IP Library › Granted Patent US 12,557,909
Granted Patent B1
US 12,557,909 · App. 18/281,598 · Granted Feb 24, 2026

Motion arrangement

Inventor: Ulrich Bantle (Mannheim, DE)
Assignee: Titus d.o.o. Dekani
A47B88/463E05F1/10E05F1/16
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Quick Facts
Patent No.
US 12,557,909
App. No.
18/281,598
Granted
Feb 24, 2026
Kind
B1
Abstract

The invention relates to a motion arrangement ( 10 ), in particular for a drawer, a sliding door, a hinged door, a flap or similar movable furniture part, having a push-out arrangement, wherein the push-out arrangement comprises a guide element ( 40 ), on which an energy accumulator ( 90 ) acts and which is guided on or in a fitting part, in particular on or in a housing ( 30 ), wherein the energy accumulator ( 90 ) can be used to displace the guide element ( 40 ) from a park position into an ejecting position, and wherein the guide element ( 40 ) entrains a slider ( 70 ) from the park position into the ejecting position at least along part of its travel path. To be able to individualize such a motion arrangement ( 10 ) in a simple manner with regard to its ejection path, according to the invention provision is made for the guide element ( 40 ) to be connected to the slider ( 70 ) in the park position directly or via at least one adapter ( 77 ) by means of a detachable connection.

Claims (50)

1 . A motion arrangement for a movable furniture part, comprising:

a housing;

a push-out arrangement including a guide element;

an energy accumulator guided on or in the housing and configured to displace the guide element relative to the housing along a travel path from a park position to an ejecting position;

a slider arranged to be entrained by the guide element along at least part of the travel path, and the slider being arranged such that the slider can be swiveled into a tilted position;

at least one adapter;

wherein the guide element is connected to the slider in the park position directly or indirectly by a first detachable connection; and

wherein the guide element, the adapter and the slider are configured such that in a first mode of use in which the adapter is installed, the slider can be detachably connected to the guide element indirectly by the adapter, and in a second mode of use in which no adapter is installed, the guide element can be detachably connected directly to the slider.

2 . The motion arrangement of claim 1 , wherein:

in the first mode of use the first detachable connection is formed between the guide element and the adapter by at least one first retaining element and an attachment mount, such that the first detachable connection is detachable in a direction of motion of the adapter along the travel path.

3 . The motion arrangement of claim 2 , wherein:

in the first mode of use the first retaining element forms a snap element and the attachment mount forms a snap mount, such that the snap element and the snap mount form a snap connection.

4 . The motion arrangement of claim 2 , wherein:

in the first mode of use a second detachable connection is formed between the adapter and the slider by at least one second retaining element and a retaining mount, such that the second detachable connection is detachable in a direction of motion of the adapter along the travel path.

5 . The motion arrangement of claim 4 , wherein:

in the first mode of use the second retaining element forms a snap element and the retaining mount forms a snap mount, such that the snap element and the snap mount form a snap connection.

6 . The motion arrangement of claim 4 , wherein:

in the first mode of use the first detachable connection between the guide element and the adapter has a lower holding force in the direction of the travel path from the park position towards the ejecting position than a holding force of the second detachable connection between the adapter and the slider in the direction of the travel path from the park position towards the ejecting position.

7 . The motion arrangement of claim 1 , wherein:

in the first mode of use the adapter is connected to the slider in a swiveling manner about a swivel axis extending transversely to the travel path.

8 . The motion arrangement of claim 1 , wherein:

in the first mode of use the adapter includes at least one guide piece guided linearly on a guide section in or on the housing.

9 . The motion arrangement of claim 8 , wherein:

in the first mode of use the slider includes at least one further guide piece guided in or on the guide section in or on which the guide piece of the adapter is also guided.

10 . The motion arrangement of claim 1 , wherein:

in the first mode of use the adapter includes a first connection point connected to the guide element and a second connection point connected to the slider, and the adapter includes a connection section integrally interconnecting the first and second connection points.

11 . The motion arrangement of claim 1 , wherein:

the slider includes a base part and two stops disposed on the base part and spaced apart from one another to provide a driver mount between the two stops, wherein at least one of the stops is coupled to the base part by a spring element.

12 . The motion arrangement of claim 1 , further comprising:

a first contact piece connected to the guide element, the first contact piece including a guide neck;

wherein the housing includes a holding section; and

wherein in the park position the guide neck is in a locked position locked to the holding section;

wherein the locked position can be unlocked by applying an overtravel to the guide element; and

wherein the spring element is configured to accelerate the guide element towards the ejecting position when the locked position is unlocked.

13 . The motion arrangement of claim 12 , further comprising:

a second contact piece connected to the guide element; and

wherein the housing further includes a return guide and the second contact piece is guided along the return guide along at least a portion of the travel path from the park position towards the ejecting position.

14 . The motion arrangement of claim 13 , wherein:

the housing further includes a longitudinal guide and a first transition section communicating the return guide and the longitudinal guide; and

further including an actuator disposed in the first transition section, and a deflection spring preloading the actuator such that the actuator moves the second contact piece from the return guide into the longitudinal guide via the first transition section.

15 . The motion arrangement of claim 14 , wherein:

the housing further includes a second transition section communicating the return guide and the longitudinal guide, the second transition section including an abutment surface disposed such that the second contact piece bears against the abutment surface in a self-locking shift position.

16 . The motion arrangement of claim 15 , further comprising:

an adjustable securing element including a stop; and

wherein the second contact piece includes a counter stop configured such that in the self-locking shift position, the counter stop bears against the stop of the adjustable securing element in a self-locking manner.

17 . The motion arrangement of claim 1 , further comprising:

a pull-in device, wherein the push-out arrangement and the pull-in device are combined on a single component of the motion arrangement.

18 . The motion arrangement of claim 1 , further comprising:

a pull-in device, wherein one of the push-out arrangement and the pull-in device is configured to be mounted on the movable furniture part and the other of the push-out arrangement and the pull-in device is configured to be mounted on another furniture part; and

a driver configured to be connected to the pull-in device.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 10, 2023
From: BANTLE, ULRICH
To: TITUS D.O.O. DEKANI
Reel/Frame 065537/0216 →
Priority Claims (1)
DE 10 2021 106 384.1 · Mar 16, 2021 · national
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