IP Library › Granted Patent US 10,662,690
Granted Patent B2
US 10,662,690 · App. 16/112,019 · Granted May 26, 2020

Actuating arm drive

Inventor: Philip Schluge (Dornbirn, AT)
Assignee: Julius Blum GmbH
E05F1/1253E05D15/401E05F1/1058E05F1/14E05Y2201/618E05Y2900/20
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Quick Facts
Patent No.
US 10,662,690
App. No.
16/112,019
Granted
May 26, 2020
Kind
B2
Abstract

An actuating arm drive for a pivotably mounted actuating arm includes a pivotably mounted main lever, a force accumulator for exerting a force for supporting the opening and/or closing movement of the actuating arm drive on the main lever at a force introduction point, and a setting device for setting the force introduction point on the main lever. The force is introduced to the main lever at the force introduction point via a force introduction element which is loaded by the force accumulator via levers, and the setting device is designed to move the force introduction element along a bearing contour formed on the main lever. In each pivoting position of the main lever between the open and closed position of the actuating arm drive, and in each setting of the setting device, the loaded force introduction element is forced along the bearing contour in the same direction.

Claims (26)

1. An actuating arm drive for moving a pivotably mounted actuating arm, the actuating arm drive comprising:

a pivotably mounted main lever,

an energy storage mechanism for exerting a force for supporting the opening and/or closing movement of the actuating arm drive on the main lever at a force-transmission point,

a setting device for setting the force-transmission point on the main lever, and

a force-transmission element to be loaded by the energy storage mechanism and configured to transmit the force to the main lever at the force-transmission point;

wherein the setting device is configured to adjust the force-transmission element along a bearing contour formed on the main lever, and

wherein the main lever, the setting device, and the force-transmission element are configured such that at least a component of the force transmitted by the loaded force-transmission element to the main lever is applied in the same direction along the bearing contour of the main lever in every pivot position of the main lever between the open position and the closed position of the actuating arm drive and in every setting of the setting device.

2. The actuating arm drive according to claim 1 , wherein the bearing contour is curved.

3. The actuating arm drive according to claim 2 , wherein the curvature of the bearing contour is constant.

4. The actuating arm drive according to claim 2 , wherein the bearing contour is concavely curved.

5. The actuating arm drive according to claim 2 , wherein the force-transmission element has a contour deviating from a cylindrical surface.

6. The actuating arm drive according to claim 5 , wherein the contour of the force-transmission element has a curvature corresponding to a curvature of the bearing contour.

7. The actuating arm drive according to claim 1 , wherein, in a pivot position of the main lever corresponding to the open position of the actuating arm drive in every setting of the setting device, a line of action of the force from the energy storage mechanism acting on the main lever forms an acute angle with the bearing contour.

8. The actuating arm drive according to claim 1 , wherein the bearing contour is formed at end faces of a profiled cross section of the main lever.

9. The actuating arm drive according to claim 1 , wherein the force-transmission element is formed as at least one of a profiled transverse pin, a roller, and a slide.

10. The actuating arm drive according to claim 1 , wherein the setting device is self-locking.

11. The actuating arm drive according to claim 1 , wherein the setting device has a transfer device configured to convert a setting movement of the setting device into a translational movement of the force-transmission element.

12. The actuating arm drive according to claim 11 , wherein the transfer device comprises a threaded spindle rotatably mounted on the main lever with a sliding block engaging in the threaded spindle, the sliding block being connected to the force-transmission element.

13. The actuating arm drive according to claim 12 , wherein the sliding block is mounted displaceably in a guideway formed in the main lever and is connected in an articulated manner to the force-transmission element via a connecting piece.

14. The actuating arm drive according to claim 12 , wherein the sliding block is mounted displaceably in the guideway so as to move in a substantially straight line.

15. The actuating arm drive according to claim 1 , wherein, in a pivot position of the main lever corresponding to the open position of the actuating arm drive, the force-transmission element is adjusted along the bearing contour substantially transversely to the line of action of the force from the energy storage mechanism acting on the main lever.

16. The actuating arm drive according to claim 1 , wherein, in a pivot position of the main lever corresponding to the closed position of the actuating arm drive, the line of action of the force from the energy storage mechanism acting on the main lever is in a direction relative to the pivot axis of the main lever such that the main lever is pushed into the closed position.

17. The actuating arm drive according to claim 1 , wherein the energy storage mechanism includes a spring.

18. A piece of furniture comprising a furniture carcass, the actuating arm drive according to claim 1 , and at least one flap.

19. The actuating arm drive according to claim 17 , wherein the spring is arranged lying down in the installed position of the housing.

20. The actuating arm drive according to claim 1 , further comprising a lever for loading the force-transmission element by the energy storage mechanism.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 24, 2018
From: SCHLUGE, PHILIP
To: JULIUS BLUM GMBH
Reel/Frame 046943/0862 →
Priority Claims (1)
AT A 50146/2016 · Feb 26, 2016 · national
Continuity (2)
Continuation PCTAT2017060043 · Feb 23, 2017
Related Publication 20180363348A1 · Dec 20, 2018
Cited By (8)
US 1,056,697 US 1,109,594 US 1,115,504 US 12,188,277 US 12,247,426 US 12,270,237 US 12,276,148 US 12,378,807