IP Library Granted Patent US 8,383,697
Granted Patent B2
US 8,383,697 · App. 12/769,904 · Granted Feb 26, 2013

Systems for self-healing composite materials

Inventors: Gerald O. Wilson (Champaign, IL); Mary M. Caruso (Urbana, IL); Benjamin J. Blaiszik (Urbana, IL); James W. Henderson (Winnetka, IL); Christopher Britt (St. Louis, MO); Jeffrey S. Moore (Savoy, IL); Scott R. White (Champaign, IL); Nancy R. Sottos (Champaign, IL)
Assignee: Board of Trustees of the University of Illinois
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Quick Facts
Patent No.
US 8,383,697
App. No.
12/769,904
Granted
Feb 26, 2013
Kind
B2
Abstract

A composite material precursor composition includes a matrix precursor, a first plurality of capsules including a liquid polymerizer, an activator, and an accelerant. The liquid polymerizer polymerizes when in contact with the activator, and the accelerant is an accelerant for the polymerization of the liquid polymerizer. The composite material precursor may be used to form a composite material that includes a solid polymer matrix, the first plurality of capsules in the solid polymer matrix, the activator in the solid polymer matrix, and the accelerant in the solid polymer matrix.

Claims (55)

1. A composite material precursor composition, comprising:

a matrix precursor;

a first plurality of capsules comprising a liquid polymerizer;

an activator,

where the liquid polymerizer polymerizes when in contact with the activator; and

a plurality of functionalized particles comprising particles having a surface, and a functional group immobilized on the surface of the particles;

where the functional group comprises an accelerant for the polymerization of the liquid polymerizer.

2. The composition of claim 1 , where

the liquid polymerizer comprises at least one of an acrylate monomer and an alkylacrylate monomer, and

the activator comprises a free-radical initiator.

3. The composition of claim 2 , where the

functional group comprises a N,N-dimethylaniline group.

4. The composition of claim 3 , where the particles comprise hydroxyapatite.

5. The composition of claim 4 , where

the liquid polymerizer comprises MMA,

the initiator comprises BPO, and

the functionalized particles comprise dimethylaminobenzyl alcohol-modified hydroxyapatite.

6. The composition of claim 2 , where the matrix precursor comprises a precursor for PMMA.

7. The composition of claim 2 , where the liquid polymerizer comprises

at least one monomer selected from the group consisting of MMA and BMA, and

at least one monomer selected from the group consisting of Bis-GMA, TMPTMA and EGDMA.

8. The composition of claim 2 , where the initiator comprises a peroxide initiator.

9. The composition of claim 2 , further comprising activator particles comprising the initiator.

10. A composite material, comprising:

a solid polymer matrix;

a first plurality of capsules in the solid polymer matrix,

the first plurality of capsules comprising a liquid polymerizer;

an activator in the solid polymer matrix,

where the liquid polymerizer polymerizes when in contact with the activator; and

a plurality of functionalized particles in the solid polymer matrix,

the functionalized particles comprising particles having a surface, and a functional group immobilized on the surface of the particles,

where the functional group comprises an accelerant for the polymerization of the liquid polymerizer in the solid polymer matrix.

11. The composite material of claim 10 , where

the liquid polymerizer comprises at least one of an acrylate monomer and an alkylacrylate monomer, and

the activator comprises a free-radical initiator.

12. A method of making a composite material, comprising:

combining ingredients comprising

a matrix precursor,

a first plurality of capsules comprising a liquid polymerizer,

an activator, where the liquid polymerizer polymerizes when in contact with the activator, and

a plurality of functionalized particles comprising particles having a surface, and a functional group immobilized on the surface of the particles,

where the functional group comprises an accelerant for the polymerization of the liquid polymerizer; and

solidifying the matrix precursor to form a solid polymer matrix.

13. The method of claim 12 , where the functional group comprises a N,N-dimethylaniline group.

14. The method of claim 12 , where the particles comprise hydroxyapatite.

15. The method of claim 12 , where the liquid polymerizer comprises

at least one monomer selected from the group consisting of MMA and BMA, and

at least one monomer selected from the group consisting of Bis-GMA, TMPTMA and EGDMA.

16. The method of claim 12 , where the activator comprises a peroxide initiator.

17. The composite material of claim 10 , where the functional group comprises a N,N-dimethylaniline group.

18. The composite material of claim 10 , where the particles comprise hydroxyapatite.

19. The composite material of claim 10 , where the liquid polymerizer comprises

at least one monomer selected from the group consisting of MMA and BMA, and

at least one monomer selected from the group consisting of Bis-GMA, TMPTMA and EGDMA.

20. The composite material of claim 10 , where the activator comprises a peroxide initiator.

Assignments (2)
CONFIRMATORY LICENSE Recorded Nov 1, 2010
From: UNIVERSITY OF ILLINOIS URBANA-CHAMPAIGN
To: UNITED STATES AIR FORCE
Reel/Frame 025231/0388 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 30, 2010
From: WILSON, GERALD O.; CARUSO, MARY M.; BLAISZIK, BENJAMIN J.; HENDERSON, JAMES W.; BRITT, CHRISTOPHER; MOORE, JEFFREY S.; WHITE, SCOTT R.; SOTTOS, NANCY R.
To: BOARD OF TRUSTEES OF THE UNIVERSITY OF ILLINOIS
Reel/Frame 024908/0395 →
Continuity (2)
Provisional Application 61174214 · Apr 30, 2009
Related Publication 20100331445A1 · Dec 30, 2010