Apparatus for compressing objects and high-pressure press

Presses – Reciprocating press construction – Combined reciprocating and rotating piston or platen

Reexamination Certificate

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Details

C100S269010

Reexamination Certificate

active

06823777

ABSTRACT:

BACKGROUND OF THE INVENTION
FIELD OF THE INVENTION
The present invention relates to an apparatus and a hydraulic high-pressure press for compressing objects, including a base plate, a frame and a ram head guided so as to be displaceable on the frame.
Such apparatuses have been disclosed in different configurations and are suitable for compressing various types of objects. For example, apparatuses of a lighter type of construction for strictly limited and small compressive-force requirements are known. Those apparatuses are constructed essentially as screw clamps, as in UK Patent GB 1 513 367. However, apparatuses suitable for compressing crumple drums filled with waste must satisfy stringent design criteria with regard to compressive force and construction. In particular, that waste may also be waste which is contaminated radioactively or in another way and which is enclosed in casks or other suitable containers.
During the operation of the press for the compression, forces acting in the peripheral direction may be applied to the ram head. Those forces are produced by bulky parts (e.g. steel pipes) in the crumple drum and are introduced into the frame of the apparatus. Therefore, in the known apparatuses, the frame has to be constructed accordingly and have larger dimensions, so that higher construction costs arise. Despite that expensive construction, damage due to the forces acting in the peripheral direction cannot be ruled out. That is because bulky steel parts or tubular parts in particular can divert considerable forces in the peripheral direction.
SUMMARY OF THE INVENTION
It is accordingly an object of the invention to provide an apparatus for compressing objects and a high-pressure press, which overcome the hereinafore-mentioned disadvantages of the heretofore-known apparatuses of this general type and which reduce forces introduced into a frame by a ram head.
With the foregoing and other objects in view there is provided, in accordance with the invention, an apparatus for compressing objects, comprising a base plate, a frame disposed on the base plate and a ram displaceably guided on the frame.
A ram head is attached to the ram and rotatable relative to the frame. The ram head has a centrally disposed bolt. The bolt has one end rotationally connected to the ram for rotationally mounting the ram head on the ram. The bolt has another end with a threaded extension to be rotationally fixed to the ram head for exchanging the ram head.
As soon as bulky parts are wedged during the compression and produce a force in the peripheral direction, the ram head is rotated relative to the frame and thus relative to the base plate. As a result, the jammed bulky parts are freed, so that force no longer acts in the peripheral direction. The rotatable mounting of the ram head prevents forces which act in the peripheral direction from being introduced into the frame, which may therefore be constructed for lower loads.
The apparatus therefore has a ram on which the ram head is mounted in a rotatable manner. The ram serves to apply the necessary force to the ram head. Known apparatuses may be retrofitted due to the separation between the ram and the ram head. Additionally, it is possible to exchange the ram head.
Furthermore, the ram head thus has a centrally disposed bolt which is connected to the ram in a rotatable manner. The weight of the ram head is carried by the bolt, which is mounted so as to be rotatable on the ram in a simple manner and with little outlay.
In accordance with another feature of the invention, the bolt is provided at one end with a threaded extension for fastening to the ram head in a rotationally locked manner. The threaded extension permits quick and simple fastening and quick exchange of the bolt.
In accordance with a further feature of the invention, the bolt is acted upon with prestress. The prestress is advantageously selected to be greater than the force due to the weight of the ram head. In each position, therefore, the ram head is held in a defined position on the ram and does not just bear against the ram during the compression. As a result, damage in the region of the contact surfaces between the ram and the ram head is reliably avoided.
In accordance with an added feature of the invention, the one end of the bolt is supported on the ram through a disk and studs. This one end of the bolt is connected to the ram in a rotatable manner. The support through the disk and the studs permits a simple and cost-effective construction without special mountings.
In accordance with an additional feature of the invention, the bolt is rotatable relative to the disk. A relative movement between the studs and the disk and between the disk and the ram does not take place. Wear due to rotation of the ram head relative to the ram is therefore only present in the region of the disk and of the bolt, both of which can easily be exchanged.
In accordance with yet another feature of the invention, the studs are supported on another disk resting on the ram. As soon as a movement of the studs relative to the ram occurs in individual cases, there is no direct contact between the studs and the ram. Damage can only occur to the studs and the disk, which can be changed quickly and simply.
In accordance with yet a further feature of the invention, the studs for supporting the ram head engage in an encircling groove. This encircling groove laterally guides the studs and thus fixes the ram head.
In accordance with yet an added feature of the invention, the studs are prestressed by plate or Belleville springs. Belleville springs permit large prestressing forces in a small space and with low costs. The prestressing force can be changed quickly and simply by exchanging the Belleville springs, without complicated measures.
In accordance with yet an additional feature of the invention, the ram and the ram head are centered relative to one another through an extension. A defined position of the ram head relative to the frame is thereby ensured in every rotary position. The extension at the same time absorbs any transverse forces which may arise and relieves the bolt which connects the ram head to the ram.
In accordance with again another feature of the invention, the ram can be moved hydraulically with the ram head substantially in the vertical direction, with only the ram head being rotatable relative to the frame. That is to say, the ram can be moved up and down with the ram head, for example by an appropriate hydraulic apparatus. In this case, the ram, as a rule, is not rotatable, but rather only the ram head is rotatable.
With the objects of the invention in view, there is also provided a high-pressure press, in particular a hydraulic high-pressure press, for compressing objects, in particular for compressing containers containing bulky parts. The press comprises a base plate, a frame disposed on the base plate, a ram displaceably guided on the frame and a ram head attached to the ram for rotation relative to the frame. The ram head has a centrally disposed bolt with one end rotationally connected to the ram for rotationally mounting the ram head on the ram.
Since a high-pressure press, in particular a hydraulic high-pressure press, can produce compressive forces of several thousand English, American or Metric tons, in particular in the region of 2000 tons, it is possible, when bulky parts are being compressed, for these bulky parts to become wedged and produce forces in the peripheral direction which lie within a range of between several tons and several hundred tons, in particular within a range of 50 to 200 tons. As soon as such bulky parts are wedged, the ram head is rotated relative to the frame and thus relative to the base plate, so that the jammed bulky parts are freed and the forces in the peripheral direction are considerably reduced. In particular, within the range of the compressive-force stress mentioned by way of example of such a high-pressure press and the associated possible forces mentioned by way of example in the peripheral direction, this structure achieving the object

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