The invention is in regard to a casting device for a piston for an internal combustion engine as well as a method for opening and/or closing a casting device in accordance with the preamble of claims 1 and 7.
When casting pistons for internal combustion engines, one particular challenge is to form the piston with as few lost cores as possible in a form that has to be reworked as little as possible and has been optimized as regards savings in weight.
To form grooves below the ring zone of the piston, it is known from DE 199 22 809 A1 to provide, along with a linearly displaceable sleeve, a pivotal core for the formation of such a groove.
According to US 2008/0257518 A1, suitable cores for the formation of the grooves below the ring zone, which are used as cooling grooves, are displaced for the most part linearly and obliquely as regards the sleeves.
The invention is based on the object to simplify a device and a method for casting a piston for an internal combustion engine and at the same time to allow as extensively as possible the formation of grooves to save weight.
The solution of this object is achieved on the one hand by the device as described in claim 1.
Accordingly, this device comprises at least one, mostly linearly displaceable sleeve for the formation of at least one piston pin bore. The sleeve is therefore a component that comprises at its end directed at the casting space an essentially cylindrical portion that leaves a space for the piston pin bore on the finished piston. In particular, the sleeves can have on the portions facing away from the casting space sections with a larger diameter, and the sleeves can comprise measures for coupling with a drive or, as described below, for coupling at least indirectly with the slider.
With the casting device as according to the invention, at least one slider displaceable mostly linearly and obliquely towards the sleeve is provided namely for formation of at least one groove below the ring zone on the piston. The path of displacement of the slider is a result of the fact that the grooves below the ring zone typically extend below an acute angle towards the piston axis and thus extend obliquely towards the axis of the sleeves extending perpendicular to the piston axis. According to the invention, the sleeve is at least indirectly coupled to the slider such that during displacement the sleeve entrains the slider at least in part. This coupling can be formed during the opening of the casting device, for example, such that the sleeve is initially retracted at least a short distance, and then a section on the sleeve engages at least indirectly with the slider such that this is displaced obliquely towards the sleeve. In other words, the sleeve is coupled in particular for the opening movement in such a manner to the slider that it “entrains” this as part of a pulling movement. Moreover, this coupling can also be effective during closure as part of a “pressing” movement.
When closing the casting device, the operation can be carried out essentially in reverse, with it presently being preferred to effect a movement of the slider back into its closed position over substantially the entire closure movement of the sleeve. The slider expediently has a projection that forms the positive form of the desired groove and is designed to broaden in the movement direction for a particularly simple retraction during opening of the form. The casting device also comprises any form (halves) that are required for casting a complete piston. Furthermore, both the sleeves as well as the slider are provided preferably twice in order to form the necessary configurations on both sides of the piston. Finally, the sleeve can extend through an opening in the slider. Advantageously, conventional casting devices do not have to be re-configured. There is furthermore the advantage over a pivoting movement of casting cores for formation of grooves below the ring zone that the grooves can be designed to be deeper, and by this a more extensive savings in weight is possible.
Preferred embodiments of the casting device as according to the invention are described in the further claims.
Preferably, the slider is guided in at least one guide. By this, the movement of the slider can be defined particularly exactly. At the same time the coupling with the sleeve can take place flexibly within a certain framework such that the guide can be designed to be exchangeable and/or variable, for example with regard to the angle, without having to change the coupling with the sleeve.
Accordingly, it is furthermore preferred that the guide is exchangeable. This offers the advantage to be able to adjust the path of displacement of the slider to the various piston geometries. Alternatively or supplementing this, the angle provided by the guide can be variable as regards the displacement path of the sleeve.
For the coupling between the sleeve and the slider, what is called a pivoting fork is presently preferred, with which the slider is at least indirectly connected and is pivotably connected at least to a certain extent. For this, the pivoting fork can be pivoted by the sleeve such that the sleeve “entrains” the slider by means of the pivoting fork.
In particular in view of the possibility to alter the displacement path of the slider by exchanging at least one guide and/or setting a different angle, it is advantageous if the slider is furthermore coupled displaceably at least to a minor extent to the pivoting fork.
In view of the coupling between the sleeve and the slider by means of the pivoting fork, presently at least a peg on the sleeve is furthermore preferred which can made to engage with a projection and/or a sliding surface on the pivoting fork. The engagement with a projection is presently preferred for the entrainment during opening, while cooperation with a sliding surface during the closure movement offers advantages.
The solution of the above-mentioned object is achieved in addition by the method described in claim 7, according to which a sleeve displaceable for the most part linearly entrains at least in part at least one slider that is displaceable mostly linearly and obliquely to the sleeve. The preferred further embodiments of the device can be applied to the method as according to the invention. Furthermore, any method features described in connection with the device can be used with the method as according to the invention.
An embodiment of the invention shown as an example in the drawings will be explained below.
In
Furthermore, it can be seen in
Furthermore, the coupling between the slider 12 and the pivoting fork 16 can be seen in
While
The end position is to be found in
When the casting device, starting with the condition shown in
Number | Date | Country | Kind |
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10 2010 064 078.6 | Dec 2010 | DE | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/EP2011/070454 | 11/18/2011 | WO | 00 | 6/24/2013 |