Technical field
[0001] The present invention relates to a cabin passage arrangement especially for a ship.
Prior art
[0002] It is known from prior art to establish cabin passages aboard ship so that the cabin
passages are constructed on the ship after the cabins have been installed. The walls
of the cabin passage are aligned irrespective of the precise position of the cabins
so that the cabin passage is straight and has equal width and height everywhere. The
alignment is thus a necessary action, as the installation accuracy of the cabins does
not normally provide a sufficiently straight line for constructing the passage. The
alignment is performed for instance by utilising an alignment wire in order to determine
precisely the position of the lower stud rail of the wall panels. After the alignment
the lower studs are typically welded onto the ship deck. The lower stud rail is typically
a rail 271 (FIG. 27) with a U-profile. Similarly, the upper stud rail of the panels
is aligned and secured to the ceiling or wall of the cabin by a welded bearer, or
to the overlying deck of the ship.
[0003] As the position of the cabins on the ship varies within the scope of the installation
accuracy, it is necessary to use in situ adapting for the fastening of the passage
panels. This means that the passage materials need to be fabricated (e.g. cutting,
welding, joining of the panels and other material) on the ship, which is slow and
complicated to perform due to lack of space. The passage material is typically composed
of wall and ceiling panels with stud rails, which are secured to the ship and/or the
cabins in the manner described in the above. The passage materials are typically brought
onto the ship after the cabins have been installed, whereby there are extra costs
involved in the transport of the materials. Material stocks lying on the cabin passage
impede the traffic along the passage and impair the fire safety aboard ship during
the time of construction.
[0004] It is also known from prior art that the wall of a prefabricated cabin module facing
the passage makes the passage wall as well. This kind of solution, however, involves
problems due to the installation accuracy of the cabins, because the cabins need to
be installed precisely on a certain spot of the ship deck, which is difficult and
slow work, as the alignment of the cabin passage requires a whole cabin to be moved.
In addition, some service problems arise, as the reparation and change of the cabin
passage panels is complicated.
[0005] The document
US 6 016 636, which is considered to be the closest state of the art, discloses such a modular
ship's cabin arrangement and method of construction.
[0006] An object of the present invention is to eliminate the above-discussed disadvantages
related to prior art. The object is achieved as is described in the claims.
Brief description of the invention
[0007] The invention is based on the idea of connecting the cabin passage arrangement with
cabin modules. Thus, an individual cabin comprises prefabricated module-sized wall
panels, as well as adjusting pieces and cover fillets for said panels, of which adjusting
pieces and cover fillets a certain portion of the cabin passage can be formed. The
adjusting pieces for panels and wall panels are attached to the side of the cabin
module facing the passage. Other elements included in the cabin passage portion, which
cannot be installed, or it is not practical to install them in advance, are arranged
inside the cabin for further installation. In the cabin passage arrangement according
to the invention the materials of the cabin passage are thus delivered onto the ship
inside a prefabricated cabin module.
List of drawings
[0008] In the following the invention is described in more detail with reference to the
attached drawings, in which
Figure 1 shows an example of the cabin passage arrangement according to the invention;
Figure 2 shows an example of a module-sized wall panel;
Figures 3 and 4 show examples of various wall panel profiles;
Figure 5 shows an example of the connection of a wall panel with an adjacent wall
panel;
Figure 6 shows an example of a module-sized ceiling panel according to the invention;
Figure 7 shows an exemplary profile of the ceiling panel;
Figure 8 shows an example of the connection of a ceiling panel or a wall panel with
an adjacent panel;
Figures 9-11 show examples of adjusting pieces;
Figures 12 and 13 show examples of the positioning of a wall panel with respect to
the frame of a cabin door;
Figures 14 and 15 show an example of a curved cover fillet for corner;
Figures 16 and 17 show an example of a right-angl ed cover fillet for corner;
Figure 18 shows an example of a cover fillet with a T-profile;
Figure 19 shows an example of an insulation piece, which may be installed under a
cover fillet for corner;
Figure 20 shows an exemplary profile of a stud rail and an extension piece for the
studs on the ceiling of the cabin passage;
Figure 21 shows an example of a stud rail and an extension piece for the studs;
Figure 22 shows an example of how the extension piece for the studs is to be installed
in the stud rails;
Figures 23 and 24 show examples of the mountability of the adjusting pieces;
Figure 25 shows an example, where the adjusting pieces are attached to one another
and to a wall panel and cabin;
Figure 26 shows an example of the installation of a ceiling panel; and
Figures 27 - 30 show examples of various stud rails.
