ULTRASONIC SEALING METHOD AND DEVICE FOR BAGS
20170158364 ยท 2017-06-08
Assignee
Inventors
Cpc classification
B29C66/1122
PERFORMING OPERATIONS; TRANSPORTING
B29C66/81433
PERFORMING OPERATIONS; TRANSPORTING
B29C65/72
PERFORMING OPERATIONS; TRANSPORTING
B29C65/7841
PERFORMING OPERATIONS; TRANSPORTING
B65B31/00
PERFORMING OPERATIONS; TRANSPORTING
B29C66/8242
PERFORMING OPERATIONS; TRANSPORTING
B65B61/20
PERFORMING OPERATIONS; TRANSPORTING
B29C66/439
PERFORMING OPERATIONS; TRANSPORTING
B29C66/81431
PERFORMING OPERATIONS; TRANSPORTING
B29C65/7882
PERFORMING OPERATIONS; TRANSPORTING
B29C66/0342
PERFORMING OPERATIONS; TRANSPORTING
B29C66/3494
PERFORMING OPERATIONS; TRANSPORTING
B29C66/83221
PERFORMING OPERATIONS; TRANSPORTING
B29C66/006
PERFORMING OPERATIONS; TRANSPORTING
B65B31/024
PERFORMING OPERATIONS; TRANSPORTING
B29C66/3452
PERFORMING OPERATIONS; TRANSPORTING
B29C66/43121
PERFORMING OPERATIONS; TRANSPORTING
B29C66/21
PERFORMING OPERATIONS; TRANSPORTING
B29C66/53263
PERFORMING OPERATIONS; TRANSPORTING
International classification
B65B51/22
PERFORMING OPERATIONS; TRANSPORTING
B65B61/20
PERFORMING OPERATIONS; TRANSPORTING
Abstract
An ultrasonic sealing method and device for a bag, in which pressurized gas spray outlets (47, 52) are provided at distal ends of a horn (31) and an anvil (32) so as to be used as gas blowing nozzles, the distal ends of the horn and the anvil are placed against a cutout (19) formed in a gas compartment (16) of the bag, a gas is blown into the gas compartment to inflate it, and then the horn and the anvil clamp films surrounding the cutout while the gas blowing is in progress, so that ultrasonic sealing is carried out by the horn to the films to trap the gas inside the gas compartment. A contact member (71) is provided directly under the horn. The contact member is pressed against inflated film (18) of the gas compartment, and in this state ultrasonic vibration energy is supplied to the horn.
Claims
1. An ultrasonic sealing method that applies a pressure from both sides of a bag with a horn and an anvil of an ultrasonic sealing device, and an ultrasonic vibration energy transmitted from the horn seals films on both sides of the bag together or seals films on both sides of the bag and a part sandwiched therebetween, wherein, when a gap is formed between the films on both sides of the bag in a region adjacent to a site sandwiched between the horn and the anvil, said method moves a contact member from a horn side toward said region and presses said contact member against film on the horn side, and then in this state supplies ultrasonic vibration energy to the horn.
2. The ultrasonic sealing method according to claim 1, wherein the bag is equipped a gas compartment that extends in a longitudinal direction thereof and is integrally formed at a sealed part of a side edge of the bag, with an air intake means that allows an inside of the gas compartment to communicate with an outside of the bag being formed in a film of a gas introduction portion of the gas compartment, the gap is a gap that is formed in the gas compartment when the gas compartment is inflated, at least one of said horn and said anvil is provided therein with a gas channel that is connected at one end thereof to a pressurized gas supply source and opens at another end thereof to a distal end thereof, said another end of said channel being a spray outlet for a pressurized gas, the pressurized gas is blown into the gas compartment through the gas introduction portion by at least one of said horn and said anvil to inflate the gas compartment, and the film around the air intake means is then ultrasonically sealed.
3. The ultrasonic sealing method according to claim 2, wherein, before the gas compartment is inflated, said contact member is moved to a specific location, and the film on the horn side is pressed against the contact member when the gas compartment is inflated.
4. The ultrasonic sealing method according to claim 1, wherein said part is a spout, the gap is one that is formed under a mouth of the bag when a portion to be sealed of said spout is inserted into the mouth of the bag, and after the portion to be sealed of said spout has been inserted into the mouth of the bag, the mouth of the bag is clamped from both sides by the horn and the anvil, and then the films on both sides of the bag as well as the films on both sides of the bag and the portion to be sealed of said spout sandwiched between the films on both sides are ultrasonically sealed.
