activated vinyl compound comprises:

diethyl methylene malonate;

a multifunctional form of diethyl methylene malonate comprising a transesterification adduct of diethyl methylene malonate and at least one polyol;

dimethyl methylene malonate; or

a multifunctional form of dimethyl methylene malonate comprising a transesterification adduct of dimethyl methylene malonate and at least one polyol; or

a combination of any thereof.

20. The process claim 19 , wherein the 1,1-di-activated vinyl compound comprises a transesterification adduct of diethyl methylene malonate and a diol.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 25, 2019
From: OLSON, KURT G.; GOTTUMUKKALA, ADITYA; KUTCHKO, CYNTHIA
To: PPG INDUSTRIES OHIO, INC.
Reel/Frame 048134/0264 →
Continuity (3)
Provisional Application 62416758 · Nov 3, 2016
Provisional Application 62366781 · Jul 26, 2016
Related Publication 20190160739A1 · May 30, 2019