Abstract:
A damping device for damping motion of a movably mounted furniture part or of a movably mounted furniture fitting component of a furniture fitting includes a piston arranged in a fluid chamber. A damping effect is caused by a relative motion between the fluid chamber and the piston and the piston assumes a pressed-in end position relative to the fluid chamber at the end of the damping stroke. The damping device has a locking device having a locking element that can be operated manually or by a tool in order to deactivate the damping effect. The relative position between the fluid chamber and the piston can be releasably locked in the pressed-in end position by the locking element of the locking device.
Abstract:
A furniture hinge includes a fitting part and a hinge cup that is pivotably connected thereto by way of at least one articulated lever. The articulated lever is connected to the hinge cup by way of an articulated axis (A). A cushioning apparatus can be actuated by an actuating element and is provided to cushion a relative movement between the fitting part and the hinge cup. The actuating element is mounted inside the hinge cup rotatably about a rotational axis (S) extending substantially parallel to the articulated axis (A) of the hinge cup, and the cushioning apparatus includes at least one linear cushioning member having at least one linearly displaceable plunger. A transmission mechanism converts a rotary movement of the actuating element into a linear movement of the plunger of the linear cushioning member.
Abstract:
A deceleration device comprises a cylindrical container (14) housing at least one friction disc (16) against at least an internal wall of the cylindrical container (14), and a movable cursor (18), actuated by an external element, for the actuation of the friction disc (16), the friction disc (16) being bound to the cylindrical container (14) through constraint means which permit a roto-translational motion in order to acquire a further sliding contact surface in addition to the internal wall of the cylindrical container (14) at the end of the initial translation phase of the cursor (18) in which the friction disc (16) is subjected to a mainly or completely translational motion.
Abstract:
The hinge (1) for furniture comprises at least one deceleration device attached to the outside of the hinge box (4), an actuating lever (12) for the deceleration device, supported in oscillating fashion in the hinge box (4), and elastic return means to bring the actuating lever (12) back to an initial position, the deceleration device comprising a housing body (15) which extends peripherally along a side wall (9) of the box (4) and has means for fixing it to the side wall (9), the elastic return means being located on the housing body (15) outside the box (4) and providing at least one elastic arm (16) which protrudes into the inside of the box (4) through an aperture (17) in the side wall (9) of the box (4) to connect operatively with the actuating lever (12).
Abstract:
A carrier for a window sash having an actuatable friction adjuster. The friction adjuster has a carrier interface that interacts with a mating friction adjuster interface of the carrier such that the actuation of the friction adjuster by rotating it within an oblong slot in the carrier causes the carrier interface to interact with the friction adjuster interface and forces a rear portion of the friction adjuster into progressively increasing frictional contact with an adjacent portion of a window frame sash channel.
Abstract:
A damper includes a housing, a hollow outer rotor provided inside the housing, an inner rotor disposed inside the outer rotor to constitute a plurality of liquid chambers and rotating in a state decentered relative to an axial core of the outer rotor, a communicating passage connecting between the liquid chambers, and a valve mechanism moving inside the communicating passage. Viscous fluid is filled between the outer rotor and the inner rotor. When the pressure inside the communicating passage reaches a predetermined value or above due to the rotation of the inner rotor, the communicating passage is closed or a flow passage area of they communicating passage is narrowed, and when the pressure inside the communicating passage falls to the predetermined value or less, the communicating passage is opened.
Abstract:
A rotation control device is configured so that a spring force of a torsion coil spring holds an attitude of a rotation body at a pre-advancement position corresponding to a post-return position (a), and a post-advancement position corresponding to a pre-return position (b), respectively. The rotation control device includes a first rotation part supporting one end of the torsion coil spring and supported on a fixed body so as to rotate as the rotation body rotates, and a second rotation part rotatably supported on the fixed body at a first rotation part side and supporting the other end of the torsion coil spring. When the first rotation part rotates, the second rotation part rotates together with the first rotation part. A wound portion of the torsion coil spring is most elastically deformed when the rotation body is at an intermediate position (c) between the position (a) and the position (b).
Abstract:
The present invention relates to a refrigerator and/or freezer with a door or flap for closing the appliance interior, with a hinge, by means of which the door or flap can be swivelled relative to the body of the appliance, wherein the hinge includes means for producing a closing force acting in closing direction of the door or flap, and with a damper which at least over a part of the closing movement of the door or flap applies a force directed against the closing movement of the door or flap, wherein the means for producing a closing force include an eccentric and means which exert a force that acts on the eccentric and is dependent on the opening angle of the door or flap.
Abstract:
A hinge assembly includes a sleeve, a rotation shaft, and a sealing subassembly. The rotation shaft is partially received in the sleeve. The sealing subassembly seals the sleeve. The sleeve defines a pivot hole, and an inner side wall defining the pivot hole defines a restricting portion. The rotation shaft has a shaft portion and a buffer portion extending from a side wall of the shaft portion. The shaft portion is received in the pivot hole of the sleeve, and the buffer portion is received in the restricting portion of the sleeve. Damping oil is used between the inside of the sleeve and the rotation shaft.
Abstract:
Provided is a damper position adjusting device capable of adjusting a damping force over a wide adjustment range and facilitating the adjustment work of the position of the damper. The damper position adjusting device has a damper base 38 for storing a plurality of dampers 32 in parallel to each other, each of the dampers 32 having a rod 32a that moves relative to a cylinder 32b; and a damper adjusting shaft 40 which is mounted rotatable in the damper base 38 and has a side wall 44 in contact with ends of the dampers 32 in a moving direction. By rotating the damper adjusting shaft 40, the side wall of the damper adjusting shaft 40 pushes at least one of the dampers 32 out in the moving direction of the rod 32a to change a position of the damper 32 relative to the damper base.