The invention relates to doors of gates and windows and in particular a construction system designed to optimize their mode of opening and closing.
Conventional gates and windows have hinged openings, horizontally or vertically scrolling or folding.
A first problem that afflicts the aforesaid traditional devices is the space occupied by the door of the gate or window in the opening phase. With gates they often do not have sufficient space for the door that when it opens occupies a room outside the passage opening so blocking another pass, intercepting an obstacle or trespassing in another property. In the case of the windows or internal doors the problem is often solved with the door which slides inside a compartment formed in the wall which encompass the passage, however, it can happen to be unable to obtain in the wall a room sufficient to allow the opening of the window or door.
A second problem that occurs with gates is the slope of the access road. With a sloping road alternatives for traditional gates are: hinged doors opening to the valley, doors with sloped axis of its hinges (the gate tilts while it opens), doors with a movable lower area so as to follow the inclination of the land, doors sliding laterally or vertically. In each case we have constructive complications which greatly increase the production costs of said devices.
A third problem is the end of stroke for swing gates: this device is often an obstacle to the passage mainly with sloping access.
A fourth problem is the application of a motor drive to a traditional gate when this is applied after the installation of the gate itself. This means longer installation time and incompatibility between the procedure of installation of the gate and the installation of the motor.
Object of the present invention is therefore to propose gates or doors/windows characterized by a particular construction system able to overcome the limitations described above of conventional gates and doors/windows.
The above objects are achieved by means of a gate or window comprising one or two doors with movable elements which elements pivot around one or more axes perpendicular to the plane formed by the closed gate itself. During the closing movement, the elements move with a synchronism that allows them to be packed on one another and to lie in a radial pattern while opening according to a so called fan out mode.
The invention solves the problems raising at installation of conventional gates and windows. Thanks to the hand-fan structure the door is able to open by occupying an increasingly small room up to be contained in the column of the gate or in the wall around the door/window.
A fan-type gate according to the invention solves the problem of space as the door disappears in the column suitably constructed with a hollow structure capable of containing also the eventual drive mechanism. A fan-type door/window according to the invention can be adopted as an alternative of a folding one and, unlike this, does not need any sliding guide.
Furthermore, a gate with fan out door according to the invention is not affected by the slope of the ground where it needs to be installed, both with longitudinal, transverse or in any other way sloping of the access. Even in the case of a gate with two doors the problem is solved by placing the columns on two different planes and synchronizing the fan angle so that they close parallel to the ground.
In addition, a gate with doors having a hand-fan structure according to the invention does not need stroke end housings on the access road.
Finally, in a fan-type gate according to a preferable embodiment of the invention the door and the support column are part of a single structure in which are enclosed the mechanisms for the manual or automatic drive. The hollow structure of the columns can be subsequently embedded in the wall and coated with plaster but this phase will have no effect on the operation of the gate.
Further characteristics of this invention will be better understood with the following description which make reference to the attached drawings, given as practical examples of the invention but not to be considered in a limiting sense, in which;
The
With reference to Table 1 (
In table 2 and table 3 it is shown a different embodiment of a gate or window according to the invention in which there is only one door, 2′, whose fan structure is composed only by rods A. Table 2 shows the gate in the closed configuration, table 3 shows the gate in open configuration.
The synchronism of the rods A, is ensured by the pins P and the slots formed in the levers, 11, or counterweights that support the rods A. In this embodiment, the door opening is hand-driven, and to facilitate the fan out opening of the door, 2′, were inserted ballast Z, one for each rod A, vertically slidable on guides, 12, integral to the column 7 and connected to the rods A through a system of connecting rod and crank, 13. This type of construction can be defined kinetic-balanced fan out door. Additional embodiments may provide for the application to the levers 11 of the rods A of one or more springs, thus obtaining a dynamic balancing, balancing that can replace or assist the effect of the ballast Z.
In table 4 are shown some details of the structure of a gate according to a further embodiment of the present invention.
In Tab. 5 is represented an overall perspective view of the gate with one fan-type door in accordance with the table 4. The actuator M of the drive mechanism transmits the movement to the control rod 4a (the one that performs the greatest stroke) and this transmits the movement to all the other rods through a synchronization system constituted by slot F and pin P obtained in the foot 11″ of the rods 4, while the interposed elements 6 are articulated so as to open and close with the rotation of the rods 4.
In Tab. 6 are-represented schematically a gate with fan-type doors composed of rigid elements with circular external side (
In Tab. 7 is shown schematically an internal door to close the access between two walls, N1, N2. The door is composed of rigid elements connected each other by one or more interposed flexible elements made of material such as canvas, fabric or synthetic material having characteristics of flexibility. A spiral spring, 15, inserted into the drum for rotation of the tan-type door makes it easy the hand-driven opening and closing. When the door opens the rigid elements are packed disappearing into the wall.
In Tab. 8 is represented the structure of a fan-type door, 2″′ of a circular shape. The door 2′″ is constituted by rigid elements, 4′″, in the shape of a circular sector which in the position of maximum opening of the fan-type door engage onto each other through a special lip 16, which determines a stroke end position in the closed configuration as it prevents two consecutive rods from further rotating with respect to each other. Since, by virtue of their circular sector shape, even in the closed configuration of the door two subsequent rigid elements 4″′ remain partially overlapped, the door has in this embodiment closed structure with greater rigidity, resistance to tampering and blinding efficiency. Obviously, the connection with interlocking lips 16 between two subsequent elements 4 can also be realized without using elements of size and shape such as to constitute a continuous surface in the door closed configuration.
In Tab. 9 is represented schematically the detail of an embodiment relating in particular to the synchronization system of the elements which open with a fan out movement. In this example the rods 4 move in a synchronized way thanks to the interaction of a synchronization shaft, C, with front forks, 18, integral with the rods 4 themselves. The synchronization shaft C is bound at one end to a fixed point of the column housing 7 via a ball joint S, while the other end, is connected via a slot, 19, to the control rod 4a. While it change its inclination, the synchronization shaft C maintains its contact with the forks 18 which are integral with the other rods 4 so forcing them to open and to close with equal angles between them and a movement constantly synchronized. The system of synchronization of this embodiment allows an opening guided such that all the rods 4 are spaced by the same angle in both the extreme configurations of opening and closing of the gate and in each intermediate configuration that this assumes. Even in this embodiment, to ensure the correct end of stroke angle between the rods in the configurations of opening and closing of the door may be present the system with pin P and slot F described in tables 4 and 5.
In Tab. 10 and 11 it is shown a further embodiment, covering both the system of synchronization of the fan out opening elements, both the drive mechanism. As shown in the detail of
In
Number | Date | Country | Kind |
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PI2012A000097 | Sep 2012 | IT | national |
Filing Document | Filing Date | Country | Kind |
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PCT/IB2013/058543 | 9/13/2013 | WO | 00 |