Description of the invention
[0009] Fig. 1 shows an example of cabin modules and passage materials included in the cabin
modules. In a typical cabin 1 the wall facing a maintenance triangle 1" and a door
1' is located against the cabin passage. The wall facing the cabin passage has preferably
been provided with wall panels for the cabin passage already in the workshop, which
panels form a portion of the passage over the distance of the cabin. If some of the
panels, e.g. the ceiling panels and service hatches, and the rest of the passage material
cannot be installed in the cabin in advance, they will be delivered as separate elements
along with the cabin.
[0010] A portion 2 of the cabin's passage wall in the passage system consists for instance
of a door portion panel 3, wall panel 4, service hatch 5 and ceiling panels (not shown
in FIG. 1). The service hatch is a section of the passage wall at the service triangle,
through which it is possible to get into the triangle to do maintenance and repair
work. The service hatch may be a module-sized element consisting of an upper and lower
part, and the hatch itself. Since the service triangle forms typically one boundary
surface against the adjacent cabin, the service triangle may be eliminated from every
second cabin. The same applies also to the ceiling panels of the passage, i.e. only
some of the cabin modules need to be provided with ceiling panels.
[0011] The basic concept of the passage panel is a planar panel, which may have inner or
outer corners, openings and/or outfitting (e.g. a passage handrail, electrical accessories)
and which may be adjusted by means of separate adjusting pieces. The passage panel
may also comprise corners, which are salient or re-entrant seen from the passage,
whereby the wall surface may be provided with desired recesses or protrusions. Moreover,
the passage panel may also be shaped so as to fit the door opening of the cabin.
[0012] The elements of the cabin passage arrangement are cut-to-size modules. FIG. 2 shows
an example of a typical wall panel 21. The panel is normally made of metal (e.g. of
steel or aluminium), which is bent at the edge 22 of the panel. FIG. 3 shows an exemplary
cutting of the panel according to FIG. 2, where the edges 22' are bent to one right
angle. Fig. 4 shows how the wall panel edges may be bent in an alternative way, where
the edges 22" are bent twice, whereby they form a groove on the back surface of the
panel (on the panel face not visible). FIG. 5 shows an example of the connection of
a panel with an adjacent panel, where one edge 22" of a single panel is bent in the
way shown in FIG. 4, but the opposite edge of the same panel is bent so as to form
a projecting overhang 51. The edge 22" curving inwards matches the projecting overhang
of the adjacent panel.
[0013] FIG. 6 shows an example of a ceiling panel 61, the surface of which has been bent
so that grooves are formed. FIG. 7 shows a side projection of the panel according
to FIG. 6. The side projection shows that the face remaining behind the front face
of the panel is provided with two layers 72, 73 of insulating material, the purpose
of which is to act as sound insulation and prevent fire. It is also apparent that
the edge of the ceiling panel may be bent so as to form a projecting overhang 74 either
at both edges or at one edge in order two make the connection with the adjacent ceiling
panels neat (cf. FIG. 5).
[0014] FIG. 8 shows an alternative for shaping the edges of both the ceiling panels and
wall panels in order to accomplish a neat and firm connection with the adjacent panels.
According to FIG. 8 one edge of an individual panel forms a projecting overhang 51
and the opposite edge (in the figure the edge of the adjacent panel) forms a bent
groove 81, into which the overhang is adapted.
[0015] As shown in FIGS. 2 - 8 both the module-sized wall panels and ceiling panels have
various alternative concepts. Also the ceiling panel may be planar, such as the wall
panel in FIG. 2. The back surface of the wall panels may also be provided with one
or several insulation layers, such as the ceiling panels. There are various bending
profiles for panel edges, which are suitable for panels both on the ceiling and on
the wall.
[0016] The wall panels are secured to the cabin wall by means of adjusting pieces. A single
adjusting piece is an angle iron or a plate. The angle iron or the plate may be made
of metal suitable for the purpose, such as steel or aluminium, or of other suitable
material. FIGS. 9 - 11 show examples of various adjusting pieces. In FIG. 9 the adjusting
piece is an angle iron 91, the angle of which is 90 degrees. The angle iron may be
provided with several holes, the shape of which may vary depending on the application.
