Technical Field
[0001] The present invention relates to a cost effective, easily operable, and highly adaptable
locking system for fire-retardant shutters. In particular, the invention concerns
a system for locking a fire shutter or a mechanism that opens or closes a fire shutter,
said system comprising at least two movable plates coupled together by means of a
magnet, and an actuation member, such as a pawl or a pin.
Background for the invention
[0002] Fire spreads in a matter of minutes to seconds, generating hazardous fumes that can
render people disoriented or even unconscious. Therefore, during fire in a building
a quick intervention to ensure the advancing smoke is locked off and the fire progression
is delayed provides a key factor in saving lives.
[0003] For this and more reasons, there is a constant need for developing faster reacting
and more efficient active fire barriers in order to buy as much time as possible for
a safe escape of fire victims.
[0004] Active barriers are any barriers that move in the event of fire into their fire operational
position. Usually, they range from 600°C-sustaining barriers (smoke barriers) to full
four-hour to two-hour fire resistance (fire barriers). Traditionally, active fire
barriers contain a housing, or a frame, that can be mounted in an architectural opening
and a shutter door movable in the housing.
[0005] The importance of being able to quickly change between open and closed position of
the barrier door accounts for the fact that in most fire shutters the door movement
is designed to be light, effortless, and swift. Consequently, without proper locking
systems for capturing the shutter door in a desired position inside the housing, the
door could be easily moved due to e.g. falling objects or pressures caused by the
difference of temperatures on both of sides of the door. For this reason, efficient
locking of the shutter door or of the mechanism for moving the shutter door is paramount
for the shutter's function as a smoke or fire barrier because any undue leakiness
could lead to spreading of toxic fumes and quicker passing of flames.
[0006] On the other hand, it is desirable for the locking system to be reversible, i.e.
to be reversible to a disengaged state once the locking system is engaged and
vice versa. This allows for reusing undamaged shutters following e.g. fire drills or false alarms,
and thus has the advantage of being more economical.
[0007] The reversibility of locking can be achieved by the use of a magnet or an electromagnet.
An example of a mechanism employing a magnet can be found e.g. in
US5245879. The document teaches a break for closing a fire shutter coupled to a time-delay
mechanism that acts upon said break to prevent it from closing the shutter in case
of a regular power failure and not fire. The mechanism includes an electromagnet,
a timer connected to the electromagnet, and an actuation member also connected to
the electromagnet. The actuation member is movable between an engaged position and
a released position. The actuation member is engageable with the fire barrier such
that when it is in an engaged position, the actuation member prevents closure of the
fire barrier; conversely, when the actuation member is in a released position, it
allows closing of the fire barrier. The electromagnet connected to the actuation member
maintains it in the engaged position when power is supplied to the electromagnet and
moves the actuation member to the released position when power is no longer supplied
to the magnet. Furthermore, the electromagnet returns the actuation member to the
engaged position when power is restored, thereby automatically resetting the brake
actuation member.
[0008] As another example,
US5850865 teaches a locking device for a fire curtain comprising two solenoids - an AC solenoid
and a DC solenoid. For example, the DC solenoid is coupled to a spring that acts against
the magnetic force produced by said solenoid and is further coupled to additional
mechanical elements such as swinging pins or rods that change their position dependently
on the activation state of the solenoid.
[0009] Then,
GB768127 discloses a locking device for a rolling shutter, said device being mounted in the
frame of the shutter and consisting of pared bolts that are releasable and retractable
by means of magnetic force generated by a solenoid. The bolts are urged to their locking
positions by springs that counteract the magnetic force generated by the solenoid.
[0010] Similarly,
US7448426 discloses a locking device for a fire-proof door, said mechanism comprising a braking
pin actuatable by a spring in response to powering off a solenoid.
[0011] The locking mechanism in the above documents respond to an external trigger generated
from outside the shutter. For example, they are triggered by an electrical impulse
supplied to the shutter from a power supply station. Such dependence on external triggers
makes them more complex to manufacture as well as vulnerable to conditions of power
failure during fire.
[0012] The present invention addresses this drawback by providing a mechanically simple
locking system that is coupled to and movable with an element directly responding
to tension (for example of a band or a chain or pressure building in mechanism that
actuates closing or opening the shutter as this mechanism operates. As the locking
system according to the invention moves in direct response to the pressure or tension
arising inside the shutter mechanism, it triggers a change in position of an actuation
member that, as a result, becomes engaged (or disengaged) with the same shutter mechanism,
preventing it from further movement.
[0013] As such, the locking system of the presented-herein invention responds directly to
tension or pressure that arises in the shutter-closing or opening mechanism during
its operation and therefore it will be triggered even under emergency conditions wherein
the shutter is operated manually. Another advantage of the present locking system
that by simple modification it can easily be made re-usable through automatic rearming.
These and further advantages of the present invention are explained in continuation.
Summary of the invention
[0014] The present invention is defined in the appended independent claims. Preferred embodiments
are defined in the dependent claims. In particular, the present invention concerns
a system for a belt or chain driven opening and closing mechanism according to claim
1.
[0015] In a further aspect, the present invention also provides a fire or smoke shutter
comprising a frame, a shutter door, preferably being a rollable shutter door, and
a locking system according to the invention.
[0016] Finally, the present invention also provides a use of the locking system, as described
above, in locking a belt or chain driven shutter opening and closing mechanism.
Brief description of the Figures
[0017] For a fuller understanding of the nature of the present invention, reference is made
to the following detailed description taken in conjunction with the accompanying drawings
in which:
Figure 1A and B - schematically shows a side view of one embodiment of the present invention, wherein
panel A shows the initial state of the locking system according to the invention; panel B shows the displacement of two magnetically coupled plates (100 & 200) and stretching
of a tension-responsive resilient means (spring 500) in response to tensing of a belt
(405) that guides movement of a shutter door (not shown), followed by the engagement
of an actuation member (320) with a cogwheel (403) coupled to a mandrel (402) around
which the band (405) rotates and folds; panel C shows the withdrawal of the second plate (200) caused by cancelling of the magnetic
force between a magnet and its target (101 & 102) comprised in the two plates (100
& 200), and by contracting of the tension-responsive spring (500), which in turn causes
disengagement of the actuation member (320) from the cogwheel (403) and stretching
of a rearming spring (600) between the first (100) and the second plate (200); panel D shows the return of the locking system of the invention to the initial state due
to restoration of the magnetic force between the magnet (201) and its target (101),
and removal of the tension on the band (405) that allows rearming movement of the
first plate (100) and contracting of the rearming spring (600). Arrows indicate direction
of movement of the indicated elements.
