Abstract:
In an acceleration and deceleration device which includes at least one energy storage device and a cylinder with at least one piston movably disposed in the cylinder and moved therein by a carrier element and a sliding door including a slidable door panel provided with an acceleration and deceleration device, a second carrier element is provided guiding either the first piston or the second piston for movement in the cylinder so as to control the movement of pistons and of the sliding door neat its end positions.
Abstract:
A hinge assembly is provided to mount a door to a housing, and includes a housing fixation section (1), a hinge cup (3) pivotally connected to the housing fixation section (1), and a damping mechanism (4) positioned entirely within the hinge cup (3) to dampen movement of the door as it closes on the housing.
Abstract:
A damping device includes a cylinder (11) in which a piston (10) is housed for reciprocable movement. The piston has a skirt (12) which expands resiliently outwardly when the piston is moved in the direction of arrow A to provide a frictional damping force. The interior of the cylinder is undercut at its distal end (13a) to allow the skirt to relax.
Abstract:
Disclosed are a door apparatus for a refrigerator and a damping apparatus for the same. The door apparatus for the refrigerator comprises: a main door for opening/closing the interior of a refrigerator, a sub-door for opening/closing the interior of the refrigerator through a portion of the main door, a sub-door frame disposed on the main door and supporting the sub-door, and a damper disposed at the sub-door frame to reduce an impact due to the pivotal movement of the sub-door. With a damping force required when the door is opened/closed and a more simplified structure of the door, a door design of higher tightness can be implemented.
Abstract:
A damping device includes a cylinder in which a resilient member and a piston are received. A cover assembly and a seal member seal the cylinder and damping medium is filled in the cylinder. The piston includes a piston body, a connecting portion connected with one end of the resilient member, and a neck portion connected between the piston body and the connecting portion. The piston body has an opening penetrating through the piston body. A control valve is movably mounted to the neck portion to control the opening during operation. A piston rod has one end connected with the piston body and another end extending out from the cylinder. A damping member is located between the piston and the cover assembly. The traveling velocity of the piston is controlled by the control valve to close or to open the opening through which the damping medium passes.
Abstract:
A catcher (2) provided in a door frame H′ for capturing a striker body 1 moved from a near front side F when a door D′ is rotated toward a reference position; a braking device (5); and a linkage device (3) for both are provided. The catcher (2) is provided to be reciprocatingly rotatable between a standby position and a rotated position, captures the striker body (1) at the standby position, and rotates forward to the rotated position. Braking of the braking device (5) is applied to a rotation toward the rotated position of the catcher (2) through the linkage gear member (30).
Abstract:
A device for preventing door slamming including a housing that has a bore formed therein, a control element that slides in the bore, the control element having a bore formed therein, a plunger that slides in and out of the bore of the control element, the plunger being biased against a distal end of the bore of the control element by a biasing device, and a stopper element received in the plunger and extending into the control element, wherein a slamming force applied on the plunger dislodges the stopper element from the plunger so that the stopper element becomes lodged in the control element and the housing, thereby preventing the control element from sliding in the bore of the housing.
Abstract:
A velocity reduction system for use in retractable screen door installations. A pneumatic cylinder is located within a moveable housing that is used to capture the leading edge of the screen material. The pneumatic cylinder contains a moveable weight that is fastened to the screen doorframe using a cable. Incorporated within the weight is a check valve that restricts the passage of air when the weight is being pulled in an upward direction, associated with the opening of the screen door. The size of an aperture at the lower end of the pneumatic cylinder, along with the strength of the retracting spring that rewinds the screen material, control the velocity of air entering the pneumatic cylinder and therefore the opening speed of the screen door.
Abstract:
A system for dampening an opening motion of a door includes a frame, an access door and at least one dampening member. The access door is rotatably secured to the frame. The access door is configured to be moved with respect to the frame between closed and completely open positions. The at least one dampening member is secured to the access door or the frame. The dampening member(s) dampens movement of the access door toward the completely open position over a range of motion.
Abstract:
In an arrangement for damping the pivot movement of a furniture component which is supported by a pivot joint on a stationary furniture part and which includes a damping element for slowing the movement of the furniture component near one of its end positions, the damping element includes a cylinder and piston unit forming part of a hinge, which includes a hinge housing in which a piston operating member is slidably supported and operatively connected to the piston, and a hinge lever extends between the movable component and the stationary furniture part in such a way that it engages the piston operating member in the hinge housing when the movable component approaches one of its end positions so as to slow down the movable component.