In the embodiment of FIG. 9 there are circular holes 93 and elongated holes 92. FIG.
10 shows another angle iron 100, the angle of which is larger than a right angle.
Also in this example there are circular holes 102 and elongated holes 101 provided
in the angle iron. The example of FIG. 11 shows a plate 111, which may be used as
an adjusting piece. It is thus evident that the adjusting pieces may comprise angle
irons of various sizes and with various angles and provided with holes of desired
shape. Also the plate may have a desired size and comprise holes of desired shape.
The use of the adjusting pieces will be explained later.
[0017] FIG. 12 shows an example, in which the wall panel 21 of the passage is aligned with
the doorframe 121 of the cabin door. A plate 122 (for instance a metal plate) is attached
to the doorframe for positioning the panel on exactly correct level. The aperture
between the frame and the panel may be covered with a percutient fillet 123 having
an angle profile. The collar of the percutient fillet needs to be wide enough in order
to cover the aperture.
[0018] FIG. 13 shows the fastening of a percutient fillet 133 in more detail. A bent plate
132 is attached to the doorframe 131 so as to form a groove, into which the percutient
fillet 133 may be fixed. The groove needs to be sufficiently deep so that the percutient
filler, i.e. the cover fillet, covers the aperture between the frame 131 and the panel
21. Thus, the elements in FIGS. 12 and 13 have a different purpose, respectively.
The adapter plate 122 is for the wall panel and the bent plate 132 mostly for the
percutient fillet. Both elements are thus installed at the same frame, whereby the
bent plate 132 is located on the front face of the adapter plate 122 seen from the
direction of the passage.
[0019] In the solution according to the invention the wall panel between two adjacent cabin
doors may be produced as a prefabricated product by using a dimensioning based on
the nominal air gap between the cabins as a width of the panel. The width of the collar
of the percutient fillet to be attached to the doorframe is dimensioned so that the
edge of the panel will remain behind the percutient fiiiet at every mounting tolerance.
The gap between the doorframe and the panel may, when necessary, be battened down
for instance by mineral wool. As described, the installation of the door panel is
in an advantageous case facilitated by support plates attached to the doorframe in
advance, by which plates the door panel is positioned accurately flush with the doorframe
in the cross-sectional direction of the passage.
[0020] FIGS. 14 and 15 show an example of a curved cover fillet 141, by which the gap between
two wall panels to be installed in a corner can be covered. FIG. 14 shows that also
the edges of the cover fillets may be bent in several different ways, for instance
so that they form an inwards bent hook. It is also an option not to bend the edges
at all.
[0021] FIGS. 16 and 17 show an example of a right-angled cover fillet 161, by which the
gap between two wall panels to be installed in a corner can be covered. It is apparent
from FIG. 17 as well that also the edges of the cover fillets may be bent in several
different ways.
[0022] FIG. 18 shows a cover fillet 181 with a T-profile. Such a cover fillet may be used
for covering the gap between two adjacent panels. The width of the fillet is sufficient
for covering the largest possible gap produced by mounting tolerances. FIG. 19 shows
an example of insulation material, which may be installed under a cover fillet for
corner, if for instance sound insulation or prevention of fire needs to be ensured.
Thus, the cover fillets comprise various kinds of flat cover fillets (fillets that
cover a gap on a level, for instance between two panels flush with one another) and
cover fillets that form an angle.
[0023] There is a connection element between the wall panel and the ceiling panel, by which
the panels may be attached to one another. FIGS. 20 - 22 show examples of such connecting
elements. The connecting element is a stud rail 201 on the ceiling, the profile of
which is more or less like the letter Z with clasps at the edges. Insulation material
202 may, if needed, be arranged at one clasp, as is shown in FIG. 20. FIG. 21 shows
a general example of a stud rail 201' on the ceiling. Since the stud rails on the
ceiling are also module-sized, an extension piece is required between two rails. FIG.
22 shows such an extension piece 201. It is apparent that the extension piece is installed
between and on top of the stud rails 201' on the ceiling. The clasp of the extension
piece may as well be provided with insulation material. If the clasps of the stud
rails 201' on the ceiling are provided with insulation material, it will be cut off
at the extension piece.
[0024] FIG. 23 shows an example of how two adjusting pieces 231, i.e. angle irons, are assembled
with respect to one another. Both angle irons in this example are provided with elongated
holes 232. One face of the first angle iron is placed against that of the second angle
iron so that the other wings of the angle irons are pointing outwards from one another
on the opposite sides, when seen from the centre of the wings placed against one another.
