[0001] The present invention relates to an improvement of a collapsible membrane structure
such as a so-called temporary housing structure comprising a multiplicity of frame
members connected to one another, the outer surfaces being covered with a membrane
covering.
[0002] It is necessary that a structure such as a temporary housing and the like be easy
to transport and to erect. For this reason, such structures are normally constructed
to be extensible and/or contractable. In such a conventional foldable construction,
the leg members are arranged to be foldable relative to the roof members in order
to reduce the overall dimensions of the structure when it is to be transported, stored,
etc. To such end, either of the rafter members or the leg members are bent to form
the juncture portion of the roof and legs and these members are connected to the other
members at the straight portions by suitable hinge means for convenience of transportation.
The radius of curvature of the bend at the position corresponding to the shoulder
part of the structure had to be relatively large due to the bending limitation of
the material for such frame members. Consequently, the drawback of such construction
was that the shipping package for such collapsible membrane structure became so bulky
that it caused inconvenience in handling and transportation as well as risk of deformation
and/or breakage of the membrane or components. Furthermore, this hinge connection
system at the shoulder part (juncture of legs and roof members) has not been satisfactory
in respect of structural strength and, therefore, has not been widely adapted for
practical use.
[0003] Furthermore, in the conventional structure of this sort, where connection of the
required frame members was provided by bolts and brackets, the brackets being fixed
at the outer surfaces of the members to be connected, the connection parts tended
to project from the framework surface. Such projections are not desirable for transportation
under collapsed condition and may damage the membrane. In addition, since the bolts
and/or bands for connection were welded to the required parts of the frame, there
were problems in terms of stability, strength and easy damage in addition to such
welded portion projections.
[0004] Furthermore, the membrane was secured to the outerside of the frame members by means
of cord ortapping screws with liner members in between. Consequently much working
time was required for securing the membrane.
[0005] FR-A-1 551 593 discloses a hinge arrangement for a tent structure including a locking
lever adapted to cooperate with a pivotably mounted lever.
[0006] It is an object of the invention to provide a collapsible membrane structure which
obviates the drawbacks mentioned above.
[0007] More specifically, it is the object of this invention to design and provide a novel
and improved collapsible membrane structure which enables the transportation and erection
easy with maintaining the suitable rigidity.
[0008] According to the present invention, a collapsible membrane structure having the features
of the first part of claim 1 is characterized by the features of the second part of
claim 1. The structure of the invention has the required strength and a smooth and
small radius for protecting the membrane. Furthermore, since the membrane is in close
contact with the outer surface of the shoulder part consideration is given to minimizing
the number of projections of the frame structure where the membrane contacts therewith
and so as to reduce the packing height, the radius of curvature at the shoulder part,
namely the hinge portion has been reduced to the greatest extent possible without
sacrificing necessary structural strength, without leaving substantially any clearance
between both plates when the leg is erected so that a strong and stable hinge connection
may be provided. Furthermore, at the upper surface of the shoulder connection part
and the lower surface of the movable plate respectively, connection members are attached
by welding or the like and extend therefrom and these connection members serve to
join the rafter members or beam members to the leg members through the main body of
the shoulder part, i.e. connection blocks, the respective extended connection members
being fit into the rafter members, beam members and the leg members respectively.
Thus, the shoulder part serves to provide a compact but strong frame structure. By
using a plurality of these shoulder frame structures and auxiliary members such as
expandable and contractable bracing members or connection members, and with use of
some convenient connecting means as required, respective frame structures may be collapsibly
joined to form a whole framework. And after the membrane is placed to cover the upper
surface of the framework, a collapsible membrane structure having adequate strength
and fewer projection directed outwardly of the framework even at the time of frame
members being folded may be obtained.
[0009] Further, the novel collapsible membrane structure may be made still more compact
in size and easy to collapse, yet having sufficient strength with additional use of
the features of claim 2. Additional preferred embodiments of the invention are claimed
in claims 3 to 6.
