[0001] The invention relates to the field of fire and/or smoke protection. It relates to
a device to protect a person from smoke and/or fire as described in the preamble of
the independent claims.
[0002] In the event of a fire in a building, the fire must be prevented from spreading and
the persons in the building must be swiftly evacuated. For this purpose, various fire
extinguishers and fire alarms are available. Smoke generated by a fire quickly spreads
along the ceiling and can reach locations far away from the origin of the fire. On
account of this phenomenon even persons who have no need to hurry with evacuation
become alarmed and panic. To prevent such a panic, exposed anti-smoke screens have
been developed to be hung from the ceilings at intervals. Tests show that these anti-smoke
screens can effectively prevent the smoke from spreading along the ceiling. The anti-smoke
screens can be built penetrating the ceiling and installing the ceiling member is
troublesome and heavy. Anti-smoke screens are for example known from the following
applications
GB1579848 and
FR2931177. Wherein
GB1579848 discloses a rodlike fastening in between a two plates screen and
FR2931177 discloses a vertical sealing between two adjacent glass plates.
[0003] The function of smoke barriers is to control the movement of fire effluent within
supporting constructions by forming a barrier. The functions of active or manually
deployed smoke barriers are identical to those of static smoke barriers, but they
also have the ability to be retracted and concealed when not in use.
[0004] Typical functions of smoke barriers are:
- to create a smoke reservoir by containing and limiting the travel of the smoke;
- to channel smoke in a pre-determined direction; and/or
- to prevent or retard smoke entry to another area or void.
[0005] It is therefore an object of the invention to provide an improved device to protect
a person from smoke and/or fire and an improved a method fixing a smoke barrier system
to a supporting construction, which may overcome the disadvantages of the prior art.
Furthermore, the invention might enable a safe escape and/or a rescue of a person.
[0006] These objects are achieved by a smoke barrier system and a method for fixing a smoke
barrier system to a supporting construction according to the independent claims.
[0007] The smoke barrier system comprises at least two brackets, namely a first bracket
and a second bracket, a glass panel and fastener means. The glass panel comprises
at least two holes respectively openings. The fastener means is equipped to fasten
the bracket to the hole of the glass panel, in particular the fastener means are equipped
to fasten a first bracket to a first hole of the glass panel and a second bracket
to a second hole of the glass panel. The brackets are equipped to be fixed to a supporting
construction on which the smoke barrier system is installed and/or is to be installed.
The smoke barrier system further comprises at least two first washer, wherein the
washer, in particular the first washer, is arranged between the fastener means and
the glass panel. The washer is an intumescent washer. The intumescent washer expands
under thermal influence of a fire and/or hot gas, wherein the hot gas can be hot smoke.
Under thermal influence, the washer can form a thermally insulating layer. Furthermore,
under thermal influence the intumescent washer can build up additional pressure between
the fastener means and the panel.
[0008] This can enable to improve the secure fixation of the smoke barrier system to the
supporting construction. The intumescing washer can increase the holding force between
the fastener means and the bracket upon thermal influence of fire and/or hot gas as
the addition pressure.
[0009] Additionally, the thermal insulation formed by the washer can prevent and/or reduce
the thermal load on the holes and/or the fastener means. The reduced thermal load
can increase the stability respectively integrity of the smoke barrier system in the
event of a fire, hot smoke and/or the impact of hot gases. The integrity of the smoke
barrier system can be viewed as the ability of the smoke barrier system to maintain
its soundness for the purpose for which it is intended without the transmission of
significant quantities of flames, hot smoke and/or hot gas to the non-exposed side
of the smoke barrier system.
[0010] In this text the smoke barrier system is a device to device to channel, contain and/or
prevent the migration of smoke (fire effluent). The smoke barrier system can also
be called Smoke Curtains, Smoke Blinds and/or Smoke Screens. The smoke barrier system
can build a smoke reservoir. The smoke reservoir is a region within the supporting
construction limited or bordered by the smoke barrier system and/or structural elements
of the supporting construction so has to retain a thermally buoyant smoke layer in
the event of a fire.
[0011] The intumescent washer expands upon exposure to a fire, hot smoke and/or hot gases.
