[0001] The present invention relates to intumescent gaskets for hot smoke and also cold
smoke sealing, particularly suitable for fire dampers.
[0002] Fire dampers are used in the compartmentalisation of fire-fighting zones in ventilation
and/or air-conditioning systems and their purpose is to avoid the propagation of smoke
in the air distribution channels during a fire by means of the closure of the respective
blade mounted on said damper.
[0003] The closure of the blades generally takes place when a sensing member present thereon
reaches the temperature of 72°C: however the intumescent gaskets mounted on the blade
or in the immediate vicinity thereof generally ensure good hot smoke sealing, generally
at temperatures higher than 110°C, thanks to the expansion of the intumescent material,
but are not suitable for lower temperature smoke sealing.
[0004] This is due to the fact that gaskets for fire dampers available to date on the market
are formed in actual fact by two different gaskets adjacent one to the other and not
integral, each one suitable for performing a different task: the first gasket is suitable
for fire damping and hot smoke sealing which is made up of a band (A) in intumescent
material having a minimum expansion temperature of 120-200°C, which can also be covered
by a profile (B) in plastic, rigid or semi-rigid; the second gasket is suitable for
cold smoke sealing which is made up, for example, of expanded polyurethane foam (C).
[0005] The limits of this technical solution lie in having to use two different gaskets
with different function to ensure the functioning of the entire system, and in having
to attach the gasket (C), for example in polyurethane foam, close to the other gasket
and to the blade by means of appropriate adhesives. Moreover, in the specific case
of profiles for intumescents in rigid plastic, for example those for containing intumescent
calcium silicates, their elastic and sealing performances are limited due to the reduced
adaptability to curvilinear shapes.
[0006] To overcome this problem of elasticity and of sealing attempts were made to incorporate
the intumescent material, in general intumescent graphite, in a PVC matrix so as to
generate a composite suitable for being extruded in flexible tubular form: however
the incorporation of intumescent material in a polymeric matrix such as PVC results
in a smaller expansion of the intumescent material at the time of use since it expands
partially already during the incorporation and/or crosslinking of the tubular article,
and therefore with lower fire damping performances. Moreover the obtaining of flexible
gaskets with smooth surface from said extrudable matrices is difficult and their combustion
generates toxic fumes such as hydrochloric acid.
[0007] Profiles in plastic are not known to date which are flexible and which contain intumescent
material able both to seal against cold smoke and to expand completely during the
fire.
[0008] EP 2062617 describes a gasket for fire dampers formed by a band core made of intumescent material
around which a flexible sheath is placed with an air gap for allowing the expansion
of the intumescent material. The sheath which limits the expansion of the intumescent
material is formed by a flame-resistant woven material whose threads are covered with
silicone to give the woven material flexibility and is fitted over the band of intumescent
material.
[0009] This type of intumescent gaskets cannot take on complex forms and geometries but
can only have regular shapes given that the external covering is formed by a fabric.
[0010] DE 102009000618 describes an intumescent gasket made up of two different gaskets, adjacent one to
the other but not integral, formed by a first expansion gasket formed by intumescent
material which is surrounded by a second elastic gasket in silicone or rubber, with
an H shape. This type of gasket has the disadvantages listed above for the gaskets
formed by two gaskets in contact.
[0011] The gasket in silicone or rubber described in
DE 10 2009 000 618 and the sheath described in
EP 2 062 617 are moreover made with a process which does not involve directly the intumescent
material. They are applied or fitted around the intumescent material, to constitute
with it a double gasket.
[0012] The object of the present invention is that of providing flexible and elastic gaskets
for fire dampers suitable for being mounted on the blades of said dampers, or in the
immediate vicinity, able to create a hot and cold smoke seal by means of a single
body and which can be manufactured without causing the expansion, even only partial,
of the intumescent material incorporated in them.
[0013] Another object of the present invention is that of providing such a gasket with smooth
surface which is also practical, easy to make, economical and which can have an external
covering of any form and geometry.
[0014] A further object of the present invention is to allow the making of fire dampers
provided with sealing, also cold smoke sealing, without using fire gaskets formed
by two different adjacent gaskets.
[0015] These objects are achieved in accordance with the invention with the features listed
in the annexed independent claims 1 and 9,
[0016] Advantageous embodiments of the invention are disclosed by the dependent claims.
The object of the present invention is a single-body intumescent gasket formed by
a band of intumescent material covered by a profile in silicone elastomer material
(defined also as silicone rubber) having a smooth surface.
[0017] In practice in the present gasket the intumescent material is incorporated as a band
in a matrix of a silicone elastomer extrudable and crosslinkable without heat by means
of UV rays.
[0018] In the present gasket, in fact, the intumescent strip or band forms a single body
with the covering made of silicone in that the intumescent material is internal and
integral with said covering thanks to the fact that the latter is coextruded over
the tumescent material. This means that the strip is non-removable in relation to
the covering and removable from the gasket only by breaking said covering.
