IP Library Granted Patent US 11,555,310
Granted Patent B2
US 11,555,310 · App. 17/283,347 · Granted Jan 17, 2023

Composite rebar

Inventors: Shoujie Li (Westerville, OH); Amol Vaidya (New Albany, OH); Matthew Donald Keener (Newark, OH)
Assignee: Owens Corning Intellectual Capital, LLC
E04C5/07B29D99/0003B29D99/0046E04C5/073B29K2309/08
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Quick Facts
Patent No.
US 11,555,310
App. No.
17/283,347
Granted
Jan 17, 2023
Kind
B2
Abstract

An improved shaped composite rebar is disclosed.

Claims (57)

1. A composite rebar comprising:

a plurality of continuous fibers arranged parallel to one another to form an elongated member, the fibers being impregnated with a resin matrix; and

a fiber strand,

wherein the resin matrix is cured to fix the fibers relative to one another,

wherein the fiber strand is wrapped around an outer surface of the elongated member in a helical manner such that a plurality of adjacent coils extend a length of the elongated member to form t distinct groups of the adjacent coils,

wherein one or more groups u of the adjacent coils each include a first plurality of the adjacent coils separated by a distance x,

wherein one or more groups v of the adjacent coils each include a second plurality of the adjacent coils separated by a distance y,

wherein x>y,

wherein t=u+v,

wherein each of the u groups corresponds to a straight portion of the elongated member, and

wherein each of the v groups corresponds to a bent portion of the elongated member.

2. The composite rebar of claim 1 , wherein the continuous fibers are glass fibers.

3. The composite rebar of claim 2 , wherein an average diameter of the continuous fibers is within the range of 13 μm to 35 μm.

4. The composite rebar of claim 2 , wherein an average diameter of the continuous fibers is within the range of 17 μm to 32 μm.

5. The composite rebar of claim 1 , wherein the resin matrix is a thermoset resin.

6. The composite rebar of claim 1 , wherein the resin matrix is selected from the group consisting of a polyester resin, a vinyl ester resin, a polyurethane resin, an epoxy resin, and combinations thereof.

7. The composite rebar of claim 1 , wherein the fiber strand is formed of glass.

8. The composite rebar of claim 1 , further comprising a texturizing material applied to an outer surface of the elongated member.

9. The composite rebar of claim 8 , wherein the texturizing material is sand.

10. A composite rebar comprising:

a plurality of continuous fibers arranged parallel to one another to form an elongated member, the fibers being impregnated with a resin matrix; and

a fiber strand wrapped around an outer surface of the elongated member in a helical manner to form a plurality of non-overlapping adjacent coils, and

a bend that causes the composite rebar to form a first straight portion and a second straight portion,

wherein the resin matrix is cured to fix the fibers relative to one another,

wherein a distance between each adjacent pair of a first plurality of the adjacent coils is x,

wherein a distance between each adjacent pair of a second plurality of the adjacent coils is y,

wherein x>y,

wherein a central axis of the first straight portion and a central axis of the second straight portion intersect with one another at the bend to form an angle z,

wherein z>5 degrees, and

wherein the bend includes more of the second plurality of the adjacent coils than the first plurality of the adjacent coils.

11. The composite rebar of claim 10 , wherein z>45 degrees.

12. A composite rebar comprising:

a plurality of continuous fibers arranged parallel to one another to form an elongated member, the fibers being impregnated with a resin matrix; and

a fiber strand wrapped around an outer surface of the elongated member in a helical manner to form a plurality of non-overlapping adjacent coils, and

a bend that causes the composite rebar to form a first straight portion and a second straight portion,

wherein the resin matrix is cured to fix the fibers relative to one another,

wherein a distance between each adjacent pair of a first plurality of the adjacent coils is x,

wherein a distance between each adjacent pair of a second plurality of the adjacent coils is y,

wherein x>y,

wherein a central axis of the first straight portion and a central axis of the second straight portion intersect with one another at the bend to form an angle z,

wherein z>5 degrees,

wherein the bend includes more of the second plurality of the adjacent coils than the first straight portion, and

wherein the bend includes more of the second plurality of the adjacent coils than the second straight portion.

13. The composite rebar of claim 1 , wherein x is in the range of 1.0 inches to 1.5 inches.

14. The composite rebar of claim 1 , wherein y is in the range of 0.1 inches to 0.9 inches.

15. The composite rebar of claim 1 , wherein the elongated member is formed by a pultrusion process.

16. The composite rebar of claim 1 , wherein the elongated member has a circular cross-section.

17. A method of forming a composite rebar, the method comprising:

providing a plurality of continuous fibers arranged parallel to one another to form a straight elongated member;

impregnating the fibers with a resin matrix;

wrapping a fiber strand around an outer surface of the elongated member in a helical manner to form a plurality of non-overlapping adjacent coils, each adjacent pair of a first plurality of the adjacent coils being separated by a distance x and each adjacent pair of a second plurality of the adjacent coils being separated by a distance y;

forming a bend in the straight elongated member; and

curing the resin matrix to fix the fibers relative to one another and adhere the fiber strand to the elongated member,

wherein the bend includes more of the second plurality of the adjacent coils than the first plurality of the adjacent coils,

wherein the distance y between at least one of the adjacent pairs of the second plurality of the adjacent coils increases to a distance y′, and

wherein x≥y′>y.

18. The composite rebar of claim 12 , wherein z>45 degrees.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 7, 2021
From: LI, SHOUJIE; VAIDYA, AMOL; KEENER, MATTHEW DONALD
To: OCV INTELLECTUAL CAPITAL, LLC
Reel/Frame 055851/0821 →
MERGER Recorded Apr 7, 2021
From: OCV INTELLECTUAL CAPITAL, LLC
To: OWENS CORNING INTELLECTUAL CAPITAL, LLC
Reel/Frame 055851/0860 →
Continuity (2)
Provisional Application 62769231 · Nov 19, 2018
Related Publication 20210388616A1 · Dec 16, 2021