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(11) |
EP 4 043 676 B1 |
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EUROPEAN PATENT SPECIFICATION |
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Mention of the grant of the patent: |
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17.04.2024 Bulletin 2024/16 |
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Date of filing: 10.02.2022 |
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International Patent Classification (IPC):
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COMPRESSION LOCK
KOMPRESSIONSSCHLOSS
VERROUILLAGE PAR COMPRESSION
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Designated Contracting States: |
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AL AT BE BG CH CY CZ DE DK EE ES FI FR GB GR HR HU IE IS IT LI LT LU LV MC MK MT NL
NO PL PT RO RS SE SI SK SM TR |
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Priority: |
11.02.2021 IT 202100003035
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Date of publication of application: |
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17.08.2022 Bulletin 2022/33 |
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Proprietor: F.A.P. S.R.L. |
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50142 Firenze (IT) |
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Inventor: |
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- ERMINI, Massimo
50139 Firenze (IT)
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Representative: Savi, Massimiliano et al |
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Notarbartolo & Gervasi S.p.A.
Viale Achille Papa, 30 20149 Milano 20149 Milano (IT) |
| (56) |
References cited: :
EP-A1- 3 287 578 WO-A1-00/58585
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EP-A1- 3 578 745 US-A1- 2014 284 946
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| Note: Within nine months from the publication of the mention of the grant of the European
patent, any person may give notice to the European Patent Office of opposition to
the European patent
granted. Notice of opposition shall be filed in a written reasoned statement. It shall
not be deemed to
have been filed until the opposition fee has been paid. (Art. 99(1) European Patent
Convention).
|
FIELD OF THE INVENTION
[0001] The present invention relates to the field of closing devices and safety locks for
doors and hatches; in greater detail, the present invention relates to the technical
field of locks for doors, tailgates, and hatches, in particular for motor vehicles,
such as vans, caravans, motorhomes and the like.
BACKGROUND ART
[0002] In the field of closing devices and safety locks for doors and hatches, devices generally
comprising a lock body applied integrally to the concerned door, which houses a shaft,
adapted to guide a closing sliding bolt integral with an end of said shaft, are available
on the market. A rotational actuating knob is associated with said shaft and is adapted
to actuate it by rotating it and then translating it in an axial direction to close
the rotational lock of the so-called "screw lock" type to which it belongs.
[0003] Said rotational knob is further generally provided with a cylinder lock, or similar
key locking means, which makes locking with a key possible.
[0004] In general, in the closing systems used in the field of closing devices and safety
locks for doors and hatches, and in particular for doors of motor vehicles such as
vans, caravans, motorhomes, and the like, the closing of the so-called "screw lock"
type always contemplates the actuation of the handle, which must be rotated by 180
degrees to close and then fasten. Patent document
US 2014/284946 A1 discloses an example of a lever operated compression latch having an elongated, hook-ended
pawl carrying a longitudinal slot, to be cam guided and pin rotated while translated
to engage and withdraw from a keeper cup. An example of a lock of the compression
type used for doors and hatches is known from
EP 3 287 578 A1.
[0005] It is an object of the present patent application to introduce a snap-closing device
for doors and hatches, with particular reference to the doors and hatches of motor
vehicles such as vans, caravans, motorhomes, and the like, which makes it possible
to introduce a greater simplicity and practicality than the known closing devices
of the "screw lock" type and preferably not protruding from the wall profile.
[0006] The invention achieves the purpose with a lock according to claim 1, adapted to close,
by compression, a door, a tailgate, a hatch, comprising a handle block adapted to
be integrally fixed to the outer side of a door, said handle block comprising a handle
associated with a rotor and adapted to rotate on an axis parallel to the plane of
the door from a first position to a second position, wherein said first position corresponds
to a closing position of said lock and said second position corresponds to an opening
position of said lock. The handle block is engaged by means of the rotor to a closing
block adapted to be integrally fixed onto the inner side of said door and comprises
reversible engagement means with the door frame. The reversible engagement means comprise
a bolt adapted to rotate to promote the engagement with the frame of said door and
to translate in an axial direction to successively fasten the door. The reversible
engagement means, actuated by the handle, through a kinematic mechanism, convert the
rotary motion of the rotor into a compound motion comprising, in sequence:
a translatory type motion in the axial distancing direction of the bolt from the frame
followed by a rotational type of motion in the circumferential distancing direction
of the bolt from the frame when the handle moves from the first to the second position;
a rotational type of motion in the circumferential approaching direction of the bolt
to the frame followed by a translatory type motion in the axial approaching direction
of the bolt to the frame when the handle moves from the second to the first position.
[0007] According to the invention, the reversible engagement means comprise a shaft connected
at one end to the bolt, the other end being coupled to the kinematic mechanism so
that the shaft can both rotate and translate axially allowing the bolt to perform
a corresponding roto-translation.
