Abstract:
An opening/closing device (1) for a double flap door (3) of an item of furniture (3) is described, wherein the top part (2′) and the bottom part (2″) of the door (2) are not hinged to each other.The device (1) comprises means (4)—connected to the furniture item (3) and to the top part (2′) of the door (2) and adapted to cause the top part (2′) of the door (2) to rotate with respect to the furniture item (3)—and an articulated quadrilateral (5), connected to the means (4) and adapted to cause the bottom part (2″) of the door (2) to rotate with respect to the top part (2′) concomitantly with the rotation of the top part (2′) of the door (2) with respect to the furniture item (3).The articulated quadrilateral (5) comprises a first and a second arm (5′, 5″) having one end hinged to the bottom part (2″) of the door (2) and the other end hinged to the means (4), integral respectively with the top part (2′) of the door (2).
Abstract:
The invention relates to a hinge arrangement, in particular refrigerator housing comprising a refrigerator door pivotably articulated thereto, with a first part (2), with a second part (4) pivotably articulated to the first part (2) via a hinge (3, 3a), with a piston cylinder damping unit (6), which is operatively arranged between the first part (2) and the second part (4) for damping a pivoting movement of the two parts (2, 4) relative to one another, and which is articulated to at least one part (2, 4).
Abstract:
A hinge for wings or doors, in particular of electrical appliances, having a first element, a second element and a rocker lever for connecting the first and second elements; the lever pivots on the second element and has a first arm integral with the first element to render the first and second elements movable relative to one another with a tilting action between a closed position and an open position; the second element consisting of a substantially box-shaped body containing both elastic parts, inserted between the second element and a second arm of the lever to apply an elastic action on the lever, and a damping device, for applying a damping action on the lever during the reciprocal motion of the first and second elements, when the closed position is almost reached.
Abstract:
A door operator assembly, comprising an operator unit mounted to a first position, relative to the door, by a first mounting bracket; and an arm linkage connecting the operator unit and a second position, relative to the door; the arm linkage being mounted at the second position by a second mounting bracket.
Abstract:
A flap drive for a flap includes two identical lever joint arrangements which are arranged in pairs at a distance from one another. The flap can be moved out of its closing position into its opening position and back by the flap drive. In this case, the lever joint arrangements are articulated pivotably with one of their ends in each case on a side region of the flap and with their other ends at a fixed location on the motor vehicle. The mutually corresponding pivot axes of the articulation points extend coaxially to one another. Movement transmission devices for the pivotable drive of a driven lever of each lever joint arrangement are guided by a common motive drive unit, the driven levers being articulated at a fixed location on the motor vehicle.
Abstract:
A safety cabinet is disclosed which includes an enclosure having a double-wall construciton and a pair of doors to selectively seal the enclosure. The safety cabinet includes a retaining system for retaining the doors in an open position and a closure system for automatically closing the doors. The safety cabinet also includes a latch system for selectively retaining the doors in a closed position to cover the enclosure. The latch system includes a paddle handle, first and second slide plates, a bullet slam latch, and first and second latch rod assemblies. The safety cabinet can be used to store, for example, flammable liquids, flammable waste, corrosives, pesticides, or combustible waste.
Abstract:
Drive system for moving a load along a curved path. The drive system includes a base for mounting the drive system, the base having a curved track for guiding the load along the curved path. There is a load engaging mechanism mounted on the base for movement relative to the base, the load engaging mechanism being for moving the load. The load engaging mechanism has a curved track engaging roller for engaging the curved track. A linear drive mechanism including a linearly driven member is mounted on the base. The linearly driven member includes a driving pivot. A drive link is attached to the driving pivot at a drive force receiving end of the drive link, the drive link including a driven pivot at a drive force communicating end of the drive link. The driven pivot is attached to the load engaging mechanism, whereby linear motion of the driving pivot causes motion of the load along the curved path.
Abstract:
A safety cabinet is disclosed which includes an enclosure having a double-wall construciton and a pair of doors to selectively seal the enclosure. The safety cabinet includes a retaining system for retaining the doors in an open position and a closure system for automatically closing the doors. The safety cabinet also includes a latch system for selectively retaining the doors in a closed position to cover the enclosure. The latch system includes a paddle handle, first and second slide plates, a bullet slam latch, and first and second latch rod assemblies. The safety cabinet can be used to store, for example, flammable liquids, flammable waste, corrosives, pesticides, or combustible waste.
Abstract:
First and second door leaves are pivotable with respect to a door frame and each door leaf has a hinge edge at which it is hingedly attached to the door frame. Each door leaf is provided with a door closer and a pull arm for closing the door leaf. The door frame is provided with a guide rail mounted to the door frame for guiding movement of distal ends of the pull arms longitudinally of the guide member. During closing movement of the second door leaf, the distal end of the second pull arm moves along the guide rail initially in an allowing direction, away from the hinge edge of the second door leaf, and subsequently in a blocking direction, towards the hinge edge of the second door leaf. During closing movement of the second door leaf, a blocking device allows movement of the distal end of the second pull arm past the blocking device in the allowing direction and selectively prevents return movement of the distal end of the second pull arm past the blocking device in the blocking direction.
Abstract:
An elevator door operator for positioning elevator doors along an arcuate pathway includes a linearly displaceable actuator and a pair of linkage arms, each pivotally connected to the other and connected to one end of the linearally displaceable actuator. The linkage arms are also each pivotally connected at their opposite ends to each of two support arms, each of which support arms are pivotally connected at one of their ends to each other and secured at their opposite ends, respectively to each of the door panels. The door operator may be provided as part of a door assembly which additionally includes an upper guide track comprising an elongate bar including at least two generally planar support surfaces, which guide track is mounted above the door opening to define an arcuate door travel pathway, two door panels, suspended from the upper guide track via a carriage assembly which includes a carriage frame and at least two wheels each supported by, and in rolling contact with, at least two of the support surfaces on the guide track, and a hinge pin extending from the carriage frame to pivotally connect the carriage assembly to the door panel. One embodiment operates a single door for positioning along an arcuate pathway.