The invention relates to a wall construction with increased resistance to overpressure, for example to explosions, which wall construction forms part of an explosion chamber and comprises an essentially flat wall panel, adjoining structural components and at least one stop element, the wall panel and the at least one stop element being welded to the adjoining structural components, said at least one stop element having a supporting face facing the wall panel, which supporting face can be brought into interaction with the wall panel on deformation of the wall panel under the influence of an overpressure on that side thereof that faces away from the stop element.
Such a wall construction is disclosed in U.S. Pat. No. 4,632,041, in which an explosion chamber is described. This known wall construction has a flat wall panel that is welded to a cylindrical wall with a number of triangular support pieces thereon. The purpose of these support pieces is to restrict deformations of the weld joint between the cylindrical wall and the wall panel, which deformations can be the consequence of an explosion in the explosion chamber. The wall construction further comprises stop elements formed by vertical and horizontal girders having supporting faces facing the wall panel. The girders are being welded to the cylindrical wall as well as to the wall panel resulting in a very rigid construction.
The aim of the invention is to provide a wall construction that does not have these disadvantages. Said aim is achieved in that the at least one stop element is formed as a stop block which only covers an edge area of the wall panel and contacts said wall panel.
When subjected to stress by overpressure the wall construction according to the invention can undergo substantial deformation without this resulting in failure by only using some simple and relatively small stop blocks. Specifically, the wall panel can acquire a curvature such that it starts to act as a membrane. The resulting membrane stresses can be absorbed by the wall panel exceedingly well.
The stop element is located at the place where the part of the wall panel adjoins a weld. This prevents the occurrence of excessive flexural deformation at the location of the weld, which could easily lead to failure of the weld.
The supporting face of the stop element can be located some distance away from the wall panel in connection with tolerances. If necessary, this distance can subsequently be reduced by means of filler plates. The stop elements thus also have the advantage that they can be fitted to an existing wall construction at a later date.
The stress pattern in the deformed wall panel can be favourably influenced in an embodiment in which the distance of the supporting face of the stop element from the wall panel decreases towards the structural component adjoining said supporting face. In this context the supporting face of the stop element is preferably curved.
In order to leave space for the weld bead that is present between the wall panel and the adjoining structural components, the stop element can have a recess such that the supporting face terminates some distance away from the adjoining structural component.
Depending on the support required from the wall panel, multiple stop elements can be provided regular distances apart. A continuous support is also possible.
The stop elements also reduce the shear stresses in the panel and therefore also the risk of failure as a consequence of shear stresses.
An illustrative embodiment of the wall construction according to the invention will now be explained in more detail with reference to the figures.
The explosion chamber 1 shown in
As is shown in
Stop elements 6 according to the invention are fitted on the outside of the wall panel. These stop elements 6 are welded to the adjoining structural components 3 and have a curved supporting face 7.
As soon as an explosion occurs in the explosion chamber, high pressure is exerted on the wall panel 4 causing it to deform into the state shown in
As can readily be seen in the detail in
The advantage of the wall construction of the invention is that the stop elements 6 can easily be fitted to an exiting explosion chamber at a later date. In this context it is necessary only to weld the support elements 6 to the structural components adjoining the wall panel 4, such as the walls 3.
| Number | Date | Country | Kind |
|---|---|---|---|
| 1013795 | Dec 1999 | NL | national |
| Filing Document | Filing Date | Country | Kind | 371c Date |
|---|---|---|---|---|
| PCT/NL00/00910 | 12/8/2000 | WO | 00 | 6/9/2003 |
| Publishing Document | Publishing Date | Country | Kind |
|---|---|---|---|
| WO01/42578 | 6/14/2001 | WO | A |
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| 8911007 | Nov 1989 | WO |
| Number | Date | Country | |
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| 20040035076 A1 | Feb 2004 | US |