[0010] Retaining members are used as a means to connect the required auxiliary members or
the like to the framework. The retaining members are fixed beforehand to the required
frame members at such location as will come inwardly or laterally when they are installed
in the framework except for the portions necessary to be facing outwardly such as
for securing the membrane. Accordingly, when the membrane structure is collapsed,
the possibility of attaching part projecting outwardly may be reduced while the auxiliary
members may be firmly attached. The retaining member is formed in channel configuration
in section or, as required, in channel-like configuration with the corners being made
round. The retaining member is further provided at center of the outer surface with
a longitudinal slot having a width adapted to correspond to the size of the shank
of the bolt and one end of the slot is enlarged or provided with a through-bore large
enough for the head of the bolt to pass through.
[0011] To improve the attachment of the membrane to the assembled framework a retaining
member of channel-like section is provided, opposite ends of which are rounded and
having a longitudinal slot sized to receive the shank of the bolt. One end of the
slot being opened at the end edge of the retaining member or provided with a through-bore
adapted to receive the head of the bolt. A plurality of such retaining members are
spaced on the outer surface of the framework and bolts are inserted in the longitudinal
slot to stand up therefrom, while the membrane is also provided with holes to receive
the bolt at distances and locations corresponding to the positions of the retaining
members, whereby the membrane may be very efficiently and firmly secured to the framework
by means of the standing bolts. Furthermore, if the retaining members are properly
located, only those used for directly attaching the membrane will project from the
framework, and thus the number of projections from the framework may be substantially
reduced. At the same time, this provision may provide many other advantages compared
with the conventional structure, such as when the framework is extended and erected
to be covered with the membrane or collapsed for transportation, there is less possibility
of the retaining members contacting the membrane except for those directly touching
the membrane, so that possibility of the membrane being damaged may be substantially
avoided. The invention will be further explained hereinafter following the brief explanation
of the drawings summarized below.
Fig. 1 is a perspective view partially broken of an embodiment of the collapsible
membrane structure according to the present invention;
Fig. 2A-2C are a series of enlarged sectional views illustrating the major part of
different embodiments of a shoulder block to be used for the collapsible membrane
structure according to the present invention, in which:
Fig. 2A illustrates an embodiment wherein the pin and bolt are provided at the side
to be folded;
Fig. 2B illustrates an embodiment wherein the pin is provided at the side to be folded,
while the bolt is at the opposite side, viz. outer side;
Fig. 2C illustrates an embodiment wherein both bolt and pin are provided at the side
to be folded, but completely outside of the connection block;
Fig. 3 is a front view of the portion where the frame members to be used for the collapsible
membrane structure of the present invention are folded at the shoulder block;
Fig. 4 is a perspective view of an embodiment of the shoulder block and its associated
elements;
Fig. 5 is a front view showing how the leg members on both sides are folded inwardly
at the shoulder blocks to be used for the collapsible membrane structure according
to the present invention;
Fig. 6 is a front view illustrating the embodiment where a block including a hinge
means is utilized at the ridge of the roof for reducing the volume of the structure
when it is collapsed;
Fig. 7A-7C show various embodiments of retaining members to be used for the collapsible
membrane structures according to the present invention, wherein:
Fig. 7A is a perspective view showing an embodiment including a bolt and a nut;
Fig. 7B is a plan view showing another embodiment of the retaining member;
Fig. 7C is a perspective view of still another embodiment of the retaining member;
Fig. 8A, 88 illustrate a connection assembly to be used for the collapsible membrane
structure according to the present invention, wherein:
Fig. 8A is a perspective view thereof;
Fig. 8B is a side view showing how the assembly is used;
Fig. 9A-9C illustrate another embodiment of a connection assembly to be used for the
collapsible membrane structure according to the present invention, wherein:
Fig. 9A is a perspective view showing the components including bolt, etc.;
Fig. 9B shows the liner member;
Fig. 9C is a partially sectioned side view showing how the retaining member is used;
and
Figs. 10A, 10B are an explanatory perspective view showing the construction to attach
the membrane using the retaining members and so forth illustrated in Fig. 9A-9C wherein:
Fig. 10A is an overall perspective view;
Fig. 10B is a perspective view showing an example of the membrane provided with holes
for bolts at predetermined positions.
