A PREFORM MANUFACTURING DEVICE
20190126512 ยท 2019-05-02
Assignee
- SUNTORY HOLDINGS LIMITED (Osaka-shi, Osaka, JP)
- S.I.P.A. SOCIETA' INDUSTRIALIZZAZIONE PROGETTAZION E E AUTOMAZIONE S.P.A. (Vittorio Veneto Treviso, IT)
- KYOEI INDUSTRY CO., LTD. (Oyama-shi, Tochigi, JP)
Inventors
- Enrico Gribaudo (Vittorio Veneto, Treviso, IT)
- Klaus FEICHTINGER (Linz, AT)
- Manfred Hackl (Linz-Urfahr, AT)
- Christoph Woess (Hartkirchen, AT)
- Eiichi Furusawa (Oyama-shi, Tochigi, JP)
- Munehiko Takada (Tokyo, JP)
- Shigenobu Kishi (Tokyo, JP)
- Yoshihiro Saito (Tokyo, JP)
- Naoya Ogasawara (Tokyo, JP)
Cpc classification
B29B17/02
PERFORMING OPERATIONS; TRANSPORTING
B29C45/0441
PERFORMING OPERATIONS; TRANSPORTING
B29C45/045
PERFORMING OPERATIONS; TRANSPORTING
B29C45/18
PERFORMING OPERATIONS; TRANSPORTING
B29B17/00
PERFORMING OPERATIONS; TRANSPORTING
B29C48/287
PERFORMING OPERATIONS; TRANSPORTING
B29C45/0001
PERFORMING OPERATIONS; TRANSPORTING
Y02W30/62
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
B29C2049/023
PERFORMING OPERATIONS; TRANSPORTING
B29B13/00
PERFORMING OPERATIONS; TRANSPORTING
B29B2013/002
PERFORMING OPERATIONS; TRANSPORTING
B29K2067/003
PERFORMING OPERATIONS; TRANSPORTING
International classification
B29C45/04
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A preform manufacturing device for manufacturing a preform from thermoplastic resin flakes, comprises a decontamination apparatus removing contaminants in the thermoplastic resin flakes, and an injection molding apparatus injecting and molding the thermoplastic resin supplied from the decontamination apparatus.
Claims
1. A preform manufacturing device for manufacturing a preform from thermoplastic resin flakes, comprising: a decontamination apparatus removing contaminants in the thermoplastic resin flakes, and an injection molding apparatus injecting and molding the thermoplastic resin supplied from the decontamination apparatus.
2. The preform manufacturing device according to claim 1, further comprising a filter disposed between the decontamination apparatus and the injection molding apparatus.
3. The preform manufacturing device according to claim 2, further comprising a gear pump disposed between the filter and the injection molding apparatus.
4. The preform manufacturing device according to claim 1, wherein the injection molding apparatus comprises a plurality of molds and continuously shapes preforms.
5. The preform manufacturing device according to claim 4, wherein the injection molding apparatus is a rotary type injection molding apparatus comprising a rotary mechanism rotating the plurality of molds.
Description
BRIEF DESCRIPTION OF DRAWINGS
[0017]
[0018]
[0019]
[0020]
[0021]
[0022]
[0023]
[0024]
DESCRIPTION OF EMBODIMENTS
[0025] Below, referring to the attached drawings, an embodiment of the present invention will be explained in detail. Further, in the blow explanation, the same components are assigned the same reference notations.
[0026] A plastic bottle used to contain liquid for drinking, food, etc., is shaped by blowing up a preform by a stretch blow molding method. Note that in the Description, a plastic bottle means a bottle made of plastics such as polyethylene terephthalate (PET), polypropylene (PP) and polyethylene (PE), and therefore it is not limited to a PET bottle. Further, the plastic bottle may be a Polyethylene naphthalate (PEN), a plant bottle partially made from plants, etc.
[0027]
[0028] The preform 100 is manufactured using injection molding apparatus typically from a virgin material made of an oil, etc., a recycled material made of a used plastic bottle, or a mixture of the virgin material and the recycled material. However, a used plastic bottle is often contaminated by impure substances. Therefore, if a recycled material is used, it is necessary to remove contaminations due to impure substances by a decontamination apparatus before introduction into the injection molding apparatus.