Due to the expansion, the washer has a lower density after swelling as compared to
the non-swollen washer. The expansion can be directed to any direction, meaning it
can be an isotropic expansion or an anisotropic expansion.
[0012] The glass panel comprises two substantially parallel major surfaces areas, said major
surface areas are also called flat sides. The edges of the two flat sides are connected
to each other via an end side. The end side has a smaller surface area than the flat
sides, and dimension of the end side corresponds to the thickness of the glass panel.
In this text the term 'end face' is used for the circumferential area between the
two flat sides, which is also called "edge" or "narrow side" of a glass panel, or
a surface thereof. An edge region of the glass panel, which may be arranged close
respectively closest to the supporting construction can be also referred to as fixation
region. The edge region extends not only via the end face of the glass panel but also
spreads over a region of the flat side adjacent to the end side.
[0013] The term temperature influence respectively thermal influence means that the temperature
of the air respectively gas is at least 80°C or higher. Normal room temperature and
slightly elevated summer temperature of approximately 40°C are not considered as temperature
influence.
[0014] The holes can be arranged in the edge region of the glass panel. This can enable
a stable connection between the bracket and the glass panel as the bracket can have
a minimised dimension extending between the supporting construction and the glass
panel. The holes can reach from one flat side of the glass panel to the opposite flat
side of the glass panel. The holes can be arranged essentially at a right angle with
respect to the flat side of the glass panel.
[0015] The washer can be arranged around the holes. This allows for a simplified arrangement
of the washer between the fastener means and the glass panel.
[0016] The washer can be a flat ring or perforated piece of solid material. The flat perforated
solid piece can have an arbitrary shape, for example a rectangular, hexagonal or a
triangular shape. The washer can prevent leakage and or distribute pressure acting
on the glass panel. The perforation of the washer can be aligned with the holes of
the glass panel. The washer in the context of this text can also comprise several
pieces that are separately or together arranged between the fastener means and the
glass panel. For example, the washer can comprise several piece, wherein said pieces
have approximately similar thickness. The pieces can be arranged around the holes
such that the pieces are in adjacent contact with each other. It might also be the
case that the pieces are not in contact with each other. The pieces can also cover
at least two opposite sides of the holes, wherein said opposite sides can be arranged
on the same flat side of the glass panel.
[0017] The fastener means can clamp the glass panel to the bracket. For example in case
the fastener means is designed as bolt and the washer is arranged under the head of
the nut or bolt clamping the glass panel to the bracket.
[0018] The outer diameter of the washer can be larger than the outer diameter of the holes.
This can enable a pressure distribution on the glass panel surrounding the holes originating
from the fastener means and/or the bracket. Furthermore, the washer can protect the
holes in case of attack of thermal influence, as the washer can cover the holes and
prevent a passing of the heat and/or smoke through the holes.
[0019] The supporting construction can be a connection to the roof respectively the ceiling.
The smoke barrier system can be fixed directly to the ceiling respectively roof, wherein
the supporting construction can be view as ceiling respectively roof.
[0020] As explained above: The smoke barrier system can comprise at least two brackets.
The glass panel can comprise at least two holes. The fastener means can be designed
to fasten a first bracket to a first hole of the glass panel and a second bracket
can be fastened a second hole, and so on. This enable a precise and stable fastening
of the glass panel relative to the supporting construction.
[0021] The brackets can be essentially identical. The size and/or positioning of the holes
can correspond to each other. It is also possible that the positioning and/or size
of the holes can determine orientational alignment of the glass panel in the supporting
construction.
[0022] The smoke barrier system can comprise at least two first washers that are arranged
close to the first bracket and respectively the second bracket between the fastener
means and the glass panel. Additionally the smoke barrier system can comprise at least
two second washers. Said second washers are arrange opposite to the first washers
as explained above.
[0023] The washer can be arranged on the flat side of the glass panel respectively of the
smoke barrier system facing the temperature influence. As already mentioned above
the temperature influence can originate fire and/or hot gas. In other words: the washer
can be arranged such that it is facing the temperature influence.