[0012] Now, the present invention will be further described hereinafter with reference to
the accompanying drawings. In Fig. 1, numeral 1 designates framework, numeral 2 designates
the connection block used to join the left and right rafter members at the top of
the roof ridge, and numeral 3 designates the shoulder blocks on both opposite sides
comprising a hinge 5 at the lower part thereof and serving to connect the rafter members
4 and the leg members 6. In case that it is desirable to strengthen the roof, a beam
member 7 is provided, and the roof may be made of a truss structure by attaching a
number of support members 9 via some connection means 8 and connected at both ends
to the top of the leg members 6 and the end of the rafter members 4 through the shoulder
blocks 3. As it will be seen, in this embodiment, the frame members are adapted to
be folded at the shoulder part at the position adjacent to the intersecting point
of extended lines of the straight parts of both rafter and leg members. As illustrated
in the enlarged details in Fig. 2A, 2B and 2C, the rear side of the shoulder block
3 may be made remarkably smaller in the radius of curvature (shown at 3") than otherwise
required in the conventional construction which is formed by bending of the elongated
material. Furthermore, at the lower part of the shoulder block is provided a hinge
means 5 comprising a fixed plate "p", a movable plate "q" and a pin "r". From the
bottom surface of the fixed plate "p" of the shoulder block 3, the lower edge part
"p"' extends downwardly approximately at right angle to said bottom surface so that
said movable plate "q" may be pivotably attached to said lower edge part "p"' through
a pin "r". In order to connect the rafter member 4 and leg member 6 or the beam member
7 when required, with the shoulder block 3, the connection members 3' are provided
at the shoulder block at the required location and angular position and to the connection
members 3' are connected the corresponding frame members, i.e. rafter members 4, leg
members 6 and the beams 7. As illustrated, the connection members 3' for the leg frame
members 6 in particular are secured to the movable plate q by a suitable method such
as welding. In this manner, variation is provided with regard to the relative positions
of attaching the pin or bolt to the respective fixed and movable plates. Namely, Fig.
2A shows an example where both the pin "r" and the bolt 13 are provided at inner side
of the shoulder block 3. Fig. 2B shows an example where the bolt is provided at the
outer side of the shoulder block 3, while Fig. 2C shows an example where the bolt
13 is provided completely outside of the shoulder block but inwardly of the framework.
In the meantime, there are a variety of constructions in respect of the pivoting pin
and its relative part. Namely, as shown in Fig. 2C, the distal end of the movable
plate "q" is bent round downwardly at the inner side of the bending part of the leg
member 6 to form a hole for receiving the pin "r" or the distal end of the fixed plate
p is suitably bent (not shown) to form such a hole or other methods will be available.
[0013] Fig. 3 shows how the leg member 6 is folded at the shoulder block so as to reduce
the bulkiness of the frame structure. Fig. 4 is a perspective view showing the detail
of the shoulder block 3 and the condition where the movable plate has been swung out
with the pin "r" as the pivoting center. Numeral 13' designates the bore for the bolt.
This particular case exemplifies the example where the movable plate "q" is of relatively
thick material and when the leg member 6 is connected and tightened with the bolt
13, the plate "q" is adequately accommodated in the box-like space provided by the
lower edge part "p"', thus affording a sturdy construction. Now, Fig. 5 shows the
condition in which the leg members at both sides of the framework 1 used for the collapsible
membrane structure of the invention have been inwardly folded respectively to become
compact and tightly joined together by suitable fastening means 15 and 16 to become
ready for storage or transportation. Due to the fact that the radius of curvature
of the shoulder block at the folding position has been so reduced that it may be possible
to minimize the bulkiness of the framework in the vertical direction as viewed in
Fig. 5 when the legs are folded.