Figure 2 schematically shows the same embodiment of the invention as showed in Figure 1 from
a frontal view. Panels A-D correspond to the panels A-D shown in Figure 1.
Figure 3A and B schematically shows another embodiment of the invention, wherein the actuation member
(302) which is separate from and coupled to the second plate (200) by means of an
extension or a coupling bolt (203). Panels A-D show the same stages of the locking
system operation as shown in panels A-D in Figures 1 and 2.
Figure 4 schematically shows a perspective projection of another embodiment of the locking
system of the invention, wherein the actuation member (302) is further coupled by
a resilient means (700) to the first plate (100).
Figure 5 shows a perspective projection of the embodiment shown in Figure 4 providing a more
detailed view of the system elements positioned inside of the support structure (400).
Figure 6 shows a perspective projection of the embodiment shown in Figures 4 and 5 as seen
from the behind, which provides a better view on the coupling extension (203) that
couples the actuation member (302) to the second plate (200).
Definitions
[0018] As used herein, the term "
fire shutter" is to be construed as any active fire- or smoke-retardant barrier comprising a shutter
door, e.g. in a form of a roller or a curtain, which in given conditions can open
or close for smoke-evacuation purposes or to counteract spreading of fire or smoke.
Similarly, the term "
fire shutter assembly" or
"shutter assembly" is to be understood as referring to a fire shutter in addition to the shutter door
also comprising support structure, such as a housing or a frame, for facilitating
positioning said shutter in an opening such as an architectural opening or a duct
opening.
[0019] Further, as used herein the term
"mechanism for opening or closing a shutter", "
opening and closing mechanism" or in short just
"shutter mechanism", is to be understood as any plurality of elements that assist, actuate, or guide
the opening or closing of a shutter door mounted in a shutter assembly. Usually, such
shutter mechanism will be comprised or mountable in a shutter housing, and can be
of any type known in the art of manufacturing fire shutters. Where rolling shutters
are concerned, i.e. comprising shutter door in a form of a roll that can wind or unwind
around a rotatable mandrel, preferably the shutter mechanism will comprise a band
(a band, or a strap) that can wind and unwind simultaneously with the rolling shutter
door, potentially serving as a guiding element for said door.
[0020] As used herein the term
"resilient means" shall be understood as any elastic element or an assembly of elements that can regain
its original shape after being bent, compressed, stretched or otherwise extended,
e.g. a spring or an elastic band.
[0021] Also, as used herein the term "
immobilised" will as fixed to support structure such as a wall or a shutter frame.
[0022] Lastly, the term "
locking system" as used herein is to be construed as an assembly of a plurality of interconnected
elements that can respond to a given change and actuate a change of a position or
a state of at least one element, further referred to as "
actuation member", capable of interacting with either the shutter door, housing, or preferably shutter
mechanism, which interaction results in either locking the ability of the shutter
door to move or unleashing said ability of a shutter door that was previously prevented
from moving due to engagement with said actuation member.
Detailed description of the invention
[0023] The present invention provides a system for locking a fire shutter via a direct engagement
of an actuation member comprised in said system with a corresponding register provided
in a shutter door, part of a frame housing said shutter door, or preferably in the
mechanism that guides opening or closing of said shutter, further referred to as the
opening and closing mechanism. The system according to the invention comprises:
- (a) a first plate (100) movably mounted in a first guide way of a support structure
(400) between a first position and a second position, said first plate (100) comprising:
(a.1) a first element (101) from a pair of a magnet and its target, said pair of the
magnet and its target being controllable such as to allow controlling of the magnetic
force exerted between the magnet and its target when both are coupled;
(a.2) a tension or pressure actuator (1 02);
- (b) a second plate (200) movably mounted along a second guide way of the support structure
(400) between a first position and a second position, the second plate (200) comprising:
(b.1) a second element (201) from a pair of a magnet and its target;
(b.2) a first resilient means (500) biasing the second plate (200) in a first position
in view of the support structure (400);
(b.3) a means providing a force biasing said second plate (200) towards the first
plate (100) allowing engagement of the magnet and its target, said means comprising
at least the magnet and its target;
(b.4) an actuation member (320, 302) allowing interaction with the opening and closing
mechanism to lock said opening and closing mechanism;
characterized in that the locking system comprises:
(c) a tension or pressure transmitter allowing transmitting of a tension or pressure
that builds in said opening and closing mechanism onto the tension actuator (102)
of the first plate (100), thereby biasing the locking system for movement in a direction
opposite to the direction of the force exerted by the first resilient means (500)
on the second plate (200) when the first (100) and second plate (200) are coupled
by the magnetic force exerted between the magnet and its target; and
(d) a control unit (900) allowing controlling of the magnetic force exerted between
the magnet and its target between
- a first strength such that the force biasing said second plate (200) towards the first
plate (100) when coupled, is larger than the force exerted by the first resilient
means (500) on the second plate (200) when said second plate (200) is positioned in
the second position, and
- a second strength such that the force biasing said second plate (200) towards the
first plate (100) when coupled, is smaller than the force exerted by the first resilient
means (500) on the second plate (200) when said first plate (200) is in positioned
in the second position.
[0024] In the system according to present invention, the actuation member (320, 302) together
with the first (100) and the second plate (200) are initially held in one position,
further referred to as the "initial position", by the tension responsive resilient
means (500). In response to sufficient tension or pressure that built up in the shutter
mechanism, the two magnetically coupled plates (100 and 200) are moved together with
the actuation member (320, 302) to a position other than the initial one, which also
results in stretching of the tension responsive resilient means (500). Depending of
the set-up of the locking system according to the invention, said movement of the
actuation member (320, 302) to a position other than the initial one may result in
either engaging or disengaging of said actuation member with respect to a corresponding
register within the shutter assembly (i.e. the assembly comprising at least a shutter
door, frame housing said shutter door, and the shutter mechanism), that, also depending
on the desired set-up, can result in either locking or unlocking the movement of the
shutter door.
