IP Library › Granted Patent US 11,549,296
Granted Patent B2
US 11,549,296 · App. 16/675,745 · Granted Jan 10, 2023

Temperature activated door spring

Inventors: J. D. Bucklin (Olympia, WA); Michelle Lynn Bucklin (Olympia, WA)
E05F1/006E05B65/104E05F1/1207Y10T16/22
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Quick Facts
Patent No.
US 11,549,296
App. No.
16/675,745
Granted
Jan 10, 2023
Kind
B2
Abstract

A temperature activated door spring device includes a spring having a coil with a contiguous upper arm and lower arm. The coil includes an inner hinge pin hole and has a circumferential edge sized to mount on the top of a hinge knuckle. A collar is affixed within the inner hinge pin hole wherein the inner hinge pin hole is encompassed by the collar sized to accept an inserted hinge pin. A pellet hole is located proximate an extended end of the upper arm, wherein the pellet hole is sized to accept a fusible pellet. An upper portion of the pellet hole traverses through the upper arm and a lower portion of the pellet hole traverses through the lower arm so that when a fusible pellet is inserted into the pellet hole it holds the upper arm and the lower arm together in a spring loaded position.

Claims (45)

1. A temperature activated door spring device comprising:

a spring having a coil, an upper arm and a lower arm contiguous with the coil;

the coil includes an inner hinge pin hole and has a circumferential edge sized to mount on the top of a hinge knuckle;

a collar affixed within the inner hinge pin hole wherein the inner hinge pin hole is encompassed by the collar and is sized to accept an inserted hinge pin;

a pellet hole located proximate an extended end of the upper arm, wherein the pellet hole is sized to accept a fusible pellet; and

wherein an upper portion of the pellet hole traverses through the upper arm and a lower portion of the pellet hole traverses through the lower arm so that when the fusible pellet is inserted into the pellet hole, while the upper arm and lower arm are aligned in a locking position, the fusible pellet holds the upper arm and the lower arm together in a spring loaded position.

2. The device of claim 1 further comprising:

a first bumper attached proximate an outer surface of the upper arm proximate the extended end; and

a second bumper attached to an outer surface of the lower arm.

3. The device of claim 1 wherein the upper arm and the lower arm are elongated in a direction generally at a right angle to a central axis projected through the center of the collar.

4. The device of claim 1 wherein the upper arm and the lower arm both include a shoulder to allow the upper and lower arms to substantially abut each other along their interior surfaces.

5. The device of claim 1 wherein the collar is sized with a diameter large enough to accept a hinge pin shaft, but smaller than a hinge pin top so that an inserted hinge pin is held from falling through the hinge pin hole.

6. A temperature activated door spring device comprising:

a spring having a coil, an upper arm and a lower arm contiguous with the coil;

the coil includes an inner hinge pin hole and has a circumferential edge sized to mount on the top of a hinge knuckle;

a collar affixed within the inner hinge pin hole wherein the inner hinge pin hole is encompassed by the collar and is sized to accept an inserted hinge pin;

a pellet hole located proximate an extended end of the upper arm; a fusible pellet inserted into the pellet hole; and

wherein an upper portion of the pellet hole traverses through the upper arm and a lower portion of the pellet hole traverses through the lower arm so that when the fusible pellet is inserted into the pellet hole, while the upper arm and lower arm are aligned in a locking position, the fusible pellet holds the upper arm and the lower arm together in a spring loaded position.

7. The device of claim 6 wherein the fusible pellet comprises a material with a melting point in the range of 107° F.-208° F.

8. The device of claim 6 wherein the fusible pellet is selected from the group consisting of an alloy of bismuth with lead and/or tin, Wood's metal, Rose's metal, Field's metal, an alloy of bismuth with lead, tin, indium, cadmium and/or thallium and combinations thereof.

9. The device of claim 6 further comprising:

a first bumper attached proximate an outer surface of the upper arm proximate the extended end; and

a second bumper attached to an outer surface of the lower arm.

10. The device of claim 6 wherein the upper arm and the lower arm are elongated in a direction generally at a right angle to a central axis projected through the center of the collar.

11. The device of claim 6 wherein the upper arm and the lower arm both include a shoulder to allow the upper and lower arms to substantially abut each other along their interior surfaces.

12. The device of claim 6 wherein the collar is sized with a diameter large enough to accept a hinge pin shaft, but smaller than a hinge pin top so that an inserted hinge pin is held from falling through the hinge pin hole.

13. The device of claim 6 further comprising a hinge pin inserted into the hinge pin hole.

14. A safety door system comprising:

a doorframe;

a door;

a plurality of hinges pivotally attaching the door to the doorframe, wherein the plurality of hinges each include a plurality of hinge knuckles;

a hinge pin;

a temperature activated door spring device including

a spring having a coil, an upper arm and a lower arm contiguous with the coil, wherein the coil includes an inner hinge pin hole and has a circumferential edge sized to mount on the top of a hinge knuckle,

a collar affixed within the inner hinge pin hole wherein the inner hinge pin hole is encompassed by the collar and is sized to accept the hinge pin, wherein the hinge pin is inserted into the inner hinge pin hole and a portion of the plurality of hinge knuckles so as to capture the temperature activated spring device between the door and the doorframe;

wherein an upper portion of a pellet hole traverses through the upper arm and a lower portion of the pellet hole traverses through the lower arm so that when a fusible pellet is inserted into the pellet hole, the fusible pellet holds the upper arm and the lower arm together in a spring loaded position; and

wherein upon ambient temperature reaching the melting temperature of the fusible pellet, the pellet melts thereby releasing the spring so that the upper arm and lower arm exert a force between the door and the doorframe so as to close the door.

15. The device of claim 14 wherein the fusible pellet comprises a material with a melting point in the range of 107° F.-208° F.

16. The device of claim 14 wherein the fusible pellet is selected from the group consisting of an alloy of bismuth with lead and/or tin, Wood's metal, Rose's metal, Field's metal, an alloy of bismuH1 with lead, tin, indium, cadmium and/or H1allium and combinations thereof.

17. The device of claim 14 further comprising:

a first bumper attached proximate an outer surface of the upper arm proximate the extended end; and

a second bumper attached to an outer surface of the lower arm.

18. The device of claim 14 wherein the upper arm and the lower arm are elongated in a direction generally at a right angle to a central axis projected through the center of the collar.

19. The device of claim 14 wherein the upper arm and the lower arm both include a shoulder to allow the upper and lower arms to substantially abut each other along their interior surfaces.

20. The device of claim 14 wherein the collar is sized with a diameter large enough to accept a shaft of the hinge pin, but smaller than a top of the hinge pin so that the hinge pin is held from falling through the hinge pin hole.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 8, 2022
From: BUCKLIN, J.D.; BUCKLIN, MICHELLE LYNN
To: UPTON VENTURES INC.
Reel/Frame 059657/0465 →
Continuity (2)
Provisional Application 62757038 · Nov 7, 2018
Related Publication 20200173213A1 · Jun 4, 2020
Cited By (2)
US 12,338,668 US 12,687,059