The elongated holes, which are used for fastening the angle irons, enable a certain
tolerance, as is shown in FIG. 24. The mutual fastening of the wings of the angle
irons placed against one another may vary by a distance Y and the fastening to the
wall or panel by a distance X.
[0025] FIG. 25 shows an assembly, in which the angle irons 231 are fixed to the cabin wall
231 facing the passage, to the wall panel 21 and to one another. Said tolerances enable
the alignment of the wall panel in the longitudinal and lateral direction of the passage.
When the panel is being aligned, the screws, by which the angle iron is fixed, are
loosened and after the alignment the screws are tightened again. In other words the
mountability of the wall panels can be adjusted by means of said adjusting pieces
by loosening the fastening of the adjusting piece to the mounting base and/or to another
adjusting piece, whereby the panel can be located in position to a desired spot, to
which the adjusting piece can be attached. It is to be noticed that the fastening
in this context refers also to the locking of the adjusting pieces in position. The
locking of the pieces may be performed for instance by using fastening means suitable
for quick fastening (e.g. screws, nuts, bolts). The mounting base of the adjusting
piece is either a cabin module (e.g. its wall) or a wall panel.
[0026] The adjusting pieces may thus be loosened for the installation period, and tightened
and locked again after the installation. Adjacent wall panels can thus be positioned
on a desired level. In a preferable embodiment the adjustable wall panel extends from
the hatch edge of the cabin's service space to the vicinity of the cabin door, but
it may also comprise the frame of the cabin door as one joined panel or as several
separate panels. The locking method of the panel enables an easy replacement thereof
when the ship is in use. The adjustment of a panel starts by loosening the adjustment
of the cabin-specific panel in the longitudinal direction, after which the panel is
moved a necessary distance in the longitudinal direction of the passage. Next, the
longitudinal adjustment is locked for instance by a self-boring screw. Finally, the
panel is aligned with the passage in the lateral direction of the passage by loosening
the adjusting piece and locking it again after the adjustment for instance by a self-boring
screw.
[0027] FIG. 26 shows an example of the installation of a ceiling panel. In the example the
ceiling panel 71 is secured to the stud rails 201 on the ceiling by arranging it under
the rails, which are placed at the upper end of the wall panels 22.
[0028] FIGS. 27 - 30 show examples of various kinds of stud rails. These stud rails are
taken into use when needed, and they can be connected with the passage material delivered
together with the cabin module. FIG. 27 shows a rail 271 with a U-profile, which can
be used both as an upper and lower stud rail. FIG. 28 shows a stud rail 281 with an
L-profile. FIG. 29 shows a stud rail 291, the profile of which forms a step. FIG.
30 shows a stud rail 301 with a J-profile, which is particularly suitable for lower
studs, for instance for the alignment and fastening of a service hatch, or a service
hatch element, onto the ship deck. All these profiles may be extended and/or adapted
by means of the adapters shown in FIG. 22. Stud rails are used in special cases, for
instance for installing a certain type of service hatch or when more rigidity is desired
for the fastening of panels. The stud rails comprise lower stud rails, upper stud
rails and, when necessary, supporting rails for special installation purposes.
[0029] A problem with applying the invention is the fact that prefabricated module-sized
elements need to be adapted to an environment, the precise dimensions of which cannot
be known in advance. According to prior art this requires, as mentioned earlier, modification
of the elements aboard ship. According to the present invention the problem is solved
so that the installation of the wall panels is no longer based on stud rails to be
fastened onto the ship (except for special cases), but on adjusting pieces to be attached
to the wall of the cabin module. Since the size of the air gap between the cabins
is known or it is assumed to be within a certain range (nominal air gap 30 mm, mounting
tolerance ±15 mm), when the cabin modules are being installed, also the shift in the
longitudinal direction of the passage is adjusted by the adjusting pieces. Then it
is possible to install the hatch of the service space of the cabin accurately in the
free space of the same width as the hatch between the passage panels of two cabins.
The unnecessary portion of the wall panel may be covered with cover fillets, for instance
by a corner panel, closer to the door (cf. FIG. 1). The mounting tolerances are thus
dependent on the installation of the cabins. Since the panels are prefabricated into
module-size compatible with the cabin module (and passage), the adjusting pieces and
cover fillets establish a sufficient mounting allowance so that the tolerances can
be taken into account.