[0025] The shutter mechanism can be of any type known in the art, such as a gear-box or
a band-or a chain-based mechanism such as the band-based shutter guiding mechanisms
known in rolling shutters. The first plate (100) comprises and interacts with the
shutter mechanism, through zone of said plate (100) or an element coupled thereto,
further referred to as the tension or pressure actuator (102). The tension or pressure
actuator (102) can in turn either be directly connected to the shutter mechanism or
can be pressed, pulled, or pushed by said mechanism or an element forming part of
said mechanism.
[0026] In one preferred embodiment, as schematically shown in Figures 1 to 6, the opening
and closing mechanism mechanism can advantageously be a band-based mechanism that
comprises a band (405) rollable around a mandrel (402) which can be actuated by any
suitable and known in the art motor, e.g. of an actuator-type, or manually. For example,
a suitable actuator can actuate the rotational movement of the mandrel (402) through
an axle shaft (404), thus controlling the winding and unwinding of the band (405)
around the mandrel (402). In such embodiment, the tension or pressure actuator (102)
of the first plate (100) could be a pressure actuator (102) in a form of, for example
a bolt, that extends behind the band (405) and enters in direct contact with said
band (405). Once said band (405) becomes maximally stretched due to becoming maximally
wound around the mandrel (404), the band (405) will push on the pressure actuator
(102) driving its movement in view of the support structure (400), for example inside
of a slot (401) provided in said support structure (400).
[0027] In a preferred embodiment, the opening and closing mechanism is provided as a belt
or chain-driven opening and closing mechanism and wherein the tension transmitter
comprises:
- at least two spaced apart guides (407, 402) fixed to the support structure (400);
and
- the tension actuator (102) of the first plate (100), said tension actuator (102) being
movable with the first plate (100) between a first position substantially in line
with the spaced apart guides (407, 402) and a second position distant from the straight
line between both said spaced guides (407, 402),
whereby the belt or chain (405) is guided along said spaced guides (407, 402) and
said tension actuator (102) such that upon tensing the belt or chain (405), the tension
actuator (102) and first plate (100) are forced into or maintained in said first position
wherein the tension actuator (102) is substantially in line with said spaced apart
guides (407, 402). For better understanding, the above-described situation is schematically
shown in Figure 1A, 2, and 3A in the transition from panels A to B.
[0028] In an initial state of the embodiment shown in Figures 1 and 2 (panel A), the tension-responsive
resilient means (500) holds the two magnetically-coupled plates (100 and 200) and
the actuation member (310) in the first, or initial position. In response to the band
(405) becoming sufficiently tensed in its section comprised between the band stabilising
bolts (406 and 407) and the fully rotated mandrel (402), the magnetically coupled
plates (100 and 200) move, which causes stretching of the tension-responsive resilient
spring (500) and change in the position of the actuation member (310) to the second
position. As a consequence, the actuation member (310) will, dependently on the locking
system's arrangement vis-à-vis the other parts of the shutter assembly, either engage
or disengage with respect to a corresponding element or register within the shutter
mechanism, or shutter door, or even a shutter housing, thus locking or unlocking the
movement of the shutter door.
[0029] In a particularly preferred embodiment, the locking system of the invention comprises
or is connected to control unit (900) allowing to cancel the magnetic force that holds
the first (100) and the second (200) plate together, which allows to separate the
second plate (200) from the first plate (100) due to action of the tension responsive
resilient means (500). In a situation where the first plate (100) is displaced from
the first or initial position to the second position, due to the tension accumulated
on the band (405), the cancelling of the magnetic force between the two plates (100
& 200) will enable the previously-stretched tension responsive resilient means (500)
to contract to its resting state, thus allowing to pull the second plate (200) away
from the first plate (100), and consequently also to return the actuation member (320)
to its initial position. This is schematically shown in Figures 1B, 2, and 3B in panel
C.
[0030] In a possible embodiment the magnet is an electromagnet and the control unit (900)
allowing controlling of the magnetic force is a source of an electric current that
is supplied to said electromagnet. In such arrangement, the electromagnet may be a
regular electromagnet, i.e. a temporary magnet powered by electricity in order to
maintain its magnetic field; or a reversed electromagnet that comprises a constant
magnet that is on when no electric current is generated but can be reversibly demagnetised
when an electric current is supplied to it such that the electromagnetic field generated
by the flowing electric current cancels out the magnetic field produced by said constant
magnet. Different solutions for coupling magnets with source of electricity are broadly
known in the art and therefore will not be further discussed herein.
[0031] In an alternative embodiment in accordance with the afore-listed embodiments, the
target of the electromagnet can be a conventional magnet or another electromagnet.
Like this, the cancelling the magnetic force can also be understood as generation
of a negative magnetic force (i.e. repulsion between the electromagnet and its target
magnet or target electromagnet) that can be obtained by changing the direction of
the current in one electromagnet, which results in reversal of the poles of said electromagnet.
[0032] In a different embodiment, the control unit (900) allowing controlling of the magnetic
force can also be a mechanical element, such as a wedge, capable of engaging between
the magnet and its target and separating them physically, thus leading to decoupling
of the first and the second plate.
[0033] In a highly advantageous embodiment in accordance with any of the previous embodiments,
the means providing the force biasing said second plate (200) towards the first plate
(100) further comprises a second resilient means (600), further referred to as "arming
resilient means (600)", that is coupled to both the first and the second plate (100
& 200) form its opposite ends and acts in support of the magnetic force between the
magnet and its target.
[0034] The arming resilient means (600) provides a force acting in the same direction as
the magnetic force, i.e. acting to bring the magnet and its target together. It should
be noted, that the force provided by the arming spring (600) is smaller than the force
provided by the tension-responsive spring (500). Consequently, the arming resilient
means (600) can act as an arming mechanism for bringing the two plates (100 & 200)
together in the situations where they have been disengaged, like for example due to
cancelling the magnetic force between the two plates (100 & 200) where the tension
responsive resilient means (500) tends to contract and pull the second plate (200)
away from the first plate (100). As described
supra and shown in panel C in Figures 1-3, such situation causes stretching of the arming
resilient means (600). Once stretched, said means (600) will tend to contract to its
resting state and will do so when the first plate (100) is released from the shutter
opening and closing mechanism and thus allowed to return to its first or initial position,
as shown in panel D in Figures1-3. Thanks to this contracting action, the arming resilient
means (600) facilitates the rearming of the locking system of the invention according
to the above-described embodiment, thus allowing effective preparation of said system
for another locking cycle.
