IP Library Granted Patent US 10,167,366
Granted Patent B2
US 10,167,366 · App. 14/634,814 · Granted Jan 1, 2019

Polysilocarb materials, methods and uses

Inventors: Andrew R. Hopkins (Sylvania, OH); Mark S. Land (Houston, TX); Walter J. Sherwood (Glenville, NY); Tim C. Moeller (Magnolia, TX); Bruce A. Bricco (The Woodlands, TX); Douglas M. Dukes (Troy, NY); Brian L. Benac (Hadley, NY); Michael J. Mueller (Katy, TX)
Assignee: Melior Innovations, Inc.
C08G77/12B24D3/28C04B35/56C04B35/5603C04B35/571C04B35/806C08L83/04C09K8/80C09K8/805C04B2235/3418C04B2235/3826C04B2235/44C04B2235/48C04B2235/483C04B2235/528C04B2235/5427C04B2235/5436C04B2235/6581C04B2235/77C04B2235/96C08G77/20C08G77/80Y10T428/131
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Quick Facts
Patent No.
US 10,167,366
App. No.
14/634,814
Granted
Jan 1, 2019
Kind
B2
Abstract

Polysilocarb formulations, cured and pyrolized materials, was well as articles and use for this material. In particular pyrolized polysilocarb ceramic materials and articles contain these materials where, the ceramic has from about 30 weight % to about 60 weight % silicon, from about 5 weight % to about 40 weight % oxygen, and from about 3 weight % to about 35 weight % carbon, and wherein 20 weight % to 80 weight % of the carbon is silicon-bound-carbon and 80 weight % to about 20 weight % of the carbon is free carbon.

Claims (36)

1. A non-sintered end product comprising a polysilocarb formulation, wherein the end product comprises an SiO x C y moiety, where x≥1, y≥1, and x+y=4, the end product selected from the group consisting of fibers, proppants, silane coated proppants, silane and antistatic coated proppants, blast shield, a ballistic composite, structural member, trailer, mobile building, shipping container, friction member, grinding device, armored vehicle, body armor, insulation, paint, fire resistant coatings, counter tops, exhaust systems, tubular structures, wiring insulation, pipe insulation, pipe linings, concrete, and vapor barrier; and, the end product comprises about 20 weight % to about 35 weight % carbon; wherein about 55 weight % to about 80 weight % of the carbon is free carbon.

2. The end product of claim 1 , wherein the polysilocarb formulation comprises a pyrolized ceramic, the ceramic comprising from about 30 weight % to about 60 weight % silicon, from about 5 weight % to about 40 weight % oxygen.

3. The end product of claim 1 , wherein the ceramic material comprises about 40 weight % to about 50 weight % silicon, and wherein about 25 weight % to about 40 weight % of the carbon is silicon-bound carbon.

4. The end product of claim 1 , wherein the ceramic material comprises about 40 weight % to about 50 weight % silicon.

5. The end product of claim 1 , wherein the ceramic material comprises about 20 weight % to about 30 weight % oxygen, and wherein about 25 weight % to about 40 weight % of the carbon is silicon-bound carbon.

6. The end product of claim 1 , wherein the ceramic material comprises about 20 weight % to about 30 weight % oxygen, and wherein about 60 weight % to about 75 weight % of the carbon is free carbon.

7. The end product of claim 1 , wherein the ceramic material comprises about 25 weight % to about 30 weight % carbon, and wherein about 25 weight % to about 40 weight % of the carbon is silicon-bound carbon.

8. The end product of claim 1 , wherein the ceramic material comprises about 30 weight % carbon, and wherein about 60 weight % to about 75 weight % of the carbon is free carbon.

