IP Library › Granted Patent US 11,105,135
Granted Patent B2
US 11,105,135 · App. 16/532,159 · Granted Aug 31, 2021

Hydraulic door closer with fluid overflow chamber

Inventor: Michael W. Kondratuk (Brookings, SD)
Assignee: Larson Manufacturing Company of South Dakota, LLC
E05F3/102E05F3/12E05Y2201/474E05Y2900/132
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 11,105,135
App. No.
16/532,159
Granted
Aug 31, 2021
Kind
B2
Abstract

This disclosure is generally directed to a hydraulic door closer, and more specifically is directed to a hydraulic storm or screen door closer that has a fluid overflow chamber providing fluid volume and pressure control for both expanded and contracted fluid at different temperatures. The disclosed hydraulic door closer comprises a fluid overflow chamber adapted to hold sufficient fluid to maintain required operating fluid or oil levels at different temperatures, and to ensure proper closer performance under both extreme high and low temperature conditions.

Claims (27)

1. A door closer comprising fluid in a housing fitted with a biasing spring in operative communication with a closer piston, and an overflow chamber piston positioned at least partially within a vertical fluid overflow chamber, wherein the overflow chamber piston is biased when the fluid volume changes.

2. The door closer of claim 1 , wherein the door closer is a hydraulic door closer comprising hydraulic fluid in the housing.

3. The door closer of claim 1 , wherein the overflow chamber piston is selected from the group consisting of: a piston with a separate seal, a piston closely fitted to the vertical fluid overflow chamber, a piston having a first portion composed of a first durometer and a second portion composed of a second durometer that operates as an overflow chamber piston seal, and a piston composed of a single durometer.

4. The door closer of claim 3 , wherein the overflow chamber piston is configured to contact and slide within the vertical fluid overflow chamber such that the overflow chamber piston seals to the vertical fluid overflow chamber.

5. The door closer of claim 3 , wherein the overflow chamber piston is biased by an overflow biasing spring.

6. The door closer of claim 3 , wherein the overflow chamber piston is biased by a deformable material that is configured to return to its original shape and size after deformation.

7. The door closer of claim 3 , wherein the overflow chamber piston and the vertical fluid overflow chamber form a sealed compression chamber filled with a compressible fluid that biases the overflow chamber piston when the overflow chamber piston compresses the compressible fluid when the fluid is in an expanded state.

8. The door closer of claim 3 , wherein the overflow chamber piston is a gravity-biased overflow chamber piston, and wherein a gravitational force biases the overflow chamber piston when the fluid is in an expanded state.

9. The door closer of claim 3 , wherein the overflow chamber piston creates a fluid tight seal that substantially prevents one or more fluids from bypassing the overflow chamber piston.

10. A door closer comprising fluid in a housing fitted with a biasing spring in operative communication with a closer piston, and an overflow chamber piston positioned at least partially within a horizontal fluid overflow chamber, wherein the overflow chamber piston is biased when the fluid volume changes.

11. The door closer of claim 10 , wherein the door closer is a hydraulic door closer comprising hydraulic fluid in the housing.

12. The door closer of claim 10 , wherein the overflow chamber piston is selected from the group consisting of: a piston with a separate seal, a piston closely fitted to the horizontal fluid overflow chamber, a piston having a first portion composed of a first durometer and a second portion composed of a second durometer that operates as an overflow chamber piston seal, and a piston composed of a single durometer.

13. The door closer of claim 12 , wherein the overflow chamber piston is biased by an overflow biasing spring.

14. The door closer of claim 12 , wherein the overflow chamber piston is biased by a deformable material that is configured to return to its original shape and size after deformation.

15. The door closer of claim 12 , wherein the overflow chamber piston and the horizontal fluid overflow chamber form a sealed compression chamber filled with a compressible fluid that biases the overflow chamber piston when the overflow chamber piston compresses the compressible fluid when the fluid is in an expanded state.

16. The door closer of claim 12 , wherein the overflow chamber piston creates a fluid tight seal that substantially prevents one or more fluids from bypassing the overflow chamber piston.

17. The door closer of claim 10 , wherein the overflow chamber piston is configured to contact and slide within the horizontal fluid overflow chamber such that the overflow chamber piston seals to the horizontal fluid overflow chamber.

18. A door closer comprising fluid in a housing fitted with a biasing spring in operative communication with a closer piston, and an overflow chamber piston positioned at least partially within an angled fluid overflow chamber, wherein the overflow chamber piston is biased when the fluid volume changes.

19. The door closer of claim 18 , wherein the door closer is a hydraulic door closer comprising hydraulic fluid in the housing.

20. The door closer of claim 18 , wherein the overflow chamber piston is selected from the group consisting of: a piston with a separate seal, a piston closely fitted to the angled fluid overflow chamber, a piston having a first portion composed of a first durometer and a second portion composed of a second durometer that operates as an overflow chamber piston seal, and a piston composed of a single durometer.

21. The door closer of claim 20 , wherein the overflow chamber piston is biased by an overflow biasing spring.

22. The door closer of claim 20 , wherein the overflow chamber piston is biased by a deformable material that is configured to return to its original shape and size after deformation.

23. The door closer of claim 20 , wherein the overflow chamber piston and the angled fluid overflow chamber form a sealed compression chamber filled with a compressible fluid that-biases the overflow chamber piston when the overflow chamber piston compresses the compressible fluid when the fluid is in an expanded state.

24. The door closer of claim 20 , wherein the overflow chamber piston is a gravity-biased overflow chamber piston, and wherein a gravitational force biases the overflow chamber piston when the fluid is in an expanded state.

25. The door closer of claim 20 , wherein the overflow chamber piston creates a fluid tight seal that substantially prevents one or more fluids from bypassing the overflow chamber piston.

26. The door closer of claim 18 , wherein the overflow chamber piston is configured to contact and slide within the angled fluid overflow chamber such that the overflow chamber piston seals to the angled fluid overflow chamber.

27. A door closer comprising fluid in a housing fitted with a biasing spring in operative communication with a closer piston, and an overflow piston positioned at least partially within a fluid overflow chamber, wherein the fluid overflow chamber has a predetermined volume sufficient to hold expanded fluid at an elevated temperature.

Assignments (1)
ENTITY CONVERSION Recorded Mar 12, 2021
From: LARSON MANUFACTURING COMPANY OF SOUTH DAKOTA, INC.
To: LARSON MANUFACTURING COMPANY OF SOUTH DAKOTA, LLC
Reel/Frame 055582/0362 →
Continuity (3)
Continuation In Part 15392070 · Dec 28, 2016
Provisional Application 62273759 · Dec 31, 2015
Related Publication 20190360251A1 · Nov 28, 2019