[0035] In line with the above, the combination of the arming spring (600) and selective
cancelling of the magnetic force between the plates (100 and 200) provides an advantageous
way for controlling engagement status of the actuation member (302). In particular,
it provides for such locking control even under the conditions where the shutter mechanism
remains under constant pressure or tension.
[0036] In the embodiment exemplified in the Figures 1 and 2, the actuation member (320)
is shown as a simple extension of the second plate (200), which in the locked position
engages with a toothed gear or a cogwheel (403) fixedly coupled to the mandrel (402)
around which the band (405) rotates. By engagement with said cogwheel (403), the actuation
member (320) simply prevents the mandrel (402) from rotating, which in turn prevents
the rolling of the band (405) and thus the movement of the shutter door guided by
said band (405).
[0037] In another advantageous embodiment of the present invention, as schematically illustrated
in Figure 3, the actuation member (302) is movably mounted in a third guide way of
the support structure (400) and is connected to the second plate (200) by an extension
(203) allowing relative movement of the actuation member (320, 302) in view of the
second plate (200). In such an embodiment, the extension (203) can of any known in
the art form of linking means, such as a bolt, or a linking plate, and will preferably
be a joint, a hinge, or a bearing. Similarly as in case of the previously described
embodiment, as illustrated in Figures 1 and 2, the actuation member (302) of Figure
3 is at first held together with the two magnetically coupled plates (100 & 200) in
the first or initial position by the contracted tension responsive resilient means
(500) (panel A). Then, once the first plate (100) is moved due to tensing of the band
(405) that pushes on the pressure actuator (102), it pulls the second plate (200)
behind, which in turn pushes the actuation member (302) into the engagement position
with the cogwheel (403) (panel B). Said engagement of the actuation member (302) can
then be removed at will through cancelling of the magnetic force between the fist
and the second plate (100 & 200), which results in withdrawing of the second plate
(200) away from the first plate (100) via the contracting action of the tension responsive
resilient means (500), and consequently also in disengaging of the actuation member
(302) from the cogwheel (403) (panel C). As a result, the mandrel (402) around which
the band (405) rotates is unlocked, allowing to unroll the band (405) and thus remove
some tension from it; the locking system can now entirely return to its initial position
and rearm through the contracting action of the rearming resilient means (600) and
restoration of the magnetic force between the first and the second plate (100 & 200)
(panel D).
[0038] As can be readily appreciated by any skilled person, the engagement of the actuation
member (320, 302) with a cogwheel (403) provides only one possible example of how
locking by the system of the invention can be executed. In preferred alternative embodiments
of the invention, the actuation member (320, 302) allowing interaction with the opening
and closing mechanism is selected from a group comprising:
- a pawl engageable with a ratchet coupled to said opening and closing mechanism, or
- a locking pin or a blot engageable with a corresponding register provided in said
opening and closing mechanism, or
- a frictional brake, such as a shoe or pad brake engageable with a corresponding wear
surface provided in said opening and closing mechanism.
[0039] Locking pins or bolts are well known in the art and were used in locking mechanism
of prior art documents such as
US5850865,
GB768127, or
US7448426. Friction pads or shoes are another option and often include rotating devices with
a stationary pad and a rotating wear surface. Their common configurations include
shoes that contract to rub on the outside of a rotating drum, such as a band brake;
a rotating drum with shoes that expand to rub the inside of a drum, commonly known
as "drum brakes", although other drum configurations are possible; and pads that pinch
a rotating disc, commonly called "disc brakes". Other brake configurations are also
known in the art but used less often. For example, PCC trolley brakes include a flat
shoe which is clamped to the rail with an electromagnet; the Murphy brake that pinches
a rotating drum, and the Ausco-Lambert disc brake that uses a hollow disc with shoes
that sit between the disc surfaces and expand laterally. An actuation member of the
system according to the invention can take any form compatible to form part of such
configurations.
[0040] A particularly advantageous form for the actuation member of the invention is a pawl
that can be engaged with a ratchet coupled to the shutter mechanism. Pawl-ratchet
arrangements allow continuous rotary or linear motion in only one direction while
preventing motion in the opposite direction, which can be very useful for selectively
biasing the direction in which the mechanism of the rolling shutter is desired to
be firmly locked. A pawl can be described as any elongated pivotable, often springloaded,
extension, whereas a ratchet is usually provided as a round gear or linear rack with
teeth spaced such that an end of the pawl can compatibly engage with them. The teeth
are uniform but asymmetrical, with each tooth having a moderate slope on one edge
and a much steeper slope on the other edge. When the teeth of the ratchet are moving
in the unrestricted direction, the pawl easily slides up and over the moderately sloped
edges of the teeth, with a resilient means (usually a helical spring) forcing it into
the depression between the teeth as it passes the tip of each tooth. However, when
the teeth move in the opposite direction, the pawl will catch against the steeply
sloped edge of the first tooth it encounters, thereby locking it against the tooth
and preventing any further motion in that direction.
[0041] Thus, in one preferred embodiment of the present invention, the actuation member
(320, 302) is a pawl engageable with a ratchet (403) coupled to the shutter mechanism,
as schematically shown in a possible embodiment of the system according to the invention,
as shown in Figures 4-6.
[0042] In a preferred embodiment, the actuation member (301, 302) can be further coupled
coupled to the first plate (100) by an additional resilient means (700) biasing the
actuation member (302) in the direction of the opening and closing mechanism, said
additional resilient means (700) being further referred to as the loading resilient
means (700). An example of such loading resilient means (700) is schematically shown
in Figure 4 as a spring (700) that couples the first plate (100) with a pawl (302),
thus providing a springloaded pawl (302), which thanks to the loading resilient means
(700) points in the direction of the ratchet (403) coupled to the band-based shutter
mechanism.
[0043] A further advantage of an actuation member (302) that coupled to the second plate
(200) by means of an extension (203) that provides said actuation member (302) with
a certain degree of movement (e.g. a pivoting or a sliding movement) independent of
the movement and/or position of the second plate (200), is that in such arrangement,
the exact position of the actuation member (302) can be controlled by additional means
other than through manipulation of the force that biases said second plate (200) versus
the position of the first plate (100). That is to say that in such embodiments of
the invention, the position of the actuation member (302) can be adjustable independently
of or even without affecting the position of the coupled thereto second plate (200).
