Blow molding device
10112338 ยท 2018-10-30
Assignee
Inventors
Cpc classification
B29C49/08
PERFORMING OPERATIONS; TRANSPORTING
B29C49/6409
PERFORMING OPERATIONS; TRANSPORTING
B67C7/0073
PERFORMING OPERATIONS; TRANSPORTING
B29C49/46
PERFORMING OPERATIONS; TRANSPORTING
A61L2202/15
HUMAN NECESSITIES
B29C49/4273
PERFORMING OPERATIONS; TRANSPORTING
A61L2202/13
HUMAN NECESSITIES
B29C49/42414
PERFORMING OPERATIONS; TRANSPORTING
B29C2949/0715
PERFORMING OPERATIONS; TRANSPORTING
A61L2202/23
HUMAN NECESSITIES
International classification
B29C49/46
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The blow molding device (1) is provided with a heating means (4) for heating a preform (P) to a temperature appropriate for molding, an antimicrobial agent-spraying means (50) for spraying an antimicrobial agent on the preform (P), a hot forming means for stretch blow molding the preform into a bottle (B), and an irradiation device (7) irradiating electromagnetic waves or ultrasonic waves on the bottle. After the heating means (4) has heated the preform (P), the anti-microbial agent-spraying means (50) sprays the anti-microbial agent and sterilizes the preform (P) with hot antimicrobial agent. During subsequent stretch blow molding of the preform (P), the hot forming means performs additional drying of antimicrobial agent retained on the preform (P) in the hot state and additional sterilization. The irradiation device (7) irradiates electromagnetic waves or ultrasonic waves to degrade the anti-microbial agent remaining on the molded bottle (B) and further promote antimicrobial agent drying and sterilization.
Claims
1. A blow molding device comprising: a heater capable of heating by electromagnetic radiation and configured to heat a preform to a temperature appropriate for molding; a spraying device having an opening which faces toward the preform and configured to spray the preform with an antimicrobial agent generating active oxygen or hydroxyl radical; a forming device configured to stretch blow mold forming the preform into a bottle; and an irradiation device including an ultrasonic waves irradiation portion which irradiates ultrasonic waves and a reflective plate disposed on a side opposite to the ultrasonic waves irradiation portion with respect to the molded bottle, wherein, after the heater heats the preform, the anti-microbial agent is sprayed from the spraying device, and the heater sterilizes the preform which has become in a hot state by heating, wherein, after the anti-microbial agent is sprayed, when stretch blow molding the preform in the forming device, the forming device additionally dries the antimicrobial agent retained on the preform in the hot state and additionally sterilizes the preform, and wherein, simultaneously or after stretch blow molding of the preform, the irradiation device emits the ultrasonic waves to the reflective plate from the ultrasonic waves irradiation portion, and the anti-microbial agent remaining in the molded bottle is decomposed by the ultrasonic waves.
2. The blow molding device according to claim 1, wherein the antimicrobial agent generating the active oxygen or the hydroxyl radical is an antimicrobial agent having hydrogen peroxide or peracetic acid as a main component.
3. A blow molding device comprising: a spraying device having an opening which faces toward the preform and configured to spray a preform with an antimicrobial agent generating active oxygen or hydroxyl radical; a heater for heating the preform to a temperature appropriate for molding; a forming device configured to stretch blow mold forming the preform into a bottle; and an irradiation device including an ultrasonic waves irradiation portion which irradiates ultrasonic waves and a reflective plate disposed on a side opposite to the ultrasonic waves irradiation portion with respect to the molded bottle, wherein the heater sterilizes the preform sprayed with the antimicrobial agent by the anti-microbial agent-spraying means before or during the heating by the heating means with the antimicrobial agent put into a hot state by being heated, wherein, after the anti-microbial agent is sprayed, when stretch blow molding the preform in the forming device the forming device additionally dries the antimicrobial agent retained on the preform in the hot state and additionally sterilizes the preform, and wherein, simultaneously or after stretch blow molding of the preform, the irradiation device emits the ultrasonic waves to the reflective plate from the ultrasonic waves irradiation portion, and the anti-microbial agent remaining in the molded bottle is decomposed by the ultrasonic waves.