[0008] The closing device of the present invention can be applied to the doors of vans,
caravans, motorhomes, and the like and is characterized as an improvement of the conventional
"screw lock" devices which perform both the closing and fastening by means of a simple
continuous rotary movement of the handle which occurs on an axis parallel to the plane
of the door.
[0009] It is possible to use the lock according to the invention also with doors, hatches,
flaps provided with multiple locking points, because the possibility is envisaged,
in an advantageous improvement, to generate additional translatory motions to the
roto-translatory motion acting on the main bolt included in the lock body to drive
remote locking blocks by means of rods or tie-rods, thus achieving an effective compression
closing through the use of a single handle.
DESCRIPTION OF THE DRAWINGS
[0010] Further objects, features, and advantages of the present invention will be more apparent
from the following detailed description provided by way of nonlimiting example and
illustrated in the accompanying figures, in which:
Fig. 1 shows some views of the outer side (front: Fig. 1a, from above: Fig. 1b, rear:
Fig. 1c) and the inner side (from above: Fig. 1d, from below: Fig. 1e) of a lock according
to a preferred embodiment of the present invention in a first operating position;
Fig. 2 shows the same views as the previous figure with the lock in a second operating
position;
Fig. 3 shows the same views as the previous figures with the lock in a third operating
position;
Fig. 4 shows the same views as the previous figures with the lock in a fourth operating
position;
Fig. 5 shows a perspective view of a rotatable scope device capable of converting
a rotational motion into a roto-translatory mode for driving a bolt of the lock according
to the invention;
Fig. 6 shows an example of a closing block which can be driven by a lock according
to the invention;
Fig. 7 shows an example of a closing block which can be driven by a lock according
to the invention, and
Fig. 8 shows the same views as Figs. 3a and 3b with highlighted an example of a mechanism
which can be employed to transform the rotational motion of the handle into the rotational
motion of the rotor which drives the bolt of the lock according to the invention.
[0011] The following description of exemplary embodiments relates to the accompanying drawings.
The same reference numbers in the various drawings identify the same elements or similar
elements. The following detailed description does not limit the invention. The scope
of the invention is defined by the appended claims.
DETAILED DESCRIPTION OF THE INVENTION
[0012] With reference to the accompanying figures, a preferred embodiment of the present
invention comprises a handle block 10, adapted to be integrally fixed to the outer
side of a door, comprising a handle 11 associated with a rotor 111, engaged with a
closing block 20 adapted to be integrally fixed to the inner side of the door at the
handle block 10 and comprising a shaft 19 and a bolt 16.
[0013] The handle block 10 may be provided with a limit stop device and may comprise a cylinder
lock adapted to control a stop bolt adapted to engage, in the closing position, with
an appropriate housing on the handle 11, said handle 11 being preferably of the retractable
type.
[0014] Fig. 1b shows the handle 11 in a first position flush with the door while Fig. 4b
shows the handle 11 in a second position substantially at 90° to the first position.
The first position corresponds to a closing position of the lock while the second
position corresponds to an opening position of the lock. By rotating the handle from
the first to the second position and vice versa, the door can be opened/closed without
the need for further movements as described in more detail below.
[0015] The handle block 10 comprises reversible means adapted to transform the rotational
motion of the handle 11, which occurs on an axis parallel to the plane of the door,
into a rotational motion of the rotor 111, which occurs on an axis perpendicular to
the plane of the door. For example, such reversible means may comprise a connecting
rod/crank coupling 113 as shown in Fig. 8.
[0016] The rotor 111 moves the closing block 20. The handle block 10 and the closing block
20 are typically two separate devices, but can also be advantageously integrated into
the same lock component.
[0017] The closing block 20 comprises reversible engagement means with the door frame that
advantageously comprise an element 16, named a bolt, adapted to rotate by means of
a shaft 19 fixed at one end to facilitate engagement with the door frame 14 of the
door. During the rotation, the bolt 16 moves from an opening position, in which it
is substantially parallel to the perimeter edge of the door frame 14 as shown in Figs.
4d and 4e to a closing position in which the bolt 16 is rotated substantially 90°
to a position substantially perpendicular to the perimeter edge of the door frame
14 as shown in Fig. 3e.
[0018] The shaft 19 can translate in the axial direction. When the bolt 16 is in the closing
position, the door is fastened by moving the shaft 19 axially in the approaching direction
of the bolt 16 to the lock body 10.
[0019] In other words, during the step of closing, the bolt 16 rotates firstly to promote
the engagement with the frame 14 of said door and then translates axially to press
the door onto its frame 14 and fasten the door itself.
[0020] Then, after a first initial rotation which makes the bolt 16 rotate to circumferentially
approach the peripheral edge of the frame 14 of the door, a further rotation of the
handle 11 to the limit stop does not apply further rotations to the bolt 16, instead,
it applies an axial translation, orthogonal to the plane of the door, such to reduce
the distance between the bolt 16 itself and the plane of the door on which the closing
block 20 is fixed. This axial translation is adapted to progressively compress the
door onto its frame 14, guaranteeing the right squeezing of the seals possibly placed
on the edge of the door or of the frame 14 and achieving the fastening of the door.