Such adjustability could for example be achieved by a provision of a reachable from
outside the support structure (400) surface or element which, when moved or pressed
by a user, would affect e.g. the shape of the extension (302) so as to retract the
actuation member (302) with respect the second plate and possibly relative to its
corresponding register (403) in the shutter mechanism. In line with the above, in
a preferred embodiment, the extension (203) could comprise a pressing surface (800)
which when pressed results in changing of the position of the actuation member (302)
relative to the position of the second plate (200). An example of such pressing surface
(800), forming part of the extension (203) that couples the actuation member (302)
with the second plate (200), is shown in Figure 6 providing a detailed rear view of
one embodiment of the invention.
[0044] As also exemplified in Figure 6, pressing surface (600) could advantageously be accessible
from outside of the shutter frame (400), e.g. via pushing on a button or a specifically
designated zone (800), so as to allow direct manual control over the position and
engagement status of the actuation member (302) in emergency situations.
[0045] In an alternative embodiment, the extension (203) can be coupled to a motor and operable
by means of an electric signal. Thus, in accordance with previous embodiments, that
actuation member (302) comprises the extension (203) that can either:
- be manually operable and comprising a pressing surface (800) or an otherwise easily
reachable to a user element, which when activated affects the extension (203) such
that it changes the position of the actuation member (302) relative to the second
plate, or
- coupled to a motor and operable by a means of an external signal, such as via pushing
a button on the external side of the shutter, or in a control station at a distance
from the shutter, or over a network by executing a command on a computer etc.; such
that when said motor is activated it exerts a change in the position of the actuation
member (302) relative to the second plate
- both of the above.
[0046] In another preferred embodiment, the present invention provides the locking system
according to any of the afore-described embodiments, wherein the support structure
(400) is a frame for housing a shutter door. Due to the nature of the invention, naturally
such frame will preferably be manufactured of a fire-resistant material, i.e. a material
that does not degrade at 300°C for at least 30 minutes, for example inox (stainless
steel), aluminium, or various alloys thereof.
[0047] In a further aspect, the present invention also provides a shutter assmebly comprising
a frame, a rollable shutter door, and a belt or chain driven opening and closing mechanism
for operating said rollable shutter door, said fire shutter characterised in that
it comprises a locking system according to to any of the afore-described embodiments.
[0048] In particular, the present invention provides a shutter assembly comprising:
- a shutter frame defining a generally rectangular area to be closed by a shutter door,
said frame comprising at least three, preferably four profiles;
- a locking system according to any of the afore-mentioned embodiments of the invention,
said locking system mounted in at least one profile of said frame serving as its support
structure (400);
- preferably, a shutter opening and closing mechanism coupled said locking system and/or
to said frame;
- preferably, also a shutter door.
[0049] In another preferred embodiment, a shutter assembly is provided, wherein the opening
and closing mechanism comprises a mandrel (402) for rolling said shutter door thereon,
whereby the roller shutter is at least partially attached to belt or chain fixed to
and rollable on said mandrel and whereby the actuation member of the locking mechanism
interacts with said mandrel for locking the opening and closing mechanism.
[0050] In another preferred embodiment in line with the above embodiments, the shutter assembly
is a fire- or smoke-retardant shutter assembly. Consequently, as it will be appreciated
by any skilled person, the shutter mechanism may comprise any of the different arrangements,
manual or automated alike, known in the art that are capable of setting a fire-retardant
shutter door into motion as to close or open the area defined by the shutter frame.
The shutter mechanism can be triggered in response to any an internal or external
signal relayed from an initiating device either integrated in the assembly, or nearby,
or more distant. Examples of initiating devices are also well known in the art and
are not within the scope of the present invention, they include e.g. pull stations,
break-glass stations, heat detectors, fusible links, smoke detectors, flame detectors,
water-flow detectors, cameras etc.
[0051] In a preferred embodiment, the shutter door is a rolling shutter door, i.e. a rollable
door coupled to a mandrel and extending by means of rotational motion of said mandrel
in the housing. In a particularly preferred embodiment, the shutter mechanism for
opening or closing such door comprises a band-based guiding system for guiding at
least one lateral edge of said rolling shutter door, preferably both lateral edges
during the unwinding of the door. Examples of such guiding systems include guide bands,
guide rails, or guiding cables, which advantageously can be coupled to a motor and
actively contribute to the opening or closing of the shutter.
[0052] Lastly, the present invention also provides a use of the locking system according
to any of the above-listed embodiments, in locking an opening and closing mechanism
of a shutter, preferably a fire shutter, wherein said mechanism is a belt or chain
driven shutter mechanism.
1. A locking system for a belt or chain driven opening and closing mechanism of a fire-retardant
shutter, said locking system comprising a support structure (400) with a first and
a second guide way and
(a) a first plate (100) movably mounted in the first guide way of the support structure
(400) between a first position and a second position, said first plate (100) comprising:
(a.1) a first element (101) from a pair of a magnet and its target, said pair of the
magnet and its target being controllable such as to allow controlling of the magnetic
force exerted between the magnet and its target when both are coupled;
(a.2) a tension or pressure actuator (1 02);
(b) a second plate (200) movably mounted along the second guide way of the support
structure (400) between a first position and a second position, the second plate (200)
comprising:
(b.1) a second element (201) from a pair of a magnet and its target;
(b.2) a first resilient means (500) biasing the second plate (200) in a first position
in view of the support structure (400);
(b.3) a means providing a force biasing said second plate (200) towards the first
plate (100) allowing engagement of the magnet and its target, said means comprising
at least the magnet and its target;
(b.4) an actuation member (320, 302) allowing interaction with the opening and closing
mechanism to lock said opening and closing mechanism;
characterized in that the locking system comprises:
(c) a tension or pressure transmitter allowing transmitting of a tension or pressure
that builds in said opening and closing mechanism onto the tension actuator (102)
of the first plate (100), thereby biasing the locking system for movement in a direction
opposite to the direction of the force exerted by the first resilient means (500)
on the second plate (200) when the first (100) and second plate (200) are coupled
by the magnetic force exerted between the magnet and its target; and
(d) a control unit (900) allowing controlling of the magnetic force exerted between
the magnet and its target between
- a first strength such that the force biasing said second plate (200) towards the
first plate (100) when coupled, is larger than the force exerted by the first resilient
means (500) on the second plate (200) when said second plate (200) is positioned in
the second position, and
- a second strength such that the force biasing said second plate (200) towards the
first plate (100) when coupled, is smaller than the force exerted by the first resilient
means (500) on the second plate (200) when said first plate (200) is in positioned
in the second position.
