The invention relates to a drive unit for a molding machine and a molding machine with such a drive unit.
Drive units in the form of ball screws have long been used to drive components of molding machines. Roughly, two different embodiments of ball screws can be distinguished, namely:
The invention is concerned with the first embodiment of a ball screw.
The object of the invention is to provide a drive unit and a molding machine in which there are higher dynamics and a higher loadability of the drive unit.
In a drive unit according to the invention, there are at least provided:
A drive unit according to the invention is characterized by a low inertia due to the rotatably arranged spindle. This results in higher dynamics at the same drive power. The oil-tight seal allows a sufficient lubrication of the ball screw, without having to accept soiling of the surrounding area.
The seal is preferably formed with unchangeable geometry, for example in the form of a cup-shaped cast part or a cylinder open on one side, and therefore designed, in terms of its dimensioning, for the maximum space requirements of the spindle, the nut and the second support. No formation as a thrust sleeve is therefore necessary.
A retrofitting in a molding machine is possible through the completed formation of the drive unit.
The drive for the spindle can be effected via a gear unit, for example a gear drive with a motor, which for example can be mounted on the first support.
The drive can be arranged outside the oil-tight space, preferably on that side of the first support which is opposite the side from which the spindle protrudes (dry design). This can advantageously be a toothed belt gear or a direct drive in the extension of the spindle.
Alternatively, the drive can be located in the oil-tight space and is preferably at least partly arranged in an oil pan of the oil-tight space (wet design).
Preferably, the first support is formed in the form of a plate and is preferably penetrated by the at least one rod.
The at least one rod can have a round cross section, penetrate the first support, and be sealed by an oil-tight rod seal.
The spindle can be sealed to the first support by an oil-tight radial shaft sealing ring or by an oil-tight cover.
Preferably, the second support is formed in the form of a yoke.
Preferably, an oil pan is arranged in the oil-tight space, in which the spindle is at least partly located. In addition to a sufficient lubrication of the ball screw, this also allows a cooling through the oil pan. Similarly, a gear train and/or the bearing of the spindle can also be cooled and lubricated in this way.
For the second support, in addition to the at least one rod, a linear guide is arranged inside the oil-tight room. This results in an improved support of the drive torque of the nut.
The gear unit driving the drive can be formed with parallel or any desired axles.
Preferably, in the case of a molding machine according to the invention, the first support is formed by an ejector support, an end plate, or a platen of the molding machine.
Preferably, in the case of a molding machine according to the invention, the at least one rod is connected to a crosshead of a toggle clamp mechanism of the molding machine.
Preferably, in the case of a molding machine according to the invention, the at least one rod is connected to a clamping cylinder of a mold clamping unit of the molding machine, in particular, via an ejector support.
Preferably, in the case of a molding machine according to the invention, the at least one rod is connected to a plasticizing drive of a plasticizing unit of the molding machine.
The molding machine according to the invention is preferably an injection-molding machine, particularly preferably a plastic injection-molding machine, or a transfer-molding machine.
Advantageous embodiments of the invention are discussed with reference to the Figures, in which:
In the embodiment shown, the first support 1 is formed in the form of a plate. A spindle 2 is mounted immovably in the first support 1 via an oil-tight pivot bearing. A drive 3 for rotating the spindle 2 can be driven by a motor, not shown in
The second support 4 is formed in the form of a yoke, which is penetrated centrally by the spindle 2 and on which the nut 5 is non-rotatably arranged. Two rods 6 are mounted on the second support, which penetrate the first support and, in order to drive a component of a molding machine, can be connected to this or can be formed as part of such a component.
In
The possible uses of a drive unit according to the invention shown in
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Number | Date | Country | Kind |
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A 51001/2021 | Dec 2021 | AT | national |