The invention relates to a drawing machine with a draw die and a continuously-working drawing device.
Such drawing machines are already known, with which the wire can be continuously drawn. For this purpose the wire is clamped and drawn between the lower strand of an upper enclosed circulating chain and the upper strand of an enclosed circulating chain. These known drawing machines require considerable design effort and expenditure. In addition to that, they are prone to a high degree of wear, since in order to clamp the wire a force is applied to the chains transverse to their direction of run. This type of clamping also leads to a substantial development of burdensome noise.
The problem of the present invention lies in avoiding the disadvantages of these known drawing machines and ensuring reliable drawing of wire, pipes, and/or profiles.
This problem is resolved according to the present invention by a drawing machine having a drawing device that exhibits only one enclosed drawing element, that this drawing element is guided around axis-parallel wheels, and is moved in a controlled manner by at least one of the wheels, that the drawing element is connected to clamping devices carrying clamping chucks, and that the clamping chucks are capable of being moved towards and away from one another in a controlled manner for the purpose of taking up the wire, pipe, or profile which is to be drawn.
Advantageous further embodiments of this drawing machine can be derived in particular from the claims.
For a more complete understanding of the present invention, reference is made to the following detailed description of the exemplary embodiments considered in conjunction with the accompanying drawings, in which:
The embodiments of the drawing machine according to the invention represented in the drawings exhibit concordantly two chain-type drawing elements 3, which in each case run over two wheels 4, one of which is driven in each case. The driven wheels 4, like the two non-driven wheels 4, are located in each case on a common shaft 12. The chain-type drawing elements 3 are connected in each case to several clamping devices 6. In each case, clamping devices 6 belonging to two drawing elements 3, which are to be differentiated, interact in order to take up a wire 7 with their clamping chucks 5. The clamping devices 6 exhibit rollers 13, which, because of the movement of the drawing elements 3 pertaining to them, are guided on control curves 8. The clamping chuck 5 of each clamping device 6 is held by two retaining bars 11, which are guided by the chain-type draw element 3 pertaining to them. The retaining bars 11 have the effect, on the one hand, that the clamping devices are driven by the draw element 3 pertaining to them; on the other, interacting clamping chucks 5 can be moved towards one another by means of the retaining bars 11 without the individual drawing element 3 exerting a force transverse to the direction of run of the drawing element 3. That is to say, the movement of the clamping chucks 5 towards one another or away from one another is decoupled from the drawing elements 3, as a result of which the drawing elements 3 exhibit a low degree of wear.
The control curves 8 are designed in such a way that the clamping devices 6 are moved towards one another in the starting area of the upper strand, so as to take up the wire 7, and are moved away from one another, releasing the wire 7, towards the end of this strand.
In order to increase the clamping effect, on the one hand wedge elements 9a are provided for, taking effect on the position of the control curves (see FIGS. 3 and 13), or clamping chuck wedge elements 9b arranged in the individual clamping devices 6 (see FIG. 10). Both with the wedge elements 9a according to
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Number | Date | Country | |
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20040108352 A1 | Jun 2004 | US |