[0014] Furthermore, due to the fact that the hinge structure of this invention differs considerably
from the conventional hinge type structure wherein two parts, each comprising a series
of depressions and protrusions complementarily coupled through a hinge pin, the construction
according to the present invention may afford sufficient strength against the stress
working at the folding part, whereby there is less possibility of the hinge part being
damaged due to irregular or incidental external force which may be caused during use
or transportation of the collapsible membrane structure.
[0015] Now proceeding to Fig. 6 showing another modification of the collapsible membrane
structure of the present invention, the details thereof are illustrated in front view
where the frame structure with use of a ridge block 2a comprising 2 sets of hinge
means 5a, 5a in a similar manner to Fig. 2 as the connection means at the top of the
ridge of the right and left rafter members 4,4 is shown in a condition suitable for
transportation. Namely, since the connecting ridge block 2a comprises 2 sets of hinge
means 5a and the rafter members 4 may be pivotably moved relative to the ridge block
2a through said hinge means, the rafter members 4, 4 may be pivoted to be in a substantially
straight line, whereby the height of the framework may be remarkably reduced compared
with the conventional one. The bolt 13a will be used to reinstate the rafter members
to the roof shape. In Fig. 6, the beam similar to the beam 7 in Fig. 1 is eliminated;
however, it may be used provided that each beam may be separated to agree with the
extended condition of the rafter members.
[0016] Figs. 7 and 8 illustrate examples of a retaining member to provide easier connection
of the required frame members and/or auxiliary members and enable it to reduce projection
of such retaining members outwardly of the framework. Fig. 7 shows the several configurations
of the specially designed retaining member to be used as the connecting means at the
locations at which the required frame members, and other reinforcement members and/or
auxiliary members and the like are to be attached. Fig. 7A is a perspective view of
such retaining member assembly and if such assemblies are fixed beforehand at the
preselected locations of the respective members anticipated to be connected with other
members, the other members would be easily connected with use of the bolt 13b. Furthermore,
as shown in Fig. 7A, if a longitudinal slot "i" dimensioned to accommodate the shank
of the bolt 13b is provided together with a bore "j" at one end of the slot and adapted
to pass the head of the bolt therethrough, it will be possible to quite efficiently
connect the other members. Furthermore, by providing a sub-guide "k" underneath the
bolt head which is adapted to slide but not to rotate in the slot "i", at the lower
part of the bolt head, efficient tightening of the nut is made easy because the sub-guide
"k" will serve to prevent the bolt from being turned. As an alternative, with a retaining
member 8b shown in Fig. 7B, it is possible to make one end of the longitudinal slot
"i" open to provide such slots at two places. This configuration will provide convenience
in selection of the fixing positions and reliable attachment of the other members.
If it is preferable to fasten some members securely, two bolts may be used for fixing
purposes so as to reduce the possibility of missing bolts by loosening at the specific
portions. Furthermore, as shown at 8c in Fig. 8C safety may be increased by using
an auxiliary plate "n" having a stopper "m" and providing a bore "m"' for receiving
the stopper "m" and attaching the bolt through the bore of the auxiliary plate "n",
then the bolt 13b may not tend to move toward the through-bore "j" where the bolt
may be loosened from the retaining member.
[0017] Now, reference is made to Fig. 8 in which the retaining member 8d similar to the
one shown in Fig. 7B is used as the connection means. In this case, as shown in Fig.
8B, the retaining member is fixed to the leg member 6 for example, beforehand at the
predetermined locations and is used as the connection means for the other members.
In this particular case, it is used to connect a pipe 23 to the leg member 6 by means
of a bolt 22a and a nut 22b. And by use of liner plate 21 having a bent locking projection
21', it will substantially avoid the possibility of the bolt 22a tending to move toward
the open end of the longitudinal slot during use, thus easily providing a quite safe
construction.
