Supporting profile arrangement of explosion-inhibiting design for a facade construction
Abstract
A supporting profile arrangement of an explosion-inhibiting design for a façade construction. The supporting profile arrangement includes a framework formed by mullion supporting profile arrangements or transom supporting profile arrangement. Also included are framework planar elements fastened to the framework by a pressure profile. Further included is a supporting profile. At least one energy-absorbing component is included in the supporting profile or arranged in the supporting profile. The at least one energy absorbing component is configured to absorb energy released during an explosion.
Claims
exact text as granted — not AI-modified1 . A supporting profile arrangement of an explosion-inhibiting design for a façade construction, the supporting profile arrangement comprising:
a framework formed by mullion supporting profile arrangements or transom supporting profile arrangements; framework planar elements fastened to the framework by a pressure profile; a supporting profile; and at least one energy-absorbing component included in the supporting profile or arranged in the supporting profile, the at least one energy absorbing component being configured to absorb energy released during an explosion.
2 . The supporting profile arrangement according to claim 1 , wherein in a plane perpendicular to a main dimensional direction of the supporting profile, the at least one component is enclosed on all sides by walls of the supporting profile.
3 . The supporting profile arrangement according to claim 2 , wherein the at least one component is configured to absorb pressure energy released during the explosion following a pressure effect.
4 . The supporting profile arrangement according to claim 3 , wherein the at least one component is configured to absorb suction energy released during the explosion following a pressure effect.
5 . The supporting profile arrangement according to claim 1 , wherein the at least one component is configured to absorb pressure energy first released during the explosion and then absorbing suction energy released following a pressure effect.
6 . The supporting profile arrangement according to claim 1 , wherein the at least one component is compressible.
7 . The supporting profile arrangement according to claim 1 , wherein the supporting profile is constructed in one piece and completely encloses the at least one component.
8 . The supporting profile arrangement according to claim 1 , wherein the at least one component is constructed in one piece.
9 . The supporting profile arrangement according to claim 1 , wherein the at least one component is constructed of a plurality of pieces.
10 . The supporting profile arrangement according to claim 1 , wherein the at least one component includes one or both of plastic material and metal.
11 . The supporting profile arrangement according to claim 1 , wherein at least one base plate is formed on the at least one component.
12 . The supporting profile arrangement according to claim 11 , wherein the at least one base plate is constructed as a plurality of base plates.
13 . The supporting profile arrangement according to claim 11 , wherein a compressible area is formed on the at least one base plate.
14 . The supporting profile arrangement according to claim 11 , wherein a compressible element is arranged on the at least one base plate.
15 . The supporting profile arrangement according to claim 14 , wherein the at least one base plate and the compressible element are formed in a coextrusion process.
16 . The supporting profile arrangement according to claim 12 , wherein the plurality of base plates are aligned parallel to a plane of a planar element.
17 . The supporting profile arrangement according to claim 14 , wherein at least one projection is formed on the compressible element, which at least one projection engages in a recess only after the explosion.
18 . The supporting profile arrangement according to claim 17 , wherein the at least one projection includes a body-type construction.
19 . The supporting profile arrangement according to claim 17 , wherein the at least one projection extends in a web-type manner parallel to the supporting profile.
20 . The supporting profile arrangement according to claim 17 , wherein the at least one projection extends with interruptions in sections in a web-type manner parallel to the supporting profile.
21 . The supporting profile arrangement according to claim 17 , wherein the at least one projection includes a detent head configured to engage in a locking manner in a detent recess only after the explosion.
22 . The supporting profile arrangement according to claim 17 , wherein the at least one projection includes a plurality of detent heads configured to engage with a plurality of detent recesses.
23 . The supporting profile arrangement according to claim 21 , wherein the detent head is located only on one of the base plates.
24 . The supporting profile arrangement according to claim 22 , wherein one or more of the projections, having detent heads, and the detent recesses are constructed on two exterior surfaces of the base plates either facing away from one another or facing away from walls or an interior separating wall of the supporting profile.
25 . The supporting profile arrangement according to claim 17 , wherein the at least one projection engages in a clamping manner after the explosion in the detent recess.
26 . The supporting profile arrangement according to claim 1 , wherein the at least one component is a foam area which is constructed in one piece with the supporting profile.
27 . The supporting profile arrangement according to claim 1 , wherein the at least one component is a foam area which is located in a hollow chamber of the supporting profile.
28 . The supporting profile arrangement according to claim 1 , wherein the supporting profile includes a groove configured to receive a sliding block and a fastener which connects the pressure profile with the supporting profile.
29 . The supporting profile arrangement according to claim 28 , wherein the fastener is a screw that extends into the at least one component.
30 . The supporting profile arrangement according to claim 1 , wherein the at least one component is fastened to the supporting profile.
31 . The supporting profile arrangement according to claim 12 , wherein the plurality of base plates are connected with one another by at least one compressible element.
32 . The supporting profile arrangement according to claim 31 , wherein the at least one compressible element includes a foam material.
33 . The supporting profile arrangement according to claim 12 , wherein the plurality base plates are connected with one another by webs which are formed in one piece with the base plates and are deformed during the explosion.
34 . The supporting profile arrangement according to claim 33 , wherein the webs include a predetermined bending or buckling point.
35 . The supporting profile arrangement according to claim 1 , wherein the supporting profile includes at least one hollow chamber.
36 . The supporting profile arrangement according to claim 1 , wherein the supporting profile includes an interior web or a separating wall to support the at least one component.
37 . The support profile arrangement according to claim 1 , wherein the supporting profile includes a reinforcing profile inserted therein.
38 . The supporting profile arrangement according to claim 16 , wherein the supporting profile, in an area including the at least one component, has a wall thickness that is thinner relative to a remaining wall thickness in walls extending perpendicular to the plane of the planar element.
39 . The support profile arrangement according to claim 11 , wherein the at least one projection is formed on the at least one base plate, which at least one projection engages in a recess only after the explosion.
40 . The supporting profile arrangement according to claim 39 , wherein the reinforcing profile is metallic.Join the waitlist — get patent alerts
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