Abstract:
A rotary damper has a damper body having a receiving portion, and a rotor rotatably disposed in the receiving portion of the damper body. A space between an inner circumferential surface of the receiving portion and an outer circumferential surface of the rotor is divided into a plurality of pressure chambers. A rotation speed of the rotor is controlled to be at a low speed by a flow resistance of fluid filled in each of the pressure chambers when the fluid flows through gaps between an inner surface of the receiving portion and an outer surface of the rotor opposed to each other in a direction of a rotation axis of the rotor. The damper body and the rotor are relatively movable in the direction of the rotation axis of the rotor.
Abstract:
A hinge assembly is provided comprising a toggle type hinge (10) with a linear damping device (13) arranged with its longitudinal axis parallel to the axis of movement of the hinge. First and second actuating devices (19, 30) are provided for operating the damping device. Means (20, 32, 55) are provided for activating the first and second actuating devices in response to movement of the hinge.
Abstract:
A hydraulic hinge buffer assembly for a door has a fastening device, a buffering device and a clamping device. The fastening device has a holding mount and a pivot block. The buffering device is mounted in the fastening device and has a pivot pin and a piston element. The pivot pin has an abutting face and at least one holding hook. The piston element is mounted between the holding mount and the pivot pin and has a pushing piston. The pushing piston has a pressing face selectively abutting the abutting face and at least one engaging hook axially formed on and protruding from the pressing face and engaging with the at least one holding hook. The clamping device is connected to the buffering device to rotate relative to the fastening device and has two clamping panels.
Abstract:
A damping mechanism has a housing body defining a cavity with a central axis, a threaded section disposed with female threads revolving about the central axis and a smooth section; a rotating shaft inserted into the cavity; and a piston, wherein the piston comprises a threaded section disposed with male threads revolving about the central axis and a piston head. The threaded section of the cavity and the threaded section of the piston constitute a screw-on fit relationship between the female and male threads. The piston head is clearance-fitted or seal-fitted with the smooth section of the cavity. An axial hole section of the piston is clearance-fitted or seal-fitted with the rotating shaft. The rotating shaft is provided with a radially outwardly-opening and axially-extending oiling slot on the sliding path of the piston head while the depth and/or width of the oiling slot changes gradually.
Abstract:
A hinge (10) for mounting a door (14) on a piece of furniture, comprising a hinge arm (12) fixable to a fixed part (11) of the piece of furniture and a box (13) fixable to a door (14) of the piece of furniture, swingably connected to each other; the hinge further comprises a linear-type decelerating device (22) arranged inside the box (13), having a fluid-type decelerating cylinder (23) and return spring means (24), operatively connected with each other, which extend parallel to and spaced apart from each other. The fluid-type decelerating cylinder (23) is arranged in proximity to a side wall (18′) of the box (13) and the return spring means (24) are arranged in proximity to the opposite side wall (18″) of the box (13).
Abstract:
A door closer assembly is provided, including a valve regulating an amount of hydraulic fluid that flows through the valve. The amount of hydraulic fluid flowing through the valve controls a force generated by the door closer assembly on a door. A first sensor measures an angular position of the door, and a second sensor measures an angular position of the valve. The angular position of the valve determines the amount of hydraulic fluid flowing through the valve. A controller controls the adjustment of the valve based on the angular position of the door and the angular position of the valve.
Abstract:
The invention relates to a damping device for movable furniture part, comprising:—a damper housing,—a fluid chamber which is arranged in the damper housing and in which a piston is movably mounted,—a tappet which is connected to the piston, at least one seal being arranged between the damper housing and the tappet in order to seal the fluid chamber, wherein the tappet passes through the seal,—a compensating chamber which is fluidically connected to the fluid chamber, which runs laterally parallel to the fluid chamber, and in which at least one deformable compensating body is arranged in order to compensate for a volume change due to the tappet being immersed into the fluid chamber, said deformable compensating body and the at least one seal being designed together as a single piece.
Abstract:
A rotary damper has a cylindrical housing. A rotor is rotatably supported inside the housing for rotation with respect to the housing by a first bearing and a second bearing. The second bearing has a greater length in the axial direction of the rotor than the first bearing. The rotary damper can be employed in an opening and closing mechanism for a vehicle door.
Abstract:
A door closing mechanism which includes a hydraulic rotation damper, having a closed cylinder cavity within a cylinder barrel, a rotational damper shaft which extends into the cylinder cavity, a piston dividing the cylinder cavity into a first side above the piston and a second side below the piston, a one-way valve allowing fluid flow from said first side to said second side of the cylinder cavity, and a fluid passage between said first and second sides of the cylinder cavity, with a flow restrictor, in particular in the form of a needle valve, adjustable through an orifice in the cylinder barrel, wherein said second side of the cylinder cavity and said orifice are at opposite sides of the flow restrictor.
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.