[0001] The present invention relates to a handle mechanism for operating the closing members
of slidable windows, provided with a "faulty-operation preventing" system. For the
sake of brevity in the following this mechanism will be identified as "handle", since
it generally consists of a body containing the mechanism and from which an element
to be gripped projects, which body is designed to be applied to the window sash.
[0002] A "faulty-operation preventing" system on window fixtures is made necessary when
operation of the working element and, as a result, movement of the window lock element
(for example a prong adapted to couple for closure with a suitable locating element
positioned on the fixture frame) is wished to be prevented. When the window is not
closed, it is convenient that a faulty operation should be prevented when the handle
is operated to the closed position and consequently on carrying out the corresponding
movement to the closed position of the lock element actuated by the handle. In fact,
an attempt to close the window carried out following a faulty operation of the above
type could lead the lock element to impinge on the complementary locating element
into which it is introduced when the window is closed, in case of correct working.
Such a collision could cause damages to the fixture.
[0003] There are presently on the market different handles provided with a faulty-operation
preventing system for casement windows and only some systems for slidable windows.
In handles for casement windows, the faulty-operation preventing system comprises
an actuating element slidable along a direction perpendicular to the window plane
(hereinafter referred to as direction Z, for the sake of simplicity) and for its operation
utilizes the relative motion between the sash and the window frame. In the case of
slidable windows, the faulty-operation preventing system comprises an actuating element
that is movable in the sliding direction of the fixture (hereinafter, direction X)
parallel to the window plane, and for operation utilizes approaching between the sash
and frame.
[0004] Unfortunately, it has not been hitherto possible to use handles with a faulty-operation
preventing system having an actuating element movable in direction Z in the case of
slidable windows, because the sash movement with respect to the window frame (in direction
X) does not allow actuation of such a faulty-operation preventing system. These handles
are widespread on the market, but can be used only in the case of casement windows.
Therefore planning and production of suitable handles for slidable windows having
a faulty-operation preventing system provided with an actuating element movable in
the direction X, is made necessary, as previously mentioned. This clearly involves
disadvantages from the point of view of series production and economies of scale.
[0005] It is a general aim of the present invention to eliminate the above mentioned drawbacks
by providing a handle with a faulty-operation preventing system having an actuating
element movable in the direction Z that can be used in the case of slidable-sash windows
as well.
[0006] In view of the above aim, in accordance with the invention a handle locking device
for a slidable sash of a window with a frame made of a section member, provided with
a faulty-operation preventing system adapted to stop the closing movement of the handle
when the sash is not in a closed position in its frame has been conceived, which device
comprises an actuating element movable against the action of a spring between a handle-locked
position and a handle-released position with a movement perpendicular to the sliding
movement of the sash and projecting from the handle body within the section member
thickness, said actuating element being provided with an active free end received
in the section member thickness and designed to interfere in the sliding direction
of the sash, by a cam-slipping action, with a locating element on the window frame
when the sash is brought to a closed position, to move the actuating element to the
released position.
[0007] For better explaining the innovative principles of the present invention and the
advantages it offers over the known art, a possible embodiment applying said principles
will be described hereinafter with the aid of the accompanying drawings. In the drawings:
- Fig. 1 is a sectional view of a preferred embodiment of the invention,
- Fig. 2 is a perspective view of the handle in Fig. 1,
- Fig. 3 is an exploded view of two details of the faulty-operation preventing system
of the handle,
- Fig. 4 is a further exploded view of the faulty-operation preventing system,
- Fig. 5 represents a view of the handle with the closing cover thereof,
- Fig. 6 is a sectional view of an alternative embodiment of the invention,
- Fig. 7 is a sectional view of another alternative embodiment of the invention.
[0008] Shown in section in Fig. 1 is the frame 11 of the slidable window to which the invention
applies, as well as the window sash 12 and handle 13 provided with a faulty-operation
preventing device. The faulty-operation preventing system, as shown in the following
figures, comprises a base body 16, an actuating element 15, a block 14, a cover 18
and a spring 21. The actuating element 15 is mounted in a slidable manner on the base
body 16 so that it can move in the direction Z. The spring 21 is mounted between the
base body 16 and the actuating element 15, its longitudinal axis being disposed along
the direction Z. Formed in the base body 16 is a rack 16b meshing with a cogwheel
17 integral with the handle handgrip 13a. The base body 16 is received into the handle
body 13b so that it can slide in a vertical direction. The cover 18 is fastened to
the handle body 13b to close it and is provided with housings 18b (two of which are
shown in Fig. 5) designed to receive the tooth 15b formed on the actuating element
15. The block 14 is provided with an inclined surface 14a and is fastened, by means
of a screw (not shown in the figure) for example, to the actuating element 15. Means
14b and 14c are formed on the block 14 in order to ensure a non-weak fastening of
said block to the element 15. The projections 14c can possibly also have the function
of limiting bending of the actuating element 15 during closure, by resting on a suitable
surface of the section member of sash 12 to lighten the shearing stress on element
15.