2. Locking system according to claim 1, wherein the magnet is an electromagnet.
3. Locking system according to any of the preceding claims, wherein the means providing
the force biasing said second plate (200) towards the first plate (100) further comprises
a second resilient means (600).
4. Locking system according to any of the preceding claims, wherein the the actuation
member (302) is movably mounted in a third guide way of the support structure (400)
and is connected to the second plate (200) by an extension (203) allowing relative
movement of the actuation member (320, 302) in view of the second plate (200).
5. Locking system according to claim 4, wherein the extension (203) is a joint, a hinge,
or a bearing.
6. Locking system according to claim 4 or 5, wherein the actuation member (302) is further
coupled to the first plate (100) by an additional resilient means (700) biasing the
actuation member (302) in the direction of the opening and closing mechanism.
7. Locking system according to any of the claims 4 to 6, wherein the extension (203)
comprises a pressing surface (800) which when pressed results in changing of the position
of the actuation member (302) relative to the position of the second plate (200).
8. Locking system according to any of the claims 4 to 7, wherein the extension (203)
is coupled to a motor operable by means of an electric signal.
9. Locking system according to any of the preceding claims, wherein the actuation member
(320, 302) allowing interaction with the opening and closing mechanism is selected
from a group comprising:
- a pawl engageable with a ratchet coupled to said opening and closing mechanism,
or
- a locking pin or a blot engageable with a corresponding register provided in said
opening and closing mechanism, or
- a frictional brake, such as a shoe or pad brake engageable with a corresponding
wear surface provided in said opening and closing mechanism.
10. Locking system according to claim 1-9, wherein the tension transmitter comprises:
- at least two spaced apart guides (407, 402) fixed to the support structure (400);
and
- the tension actuator (1 02) of the first plate (100), said tension actuator being
movable with the first plate between a first position substantially in line with the
spaced guides (407, 402) and a second position distant from the straight line between
both said spaced guides (407, 402),
whereby the belt belt or chain (405) is guided along said guides and said tension
actuator such that upon tensioning the belt or chain, the tension actuator and first
plate are forced into or maintained in said first position wherein the tension actuator
is substantially in line with said spaced apart guides (407, 402).
11. Fire shutter assembly comprising a frame, a rollable shutter door, and a belt or chain
driven opening and closing mechanism for operating said rollable shutter door, said
fire shutter characterised in that it comprises a locking system according to any of the claims 1-10.
12. Fire shutter assembly according to claim 11, wherein the opening and closing mechanism
comprises a mandrel (402) for rolling said shutter door thereon, whereby the roller
shutter is at least partially attached to belt or chain fixed to and rollable on said
mandrel and whereby the actuation member of the locking mechanism interacts with said
mandrel for locking the opening and closing mechanism.
13. Use of the locking system according to any of the claims 1-10 in locking an opening
and closing belt or chain driven shutter mechanism.
1. Verriegelungssystem für einen riemen- oder kettenbetriebenen Öffnungs- und Schließmechanismus
einer feuerhemmenden Blende, wobei das Verriegelungssystem eine Stützstruktur (400)
mit einer ersten und einer zweiten Führungsbahn umfasst und
(a) eine erste Platte (100), die beweglich in einer ersten Führungsbahn der Stützstruktur
(400) zwischen einer ersten Position und einer zweiten Position montiert ist, wobei
die erste Platte (100) umfasst:
(a.1) ein erstes Element (101) von einem Paar aus einem Magneten und seinem Ziel,
wobei das Paar aus Magneten und seinem Ziel derart steuerbar ist, dass die Magnetkraft,
die zwischen dem Magnet und seinem Ziel ausgeübt wird, gesteuert werden kann, wenn
beide gekoppelt sind;
(a.2) ein Zug- oder Druckstellglied (102);
(b) eine zweite Platte (200), die beweglich entlang einer zweiten Führungsbahn der
Stützstruktur (400) zwischen einer ersten Position und einer zweiten Position montiert
ist, wobei die zweite Platte (200) umfasst:
(b.1) ein zweites Element (201) von einem Paar aus einem Magneten und seinem Ziel;
(b.2) ein erstes elastisches Mittel (500), das die zweite Platte (200) in einer ersten
Position im Hinblick auf die Stützstruktur (400) vorspannt;
(b.3) ein Mittel, das eine Kraft bereitstellt, welche die zweite Platte (200) in Richtung
der ersten Platte (100) vorspannt, um den Eingriff des Magneten und seines Ziels zu
ermöglichen, wobei das Mittel mindestens den Magneten und sein Ziel umfasst;
(b.4) ein Betätigungselement (320, 302), das eine Wechselwirkung mit dem Öffnungs-
und Schließmechanismus ermöglicht, um den Öffnungs- und Schließmechanismus zu verriegeln;
dadurch gekennzeichnet, dass das Verriegelungssystem umfasst:
(c) einen Zug- oder Druckgeber, der das Übertragen eines Zugs oder Drucks ermöglicht,
die sich in dem Öffnungs- und Schließmechanismus am Zugstellglied (102) der ersten
Platte (100) aufbauen, wodurch das Verriegelungssystem für eine Bewegung in eine Richtung
entgegen der Richtung der Kraft, die von dem ersten elastischen Mittel (500) auf die
zweite Platte (200) ausgeübt wird, vorgespannt wird, wenn die erste (100) und die
zweite Platte (200) durch die Magnetkraft gekoppelt werden, die zwischen dem Magneten
und seinem Ziel ausgeübt werden; und
(d) eine Steuereinheit (900), welche die Steuerung der Magnetkraft, die zwischen dem
Magnet und seinem Ziel ausgeübt wird, ermöglicht, zwischen
- einer ersten Stärke, so dass die Kraft, welche die zweite Platte (200) in Richtung
der ersten Platte (100) vorspannt, wenn sie gekoppelt sind, größer als die Kraft ist,
die von dem ersten elastischen Mittel (500) auf die zweite Platte (200) ausgeübt wird,
wenn die zweite Platte (200) in der zweiten Position angeordnet ist, und
- einer zweiten Stärke, so dass die Kraft, welche die zweite Platte (200) in Richtung
der ersten Platte (100) vorspannt, wenn sie gekoppelt sind, kleiner als die Kraft
ist, die von dem ersten elastischen Mittel (500) auf die zweite Platte (200) ausgeübt
wird, wenn die erste Platte (200) in der zweiten Position angeordnet ist.