[0018] Furthermore by providing these retaining members at suitable places with suitable
orientation with respect to the members forming the truss construction for the roof
or the leg members to be folded condition as shown in Figs. 3, 5 or 6, it is possible
to reduce the possibility that these retaining members may project outwardly of the
framework or may cause interference with the other elements when the membrane structure
is folded and collapsed. It is also possible to reduce the bulkiness of the membrane
structure when collapsed by making the radius of curvature at the shoulder block of
the hinge means between the rafter member and leg member smaller than that of the
radius produced by bending of the elongated members as is done conventionally, resulting
in convenience in stacking the frame structures for storage, less damage to the membrane
and easier transportation leading to reduction in the transportation cost.
[0019] Reference is then made to Figs. 9 and 10 illustrating another form of the retaining
member and the collapsible membrane structure. In this embodiment, the retaining members
8e having both ends made round as shown in Fig. 9A are secured to the outer surface
of the frame members at the predetermined spaced positions and the bolts 13d are provided
beforehand to stand through the longitudinal slot "i", while the through-holes 31
are provided beforehand in the membrane 12 at the positions and distances corresponding
to those of the bolts and the membrane is spread over the frame members in a manner
to match with the positions of the bolts and the holes in the membrane and the nuts
22 are tightened on the bolts 13d with the washers 23, thus making it easy to attach
the membrane to the framework. Fig. 9b shows an auxiliary plate "n"'. Use of this
auxiliary plate makes it possible to prevent the bolt 13d from dislocating and moving
toward the through bore "j" where the bolt head is passed through. Fig. 9C shows in
section an example of attaching the membrane to the rafter member, in which the retaining
members 8e are provided on the rafter members 4 and the membrane 12 is placed over
the rafter members with the through holes 31 of the membrane aligned with the bolt
and then the washers 23 are put on the retaining members and finally the nuts 22 are
used to tightly secure the membrane. Fig. 10B shows how the membrane can be made much
stronger and easier to install, thus improving working efficiency. Such a membrane
includes the through-holes 31 for receiving bolts and is configured to enclose bands
32 made of hard plastic or metal plate wrapped integrally with the membrane, through-holes
31 being provided through the plastic bands as well. The retaining members 8e to be
provided at outer surface of the framework for the collapsible membrane structure
of the present invention are, as earlier mentioned, made round at the corner portions
to provide various advantages such as improving the working efficiency for attaching
the membrane, avoiding the possibility of damage to the membrane and so forth.
[0020] The present invention has been explained in detail referring to the specific embodiments;
however, it should be understood that the further modification and the changes are
readily available to those skilled in the art within the scope of the invention defined
in the claims appended herewith.
1. A collapsible membrane structure comprising:
a plurality of frame members (1) including rafter members (4) joined at a ridge (2)
and leg members (6);
connection means (10) connecting a plurality of said frame members (1) collapsibly
in one direction to form a framework;
means to fix said frame members (1) in their extended condition;
a flexible membrane (12) to cover said framework in the extended condition of said
frame members,
characterized in that connection blocks (3) are provided to connect said rafter members
(4) to the leg members (6) at shoulders, each of said connection blocks (3) including
a hinge assembly (5) adapted to connect said rafter member (4) and said leg member
(6) to pivot relative to each other,
wherein each of said connection blocks (3) is shaped to have a rounded corner of a
small radius, and a plate member (q) is pivotably attached to said block (3), said
pivotable plate member (q) being of thick material, one part of said block (3) being
arranged to form a box-like space adapted to snugly receive said pivotable plate member
(q) when it is pivoted.
2. The collapsible membrane structure as defined in claim 1 wherein said rafter members
(4) are connected at the ridge (2) of the roof by ridge connection blocks (2a) each
comprising two pivotable hinge means (5a, 5a) so that the rafter members (4) are pivotable
relative to said ridge connection block (2a).
