The invention relates to a multi-part oil wiping ring for internal combustion engines, having a U-shaped spreader spring ring provided with axial incisions, for forming resilient shanks directed radially outward, and having at least two ring-shaped lamellae provided with parallel flanks, in each instance, which are stacked to a height by way of one of their flanks as the stack plane, and are disposed between the resilient shanks of the spreader spring ring, in order to define a construction height of the oil wiping ring.
A two-part oil wiping ring having a spreader spring ring configured in U shape is known from DE 197 04 754 C1. A single lamella that is disposed between the shanks of the spreader spring ring permits a construction height of the oil wiping ring of approximately 1.5 mm. As compared with other known two-part oil wiping rings, for example those known from DE 27 11 018 C2, this solution possesses the advantage that a tangential force that is still sufficient is exerted on the lamella by the spreader spring, so that the oil wiping effect can also be considered to still be sufficient. A reduction in the construction height to as low as or below 1.5 mm thereby leads to an insufficient wiping effect, as is also described in DE 197 94 754 C2, so that construction heights on this order of magnitude therefore no longer appear to be possible to implement for three-part rings.
It is the task of the present invention to indicate an at least three-part oil wiping ring having a minimal axial construction height, that permits a significantly improved oil wiping effect as compared with known oil wiping rings.
According to the invention, this task is accomplished by means of the characteristics of claim 1.
By means of the proposed design of the three-part oil wiping ring, which consists of a U-shaped spreader spring ring having lamellae disposed between its shanks, on the one hand, a construction height is achieved, in advantageous manner, that corresponds to that of a two-part oil wiping ring, for example the one according to DE 197 04 754 C1. On the other hand, a tangential force is exerted on the lamellae by means of the spreader spring ring that is used, which force is further increased in that a specific configuration of the contact surface for the spreader spring shanks is provided, so that an additional tangential force component on the ring lamellae is produced, which leads to an improved oil wiping effect. In addition, the configuration of the contact surface permits significantly simplified assembly of the lamellae.
Advantageous further developments are the subject of the dependent claims.
The invention will be explained in greater detail in the following, using an exemplary embodiment. The figures show:
In the perspective view according to
The lamellae 7 and 8, which consist of steel or cast iron, and can be structured as Napier rings, have flanks 7a, 7b and 8a, 8b that are oriented parallel to one another, in each instance, whereby the lower flank 7b of the upper lamella 7 and the upper flank 8a of the lower lamella 8 serve as stack planes SE. The flanks in the stack plane SE possess a roughness of Rz<2 μm for steel lamellae and Rz<4 μm for cast lamellae. According to
The recesses 12 in the lamellae are structured with mirror symmetry relative to one another, with the stack plane SE as the mirror plane, and have a height ha that is greater than the thickness Di of a shank of the spreader spring ring 1, in each instance. In this way, in contrast to the existing state of the art, a construction height—nominal height—of the oil wiping ring 10 is implemented that is exclusively determined by means of the height hL, of the lamellae 7 and 8 that are stacked on top of one another. The support of the shanks 3 and 4 of the spreader spring ring 1 takes place in a radial width B of the contact surface 12, which corresponds to approximately one-third of the radial total width of the lamellae, so that sufficient guidance is guaranteed. Oil grooves 6 that run radially are worked in on the lower flank 7a of the upper lamella 7, on the circumference side, at an angle distance of 20°, in other words a total number of 18 pieces, by means of which oil to be wiped off the cylinder wall is transported to the side of the spreader spring ring that lies radially on the inside, into the oil chamber 13, by means of the lamella 7, and transported away to the engine space on the crankshaft side, by means of the incisions 2.
According to a third exemplary embodiment of the oil wiping ring 10 according to the invention, according to
The lamellae 7 and 8 can usually be treated to form a nitride layer, by means of a gas nitration process (GNS). Likewise, a friction-wear coating of the running surfaces 9 can be applied by means of a PVD method, for example a CrN coating.
The oil wiping ring 10 is inserted in the oil ring groove of a piston with sufficient play, in the installed state. In this connection, the spreader spring ring 1 is tightened to a smaller diameter, in that it is compressed in the circumference direction, so that the radial spring force that results press the lamellae 7 and 8 against the cylinder wall, whereby a particularly slight axial construction height for a three-part oil wiping ring is implemented, by means of the special configuration of the recess 11 for accommodating the shanks 3, 4 of the spreader spring ring 1.
Number | Date | Country | Kind |
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10 2005 037 203.1 | Aug 2005 | DE | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/DE2006/001238 | 7/18/2006 | WO | 00 | 7/2/2008 |