2. Verriegelungssystem nach Anspruch 1, wobei der Magnet ein Elektromagnet ist.
3. Verriegelungssystem nach einem der vorhergehenden Ansprüche, wobei das Mittel, das
die Kraft bereitstellt, welche die zweite Platte (200) in Richtung der ersten Platte
(100) vorspannt, ferner ein zweites elastisches Mittel (600) umfasst.
4. Verriegelungssystem nach einem der vorhergehenden Ansprüche, wobei das Betätigungselement
(302) in einer dritten Führungsbahn der Stützstruktur (400) beweglich montiert ist
und mit der zweiten Platte (200) durch eine Verlängerung (203) verbunden ist, welche
die relative Bewegung des Betätigungselements (320, 302) im Hinblick auf die zweite
Platte (200) ermöglicht.
5. Verriegelungssystem nach Anspruch 4, wobei die Verlängerung (203) ein Gelenk, ein
Scharnier oder ein Lager ist.
6. Verriegelungssystem nach Anspruch 4 oder 5, wobei das Betätigungselement (302) ferner
mit der ersten Platte (100) durch ein zusätzliches elastisches Mittel (700) gekoppelt
ist, die das Betätigungselement (302) in Richtung des Öffnungs- und Schließmechanismus
vorspannt.
7. Verriegelungssystem nach einem der Ansprüche 4 bis 6, wobei die Verlängerung (203)
eine Pressfläche (800) umfasst, die, wenn sie gepresst wird, in einer Veränderung
der Position des Betätigungselements (302) in Bezug auf die Position der zweiten Platte
(200) resultiert.
8. Verriegelungssystem nach einem der Ansprüche 4 bis 7, wobei die Verlängerung (203)
mit einem Motor gekoppelt ist, der mittels eines elektrischen Signals betrieben werden
kann.
9. Verriegelungssystem nach einem der vorhergehenden Ansprüche, wobei das Betätigungselement
(320, 302), das eine Wechselwirkung mit dem Öffnungs- und Schließmechanismus ermöglicht,
aus einer Gruppe ausgewählt ist, die umfasst:
- eine Sperrklinke, die mit einem Sperrzahn in Eingriff gebracht werden kann, der
mit dem Öffnungs- und Schließmechanismus gekoppelt ist, oder
- einen Verriegelungsstift oder einen Bolzen, der mit einem entsprechenden Register
in Eingriff gebracht werden kann, das in dem Öffnungs- und Schließmechanismus bereitgestellt
ist, oder
- eine Reibungsbremse, wie beispielsweise eine Bremsbacke oder Bremsklotzbremse, die
mit einer entsprechenden Verschleißfläche in Eingriff gebracht werden kann, die in
dem Öffnungs- und Schließmechanismus bereitgestellt ist.
10. Verriegelungssystem nach einem der Ansprüche 1 bis 9,
wobei der Zuggeber umfasst:
- mindestens zwei beabstandete Führungen (407, 402), die an der Stützstruktur (400)
befestigt sind; und
- das Zugstellglied (102) der ersten Platte (100), wobei das Zugstellglied mit der
ersten Platte zwischen einer ersten Position, die im Wesentlichen in einer Linie mit
den beabstandeten Führungen (407, 402) liegt, und einer zweiten Position, die von
der geraden Linie zwischen beiden beabstandeten Führungen (407, 402) entfernt ist,
beweglich ist,
wobei der Riemen oder die Kette (405) entlang der Führungen und dem Zugstellglied
derart geführt werden, dass beim Anlegen von Zug an den Riemen oder die Kette das
Zugstellglied und die erste Platte in die erste Position gezwungen oder darin gehalten
werden, wobei das Zugstellglied im Wesentlichen in einer Linie mit den beabstandeten
Führungen (407, 402) ist.
11. Brandschutzklappenanordnung, umfassend einen Rahmen, eine aufrollbare Blendenklappe
und einen riemen- oder kettenbetriebenen Öffnungs- und Schließmechanismus zum Betreiben
der aufrollbaren Blendenklappe, wobei die Brandschutzklappe dadurch gekennzeichnet ist, dass sie ein Verriegelungssystem nach einem der Ansprüche 1 bis 10 umfasst.
12. Brandschutzklappenanordnung nach Anspruch 11, wobei der Öffnungs- und Schließmechanismus
einen Dorn (402) zum Aufrollen der Blendenklappe darauf umfasst, wobei die Rollblende
mindestens teilweise an einem Riemen oder einer Kette befestigt ist und auf den Dorn
aufrollbar ist, wobei das Betätigungselement des Verriegelungsmechanismus mit dem
Dorn zum Verriegeln des Öffnungs- und Schließmechanismus zusammenwirkt.
13. Verwendung des Verriegelungssystems nach einem der Ansprüche 1 bis 10 zum Verriegeln
eines riemen- oder kettengetriebenen Öffnungs- und Schließmechanismus.