[0030] Longitudinal adjustment is not required, if the hatch of the service space used on
the ship is provided with a collar allowing a width variation of the hatch of the
service space. In this alternative, the module-sized cabin determines the length of
the passage, and the service hatch provided with a collar covers the gaps between
the cabins caused by the mounting tolerance.
[0031] A passage wall panel is thus secured to the cabin module in advance, which panel
can be adjusted without moving the cabin. In this way the alignment of the passage
on the ship is easy. An essential part of the other prefabricated materials of the
passage may be packed in the cabin, for instance other wall panels of the passage,
possible stud elements, a service hatch, stud means for the ceiling, wall panels with
outfitting as well as supplies and equipment for heating, plumbing, ventilation and
electrical installation.
[0032] The supplies to the power current and low current systems of the passage are preferably
taken from the cabin modules to the passage. In a preferable embodiment the cabin
area is electrified essentially by a cabling located in the cabin modules. In one
embodiment a link box located in the cabin is provided with respective outputs for,
inter alia, the illumination, fire detector, fire alarm, loudspeaker, low-height illumination
and socket system of the passage. The cabling from the link box to a device on the
passage may be ready-fitted in the cabin module or for instance in a ceiling panel,
which is in advance provided with a cable and socket for the connection to the link
box. The sprinkler installation of the cabin passage may be realised so that the sprinkler
pipes attached to the cabin modules in advance are connected in series, and the sprinkler
of the passage is connected by means of a flexible hose.
[0033] In one embodiment of the invention the upper studs between two cabin doors are secured
only to the doorframes without supporting the studs elsewhere in the cabin or on the
ship. When erecting a wall, the panel is lifted into position and screwed tight into
the lower and upper stud rails, or to the support plates arranged at the doorframes.
[0034] The stud elements for the ceiling of the passage may be delivered in a cabin module
as cut and sheered prefabricated products. In a preferable embodiment of the invention
two prefabricated elements per one stud arrangement are packed in the cabin, the total
length of which elements is about 20 mm shorter than the length of the required stud
arrangement. This gap is covered with a separate overlapping element, which covers
the mounting tolerance in that place.
[0035] By utilising the present invention it is possible to avoid separate transport of
passage materials onto the ship. Consequently, the logistic costs in the harbour will
be reduced, the cabin passages will remain unoccupied, the fire load during the time
of construction will be reduced due to less packing material, and the treatment charges
for the purchase will be lower at the shipyard, as also the passage structures will
be delivered together with the cabin modules as one single purchase.
[0036] By the present invention it is possible to cut down the work aboard ship by shifting
work over to a more productive workshop environment, which results in lower costs
and improved occupational safety. The work aboard ship will be cut off, as the materials
are delivered to the cabin area together with the cabin, and as the prefabricated
products eliminate the need for sawing, welding and sheering of the panels and stud
arrangements aboard ship. The mounting tolerance of the prefabricated cut-to-size
elements can be covered by using overlapping stud arrangements (stud rails on the
ceiling). The fire safety on the ship during the construction time will be improved
by utilising the present invention, as the welding or cutting of the elements by tools
causing arcing will no longer be needed in the installation work.
[0037] In the light of the above examples it is apparent that the invention is not limited
to the above-described examples only, but it can have a plurality of various embodiments
within the scope of the inventive idea.
1. A cabin passage arrangement, especially for passenger ships, characterised in that the arrangement comprises prefabricated module-sized wall panels 21, as well as adjusting
piece 231 and cover fillets for said panels, of which wall panels, adjusting pieces
and cover fillets a certain portion of the cabin passage can be formed, in that the adjusting pieces and wall panels are attached to the side of the cabin module
facing the passage, and in that the other elements of the cabin passage portion are located inside the cabin for
further installation.
2. An arrangement according to claim 1, characterised in that the arrangement further comprises ceiling panels.
3. An arrangement according to claim 1 or 2, characterised in that the arrangement further comprises stud rails.
4. An arrangement according to claim 1, 2 or 3, characterised in that the arrangement further comprises a service hatch or hatches.
5. A cabin passage arrangement according to any one of claims 1-4, characterised in that the mountability of said wall panels can be adjusted by means of said adjusting pieces
by loosening the fastening of the adjusting piece to the mounting base and/or to another
adjusting piece, whereby the panel can be located in position to a desired spot, to
which the adjusting piece can be attached.
