[0001] The present invention relates to a panic bar or emergency handle.
[0002] Conventional panic bars comprise an elongated box-like body which is fixed to the
side of the door wing that is directed toward the enclosed space and has a U-shaped
open cross-section in order to accommodate the actuation bar or handle.
[0003] Two parallel transmission levers are rigidly coupled to the bar and are articulated
like a parallelogram in the box-like body; one of said levers is operatively connected
to the lock for closing the wing.
[0004] In panic bars there is the problem of adjusting their length in order to adapt it
to the width of the wing to which they must be applied.
[0005] Currently, this requirement is met by offering panic bars of various lengths, but
this entails the drawback of requiring the availability of a corresponding stock,
with consequent high setup costs.
[0006] In other cases, the panic bars are adapted to the required length on-site by the
installers. However, this procedure, too, entails labor costs, in addition to the
fact that the work to be done requires specialized personnel and is not free from
the risk of damaging the aesthetics of the panic bar.
[0007] The aim of the present invention is to provide a panic bar which obviates the above-noted
drawbacks, allowing on the one hand to avoid the need to resort to storing a range
of panic bars of various sizes and, on the other hand, to require simple adaptation
operations that can be performed with conventional equipment.
[0008] Within this aim, an object of the present invention is to provide a panic bar in
which the arm of the transmission levers can be chosen as a function of the actuation
effort intended for the specific application.
[0009] Another object of the present invention is to provide a panic bar in which, in order
to actuate the lock, the bar acts on a single lever, while the other lever remains
passive.
[0010] This aim and these and other objects which will become better apparent hereinafter
are achieved by a panic bar comprising an elongated box-like body, constituted by
a profile, having a substantially U-shaped cross-section; a first lever and a second
lever, being articulated in said box-like body in contrast with elastic return means
and are provided with a first arm and a second arm; a bar, being accommodated in said
box-like body, is articulately coupled to said first arms of said first and second
levers and can move between a position in which it protrudes from said box-like body
and which is determined by the return of said elastic means by way of said levers,
and a position in which it is substantially internal to said box-like body and which
is determined by an external pressure applied thereon; said first lever being operatively
connected to a closure lock; characterized in that said levers are articulately supported
on corresponding plates which can be detachably fixed to the opposite ends of said
box-like body, the plate that supports said first lever having said lock rigidly coupled
thereon and having a slider which can slide thereon, actuates said lock, and is controlled
by said second arm of said first lever.
[0011] Further characteristics and advantages of the present invention will become better
apparent from the following detailed description of an embodiment thereof illustrated
only by way of non-limitative example in the accompanying drawings wherein:
Figure 1 is a longitudinal sectional view, taken along the line I-I of Figure 3, of
a panic bar according to the invention, in closed condition;
Figure 2 is a view of the panic bar of Figure 1, in an open condition;
Figure 3 is a sectional plan view of the panic bar of the preceding figures;
Figure 4 is a sectional view, taken along the line IV-IV of Figure 1;
Figure 5 is a sectional view, taken along the line V-V of Figure 2;
Figure 6 is an exploded view of the panic bar.
[0012] In Figures 1 to 6, the panic bar according to the invention is generally designated
by the reference numeral 1 and comprises an elongated box-like body 2, which is constituted
by a profile having a U-shaped cross-section with a bottom 3 (Figures 1-3) and two
walls 4 and 5 which rise at right angles from the bottom 3 so as to form a longitudinal
cavity 6.
[0013] In the walls 4 and 5, proximate to the internal angles formed with the bottom 3,
there are two longitudinal grooves 7 and 8 in which two plates 9 and 10 are inserted;
said plates can be positioned along said grooves.
[0014] The plate 9 has two wings 11 and 12 which protrude therefrom at the lateral edges
and support a pivot 13 for the articulation of a lever 14 which is composed of two
triangular portions 15 and 16 being connected one another by a bridge 17.
[0015] The triangular portions 15 and 16 are crossed by two pivots 18 and 19 which, with
respect to the articulation pivot 13, define the two arms of the lever 14. A spring
20 is superimposed on the pivot 13, and its opposite ends engage below the bridge
17 and below a lug 21 which is obtained by folding the wing 11. In this manner, the
spring 20 can act so as to raise the lever 14 with respect to the plate 9.