4. The blow molding device according to claim 3, wherein the antimicrobial agent generating the active oxygen or the hydroxyl radical is an antimicrobial agent having hydrogen peroxide or peracetic acid as a main component.
Description
BRIEF DESCRIPTION OF DRAWINGS
(1)
(2)
(3)
(4)
(5)
(6)
(7)
DESCRIPTION OF EMBODIMENTS
(8) Hereinafter, embodiments of the present invention will be described in detail with reference to accompanying drawings. The present invention is not limited by these embodiments. Elements constituting the embodiments described below include elements that can be easily assumed by those skilled in the art or elements substantially identical thereto.
(9) (First Embodiment)
(10) A first embodiment of the present invention will be described with reference to
(11)
(12) Referring to
(13) A vicinity of a flange portion Pn of the preform P is gripped by a container gripper (not illustrated) disposed at an equal pitch in a transporting apparatus 10, and the preform P is transported in an arrow F direction from the upstream side by the transporting apparatus 10. Then, inner and outer surfaces of the preform P are rinsed by rinse gas in a preform rinser 12, and then the preform P is incorporated into a clean room 16 that has a clean atmosphere. After being incorporated into the clean room 16, the preform P is delivered to a container gripper (not illustrated) that is arranged at an equal pitch in a transporting apparatus 11 at a delivery position 21p of a wheel 21. The transporting apparatus 11 is suspended between a wheel 22a and a wheel 22b and transports the preform P as illustrated by arrows. While being transported by the transporting apparatus 11, the preform P is heated to the temperature appropriate for molding by the heating means 4. Then, the preform P is delivered to a container gripper (not illustrated) that is arranged at a predetermined equal pitch in a rotary transfer star wheel 23 at a delivery position 22p.
(14) Hereinbelow, descriptions as to the delivery positions between the rotary wheels, delivery to the container grippers, and arrangement of the respective container grippers at a predetermined equal pitch will be omitted to avoid repetition.
(15) As illustrated in
(16) The preform P that is delivered to the transfer star wheel 23 is transported in an arrow direction which is illustrated and is delivered to a container gripper (not illustrated) arranged at a predetermined equal pitch in the rotary antimicrobial agent spraying device 5 at a delivery position 23p. Then, during the rotation transport, the preform P is sprayed with the antimicrobial agent (described later), and is delivered to a container gripper (not illustrated) of the rotary blow molding machine 6 through a transfer star wheel 24. During the rotation transport in the arrow direction that is illustrated, the preform P is subjected to the stretch blow molding in the bottle B illustrated in
(17) As illustrated in
(18) An antimicrobial agent that generates active oxygen or hydroxyl radical such as hydrogen peroxide and peracetic acid is selected as the antimicrobial agent.
(19) The bottle B stretch blow molded by the rotary blow molding machine 6 is delivered and transported with the vicinity of the flange portion Pn gripped by container grippers (not illustrated) of a transfer star wheel 25, a transfer star wheel 26, and a star wheel 27 arranged at a predetermined equal pitch. During the rotation transport by the star wheel 27, the bottle B is irradiated with the electromagnetic waves such as the microwaves and the UV waves or the ultrasonic waves by the irradiation device 7.
(20) As illustrated in
(21) The bottle B that is irradiated with the electromagnetic waves such as the microwaves and the UV waves or the ultrasonic waves 7w by the irradiation device 7 is carried out to the aseptic filling machine 8 through a transfer star wheel 28 in a sterile room 18 which is illustrated by a two-dot chain line in
(22) Hereinafter, an effect of the blow molding device 1 according to the first embodiment of the present invention will be described.
(23) The preform P illustrated in
(24) In the subsequent process, the preform P is subjected to the stretch blow molding in the bottle B illustrated in
(25) With some of the antimicrobial agent still remaining, the bottle B is irradiated with the electromagnetic waves such as the microwaves and the UV waves or the ultrasonic waves 7w by the irradiation device 7, and then the drying and sterilization of the antimicrobial agent are further promoted through the degradation of the active oxygen or the hydroxyl radical of the remaining antimicrobial agent. Accordingly, the inner and outer surfaces of the bottle B are completely sterilized with no antimicrobial agent remaining, and thus can be subjected to aseptic filling by the aseptic filling machine 8 in the sterile room 18.
