IP Library › Granted Patent US 7,981,495
Granted Patent B2
US 7,981,495 · App. 11/931,416 · Granted Jul 19, 2011

Materials methodology to improve the delamination strength of laminar composites

Assignees: Invensys Systems, Inc.; University of Massachusetts
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Quick Facts
Patent No.
US 7,981,495
App. No.
11/931,416
Granted
Jul 19, 2011
Kind
B2
Abstract

Fiber based z-directional reinforced composites having enhanced inter-laminar strength, impact toughness, transmission properties (electrical and thermal conduction) and coefficient of thermal expansion are provided. The composites include at least two substrates separated by a reinforcement zone that includes a plurality of fibers disposed in a binder resin. At least some, and in one embodiment, a majority, of the fibers are oriented so as to be substantially perpendicular to the substrates. Multi-layered composites having more than two substrate layers can also be formed. Methods for forming such composites are also provided.

Claims (21)

1. A composite, comprising:

a plurality of substrates; and

a reinforcement zone disposed between adjacent substrates of the plurality of substrates, the reinforcement zone having a binder resin and a plurality of fibers, a majority of which are oriented substantially perpendicular to the substrates, the substantially perpendicularly oriented fibers spanning adjacent substrate layers and being embedded in the adjacent substrate layers,

wherein the reinforcement zone further comprises a plurality of fibers oriented at a non-orthogonal angle to the plurality of substrates and a plurality of branched fibers, each branched fiber extending from one of the plurality of fibers oriented substantially perpendicular to the substrates or from one of the plurality of fibers oriented at a non-orthogonal angle to the plurality of substrates.

2. The composite of claim 1 , wherein the binder is an epoxy.

3. The composite of claim 1 , wherein one or more of the perpendicularly oriented fibers, the fibers oriented at a non-orthogonal angle, and the branched fibers have an average denier of about 1.5 to about 25.

4. The composite of claim 1 , wherein one or more of the perpendicularly oriented fibers, the fibers oriented at a non-orthogonal angle, and the branched fibers have an average length is about 0.5 mm to about 5 mm.

5. The composite of claim 1 , wherein the fibers are dispersed in the reinforcement zone at a fiber density in the range of about 50 fibers/mm 2 to about 600 fibers/mm 2 .

6. The composite of claim 5 , wherein a plurality of one or more of the perpendicularly oriented fibers, the fibers oriented at a non-orthogonal angle, and the branched fibers have a diameter in the range of about 7 micrometers to about 50 micrometers.

7. The composite of claim 1 , wherein a plurality of one or more of the perpendicularly oriented fibers, the fibers oriented at a non-orthogonal angle, and the branched fibers are selected from a group consisting of polymer-based fibers, glass fibers, carbon fibers, natural fibers, and metal fibers.

8. The composite of claim 1 , wherein one or more of the perpendicularly oriented fibers, the fibers oriented at a non-orthogonal angle, and the branched fibers comprise a surface treatment.

9. The composite of claim 8 , wherein the surface treatment is selected from a group consisting of an electrical activity processing agent and an adhesion agent.

10. The composite of claim 1 , wherein one or more of the perpendicularly oriented fibers, the fibers oriented at a non-orthogonal angle, and branched fibers comprise nanoparticles having a magnetic component.

11. The composite of claim 1 , wherein the fibers are dispersed in the reinforcement zone at a fiber density in the range of about 125 fibers/mm 2 to about 250 fibers/mm 2 .

12. A composite, comprising:

a first substrate parallel to a second substrate, at least one of the first and second substrates being a pre-preg having a binder resin incorporated therein;

a plurality of fibers having at least a portion thereof disposed within the binder resin, a majority of the fibers being oriented substantially perpendicular to the substrates, the substantially perpendicularly oriented fibers spanning the first and second substrate layers and being embedded in the first and second substrate layers; and

a plurality of branched fibers, each branched fiber extending from one of the plurality of fibers, at least some of the plurality of branched fibers being disposed substantially parallel to the substrate.

13. The composite of claim 12 , wherein the binder resin is an epoxy.

14. The composite of claim 13 , wherein the epoxy is configured to begin as a b-staged epoxy.

15. The composite of claim 12 , wherein the fibers are dispersed in the reinforcement zone at a fiber density in the range of about 125 fibers/mm 2 to about 250 fibers/mm 2 .

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 18, 2008
From: KIM, YONG K.; LEWIS, ARMAND F.; RICE, JOHN M.
To: UNIVERSITY OF MASSACHUSETTS
Reel/Frame 021257/0449 →
Continuity (2)
Provisional Application 60863680 · Oct 31, 2006
Related Publication 20080274326A1 · Nov 6, 2008