[0029]
[0030] The preform manufacturing device 1 comprises a decontamination apparatus 3 and an injection molding apparatus 5. The decontamination apparatus 3 removes contaminations in thermoplastic resin flakes, and supplies the decontaminated thermoplastic resin to the injection molding apparatus 5. The injection molding apparatus 5 shapes a preform by injecting and molding the thermoplastic resin supplied from the decontamination apparatus 3. In the present embodiment, the preform manufacturing device 1 further comprises a filter 7 disposed between the decontamination apparatus 3 and the injection molding apparatus 5. The filter 7 is, for example, a screen mesh filter having holes of 32 m diameter, or a melt filter which removes foreign matter by rotating a cylindrical filter having holes of minimum 80 m diameter. Micro foreign matter in the thermoplastic resin can be removed by passing the melted thermoplastic resin extruded from the decontamination apparatus 3 through the filter 7.
[0031] The decontamination apparatus 3 has an inlet 31, a decontamination portion 32 and a supply portion 33. Thermoplastic resin flakes are introduced into the decontamination portion 32 from the inlet 31, and the thermoplastic resin decontaminated in the decontamination portion 32 is supplied to the injection molding apparatus 5 by the supply portion 33. In the present embodiment, the decontamination portion 32 has two decontamination containers 34a and 34b. The decontamination containers 34a and 34b have similar constructions. The upper ends of the decontamination containers 34a and 34b are provide with two slide valves 35, respectively. Each of the two slide valves 35 can be moved between an open position and a closed position by double-acting cylinders 36.
[0032] The decontamination containers 34a and 34b are connected to a vacuum pump 37, respectively. Therefore, the decontamination containers 34a and 34b are decompressed into a vacuum state by the vacuum pump 37. Further, a plurality of rotation members 39 connected to a rotation shaft 38 are located in the decontamination containers 34a and 34b. The rotation shaft 38 is driven to rotate by a rotation driving device 40. The thermoplastic resin introduced into the decontamination containers 34a and 34b is fluidized and heated by rotating the rotation members 39 by driving the rotation shaft 38. The decontamination apparatus 3 can volatilize and remove contaminations in the thermoplastic resin by heating the thermoplastic resin at a vacuum state. Accordingly, the decontamination apparatus 3 carries out a so-called mechanical recycle method.
[0033] The decontamination apparatus 3 has a transfer portion 41 between the decontamination container 34a and the decontamination container 34b. The thermoplastic resin decontaminated in the decontamination container 34a enters into the transfer portion 41 from a discharge port provided in the decontamination container 34a. A transfer screw 42 is disposed at the transfer portion 41. The transfer screw 42 is driven to rotate by a transfer screw driving device 43. The thermoplastic resin is moved from the decontamination container 34a to the decontamination container 34b by rotating the transfer screw 42. The thermoplastic resin moved to the decontamination container 34b is decontaminated again in the decontamination container 34b by a method similar to the decontamination container 34a. A supply screw 44 is disposed at the supply portion 33 disposed at the lower portion of the decontamination container 34b. The supply screw 44 is driven to rotate by a supply screw driving device 45. The supply portion 33 supplies the decontaminated thermoplastic resin to the injection molding apparatus 5 via the filter 7 by rotating supply screw 44.
[0034] The supply screw 44 melts the decontaminated thermoplastic resin. Therefore, the decontaminated thermoplastic resin at the molten state is supplied to the filter 7. Note that if the preform manufacturing device 1 is not provided with the filter 7 or if the injection molding apparatus 5 is provided with a filter, the supply screw 44 may be a transport screw supplying the decontaminated thermoplastic resin at the solid state to the injection molding apparatus 5.
[0035] The rotation shaft driving device 40, transfer screw driving device 43 and supply screw driving device 45 are, for example, electric motors. Note that the decontamination apparatus 3 may have a construction having only one decontamination container 34c, as shown in
[0036]
[0037] The plasticized resin is hold at the front side of the plasticizing screw 54 and is injected into cavities of a mold 56 of the mold portion 52 by advancing the plasticizing screw 54 in the axial direction. The plasticizing screw 54 advanced in the axial direction is shown in
[0038] The plasticizing screw 54 is retracted in the axial direction after injecting the resin, and plasticizes the resin supplied from the decontamination apparatus 3 again by the rotation of the plasticizing screw 54. The plasticized resin is injected into the mold 56 again. Accordingly, the plasticizing screw 54 intermittently rotates in order to plasticize a resin, and the injection molding apparatus 5 intermittently shapes preforms. Therefore, the supply screw driving device 45 of the decontamination apparatus 3 drives the supply screw 44 so that a resin is supplied to the injection portion 51 so as to conform to the timing of the retraction of the plasticizing screw 54. In other word, the supply screw 44 is controlled so as to cooperate with plasticizing screw 54.