5. An ultrasonic sealing device, provided with a horn and an anvil that are disposed opposite each other and moved forward and backward, and clamp a bag from both sides thereof and an ultrasonic vibration energy transmitted from the horn seals films on both sides of the bag together or seals films on both sides of the bag and a part sandwiched therebetween, wherein said device comprises a contact member that is disposed near said horn and is moved forward and backward between a pressing position and a retracted position, and when an ultrasonic vibration energy is supplied to said horn, said contact member is positioned at the pressing position, and said contact member at the pressing position is pressed against a region of the film on a horn side that is adjacent to a site that is sandwiched between said horn and said anvil.
6. The ultrasonic sealing device according to claim 5, wherein said contact member is moved forward and backward with said horn.
7. The ultrasonic sealing device according to claim 5, wherein the bag is equipped with a gas compartment that extends in a longitudinal direction thereof and is integrally formed at a sealed part of a side edge of the bag, with an air intake means that allows an inside of the gas compartment to communicate with an outside of the bag being formed in the film of a gas introduction portion of the gas compartment, at least one of said horn and said anvil is provided therein with a gas channel that is connected at one end thereof to a pressurized gas supply source and opens at another end thereof to a distal end thereof, said another end of said channel being a spray outlet for a pressurized gas, the pressurized gas is blown into the gas compartment through the gas introduction portion by at least one of said horn and said anvil to inflate the gas compartment, the film around the air intake means is then ultrasonically sealed, and said contact member is pressed against the film on the horn side of the gas compartment at the pressing position.
8. The ultrasonic sealing device according to claim 6, wherein the bag is equipped with a gas compartment that extends in a longitudinal direction thereof and is integrally formed at a sealed part of a side edge of the bag, with an air intake means that allows an inside of the gas compartment to communicate with an outside of the bag being formed in the film of a gas introduction portion of the gas compartment, at least one of said horn and said anvil is provided therein with a gas channel that is connected at one end thereof to a pressurized gas supply source and opens at another end thereof to a distal end thereof, said another end of said channel being a spray outlet for a pressurized gas, the pressurized gas is blown into the gas compartment through the gas introduction portion by at least one of said horn and said anvil to inflate the gas compartment, the film around the air intake means is then ultrasonically sealed, and said contact member is pressed against the film on the horn side of the gas compartment at the pressing position.
9. The ultrasonic sealing device according to claim 5, wherein the part is a spout, said horn and said anvil clamp a mouth of the bag from both sides of the bag, so that the films on both sides of the bag as well as the films on both sides of the bag and a portion to be sealed of said spout sandwiched between the films are ultrasonically sealed, and said contact member at the pressing position is pressed against the film on the horn side of a lower part of the bag mouth.
10. The ultrasonic sealing device according to claim 6, wherein the part is a spout, said horn and said anvil clamp a mouth of the bag from both sides of the bag, so that the films on both sides of the bag as well as the films on both sides of the bag and a portion to be sealed of said spout sandwiched between the films are ultrasonically sealed, and said contact member at the pressing position is pressed against the film on the horn side of a lower part of the bag mouth.
11. An apparatus for sealing a gas in bags, wherein each of the bags is equipped with a gas compartment, which extends in a longitudinal direction of the bag and is integrally formed at a sealed part of a side edge of the bag, and has, in a film of a gas introduction portion of the gas compartment, an air intake means that allows an outside of the bag to communicate with an inside of the gas compartment, the bags are intermittently conveyed along a specific conveyance path, and a spray outlet of a nozzle connected to a pressurized gas supply source is placed against the gas introduction portion in a course of said conveyance, so that a gas is blown into the gas compartment from the air intake means to inflate the gas compartment, and then an area near the air intake means is sealed to trap the gas inside the gas compartment; and wherein said apparatus comprises a bag conveyance device, which intermittently conveys bags equipped with gas compartment along the conveyance path, and an ultrasonic sealing device, which is disposed near a specific stop position along the conveyance path, said ultrasonic sealing device is provided with a horn and an anvil which are disposed opposite each other and flanking the conveyance path in such a manner that said horn and anvil are moved forward or backward toward or away from a bag that is stopped at the specific stop position, at least one of said horn and said anvil is formed with a gas channel that is connected at one end thereof to a pressurized gas supply source and opens at another end thereof to a distal end thereof, with at least one of said horn and said anvil in which said channel is formed serving as said nozzle, and the other end of said channel being said spray outlet, said ultrasonic sealing device is provided with a contact member which is disposed at a position directly under said horn and is moved forward or backward toward or away from the bag, at least one of said horn and said anvil blows a gas into the gas compartment of the bag, said horn and said anvil ultrasonically seal films around said air intake means, and said contact member is, when moved forward, pressed against a film on a horn side of inflated gas compartment in a region adjacent to a site sandwiched by said horn and said anvil.
