[0001] The present invention relates to a kinematic device for cremone bolt closings, comprising
a handle assembly and a moving mechanism for the rods of the cremone bolt, which are
connected together by a square cross-section shaft, said device being particularly
suitable for closing metal doors and windows that open outward.
[0002] The use of metal doors and windows, in particular made of aluminium, has further
increased with the decrease in the types of profile used to manufacture door and window
frames, and with the use of the so-called "European chamber", that is to say the use
of a space of a substantially unified size for all frames (for example that between
the wing profile and the frame profile) made to house certain types of accessory and
mechanism specially studied to be inserted and locked into this space, substantially
without having to perform any type of operation. However, in some working conditions,
for example in case of windows opening outward, for geometrical reasons, the space
known as the "European chamber" cannot be used. Furthermore, there are some disadvantages
connected with the working dimensions of the handle with respect to the fixed frame,
in particular when opening. In these cases, in order to house the accessories, it
is necessary to use the base chambers of the profile, and if necessary to use larger
sized chambers.
[0003] Handles for windows opening outward are found in the state of the art, which, although
based on the cremone bolt mechanism (which guarantees optimal closing, locking the
window both above and below onto the window frame), move the cremone bolt rods by
means of sliders, which move the cremone bolt rods directly. The handle forms an integral
part of this type of device and, consequently, it cannot be used separately in other
types of accessory, whatever its aesthetic value may be.
[0004] Object of the present invention is to provide an improved kinematic device for cremone
bolt closings, comprising a handle assembly with a square cross-section shaft and
a moving mechanism, particularly suitable for use in door and window frames opening
outward, and designed in such a way that the handle assembly and the shaft can be
separated from the moving mechanism and used separately if desired.
[0005] The subject matter of the present invention is a kinematic device for cremone bolt
closing devices for door and window frames, comprising a handle assembly, a moving
mechanism, connected by a shaft, characterized in that said handle assembly comprises
a handle, coupled by a first tubular element, the engaged end being integral therewith,
and by means of a boss to a second tubular element arranged in a substantially central
position on the upper part of a support case, substantially in the shape of a parallelepipedon,
a first bore being formed in a substantially central position on said boss, there
being formed in the lower part of said case a first housing of substantially circular
form and a pair of grooves arranged in a diametrically opposite position with respect
to first said housing and in communication therewith, a positioning ring with a square
opening being arranged in said first housing, a plurality of indentations being formed
symmetrically around the external edge of said ring, said indentations being arranged
so as to cooperate with spherical elements held against said outer edge by the action
of spring elements housed inside said grooves, a pair of bores being formed in said
support case, in a position substantially symmetrical to said second tubular element;
said shaft has a square cross-section substantially coinciding with that of said opening,
and can be inserted into said first tubular element, said moving mechanism comprises
a box-shaped body substantially in the shape of a parallelepipedon and a first closing
plate, a second bore being formed on said plate, a second housing of a substantially
circular shape being formed within said box-shaped body, said second housing holding
a sprocket wheel in movable engagement in a coaxial relation with an adaptor having
a square internal opening capable of engaging with said shaft, said mechanism further
comprising a pair of rack elements cooperating with said sprocket wheel, each of said
elements being integral with a respective guide and each of said guides sliding in
a respective straight guide housing, elements for engagement of a pair of rods being
formed on each one of said guides, the arrangement being such that rotation of said
handle between two angular positions adjusted by the cooperation between said positioning
ring and said spherical elements, causes, through said shaft, rotation of said sprocket
wheel and movement in an opposite direction of said rack elements, causing a corresponding
movement of said rods.
[0006] The present invention will now be described in greater detail with reference to a
preferred embodiment thereof, based on the figures of the enclosed drawings, in which:
figure 1 is an axonometric view of the kinematic device according to the present invention;
figure 2 is an exploded view of the various components of the handle assembly;
figure 3 is a plan view of the lower portion of the support case;
figure 4 is a partial cross-section top view showing the handle assembly assembled
on a window frame;
figure 5 is a side section view of a handle assembled with its moving mechanism;
figure 6 is an exploded view of the moving mechanism of the cremone bolt rods;
figure 7 is an axonometric view of a section of profile forming a portion of a frame,
in which holes have been made for insertion of the moving mechanism;
figure 8 is an axonometric view of a handle mounted on a profile, in which the rods
of the cremone bolt have also been mounted; and
figure 9 is a cross-section view from above of an application of the kinematic device
according to the present invention to an intermediate joint in a two-part window opening
outward.
