IP Library › Granted Patent US 12,114,737
Granted Patent B2
US 12,114,737 · App. 17/407,672 · Granted Oct 15, 2024

Flexible button

Inventors: Rachel Marie McClay (Portland, OR); Luke A. Pezzimenti (Portland, OR)
Assignee: NIKE, INC.
A44B1/02A44B1/04A44B1/08A44B1/20B33Y80/00B29C64/153B29K2075/00B29K2105/26B29L2019/00B33Y10/00
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Quick Facts
Patent No.
US 12,114,737
App. No.
17/407,672
Granted
Oct 15, 2024
Kind
B2
Abstract

Concepts provided are directed to a flexible button that is bendable when exposed to a force. The flexible button in accordance herein has a tapered perimeter portion such that a thickness of a peripheral edge of the perimeter portion is less than a thickness of remaining portions of the flexible button. The low-profile of the flexible button allows the flexible button to easily slip through a respective button hole and to be more easily gripped by a user. Further, the flexible button in accordance with aspects herein provides higher breathability than conventional buttons of the same size by having voided portions on its perimeter portion.

Claims (33)

1. A flexible button comprising:

a central portion having two or more threading openings and a first thickness; and

a perimeter portion continuously extending from the central portion, wherein a peripheral edge of the perimeter portion is tapered such that a second thickness of the peripheral edge is less than the first thickness of the central portion, and wherein the flexible button comprises a Shore A durometer hardness value from about 80 to about 100; and

one or more voided portions in the perimeter portion, wherein the one or more voided portions are spaced apart from the peripheral edge of the perimeter portion, and wherein the one or more voided portions extend completely through the flexible button.

2. The flexible button of claim 1 , wherein the flexible button comprises at least 50% of a recycled thermoplastic material.

3. The flexible button of claim 2 , wherein the recycled thermoplastic material is a recycled thermoplastic polyurethane material.

4. The flexible button of claim 3 , wherein the flexible button is comprised of about 60% of the recycled thermoplastic polyurethane material and about 40% of a non-recycled thermoplastic polyurethane material.

5. The flexible button of claim 1 , wherein the one or more voided portions have an elongated shape.

6. The flexible button of claim 1 , wherein the flexible button comprises four voided portions.

7. The flexible button of claim 1 , wherein the flexible button comprises a circular shape.

8. The flexible button of claim 1 , wherein a diameter of the flexible button is from about 10 mm to about 25 mm, and wherein a third thickness of a thickest portion of the flexible button is from about 1 mm to about 2 mm.

9. The flexible button of claim 1 , wherein the flexible button comprises a first surface and a second surface opposite the first surface, and wherein one or more of the first surface and the second surface are concave at the central portion of the flexible button.

10. The flexible button of claim 1 , wherein the flexible button comprises a first surface and a second surface opposite the first surface, and wherein one or more of the first surface and the second surface are flat at the central portion of the flexible button.

11. The flexible button of claim 1 , wherein the flexible button comprises a first surface and a second surface opposite the first surface, wherein the first surface is concave at the central portion of the flexible button and the second surface is flat at the central portion of the flexible button.

12. An upper-body garment comprising:

a torso portion; and

a flexible button affixed to the torso portion, the flexible button comprising a Shore A durometer hardness value from about 80 to about 100:

a central portion having two or more threading openings and a first thickness;

a perimeter portion continuously extending from the central portion, wherein a peripheral edge of the perimeter portion is tapered such that a second thickness of the peripheral edge is less than the first thickness of the central portion; and

one or more voided portions spaced from the peripheral edge of the perimeter portion, wherein the one or more voided portions extend completely through the flexible button.

13. The upper-body garment of claim 12 , wherein the one or more voided portions have an elongated shape.

14. The upper-body garment of claim 12 , wherein the flexible button comprises at least 50% of a recycled thermoplastic material.

15. The upper-body garment of claim 14 , wherein the flexible button is comprised of about 60% of the recycled thermoplastic material and about 40% of a non-recycled thermoplastic material.

16. A method for manufacturing a flexible button, comprising:

preparing a mixture comprising at least 50% of a recycled thermoplastic material; and

forming the flexible button from the mixture, the flexible button comprising:

a central portion having two or more threading openings and a first thickness; and

a perimeter portion continuously extending from the central portion, wherein a peripheral edge of the perimeter portion is tapered such that a second thickness of the peripheral edge is less than the first thickness of the central portion, wherein the flexible button comprises a Shore A durometer hardness value from about 80 to about 100; and

one or more voided portions in the perimeter portion, wherein the one or more voided portions are spaced apart from the peripheral edge of the perimeter portion, and wherein the one or more voided portions extend completely through the flexible button.

17. The method of claim 16 , wherein forming the flexible button comprises one of molding, or a rapid manufacturing technique.

18. The method of claim 17 , wherein the rapid manufacturing technique includes one or more of laser sintering and 3D printing.

19. The method of claim 16 , wherein the recycled thermoplastic material is a recycled thermoplastic polyurethane material.

20. The method of claim 19 , wherein the flexible button is comprised of about 60% of the recycled thermoplastic polyurethane material and about 40% of a non-recycled thermoplastic polyurethane material.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 22, 2021
From: MCCLAY, RACHEL MARIE; PEZZIMENTI, LUKE A.
To: NIKE, INC.
Reel/Frame 057564/0466 →
Continuity (2)
Provisional Application 63079250 · Sep 16, 2020
Related Publication 20220079298A1 · Mar 17, 2022