IP Library Granted Patent US 12,133,605
Granted Patent B1
US 12,133,605 · App. 18/312,131 · Granted Nov 5, 2024

Metal-reinforced curtain glide

Inventor: Bryan John Luedeke (Augusta, KS)
Assignee: Textron Innovations Inc.
A47H15/04B64D11/0023E06B9/362
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Quick Facts
Patent No.
US 12,133,605
App. No.
18/312,131
Granted
Nov 5, 2024
Kind
B1
Abstract

A metal curtain glide includes a spherical metal core coupled to a cable and having a polymer cup formed to fit a base of the metal core. The polymer cup includes a central opening for the cable to extend therethrough. An eyelet having a circular member with a connecting member is coupled to an end of the cable. A first member of a fastener assembly is coupled to the eyelet and configured to be removably secured to a second member of the fastener assembly that is coupled to a curtain. The curtain glide remains functional if the polymer cup fails.

Claims (35)

1. A curtain glide configured to be removably coupled to a curtain and to slide within a track having a longitudinally extending bore, the curtain glide comprising:

a spherical metal core coupled to a linkage;

a hemispherical polymer cup having an inner hemispherical concave surface formed to fit a base of the spherical metal core such that the spherical metal core nests inside and contacts the inner hemispherical concave surface, the polymer cup having an opening and the linkage extending therethrough; and

an eyelet coupled to the linkage;

wherein the curtain glide remains functional if the polymer cup fails.

2. The curtain glide of claim 1 , wherein the linkage is a metal cable.

3. The curtain glide of claim 1 , wherein the polymer cup is configured to provide a wear-resistant surface at a wear surface interface between the curtain glide and the track.

4. The curtain glide of claim 1 , wherein the eyelet includes a circular member with a connecting member extending therefrom, the connecting member coupled to an end of the linkage.

5. The curtain glide of claim 1 , further comprising a fastener coupled to the eyelet.

6. The curtain glide of claim 5 , wherein the fastener is a first member of a fastener assembly configured to be removably secured to a second member of the fastener assembly that is coupled to a curtain.

7. The curtain glide of claim 6 , wherein the first member of the fastener assembly includes a protrusion that removably interlocks with the second member.

8. A curtain glide configured to be removably coupled to a curtain and to slide within a track having a longitudinally extending bore, the curtain glide comprising:

a spherical metal core coupled to a cable;

a hemispherical polymer cup having an inner hemispherical concave surface formed to fit a base of the spherical metal core such that the spherical metal core nests inside and contacts the inner hemispherical concave surface, the polymer cup having a central opening and the cable extending therethrough;

an eyelet having a circular member with a connecting member extending therefrom,

wherein the connecting member is coupled to an end of the cable; and

a first member of a fastener assembly coupled to the eyelet, wherein the first member is configured to be removably secured to a second member of the fastener assembly that is coupled to a curtain,

wherein the curtain glide remains functional if the polymer cup fails.

9. The curtain glide of claim 8 , wherein the polymer cup is configured to provide a wear-resistant surface at a wear surface interface between the curtain glide and the track.

10. The curtain glide of claim 8 , wherein the fastener assembly is a snap assembly having the first member coupled to the eyelet, the first member configured to be removably secured to the second member of the fastener assembly that is coupled to the curtain.

11. A metal curtain gliding system configured to be removably coupled to a curtain, comprising:

a track having a longitudinally extending bore defined by two parallel walls, each wall having an inward extending flange defining a slot therebetween; and

a plurality of curtain glides configured to slide within the longitudinally extending bore,

each curtain glide comprising:

a spherical metal core coupled to a linkage;

a hemispherical polymer cup having an inner hemispherical concave surface formed to fit abase of the spherical metal core such that the spherical metal core nests inside and contacts the inner hemispherical concave surface, the polymer cup having a central opening and the linkage extending therethrough, a dimension of the slot between the inward extending flanges being less than a diameter of each of the spherical metal core and the polymer cup, wherein the curtain glide remains functional if the polymer cup fails;

the linkage extending from the polymer cup, the linkage configured to project through the slot in the track when the polymer cup slides within the longitudinally extending bore and the dimension of the slot between the inward extending flanges being greater than a diameter of the linkage; and

an eyelet secured to an end of the linkage.

12. The metal curtain gliding system of claim 11 , wherein the track is a hard coat anodized metal track.

13. The metal curtain gliding system of claim 11 , wherein the polymer cup is configured to provide a wear-resistant surface at a wear surface interface between the curtain glide and the track during operation of the curtain gliding system.

14. The metal curtain gliding system of claim 13 , wherein the polymer cup comprises a plastic polymer material formed by a selective laser sintering process.

15. The metal curtain gliding system of claim 11 , wherein the eyelet includes a circular member with a connecting member extending therefrom, the connecting member coupled to an end of the linkage.

16. The metal curtain gliding system of claim 11 , further comprising a fastener secured to the eyelet configured for removably coupling the curtain glide to the curtain.

17. The metal curtain gliding system of claim 16 , wherein the fastener is a first member of a fastener assembly that is configured to be removably coupled to a second member of the fastener assembly that is joined to the curtain.

18. The metal curtain gliding system of claim 11 , wherein each curtain glide is configured to rotate independently within the track about the respective linkage.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 15, 2024
From: TEXTRON AVIATION INC.
To: TEXTRON AVIATION RHODE ISLAND INC.
Reel/Frame 066601/0215 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 15, 2024
From: TEXTRON AVIATION RHODE ISLAND INC.
To: TEXTRON INNOVATIONS INC.
Reel/Frame 066601/0359 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 4, 2023
From: LUEDEKE, BRYAN JOHN
To: TEXTRON AVIATION INC.
Reel/Frame 063536/0645 →
Cited By (1)
US 12,631,063