RECIPROCATING INJECTION UNIT
20230090657 ยท 2023-03-23
Inventors
Cpc classification
B29C48/252
PERFORMING OPERATIONS; TRANSPORTING
B29C48/2522
PERFORMING OPERATIONS; TRANSPORTING
B29C48/265
PERFORMING OPERATIONS; TRANSPORTING
B29C48/09
PERFORMING OPERATIONS; TRANSPORTING
B29C48/0017
PERFORMING OPERATIONS; TRANSPORTING
B29C49/42362
PERFORMING OPERATIONS; TRANSPORTING
B29C49/42374
PERFORMING OPERATIONS; TRANSPORTING
B29C49/28008
PERFORMING OPERATIONS; TRANSPORTING
International classification
B29C49/42
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A reciprocating blow molding unit includes an extruder screw foundation and an extrusion unit coupled to the extruder screw foundation. The extruder screw foundation includes a screw housing formed to include an interior cavity configured to receive polymeric material. The extrusion unit includes an extruder screw arranged to lie at least partially within the interior cavity and is configured to rotate about a longitudinal rotation axis to advance the polymeric material through the interior cavity.
Claims
1. A reciprocating blow molding unit comprising: an extruder screw foundation including a screw housing formed to include an interior cavity configured to receive polymeric material, a first fixed support coupled to a rear end of the screw housing, and a second fixed support spaced apart from the first fixed support and from the rear end of the screw housing, an extrusion unit including an extruder screw arranged to lie at least partially within the interior cavity and including a screw shaft having a first end and an opposite, second end and a plurality of threads coupled to the screw shaft and arranged to extend away from the first end and toward the second end, a first gear unit coupled to the first end of the screw shaft, and a first motor coupled the first gear unit and configured to drive movement of the first gear unit to cause rotation of the extruder screw about a longitudinal rotation axis so that the plurality of threads advance the polymeric material through the interior cavity toward the second end of the screw shaft, and a translation unit including a translator screw coupled to the second fixed support, a second gear unit coupled to the translator screw, and a second motor configured to drive movement of the second gear unit to cause rotation of the translator screw about the longitudinal rotation axis so that the extrusion unit translates relative to the extruder screw foundation along the longitudinal rotation axis.
2. The reciprocating blow molding unit of claim 1, wherein the translator screw includes a translator shaft and a plurality of external threads coupled to the translator shaft.
3. The reciprocating blow molding unit of claim 2, wherein the second fixed mount includes a mount frame and a threaded collar coupled to the mount frame and configured to mesh with the plurality of external threads of the translator screw.
4. The reciprocating blow molding unit of claim 3, wherein the translator screw is configured to rotate in a first direction to cause the extrusion unit and the translation unit to move away from the first fixed mount and toward an the second fixed mount and the translator screw is configured to rotate in an opposite, second direction to cause the extrusion unit and the translation unit to move away from the second fixed mount and toward the first fixed mount.
5. The reciprocating blow molding unit of claim 1, wherein the first gear unit and the second gear unit are each included in a common gearbox that is formed to include a first interior subspace housing the first gear unit and a second interior subspace housing the second gear unit.
6. The reciprocating blow molding unit of claim 5, wherein the first motor is coupled to a first side of the common gearbox and includes a first drive shaft extending toward the first and second gear units and the second motor and the second motor is coupled to an opposite, second side of the common gearbox and includes a second drive shaft extending toward the first and second gear units and the first motor.
7. The reciprocating blow molding unit of claim 6, wherein the first drive shaft and the second drive shaft rotate about a common drive-shaft axis.
8. The reciprocating blow molding unit of claim 5, further comprising a support frame configured to support the extruder screw foundation, the extrusion unit, and the translation unit above ground, the support frame including a plurality of guide rails coupled to the common gearbox to allow sliding movement of the extrusion unit and the translation unit relative to the support frame.
9. The reciprocating blow molding unit of claim 8, wherein the first and second fixed mounts are coupled removably to the plurality of guide rails so that the extruder screw foundation, the extrusion unit, and the translation unit can be repositioned along the plurality of guide rails in unison with one another.
