Abstract:
A door closer, comprising a door closer housing mounted to one of a door frame or a door surface and a linkage arm for pivoting the door between open and closed positions. The linkage arm has a first and second end, the first end mounted to the other of the door frame or the door surface. The door closer includes a rotatable connector between the linkage arm and the door closer housing, the linkage arm second end engaging with the rotatable connector. The connector has a rotatable body portion and head protrusion substantially secured in a female receptor to transmit rotation about a longitudinal axis of the connector. One or both of the head protrusion or female receptor has a curved profile and is further movable with respect to the head protrusion to permit limited rotational misalignment of the linkage arm on any axis perpendicular to the connector longitudinal axis.
Abstract:
This top hung door assembly (10) for a merchandiser includes a pair of doors 12, 14 each having an upper frame member (20) including a metal reinforcing member (22). An upper track member (16) is provided including depending flange members (36) and (38) each having a roller mounting portion (48). A pair of spaced wheel assemblies (60) is provided including a bracket (50) having a lower portion (54) connected to the upper door frame and an upper portion (52) carrying a pair of rollers (60) received by the roller mounting portion (46). The upper track member (16) includes associate track members (46) having spaced notches (49) to facilitate mounting the doors. Also the flange members have flexible tips (44) facilitating the sealing and mounting of the doors.
Abstract:
The present invention essentially comprises an overhead door backup spring system and method for providing an auxiliary spring counterweight to operate an overhead door shaft upon failure of a spring. The system has an activation unit, an engagement unit operably associated with the activation unit, and an auxiliary spring engagement unit operably associated with the engagement unit and an auxiliary spring. The engagement unit is engageable with the auxiliary spring to transfer torque from the auxiliary spring to the overhead door shaft. In an engaged position the engagement unit is engaged with the auxiliary spring engagement unit upon operation of the activation unit when the spring fails. In a non-engaged position the engagement unit is in non-engagement with the auxiliary spring engagement unit.
Abstract:
A synchronizing device for a movably mounted furniture part synchronizes a movement between at least two adjusting devices via a synchronizing rod. The synchronizing rod has at least two sub-shafts between which an overload protection device is arranged, and the overload protection device can release a relative rotational movement between the two sub-shafts when a specified holding torque between the two sub-shafts is exceeded.
Abstract:
The present invention essentially comprises an overhead door backup spring system for providing an auxiliary spring counterweight to operate an overhead door shaft upon failure of a spring. The system has an activation unit, a control assembly, an engagement assembly operably associated with the activation unit, and an auxiliary spring engagement assembly operably associated with the control and engagement assemblies. The control assembly has an engagement block engageable with a spring post of the auxiliary spring assembly. The engagement assembly has an engagement post engageable with the spring post to transfer torque from the auxiliary spring to the overhead door shaft. An engaged position has the engagement post not engaged with the spring posts while the engagement block is engaged with the spring post. A non-engaged position has the engagement post engaged with the spring post, and the engagement block not engaged with the spring post.
Abstract:
In an aspect, a lifter plate is provided that is capable of a relatively strong connection to a vehicle window. The lifter plate includes a lifter plate body including a first side wall and a second side wall configured to receive a vehicle window therebetween, a window holding member positionable in a locking position to prevent the withdrawal of the vehicle window from between the first and second side walls, and a locking member positioned to prevent the movement of the window holding member out of the locking position in the event of a force urging the withdrawal of the vehicle window from between first and second side walls.
Abstract:
An output shaft, to which the rotational force of a motor is transmitted, is rotatably supported and housed in a case. One end of the output shaft protrudes from the case, and a pinion gear is provided on this one end. Teeth that mesh with the pinion gear are provided on the outer circumferential surface of cables. A guide member for guiding the cables in such a way that they mesh with the pinion gear is mounted on the case. An urging plate portion that presses against the side of the pinion gear is provided on the guide member. The urging plate portion urges the output shaft in the axial direction and, as a result, rattle of the output shaft is alleviated.
Abstract:
In an aspect, a lifter plate is provided that is capable of a relatively strong connection to a vehicle window. The lifter plate includes a lifter plate body including a first side wall and a second side wall configured to receive a vehicle window therebetween, a window holding member positionable in a locking position to prevent the withdrawal of the vehicle window from between the first and second side walls, and a locking member positioned to prevent the movement of the window holding member out of the locking position in the event of a force urging the withdrawal of the vehicle window from between first and second side walls.