3. The collapsible membrane structure as defined in claim 1 or 2 wherein retaining
members (8a, 8b) are attached at appropriate predetermined portions of the frame members
(1) constituting said framework, each of said retaining members (8a, 8b) is formed
to have a channel-like section and includes a longitudinal slot (i), one end of said
slot is enlarged or provided with a through-hole (j) adapted to pass the head of a
bolt therethrough to fasten other members to said framework.
4. A collapsible membrane structure as defined in any one of claims 1 to 3 wherein
retaining means for connecting certain members to said framework are provided at appropriate
positions on said framework, said retaining means comprising a bracket (8d) of channel-like
section forming a space adapted to receive the head of a bolt (22a) and being provided
with a longitudinal slot (i) dimensioned correspondingly to the diameter of the bolt
shank (22a) and opened at one end edge of the bracket so as to receive the bolt shank
into the slot (i) and a liner plate (21) having a hole for the bolt aligned with said
longitudinal slot of the bracket and being bent at one end to form the locking projection
(21), the retaining means serving to couple said certain members required in assembly
of said collapsible membrane structure, such as connection members, movable brace
and the like.
5. A collapsible membrane structure as defined in claim 1 wherein the construction
to attach the membrane (12) to the assembled structure is such that the retaining
members (8e) are attached to the surface of the framework at a predetermined spaced
distance, each retaining member being of channel-like construction and made round
at opposite corners longitudinal end each being provided with a longitudinal slot
(i) dimensioned to receive the bolt shank and made open at one end or enlarged at
one end to pass the bolt but to retain the bolt head inside the channel, a bolt being
provided in said longitudinal slot to stand up therethrough and the membrane having
holes for receiving bolts at the predetermined locations being attached to the frame
members by means of the bolts.
6. A collapsible membrane structure as claimed in claim 4 wherein said retaining means
is mounted so as not to project beyond the range of said framework and/or not interfere
with the members of the structure when it is collapsed..
1. Zusammenklappbares Membrangebilde, welches folgendes aufweist:
eine Vielzahl von Rahmengliedern (1) einschließlich Strebengliedern (4) verbunden
an einer Rippe (2) und Schenkelglieder (6);
Verbindungsmittel (10) zur Verbindung einer Vielzahl der Rahmenglieder, zusammenlegbar
in einer Richtung zur Bildung eines Rahmens;
Mittel zur Befestigung der Rahmenglieder (1) in ihrem ausgefahrenen Zustand;
eine flexible Membran (12) zur Überdeckung des Rahmens im ausgefahrenen Zustand der
Rahmenglieder, dadurch gekennzeichnet, daß
Verbindungsblöcke (3) vorgesehen sind, um die Strebenglieder (4) mit den Schenkelgliedern
(6) an Schultern zu verbinden, wobei jeder der Verbindungsblöcke (3) eine Gelenkanordnung
(5) aufweist, die zur Verbindung des Strebenglieds (4) und des Schenkelglieds (6)
zur Relativverschwenkung gegeneinander geeignet ist,
wobei jeder der Verbindungsblöcke (3) derart geformt ist, daß er eine abgerundete
Ecke mit einem kleinen Radius aufweist, und wobei ein Plattenglied (q) an dem Block
(3) schwenkbar befestigt ist, wobei das schwenkbare Plattenglied (q) aus dickem Material
besteht und ein Teil des Blocks (3) zur Bildung eines kastenartigen Raums angeordnet
ist, und zwar geeignet zur eng passenden Aufnahme des schwenkbaren Plattengliedes
(q), wenn dies verschwenkt ist.
2. Zusammenklappbares Membrangebilde nach Anspruch 1, wobei die Strebenglieder (4)
an der Rippe oder dem First (2) des Dachs durch Verbindungsblöcke (2a) verbunden sind,
deren jeder zwei schwenkbare Gelenkmittel (5a, 5a) derart aufweist, daß die Strebenglieder
(4) bezüglich des Rippen- oder First-Verbindungsblocks (2a) schwenkbar sind.