[0016] A block 22 is articulated on the pivot 19 and has a tang 23 which is surmounted by
a tab 24. A grub screw 25 is screwed through the tab 24 for fixing a tubular element
26 having a quadrangular cross-section on the tang 23. The plate 9 protrudes out of
the box-like body 2 with a portion 27 in which a lug 28 is formed which is perpendicular
to the plate 9. A cap 30 is fixed to the lug 28 by means of a screw 29 and, as will
become apparent from Figures 3 and 4, is coupled to the walls 4 and 5 of the box-like
body 2. The cap 30 has a lip 31 which is folded inward and closes axially the cavity
6.
[0017] The plate 9, once inserted in the grooves 7 and 8 at one end of the box-like body
2 until the cap 30 abuts against the walls 4 and 5 of the box-like body 2, is fixed
by means of a pair of grub screws 32 and 33 which are screwed through the plate 9
and engage against the bottom 3.
[0018] Also the plate 10 is locked on the bottom 3 of the box-like body 2, and a slider
34 is slidingly coupled thereon and is designed to activate a lock, generally designated
by the reference numeral 35, which is fixed on the plate 10. The slider 34 (see Figure
3) is guided in a seat which is formed between two parallel wings 75 and 76 of the
plate 10 and is retained by a ring 77 which is applied to a pivot 78 which rises from
the plate 10 and slides in a longitudinal slot 79 of the slider.
[0019] The slider 34 is controlled by means which are fully identical to the means previously
designated by the reference numerals 11 to 25 and supported on the plate 10.
[0020] Said means, for the sake of convenience in description, are designated by the same
reference numerals increased by 100.
[0021] The only evident difference relates to the block 122, which is inverted by 180° with
respect to the block 22 so as to allow the tang 123 to enter, at one end, the end
of the tube 26 that is opposite to the end engaged by the tang 23 and to act, at the
other end, on a protrusion 36 which is rigidly coupled to the slider 34. The actuation
of the levers 14 and 114 is provided by means of a bar 37 which is inserted in the
cavity 6.
[0022] The bar 37 is composed of a profile which has a U-shaped cross-section with two walls
38 and 39 connected by a cambered bottom 40 which constitutes the surface for pushing.
The walls 38 and 39 are internally provided with parallel ridges which form thereon
a first pair 41 and a second pair 42 of opposite grooves, which have a rectangular
cross-section, and a third pair of grooves 43, which are intermediate to the pairs
of grooves 41 and 42 and have a lobe-shaped cross-section in order to receive two
self-tapping screws 43a by means of which the closure element 45 described hereinafter
is fixed.
[0023] The pairs of grooves 41 and 42 are designed to receive the opposite ends of the pivots
18 and 118. In the illustrated example, the pivots 18 and 118 are engaged in the pairs
of grooves 42 so as to ensure that the levers 14 and 114 have a shorter lever arm.
If instead the lever arm of the levers 14 and 114 must be longer, the pivots 18, 118
are inserted in holes 44, 144 provided at the ends of the levers 14, 114, so as to
engage in the pairs of grooves 41.
[0024] The opposite ends of the actuation bar 37 are closed by respective closure elements
45 and 46.
[0025] The element 45 is shaped complementarily to the cap 30, while the element 46 is chamfered
toward the lock 35.
[0026] The lock comprises a box 47 which contains a conventional mechanism 48, which is
described hereinafter as regards its essential elements, and has a lever 49 which
is pivoted in a rocker-like fashion on a pivot 50 of the lock. The lever 49 has a
first pivot 51 which, by way of a spring 52, is kept in abutment against a protrusion
53 of the slider 34, and a second pivot 54, which acts on a latch 55 which is articulated
on a further pivot
56 of the lock in contrast with a spring 57. The latch 55 is provided with a locking
lever 58 which prevents the fraudulent retraction of the latch when it is engaged
in the selvage 59.
[0027] As clearly shown in Figure 1, which illustrates the panic bar in the closed position,
the bar 37, by way of the springs 20 and 120, which act on the levers 14, and 114,
is retained externally with respect to the box-like body 2.
