Abstract:
A door closing mechanism which comprises a hydraulic rotation damper 5, comprising a closed cylinder cavity 20 within a cylinder barrel 19, a rotational damper shaft 22 which extends into the cylinder cavity 20, a piston 21 dividing the cylinder cavity 20 into a first side 20a above the piston 21 and a second side 20b below the piston 21, a one-way valve 33 allowing fluid flow from said first side 20a to said second side 20b of the cylinder cavity 20, and a fluid passage 31 between said first and second sides 20a,20b of the cylinder cavity 20, with a flow restrictor, in particular in the form of a needle valve 32, adjustable through an orifice in the cylinder barrel 19, wherein said second side 20b of the cylinder cavity 20 and said orifice are at opposite sides of the flow restrictor.
Abstract:
An apparatus for controlling movement of a first member relative to a second member in a piece of furniture includes a damper. When relative movement occurs between the first and second members, force is transmitted through a clutch drive mechanism to a movable member in the damper. A viscous damping medium in the damper resists movement of the movable member.
Abstract:
The invention relates to a drive device (20) for entrance/exit devices for public transit vehicles, comprising a drive unit (22) disposed in and driving a column (24) that rotates about an axis of rotation Z-Z during opening and closing operations, said column opening and closing an entrance/exit device. The drive unit (22) is supported in the vehicle by way of a support component (40) and the support component (40) acts as a counterbearing for a torque of the drive unit (22). A coupling device (72) is disposed between the drive unit (22) and the support component (40), said coupling device facilitating a rotation of the drive unit (22) about the axis of rotation Z-Z when a limit of the torque acting on the drive unit is exceeded.
Abstract:
A home-bar door apparatus includes a home-bar door that selectively opens or closes an opening formed in a home-bar frame and has rotational shafts protruding at both sides of a lower portion thereof and a catching step formed along a lower end thereof, dampers that are installed on a rear face of the home-bar frame and control an opening/closing speed of the home-bar door by receiving the rotational shafts of the home-bar door therein so that the rotational shafts of the home-bar door can be relatively rotated, and a stop rib that is formed laterally along a lower end of a groove formed around a periphery of the opening and has stopping steps formed at positions corresponding to both ends of a catching step of the home-bar door so that the catching step can be caught by the stopping steps.
Abstract:
A hinge on a cover for a container, has a pivot axis and includes at least one first member fixed against rotation and at least one second member rotatable about the axis, which first and second members are arranged coaxially along the axis. A third member is arranged coaxial with the first and second members. A damper element is provided between the first and the third members in order to dampen the relative rate of rotation between the members. A first spring is arranged between the second and the third tubular members, which first spring is connected to the respective second and third members so that relative rotation between the tubular members is permitted in a first direction, when the cover is pivoted towards a first position, and prevented in a second direction, when the cover is pivoted towards a second position. A container provided with such a hinge is described.
Abstract:
A rotary shaft structure includes a case, a first shaft fitted in the case with an end of the first shaft outward extended from an end of the case; a second shaft fitted in the case with an end of the second shaft outward extended from an opposing end of the case opposite to the first shaft; and a push unit arranged in the case to locate between the first and the second shaft. The rotary shaft structure is simplified and can be coupled to and between a main body and a display of a notebook computer, enabling easy open of the display without causing a rearward tilted main body and slow close of the display without impacting against the main body.
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:
A locking device for locking a displaceable motor vehicle part which is lockable by the means of the locking device within a displacement range in a respective rest position reached by displacement is provided. The locking device comprising a braking device with at least two braking elements which interacts in a braking manner in a respective rest position of the motor vehicle part in order to lock the motor vehicle part, and which can be brought into a position without braking engagement by inducing a release force into the braking device. An actuator is assigned to the locking device, which is optionally combinable with the braking device and with which a displacement movement of the motor vehicle part is brakable for locking the motor vehicle part.
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:
Furniture hinge with damping device which is insertable into the box of the hinge and fixable therein before the box is assembled with the other components of the hinge. In this way the damping device is protected against external actions, such as impact or pressure that can damage or affect the functioning of the device, by the same box made of steel or of another rigid material.