[0039] The preform manufacturing device 1 may further comprise a gear pump disposed between the filter 7 and the injection molding apparatus 5.
[0040]
[0041] The injection molding apparatus 5 has a extrusion portion 61, a resin conveying portion 62, a rotary mechanism 63 and a mold portion 52. The extrusion portion 61 includes a heating cylinder 53 and a plasticizing screw 54. The heating cylinder 53 is provided with a heater 55 and can heat the thermoplastic resin supplied from the decontamination apparatus 3 to extrusion portion 61. The plasticizing screw 54 is driven to rotate by a plasticizing screw driving device (not shown). The thermoplastic resin supplied to the extrusion portion 61 is plasticized by being heated by the heating cylinder 53 and a frictional force applied by the rotation of the plasticizing screw 54. Further, the resin supplied to the extrusion portion 61 is extruded to the resin conveying portion 62 by the rotation of the plasticizing screw 54. The plasticizing screw driving device is, for example, an electrical motor.
[0042] A conveying passage 64 is formed in the resin conveying portion 62. The resin extruded to the resin conveying portion 62 is conveyed to a resin distribution portion 65 of the rotary mechanism 63 through the conveying passage 64. The rotary mechanism 63 is rotatably connected to the resin conveying portion 62 via a rotary joint. The central axis of the conveying passage 64 is coaxial with the rotational axis of the rotary mechanism 63. The resin distribution portion 65 is connected to a plurality of first radial passages 66. Accordingly, the resin conveyed to the resin distribution portion 65 is distributed to the plurality of first radial passages 66 via the resin distribution portion 65. The plurality of first radial passages 66 are connected to a second radial passage 67, respectively. The resin distributed to the first radial passage 66 is supplied into cavities of molds formed in the mold portion 52 through the first radial passages 66 and the second radial passages 67.
[0043] The resin supplied into the cavities is cooled and solidified. After that, the molds are opened, and the shaped preforms are ejected from the molds. The injection molding apparatus 5 has molds continuously disposed in the circumference direction, and the number of the molds is, for example, 144. In the injection molding apparatus 5, the plurality of molds continuously rotates with the rotary mechanism 63, and therefore a preform shaped in each mold is continuously ejected at the same position in the circumference direction.
[0044] In the injection molding apparatus 5, the plasticizing screw 54 continuously rotates during shaping preforms, and thereby it continuously plasticizes the resin supplied to extrusion portion 61 and extrudes it to the resin conveying portion 62. In this case, the supply screw 44 of the decontamination apparatus 3 is continuously driven to rotate in order to continuously supply the resin to the extrusion portion 61, and therefore the processing ability of the decontamination apparatus 3 is not suppressed. Accordingly, productivity of a preform in the recycle process can be further enhanced by combining the decontamination apparatus 3 and the injection molding apparatus 5. Note that the injection molding apparatus 5 is not limited to the construction mentioned above as long as it is configured to continuously shape preforms by continuously rotating the plasticizing screw 54
[0045] Below, a preform manufacturing method in the present embodiment will be explained.
[0046] Note that if foreign matter in the resin is not removed by the filter 7 or if foreign matter in the resin is removed by a filter provided in the injection molding apparatus 5 or 5, the supply screw 44 may supply the decontaminated resin at the solid state to the injection molding apparatus 5 or 5.
[0047] According to the present embodiment, the preform manufacturing process can be drastically shortened, compared to the preform manufacturing process in prior art, which is shown in
[0048] Above, the preferred embodiments according to the present invention were explained, but the present invention is not limited to these embodiments. Various modifications and changes may be made within the scope of the claims. For example, the plasticizing screw 54 of the injection molding apparatus 5 or the plasticizing screw 54 of injection molding apparatus 5 and the supply screw 44 of decontamination apparatus 3 may be integrated into one piece and be driven by one driving device. Further, if the molten state of the resin melted by the supply screw 44 is maintained in the injection portion 51 of the injection molding apparatus 5, the injection portion 51 may not be provided with the heating cylinder 53 and the heater 55. Similarly, if the molten state of the resin melted by the supply screw 44 is maintained in the extrusion portion 61 of the injection molding apparatus 5, the extrusion portion 51 may not be provided with the heating cylinder 53 and the heater 55.
REFERENCE SIGNS LIST
[0049] 1. preform manufacturing device
[0050] 3. decontamination apparatus
[0051] 5, 5. injection molding apparatus
[0052] 7. filter
[0053] 9. gear pump
[0054] 44. supply screw
[0055] 54, 54. plasticizing screw
[0056] 100. preform