IP Library › Granted Patent US 12,419,373
Granted Patent B2
US 12,419,373 · App. 18/772,162 · Granted Sep 23, 2025

Reclosable closure

Inventor: Michael Bergman (Somerville, MA)
A41F1/002A44D2203/00
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Quick Facts
Patent No.
US 12,419,373
App. No.
18/772,162
Granted
Sep 23, 2025
Kind
B2
Abstract

A closure includes a first magnetic assembly, a second magnetic assembly and an actuator coupled to the first magnetic assembly and the second magnetic assembly. The actuator is arranged to reconfigure the first and second magnetic assemblies from a closed configuration in which the magnetic assemblies are attracted to one another to an open configuration in which the magnetic assemblies are repelled from one another. Where the magnetic assemblies are coupled to respective sides of an aperture in a flexible substrate, operation of the actuator will tend to open and close the aperture.

Claims (28)

1. A closure comprising:

a first structural member having a first longitudinal axis, a second structural member having a second longitudinal axis, and an actuator mechanism, said actuator mechanism coupled to respective first ends of said first and second structural members;

said first structural member having a first plurality of magnets, said first plurality of magnets having respective magnetic polarities and respective magnetic axes disposed generally transverse to said first longitudinal axis, said respective magnetic polarities being disposed in alternating fashion along said first longitudinal axis;

said second structural member having a second plurality of magnets, said second plurality of magnets having respective magnetic polarities and respective magnetic axes disposed generally transverse to said second longitudinal axis, said respective magnetic polarities being disposed in alternating fashion along said second longitudinal axis;

said actuator mechanism including a body and a third structural member, said third structural member including a pivotal link, said third structural member being coupled to said body and to said first structural member so as, when under an actuating force, to urge said first structural member from a first spatial position into a second spatial position whereby said respective polarities of said first and second pluralities of magnets transition from respective states of mutual attraction to mutual opposition.

2. A closure as defined in claim 1 wherein said third structural member is coupled to said body and to said first structural member so as to translate said first structural member from a first spatial position into a second spatial position in a direction generally parallel to said first longitudinal axis.

3. A closure as defined in claim 1 wherein said third structural member is coupled to said body and to said first structural member so as to rotate said first structural member from a first spatial position into a second spatial position in a generally rotational motion around said first longitudinal axis.

4. A closure as defined in claim 1 wherein said first plurality of magnets comprises a plurality of discrete magnets disposed within a discrete structural support member.

5. A closure as defined in claim 1 wherein said first plurality of magnets comprises a plurality of magnetized regions magnetized within an integral structural support member.

6. A closure as defined in claim 1 wherein said plurality of magnets comprises a plurality of discrete magnets coupled to one another in order to form said first structural member.

7. A closure as defined in claim 6 wherein said structural member comprises a plurality of separators disposed respectively between respective pairs of said plurality of discrete magnets.

8. A closure as defined in claim 7 wherein at least one of said plurality of separators comprises at least one elastomeric polymer material.

9. A closure as defined in claim 8 wherein at least one of said plurality of separators comprise at least one molded-in-place elastomeric polymer material.

10. A closure as defined in claim 7 wherein at least one of said plurality of separators comprises a universal joint.

11. A closure as defined in claim 7 wherein at least one of said plurality of separators comprises a generally helical coupling.

12. A closure as defined in claim 7 wherein at least one of said plurality of separators comprises an orienting ball joint.

13. A closure as defined in claim 7 wherein at least one of said plurality of separators comprises an orienting flange.

14. A closure as defined in claim 7 wherein said plurality of separators comprises any combination of one or more separator including an elastomeric polymer material, one or more separator including a molded-in-place elastomeric polymer material, one or more separator including a universal joint, one or more separator including a generally helical coupling, one or more separator including an orienting ball joint, and one or more separator including an orienting flange.

15. A closure as defined in claim 1 wherein said actuator mechanism further comprises an input pedal and an input shaft, said input shaft being operatively coupled between said input pedal and said third structural member, such that an external force applied to a surface region of said input pedal is coupled through said input shaft to said third structural member so as to apply said actuating force to said third structural member.

16. A closure as defined in claim 1 wherein said third structural member comprises a linear link.

17. A closure as defined in claim 1 wherein said third structural member comprises a pinion gear.

18. A closure as defined in claim 1 wherein said third structural member comprises a bell crank.

19. A closure device comprising:

a first structural member having a first longitudinal axis, a second structural member having a second longitudinal axis, and an actuator mechanism, said actuator mechanism coupled to respective first ends of said first and second structural members;

said first structural member having a first plurality of magnets, said first plurality of magnets having respective magnetic polarities and respective magnetic axes disposed generally transverse to said first longitudinal axis, said respective magnetic polarities being disposed in alternating fashion along said first longitudinal axis;

said second structural member having a second plurality of magnets, said second plurality of magnets having respective magnetic polarities and respective magnetic axes disposed generally transverse to said second longitudinal axis, said respective magnetic polarities being disposed in alternating fashion along said second longitudinal axis;

said actuator mechanism including a body and a third structural member, said third structural member being coupled to said body and to said first structural member so as, when under an actuating force, to urge said first structural member from a first spatial position into a second spatial position whereby said respective polarities of said first and second pluralities of magnets transition from respective states of mutual attraction to mutual opposition; and

wherein said first and second longitudinal axes define a plane therebetween, and wherein at least one of said first and second structural members includes at least one flexible element, said flexible element being adapted to allow said at least one structural member to flex preferentially in a direction of said plane.

Continuity (6)
Continuation In Part PCTUS2023010823 · Jan 13, 2023
Provisional Application 63569289 · Mar 25, 2024
Provisional Application 63433671 · Dec 19, 2022
Provisional Application 63299367 · Jan 13, 2022
Provisional Application 63299373 · Jan 13, 2022
Related Publication 20240365897A1 · Nov 7, 2024
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