The invention relates to a piston for an internal combustion engine, in accordance with the preamble of claim 1, and to a method for its production, in accordance with claim 6.
A composite piston for an internal combustion engine is known from the US patent having the U.S. Pat. No. 4,662,319, which consists of a base piston body having pin bosses and an upper piston part connected with it. The base piston body has a ring-shaped contact surface on the piston crown side, on which the upper piston part rests, and which is connected with the pin bosses by way of conically shaped wall elements. The wall elements form a ring chamber that reaches all the way to the pin bosses, which chamber is covered, on the piston crown side, by a ring element that has openings by way of which cooling oil is introduced into the ring chamber, with which oil the pin bosses are cooled. Furthermore, the ring element ends a recess formed radially on the outside into the underside of the upper piston part, so that a closed, ring-shaped cooling channel for cooling the ring grooves is formed. In this connection, the complicated structure of the piston known from the US patent is a disadvantage, making the production of the piston complicated and expensive.
It is the task of the invention to avoid this disadvantage of the state of the art. This task is accomplished with the characteristics that stand in the characterizing part of the main claim, and with the characteristics of the method claim 6. Practical embodiments of the invention are the object of the dependent claims.
Some exemplary embodiments of the invention will be described below, using the drawing. This shows
To cool the combustion chamber bowl 2 and the ring belt 5, the piston 1 has a ring-shaped, circumferential cooling channel 9 in the vicinity of the piston crown, radially on the outside, into which cooling oil is introduced by way of an oil feed channel 10 that opens into the piston interior chamber 14, and out of which the cooling oil is passed again by way of an oil drain channel not shown in the figures, which opens into the piston interior chamber 14.
To cool the piston-crown-side regions 7′ of the two pin bosses 7 that lie opposite one another, close to the pin bores 8, the cooling channel 9 is connected with a pin boss cooling channel 13 disposed in the regions 7′ of the two pin bosses 7, in each instance, whereby the two pin boss cooling channels 13 are connected with the cooling channel 9 by way of an oil run-in opening 11 and an oil run-off opening 12, in each instance. The two pin boss cooling channels 13 furthermore each have an oil run-off channel 15 that opens into the piston interior chamber 14.
In this connection, a part of the cooling oil sprayed into the cooling channel 9 by way of the oil feed channel 10 is introduced by way of the oil run-in openings 11 in the pin boss cooling channels 13, and after cooling the piston-crown-side regions 7′ of the pin bosses 7, it is partly passed into the piston interior chamber 14 by way of the oil run-off channels 15, and partly passed back into the cooling channel 9, by way of the oil run-in openings 12.
To produce the piston 1 having the cooling channel system according to the invention, first a salt core is formed, which has the shape of the cooling channel 9 with the pin boss cooling channels 13 formed onto it, each having an oil run-off channel 15. The salt core is then laid into a casting mold, and the piston material, i.e. aluminum or cast iron, is cast around it. Subsequently, the oil feed channel 10 and the oil drain channel are drilled into the piston 1, and the salt of the salt core is washed out of the piston blank by way of these channels. Finally, the piston is finished by means of a machining production method.
The configuration of the cooling channel 9″ according to
Number | Date | Country | Kind |
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10 2005 061 075.7 | Dec 2005 | DE | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/DE2006/002255 | 12/15/2006 | WO | 00 | 7/8/2008 |