[0021] The door is opened by performing the same steps in reverse. The initial rotation
of the handle 11 in the opposite direction causes the axial translation of the bolt
16 so that the distance between the bolt and the door is increased. The successive
rotation in the same direction induces rotation of the bolt 16, which thus disengages
from the frame 14.
[0022] With reference to Fig. 1-4, the working steps required to open the door can be summarized
as follows:
STEP 1
[0023]
- The handle 11 is flush with the handle block 10;
- The rotor 111 is positioned to keep the bolt 16 of the inner portion compressed on
the frame of the tailgate 14 at position X as shown in Fig. 1d;
- The hatch is closed; the seals are compressed.
STEP 2
[0024]
- By applying light pressure to the point on the handle shown in Fig. 2a, the handle
rotates by the clearance angle A. Releasing this pressure, the handle returns flush
with the lock body. For this purpose, the handle block advantageously comprises a
pressure zone 112, the pressure of which causes the handle 11 to rotate from its rest
position to its maximum angular extension defined by the release angle A. Spring-return
means then return the handle to its home position when the pressure is released.
- By maintaining the pressure, it is possible to grasp the handle 11 and apply the force
needed to proceed to STEP 3;
- With handle 11 rotated by angle A, the rotor remains in the same position as in STEP
1;
- In this step, the rotation of the handle 11 does not generate any rotation of the
rotor 111;
- The hatch remains closed, the seals still compressed.
STEP 3
[0025]
- By applying the right force, the handle 11 rotates by an angle B as shown in Fig.
3b;
- The movement of the handle 11 rotates the rotor 111 which is engaged with the closing
block 20 and drives the bolt 16 which is distanced from the frame 14 by a quantity
Y, decompressing the seals as shown in Fig. 3d;
- The hatch is still closed, but the seals are decompressed.
STEP 4
[0026]
- As the rotation continues, the handle 11 moves to the limit of its travel at an angle
C shown in Fig. 4b;
- The rotor 111 concludes its rotation by causing the bolt 16 to rotate, which frees
the hatch from the frame 14.
- The tailgate is open.
[0027] With the tailgate open (STEP 4) the handle 11 stays open at an angle between B and
C.
[0028] With the door closed (STEP 1), the handle 11 returns flush with the lock body 10.
[0029] In normal operation, STEP 3 and STEP 4 are sequential and nothing is felt on the
handle, the decompression and rotation of the bolt occur in a single movement that
starts at angle A and arrives at angle C.
[0030] The closing and compression of the seals are accomplished by closing the hatch and
pushing the handle 11 into the handle block 10.
[0031] The insertion of the safety device can take place with any position of the handle,
if this is open at the next closing it will lock in the position of step 1.
[0032] With the safety lock engaged, pressing the pressure zone 112 does not open the handle
11.
[0033] For such a sequence of movements to take place, the reversible engagement means are
advantageously driven by the handle 11 which, by means of a kinematic mechanism, converts
the rotary motion of said handle, which takes place on an axis parallel to the plane
of the door, into a rotary motion of the rotor 111, which takes place on an axis perpendicular
to the plane of the door. The rotor 111 is engaged with the closing block 20 which,
through a kinematic mechanism, converts said rotational motion into a compound motion
comprising, in sequence:
- a translatory type motion in the axial distancing direction of the bolt 16 from the
frame 14 followed by a rotational type of motion in the circumferential distancing
direction of the bolt 16 from the frame 14 when the handle 11 moves from the first
to the second position;
- a rotational type of motion in the circumferential approaching direction of the bolt
16 to the frame 14 followed by a translatory type motion in the axial approaching
direction of the bolt 16 to the frame 14 when the handle 11 moves from the second
to the first position.
[0034] The handle 11 typically moves within a circular sector defined by a predetermined
release angle (A) relative to its angular resting position corresponding to the closing
of the lock which corresponds an absence of motion of the shaft 19.
[0035] The conversion of the rotational motion of the closing block 20, may be advantageously
performed by means of a cam device which moves on a cam guide so that there is no
simultaneous roto-translation of the shaft 19, but the rotational and translatory
motions of the shaft 19 occur in a defined time succession.
[0036] Fig. 5 shows a solution which employs a screwlock 21 adapted to guide the shaft 19
inside, in a rotational and axially translatable manner, by means of a pin 22 adapted
to engage both with said shaft 19 and said guide 23 present on said screwlock 21,
said screwlock 21 further comprising an adjustment bushing 24 adapted to cooperate
with said pin 22 and with said guide 23 to allow said screwlock 21 to rotate relatively
to said shaft 19, while said shaft 19 translates axially.
[0037] The lock according to the invention is particularly advantageous when the door, tailgate,
or hatch to which it is applied requires more than one locking point.