[0019] This single-body gasket is able to seal against both cold smoke thanks to the external
profile in silicone crosslinkable without heat (i.e. without heat supplied as occurs
for example in IR ovens, hot air ovens, UHF ovens, in molten salt baths, in autoclave)
which can be made in any form and geometry complementary to the form of the seat,
and against hot smoke thanks to the intumescent material contained inside said profile.
[0020] Therefore there is no need to couple to the gasket in accordance with the present
invention a second gasket (C) in expanded polyurethane as instead occurs in the prior
art described above.
[0021] In fact at ambient temperature it is the profile of the external covering which forms
a seal in the seat, while in the case of fire or high heat it is the expanding intumescent
material which forms a seal in the seat wherein the gasket has been placed since the
external profile in silicone deforms and/or burns to ashes, leaving space for the
expansion of the intumescent material.
[0022] It should be noted that this behaviour is opposed to what occurs in intumescent gaskets
with woven glass fibre sheath where the sealing in the seat is always formed by the
sheath even after expansion of the intumescent material.
[0023] The gasket in accordance with the present invention is also suitable for air and
water sealing.
[0024] With intumescent material the intent here is to identify an incombustible material
which reacts to high temperatures, expanding fast and ensuring a perfect sealing of
the empty spaces against the hot smoke, such as for example expanded graphite, silicates
and the like, preferably expandable graphite of flame-retardant grade.
[0025] Further features of the invention will be made clearer by the following detailed
description referred to one of its embodiments purely by way of a non-limiting example,
illustrated in the accompanying drawings, in which:
Fig. 1 is a simplified perspective view of a fire damper with circular section with
blade open to allow the passage of air (indicated by the arrows);
Fig. 2 is a simplified perspective view of the fire damper of Fig. 1 with blade closed
to block the passage of smoke (indicated by the arrows);
Figs. 3 a) and b) are partially sectioned plan top views of the fire damper of Figs.
1 and 2 with blade open and closed respectively;
Figs. 3 c) and d) are enlarged views of the detail denoted by A in Fig, 3b) illustrating
respectively the closed damper gasket in condition of cold gas sealing (<120°C) and
hot gas sealing (<120°C) after expansion of the intumescent material;
Fig. 4a is a front view of the damper of Fig. 3 a);
Fig. 4b is a front view of a second damper for ducts with square profile;
Fig. 5 is an enlarged section view of a gasket used in the dampers of the previous
illustrations;
Figs. 6-7 are sectioned views of gaskets with different external profiles;
Figs. 8-10 are views from above of cross sections of gaskets with different external
profiles inserted in the door sill of aluminium doors.
[0026] Figure 1 shows a typical cylindrical fire damper for air-conditioning or ventilation
ducts denoted by reference numeral 1.
[0027] In normal ambient conditions this damper 1 is open since the blade 2 of circular
shape is in line with the flow of air in the duct which is indicated in the drawing
by means of arrows. Around its perimeter said blade 2 has mounted one or two gaskets
100 in accordance with the present invention, positioned parallel one to the other,
which will go to form a seal between the perimeter of the blade 2 and the inner wall
of the fire damper (Figs. 3c, 3d) when said blade 2 is to be closed, positioning perpendicular
to the flow of air (Fig, 2 and Fig. 3b).
[0028] Thanks to the high sealing also against cold smoke of the gaskets 100 in accordance
with the invention, the flow of air does not propagate in the duct whereon the fire
damper 1 is mounted as illustrated by the curved tip arrows in Fig. 2, once the blade
2 of the damper 1 is closed.
[0029] The blade 2 is mounted on a small shaft 3 around which said blade can rotate when
driven by actuation means 4 (Figs. 4a and 4b).
[0030] Going into detail, each gasket 100 is housed in a respective cavity formed in the
thickness of the blade 2 around its perimeter to allow the housing thereof, or can
be stapled on the blade or on the perimeter of the duct made in aluminium.
[0031] In this case the gasket 100 has an external profile with C shape in cross section,
suitable for sealing when the gasket is mounted around the circular blade 2 (Fig.
5): in cross section the external profile of this gasket 100 is formed by a central
portion or body 101, substantially rectangular and hollow, such as to define a tubular
seat 110 which houses internally the intumescent material 102.
[0032] At the ends of said central portion 101 two fins 103 extend integral with the central
portion 101 which are suitable for cold smoke sealing against the walls 5 (Figs. 3c
and 3d) of the fire damper 1 inserted in the duct (not illustrated). The external
profile is made in silicone crosslinkable without heat and the gasket is a single
body since the various portions are continuous one with the other.
[0033] Said gasket 100 also has longitudinal incisions 104, preferably discontinuous, which
encourage the breaking of the seat 110 of the intumescent material facilitating the
release of said intumescent material 102 expanding in the case of increase of the
temperature.
[0034] The siliconic material is coupled with the intumescent material so as to cover it
entirely.
[0035] The gasket 100 in accordance with the invention is obtained by means of the coextrusion
of a silicone elastomer around a layer of intumescent material. Said layer can have
any thickness and depends in part on the degree of expandibility of the intumescent
material. An example of suitable thickness can be a value comprised between 1.5 and
5.0 mm.
[0036] The coextrusion means that the external profile of the gasket constituted by the
silicone elastomer is completely in contact with the intumescent material, adhering
thereto without leaving any air gap between them.