(26) (Second Embodiment)
(27) Hereinafter, a second embodiment of the present invention will be described with reference to
(28)
(29) The same reference numerals will be used to refer to elements common to
(30) In a blow molding device 2 according to the second embodiment of the present invention, the vicinity of the flange portion Pn of the preform P is gripped by a container gripper (not illustrated) arranged at an equal pitch in a transporting apparatus 20, and the preform P is transported in the arrow F direction from the upstream side by the transporting apparatus 20. Then, the inner and outer surfaces of the preform P are rinsed by the rinse gas in the preform rinser 12, and then the preform P is incorporated into a clean room 17 that has a clean atmosphere. After being incorporated into the clean room 17, the preform P is delivered to the container gripper (not illustrated) that is arranged at an equal pitch in the rotary antimicrobial agent spraying device 5 at a delivery position 31p of a wheel 31 and is sprayed with the antimicrobial agent by the antimicrobial agent-spraying means 50 while being transported. Then, the preform P is delivered to a container gripper (not illustrated) arranged at a predetermined equal pitch in the transporting apparatus 11 transported in an arrow direction in the drawing suspended between the wheel 22a and the wheel 22b. While being transported by the transporting apparatus 11, the preform P is heated to the temperature appropriate for molding by the heating means 4. Then, the preform P is delivered to the transfer star wheel 24 that has a container gripper (not illustrated) arranged at a predetermined equal pitch.
(31) Hereinafter, an effect of the blow molding device 2 according to the second embodiment of the present invention will be described.
(32) The preform P illustrated in
(33) In the subsequent process, the preform P is subjected to the stretch blow molding in the bottle B illustrated in
(34) With some of the antimicrobial agent still remaining, the bottle B is irradiated with the electromagnetic waves such as the microwaves and the UV waves or the ultrasonic waves 7w by the irradiation device 7, and then the drying and sterilization are further promoted through the degradation of the active oxygen or the hydroxyl radical of the remaining antimicrobial agent. Accordingly, the inner and outer surfaces of the bottle B are completely sterilized with no antimicrobial agent remaining, and thus can be subjected to the aseptic filling by the aseptic filling machine 8 in the sterile room 18.
(35) In the description of the blow molding device 2 according to the second embodiment of the present invention, a case has been explained where the preform P is sterilized with the antimicrobial agent in the hot state by being heated by the heating means 4 after being sprayed with the antimicrobial agent by the antimicrobial agent-spraying means 50. However, the preform P may also be sterilized with the antimicrobial agent in the hot state by being sprayed with the antimicrobial agent by the antimicrobial agent-spraying means 50 while being heated by the heating means 4. The sterilization of the preform P by the antimicrobial agent in the hot state is similar in content, and thus redundant detailed description will be omitted.
(36) In the description of the blow molding device 1 or the blow molding device 2 according to the first embodiment or the second embodiment of the present invention, a case has been explained where the irradiation device 7 is disposed for a process subsequent to the rotary blow molding machine 6 provided with the hot forming means. However, the irradiation device 7 may be disposed amid the rotary blow molding machine 6 and the bottle B may be subjected to the stretch blow molding by the rotary blow molding machine 6 at the same time as the bottle B is irradiated with the electromagnetic waves such as the microwaves and the UV waves or the ultrasonic waves 7w by the irradiation device 7.
INDUSTRIAL APPLICABILITY
(37) According to this blow molding device, the molded bottle is allowed to be in a completely sterile state with no antimicrobial agent remaining, and an aseptic filling response preferable in terms of food hygiene can be made available.
REFERENCE SIGNS LIST
(38) 1, 2 Blow molding device
(39) 4 Heating means
(40) 41 Heating lamp
(41) 5 Rotary antimicrobial agent spraying device
(42) 50 Antimicrobial agent-spraying means
(43) 6 Rotary blow molding machine (provided with hot forming means)
(44) 7 Irradiation device (emitting electromagnetic waves such as microwaves and UV waves or ultrasonic waves)
(45) B Bottle
(46) P Preform