[0038] For this purpose, a variant envisages the use of a kinematic mechanism adapted to
transform the motion of the handle 11 into one or more further translatory motions
transverse to the translatory motion of the bolt 16 to allow said translatory motions
to be remotely transmitted to one or more closing blocks 13 by means of one or more
rods or tie-rods 12.
[0039] The kinematic mechanism may advantageously comprise a gear and one or more racks
associated with one or more levers 17 so that the rotation of the gear causes the
translation of said one or more levers.
[0040] According to an embodiment, the further translatory motions are advantageously transferred
to a pair of levers 17 arranged on the opposite sides of the closing block 20, which
levers 17 are configured to move in the same transverse direction relative to the
axial motion of the bolt 16, but with opposite orientations.
[0041] In a further configuration, the lock comprises:
a plurality of rods or tie-rods 12 associated, at a first end, with the kinematic
mechanism;
one or more closing blocks 13, e.g., of the compression type, adapted to be fixed
to said door and each associated with a second end of a rod or tie-rod 12 of said
plurality of rods or tie-rods 12, said closing blocks 13 comprising reversible engagement
means with the frame 14 of said door that can be actuated by means of said rods or
tie-rods 12.
[0042] The reversible engagement means of the closing locks 13 typically comprise, like
the closing assembly 20, a bolt 16' adapted to rotate to promote the engagement with
the frame 14 of said door, and to translate in an axial direction, to carry out the
successive fastening of the door.
[0043] Advantageously, the closing blocks 13 each comprise a shaft having the rotation axis
25 substantially orthogonal to the plane of the door, and connected with an end to
said sliding door bolt 16' and with the other end to a toothed wheel 17, e.g., eccentric
relative to the axis of said shaft and adapted to engage with a rack 18 connected,
in turn, to said second end of the rod 12. A same screwlock configuration can convert
the rotational motion of the toothed wheel to roto-translatory motion of the bolt
in a manner similar to that seen for the bolt of the handle assembly.
[0044] In this manner, a very reliable and easy-to-use compression lock is created that
can guarantee a seal that is all the greater the higher the number of closing blocks
used, all operated by simply turning a handle.
[0045] The description of the preferred embodiments of the invention above refers to the
accompanying drawings. The same reference numbers in the various figures identify
the same elements or similar elements. The detailed description given above does not
limit the scope of the disclosed invention because the scope of protection of the
present invention is defined by the accompanying claims.
1. A lock comprising a handle block (10) adapted to be integrally fixed to the outer
side of a door, said handle block (10) comprising a handle (11) associated with a
rotor (111) and adapted to rotate on an axis parallel to the plane of the door from
a first position to a second position, wherein said first position corresponds to
a closing position of said lock and said second position corresponds to an opening
position of said lock, said handle block (10) being engaged by means of the rotor
(111) to a closing block (20) adapted to be integrally fixed onto the inner side of
said door and comprising reversible engagement means adapted to cooperate with a frame
(14) of said door, said reversible engagement means comprising a bolt (16) adapted
to rotate, so as to promote the engagement with the frame (14) of said door, and to
translate in an axial direction, to carry out the subsequent locking of the door,
said reversible engagement means being actuatable by the handle (11) through a kinematic
mechanism which converts the rotation that occurs on an axis parallel to the plane
of the door into a compound motion comprising, in sequence:
a translatory type motion in the axial distancing direction of the bolt (16) from
the frame (14) followed by a rotational type of motion in the circumferential distancing
direction of the bolt (16) from the frame (14) when the handle (11) moves from the
first to the second position;
a rotational type of motion in the circumferential approaching direction of the bolt
(16) to the frame (14) followed by a translatory type motion in the axial approaching
direction of the bolt (16) to the frame when the handle (11) moves from the second
to the first position, characterized in that the reversible engagement means comprise a shaft (19) connected at one end to the
bolt (16), the other end being coupled to the kinematic mechanism so that the shaft
(19) can both rotate and translate axially allowing the bolt (16) to perform a corresponding
roto-translation.
2. A lock according to claim 1, wherein the conversion of the rotational motion of the
rotor (111) of the handle block (10) is performed by means of a cam device which moves
on a cam guide so that there is no simultaneous roto-translation of the shaft (19),
but the rotational and translational motions of the shaft (19) occur in a defined
time in succession.
3. A lock according to one or more of the preceding claims, wherein the handle (11) moves
within a circular sector defined by a predetermined release angle (A) relative to
its angular resting position corresponding to the closing of the lock to which corresponds
an absence of motion of the shaft (19).
4. A lock according to claim 3, wherein at the angular handle resting position (11) corresponding
to the closing of the lock, the handle (11) is flush with the handle block (10) in
a position substantially coplanar with the door.
5. A lock according to claim 3 or 4, wherein the handle block (10) comprises a pressure
zone (112), the pressure of which determines the rotation of the handle (11) from
its resting position to its maximum angular extension defined by the release angle
(A), spring return means being present to return the handle (11) to its resting position
when the pressure is released.