[0024] The smoke barrier system can further comprising a second washer. Said second washer
can be arranged between the fastener means and the glass panel. The second washer
can be arranged vis-à-vis of the first washer. The second washer can as well as the
first washer be an intumescent washer. This can enable an improvement of the stability
of the smoke barrier system independent of the side from which the temperature influence
occurs, as both sides of the holes can are covered by the intumescent washer. The
two washers can be essentially identical.
[0025] The smoke barrier system can comprise a grommet, wherein the grommet is arrangeable
in the holes. Said grommet can enable a sealing of the holes. Furthermore, it might
be possible that the grommet is designed a guiding sleeve for guiding the fastener
means through the holes. Additionally, the grommet can enable an isolation of the
fastener means from the inner cross section of the holes. The grommet can prevent
respectively minimise the direct contact between the fastener means and the glass
panel. Said isolation can be beneficial in case of temperature influence at the inner
cross section of the holes can be enabled by the grommet. This means that in case
of temperature influence the fastener means can start to heat up and the grommet can
reduce the heat transferred to the glass panel. The reduced temperature load on the
glass panel can enable the smoke barrier system to resist the temperature influence
for a longer period of time than without such an isolation. Furthermore, the load
of the fastener means can be distributed by the grommet. The inner cross section of
the grommet can at least partially correspond to the outer cross section of the fastener
means. The outer diameter of the grommet can essentially correspond to the inner cross
section of the holes.
[0026] The smoke barrier system can be a static smoke barrier system. Said static smoke
barrier system does not require additional power supply and is constantly operational.
The static smoke barrier is permanently fixed in its fire operational position.
[0027] In general, smoke barriers can be categorised in the following categories: static
smoke barrier with flexible material or rigid material and active smoke barrier with
flexible material or rigid material. Static smoke barriers can be fixed in their fire
operational position at all times and according to their design classification (more
details see below). Static smoke barriers systems can be used as alternatives and/or
additional to the elements of the supporting construction which could act as permanent
static smoke barriers.
[0028] The glass panel can be a transparent and/or translucent glass panel. This enable
a free and open view throughout the supporting construction. The view is not be blocked
by an opaque glass panel. Nevertheless, ornaments and decorative and/or coloured prints
can be arranged on the glass panel and shall not be excluded. Due to the transparent
respectively translucent properties of the glass panel the whole supporting construction
can occur more open and feel larger than with an opaque, non-transparent glass panel.
[0029] The glass panel can be a monolithic glass panel. Such a monolithic glass panel can
enable a simplified fixation of the smoke barrier system to the supporting construction,
as a monolithic glass panel is lighter than a composite glass panel comprising at
least two glass panel elements.
[0030] The glass panel can comprise glass. The glass panel, in particular the flat glass
panel, in most cases can be considered as transparent glass panel. The glass panel
can also be a ceramic glass, in particular a vitroceramic. The glass panel can be
special bent glass panel. Thermally or possibly chemically prestressed glass can be
particularly favourable. A transparent glass panel can be based on polymer (e.g. from
polycarbonates or polymethyl methacrylate (PMMA; acrylic glass), partially crystalline
glass (ceramic glass) or composite systems with glass elements and plastic carriers,
are also considered as alternatives to glass based on silicon oxide. The glass panel
can also comprise glass on a borosilicate basis. In other words: The glass panel,
in particular a transparent and/or translucent glass panel, can comprise a silicon
based glass, a borosilicate, vitroceramic, a polymer based panel and/or other types
of glass.
[0031] The glass panel can comprise fire resistant respectively temperature resistant properties.
The glass panel can be a fire-resistant glazing. The term "fire-resistant glazing"
has a functional meaning and is not to be understood as being limited to certain materials
(specifically: glass in the narrow context), but expressly also includes constructions
with transparent or translucent glass panels of the above mentioned and other materials.
[0032] The glass panel can be the temperature resistant glass panel. The smoke barrier system
can be classified at least as a DH or D
600 smoke barrier according to EN 12101-1:2005+A1:2006. In other words: The smoke barrier
system can be a fire-rated smoke barrier system. The fire-rated smoke barrier system
is characterized by a fire resistance duration respectively fire resistant rating.