[0028] When, in an emergency condition, one acts on the bar 37, the levers 14, 114 rotate
simultaneously due to the tube 26 that connects them, causing the movement of the
block 122 toward the lock. The block 122 acts on the protrusion 36 of the slider 34,
while the protrusion 53, by acting on the lever 49, causes the retraction of the latch
55 into the box 31.
[0029] In the position for releasing the latch 55, the bar 37 is fully accommodated in the
box-like body 2.
[0030] The fundamental feature of the present invention is the possibility to adapt the
length of the panic bar to various requirements. For this purpose, assuming that the
panic bar 1 is disassembled into its components as shown in Figure 6, the box-like
body 2, the rod 26 and the bar 37 are cut to size. Then the plate 10 is repositioned
in the end of the box-like body, inserting the plate 10 in the grooves 7 and 8 until
abutment occurs against the front edges of the box-like body 2, and inserting the
tang 123 in the rod 26. After locking the rod 26 with the grub screw 125 on the tang
123, and after fixing the plate 10 to the bottom 3 of the box-like body by means of
the grub screws 132 and 133, the bar 37 is applied by fitting it axially on the pivots
18 and 118. The insertion of the bar 37 can occur axially after removing the cap 30.
[0031] It is very important that the assembly composed of the plate 10 and of the elements
supported by it, i.e., the lever 114, the slider 34 and the lock 35, can be applied
independently to the wing, i.e., without the box-like body 2 and the bar 37. This
possibility allows to use the lever 114 for temporarily closing a door, thus protecting
the panic bar against possible damage, as occurs in building yards. In this case,
after applying the assembly to the wing, one can use the lever 114 directly as a lock
actuation handle, optionally providing it with a more comfortable grip element such
as a knob.
[0032] It should be noted that the inventive concept does not entail modifications to the
lock 35, which can be conventionally built. Figure 3 is a plan view of a lock in which
the plate 10 has two lateral expansions 60 and 61 on which two respective sliding
elements 62 and 63 are guided at right angles to the longitudinal axis of the panic
bar; stems 64 and 65 are coupled to said sliders in order to fix the rods that actuate
the vertical bolts.
[0033] The sliding elements 62 and 63 receive their motion from the slider 34 by means of
levers 66 and 67 which are pivoted in a rocker-like fashion on pivots 68 and 69 being
rigidly coupled to the lateral expansions 60 and 61 of the plate 10. The levers 66
and 67 are provided, on one arm, with respective pivots 70, 71 which engage in slots
of the sliding elements 62 and 63. The other arm of the levers 66 and 67 has slots
in which pivots 72 and 73 are engaged which are rigidly coupled to lateral lobes of
the slider 34. By way of the sliding of the sliding elements 62 and 63 actuated by
the slider 34, the levers 66 and 67 perform oscillations which produce mutually opposite
strokes of the sliding elements 62 and 63 and therefore of the bolts.
[0034] Another advantage of the described panic bar is the possibility to vary the length
of the arms of the levers 14 and 114 by moving the pivots 18, 118 in the holes 44,
144 in order to engage them in the pair of grooves 41. This variation allows a certain
modulation of the thrust to be applied to the bar 37, according to the opening requirements
of the door.
[0035] It should be noted that the rod 26 that connects the blocks 22, 122 need not be fixed
by means of grub screws 25, 125 on the tangs 23, 123 but can be left to slide freely
thereon. Actually, the articulated arrangement of the two blocks 22, 122 on the pivots
19, 119 and the mutually opposite arrangement of the tangs 23, 123 ensures the actuation
of the lock by acting on any point of the bar 37. If one acts on the bar 37 at the
lever 114, the tang 123, by sliding in the rod 36, can in fact act directly on the
slider 34 and therefore on the lock 35. Therefore, in this case the lever 14 does
not intervene and the bar 37 enters the box-like body 2 only proximate to the lock
35.
[0036] On the other hand, if one acts on the bar 37 at the lever 14, the oscillation of
the lever 14 determines a movement of the block 22 which, by means of the rod 26 and
the block 122, produces the movement of the slider 34 and the actuation of the lock.