6. A lock according to one or more of the preceding claims, wherein the kinematic mechanism
comprises a screwlock (21) adapted to guide the shaft (19) inside, in rotation and
axially translatable manner, by means of a pin (22) adapted to engage both with said
shaft (19) and said guide (23) present on said screwlock (21), said screwlock (21)
further comprising an adjustment bushing (24) adapted to cooperate with said pin (22)
and with said guide (23) to allow said screwlock (21) to rotate relative to said shaft
(19), while said shaft (19) translates axially.
7. A lock according to one or more of the preceding claims, wherein a kinematic mechanism
is provided for transforming the motion of the handle (11) into one or more further
translatory motions transverse to the translatory motion of the bolt (16) to allow
said translatory motions to be remotely transmitted to one or more closing blocks
(13) by means of one or more rods or tie-rods (12).
8. A lock according to claim 7, wherein the kinematic mechanism comprises a gear and
one or more racks associated with one or more levers (17) so that the rotation of
the gear causes the translation of said one or more levers (112).
9. A lock according to claim 7 or 8, wherein the further translatory motions are transferred
to a pair of levers (17) arranged on the opposite sides of the locking block (20),
said levers (17) being configured to move in the same transverse direction relative
to the axial motion of the bolt (16), but with opposite orientations.
10. A lock according to one or more of the preceding claims 7 to 9, characterized in that it further comprises a plurality of rods or tie-rods (12) associated, at a first
end, with said kinematic mechanism;
one or more closing blocks (13) adapted to be fixed to said door and each associated
with a second end of a rod or tie-rods (12) of said plurality of rods or tie-rods
(12), said closing blocks (13) comprising reversible engagement means with the frame
(14) of said door which can be actuated by means of said rods or tie-rods (12).
11. A lock according to claim 10, characterized in that said closing blocks (13) are of the compression type.
12. A lock according to claim 10 or 11, characterized in that said reversible engagement means of the closing blocks (13) comprise a sliding door
bolt (16) adapted to rotate, to promote the engagement of said door with the frame
(14) and to translate in an axial direction to successively lock the door.
13. A lock according to one or more of the preceding claims from 10 to 12, characterized in that said closing blocks (13) each comprise a shaft (19) having the rotation axis (25)
substantially orthogonal to the plane of the door, and connected by an end to said
sliding door bolt (16) and by the other end to a toothed wheel (17), e.g. eccentric
relative to the axis of said shaft (19) and adapted to engage with a rack (18) connected,
in turn, to said second end of the rod (12).
14. A lock according to one or more of the preceding claims, characterized in that said handle block (10) comprises a cylindrical lock adapted to control a stop bolt
adapted to engage with an appropriate housing present on the handle (11) in the closing
position.
15. A lock according to one or more of the preceding claims, characterized in that said locking block (20) and said handle block (10) are integrated in the same component
of the lock.
16. A door characterized in that it comprises a lock according to one or more of the preceding claims.
1. Schloss, umfassend einen Griffblock (10), der zum integralen Befestigen an der Außenseite
einer Tür ausgebildet ist, wobei der Griffblock (10) einen Griff (11) umfasst, der
einem Rotor (111) zugeordnet und ausgebildet ist, sich auf einer Achse parallel zur
Ebene der Tür von einer ersten Position in eine zweite Position zu drehen, wobei die
erste Position einer Schließposition des Schlosses entspricht und die zweite Position
einer Öffnungsposition des Schlosses entspricht, wobei der Griffblock (10) mittels
des Rotors (111) mit einem Schließblock (20) in Eingriff steht, der zum integralen
Befestigen an der Innenseite der Tür ausgebildet ist und ein Mittel zum reversiblen
Eingriff umfasst, das zum Zusammenwirken mit einem Rahmen (14) der Tür ausgebildet
ist,
wobei das Mittel zum reversiblen Eingriff einen Bolzen (16) umfasst, der ausgebildet
ist, um sich zu drehen und den Eingriff mit dem Rahmen (14) der Tür zu unterstützen,
und sich in einer axialen Richtung zu verschieben, um das nachfolgende Verriegeln
der Tür durchzuführen, wobei das Mittel zum reversiblen Eingriff durch den Griff (11)
über einen kinematischen Mechanismus betätigbar ist, der die Drehung, die auf einer
Achse parallel zur Ebene der Tür auftritt, in eine zusammengesetzte Bewegung umwandelt,
die nacheinander umfasst:
eine Bewegung vom Translationstyp in der sich axial entfernenden Richtung des Bolzens
(16) von dem Rahmen (14), gefolgt von einer Bewegung vom Rotationstyp in der sich
umlaufend entfernenden Richtung des Bolzens (16) von dem Rahmen (14), wenn sich der
Griff (11) von der ersten in die zweite Position bewegt;
eine Bewegung vom Rotationstyp in der sich umlaufend annähernden Richtung des Bolzens
(16) an den Rahmen (14), gefolgt von einer Bewegung vom Translationstyp in der sich
axial annähernden Richtung des Bolzens (16) an den Rahmen, wenn sich der Griff (11)
von der zweiten in die erste Position bewegt, dadurch gekennzeichnet, dass das Mittel zum reversiblen Eingriff eine Welle (19) umfasst, die an einem Ende mit
dem Bolzen (16) verbunden ist, wobei das andere Ende mit dem kinematischen Mechanismus
gekoppelt ist, so dass sich die Welle (19) sowohl drehen als auch axial verschieben
kann, so dass der Bolzen (16) eine entsprechende Roto-Translation durchführen kann.