[0009] Operation of the handle as a whole is as follows.
[0010] In an open condition of the window, spring 21 pushes the actuating element 15 away
from the base body 16. In this manner this spring 21 forces the tooth 15b into the
housing 18b formed in the cover 18 and corresponding to the open position of the handle.
This prevents the base body 16 from sliding in a vertical direction within the body
of handle 13b. Since this base body 16 is kinematically connected with the handle
handgrip 13a by means of the rack 16b and the cogwheel 17, it is well apparent how
the faulty-operation preventing function inhibiting any rotation of the handgrip 13a
when the window is open, is implemented.
[0011] When the slidable sash 12 during closure moves close to the fixture frame 11, the
locating element 20 of the frame comes into contact with the inclined surface 14a
of the block 14. This block is pushed in the direction Z moving close to the body
of handle 13b by effect of a cam-slipping action of the inclined surface 14a with
the locating element 20 of the frame. This involves sliding of the actuating element
15 on the base body 16 overcoming the elastic force of spring 21. In this manner the
tooth 15b is released from the housing 18b that received it, thus allowing the base
body 16 to slide vertically and the handle handgrip 13a to rotate to close the window.
[0012] Thanks to block 14 suitably mounted on the handle, it has been possible to use a
handle with a faulty-operation preventing system which has an actuating element 15
movable in a direction perpendicular to the window plane also in the presence of a
slidable sash window.
[0013] Obviously, the above description of an embodiment applying the innovative principles
of the present invention is given by way of example only and therefore must not be
considered as a limitation of the scope of the patent rights herein claimed. In fact
it is possible to image different alternative embodiments. For example, shown in Fig.
6 is a handle in accordance with the invention which comprises a block 14 (similar
to that of the preferred embodiment) and an additional locating element 20 that is
fastened to the fixture frame 11 to promote actuation of the faulty-operation preventing
system and to adapt it to the specific shape of the frame itself. Again, shown in
Fig. 7 is a further alternative embodiment of the present invention. In this case
only a locating element 20 is mounted on the window frame, in the absence of a block
to be fastened to the actuating element 15. This locating element 20 is provided with
an inclined surface for cam slipping required for actuation of the faulty-operation
preventing system; this surface is quite similar to the inclined surface 14a of block
14 in the preferred embodiment. Finally, in the embodiments providing for the presence
of block 14 to be fastened to the actuating element 15, a fastening system with an
adjustable screw can be used so as to be able to adjust the distance of the cam surface
14a of the handle and therefore to be able to adapt the handle to the different forms
and different types of frames present on the market.
1. A handle locking device for a slidable window sash with a frame made up of a section
member, provided with a faulty-operation preventing system adapted to stop the closing
movement of the handle when the sash (12) is not in a closed position in its frame
(11), comprising an actuating element (15) movable against the action of a spring
(21) between a handle-locked position and a handle-released position with a movement
perpendicular to the sliding movement of the sash (12) and projecting from the handle
body (13b) within the section member thickness, said actuating element (15) being
provided with an active free end (14) received in the section member thickness and
designed to interfere in the sliding direction of the sash, by a cam-slipping action,
with a locating element (20) on the window frame when the sash (12) is brought to
the closed position to move the actuating element (15) to the released position.
2. A handle locking device for a slidable window sash as claimed in claim 1, characterized in that said active end (14) and said locating element (20) mutually engage at an inclined
surface (14a) of at least one of them, with mutual cam slipping.
3. A handle locking device for a slidable window sash as claimed in claim 2, characterized in that said inclined surface (14a) forms an angle of 45° with the sliding direction of the
sash (12) and with the movement direction of the actuating element (15).
4. A handle locking device for a slidable window sash as claimed in claim 1, characterized in that said active end (14) is a block adapted to be fastened to the actuating element (15)
in an adjustable manner in order to enable engagement between said block and the locating
element (20) in any case, upon varying of the position of said locating element within
the section member, irrespective of the type of frame (11) used.
5. A handle locking device for a slidable window sash as claimed in claim 1, characterized in that said active end (14) is a block fastened to the actuating element (15) by means of
a screw, said block comprising means (14b, 14c) to make fastening thereof not weak.
6. A handle locking device for a slidable window sash as claimed in claim 1, characterized in that said active end (14) is provided with projections (14c) on which a surface of the
section member of the sash (12) rests at right angles to the sliding direction of
the window, in order to restrict bending of the actuating element (15) during cam-slipping
between the active end (14) and the locating element (20).