Damping element in the form of a cylindrical hollow body, and production method
The invention relates to a damping element in the form of a cylindrical hollow body, having an end-side stop and annular flanges which run around on the wall with a spacing to one another, and to a method for producing a damping element.
The known damping elements have proven themselves in practical applications. Here, the annular flanges serve to guide the damping element and to provide stabilization under loading. The upper part is to be considered to be a damping region, while the lower region serves as a stop. Here, the annular flanges and the walls of the cylindrical hollow body between said annular flanges have identical thicknesses in each case.
The object on which the invention is based is that of improving the damping properties of the damping element using simple structural measures.
Said object is achieved according to the invention in that the annular flanges and the wall between the annular flanges have different thicknesses. The inner delimitation of the wall and the outer delimitations of the annular flanges expediently run vertically. For the majority of applications, it has proven to be advantageous to arrange three annular flanges. It is directly possible to arrange more or fewer annular flanges and also to adapt the thickness of the walls of the hollow body between the flanges and the thickness of the annular flanges to the respective requirements.
In one refinement of the invention, the stop has a cylindrical hollow shape and is pressed into the cylindrical hollow body, with it being possible for the lower delimitation to run in a plane with the lower delimitation of the cylindrical hollow body.
The end-side stop may be embodied as a mechanical stop delimitation or as a flexible stroke delimitation. The mechanical stop is expediently formed from a solid material, for example from hard plastic or metal. In one embodiment of the invention, the end-side mechanical stop has a locking element, for example an encircling annular bead, which is assigned corresponding receptacles on the inner side of the cylindrical hollow body. It is possible to design the flexible stroke delimitation ≧the thickest wall of the cylindrical hollow body between the annular flanges.
In one preferred embodiment, the cylindrical hollow body with its annular flanges is formed in one piece from elastically deformable material, and may be produced in an injection-molding process or cutting process. One of the outer annular flanges or both annular flanges advantageously have an additional hollow body which has an encircling chamfer on the upper inner side.
In the method according to the invention for producing a damping element, firstly the blank of the cylindrical hollow body is produced and subsequently upset so as to undergo simultaneous shortening in the direction of the upsetting force by at least 20% of its original length. Here, the walls of the cylindrical hollow body between the annular flanges are convexly arched between the flanges, resulting in a bellows-like design being created. The thickness of the arching runs uniformly in the region between the annular flanges and symmetrically about the axial central line of the cylindrical hollow body. The shortening of the cylindrical hollow body which is generated as a result of the upsetting processes is maintained even after the release of the upsetting force.
According to a further feature of the method according to the invention, during the upsetting process of the blank of the cylindrical hollow body, the stop which is composed of solid material is pressed into the hollow body and is retained therein in a form-fitting manner. The flexible stroke delimitation may be inserted with a slight oversize with respect to the hollow body, and, like the bellows-like arching between the annular flanges, has an internal stress imparted to it during the upsetting process, which internal stress is caused by the stretching of the molecule chains.
Exemplary embodiments of the invention are illustrated in the drawing and are described below. In the drawing:
The illustrated damping element in the form of a hollow body has three annular flanges 3; 3′; 3″. Said annular flanges 3; 3′; 3″, like the wall 2 between said flanges, have different thicknesses. The outer delimitation of the three annular flanges 3; 3′; 3″ are situated vertically one above the other. Said annular flanges 3; 3′; 3″ may however also have different delimitations.
In
A variant of the end-side stop is illustrated in
The upper delimitation of the cylindrical hollow body has an encircling chamfer 6 which serves such that it can be formed as the highest annular delimitation symmetrically on the outer side during the upsetting process.
Number | Date | Country | Kind |
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10 2007 037 954.6 | Aug 2007 | DE | national |