EN 12101-1:2005+A1:2006 established a standard for testing smoke barriers.
[0033] The temperature resistance or fire resistance can be considered as the ability of
a smoke barrier system to form an effective barrier against the spread of flames,
smoke and/or hot gas. A temperature resistance can be defined as the minimum number
of minutes during which the smoke barrier system in the examination meets the criteria
of the standardized examination procedure with defined boundary conditions (EN 12101-1:2005+A1:2006).
Accordingly, the temperature resistance can be determined under a certain temperature
stress. EN 12101-1:2005+A1:2006 requires an exposure of the smoke barrier system to
a heat respectively temperature influence of 600°C for the classification as a D
600 smoke barrier system. Higher temperature according to a standard heat curve (EN 1363-1:2012)
are required for classification as DH smoke barrier system. Furthermore, it is required
that the DH and D
600 smoke barrier system do not release flaming droplets or particles within the first
ten minutes of the standard test. The period within which the tested smoke barrier
system meets requirements of EN 12101-1:2005+A1:2006, permits the timely classification
of the smoke barrier system. In other words: The classification of the smoke barrier
system is a temperature-time classification. The standard classification is a D
600-class according to which the smoke barrier is exposed to a heat of 600°C. An advanced
smoke barrier system of the DH-class is exposed to a standard heat curve. Furthermore,
according to both classifications the smoke barrier system does not release flaming
droplets or particles in the first ten minutes of the classification test.
[0034] Classification periods are indicated for each classification in minutes, wherein
the classifying times: 30, 60, 90, 120, or longer are to be used. The temperature
resistance period respectively fire resistance period is thus defined by at least
30 minutes. In general, a temperature resistant smoke barrier system thus fulfils
at least 30 minutes the appropriate criteria or requirements for temperature resistance.
The minimum criterion is the physical barrier. A temperature smoke barrier system
must therefore be classified at least as D
600 30. Fire rated smoke barrier systems have to withstand the temperature of the standard
heat curve and are classified as at least DH 30 smoke barrier system if fulfilling
the corresponding requirements for at least 30 minutes. Accordingly, the fire rated
smoke barrier system must therefore be classified at least as DH 30.
[0035] The smoke barrier system can be a fire-rated smoke barrier system according to the
DH and/or D
600 classification.
[0036] The bracket can be designed for a point fixation of the glass panel. This enables
for the precise positioning on the glass panel. The bracket can fix the glass panel
at a single point. In contrast to that rigid bracket does not fix the glass panel
at several positions. Such a multiple fixation with one and/or multiple bracket would
result in the necessity to provide a very precise conformity of fixing positions of
the bracket and the glass panel. In the single fixation per bracket a certain margin
is possible for precise fixation of the glass panel relative to the supporting construction.
[0037] The bracket can be designed as a retaining bar. The retaining bar can extent along
the edge region of the glass panel. In such an embodiment the retaining bar can be
viewed as fastener means and the glass panel. The intumescent washer can have a strip
like shape and is arranged between the bar clamping the glass panel and the glass
panel.
[0038] The smoke barrier system can comprise at least two panels. Each glass panel can be
fixed to the supporting construction by a bracket and the glass panels are arranged
adjacent to each other. The adjacent panels build a uniform smoke barrier system.
The space between the adjacent panels is minimized to allow minor thermal expansion
of the glass panels due to a temperature influence and to prevent the passage of fire,
hot smoke and/or hot gas.
[0039] The method for fixing a smoke barrier system to a supporting construction comprises
the steps of:
- providing a brackets designed to be fixed to a supporting construction on which the
smoke barrier system is to be installed,
- fixing the bracket to the supporting construction
- providing a glass panel, wherein the glass panel comprises a hole, wherein the hole
can be arranged in the edge region of the glass panel
- providing a grommet,
- inserting the grommets into the holes,
- providing fastener means for fastening the bracket to the hole of the glass panel;
- providing a first, intumescent washer, wherein the intumescent washer expands under
thermal influence of a fire and/or hot gas (for example hot smoke) and wherein the
swollen washer can form a thermally insulating layer upon thermal influence,
- fastening the glass panel to the bracket, wherein the intumescent washer is arranged
between the fastener means and the glass panel and the fastener means is inserted
into the hole and though the intumescent washer, wherein the fastener means is clamping
the glass panel against the brackets.
