An exemplary embodiment of the press according to the invention is explained and described in greater detail using the attached drawings. Shown are:
The press shown in
In
Both the upper press plate 7 as well as the lower press plate 10 are surrounded by an encircling upper frame 12 and a lower frame 13 mounted in a fixed manner to the respective press table 1, 2, carrying the connecting fixtures 14 and 15 for the connectors 9 and 10 of the heating fluid. Both the upper frame 12, as well as the lower frame 13 each also support a soft-elastic gasket 16 and 17, with the two parts together forming an encircling seal. When closing the press by lowering the upper press table 1, the two gaskets 16 and 17 contact each other and seal the interior of the press, thus in particular the space between the two press plates 7 and 10, with the work piece 6 located therein from the environment in an airtight manner because the gaskets or seals are arranged in an encircling manner. The frames 12 and 13 at the upper press table 1 and/or the lower press table 2 contact each other when the press is closed so that any further movement of the piston-cylinder unit 4 is blocked.
The press shown is provided such that in a closed press, neither the upper press plate 7 nor the lower press plate 10 contact the work piece 6. The work piece rather still rests on the conveyer belt 5 without any direct thermal contact to the heated press plates 7 and 10.
A suction device (not shown) then evacuates via connectors (not shown either) the frame 12 and/or 13 enclosing the interior space, sealed via the gaskets 16 and 17, between the two press plates 7 and 10. The gaskets 16 and 17 then form the edge of a vacuum pressure chamber.
The lower press plate 10 rests floating according to the invention and thus is not mounted at the lower press table 2. Rather it rests on a membrane 19, below which a number of pressurized air vents 20 from a pressurized air supply 18 open, which extend through the lower press table 2. The membrane 19 is in turn decoupled with regard to heat conductivity from the lower press table 2 via a lower insulating layer 21. By activating the pressurized air support 18 the membrane 19 (not shown here) is pressed upwards like a cushion, by which the lower press plate 10 is raised. By this raising, ultimately the work piece 6 is compressed between the lower press plate 10 and the upper press plate 7 and is both impinged with heat as well as with pressure. At this moment the vacuum in the vacuum pressure chamber is already fully developed.
Using the press shown in
It is apparent that the press according to the invention is not limited to the exemplary embodiment shown, but that different variations are within the scope of the invention. For example, only the upper press may be heated to allow the work piece to be inserted into the press being in a heat-conducting contact with the lower press plate. The arrangement of the sealing gasket may be made in different ways as well, for example the gasket can be arranged directly at the press plates, and the means for evacuation can be embodied differently.
Number | Date | Country | Kind |
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06017945.4 | Aug 2006 | EP | regional |