6. A cabin passage arrangement according to claim 5, characterised in that the adjusting pieces comprise junction plates and support plates.
7. A cabin passage arrangement according to claim 6, characterised in that the adjusting pieces are made of metal.
8. A cabin passage arrangement according to claim 6 or 7, characterised in that the adjusting pieces are provided with holes of various sizes and shapes.
9. A cabin passage arrangement according to any one of claims 5-8, characterised in that at least a part of the stud rails can be installed overlapping one another.
10. A cabin passage arrangement according to claim 9, characterised in that the stud rails comprise lower stud rails, upper stud rails and, when necessary, supporting
rails for special installation purposes.
11. A cabin passage arrangement according to any one of claims 1-10, characterised in that the cover fillets comprise various kinds of flat cover fillets and cover fillets
forming an angle.
12. A cabin passage arrangement according to claim 11, characterised in that the cover fillets forming an angle comprise cover fillets for a curved corner.
13. A cabin passage arrangement according to any one of claims 3-12, characterised in that the panels comprise, when necessary, equipment for heating, plumbing, ventilation
and electrical installation.
14. A cabin passage arrangement according to claim 13, characterised in that the arrangement comprises supplies to heating, plumbing, ventilation and electrical
installation.
15. A cabin passage arrangement according to any one of claims 5 - 14, characterised in that the wall panels comprise, when necessary, a passage handrail.
1. Kabinendurchgangsanordnung, insbesondere für Passagierschiffe, dadurch gekennzeichnet, dass die Anordnung vorgefertigte modulgroße Wandpaneele (21) sowie Passstücke (231) und
Abdeckleisten für die Paneele umfasst, wobei von diesen Wandpaneelen, Passtücken und
Abdeckleisten ein bestimmter Abschnitt des Kabinendurchgangs ausgebildet sein kann,
dass die Passstücke und Wandpaneele an der Seite des Kabinenmoduls angebracht sind,
die dem Durchgang zugekehrt ist, und dass sich die anderen Elemente des Kabinendurchgangsabschnitts
innerhalb der Kabine zur weiteren Einrichtung befinden.
2. Anordnung nach Anspruch 1, dadurch gekennzeichnet, dass die Anordnung ferner Deckenpaneele umfasst.
3. Anordnung nach einem der Ansprüche 1 oder 2, dadurch gekennzeichnet, dass die Anordnung ferner Ansatzschienen umfasst.
4. Anordnung nach einem der Ansprüche 1, 2 oder 3, dadurch gekennzeichnet, dass die Anordnung ferner Durchreichen oder Luken umfasst.
5. Kabinendurchgangsanordnung nach einem der Ansprüche 1 bis 4, dadurch gekennzeichnet, dass die Montierbarkeit der Wandpaneele mithilfe der Passstücke durch Lockern der Befestigung
des Passstücks an der Montagebasis und/oder einem anderen Passstück einstellbar ist,
wobei sich das Paneel in Position zu einem gewünschten Punkt befinden kann, an dem
das Passstück angebracht sein kann.
6. Kabinendurchgangsanordnung nach Anspruch 5, dadurch gekennzeichnet, dass die Passstücke Verbindungsplatten und Stützplatten umfassen.
7. Kabinendurchgangsanordnung nach Anspruch 6, dadurch gekennzeichnet, dass die Passstücke aus Metall hergestellt sind.
8. Kabinendurchgangsanordnung nach einem der Ansprüche 6 oder 7, dadurch gekennzeichnet, dass die Passstücke mit Löchern verschiedener Größe und Formen versehen sind.
9. Kabinendurchgangsanordnung nach einem der Ansprüche 5 bis 8, dadurch gekennzeichnet, dass zumindest ein Teil der Ansatzschienen einander überdeckend eingerichtet sein kann.
10. Kabinendurchgangsanordnung nach Anspruch 9, dadurch gekennzeichnet, dass die Ansatzschienen untere Ansatzschienen, obere Ansatzschienen und bei Bedarf Stützschienen
für besondere Einrichtungszwecke umfassen.
11. Kabinendurchgangsanordnung nach einem der Ansprüche 1 bis 10, dadurch gekennzeichnet, dass die Abdeckleisten verschiedene Arten von flachen Abdeckleisten und Abdeckleisten,
die einen Winkel bilden, umfassen.