2. Schloss nach Anspruch 1, wobei die Umwandlung der Drehbewegung des Rotors (111) des
Griffblocks (10) mittels einer Nockenvorrichtung durchgeführt wird, die sich auf einer
Nockenführung bewegt, so dass es keine gleichzeitige Roto-Translation der Welle (19)
gibt, sondern die Dreh- und Translationsbewegungen der Welle (19) in einer definierten
Zeit nacheinander stattfinden.
3. Schloss nach einem der vorhergehenden Ansprüche, wobei sich der Griff (11) innerhalb
eines Kreissektors bewegt, der durch einen vorbestimmten Freigabewinkel (A) relativ
zu seiner Winkelruheposition definiert ist, die dem Schließen des Schlosses entspricht,
dem eine Abwesenheit von Bewegung der Welle (19) entspricht.
4. Schloss nach Anspruch 3, wobei an der Winkelruheposition des Griffs (11), die dem
Schließen des Schlosses entspricht, der Griff (11) bündig mit dem Griffblock (10)
in einer Position ist, die im Wesentlichen koplanar mit der Tür ist.
5. Schloss nach einem der Ansprüche 3 oder 4, wobei der Griffblock (10) eine Druckzone
(112) umfasst, deren Druck die Drehung des Griffs (11) aus seiner Ruheposition in
seine maximale Winkelausdehnung bestimmt, die durch den Freigabewinkel (A) definiert
ist, wobei ein Federrückstellmittel vorhanden ist, um den Griff (11) in seine Ruheposition
zurückzustellen, wenn der Druck entlastet wird.
6. Schloss nach einem der vorhergehenden Ansprüche, wobei der kinematische Mechanismus
ein Schraubschloss (21) umfasst, das ausgebildet ist, die Welle (19) innen auf drehende
und axial verschiebbare Weise mittels eines Stifts (22) zu führen, der ausgebildet
ist, um sowohl mit der Welle (19) als auch mit der Führung (23) in Eingriff zu stehen,
die an dem Schraubschloss (21) vorhanden ist, wobei das Schraubschloss (21) ferner
eine Einstellbuchse (24) umfasst, die ausgebildet ist, mit dem Stift (22) und mit
der Führung (23) zusammenzuwirken, um zu ermöglichen, dass sich das Schraubschloss
(21) relativ zu der Welle (19) dreht, während sich die Welle (19) axial verschiebt.
7. Schloss nach einem der vorhergehenden Ansprüche, wobei ein kinematischer Mechanismus
vorgesehen ist, um die Bewegung des Griffs (11) in eine oder mehrere weitere Translationsbewegungen
quer zu der Translationsbewegung des Bolzens (16) umzuwandeln, um zu ermöglichen,
dass die Translationsbewegungen aus der Ferne auf einen oder mehrere Schließblöcke
(13) mittels einer oder mehrerer Stangen oder Zugstangen (12) übertragen werden.
8. Schloss nach Anspruch 7, wobei der kinematische Mechanismus ein Zahnrad und eine oder
mehrere Zahnstangen umfasst, die einem oder mehreren Hebeln (17) zugeordnet sind,
so dass die Drehung des Zahnrads die Translation des einen oder der mehreren Hebel
(112) bewirkt.
9. Schloss nach einem der Ansprüche 7 oder 8, wobei die weiteren Translationsbewegungen
auf ein Paar Hebel (17) übertragen werden, die auf den gegenüberliegenden Seiten des
Verriegelungsblocks (20) angeordnet sind, wobei die Hebel (17) konfiguriert sind,
um sich in der gleichen Querrichtung relativ zu der axialen Bewegung des Bolzens (16),
aber mit entgegengesetzten Orientierungen zu bewegen.
10. Schloss nach einem der Ansprüche 7 bis 9, dadurch gekennzeichnet, dass es ferner umfasst: eine Vielzahl von Stangen oder Zugstangen (12), die an einem ersten
Ende dem kinematischen Mechanismus zugeordnet sind; einen oder mehrere Schließblöcke
(13), die ausgebildet sind, an der Tür befestigt zu werden, und jeweils einem zweiten
Ende einer Stange oder Zugstangen (12) der Vielzahl von Stangen oder Zugstangen (12)
zugeordnet sind, wobei die Schließblöcke (13) ein Mittel zum reversiblen Eingriff
mit dem Rahmen (14) der Tür umfassen, das mittels der Stangen oder Zugstangen (12)
betätigt werden kann.