[0037] Moreover the coextrusion allows intumescent gaskets to be obtained having an external
profile of any form and geometry, a situation which cannot be achieved in the case
of intumescent gaskets obtained by covering of the intumescent material or provided
with external woven glass fibre sheath, such as those described for example in
EP 2062617, wherein the covering/sheath adapts to the shape of the intumescent material generally
in strip form.
[0038] Subsequently the silicone elastomer material is crosslinked without heat in a few
seconds by means of UV radiation exposure, at a temperature extensively compatible
with all intumescent materials including those which expand at lower temperatures.
[0039] The silicone elastomer used here is typically a solid silicone elastomer containing
silicone polymers with high molecular weight and long polymer chains, perfectly suitable
for the process of extrusion and which can be crosslinked without the use of heat
(cold) by means of UV radiation exposure.
[0040] Thanks to the use of elastomeric silicone crosslinkable without heat it is possible
therefore to manufacture highly flexible intumescent gaskets with smooth surfaces
which can house internally expandable intumescent materials. These gaskets are suitable
for being usable from -60°C to the temperature of expansion of the intumescent material.
This siliconic material can also be formulated with one or more specific additives
which give resistance, for example, to heat, flame, bacteria and mould.
[0041] Since the external profile in silicone elastomer material has the purpose of ensuring
smoke sealing when the intumescent material has not yet expanded (smoke still "cold"
with temperatures below 100°C), this profile will have the most suitable shape according
to the final application and to the seat wherein said gasket will be housed, also
being able to have hitching feet 106 (Figs. 8 and 10) or abutting balloons 105 (Figs.
6-7), etc., as an alternative to or in addition to the sealing fins 103.
[0042] For example the gasket 100 shown in Fig. 7 has the external covering with a P profile,
in cross section, which is formed by a central portion 101 where the intumescent material
102 is contained, wherefrom a hitching foot 106 and an internally hollow abutting
balloon 105 extend, which are both integral with said central portion 101.
[0043] In another embodiment the gasket 100 has an external covering as defined above and
moreover comprises hitching feet 106 represented by a T portion, which is integral
with said central portion 101, as illustrated in Figs. 8-9.
[0044] In Fig. 10 the gasket 100 has an external covering comprising two fins 103 and a
T portion 106 which is however separated from said central portion 101 by means of
a through cavity 107.
[0045] As can be seen from Figs. 8-10 the T portion 106 is suitable for being inserted in
the guillotine 7 of a door sill 8 and ensures that it is restrained by said guillotine
7, forming a seal between the fire door and the respective frame.
[0046] In yet another embodiment the gasket 100 has the external covering whose profile,
in cross section, is formed by a central portion 101 from whose end a hitching foot
106 and a hollow abutting balloon 105 extend, as illustrated in Fig. 6.
[0047] In practice the fins in silicone 103, like the abutting balloons 105 in silicone,
represent means suitable for cold smoke sealing.
[0048] The lack of PVC ensures the lack of hydrochloric acid fumes in the event of fire.
[0049] It is to be understood that also other types of elastomers (rubbers) which can be
crosslinked without heat can be used to make the external covering of the gasket in
accordance with the present invention.
[0050] Numerous detail changes and variations can be made to the present embodiment of the
invention within the reach of a person skilled in the art, in any case coming within
the scope of the invention expressed by the annexed claims.
1. Single-body intumescent gasket (100) formed by an external profile constituted by
a polymeric material which surrounds and is in contact with an intumescent material
(102) inside said profile and integral with it, characterised in that said polymeric material is coextruded around said intumescent material (102) and
is constituted by a silicone elastomer crosslinkable without heat by means of UV radiation
exposure.
2. Gasket according to claim 1, wherein the intumescent material (102) is expandable
graphite, preferably "flame retardant" grade.
3. Gasket according to claim 1 or 2, wherein said external covering comprises a central
portion (101) having a tubular seat (110) housing said intumescent material,
4. Gasket according to claim 3, characterised in that it has longitudinal incisions (104) suitable for promoting the breaking of said seat
(110) and facilitating the expansion of said intumescent material (102) in the event
of a temperature increase.
5. Gasket according to any one of the previous claims, characterised in that said covering comprises cold smoke sealing means (103;105).
6. Gasket according to any one of the previous claims, wherein said external covering
has a C-form profile formed by a central portion (101) from whose ends two cold smoke
sealing fins (103) extend and are integral with said central portion (101).
7. Gasket according to any one of previous claims 1 to 5, wherein said external covering
is formed by a central portion (101) from whose ends at least one hitching foot (106)
and an abutting balloon (105) for cold smoke sealing extend and are integral with
said central portion (101).
8. Gasket according to any one of previous claims 3 to 7, wherein said central portion
(101) further comprises a hollow cavity (107).
9. Fire damper (1) for ventilation and air-conditioning ducts comprising a blade (2)
for the opening or closure of said damper (1), characterised in that around the perimeter of said blade (2) or around the perimeter of the duct at least
one single-body intumescent gasket (100) is placed as defined by any one of previous
claims 1-8.