Abstract:
A device is provided for controlling the closing movement of a sliding door. The device comprises a housing (10) containing a spring (11) which is actuable to provide a pulling force to the closing movement of the door. The housing (10) also contains a damper (12) which is actuable to impart a damped resistive force to the closing movement of the door. Incorporated within the device is a gearing mechanism for converting the rate of the closing movement of the door into two or more rates of actuation of the damper over at least part of the door's travel.
Abstract:
A door or window hinge has a housing having a back wall facing in a predetermined direction and a side wall extending in the direction from the back wall. A rack fixed to the side wall and extending in the direction meshes with a sector gear fixed to an inner end of a hinge body and formed as a partial ellipse having a semimajor axis. The inner body end can rotate in the housing about an axis perpendicular to the direction and slides in the guide in the direction between a closed position with a stop face of the inner end bearing on the back wall and an open position with the inner end spaced in the direction from the back wall. The sector gear is oriented on the inner end such that in the closed position the semimajor axis extends substantially perpendicular to the direction.
Abstract:
A hinge has two housings adapted to be recessed in a door frame and a door edge and a link assembly extending between the housings and having ends pivoted in the housings. A vertically shiftable support body in one of the housings has a row of teeth extending horizontally in a first direction. A bearing block sitting on the support body forms a pivot for the respective end of the link assembly. A screw extending through the bearing block and threaded into the support body is tightenable to bear on and fix the bearing block on the support body. A gear captured in the seat of the bearing block meshes with the row of teeth and is rotatable to shift the bearing block on the support body in the first horizontal direction in an untightened condition of the screw.
Abstract:
A window frame comprising a plurality of elongate frame members defining a frame opening for receiving a window for closing the frame opening. At least one of the elongate frame members having a longitudinally extending recess; and a slide mechanism received within the recess, wherein the slide mechanism comprises a first track fixed within the recess and a second track movable within and along the recess and coupled to the first track via a rotary coupling member such that movement of second track along the recess causes the rotary coupling member to rotate, wherein the second track is arranged to be coupled to the window when the window is received within the frame opening to enable the window to slide relative to the frame.
Abstract:
A vehicle door is operated in accordance with a desired speed pattern.A vehicle door opening-closing control device 1 includes a power-supply voltage detecting unit 2 that outputs a detection value of a power-supply voltage of an electric motor 13, a reference control pattern storage unit 3 that stores a reference control pattern that indicates a voltage command value or a speed command value for the electric motor 13, the reference control pattern is a control pattern of the electric motor when the detection value is within a predetermined range, a control pattern generating unit 4a that generates a corrected control pattern that is obtained by correcting the reference control pattern based on the detection value, and a PWM control unit 4 that controls the electric motor 13 based on the corrected control pattern.
Abstract:
A method of motorized movement of a vehicle door, wherein the vehicle door can be moved from an open position to a closed position as part of a closing process with a door drive mechanism associated with the vehicle door and a control system. In a first section of the closing process the vehicle door is moved by the door drive mechanism from the open position to a comfortable open position that lies between the open position and the closed position. In a second section of the closing process, the vehicle door is further moved from the comfortable open position in the closing direction, preferably to the closed position, manually by the user and largely free of the door drive mechanism.
Abstract:
A linear actuator, particularly for sliding doors and for sliding doors and windows in general, comprising a supporting body, to be fixed by corresponding fixing elements between the two jambs of a door or of a door or window frame, motor drive elements being accommodated and fixed within the supporting body and being adapted for the rotation of a driving gear, which is intended to mesh with a driven rack, which in turn is fixed to a leaf of the door to be moved in translation.
Abstract:
A door hinge for a household appliance, the household appliance including a body and a door, the door being movable about a horizontal axis between a substantially vertical closed position and a substantially horizontal opened position. The door hinge includes a housing couplable to the body, a door lever pivotably mountable on the door for movement about a main shaft, a weight compensating spring and a closing spring. The weight compensating spring holds the door substantially in a position of equilibrium when the door is opened and the closing spring applies a self-closing force shortly before the door reaches the closed position and applies a closure maintaining force when the door reaches the closed position. Further included is a dampening device that counteracts one or both of a closing force and an opening force.
Abstract:
A linear gate drive assembly with a drive rail connectable to a gate panel. A linear drive portion having a toothed drive surface is coupled to a first drive surface of the drive rail and has teeth thereon with a first rolling tooth profile. A drive wheel is attached to one drive motor and engages the first drive surface to impart an axial drive force on the drive rail. Another drive wheel is attached to another drive motor and engages the second drive surface. The second drive wheel has teeth that mate with the first teeth and that define another rolling tooth profile corresponding to the first rolling tooth profile. Rotation of the second drive wheel imparts axial and normal forces via a rolling teeth interface for moving the drive rail and the gate panel.
Abstract:
The present invention relates to an oven door opening and closing device comprising at least one hinge, which is connectable to an oven door and to an oven housing for realizing a predetermined pivoting opening and closing movement of the oven door relative to the oven housing between an open and a closed position; at least one closing force generating means for generating a predetermined closing force; kinematic means, which are coupled to the hinge and to a moveable element in such a manner, that the predetermined pivoting opening and closing movement of the hinge is converted into a predetermined reciprocating opening and closing movement of the moveable element; and at least one damping system having a damper for generating a damping force which counteracts the closing movement of the movable element within a predetermined section, which corresponds to a predetermined angle section of the pivoting closing movement of the hinge shortly prior to the closed position.