[0007] According to the present invention, figure 1 shows the kinematic device, which comprises
the handle group 1' and the moving mechanism 2, connected by a square cross-section
shaft 3. The handle 1 (as can be seen more clearly in figure 2) has engaged at its
end a first tubular element 4 (into which the shaft 3 is inserted), which can be connected
to the bore 8 (first bore) of a boss 7. On the inner surface of the bore 8 a projection
9 is formed, which cooperates with a spring element 6 and a spacing washer 5 to keep
the boss 7 against the support case 10. The support case 10, substantially in the
shape of a parallelepipedon, has on its upper surface 11, in a substantially central
position, a second tubular element 12 and, in a substantially symmetrical position
with respect to the second tubular element 12, a pair of bores 13, 13' and a pair
of bevels 14, 14' formed on the edge 15. In the lower part 16 of the case 10 (as can
be seen more clearly in figure 3) a first housing 17 is formed, of substantially circular
shape, and a pair of grooves 18, 18' arranged in a diametrically opposite position
with respect to said housing and in communication therewith. In the first housing
17 (as can be seen more clearly in figure 2) a spacing washer 19 is placed, upon which
rests in a coaxial relationship a positioning ring 20 with a square cross-section
internal opening 21 corresponding to that of the shaft 3. The ring 20 also has a plurality
of indentations 23 made symmetrically around the external edge 22 of the ring 20.
The indentations 23 cooperate alternately with a pair of spherical elements 24 inserted
in the grooves 18 and held in position against the outer edge 21 of the ring 20 by
respective spring elements 25. Reciprocal engagement of the spherical elements 24
with the indentations 23 determines and fixes the angular open/closed positions of
the handle 1. A second closing plate 26 is provided to close the bottom of the case
10, said second closing plate having a central bore 27 (third bore) and a pair of
bores 29, 29' for the passage of fixing elements 28, 28'.
[0008] The boss 7 in its operative position is pushed by the spring element 6 against the
case 10, and engages along its perimeter 33 with the corresponding step 34 formed
along the edge 15 of the case 10. The bevels 14, 14' facilitate disengagement of the
perimeter 33 of the boss 7 from the step 34, in order to allow rotation around the
second tubular element 12 of the boss itself and to enable the operator to access
the pair of bores 13, 13' to insert the check pins 30 into the handle assembly (as
can be seen more clearly in figure 5). An upsetting, not shown, of the edge of first
tubolar element 4 on the ring 20 prevents the handle separating from the structure
to which it is coupled.
[0009] Rotation of the handle 1 transmits movement through shaft 3 to the moving mechanism
2. As can be seen more clearly from figure 6, the moving mechanism 2 is contained
inside a box-shaped body 35, having substantially the shape of a parallelogram, closed
on one side by a first closing plate 36 on which is formed, in a substantially central
position, a bore 37 (second bore) for passage of the shaft 3. Inside the mechanism
2, the shaft 3 activates a sprocket wheel 38, engaging in the square opening 39 (with
dimensions substantially the same as those of the shaft 3) of an adaptor 40, in turn
permanently engaged in an axial relation with the sprocket wheel 38. The sprocket
wheel 38 and the adaptor 40 are housed in a housing 41 (second housing), on the bottom
of which a through bore 42 is formed, and their top parts cooperate with a centering
bush 43.
[0010] The teeth 38' of the sprocket wheel 38 engage with a pair of rack elements 44 and
45, moving them symmetrically and longitudinally in opposite directions, each element
44, 45 being integral with a respective guide 46, 47 by means of a respective pair
of fixing elements 48, 49 and 48', 49', each guide sliding in a respective straight
guide housing 50 and 51. A plurality of bores 52, 52' .... 52n and 53, 53' ... 53n
is formed in the rack elements 44 and 45, said bores being formed in a spaced relationship
corresponding to the teeth on the sprocket wheel 38, the bore closest to the end of
the shaft (respectively 52 and 53) not engaged with the guides being open at the bottom
to facilitate assembly.
[0011] In the box-shaped body 35, in a substantially symmetrical position with respect to
the housing 41 (second housing), two housings 54 and 55 are formed to house the pins
30 fixing the moving mechanism 2 to a frame. Said box-shaped body 35 is also provided
with a ledge element made up of two elements 56 and 56' fixed by pins 57, 57'. The
first closing plate 36 is fixed to the body 35 of the fixing elements 58 through relative
bores 58'.
[0012] As will be more clearly seen from figure 8, the elements 48 and 49 serve to engage
the ends of the rods 59 and 60 of the cremone bolt for movement thereof, by means
of common devices which are not specified further. Rotation of the handle 1 between
two angular positions offset by 90° one from the other and regulated by the reciprocal
engagement of the ring 20 and the spherical elements 24, is transmitted through the
shaft 3 to the sprocket wheel 38. The subsequent rotation of the sprocket wheel 38
moves the cremone rack elements 44 and 45 and, consequently, both the guides 46 and
47 and the elements 48 and 49, which govern the movement of the rods 58 and 60 to
close or open the window, respectively.