9. A method of making an article, wherein in the article is selected from the group consisting of fibers, proppants, silane coated proppants, silane and antistatic coated proppants, blast shield, a ballistic composite, structural member, trailer, mobile building, shipping container, friction member, grinding device, armored vehicle, body armor, insulation, paint, fire resistant coatings, counter tops, exhaust systems, tubular structures, wiring insulation, pipe insulation, pipe linings, concrete, and vapor barrier; the method comprising selecting a polysilocarb precursor formulation, making the article by processing the polysilocarb formulation as at least from about 50% to 100% of the article; wherein the processing includes the formation of a green material comprising an SiCCSi moiety; wherein the article comprises an SiO x C y moiety, where x≥1, y≥1, and x+y=4; and, the article comprises about 20 weight % to about 35 weight % carbon; wherein about 55 weight % to about 80 weight % of the carbon is free carbon.

10. The method of claim 9 , comprising pyrolizing the polysilocarb formulation to form a pyrolized ceramic, the ceramic comprising from about 30 weight % to about 60 weight % silicon, from about 5 weight % to about 40 weight % oxygen.

11. An article comprising a pyrolized polysilocarb ceramic structure comprising SiO x C y moieties, where x≥1, y≥1 and x+y=4, the ceramic structure consisting of from about 30 weight % to about 60 weight % silicon, from about 5 weight % to about 40 weight % oxygen, and from about 20 weight % to about 35 weight % carbon, and wherein about 80 weight % to about 55 weight % of the carbon is free carbon.

12. The article of claim 11 , wherein the article is a vehicle.

13. The vehicle of claim 11 , comprising a panel comprising the ceramic structure.

14. The article of claim 11 , wherein the structure is a ball bearing.

15. The article of claim 11 , wherein the article is a wall panel.

16. The article of claim 11 , wherein the article is a rope.

17. The article of claim 16 , wherein the rope comprises fibers comprising the ceramic structure.

18. The article of claim 11 , wherein the article comprises cement.

19. The article of claim 11 , wherein the article comprises concrete.

20. The article of claim 11 , wherein the article is selected from the group of article consisting of fibers, coated sand, blast shield, a ballistic composite, structural member, trailer, shipping container, friction member, grinding device, armored vehicle, body armor, insulation, exhaust systems, tubular structures, wiring insulation, pipe insulation, pipe linings, concrete, and vapor barrier.

21. The article of claim 11 , wherein the article is selected from the group of article consisting of fibers, proppants, coated sand, blast shield, a ballistic composite, structural member, trailer, mobile building, shipping container, friction member, body armor, insulation, paint, fire resistant coatings, counter tops, exhaust systems, pipe insulation, pipe linings, concrete, cement and vapor barrier.

22. The article of claim 11 , wherein the article is selected from the group of article consisting of coated proppants, coated sand, vacuum infused sand, vacuum infused materials, blast shield, a ballistic composite, structural member, trailer, mobile building, shipping container, friction member, grinding device, abrasive material, abrasive device, armored vehicle, body armor, insulation, paint, fire resistant coatings, counter tops, pipe linings, concrete, cement and vapor barrier.

23. The article of claim 11 , wherein the article is selected from the group of article consisting of fibers, proppants, silane coated proppants, silane and antistatic coated proppants, coated sand, trailer, mobile building, shipping container, friction member, grinding device, armored vehicle, body armor, insulation, cement and vapor barrier.

24. The article of claim 11 , wherein the article is selected from the group of articles consisting of a trailer, a mobile building, a shipping container, a friction member, a grinding device, a armored vehicle, a body armor, a insulation, a paint, a counter tops, a exhaust systems, a tubular structures, a wiring insulation, a cement and a vapor barrier.

25. The article of claim 11 , wherein the article is selected from the group of article consisting of fibers, proppants, silane coated proppants, silane and antistatic coated proppants, coated sand, blast shield, a ballistic composite, structural member, trailer, mobile building, shipping container, friction member, grinding device, armored vehicle, body armor, insulation, paint, fire resistant coatings, counter tops, exhaust systems, tubular structures, wiring insulation, pipe insulation, pipe linings, concrete, cement and vapor barrier.

26. The end product of claim 1 , wherein the polysilocarb formulation is a reaction type formulation.

27. The end product of claim 1 , wherein the polysilocarb formulation is a reaction type formulation, wherein the formulation comprises at least one precursor selected from the group consisting of Phenyltriethoxysilane, Phenylmethyldiethoxysilane, Methyldiethoxysilane, Vinylmethyldiethoxysilane, Trimethyethoxysilane, Triethoxysilane, and TES 40.