3. Zusammenklappbares Membrangebilde nach Anspruch 1 oder 2, wobei Halteglieder (8a,
8b) an geeigneten vorbestimmten Teilen der Rahmenglieder (1), die den Rahmen bilden,
befestigt sind, wobei jedes der Halteglieder (8a, 8b) derart ausgebildet ist, daß
es einen kanalartigen Abschnitt und einen Längsschlitz (i) aufweist, wobei ein Ende
des Schlitzes verbreitert ist oder mit einer hindurchgehenden Bohrung (j) ausgestattet
ist, die es ermöglicht, daß der Kopf eines Bolzens hindurchverläuft, um andere Glieder
am Rahmen zu befestigen.
4. Zusammenklappbares Membrangebilde nach einem der Ansprüche 1-3, wobei die Haltemittel
zur Verbindung bestimmter Glieder am Rahmen an geeigneten Stellen des Rahmens vorgesehen
sind, wobei die Haltemittel einen Bügel (8d) von kanalartiger Form aufweisen und einen
Raum bilden, der zur Aufnahme des Kopfes eines Bolzens (22a) geeignet ist, und zwar
ausgestattet mit einem Längsschlitz (i), der entsprechend dem Durchmesser des Bolzenschaftes
(22a) dimensioniert ist und an einer Endkante des Bügels geöffnet ist, um so den Bolzenschaft
im Schlitz (i) aufzunehmen, und zwar mit einer Auskleidungsplatte (21) mit einem Loch
für den Bolzen, ausgerichtet mit dem Längsschlitz des Bügels, und zwar gebogen an
einem Ende zur Bildung des Verriegeluhgsvorsprungs (21), wobei die Haltemittel dazu
dienen, die bestimmten Glieder zu kuppeln, de für den Zusammenbau des zusammenlegbaren
Membrangebildes erforderlich sind, wie beispielsweise Verbindungsglieder, bewegliche
Umfassungen und dergleichen.
5. Zusammenklappbares Membrangebilde nach Anspruch 1, wobei die Konstruktion zur Befestigung
der Membran (12) an dem zusammengebauten Gebilde derart ist, daß die Halteglieder
(8e) an der Oberfläche des Rahmens mit einem vorbestimmten Abstand angeordnet sind,
wobei jedes Halteglied kanalartigen Aufbau besitzt, an entgegengesetzt liegenden Ecken
der Längsenden abgerundet ist und einen Längsschlitz(i) aufweist, der derart dimensioniert
ist, daß der Bolzenschaft aufnehmbar ist, und wobei jedes Halteglied an einem Ende
offen oder verbreitert ist, um den Bolzen hindurchzulassen, aber den Bolzenkopf innerhalb
des Kanals zu halten, und wobei ein Bolzen in dem Längsschlitz hindurchragend anzuordnen
ist und die Membran Löcher für die Aufnahme der Bolzen besitzt, und zwar an den vorbestimmten
Stellen zur Befestigung an den Rahmengliedern mittels der Bolzen.
6. Zusammenklappbares Membrangebilde nach Anspruch 4, wobei die Haltemittel derart
angeordnet sind, daß sie nicht über den Bereich des Rahmens hinausragen und/oder nicht
die Glieder des Gebildes stören, wenn dieses zusammengelegt ist.