[0040] The smoke barrier system can be a smoke barrier system as descripted above.
[0041] The grommet can comprise a temperature sensitive material. The temperature sensitive
material can melt upon temperature influence. The temperature sensitive material can
melt at a temperature of 200°C - 300°C. The temperature sensitive material can comprise
a chlorophrene and/or a derivate thereof.
[0042] The glass panel can comprise at least two holes, a corresponding amount of brackets
and grommets can be provided, wherein in each hole a grommet is inserted. Each bracket
can be fastened to one corresponding hole of the glass panel.
[0043] An additional, second intumescent washer can be provided, said additional, second
washer can be arranged on the opposite side of the hole opposite to the first washer.
The fastener means can be inserted into the hole passing both washers arranged on
opposing sides of the glass panel.
[0044] The fastener means can comprise a bolt, a nut and/or a clamping plate.
[0045] As already mentioned above, the intumescent washer can prevent and/or reduce the
thermal load on the hole and/or the fastener means. In case the grommet is inserted
in the hole, also the grommet is protected from thermal influence of a fire and/or
hot smoke as the intumescent washer can build an insulation layer protecting the grommet
inside the hole. This can also prevent a self-ignition of the grommet during the thermal
influence respectively fire test.
[0046] Additionally, the intumescent washer can be used for cold fitting upon installation
of the smoke barrier system at the supporting construction. The cold fitting includes
the fastening of the glass panel to the bracket. The cold fitting enables the positioning
of the glass panel as smoke barrier system in the cold state without being thermally
influenced. Said cold fitting can be crucial for the installation of the smoke barrier
system.
[0047] The smoke barrier system comprises at least one bracket, at least one glass panel
and fastener means. The glass panel comprises at least one hole. The fastener means
is equipped to fasten the bracket to the hole of the glass panel. The bracket is equipped
to be fixed to a supporting construction on which the smoke barrier system is installed
and/or is to be installed. The smoke barrier system further comprises at least one
first washer, wherein the washer is arranged between the fastener means and the glass
panel. The washer is an intumescent washer. The intumescent washer expands under thermal
influence of a fire and/or hot gas, wherein the hot gas can be hot smoke. Under thermal
influence, the washer can form a thermally insulating layer. Furthermore, under thermal
influence the intumescent washer can build up additional pressure between the fastener
means and the glass panel.
[0048] The washer can be used in a smoke barrier system. The washer is a intumescent washer.
The intumescent washer can be arranged between the bracket and the glass panel respectively
between the fastener means and the glass panel. The washer is equipped to increase
a holding force respectively a holding pressure upon exposure to fire, hot smoke and/or
hot gas. The washer can be equipped to build an insulating layer upon exposure to
fire, hot smoke and/or hot gas. The insulating layer can inhibit the breakage of the
glass panel in the region of the hole.
[0049] The hole in the glass panel can also be viewed as opening.
[0050] Further preferred embodiments are evident from the dependent patent claims. Features
of the method claims may be combined with features of the device claims and vice versa.
[0051] The subject matter of the invention will be explained in more detail in the following
text with reference to exemplary embodiments which are illustrated in the attached
drawings, in which are schematically shown:
- Figure 1
- exploded view of a smoke barrier system;
- Figure 2
- sectional drawing of a smoke barrier system; and,
- Figure 3
- plan view of the smoke barrier system.
[0052] The reference symbols used in the drawings, and their meanings, are listed in summary
form in the list of reference symbols. In principle, identical parts are provided
with the same reference symbols in the figures.
[0053] Figure 1 shows an exploded view of a smoke barrier system 1. The smoke barrier system
1 comprises a bracket 2, a glass panel 6 and fastener means 3. The glass panel 6 comprises
a hole 61.The bracket 2 is designed as elbow with an angle of approximately 90° between
the two legs. The bracket 2 is designed such that a first leg can be fixed to the
supporting construction and the other, second leg can be fastened to the hole 61 of
the glass panel 6.
