Claims
- 1. A blow molding machine for making blow-molded hollow bodies of thermoplastic material, comprising:
a frame structure having two blow mold halves; a first drive assembly for moving the blow mold halves in a horizontal direction between an opening position and a closing position; a mold closing and locking unit for clamping the blow mold haves in the closed position; and a second drive assembly for operating the mold closing and locking unit to implement a release and clamping of the blow mold halves, said second drive assembly constructed as electromotive direct drive.
- 2. The blow mold machine of claim 1 for making essentially rotationally symmetrical hollow bodies, wherein the mold closing and locking unit includes at least two clamping elements, wherein the second drive assembly includes two electric direct drives disposed in symmetric relationship laterally next to the blow mold halves, one direct drive operatively connected to one clamping element and the other direct drive operatively connected to the other clamping element.
- 3. The blow mold machine of claim 1 for making technical blow-molded parts or essentially rotationally asymmetrical hollow bodies, wherein the mold closing and locking unit includes at least three clamping elements, wherein the second drive assembly includes three electric direct drives disposed in asymmetric relationship laterally next to the blow mold halves, a first one of the direct drives operatively connected to a first one of the clamping elements, a second direct drive operatively connected to a second one of the clamping elements, and a third one of the direct drives operatively connected to a third one of the clamping elements.
- 4. The blow mold machine of claim 1, wherein the mold closing and locking device includes an active half and a passive half which can be coupled approximately in a mold partition plane, wherein the direct drive is disposed on the active half for the mold closing and locking unit and configured as electric spindle drive.
- 5. The blow mold machine of claim 4, wherein the spindle drive is configured as spindle mechanism with recirculating rollers.
- 6. The blow mold machine of claim 5, wherein the spindle mechanism with recirculating rollers has a shiftable first spindle, wherein the mold closing and locking unit has a second spindle and a recirculating roller-supported nut mounted on the second spindle and driven in fixed relationship to the second spindle by a motor of the spindle drive.
- 7. The blow mold machine of claim 5, wherein the spindle mechanism with recirculating rollers includes a non-rotatably supported first spindle, wherein the mold closing and locking unit has a second spindle and a recirculating roller-supported nut mounted on the second spindle and driven by a motor of the spindle drive for displacement along the second spindle.
- 8. The blow mold machine of claim 1, wherein the mold closing and locking unit has a force storing device which applies a pre-tension in opposition to a blowing pressure, when the blow mold halves are clamped.
- 9. The blow mold machine of claim 8, wherein the force storing device is formed as a spring element assembly.
- 10. The blow mold machine of claim 8, wherein the frame structure has mold mounting plates for supporting the mold halves, wherein the force storing device is formed by one of predetermined elastically deformable regions of the mold mounting plates and frame plates disposed therebehind.
- 11. The blow mold machine of claim 1, wherein the frame structure has mold mounting plates for supporting the mold halves, wherein the mold closing and locking unit has a spindle and a recirculating roller-supported nut mounted on the spindle and driven by a motor of the electric direct drive, wherein the recirculating roller-supported nut is secured to one of a blow mold half and mold mounting plate, and is elastically supported in such a way that angular misalignments are equalized or compensated.
- 12. The blow mold machine of claim 4, wherein the frame structure has mold mounting plates for supporting the mold halves, wherein the mold closing and locking unit includes on the passive side a counterpiece for engagement with an opposite clamping element on the active side, wherein the counterpiece is supported elastically by one of blow mold half and mold mounting plate.
- 13. The blow mold machine of claim 1, wherein the first drive assembly for closing and opening the blow mold halves is configured as electromotive direct drive.
- 14. The blow mold machine of claim 13, wherein the electromotive direct drive, is configured with a threaded spindle with high thread pitch.
- 15. The blow mold machine of claim 1, wherein the electromotive direct drive has incorporated therein a brake, which so engages that the blow mold halves in closed position are pre-tensioned in the absence of a steady energy supply for a force-intensive clamping action.
- 16. The blow mold machine of claim 15, wherein the brake is a locking brake.
- 17. The blow mold machine of claim 15, wherein the mold closing and locking unit has a spindle and a recirculating roller-supported nut mounted on the spindle and driven by a motor of the electric direct drive, wherein the brake is disposed in a drive train to the nut-spindle mechanism.
Priority Claims (1)
Number |
Date |
Country |
Kind |
299 19 885.5 |
Nov 1999 |
DE |
|
CROSS-REFERENCES TO RELATED APPLICATIONS
[0001] This application is a continuation of prior filed copending PCT International application no. PCT/EP00/08792, filed Sep. 8, 2000.
[0002] This application claims the priority of German Patent Application Serial No. 299 19 885.5, filed Nov. 11, 1999, pursuant to 35 U.S.C. 119(a)(d), the subject matter of which is incorporated herein by reference.
Continuations (1)
|
Number |
Date |
Country |
Parent |
PCT/EP00/08792 |
Sep 2000 |
US |
Child |
10144682 |
May 2002 |
US |