Abstract:
The hinge (1) for furniture comprises at least one deceleration device attached to the outside of the hinge box (4), an actuating lever (12) for the deceleration device, supported in oscillating fashion in the hinge box (4), and elastic return means to bring the actuating lever (12) back to an initial position, the deceleration device comprising a housing body (15) which extends peripherally along a side wall (9) of the box (4) and has means for fixing it to the side wall (9), the elastic return means being located on the housing body (15) outside the box (4) and providing at least one elastic arm (16) which protrudes into the inside of the box (4) through an aperture (17) in the side wall (9) of the box (4) to connect operatively with the actuating lever (12).
Abstract:
Provided is a retracting device in which dampers have improved durability and strokes of operation of the dampers are not reduced. A first slider 14-1 for assisting closing, a second slider 14-2 for assisting opening, and a damper base 22 are provided in an elongating base 12 to be slidable in a longitudinal direction of the base 12. The damper base 22 is disposed between the first slider 14-1 and the second slider 14-2. A first damper 24 is provided over between the first slider 14-1 and the damper base 22 and a second damper 25 is provided over between the second slider 14-2 and the damper base 22.
Abstract:
A sliding door device has a first pin body provided, at a floor surface; a guide member provided at the door and having a guide groove in which the first pin body fits when the door is closed; and a second pin body that is provided on the floor surface and can be fit in a door groove formed at the door bottom. When the closed door slides in an opening direction and toward the back side of the wall surface, the guide member moves relatively along the first pin body while the first pin body is fit in the guide groove of the guide member. When the door slides further in the opening direction, the second pin body gets in the door groove of the door, and the door slides along the second pin body while the second pin body is fit in the sliding groove of the door.
Abstract:
An engine hood for a construction machine is configured to be pivoted in a vehicle body back-and-forth direction about a hinge attached as a pivot center to a longitudinal side part of a counterweight. The engine hood includes an engine hood main body, a first operating force applying unit and a second operating force applying unit. The engine hood main body is attached to a vehicle body of the construction machine in a pivotably openable/closable state. The first operating force applying unit is configured to apply force in a direction of opening the engine hood main body until the engine hood main body reaches a vicinity of a predetermined opening angle. The second operating force applying unit is configured to apply force in a direction of closing the engine hood main body when the engine hood main body is pivoted at the predetermined opening angle or greater.
Abstract:
To reduce stresses during closing of a manually closable body component, e.g. a door, a control device and a method of controlling closing movement in which, during the closing movement, from an opened position, the body component passes through first movement range in which the body component is moved towards the closed position without any action by a control member, and, thereafter, the body component passes through a second movement range in which the closing movement is varied by the action of the control member that residual kinetic energy of the body component does not exceed a predetermined limit value after passing through the second movement range, irrespective of the initial speed. The residual kinetic energy is not sufficient to close the body component automatically, so it is automatically drawn in a third movement range until a pre catch or main catch of a lock is reached.
Abstract:
An object is to provide a storage in which a door can be attached using a similar hinge without any trouble even at a time when the door is rotated in reverse and attached, the storage includes a main body; a pair of upper and lower hinges attached to the main body; and a door having one side rotatably supported by both the hinges to openably close an opening, at least one of the hinges has two attachment portions which cross each other at right angles in a corner and which are attached to the main body, and two pivot support portions raised from both the attachment portions and provided with a rotary shaft rotatably supporting the door, and both the attachment portions and both the pivot support portions have a shape which is symmetric with respect to a line passing through the corner and forming an angle of 45° with respect to both the attachment portions.
Abstract:
A slide assist mechanism includes a case attached to one of a main body or a moving body; a slider disposed freely slidably in the case; a latch supported by the slider so as to be switched between a standby position which locks in a corresponding portion of the case and a draw-in position which releases the locking; a draw-in unit including an urging device; and an operation member attached to the another of the main body or the moving body and switching the latch from the standby position to the draw-in position, or switching the latch from the draw-in position to the standby position. When the latch is switched from the standby position to the draw-in position, due to an urging force which has been accumulated in the urging device, the slide assist mechanism allows the moving body to move from a first position to a second position on a main body side through the operation member. In the slider, the urging device is disposed on a lower surface side, and also one end in a sliding direction includes an attachment device for the urging device.
Abstract:
A device for moving sliding doors may include a rectilinear guide mountable along the width of an opening reclosable by means of a door, a first bogie slidably movable along the rectilinear guide and connected to a connecting element solidly securable to the door, an auxiliary bogie connected to said connecting element, mounted on the first bogie and free to run along a direction substantially perpendicular to the rectilinear guide, an auxiliary guide in which is engaged the auxiliary bogie, a second bogie slidably movable along the rectilinear guide. The device may include a rotatable arm pivoting on the second bogie and having an end hinged to the connecting element. The rotatable arm is movable between a first position, in which it lies substantially aligned with the rectilinear guide, and a second position, in which it lies substantially perpendicular to the rectilinear guide.
Abstract:
Presented herein is a novel sliding door system that that enables adjustment of at least two sliding doors relative to each other such that surfaces of the sliding doors create a substantially flush surface a support onto which the sliding door mechanism is mounted. The system includes at least one inner and outer sliding door slidably coupled to corresponding guide rails. The guide rail that is coupled to the outer sliding door is selectably moveable by a sliding door mechanism between a first and a second position. In the first position, a user can slide outer and inner sliding doors along said guide rails, whereas in the second position, a surface of the outer sliding door is substantially flush with a surface of said inner sliding door.
Abstract:
A sliding door with a door leaf, which is suspended from at least one carriage and is guided to be displaceable along a roller rail profile, which is disposed at a wall or at a ceiling. The sliding door having a closing device, suitable to displace the door leaf into a closed position in a decelerated manner. The closing device includes at least one spring-damper element disposed near a ground level area at the door leaf by a carrier module.