Inflatable beam and use of this inflatable beam
10974160 · 2021-04-13
Assignee
Inventors
Cpc classification
E04C3/005
FIXED CONSTRUCTIONS
E04H2015/201
FIXED CONSTRUCTIONS
E04C3/46
FIXED CONSTRUCTIONS
E04H15/20
FIXED CONSTRUCTIONS
A63J3/00
HUMAN NECESSITIES
International classification
Abstract
Inflatable beam (1) comprising fire hoses or other industrial seamless hoses with woven textile braiding, inner air-tight lining and optional outer protective coating, is composed of an assembly of at least three hoses (2) arranged longitudinally side by side, where ends of the hose (2) are closed by a closure (3). At least one of the hoses (2) comprises at least one inlet and/or discharge member (4) for an inflating medium. The hoses (2) are at the point of contact of their circumferences, or at place of the closest distance of their circumferences mechanically connected by stiff connections (5) spaced along the length of the assembly of the hoses (2), at least one length (L) of at least one hose (2) between adjacent connections (5) of the hoses (2) is smaller than the length (M) of the other hoses (2) between these connections (5).
Claims
1. An inflatable beam comprising industrial seamless hoses with woven textile braiding and an inner air-tight lining wherein the beam comprises an assembly of at least three hoses arranged longitudinally side by side, where ends of the hose are closed by a closure, and at least one of the hoses comprises at least one inlet for an inflating medium, the hoses being at the point of contact of their circumferences, or at place of the closest distance of their circumferences mechanically connected by a plurality of stiff connections spaced along the length of the assembly of the hoses apart from the closure, wherein at least one length of at least one hose between adjacent connections of the hoses is smaller than the length of one or more other hoses between these connections, wherein the at least one hose extends beneath one or more of the other hoses to form an inflated arc.
2. The inflatable beam according to claim 1, wherein the closures comprise a closing flange, clamp, or glued joint.
3. The inflatable beam according to claim 1, wherein the hoses are mutually pneumatically connected.
4. The inflatable beam according to claim 3, wherein the mutual pneumatic connections of the hoses comprise closing, one-way or overpressure valves.
5. The inflatable beam according to claim 1, wherein the stiff connection is provided on the surface of the hose, or on a sleeve of the hose attached to the hose.
6. The inflatable beam according to claim 1, wherein the assembly of the hoses is on its outer periphery enclosed by at least one sleeve.
7. The inflatable beam according to claim 6, wherein the sleeve of the assembly of the hoses covers the entire length of the assembly of the hoses, or the sleeves cover part of the length of the assembly of the hoses and are placed at the locations of the stiff connections.
8. The inflatable beam according to claim 1, wherein the ends of at least of two hoses are mechanically connected.
9. The inflatable beam according to claim 8, wherein the mechanical connection of the ends of the hoses is comprised of the closures of the hoses connected to a common platform.
10. The inflatable beam according to claim 8, wherein the mechanical connection of the ends of the hoses is comprised of a sleeve, in which the ends of the hoses are placed.
11. The inflatable beam according to claim 1, wherein the hoses have the same diameter.
12. The inflatable beam according to claim 1, wherein the hoses have different diameters.
13. Use of the beam according to claim 1, for building a tent, hall, or hangar with the beams in a row.
14. Use of the beam according to claim 1 for building a tent, hall, or roofing with the beams, which are mutually traversed.
15. Use of the beam, according to claim 1 for building of a front edge of a stage roofing.
16. Use of the beam according to claim 1 for building of a supporting structure of an advertisement inflatable arc.
17. Use of the beam according to claim 1 for building of a stand-alone arcuate support.
18. Use of the beam according to claim 1 for building of supporting structure of a suspended footbridge.
19. An inflatable beam comprising: a plurality of industrial seamless hoses comprising three or more industrial seamless hoses, each industrial seamless hose comprising an inner air-tight lining and woven textile braiding extending about the inner air-tight lining, the plurality of industrial seamless hoses extending along an overall first length from a first end to a second end; a closure sealing at least one hose of the plurality of industrial hoses at the first end or the second end; a common platform mechanically connecting the plurality of industrial seamless hoses at the first end or the second end; and a plurality of stiff connections spaced along the overall length between the first end and the second end, each stiff connection mechanically connecting the plurality of industrial seamless hoses apart from the common platform and the closure, wherein at least one length of at least one hose between adjacent stiff connections is smaller than the length of the other hoses between these connections, and wherein the at least one hose extends beneath one or more of the other hoses to form an inflated arc.
20. An inflatable beam comprising: a plurality of industrial seamless hoses comprising three or more industrial seamless hoses, each industrial seamless hose comprising an inner air-tight lining and woven textile braiding extending about the inner air-tight lining, the plurality of industrial seamless hoses extending along an overall first length from a first end to a second end; a closure sealing at least one hose of the plurality of industrial hoses at the first end or the second end; a common platform mechanically connecting the plurality of industrial seamless hoses at the first end or the second end; a plurality of stiff connections spaced along the overall length between the first end and the second end, each stiff connection mechanically connecting the plurality of industrial seamless hoses apart from the common platform and the closure; and a sleeve extending over the plurality of industrial seamless hoses and one or more of the plurality of stiff connections, wherein at least one length of at least one hose of the plurality of industrial seamless hoses between adjacent stiff connections is smaller than a length of the other hoses of the plurality of industrial seamless between the adjacent connections, and wherein the at least one hose extends beneath one or more of the other industrial seamless hoses to form an inflated arc.