1. Structure à membrane repliable comprenant:
plusieurs éléments de charpente (1) qui comprennent des éléments arbalètriers (4)
réunis au niveau d'un faîte (2), et des éléments poteaux (6);
des moyens d'assemblage (10) qui assemblent plusieurs desdits éléments de charpente
(1) avec possibilité de les replier dans un sens, pour former une charpente;
des moyens permettant de fixer lesdits éléments de charpente (1) dans leur état déployé;
une membrane flexible (12) destinée à recouvrir ladite charpente dans l'état déployé
desdits éléments de charpente;
caractérisée en ce que des blocs d'assemblage (3) sont prévus pour réunir lesdits
éléments arbalètriers (4) aux éléments poteaux (6) au niveau d'épaules, chacun desdits
blocs d'assemblage (3) comprenant un ensemble de charnière (5) adapté pour assembler
ledit élément arbalétrier (4) et ledit élément poteau (6) de façon à les articuler
l'un par rapport à l'autre, en ce que chacun desdits blocs d'assemblage (3) est conformé
de façon à présenter un angle arrondi de petit rayon, et un élément plaque (q) est
monté pivotant sur ledit bloc (3), ledit élément plaque pivotant (q) étant fait d'une
matière épaisse, une partie dudit bloc (3) étant agencée pour former un espace en
forme de boîte adapté pour recevoir sans jeu ledit élément plaque pivotant (q) lorsqu'on
le fait pivoter.
2. Structure à membrane repliable selon la revendication 1, dans laquelle lesdits
éléments arbalètriers (4) sont assemblés au niveau du faîte (2) du toit par des blocs
d'assemblage de faîte (2a) dont chacun comprend deux moyens à charnières articulés
(5a, 5a), de sorte que les éléments arbalètriers (4) peuvent pivoter par rapport audit
bloc d'assemblage de faîte (2a).
3. Structure à membrane repliable selon la revendication 1 ou la revendication 2,
dans laquelle des éléments de retenue (Sa, 8b) sont fixés en des parties prédéterminées
appropriées des éléments de charpente (1) qui constituent ladite charpente, et où
chacun desdits éléments de retenue (8a, 8b) est conformé de façon à présenter une
section en U et présente une fente longitudinale (i), une extrémité de ladite fente
est agrandie ou complétée d'un trou traversant (j) adapté pour faire passer la tête
d'un boulon à travers ce trou, pour fixer d'autres éléments à ladite charpente.
4. Structure à membrane repliable selon l'une quelconque des revendications 1 à 3,
dans laquelle des moyens de retenue destinés à assembler certains éléments à ladite
charpente sont prévus en des positions appropriée sur ladite charpente, lesdits moyens
de retenue comprenant une ferrure (8d) à section en U qui forme un espace adapté pour
recevoir la tête d'un boulon (22a) et étant munis d'une fente longitudinale (i) dimensionnée
pour correspondre au diamètre de la tige (22a) du boulon et ouverte à un bord d'extrémité
de la ferrure de manière à permettre d'engager la tige (i) du boulon, et une plaque
de garniture (21) présentant un trou de passage du boulon aligné sur ladite fente
longitudinale de la ferrure et recourbée à une extrémité pour former une patte de
verrouillage (21), les moyens de retenue servant à accoupler lesdits certains éléments
nécessaires pour l'assemblage de ladite structure à membrane repliable, tels que les
éléments d'assemblage, des entretoises mobiles et équivalents.
5. Structure à membrane repliable selon la revendication 1, dans laquelle la construction
utilisée pour fixer le membrane (12) à la structure assemblée est telle que les éléments
de retenue (8e) soient fixés à la surface de la charpente à une distance d'écartement
prédéterminée, chaque élément de retenue étant d'une construction en U et étant arrondi
aux angles opposés des extrémités longitudinales chacun étant muni d'une fente longitudinale
(i) dimensionnées pour recevoir la tige d'un boulon et ouverte à une extrémité ou
agrandie à une extrémité pour permettre d'enfiler le boulon tout en pouvant retenir
la tête du boulon à l'intérieur du U, un boulon étant prévu dans ladite fente longitudinale
de façon à faire saillie à travers cette fente, et la membrane, qui présente des trous
destinés à recevoir des boulons dans les position prédéterminées, étant fixée aux
éléments de la charpente au moyens des boulons.
6. Structure à membrane repliable selon la revendication 4, dans laquelle lesdits
moyens de retenue sont montés de façon à ne pas faire saillie au-delà des limites
de ladite charpente et/ou de façon à ne pas former des obstacles sur la trajectoire
des éléments de la structure lorsqu'on replie cette dernière.