Abstract:
A system for managing opening and closing a pocket door includes a spindle, an actuator, and brackets. The spindle extends along a longitudinal axis between first and second ends, and is configured to be coupled to the pocket door. The actuator is coupled to the spindle and is configured to cause the spindle to move axially along the longitudinal axis. The brackets are connected to the spindle at each end and are constrained from longitudinal motion relative to the spindle. The brackets are configured to affix the spindle to the pocket door. A bushing system couples each bracket to the spindle and is configured to dampen impact between the spindle and the brackets. For example, the bushing system may include lobed elements, made of a rubber material, that engage each other to transmit azimuthal forces. In some embodiments, another actuator is included to improve cycle life and redundancy.
Abstract:
A closing hinge device includes a fixed element, a movable element and a pair of counteracting elastic members. One of the movable element or fixed element includes a generally box-shaped hinge body with a pair of working chambers to slidably house the counteracting elastic members. The other of the movable element or fixed element includes a pivot having a cylindrical portion that includes a pair of substantially equal grooves angularly spaced at 180° and each having a helical portion, the grooves communicating with each other to define a single guide element passing through the cylindrical portion. The box-shaped hinge body includes elongated slots, a pin being inserted through the single guide element and through the elongated slots to slide therethrough, and the counteracting elastic members act on the pin to promote the automatic returning of the closing element from the open position to the closed position.
Abstract:
A hinge device for rotatably moving a closing element includes a fixed element anchorable to a stationary support structure coupled to a movable element anchorable to the closing element for rotating around a first longitudinal axis between an open position and a closed position. The device further includes at least one slider movable along a second axis between a compressed and an extended position. One between the movable element and the fixed element includes at least one operating chamber defining the second axis so as to slidably house the slider, the other element including a pivot defining the first axis. The pivot and the slider are reciprocally coupled so that to the rotation of the movable element around the first axis corresponds the sliding of the slider along the second axis and vice versa.
Abstract:
An Anuba concealed hinge for rotatable moving a door, in particular a reinforced door, connected to a tubular support structure, which includes a rear counterframe anchored to a wall and a front frame anchored to the counterframe The hinge includes a lower fixed half-hinge and an upper movable half-hinge rotatably coupled to each other for rotating about a first longitudinal axis between an open position and a closed position. The lower fixed half-hinge includes a box-shaped hinge body to be concealedly inserted within the tubular support structure. The upper movable half-hinge includes a connecting plate connected to the door to extend from the tubular support structure in the open position and to concealedly retract within the tubular support structure in the closed position. The movable half-hinge includes a pivot defining the first axis unitarily connected to the connecting plate. The hinge body (11) includes a seat internally housing the pivot.
Abstract:
A hinge device for rotatably moving a closing element includes a fixed element anchorable to a stationary support structure coupled to a movable element anchorable to the closing element for rotating around a first longitudinal axis between an open position and a closed position. The device further includes at least one slider movable along a second axis between a compressed and an extended position. One between the movable element and the fixed element includes at least one operating chamber defining the second axis so as to slidably house the slider, the other element including a pivot defining the first axis. The pivot and the slider are reciprocally coupled so that to the rotation of the movable element around the first axis corresponds the sliding of the slider along the second axis and vice versa.
Abstract:
A hanger assembly for an architectural door or panel utilizes a head track connected to an overhead structural member with two concave tracks for receiving the convex wheel bearings which are attached to a hanger extending downwardly from the wheel bearings. The bottom of the hanger has a head which is inserted into a housing by way of an open groove. The housing is mounted to the frame of the door or panel. Rubber neoprene spacers are mounted between the head and the housing to adjust the vertical height of the door or panel relative to the head track and structural member. Additional wheel bearings may be added to the hanger as is necessary.
Abstract:
The invention relates to a jack (4) for moving a movable panel of a vehicle, including: a endless screw and nut assembly (14) defining an axis (22); a bearing (20) in which an element (14) selected from the nut and the screw, for example the latter, is rotatably mounted; and a tensioner (60) which is force-tilted onto the element or onto the hearing and which biases the latter by means of mutual axial bearing when the jack is inoperative.
Abstract:
A drive device for opening or closing a leaf of a door, a window or similar includes a housing and a closing spring, which is located in the housing and acts upon a piston, the latter co-operating with a closing shaft in the housing by means of gearing, The piston and housing are made of injection molded polyoxymethylene plastic (POM).
Abstract:
A linear guidance system including a guide rail (1) and a carriage (2) which is guided displaceably on the guide rail by way of at least two ball bearings (3, 3′), wherein the ball bearings respectively comprise a plurality of balls (4) and a ball cage (5) and the guide rail (1) has running surfaces (9, 9′) and the carriage (2) has running surfaces (10, 10′) for the rolling movement of the balls (4) of the ball bearings (3, 3′), wherein the carriage (2) includes a profile member (11) which is substantially C-shaped in cross-section, wherein the running surfaces (10, 10′) are provided at the respective end portions (11′, 11″) of the C-shaped profile member (11) and the carriage (2) further includes a plate (12) which extends between the end portions (11′, 11″) of the C-shaped profile member (11) of the carriage (2) and is connected to said end portions (11′, 11″), forming a closed hollow profile.
Abstract:
There is provided an improved connecting member for use in connecting a sash support arm and a sash arm in a hinge assembly for a casement window, the connecting member having a cylindrical stud portion which extends through a sash arm cylindrical aperture and a cylindrical shaft extending from the cylindrical stud portion, the cylindrical shaft being eccentric with respect to the stud portion and extending through to a sash support arm opening, the cylindrical shaft having a recess formed therein designed to receive a tool to prevent rotational movement of the connecting member to thereby permit change of a sash support arm pivot access.