11. Schloss nach Anspruch 10, dadurch gekennzeichnet, dass die Schließblöcke (13) vom Kompressionstyp sind.
12. Schloss nach einem der Ansprüche 10 oder 11, dadurch gekennzeichnet, dass das Mittel zum reversiblen Eingriff der Schließblöcke (13) einen Schiebetürbolzen
(16) umfasst, der ausgebildet ist, um sich zu drehen und den Eingriff der Tür mit
dem Rahmen (14) zu unterstützen, und sich in einer axialen Richtung zu verschieben,
um die Tür nacheinander zu verriegeln.
13. Schloss nach einem der Ansprüche 10 bis 12, dadurch gekennzeichnet, dass die Schließblöcke (13) jeweils eine Welle (19) umfassen, die die Drehachse (25) im
Wesentlichen orthogonal zur Ebene der Tür aufweist, und durch ein Ende mit dem Schiebetürbolzen
(16) und durch das andere Ende mit einem Zahnrad (17) verbunden ist, das z. B. exzentrisch
relativ zur Achse der Welle (19) ist und ausgebildet ist, mit einer Zahnstange (18)
in Eingriff zu stehen, die wiederum mit dem zweiten Ende der Stange (12) verbunden
ist.
14. Schloss nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass der Griffblock (10) ein zylindrisches Schloss umfasst, das ausgebildet ist, einen
Stoppbolzen zu steuern, der ausgebildet ist, um mit einem geeigneten Gehäuse in Eingriff
zu stehen, das an dem Griff (11) in der Schließposition vorhanden ist.
15. Schloss nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass der Verriegelungsblock (20) und der Griffblock (10) in dieselbe Komponente des Schlosses
integriert sind.
16. Tür, dadurch gekennzeichnet, dass sie ein Schloss nach einem der vorhergehenden Ansprüche umfasst.
1. Serrure comprenant un bloc de poignée (10) pouvant être fixée intégralement sur le
côté extérieur d'une porte, ledit bloc de poignée (10) comprenant une poignée (11)
associée à un rotor (111) et pouvant tourner sur un axe parallèle au plan de la porte
d'une première position à une seconde position, dans laquelle ladite première position
correspond à une position de fermeture de ladite serrure et ladite seconde position
correspond à une position d'ouverture de ladite serrure, ledit bloc de poignée (10)
étant engagé au moyen du rotor (111) dans un bloc de fermeture (20) pouvant être fixé
intégralement sur le côté intérieur de ladite porte et comprenant des moyens d'engagement
réversible pouvant coopérer avec un cadre (14) de ladite porte,
lesdits moyens d'engagement réversible comprennent un pêne (16) pouvant tourner, de
manière à favoriser l'engagement avec le cadre (14) de ladite porte, et se déplacer
dans une direction axiale, pour effectuer le verrouillage ultérieur de la porte, lesdits
moyens d'engagement réversible pouvant être actionnés par la poignée (11) par l'intermédiaire
d'un mécanisme cinématique qui convertit la rotation qui se produit sur un axe parallèle
au plan de la porte en un mouvement composé comprenant, en séquence :
un mouvement de type translation dans le sens de l'éloignement axial du pêne (16)
par rapport au cadre (14) suivi d'un mouvement de type rotation dans le sens de l'éloignement
circonférentiel du pêne (16) par rapport au cadre (14) lorsque la poignée (11) passe
de la première à la seconde position ;
un mouvement de type rotation dans la direction d'approche circonférentielle du pêne
(16) vers le cadre (14) suivi d'un mouvement de type translation dans la direction
d'approche axiale du pêne (16) vers le cadre lorsque la poignée (11) passe de la seconde
à la première position, caractérisé en ce que les moyens d'engagement réversible comprennent un arbre (19) relié à une extrémité
du pêne (16), l'autre extrémité étant couplée au mécanisme cinématique de sorte que
l'arbre (19) peut à la fois tourner et se déplacer axialement, ce qui permet au pêne
(16) d'effectuer une rotation-translation correspondante.
2. Serrure selon la revendication 1, dans laquelle la conversion du mouvement de rotation
du rotor (111) du bloc de poignée (10) est effectuée au moyen d'un dispositif à came
qui se déplace sur un guide de came, de sorte qu'il n'y a pas de rotation-translation
simultanée de l'arbre (19), mais que les mouvements de rotation et de translation
de l'arbre (19) se succèdent dans un laps de temps défini.
3. Serrure selon l'une ou plusieurs des revendications précédentes, dans laquelle la
poignée (11) se déplace à l'intérieur d'un secteur circulaire défini par un angle
de libération (A) prédéterminé par rapport à sa position angulaire de repos correspondant
à la fermeture de la serrure à laquelle correspond une absence de mouvement de l'arbre
(19).
