Abstract: An actuating arm drive for a pivotably mounted actuating arm, in particular for driving a flap of a piece of furniture, includes a plurality of articulatedly interconnected levers. A first lever and a second lever of the actuating arm drive are arranged parallel to one another with a lateral spacing, and the levers each have two axial bores with a first standard spacing, through each of which bores an axial pin projects. A third lever has receptacles for the axial pins with a second standard spacing, and the second standard spacing is different than the first standard spacing. The axial pins each project through the axial bores of the first and second lever and are at least partially received in the receptacles of the third lever.
Abstract: A guide system for guiding a movably mounted furniture part, in particular a folding or folding-sliding door, includes a longitudinal guide rail, at least one guide device via which the furniture part is movable in a longitudinal direction along the longitudinal guide rail, and at least one support on which the furniture part is mounted in an articulated manner. The at least one support is movable in a direction extending transversely to the longitudinal direction of the longitudinal guide rail, and the at least one support has a receiver for receiving the guide device and the support is movable in the mounted position into a transfer position in which the receiver is arranged adjacent to the longitudinal guide rail. A compensation device compensates for a height difference between the receiving device and the longitudinal guide rail is provided.
Type:
Grant
Filed:
July 11, 2019
Date of Patent:
December 29, 2020
Assignee:
JULIUS BLUM GMBH
Inventors:
Matthias Rupp, Christian Hauer, Hermann Haemmerle, Ingo Gasser
Abstract: A drawer wall includes a shell with an opening arranged on a shell surface of the drawer wall, a movably supported cover portion which covers the opening in a closed position and unblocks the opening in an open position, and a spring element by which the cover portion is pre-stressed in an operating (closing) direction of the spring element toward the closed position. The cover portion is arranged so as to be stationary in a direction parallel to the shell surface, and is movably supported in a direction approximately perpendicular to the shell surface against the operating direction of the spring element, and the cover portion is arranged within the shell of the drawer wall in all operating positions.
Abstract: A drive device for a movable furniture part includes a first lockable ejection device and a second lockable ejection device for ejecting the movable furniture part out of a closed position into an open position. The first ejection device has a first locking device and the second ejection device has a second locking device. The first locking device and the second locking device each have a locking position and an unlocking position. The first locking device and the second locking device are movable between the respective locking position and the respective unlocking position by rotational movement of a respective first component relative to a respective second component about a rotational axis oriented parallel to the longitudinal axis of the first ejection device and the second ejection device. A synchronizing device for synchronizing the first locking device and the second locking device.
Abstract: An ejection device includes an ejection element for spreading apart a folding door from a closed position. At least two door wings are arranged in a common closing plane, towards an open position, and the at least two door wings form an angle different from 180° relative to each other. The ejection element can be acted upon by an energy storage member to be manually loaded by an operator, and the ejection device includes a locking device for releasably locking the ejection element against the force of the loaded energy storage member. The locking device can be unlocked by applying pressure to the folding door. The ejection device includes a movably-mounted loading element for loading the energy storage member by folding together the folding door. The ejection element and the loading element are spatially separated constructional units, and the ejection element is a pivotally mounted ejection lever.