Abstract:
A hinge includes a hinge assembly and a damper assembly. The damper assembly includes a stationary housing defining a cavity. A damper body rotatablely installed in the cavity has a head protruding to form a cylindrical guiding portion and a pushing portion defining two side ends apart from each other. The side ends are unparallel and at least one of the side ends is inclined relative to the axis direction of the damper body to make the width of the pushing portion between the side ends be changed gradually, and rotatable sheets and stationary sheets are received in the cavity and alternately disposed on the guiding portion and the pushing portion. The stationary sheets are respectively fixed to the stationary housing. Each rotatable sheet protrudes inwardly to form a retaining portion. The side ends of the pushing portion alternately contact the retaining portions and contact the retaining portions one by one when the elastic force of the hinge assembly is released to drive the damper body rotating. Damper resin is filled between the adjacent stationary sheets and rotatable sheets.
Abstract:
A hinge includes a hinge assembly and a damper assembly. The damper assembly includes a stationary housing defining a cavity. A damper body rotatablely installed in the cavity has a head protruding to form a cylindrical guiding portion and a pushing portion defining two side ends apart from each other. At least one of the side ends has a step-shaped profile to make the width of the pushing portion between the side ends nonuniform, and rotatable sheets and stationary sheets are received in the cavity and alternately disposed on the guiding portion and the pushing portion. The stationary sheets are fixed to the stationary housing. Each of the rotatable sheets protrudes inwardly to form a retaining portion. The side ends of the pushing portion alternately contact the retaining portions and contact the retaining portions at intervals when the elastic force of the hinge assembly is released to drive the damper body rotating. Damper resin is filled between the adjacent stationary sheets and rotatable sheets.
Abstract:
The invention relates to a damping device for parts of furniture which are joined together by means of hinges and which can be pivoted in relation to each other. The housing contains a damping fluid in the cavity thereof and a resistance element which can be displaced relative to the damping fluid and connected to an actuating element protruding from the housing. During at least one part of the pivoting movement of both pieces of furniture, said actuating element is drivingly connected to the second piece of furniture and transfers the movement distributed to the second piece of furniture to the resistance element. The damping device is arranged in the region of at least one of the hinges which pivotally couples both pieces of furniture, and whereby either the damping housing and/or the actuating element engages with one of the mounting element of the corresponding hinges, at least during the damping process.
Abstract:
A rotary damper includes a housing and a rotor rotatable in the housing. A clutch is movable toward and away from the housing when said rotor is rotated in first and second directions.
Abstract:
A rotary damper (15) comprises a casing (17) fixable to a structure (S) and which comprises a wall (17a) which surrounds a chamber (18) filled with a viscous fluid and has an inner surface (18a) facing the chamber (18); a cover (21) mounted and welded on a shoulder surface (18d) of the wall (17a) of the casing (17) in such a way as to close the chamber (18) in a sealed manner; and a rotor (31) which is mounted rotatably on the casing (17) and comprises a disc portion (32), adapted to rotate within the chamber (18), and a shaft portion (33) extending axially from the disc portion (32) and emerging through the cover (21) so as to be operationally associable with a movable member (2). The cover (21) has peripherally a collar-like protuberance (122), extending along the entire perimeter of the cover (21) and coupled to the inner surface (18a) of the wall (17a) of the casing (17) in such a way as to oppose the infiltration of the viscous fluid between the collar-like protuberance (122) and the inner surface (18a) of the wall (17a).
Abstract:
The present invention provides a self-closing hinge suitable for use in a variety of applications where it is desirable to provide for automatic closing of a hinged member in a delayed or slow fashion. The invention includes a generally cylindrical outer casing or housing that partially encloses a rotatable shaft that may be secured to a hinged member to effect the rotation thereof. The shaft is disposed within a recess in a cylindrical coupler that is engaged by the shaft during rotation in a first direction—generally an “open” rotational direction—and that engages the shaft to rotate it in a second direction—generally a “closed” rotational direction. The coupler is secured to a torsional spring that acts against the open rotation of the shaft and thereby forces the coupler to rotate in a closed direction. Additionally, a rotatable inner casing, which is generally cylindrical, may be disposed within the outer casing in close proximity thereto, such that a high viscosity fluid may be disposed therebetween.
Abstract:
An automotive vehicle includes one or more swinging doors which may be immobilized in a number of positions, so as to allow the door to be used, for example, to assist passengers in entering and leaving the vehicle.
Abstract:
A refrigerator and a method for manufacturing the same are disclosed. A refrigerator according to the present includes a refrigerator body (10); a refrigerator dooe (20) for opening/closing the body; an opening (30) formed in front of the refrigerator door; a home bar dooe (50) rotatably coupled to the refrigerator door (20) for opening/closing the opening; a securing unit (80) for selectively securing the home bar door for close up the home bar door tight; and a damping member (90) provided at the refrigerator door (20) or the home bar door (50) for dampening the rotation of home bar door (50). According to the present invention, convenience for a user as well as for smooth opening/closing of home bar door may be improved. Also, damage and noise due to the user opening/closing a home bar door (50) may be reduced.
Abstract:
Furniture hinge with alternative damping and/or braking device with respect to those existing and able to guarantee a better functional efficiency during closing and opening operation of the doors, or other parts of furniture, even after long periods of inactivity of the same device. The better efficiency of such hinge is also obtained by increasing the friction surfaces with a viscous means present in suitable areas of the hinge and by allowing the regulation of the angular velocity trend of a circular shaped element, for example a disk, that acts as a braking element in contact with the viscous means.
Abstract:
Hardware that improves the safety of operating sectional doors that use torsional coil springs to facilitate door movement. A rotor assembly with centrifugally activated throw-out latches is affixed to the rotating shaft that bears the torsional coil springs. When a spring breaks, the shaft rotates rapidly as cables supporting the door unwind. Rapid rotation causes centrifugal force to bias the latches to an outer position in which they strike a trigger plate, allowing a pawl to move into a position in which the pawl blocks further rotation of the rotor, thus halting the descent of the sectional door. Raising the sectional door manually moves the latches, trigger plate, and pawl to their original position, disengaging the present invention and permitting the door to be lowered slowly without danger of injury.