12. Kabinendurchgangsanordnung nach Anspruch 11, dadurch gekennzeichnet, dass die Abdeckleisten, die einen Winkel bilden, Abdeckleisten für eine gebogene Ecke
umfassen.
13. Kabinendurchgangsanordnung nach einem der Ansprüche 3 bis 12, dadurch gekennzeichnet, dass die Paneele bei Bedarf Ausstattung für Heiz-, Sanitärinstallations-, Lüftungs- und
Elektroeinrichtung umfassen.
14. Kabinendurchgangsanordnung nach Anspruch 13, dadurch gekennzeichnet, dass die Anordnung Versorgungen zur Heiz-, Sanitärinstallations-, Lüftungs- und Elektroeinrichtung
umfasst.
15. Kabinendurchgangsanordnung nach einem der Ansprüche 5 bis 14, dadurch gekennzeichnet, dass die Wandpaneele bei Bedarf einen Durchgangshandlauf umfassen.
1. Dispositif de passage de cabine, destiné particulièrement à des navires de passagers,
caractérisé en ce que le dispositif comprend des panneaux muraux préfabriqués dont la taille correspond
à celle des modules (21), ainsi que des pièces de réglage (231) et des couvre-joints
pour lesdits panneaux, ces panneaux muraux, pièces de réglage et couvre-joints pouvant
servir à fabriquer une certaine partie du passage de cabine, en ce que les pièces de réglage et les panneaux muraux sont fixés du côté du module de cabine
qui fait face au passage, et en ce que d'autres éléments de la partie de passage de cabine sont placés à l'intérieur de
la cabine en vue d'une installation future.
2. Dispositif selon la revendication 1, caractérisé en ce que le dispositif comprend en outre des panneaux de plafond.
3. Dispositif selon la revendication 1 ou 2, caractérisé en ce que le dispositif comprend en outre des rails de poteau.
4. Dispositif selon la revendication 1, 2 ou 3, caractérisé en ce que le dispositif comprend en outre une ou plusieurs trappes d'entretien.
5. Dispositif de passage de cabine selon l'une quelconque des revendications 1 à 4, caractérisé en ce que la capacité de montage desdits panneaux muraux peut être ajustée au moyen desdites
pièces de réglage en desserrant la fixation de la pièce de réglage sur la base de
montage et/ou une autre pièce de réglage, de telle manière que le panneau puisse être
disposé en position à un emplacement souhaité auquel la pièce de réglage peut être
attachée.
6. Dispositif de passage de cabine selon la revendication 5, caractérisé en ce que les pièces de réglage comprennent des plaques de jonction et des plaques de support.
7. Dispositif de passage de cabine selon la revendication 6, caractérisé en ce que les pièces de réglage sont en métal.
8. Dispositif de passage de cabine selon la revendication 6 ou 7, caractérisé en ce que les pièces de réglage sont munies de trous de différentes tailles et de différentes
formes.
9. Dispositif de passage de cabine selon l'une quelconque des revendications 5 à 8, caractérisé en ce qu'au moins une partie des rails de poteau peut être installée en se chevauchant.
10. Dispositif de passage de cabine selon la revendication 9, caractérisé en ce que les rails de poteau comprennent des rails de poteau inférieurs, des rails de poteau
supérieurs et, si nécessaire, des rails de support à des fins d'installations spéciales.
11. Dispositif de passage de cabine selon l'une quelconque des revendications 1 à 10,
caractérisé en ce que les couvre-joints comprennent divers types de couvre-joints plats et de couvre-joints
formant un angle.
12. Dispositif de passage de cabine selon la revendication 11, caractérisé en ce que les couvre-joints formant un angle comprennent des couvre-joints pour un coin incurvé.
13. Dispositif de passage de cabine selon l'une quelconque des revendications 3 à 12,
caractérisé en ce que les panneaux comprennent, si nécessaire, des équipements pour des installations de
chauffage, de plomberie, de ventilation et d'électricité.
14. Dispositif de passage de cabine selon la revendication 13, caractérisé en ce que le dispositif comprend des fournitures pour des installations de chauffage, de plomberie,
de ventilation et d'électricité.
15. Dispositif de passage de cabine selon l'une quelconque des revendications 5 à 14,
caractérisé en ce que les panneaux muraux comprennent, si nécessaire, une rampe de passage.