1. Système de blocage pour un mécanisme d'ouverture et de fermeture d'une trappe pare-feu
entraîné par une courroie ou une chaîne, ledit système de blocage comprenant une structure
de support (400) avec une première et une deuxième voie de guidage, et
(a) une première plaque (100) montée mobile dans la première voie de guidage de la
structure du support (400) entre une première position et une seconde position, ladite
première plaque (100) comprenant :
(a.1) un premier élément (101) formé d'une paire d'un aimant et de sa cible, ladite
paire de l'aimant et de sa cible pouvant être commandée de manière à permettre la
commande de la force magnétique exercée entre l'aimant et sa cible lorsque tous deux
sont couplés ;
(a. 2) un actionneur de tension ou de pression (102) ;
(b) une seconde plaque (200) montée mobile le long de la deuxième voie de guidage
de la structure de support (400) entre une première position et une seconde position,
la seconde plaque (200) comprenant :
(b.1) un second élément (201) formé d'une paire d'un aimant et de sa cible ;
(b.2) un premier moyen élastique (500) pressant la seconde plaque (200) dans une première
position en vue de la structure de support (400) ;
(b.3) un moyen fournissant une force pressant ladite seconde plaque (200) vers la
première plaque (100) en permettant l'engagement de l'aimant et de sa cible, ledit
moyen comprenant au moins l'aimant et sa cible ;
(b.4) un élément d'actionnement (320, 302) permettant une interaction avec le mécanisme
d'ouverture et de fermeture pour bloquer ledit mécanisme d'ouverture et de fermeture
;
caractérisé en ce que le système de blocage comprend :
(c) un transmetteur de tension ou de pression permettant la transmission d'une tension
ou d'une pression qui apparaît dans ledit mécanisme d'ouverture et de fermeture sur
l'actionneur de tension (102) de la première plaque (100), pressant de la sorte le
système de blocage pour un mouvement dans un sens opposé au sens de la force exercée
par le premier moyen élastique (500) sur la seconde plaque (200) lorsque la première
(100) et la seconde (200) plaque sont couplées par la force magnétique exercée entre
l'aimant et sa cible ; et
(d) une unité de commande (900) permettant la commande de la force magnétique exercée
entre l'aimant et sa cible entre :
- une première résistance telle que la force pressant ladite seconde plaque (200)
vers la première plaque (100) lorsqu'elles sont couplées soit plus grande que la force
exercée par le premier moyen élastique (500) sur la seconde plaque (200) lorsque ladite
seconde plaque (200) est positionnée dans la seconde position et
- une seconde résistance telle que la force pressant ladite seconde plaque (200) vers
la première plaque (100) lorsqu'elles sont couplées soit plus petite que la force
exercée par le premier moyen élastique (500) sur la seconde plaque (200) lorsque la
première plaque (200) est positionnée dans la seconde position.
2. Système de blocage selon la revendication 1, dans lequel l'aimant est un électro-aimant.
3. Système de blocage selon l'une quelconque des revendications précédentes, dans lequel
le moyen fournissant la force pressant ladite seconde plaque (200) vers la première
plaque (100) comprend en outre un second moyen élastique (600).
4. Système de blocage selon l'une quelconque des revendications précédentes, dans lequel
l'élément d'actionnement (302) est monté mobile dans une troisième voie de guidage
de la structure de support (400) et est raccordé à la seconde plaque (200) par une
extension (203) permettant un mouvement relatif de l'élément d'actionnement (320,
302) en vue de la seconde plaque (200).
5. Système de blocage selon la revendication 4, dans lequel l'extension (203) est un
joint, une charnière ou un palier.
6. Système de blocage selon la revendication 4 ou 5, dans lequel l'élément d'actionnement
(302) est en outre couplé à la première plaque (100) par un moyen élastique supplémentaire
(700) pressant l'élément d'actionnement (302) dans la direction du mécanisme d'ouverture
et de fermeture.
7. Système de blocage selon l'une quelconque des revendications 4 à 6, dans lequel l'extension
(203) comprend une surface de pression (800) qui, lorsqu'elle est pressée, entraîne
le changement de la position de l'élément d'actionnement (302) par rapport à la position
de la seconde plaque (200).
8. Système de blocage selon l'une quelconque des revendications 4 à 7, dans lequel l'extension
(203) est couplée à un moteur opérant au moyen d'un signal électrique.
9. Système de blocage selon l'une quelconque des revendications précédentes, dans lequel
l'élément d'actionnement (320, 302) permettant l'interaction avec le mécanisme d'ouverture
et de fermeture est choisi dans un groupe comprenant les suivants :
- un cliquet qui peut s'engager sur un rochet couplé audit mécanisme d'ouverture et
de fermeture ou
- une broche de blocage ou un blot qui peut s'engager sur un registre correspondant
disposé dans ledit mécanisme d'ouverture et de fermeture ou
- un frein à friction, tel qu'un frein à mâchoires ou à patins, qui peut s'engager
sur une surface d'usure correspondante disposée dans ledit mécanisme d'ouverture et
de fermeture.
10. Système de blocage selon les revendications 1-9, dans lequel le transmetteur de tension
comprend :
- au moins deux guides espacés (407, 402) fixés à la structure de support (400) ;
et
- l'actionneur de tension (102) de la première plaque (100), ledit actionneur de tension
étant mobile avec la première plaque entre une première position sensiblement en ligne
avec les guides espacés (407, 402) et une seconde position distante de la ligne droite
entre lesdits deux guides espacés (407, 402),
en sorte que la courroie ou la chaîne (405) soit guidée le long desdits guides et
dudit actionneur de tension en sorte que, lors de la mise sous tension de la courroie
ou de la chaîne, l'actionneur de tension et la première plaque soient refoulés ou
maintenus dans ladite première position dans laquelle l'actionneur de tension est
sensiblement en ligne avec lesdits guides espacés (407, 402).
11. Ensemble de trappe pare-feu comprenant un châssis, une porte de trappe roulante et
un mécanisme d'ouverture et de fermeture entraîné par une courroie ou une chaîne pour
actionner ladite porte de trappe roulante, ladite trappe pare-feu étant caractérisée en ce qu'elle comprend un système de blocage selon l'une quelconque des revendications 1 à
10.
12. Ensemble de trappe pare-feu selon la revendication 11, dans lequel le mécanisme d'ouverture
et de fermeture comprend un mandrin (402) pour y faire rouler ladite porte de trappe,
en sorte que la trappe roulante soit au moins en partie rattachée à la courroie ou
à la chaîne fixée sur ledit mandrin et roulant sur celui-ci et en sorte que l'élément
d'actionnement du mécanisme de blocage interagisse avec ledit mandrin pour bloquer
le mécanisme d'ouverture et de fermeture.
13. Utilisation du système de blocage selon l'une quelconque des revendications 1 à 10
pour le blocage d'un mécanisme d'ouverture et de fermeture à trappe entraîné par une
courroie ou une chaîne.