Abstract:
A cushioning device for opening and closing of sliding shutters, particularly of sliding shutters for furniture, to be applied as a single item to each shutter or sliding partition, in order to be able to cushion an end part of their opening and closing movement. The cushioning device includes a cushioning box applied with brackets for support and sliding of the individual shutter; this box being equipped with two opposing braking devices of a rotary type, whose toothed hub directly meshes with a rack fixed to the box, each braking device being joined to its own slider guided by the box and being joined at one end by an elastic device with its opposite end joined to the other slider, both sliders being equipped with a hook for activating and deactivating the corresponding action of the final section of travel to be cushioned.
Abstract:
The invention regards to a mechanism for the aligned closure of sliding doors (1-3), in particular for furniture or compartments (V1-V3) with two or more doors, with a sliding door (1, 2 or 3) for each compartment, and where each compartment opens by sliding and overlapping of one door with one of the adjacent doors and closes in alignment with the adjacent doors. The mechanism consists of a single bracket (10) for each door, one end of the bracket (10) being fixed on the door, and its opposite end being equipped with a first sensing bearing (13) to run along a cam guide (70), said bracket (10) being suitable for inclination and transversal movement with a carriage (30), which also allows it to slide along a rail (50) to be positioned on the upper surface of the compartments. The carriage (30) can be adjusted transversally and the bracket (10) can move axially in relation to the carriage (30). An arm (14), one end of which is firmly attached to the bracket (10), while the other end (14a) is equipped with at least a second sensing device having a bearing (15, 15′), can run along an other longitudinal cam guide (60) using the same bracket (10) for inclination and movement.
Abstract:
The present invention relates to a refrigerator and/or freezer with a door or flap for closing the appliance interior, with a hinge, by means of which the door or flap can be swivelled relative to the body of the appliance, wherein the hinge includes means for producing a closing force acting in closing direction of the door or flap, and with a damper which at least over a part of the closing movement of the door or flap applies a force directed against the closing movement of the door or flap, wherein the means for producing a closing force include an eccentric and means which exert a force that acts on the eccentric and is dependent on the opening angle of the door or flap.
Abstract:
Sliding doors, e.g., for pieces of furniture, particularly of the kind with two shutters and reduced height, having coplanar closing and opening by overlapping of the shutters. Support and translation of each shutter is provided by a respective clamp placed on the edge of the outer side, the clamp being linked to a pair of little carriages that can slide transversally with respect to the same shutter, because they are supported and guided by a respective carriage, which in turn can slide longitudinally along the edge of an opening, the respective carriage being led by a rail and control tracks, and engaged by a loose roller that constrains the respective carriage into a couple of longitudinal cams or grooves.
Abstract:
A hinge system for opening a cover pivotably connected to a device housing. The hinge system includes a rotating member in the device housing and a shaft connected between the cover and the rotating member. A non-rotating member in the device housing receives the rotating member and a spring connected to the device housing and biased to rotate the shaft.
Abstract:
Sliding doors, e.g., for pieces of furniture, particularly of the kind with two shutters and reduced height, having coplanar closing and opening by overlapping of the shutters. Support and translation of each shutter is provided by a respective clamp placed on the edge of the outer side, the clamp being linked to a pair of little carriages that can slide transversally with respect to the same shutter, because they are supported and guided by a respective carriage, which in turn can slide longitudinally along the edge of an opening, the respective carriage being led by a rail and control tracks, and engaged by a loose roller that constrains the respective carriage into a couple of longitudinal cams or grooves.
Abstract:
A window assembly having a window frame and at least one primary sash mounted in the window frame. The primary sash has a plurality of sash members forming a primary sash perimeter and a first glazing panel mounted in the primary sash perimeter. At least one secondary sash is pivotally attached directly to the primary sash perimeter along an interior surface thereof so that the secondary sash is rotatably movable between a closed position and an open position relative to the primary sash. The secondary sash has a plurality of secondary sash members forming a secondary sash structure and a second glazing panel mounted in the secondary sash perimeter. An air chamber is located between the primary sash and the secondary sash that is substantially closed to the interior of the building structure. At least one accessory channel is locating along at least one side of the secondary sash members.
Abstract:
A braking apparatus has a main body for connection to one of a frame and a closure member mounted on the frame to undergo linear reciprocating movement between open and closed positions of the closure member. A tubular shaft is mounted in a main body for undergoing rotation. A resistance member is rotatably mounted on the tubular shaft and is disposed in an interior space of the main body containing a braking fluid. A spiral rod for connection to the other of the frame and the closure member is screw-threadably engaged with the tubular shaft so that the tubular shaft undergoes rotation when the spiral rod and the tubular shaft are relatively moved in an axial direction of the spiral rod. When the closure member undergoes linear reciprocating movement, the main body or spiral rod relatively moves in the axial direction of the spiral rod, the tubular shaft and the resistance member undergo rotational movement, and the resistance member receives a resistance of the braking fluid so that the tubular shaft rotates under a braking force of the braking fluid and reduces a movement speed of the closure member.
Abstract:
A dampened hinge and hinge system for appliances is provided. The system includes first and second hinge portions, at least one of which includes a dampener. The dampener can be a push-dampener, a pull-dampener or a push/pull-dampener. The hinge system allows for movement of the door between a closed position, a fully opened position and a secondary opened position such as a broil-stop position, and the door is self-supporting in the secondary opened position. The first and second hinge portions each include a guide channel, a claw pivotably connected to the guide channel and a link having a first end connected to the claw. The first hinge portion includes a spring having a first end connected to a second end of the link and a second end connected to the guide channel. The second hinge portion includes a dampener that is operably connected between the guide channel and the second end of the link. Both the first and second hinge portions can include a dampener.
Abstract:
To provide a rotary damper having a compact shape with a short axial length and capable of absorbing an extremely high torque acting temporarily in the case of a door abruptly closing. In a rotary damper (1) in which a rotary member (5) includes: a basement portion (6) axially supported by a drive shaft (4); a torque adjustor (7) capable of relatively moving on the drive shaft (4); a slide member (8) positioned through and facing the torque adjustor (7); and a spring (9) for energizing the slide member (8) to a cam, the slide member (8) is moved in the radial direction by relatively moving the torque adjustor (7) to a position having a predetermined angle against the drive shaft (4), and a predetermined radial clearance is formed between an outer surface (8b) of the slide member (8) and an inner peripheral surface (3a) of a chamber, thereby changing the clearance to change a torque generated by the rotation of the rotational member (5).