[0054] The smoke barrier system 1 further comprises a grommet 5, wherein the outer cross
section of the grommet 5 essentially corresponds to the inner cross section of the
hole 61. The grommet 5 is placed inside the hole 61. The grommet 5 stabilizes the
fastener means 3 in the hole 61.
[0055] The fastener means 3 comprise a bolt 31, a nut 32 and a clamping plate 33. The nut
32 can be designed to engage with the second leg of the bracket 2. The engagement
can be provide a locked orientation of the nut 32 relative to the second leg of the
bracket 2. Therefore, no wrench is needed to fasten the bolt 31 to the nut 32. In
another embodiment the nut 32 has to be hold by a wrench as the orientation relative
to the second leg is not fixed (for example see fig. 2). The bolt 31 is placed onto
the second leg of the bracket 2 and a first, intumescent washer 4 is placed on the
bolt 31. The glass panel 6 with the grommet 5 in the hole 61 is arranged onto the
bolt 31. Additionally, a second, intumescent washer 4 is arranged on the bolt 31 on
top of the hole 61. The clamping plate 33 can be arranged on the washer 4 and the
bolt 31 can be fastened to clamp the glass panel 6 between the fastener means 3 (bolt
31, nut 32 and/or clamping plate 33) and the second leg of the bracket 2. In another
embodiment the bolt 31 and the clamping plate 33 can first be assembled together with
the glass panel 6 and the washer 4 and afterwards be fastened to the bracket 2. The
intumescent washer 4 can expand upon exposure to elevated temperature respectively
upon thermal influence. Said thermal influence can originate form a fire and/or hot
smoke. The term temperature influence respectively thermal influence means that the
temperature of the air respectively gas is at least 80°C or higher. Under thermal
influence, the washer 4 can form a thermally insulating layer. Furthermore, under
thermal influence the intumescent washer 4 can build up additional pressure between
the fastener means 4 and the glass panel 6. The swollen washer 4 can prevent and/or
reduce the thermal load on the hole 61, the grommet 5 and/or the fastener means 3.
The reduced thermal load can increase the stability of the smoke barrier system 1
in the event of a fire and/or the impact of hot gases.
[0056] In figure 2 assembled smoke barrier systems 1 are shown. Figure 2b depicts an assembled
smoke barrier system 1 similar to the one shown in fig. 1 with a bent bracket 2.
[0057] The bracket 2 shown in figure 2b is designed as flat bar, wherein a first portion
of the bar respectively first leg of the bar is fixed to the supporting construction.
A second portion of the bar respectively second leg of the bar is fastened to the
glass panel 6. Figure 2a shows a flush arrangement of the fastener means 3, wherein
in figure 2b a non-flush configuration of the fastener means 3 is shown. For fastening
the fastener means 3 shown in figure 2b two tool are required to each in one side
of the glass panel 6 to ensure secure fastening. For the fastening of the flash arrangement
(figure 2a) only one tool is needed as the nut 32 can be locked in the bracket 2.
Accordingly, only the bolt 31 has to be tightened.
[0058] Figure 3 shows plan view of the smoke barrier system comprising at least two glass
panels 6, wherein each glass panel 6 is fastened to two brackets 2. The brackets 2
are fixed to the supporting construction. The two panels 6 are arranged adjacent to
each other. The adjacent panels 6 build a uniform smoke barrier system 1. The space
between the adjacent panels 6 is minimized to allow minor thermal expansion of the
panels 6 due to a temperature influence and to prevent the passage of fire and/or
hot gas. The space can be maximum 7 mm, in particular maximum 5 mm.
[0059] While the invention has been described in present preferred embodiments of the invention,
it is distinctly understood that the invention is not limited thereto, but may be
otherwise variously embodied and practised within the scope of the claims.
[0060] Due to the improved stability of the smoke barrier system 1, in particular of the
glass panel 6, in particular the protection of the glass panel 6 at the location of
the hole 61, smoke barrier system 1 can comprise a glass panel with a size of 2x1.5
m respectively 1x1.6 m (wxh) for DH classification and 2.5x1.8 m (wxh) for D
600 classification. This maximum size significantly exceeds the size of commercially
glass panels 6 used in a smoke barrier system 1.