10. The reciprocating blow molding unit of claim 1, wherein the first motor is a first electric motor and the second motor is a second electric motor.
11. A reciprocating blow molding unit comprising: an extruder screw foundation including a screw housing formed to include an interior cavity configured to receive polymeric material, a first fixed support coupled to a rear end of the screw housing, and a second fixed support spaced apart from the first fixed support and from the rear end of the screw housing, an extrusion unit including an extruder screw arranged to lie at least partially within the interior cavity having a first end and an opposite, second end, a first gear unit coupled to the first end of the extruder screw, and a first motor coupled the first gear unit and configured to drive movement of the first gear unit to cause rotation of the extruder screw about a longitudinal rotation axis to advance the polymeric material through the interior cavity toward the second end of the extruder screw, and a translation unit including a screw translator coupled to the second fixed support, a second gear unit coupled to the screw translator, and a second motor configured to drive movement of the second gear unit to cause movement of the screw translator so that the extrusion unit and the translation unit translate relative to the extruder screw foundation along the longitudinal rotation axis.
12. The reciprocating blow molding unit of claim 11, wherein the screw translator includes a translator shaft and a plurality of external threads coupled to the translator shaft.
13. The reciprocating blow molding unit of claim 12, wherein the second fixed mount includes a mount frame and a threaded collar coupled to the mount frame and configured to mesh with the plurality of external threads of the screw translator.
14. The reciprocating blow molding unit of claim 13, wherein the screw translator is configured to rotate in a first direction to cause the extrusion unit and the translation unit to move away from the first fixed mount and toward an the second fixed mount and the screw translator is configured to rotate in an opposite, second direction to cause the extrusion unit and the translation unit to move away from the second fixed mount and toward the first fixed mount.
15. The reciprocating blow molding unit of claim 11, wherein the first gear unit and the second gear unit are each included in a common gearbox that is formed to include a first interior subspace housing the first gear unit and a second interior subspace housing the second gear unit.
16. The reciprocating blow molding unit of claim 15, wherein the first motor is coupled to a first side of the common gearbox and includes a first drive shaft extending toward the first and second gear units and the second motor and the second motor is coupled to an opposite, second side of the common gearbox and includes a second drive shaft extending toward the first and second gear units and the first motor.
17. The reciprocating blow molding unit of claim 16, wherein the first drive shaft and the second drive shaft rotate about a common drive-shaft axis.
18. The reciprocating blow molding unit of claim 15, further comprising a support frame configured to support the extruder screw foundation, the extrusion unit, and the translation unit above ground, the support frame including a plurality of guide rails coupled to the common gearbox to allow sliding movement of the extrusion unit and the translation unit relative to the support frame.
19. The reciprocating blow molding unit of claim 18, wherein the first and second fixed mounts are coupled removably to the plurality of guide rails so that the extruder screw foundation, the extrusion unit, and the translation unit can be repositioned along the plurality of guide rails in unison with one another.
20. The reciprocating blow molding unit of claim 11, wherein the first motor is a first electric motor and the second motor is a second electric motor.