28. The end product of claim 1 , wherein the polysilocarb formulation is a reaction type formulation, whereby the formulation comprises at least two precursors selected from the group consisting of Phenyltriethoxysilane, Phenylmethyldiethoxysilane, Methyldiethoxysilane, Vinylmethyldiethoxysilane, Trimethyethoxysilane, Triethoxysilane, and TES 40.

29. The end product of claim 1 , wherein the polysilocarb formulation is a mixing type formulation.

30. The end product of claim 1 , wherein the polysilocarb formulation is a mixing type formulation, wherein the formulation comprises at least one precursor selected from the group consisting of methyl terminated vinyl polysiloxane, vinyl terminated vinyl polysiloxane, hydride terminated vinyl polysiloxane, vinyl terminated dimethyl polysiloxane, hydroxy terminated dimethyl polysiloxane, phenyl terminated dimethyl polysiloxane, methyl terminated phenylethyl polysiloxane, and tetravinyl cyclosiloxane.

31. The method of claim 9 , wherein the polysilocarb formulation is a reaction type formulation.

32. The method of claim 9 , wherein the polysilocarb formulation is a reaction type formulation, wherein the formulation comprises at least one precursor selected from the group consisting of Phenyltriethoxysilane, Phenylmethyldiethoxysilane, Methyldiethoxysilane, Vinylmethyldiethoxysilane, Trimethyethoxysilane, Triethoxysilane, and TES 40.

33. The method of claim 9 , wherein the polysilocarb formulation is a reaction type formulation, whereby the formulation comprises at least two precursors selected from the group consisting of Phenyltriethoxysilane, Phenylmethyldiethoxysilane, Methyldiethoxysilane, Vinylmethyldiethoxysilane, Trimethyethoxysilane, Triethoxysilane, and TES 40.

34. The method of claim 9 , wherein the polysilocarb formulation is a mixing type formulation.

35. The method of claim 9 , wherein the polysilocarb formulation is a mixing type formulation, wherein the formulation comprises at least one precursor selected from the group consisting of methyl terminated vinyl polysiloxane, vinyl terminated vinyl polysiloxane, hydride terminated vinyl polysiloxane, vinyl terminated dimethyl polysiloxane, hydroxy terminated dimethyl polysiloxane, phenyl terminated dimethyl polysiloxane, methyl terminated phenylethyl polysiloxane, and tetravinyl cyclosiloxane.

36. A non-sintered end product consisting essentially of a polysilocarb formulation, wherein the end product comprises an SiO x C y moiety, where x≥1, y≥1, and x+y=4, the end product selected from the group consisting of fibers, proppants, silane coated proppants, silane and antistatic coated proppants, blast shield, a ballistic composite, structural member, trailer, mobile building, shipping container, friction member, grinding device, armored vehicle, body armor, insulation, paint, fire resistant coatings, counter tops, exhaust systems, tubular structures, wiring insulation, pipe insulation, pipe linings, concrete, and vapor barrier; and, the end product comprises about 20 weight % to about 35 weight % carbon; wherein about 55 weight % to about 80 weight % of the carbon is free carbon.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 6, 2018
From: HOPKINS, ANDREW R; LAND, MARK S; SHERWOOD, WALTER J; MOELLER, TIM C; BRICCO, BRUCE A; DUKES, DOUGLAS M; BENAC, BRIAN L; MUELLER, MICHAEL J
To: MELIOR INNOVATIONS, INC.
Reel/Frame 047422/0338 →
Continuity (7)
Continuation In Part 14268150 · May 2, 2014
Continuation In Part 14212896 · Mar 14, 2014
Provisional Application 61946598 · Feb 28, 2014
Provisional Application 62106094 · Jan 21, 2015
Provisional Application 61818906 · May 2, 2013
Provisional Application 61818981 · May 3, 2013
Related Publication 20150175750A1 · Jun 25, 2015
Cited By (1)
US 12,617,686