Description
BRIEF DESCRIPTION OF DRAWINGS
(1) Technical solution is described more in detail in attached drawings, wherein
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DESCRIPTION OF EMBODIMENTS
(16) Basic embodiment of the inflatable beam 1 according to this solution comprises three hoses in triangular layout in cross-section, as best seen in
(17) Each hose 2 is closed at each of its end by a closure 3. Examples of variants of embodiments of the hose 2 closures 3 are shown in
(18) The hoses 2 are longitudinally mechanically connected by stiff connections 5 which are spaced apart along the length of the hoses 2, while at least one length L of at least one hose 2 between adjacent stiff connections 5 is smaller than the length M of the other hoses 2 between these connections 5.
(19) The lengths L, M of the hoses 2 in sections between the adjacent connections 5 are different, resulting in that the beam 1 has in the individual layers K composed of the hoses 2 different radius, and thus the whole beam 1 has in inflated state arcuate shape. This is well illustrated in
(20) In this embodiment, the inflatable beam 1 is made such that the hoses 2 are at first shortened to calculated total lengths corresponding to the individual layers K of the beam 1, that is to the planned radius of the beam 1. Subsequently, proportional sections are marked, that is lengths L, M on the respective hoses 2 representing a certain percentage portion of the hose with respect to the respective number of the connecting members 5. Finally, the stiff connections 5 are formed on the hoses 2 at marked lengths L and M, by which the hoses 2 of the beam 1 are together firmly connected, i.e. the hoses 2 cannot be displaced relative to each other at the locations of the stiff connections 5. Then, all hoses 2 are inflated to operating pressure, while due to the difference of lengths L, M, between the stiff connections 5, the resulting inflated beam 1 bends into the shape of an arc. If the beam 1 is to have a partially bend shape, thus not a whole arc, then the proportional adjustment of the lengths L and M is made only on some selected sections.
(21) The beam 1 according to this technical solution shown in the accompanying drawings is arcuate along its entire length, that is, all lengths L are smaller than all respective lengths M. However, embodiments of the beam 1 are possible having in one or more sections between the stiff connections 5, the length L equal or substantially equal to the length M. Such adjustments may be advantageous when a modification of the shape of the beam 1 is needed, whereas such straight sections can be formed regularly as well as irregularly, and in any part of the length of the beam 1 as required. Said embodiment of the beam is not shown in drawings, because it is easy to imagine such an arrangement of the beam 1.
(22) Particular example embodiments of the stiff connections 5 are shown in
(23) The stiff connection 5 with contacting surfaces, in this example of the sleeves 51, is shown in
(24) In the example of
(25) The resulting beam 1 can be attached to a surface by attaching one or more ends of the hoses 2 to the given surface. This may advantageously be achieved by means of an eye anchor 9 on the closing flange as shown in
(26) Regarding stability and strength of the beam 1, it is the most preferable to form the end of the beam 1 by mechanically connecting the ends of more than one hose 2 on a common platform 10. This platform 10 may be, e.g. a metal plate, board, or other, the most preferably flat base, which can then be laid on the surface, and also to secure the position of the beam 1 relative to the surface, anchored to the surface by known ways.
(27) It is also possible to place the ends of the hoses 2 in a common sleeve 11 whereby the end of the beam 1 is obtained, which can be preferably used inside, for example, a tent which comprises integrated floor 26, where the beam 1 is pushed against the tent cover 25. With regard to connecting the ends of the hoses 2 in such a sleeve, it is also possible to connect the ends of all hoses 2 of the beam 1 or only some of the ends of the hoses 2.
(28) The beam 1, in regard of the number of hoses 2 has been described above as the beam 1 with the number of hoses being three, where in the respective figures the layer K.sub.1 of the hoses 2, of the inner radius of the beam 1 comprises one hose 2 and the layer K.sub.2 of the hoses 2 of the outer radius of the beam 1 comprises two hoses 2.
(29) Total number of the hoses 2 of the beam 1 as well as the number of the hoses 2 in individual layers K of the beam 1 may form various arrangements and may be chosen according to specific requirements on load bearing capacity and stability of the beam 1. Example arrangements of the hoses 2 are shown in the cross-section of the beam 1 in
(30) In order to improve shape stability of the beam 1 during acting of vertical forces, it is advantageous to tie the hose assembly 2 with a chord 12. Then the most preferable is to attach such chord 12 at the points of the stiff connections 5 of the hoses 2 as shown for example in
(31) The beam 1 can be used in various applications, the examples of which are shown in
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(36) The advantage of inside placement in the body of the inflatable 22 is undisturbed design, less exposure to the outside environment, and thus also safety and direct outside anchoring 30 for the case of collapsing the advertisement inflatable 22 due to a power failure or rupture of the cover of the inflatable 22.
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(39) The above-mentioned examples of embodiments are introduced for illustrative purposes only, without limiting the scope of protection defined by the claims in any way. It is clear that by exploitation of principles described in this technical solution, it is possible to create great number of applications with the use of the beam 1 beside those, which are described as particular examples of use of the beam 1 according to this technical solution.
(40) The beam 1 according to this technical solution provides rigid and stable structure member especially for temporary constructions, where simple logistics, quick installation and labor savings are important factors.