Description
BRIEF DESCRIPTIONS OF THE DRAWINGS
[0006] The detailed description particularly refers to the accompanying figures in which:
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DETAILED DESCRIPTION
[0014] A reciprocating blow molding unit 10, in accordance with the present disclosure, is shown in
[0015] The extruder screw foundation 12 includes a screw housing 18, a first fixed support 20, and a second fixed support 22 as shown in
[0016] The extrusion unit 14 includes an extruder screw 30 arranged to lie at least partially within the interior cavity 24, a first gear unit 32, and a first motor 34 as shown in
[0017] The extruder screw 30 includes a screw shaft 56 having a first end and an opposite, second end and a plurality of threads 58 coupled to the screw shaft 56 and arranged to extend away from the first end and toward the second end as shown in
[0018] In illustrative embodiments, the reciprocating blow molding unit 10 further includes a translation unit 16 configured to move the extruder screw 30 between an extended, forward position, as shown in
[0019] The translation unit 16 is configured to move the entire extrusion unit 14 and the entire translation unit 16 relative to the extruder screw foundation 12 between the extended and retracted positions as shown in
[0020] The screw translator 40 is illustratively embodied as a translator screw 40 and includes a translator shaft 46 and a plurality of external threads 48 coupled to the translator shaft 46 as shown in
[0021] The first gear unit 32 and the second gear unit 42 are each included in a common gearbox 60 that is formed to include a first interior subspace 62 housing the first gear unit 32 and a second interior subspace 64 housing the second gear unit 42 as shown in
[0022] In the illustrative embodiment, both motors 34, 44 are electric motors. The motors 34, 44 may be alternating current (AC), direct current (DC), or electrically controlled motors (EC). The motors 34, 44 may also be brushed or brushless. The first motor 34 is coupled to a first side of the common gearbox 60 while the second motor 44 is coupled to an opposite, second side of the common gearbox 60 as shown in
[0023] The support frame 28 includes a plurality of guide rails 90 and a plurality of guide-rail mounts 92 coupled to the common gearbox 60 to allow sliding movement of the extrusion unit 14 and the translation unit 16 relative to the support frame 28. The first and second fixed mounts 20, 22 are also coupled removably to the plurality of guide rails 90 so that the extruder screw foundation 12, the extrusion unit 14, and the translation unit 16 can be repositioned along the plurality of guide rails 90 in unison with one another. The extruder screw foundation 12 further includes tie bars 94, 96 that extend between and interconnect the first fixed mount 20 and the second fixed mount 22. The tie bars 94, 96 block movement of the mounts 20, 22 toward or away from one another as the translation unit 16 drives the translator screw 40. Thus, only the extrusion unit 12 and the translation unit 16 move during operation of blow molding unit 10.
[0024] In some embodiments, the extruder foundation 12, the extrusion unit 14, and the translation unit 16 are free to move along guide rails 90 during operation and for maintenance. For example, mounting the extruder screw foundation 12, the extrusion unit 14, and the translation unit 16 to the support frame 28 on guide rails 90 accommodates thermal expansion of the screw housing 18 relative to support frame 28 when the extruder 10 is brought up to high temperatures. This may also provide compliance within the unit to allow for stretch of the screw housing 18, injection tie bars 94, 96, and a nozzle of the extruder housing 18 during the extrusion process. This also allows the extruder screw foundation 12, the extrusion unit 14, and the translation unit 16 to be moved towards a rear of the support frame 28 for maintenance, screw replacement, and mold change over/replacement.
[0025] Another embodiment of a reciprocating blow molding unit 210 is shown in
[0026] The extrusion unit 214 includes the extruder screw 230, a first gear set 232, and a first motor 234 similarly to blow molding unit 10. The translation unit 216 includes a translator screw 240, a second gear set 242, and a second motor 244 similarly to blow molding unit 10. The first and second gear sets 232, 242 are arranged to lie at least partially in the interior space 224 and travel between walls 220, 222 in response to actuation of the translator screw 240 by the second motor 244.
[0027] Guide rails 290 are mounted on interior surfaces of walls 221, 223. Guide rail mounts 292 are mounted to a common gearbox 260 housing both gear sets 232, 242 and engage the guide rails 290 to allow for sliding movement of the extruder unit 214 and the translation unit 216 relative to the housing mount 219.
[0028] In some embodiments, an electric reciprocating injection blow molding machine 10 is shown in
[0029] In some embodiments, the blow molding machine 10 further includes a gearbox 60 and a plurality of internal gears 32, 42 that rotate the extruder screw 30 and a translator screw 40 to move back and forth for the reciprocal motion of the extruder screw 18. Two electric motors 34, 44 are coupled to the gearbox 60. The motor 34 on the left drives a first gear set 32 that rotates the extruder screw 18. The motor 44 on the right drives a second gear set 42 that rotates a shaft 40 that is threaded inside a collar 52. This arrangement allows the gearbox 60 to be pushed and pulled with respect to endplates 20, 22. In other blow molding machines the screw may be reciprocated hydraulically but the arrangement according to the present disclosure allows the use of the electric motors 34, 44 and a combined gearbox 60 that allows both rotation and reciprocation of the screw 30 to be accomplished in one unit. The present disclosure accomplishes translation without any hydraulic actuators that cause translation of the extruder screw 30.