Injection unit for shaping machine and shaping machine including an injection unit
11141894 · 2021-10-12
Assignee
Inventors
- Franz DIRNEDER (Schwertberg, AT)
- Stephan EPPICH (Arbing, AT)
- Robert STRASSER (Langenstein, AT)
- Gerhard Hackl-Lehner (St. Thomas, AT)
- Christoph BALKA (Schwertberg, AT)
- Friedrich PERNKOPF (Gramastetten, AT)
- Gernot Boehm (Wartberg, AT)
Cpc classification
B29C45/1775
PERFORMING OPERATIONS; TRANSPORTING
International classification
B29C45/17
PERFORMING OPERATIONS; TRANSPORTING
Abstract
An injection unit for a shaping machine includes an injection element suitable for introducing a plasticized material into a mold tool by a linear movement of the injection element. The injection element is coupled in linear motion-transmitting relationship to a bearing element, and at least two linear drives are adapted to exert a force on the injection element by the bearing element. The force can be transmitted by a transmission element from the at least two linear drives to the bearing element and thus to the injection element, and at least one clearance is arranged between the bearing element and the transmission element such that deformations of the bearing element are not transmitted to the transmission element or are transmitted to a reduced degree.
Claims
1. An injection unit for a shaping machine, the injection unit comprising: an injection element suitable for introducing a plasticized material into a mold tool by a linear movement of the injection element, wherein: the injection element is coupled in linear motion-transmitting relationship to a bearing element and at least two linear drives are adapted to exert a force on the injection element by the bearing element; the force can be transmitted by a transmission element from the at least two linear drives to the bearing element and thus to the injection element; and at least one clearance is arranged between the bearing element and the transmission element such that deformations of the bearing element are not transmitted to the transmission element or are transmitted to a reduced degree.
2. The injection unit according to claim 1, wherein the injection element is rotatably mounted to the bearing element.
3. The injection unit according to claim 1, wherein the at least one clearance is arranged between a central axis of the injection element and at least one drive axis of at least one of the at least two linear drives.
4. The injection unit according to claim 1, wherein the transmission element is common to both of the at least two linear drives.
5. The injection unit according to claim 1, wherein a connecting or contact surface is provided between the bearing element and the transmission element.
6. The injection unit according to claim 5, wherein the at least one clearance is arranged beside the connecting or contact surface.
7. The injection unit according to claim 1, wherein at least one measuring diaphragm is provided between at least one of the at least two linear drives and the transmission element.
8. The injection unit according to claim 1, wherein the at least two linear drives are spindle drives.
9. The injection unit according to claim 1, wherein the bearing element and/or the transmission element have a central opening.
10. The injection unit according to claim 1, further comprising a receiver for the injection element provided on the bearing element.
11. The injection unit according to claim 1, wherein the injection element is a plasticizing screw and/or an injection piston.
12. The injection unit according to claim 11, further comprising at least one rotational drive configured to cause rotational movement of the plasticizing screw.
13. The injection unit according to claim 12, wherein the at least one rotational drive is arranged at the transmission element and/or at the bearing element.
14. The injection unit according to claim 1, wherein the injection element is arranged in a mass cylinder.
15. The injection unit according to claim 1, wherein: the injection element is fixed in linear motion-transmitting relationship to the bearing element and the mass cylinder is linearly moveably coupled to a fixing plate; and the bearing element is linearly displaceable with respect to the fixing plate by the at least two linear drives.
16. The injection unit according to claim 1, further comprising at least two drive motors for driving the at least two linear drives.
17. The injection unit according to claim 16, wherein the at least two drive motors are arranged on a fixing plate.
18. A shaping machine for production of shaped parts of plasticized material comprising the injection unit according to claim 1.
19. The injection unit according to claim 5, wherein the connecting or contact surface is rectangular.
20. The injection unit according to claim 8, wherein spindle nuts of the spindle drives are connected in motion-transmitting relationship to the transmission element.
21. The injection unit according to claim 10, wherein the receiver is provided centrally on the bearing element.
22. The injection unit according to claim 16, wherein the at least two drive motors are electric motors.
23. The injection unit according to claim 22, wherein the electric motors are three-phase synchronous motors.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Further details and advantages of the present invention will be described more fully hereinafter by the specific description with reference to the drawings in which:
(2)
(3)
DETAILED DESCRIPTION OF THE INVENTION
(4)
(5) The spindle drives 2 are respectively connected to the transmission element 4 in motion-transmitting relationship by way of a spindle nut 3.
(6) Arranged between the transmission element 4 and the spindle nut 3 are measuring diaphragms 5, by which it is possible to measuringly detect a force between the spindle drive 2 and the transmission element 4.
(7) In addition the transmission element 4 has openings 6 which are adapted to receive the spindles of the spindle drives 2 in a retracted position—more precisely: a plasticizing position.
(8) The transmission element 4 is connected to the bearing element 8 by way of the contact surfaces 7, in which case a force can be transmitted from the spindle drive 2 to the bearing element 8 by way of the transmission element 4.
(9) The injection element which is in the form of a plasticizing screw 9 is fixed to the bearing element 8 rotationally and in linearly motion-transmitting relationship. To ensure the rotational degree of freedom of the plasticizing screw 9 it is connected to the bearing element 8 by way of the bearings 10.
(10) The plasticizing screw 9 can be caused to rotate by way of the belt pulley 11, wherein the belt pulley 11 can be connected to a rotational motor by way of a belt. In this embodiment the belt drive is formed by a belt pulley 11 and a pinion connected by way of a belt (this is not shown for the sake of simplicity of the drawing).
(11) It can be clearly seen from
(12) The inner clearance 18 and the outer clearances 14 between the transmission element 4 and the bearing element 8 provide the necessary free space such that upon deformation of the bearing element 8 that is not passed on directly to the transmission element 4 and thus to the spindle nuts 2 fixed thereon.
(13) In
(14) The plasticizing screw 9 is arranged in a mass cylinder 15 fixed to a first fixing plate 16.
(15) The spindle drives 2 connected to the transmission element 4 are supported at a second fixing plate 17. In that way the bearing element 8 (and the plasticizing screw 9 connected to the bearing element 8 in linear motion-transmitting relationship) is linearly displaceable by means of the two spindle drives 2 by way of the second fixing plate 17 with respect to the first fixing plate 16 (and the mass cylinder 15 which is coupled in linear motion-transmitting relationship to the first fixing plate 16).
(16) The first fixing plate 16 is connected to the second fixing plate 17 by way of connecting plates 18. Design configurations are certainly also conceivable, in which the first fixing plate 16 and the second fixing plate 17 are alternatively or in addition to the connecting plates 18 connected by at least one bar member.
(17)
(18) The contact surfaces 7 arranged on the bearing element 8 are clearly visible in
LIST OF REFERENCES
(19) 1 injection unit 2 spindle drive 3 spindle nut 4 transmission element 5 measuring diaphragm 6 openings 7 contact surfaces 8 bearing element 9 plasticizing screw 10 bearing 11 belt pulley 12 bracing rib 13 inner clearance 14 outer clearance 15 mass cylinder 16 first fixing plate 17 second fixing plate 18 connecting plate