[0013] The kinematic device according to the present invention differs from those known
to the state of the art above all due to the fact that it is a mechanism in which
a handle associated with a square cross-section shaft is used for cremone bolt closing
mechanisms in outward-opening windows made of metal profiles. Furthermore, the use
of a square (sides of the square cross-section of the shaft 3) and a distance between
the centers of bores 13 and 13' unified to 7 and 43 mm, respectively, increases versatility,
allowing the handle group to be used also in common door and window frames opening
inward.
[0014] Furthermore, the distance between the centers of the bores and the profile acting
as a frame has been chosen in such a way that the handle does not interfere with the
frame profile itself during opening.
[0015] Figure 7 shows an axonometric view of a cross-section of a profile in which bores
62 and 63 have been made for passage of the fixing pins, and bore 61 for passage of
the square cross-section shaft, and cavity 64 has been made to hold the moving mechanism.
[0016] In these cases (and in particular in case of aluminium profiles) according to the
present invention it is preferred to use profiles with wide chambers, that is to say
with a chamber of width not less than 35 mm. According to the present invention the
use of spacers is also advantageously provided, said spacers being generically indicated
with 65 in figure 1, in order to adapt the kinematic device for use in chambers of
different sizes.
[0017] Figure 9 shows a cross-section view from above of an application of the kinematic
device according to the present invention for a central connection in a two-part window
opening outward.
1. Kinematic device for cremone bolt closing devices for door and window frames, comprising
a handle assembly (1'), a moving mechanism (2), connected by a shaft (3), characterized
in that
said handle assembly (1') comprises a handle (1), coupled by a first tubular element
(4), the engaged end being integral therewith, and by means of a boss (7) to a second
tubular element (12) arranged in a substantially central position on the upper part
(11) of a support case (10), substantially in the shape of a parallelepipedon, a first
bore (8) being formed in a substantially central position on said boss (7), there
being formed in the lower part (16) of said case (10) a first housing (17) of substantially
circular form and a pair of grooves (18, 18') arranged in a diametrically opposite
position with respect to said first housing and in communication therewith, a positioning
ring (20) with a square opening (21) being arranged in said first housing, a plurality
of indentations (23) being formed symmetrically around the external edge (22) of said
ring, said indentations being arranged so as to cooperate with spherical elements
(24) held against said outer edge by the action of spring elements (25) housed inside
said grooves, a pair of bores (13, 13') being formed in said support case, in a position
substantially symmetrical to said second tubular element (12);
said shaft (3) has a square cross-section substantially coinciding with that of
said opening (21), and can be inserted into said first tubular element,
said moving mechanism comprises a box-shaped body (35) substantially in the shape
of a parallelepipedon and a first closing plate (36), a second bore (37) being formed
on said plate, a second housing (41) of a substantially circular shape being formed
within said box-shaped body, said second housing holding a sprocket wheel (38) in
movable engagement in a coaxial relation with an adaptor (40) having a square internal
opening (39) capable of engaging with said shaft, said mechanism further comprising
a pair of rack elements (44, 45) cooperating with said sprocket wheel (38), each of
said elements being integral with a respective guide (46, 47) and each of said guides
sliding in a respective straight guide housing (50, 51), elements (48, 49) for engagement
of a pair of rods (59, 60) being formed on each one of said guides,
the arrangement being such that rotation of said handle between two angular positions
adjusted by the cooperation between said positioning ring and said spherical elements,
causes, through said shaft, rotation of said sprocket wheel and movement in an opposite
direction of said rack elements, causing a corresponding movement of said rods.
2. Kinematic device according to claim 1, characterized in that on the inner surface
of said first bore a projection (9) is formed, and between said first tubular element
and said boss are arranged a spring element (6) and a spacing washer (5), said boss
also being provided with an edge (33) that is complementary to a step (34) formed
on the edge (15) of said case,
the arrangement being such that in working conditions said boss is pushed against
said case and held in position by the reciprocal engagement of said boss and said
step.
3. Kinematic device according to claims 1 or 2, characterized in that on the upper surface
(11) of said case, in a substantially symmetrical position with respect to said second
tubular element, are formed a pair of bores (13, 13'), and a pair of bevels (14, 14')
are formed on said edge, the arrangement being such that said bevels facilitate opening
of the boss to access the bores (13, 13').
4. Kinematic device according to claims 1 to 3, characterized in that each element of
said pair of rack elements has a plurality of bores (52, 52'....52n) and (53, 53'...
53n) respectively, formed in a spaced relationship corresponding to the teeth (38')
in said sprocket wheel.
5. Kinematic device according to claim 4, characterized in that the bore in said rack
elements, formed close to the end of said rack elements not engaged with said guides,
is open at the bottom.
6. Kinematic device according to claims 1 to 3, characterized in that said support case
is closed in the lower part by a second closing plate (26) having a third bore (27)
in a substantially central position.
7. Kinematic device according to claim 1, characterized in that the side of said square
cross-section shaft measures 7 mm and the distance between said bores (13) and (13')
in said handle assembly is 43 mm.