In any case, the stroke of the block 122 and of the slider 34 is sufficient to ensure
the opening of the lock. It is also considerably important that the plates 9 and 10
that support the levers 14, 114 are arranged at the opposite ends of the box-like
body 2, so that the portions 27 and 127 protrude outward from the box-like body 2.
The panic bar can be fitted to a door wing by means of screws driven through slots
74 of the portion 27 and similar slots of the portion 127. The distance between the
portions 27 and 127 allows to engage the screws in the lateral edges of the wing,
avoiding the application of screws through the bottom 3 of the box-like body 2. In
this manner, the box-like body 2 can lie transversely like a bridge on the central
region of the wing and can allow to apply the panic bar to wings constituted by panes
of glass or of a material which must not be damaged. In the practical embodiment of
the invention, the shapes and the dimensions may vary according to requirements.
[0037] The disclosures in Italian Patent Application No. BO99A000671 from which this application
claims priority are incorporated herein by reference.
[0038] Where technical features mentioned in any claim are followed by reference signs,
those reference signs have been included for the sole purpose of increasing the intelligibility
of the claims and accordingly such reference signs do not have any limiting effect
on the scope of each element identified by way of example by such reference signs.
1. A panic bar comprising an elongated box-like body (2), constituted by a profile, having
a substantially U-shaped cross-section; a first lever (114) and a second lever (14),
which are articulated in said box-like body in contrast with elastic return means
(20, 120) and are provided with a first arm and a second arm; a bar (37), being accommodated
in said box-like body (2), is articulately coupled to said first arms of said first
and second levers (114, 14) and can move between a passive position in which said
bar partially protrudes from said box-like body and which is determined by the return
of said elastic means by way of said levers, and an active position in which said
bar is substantially internal to said box-like body and which is determined by an
external pressure applied thereon; said first lever being operatively connected to
a closure lock (35); characterized in that said levers (14, 114) are articulately
supported on corresponding plates (9, 10) which can be detachably fixed to the opposite
ends of said box-like body (2), the plate (10) that supports said first lever (114)
having said lock (35) rigidly coupled thereon and having a slider (34) which can slide
thereon, actuates said lock, and is controlled by said second arm of said first lever.
2. The panic bar according to claim 1, characterized in that said plates (9, 10) for
supporting said first lever (114) and said second lever (14) are inserted and fixed
in longitudinal grooves (7, 8) of said box-like body (2) and have portions (27) which
protrude from said box-like body and in which slots (74) are formed for the passage
of screws for fixing said box-like body to a wing.
3. The panic bar according to one of claims 1 and 2, characterized in that respective
blocks (122, 22) are articulated on said second arms of said levers (114, 14), each
block being provided with a tang (123, 23), the tangs of said levers being mutually
opposite, the opposite ends of a connecting rod (26) being engaged on said tangs.
4. The panic bar according to claim 3, characterized in that the opposite ends of said
rod (26) are fixed on said tangs (123, 23).
5. The panic bar according to one of the preceding claims, characterized in that said
bar (37) has two parallel walls (38, 39) and in that the articulations of said first
arms in said bar are constituted by pivots (18, 118) which can be positioned along
said first arms and whose opposite ends are adapted to engage in one of a plurality
of pairs of longitudinal grooves (41, 42) formed in said walls of said bar.
6. The panic bar according to one of the preceding claims, characterized in that said
slider (34) has a first protrusion (36), on which said second arm of said first lever
(114) acts, and a second protrusion (53), which is adapted to act on the mechanism
of said lock (35).
7. The panic bar according to one of claims 1 to 6, characterized in that said plate
(10) for supporting said first lever (114) has two parallel wings (75, 76) which form
a guiding seat for said slider (34), a pivot (78) being rigidly coupled to said plate
(10), said pivot being slideable in a slot (79) of said slider and being provided
with an element (77) for the sliding retention of said slider in said seat.
8. The panic bar according to one of the preceding claims, characterized in that said
first lever (114), said lock (35) and the plate (10) on which they are mounted form
an assembly which can be applied to the wing as a temporary closure assembly.