Abstract:
The present invention relates to a sliding door stopper mechanism (1), which enables the sliding door (K) to remain in open position when it is opened and allows the sliding door (K) to be closed easily, essentially comprising at least one sliding door bracket (2) which is provided on the sliding door (K), at least one box (3) which is provided on the rail (R) of the sliding door, at least one first stopper (4) which is in form of a rod effected by the sliding door (K) while it is opening, at least one wheel (5) which is provided on the first stopper (4) and to which the sliding door bracket (2) contacts, at least one first stopper spring (6) which controls the movement of the first stopper (4), at least one first stopper pin (7) around the axis of which the first stopper (4) can rotate, at least one second stopper (8) which is in form of a rod effected by the sliding door (K) while it is closing, at least one second stopper spring (9) which controls the movement of the second stopper (8), at least one second stopper pin (10) around the axis of which the second stopper (8) can rotate, at least two cleats (11) which are provided between the first stopper (4) and the second stopper (8), and the second stopper (8) and the sliding door rail (R).
Abstract:
The invention relates to a device (2) for connecting a displaceable element (1), especially a glass, metal or wooden panel to a guiding device (93; 93a), said guide device being guided in a rail (91; 91a). The inventive device comprises a first and a second fixing part (31; 41). Said fixing parts contain outer panels (32; 42) and fitting elements (33; 43) which can be interconnected by means of an axle (35). Said fitting elements (33; 43) are inserted into a cut out section (11) on the edge of the displaceable element (1) and interconnected. The fitting elements (33; 43) encompass a connection screw (6) which can be connected to the guide device (93; 93), said connection screw (6) having a screw shaft (63) with a screw head (62), a securing element (61) and a thread. The fitting element (33) of the first fixing part (31) has a channel (36) for receiving the screw shaft (63), said channel having channel walls (34), a trough (39) for receiving the screw head (62) and a cavity (37) for receiving the securing element (61). Said securing element (61) can be stopped by a stop screw (53; 53a). The fitting element (43) of the second fixing part (41) has a recess (44) for receiving the channel walls (34) and an opening through which the screw head (62) can be accessed. The assembled device is adjusted by loosening the stop screws (53) by a few turns and turning the connection screw (6) until the displaceable element (1) is set at the desired height. The stop screws (53) are then re-tightened. The securing element (61) is part of the connection screw (6) and is encompassed in the device (2) so that the top edge of the displaceable element (1) can be drawn practically up to the rail (91; 91a).
Abstract:
PROBLEM TO BE SOLVED: To provide a wall/column for stopping a sliding door when the sliding door is closed and a structure of the sliding door for preventing the rebounding of the sliding door by impact of the sliding door. SOLUTION: The structure of the sliding door is so constituted that a body section 4 having elasticity including a mechanism for adjusting elasticity is mounted to an upper corner section of the sliding door 2 and that a projection 3 fitted to the body section 4 is mounted to the inside of a groove of an upper lintel 1. A structure having a moving adjustment section 60 for sliding the body section 4 on the lower part of the body section 4 is added thereto.
Abstract:
PROBLEM TO BE SOLVED: To provide a sliding-door type glass pane which minimizes a clearance between a glass door and a wall. SOLUTION: The sliding-type glass pane 1 includes a top guide element 2 placed on the wall having a rib 21 on which a rolling element 6 moves, a guide 3 on the bottom, a suspension device and a plurality of top retaining fasteners. The suspension device has a large outer plate 41 and two small inner plates 42 defining a space to hold the rolling element 6 between them. The top retaining fasteners are provided respectively with horizontal flat faces for holding cylinders. COPYRIGHT: (C)2007,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide a low-cost small planing boat furnished with a locking mechanism of an engine hood capable of locking the hood at an opening position by opening it without a user detouching his hand from the engine hood. SOLUTION: This small planing boat is furnished with the engine hood 40 provided on a front end part of a deck 12 free to oscillate a front end part around a rotation axis and to cover an engine room 14 below free to open and close and a locking mechanism 50B to fix the hood 40 at the opening position, the mechanism 50B is furnished with an engine hood side bracket 51, a deck side bracket 52 and an engaging part 54B, the brackets 51, 52 are connected to each other free to revolve around a rotation axis, a leading end part 514 projected outward in the rotating radial direction is formed on at least one of them, the engaging part 54B is mounted on the other bracket side and it stops rotation of the one bracket by being engaged with the leading end part 514 when the hood reaches the opening position. COPYRIGHT: (C)2007,JPO&INPIT
Abstract:
Safety device (10, 1 10, 210) to prevent the sudden closing of a movable element, such as a closing element of a piece of furniture or a door, comprising a lever mechanism (20, 120, 220) which in turn comprises an actuation lever (11, 11 1, 211), which can rotate with respect to a pin (12, 112, 215) between an open position and a clamping position, or alternatively, a closed position. A first elastic member (25, 125, 225) able to apply a first elastic force (R1) and a second elastic member (30, 130, 230) able to apply a second elastic force (R2), less than the first elastic force (R1), act on the mechanism lever (20, 120, 220).
Abstract:
A lifting system for a furniture piece door oscillating around a horizontal axis comprises a support lever (9, 19) for the door (3, 7, 13) oscillating around an oscillation pin (10, 20) disposed on an inner side of a shoulder (12) of the furniture piece, a first elastic device (24) operatively connected to the support lever (9, 19) of the door (3, 7, 13) so as to provide a moment in the closing direction of the door (3, 7, 13) at the closed position of the door (3, 7, 13), and a primary moment in the opening direction of the door (3, 7, 13) starting from a partial opening position of the door (3, 7, 13), and a second elastic device operativamente connected to the shoulder (12) and the support lever (9, 19) so as to provide a force suitable for generating, relative to the oscillation pin (10, 20), an auxiliary moment in the opening direction of the door and/or respectively an opposing moment via friction against the support lever (9, 19) in the direction opposite to the movement of the door (3, 7, 13) along an arc of oscillation thereof around the maximum extension of the door (3, 7, 13) towards the furniture piece exterior.
Abstract:
A roller stop (50) for a sectional door (D) having a plurality of hinged panels (20), rollers (30) attached to the panels, and a pair of tracks (T, T') receiving the rollers for guiding the sectional door between a closed vertical position and an open horizontal position, the roller stop having a body portion (27), and at least one clamping member (67, 68) associated with the body portion adapted to engage one of the tracks, wherein the body portion is adapted to contact at least one of the rollers to temporarily maintain the sectional door in a predetermined position.