4. Serrure selon la revendication 3, dans laquelle, à la position angulaire de repos
de la poignée (11) correspondant à la fermeture de la serrure, la poignée (11) affleure
le bloc de poignée (10) dans une position sensiblement coplanaire avec la porte.
5. Serrure selon la revendication 3 ou 4, dans laquelle le bloc de poignée (10) comprend
une zone de pression (112) dont la pression détermine la rotation de la poignée (11)
depuis sa position de repos jusqu'à son extension angulaire maximale définie par l'angle
de libération (A), des moyens de rappel à ressort étant présents pour ramener la poignée
(11) à sa position de repos lorsque la pression est relâchée.
6. Serrure selon l'une ou plusieurs des revendications précédentes, dans laquelle le
mécanisme cinématique comprend un screwlock (21) pouvant guider l'arbre (19) à l'intérieur,
en rotation et de manière axialement en translation, au moyen d'une broche (22) pouvant
s'engager à la fois avec ledit arbre (19) et ledit guide (23) présent sur ledit screwlock
(21), ledit screwlock (21) comprenant en outre une douille de réglage (24) pouvant
coopérer avec ladite broche (22) et avec ledit guide (23) afin de permettre au screwlock
(21) de tourner par rapport audit arbre (19), tandis que ledit arbre (19) se déplace
axialement.
7. Serrure selon l'une ou plusieurs des revendications précédentes, dans laquelle un
mécanisme cinématique est prévu pour transformer le mouvement de la poignée (11) en
un ou plusieurs autres mouvements de translation transversaux au mouvement de translation
du pêne (16) pour permettre auxdits mouvements de translation d'être transmis à distance
à un ou plusieurs blocs de fermeture (13) au moyen d'une ou plusieurs tiges ou tirants
(12).
8. Serrure selon la revendication 7, dans laquelle le mécanisme cinématique comprend
un engrenage et une ou plusieurs crémaillères associées à un ou plusieurs leviers
(17) de sorte que la rotation de l'engrenage entraîne la translation dudit ou desdits
leviers (112).
9. Serrure selon la revendication 7 ou 8, dans laquelle les autres mouvements de translation
sont transférés à une paire de leviers (17) disposés sur les côtés opposés du bloc
de verrouillage (20), lesdits leviers (17) étant configurés pour se déplacer dans
la même direction transversale par rapport au mouvement axial du pêne (16), mais avec
des orientations opposées.
10. Serrure selon l'une ou plusieurs des revendications précédentes 7 à 9, caractérisée en ce qu'elle comprend en outre une pluralité de tiges ou tirants (12) associés, à une première
extrémité, audit mécanisme cinématique ;
un ou plusieurs blocs de fermeture (13) pouvant être fixés à ladite porte et associés
chacun à une seconde extrémité d'une tige ou de tirants (12) de ladite pluralité de
tiges ou de tirants (12), lesdits blocs de fermeture (13) comprenant des moyens d'engagement
réversible avec le cadre (14) de ladite porte qui peuvent être actionnés au moyen
desdites tiges ou tirants (12).
11. Serrure selon la revendication 10, caractérisée en ce que lesdits blocs de fermeture (13) sont du type à compression.
12. Serrure selon la revendication 10 ou 11, caractérisée en ce que lesdits moyens d'engagement réversible des blocs de fermeture (13) comprennent un
pêne de porte coulissante (16) pouvant tourner, pour favoriser l'engagement de ladite
porte avec le cadre (14) et à se translater dans une direction axiale pour verrouiller
successivement la porte.
13. Serrure selon l'une ou plusieurs des revendications précédentes de 10 à 12, caractérisée en ce que lesdits blocs de fermeture (13) comprennent chacun un arbre (19) ayant l'axe de rotation
(25) sensiblement orthogonal au plan de la porte, et relié par une extrémité audit
pêne de porte coulissante (16) et par l'autre extrémité à une roue dentée (17), par
exemple excentrique par rapport à l'axe dudit arbre (19) et pouvant s'engager avec
une crémaillère (18) reliée, à son tour, à ladite seconde extrémité de la tige (12).
14. Serrure selon l'une ou plusieurs des revendications précédentes, caractérisée en ce que ledit bloc de poignée (10) comprend une serrure cylindrique adaptée pour commander
un pêne d'arrêt pouvant s'engager dans un logement approprié présent sur la poignée
(11) en position de fermeture.
15. Serrure selon l'une ou plusieurs des revendications précédentes, caractérisée en ce que ledit bloc de verrouillage (20) et ledit bloc de poignée (10) sont intégrés dans
le même composant de la serrure.
16. Porte caractérisée en ce qu'elle comprend une serrure selon l'une ou plusieurs des revendications précédentes.
REFERENCES CITED IN THE DESCRIPTION
This list of references cited by the applicant is for the reader's convenience only.
It does not form part of the European patent document. Even though great care has
been taken in compiling the references, errors or omissions cannot be excluded and
the EPO disclaims all liability in this regard.
Patent documents cited in the description