1. A smoke barrier system (1) comprising at least two brackets (2), a glass panel (6)
and fastener means (3),
wherein the glass panel (6) comprises at least two holes (61) and
wherein the fastener means (3) is equipped to fasten the bracket (2) to the hole (61)
of the glass panel (6), in particular wherein the fastener means (3) are equipped
to fasten a first bracket (2) to a first hole (61) of the glass panel (6) and a second
bracket (2) to a second hole (61) of the glass panel (6);
wherein the brackets (2) are equipped to be fixed to a supporting construction on
which the smoke barrier system (1) is to be installed,
wherein the smoke barrier system (1) further comprises at least two first washer (4),
wherein the washer (4) is arranged between the fastener means (3) and the glass panel
(6);
wherein the washer (4) is an intumescent washer (4),
wherein the intumescent washer (4) expands under thermal influence of a fire, hot
smoke, and/or hot gas and forms a thermally insulating layer,
wherein under thermal influence the intumescent washer (4) build up additional pressure
between the fastener means (3) and the glass panel (6).
2. The smoke barrier system (1) according to claim 1, wherein the washer (4) is arranged
on the side of the glass panel (6) facing the temperature influence.
3. The smoke barrier system (1) according any one of the previous claims, further comprising
a second washer (4) arranged between the fastener means (3) and the glass panel (6),
wherein the second washer (4) is arranged vis-à-vis of the first washer (4), wherein
the second washer (4) is an intumescent washer (4).
4. The smoke barrier system (1) according to any one of the previous claims, further
comprising a grommet (5), wherein the grommet (5) arrangeable in the hole (61).
5. The smoke barrier system (1) according to any one of the previous claims,
wherein the smoke barrier system (1) is a static smoke barrier system (1).
6. The smoke barrier system (1) according to any one of the previous claims,
wherein the glass panel (6) is a transparent and/or translucent glass panel (6).
7. The smoke barrier system (1) according to any one of the previous claims,
wherein the glass panel (6) is a monolithic glass panel (6).
8. The smoke barrier system (1) according to any one of the previous claims,
wherein the glass panel (6) is a temperature resistant glass panel (6) and wherein
the smoke barrier system (1) is classified at least as a D600 30 and/or DH 30 smoke barrier according to EN 12101-1.
9. The smoke barrier system (1) according to any one of the previous claims,
wherein the bracket (2) is designed for a point fixation of the glass panel (6).
10. The smoke barrier system (1) according to any one of the previous claims,
wherein the smoke barrier system (1) comprises at least two panels (6),
wherein each glass panel (6) fixed to the supporting construction by a bracket (2),
and
wherein the panels (6) are arranged adjacent to each other to build a uniform smoke
barrier system
11. Method for fixing a smoke barrier system (1) to a supporting construction, comprising
the steps of:
- providing a bracket (2) designed to be fixed to a supporting construction on which
the smoke barrier system (1) is installed,
- fixing the brackets (2) to the supporting construction,
- providing a glass panel (6), wherein the glass panel (6) comprises at least two
holes (61), and
- providing a grommets (5),
- inserting the grommet (5) into the holes (61),
- providing fastener means (3) for fastening the bracket (2) to the hole (61) of the
glass panel (6);
- providing a first, intumescent washer (4), wherein the intumescent washer (4) expands
under thermal influence of a fire, hot smoke and/or hot gas,
- fastening the glass panel (6) to the brackets (2), wherein the washer (4) is arranged
between the fastener means (3) and the glass panel (6) and the fastener means (3)
is inserted into the hole (61) and the washer (4), wherein the fastener means (3)
is clamping the glass panel (6) against the brackets (2).
12. Method according to claim 11, wherein an additional intumescent washer (4) is provided,
said additional washer (4) is arranged on the opposite side of the hole (61) opposite
to the first washer (4), wherein the fastener means (3) is inserted into the hole
(61) passing both washers (4) arranged on opposing sides of the glass panel (6).