IP Library Granted Patent US 10,787,806
Granted Patent B2
US 10,787,806 · App. 15/633,176 · Granted Sep 29, 2020

Fire and/or water resistant expansion and seismic joint system

Inventors: Lester Hensley (Westborough, MA); Bill Witherspoon (Guelph, CA)
Assignee: EMSEAL JOINT SYSTEMS LTD.
E04B1/6801C09K21/00E04B1/66E04B1/68E04B1/6803E04B1/6804E04B1/6812E04B1/94E04B1/941E04B1/947E04B1/948E04B1/98
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Quick Facts
Patent No.
US 10,787,806
App. No.
15/633,176
Granted
Sep 29, 2020
Kind
B2
Abstract

An expansion joint system includes a cover plate; a spline attached to the cover plate; and foam having a fire retardant material included therein in an amount effective to pass testing mandated by UL 2079. The spline depends from the cover plate and is configured to be positioned in a gap between substrates such that the cover plate overlies the gap. The foam is compressible between a first face of the spline and one of the substrates and the foam is compressible between a second face of the spline and the other of the substrates, and the expansion joint system is configured to facilitate compression of the foam when installed between the substrates by repeatedly expanding and contracting to accommodate movement of the substrates; and the foam with the fire retardant material included therein is configured to pass the testing mandated by UL 2079.

Claims (41)

1. An expansion joint system, comprising:

a cover plate;

a spline; and

foam having a fire retardant material dispersed within the foam by infusing the fire retardant material in the foam, the foam with the fire retardant material therein configured to have a compressed density effective to pass testing as provided by UL 2079;

wherein the spline depends from the cover plate and is configured to be positioned in a gap between substrates such that the cover plate overlies the gap;

wherein the foam with the fire retardant therein is compressible between a first face of the spline and one of the substrates and the foam with the fire retardant therein is compressible between a second face of the spline and the other of the substrates, and the expansion joint system is configured to facilitate compression of the foam with the fire retardant therein between the substrates by repeatedly expanding and contracting to accommodate movement of the substrates; and

wherein the foam with the fire retardant material therein is configured to withstand exposure to a temperature of about 540° C. at about five minutes.

2. The expansion joint system of claim 1 , wherein the foam with the fire retardant material dispersed within the foam has a compressed density in a range of about 200 kg/m 3 to about 700 kg/m 3 .

3. The expansion joint system of claim 1 , wherein the fire retardant material dispersed within the foam comprises aluminum tri-hydrate.

4. The expansion joint system of claim 1 , wherein the foam comprises a plurality of laminations into which the fire retardant material is dispersed within.

5. The expansion joint system of claim 1 , wherein the foam comprises a block of foam.

6. The expansion joint system of claim 1 , wherein the spline is of monolithic construction.

7. The expansion joint system of claim 1 , comprising a water resistant layer on the foam.

8. The expansion joint system of claim 1 , wherein the foam with the fire retardant material uncompressed has a density of about 130 kg/m 3 to about 150 kg/m 3 .

9. The expansion joint system of claim 1 , wherein the system is configured to maintain fire resistance upon exposure to a temperature of about 1010° C. at about two hours.

10. The expansion joint system of claim 1 , wherein the system is configured to maintain fire resistance upon exposure to a temperature of about 1052° C. at about three hours.

11. The expansion joint system of claim 1 , wherein the system is configured to maintain fire resistance upon exposure to a temperature of about 1093° C. at about four hours.

12. The expansion joint system of claim 1 , wherein the system is configured to maintain fire resistance upon exposure to a temperature of about 1260° C. at about eight hours.

13. The expansion joint system of claim 1 , wherein the system is configured to maintain fire resistance upon exposure to a temperature of about 930° C. at about one hour.

14. The expansion joint system of claim 1 , wherein the spline is at least partially comprised of non-conductive material.

15. The expansion joint system of claim 1 , wherein the spline includes an upper portion and a lower portion, and the lower portion is comprised of non-conductive material.

16. The expansion joint system of claim 1 , wherein a ratio of fire retardant material infused into a first portion of the foam and a second portion of the foam is in a range of about 3.5:1 to about 4:1.

17. The expansion joint system of claim 1 , further comprising an intumescent layer disposed on the foam.

18. The expansion joint system of claim 1 , wherein a first portion of the foam and a second portion of the foam each comprises a plurality of laminations, at least one of the laminations is infused with the fire retardant material.

19. The expansion joint system of claim 18 , wherein the infused lamination is an inner lamination.

20. The expansion joint system of claim 18 , wherein the laminations are oriented, with respect to the direction in which the joint extends, in at least one of a parallel orientation, a perpendicular orientation, and a combination thereof.

21. The expansion joint system of claim 1 , wherein at least one of a first portion of the foam and a second portion of the foam is open celled polyurethane foam.

22. The expansion joint system of claim 1 , wherein the spline having a first face and a second face, the spline includes a first member and a second member joined edge-to-edge with the first member, the first member being attached to the cover plate along an edge opposite the second member.

23. The expansion joint system of claim 1 , further comprising a layer of water resistant material on the foam.

24. The expansion joint system of claim 1 , wherein the foam with the fire retardant material has a compressed density in a range of about 400 kg/m 3 to about 450 kg/m 3 .

25. An expansion joint system, comprising:

a cover plate;

a spline; and

foam having a fire retardant material introduced in the foam by filling, the foam with the fire retardant material therein configured to have a compressed density effective to pass testing as provided by UL 2079;

wherein the spline depends from the cover plate and is configured to be positioned in a gap between substrates such that the cover plate overlies the gap;

wherein the foam with the fire retardant therein is compressible between a first face of the spline and one of the substrates and the foam with the fire retardant therein is compressible between a second face of the spline and the other of the substrates, and the expansion joint system is configured to facilitate compression of the foam with the fire retardant therein between the substrates by repeatedly expanding and contracting to accommodate movement of the substrates; and

wherein the foam with the fire retardant material therein is configured to withstand exposure to a temperature of about 540° C. at about five minutes.

26. The expansion joint system of claim 25 , wherein the foam with the fire retardant material therein has a compressed density in a range of about 200 kg/m 3 to about 700 kg/m 3 .

27. The expansion joint system of claim 25 , wherein the system is configured to maintain fire resistance upon exposure to a temperature of about 930° C. at about one hour.

28. The expansion joint system of claim 25 , further comprising a layer of water resistant material on the foam.

29. The expansion joint system of claim 25 , further comprising an intumescent layer disposed on the foam.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 10, 2023
From: EMSEAL JOINT SYSTEMS, LTD.
To: SIKA TECHNOLOGY AG
Reel/Frame 065164/0786 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 23, 2017
From: HENSLEY, LESTER; WITHERSPOON, BILL
To: EMSEAL JOINT SYSTEMS, LTD.
Reel/Frame 043369/0293 →
Continuity (5)
Continuation 14455398 · Aug 8, 2014
Continuation 13723605 · Dec 21, 2012
Continuation 12730354 · Mar 24, 2010
Provisional Application 61162820 · Mar 24, 2009
Related Publication 20170292262A1 · Oct 12, 2017