12. An apparatus for manufacturing a bag equipped with a spout, wherein a spout is held in a vertical orientation and intermittently conveyed along a specific conveyance path, a bag is supplied in a course of the conveyance so that a portion to be sealed of the spout is inserted into a mouth of the bag, and films on both sides of the bag as well as the portion to be sealed of the spout and films on both sides are sealed; and wherein said apparatus comprises a spout conveyance device, which intermittently conveys the spout along the conveyance path, and an ultrasonic sealing device, which is disposed near a specific stop position along the conveyance path, said ultrasonic sealing device is provided with a horn and an anvil which are disposed opposite each other and flanking the conveyance path in such a manner that said horn and anvil are moved forward or backward toward or away from a bag that is stopped at the specific stop position, said ultrasonic sealing device is further provided with a contact member at a position directly under said horn so that said contact member is disposed at a position directly under said horn and is moved forward or backward toward or away from the bag, and said ultrasonic sealing device clamps, with said horn and said anvil, the mouth of the bag from both sides and ultrasonically seals films on both sides of the bag as well as the films on both sides of the bag and the portion to be sealed of said spout sandwiched between the films on both sides of the bag, and said contact member is, when moved forward, pressed against a film on a horn side in a region adjacent to a site sandwiched by said horn and said anvil.
Description
BRIEF DESCRIPTION OF SEVERAL VIEWS OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE INVENTION
[0100] The ultrasonic sealing method and device according to the present invention will be described below more specifically mainly with reference to
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[0102] The contact member 71 is provided on an attachment member 41 on the horn 31 side via an attachment plate 72, and it is movable forward and backward with the horn 31, in the same direction as the horn 31, at a position directly under the horn 31. The position where the attachment member 41 is provided is selected so that that the amplitude of ultrasonic vibration is zero (nodal point), and the contact member 71 itself does not vibrate. The contact member 71 is composed of a sheet of metal or plastic, and a rubber piece is attached as necessary to the distal end that comes into contact with the bag 11 in order to prevent damage to the bag 11.
[0103] The gas trapping method (including an ultrasonic sealing method) when the ultrasonic sealing device shown in
[0104] As shown in (a) of
[0105] When the horn 31 and the anvil 32 are stopped at the above-described blow-in positions, the spraying of pressurized gas from the spray outlets 47 and 52 is started either simultaneously or at a suitable point before or after the stop. When the gas is blown from the spray outlets 47 and 52 through the cutout 19 into the gas introduction portion 16a of the gas compartment 16 of the bag, the films 17 and 18 on both sides of the gas introduction portion 16a inflate and are pushed snugly against the flat distal end faces 54 and 55 of the horn 31 and the anvil 32, as shown in (b) of
[0106] The pressurized gas that has entered the gas introduction portion 16a spreads apart, by an amount equal to the depth of the groove 24, the films on the front and back sides of the narrow portion 16b clamped by the gripper 21, and then the gas flows through the gap formed between the films into the main portion 16c and inflates the main portion 16c of the bag. In this example, the distal end of the contact member 71 is slightly touching the film 18 of the inflated narrow portion 16b (the film on the horn 31 side). The location where the contact member 71 is in contact with the film is the region adjacent to the site clamped by the horn 31 and the anvil 32 (a location directly under the clamped site), and it is the region A shown in
[0107] The air cylinder 37 is again actuated at a specific timing after the horn 31 and the anvil 32 are stopped at their blow-in positions, so that the horn 31 and the anvil 32 are moved forward to immediately reach their forward positions, and as shown in (c) of
[0108] Ultrasonic vibration is next generated from the ultrasonic vibration generator 36, the vibration energy is supplied to the horn 31, the films surrounding the cutout 19 are ultrasonically sealed, and the gas is trapped inside the gas compartment 16. During this ultrasonic sealing, the contact member 71 is kept pressing against the film 18 of the inflated narrow portion 16b, thus preventing damage to or hole formation in the film 18 of the narrow portion 16b.
[0109] When the ultrasonic sealing is finished (or when the supply of ultrasonic vibration energy is finished), there is no more frictional heat generated by ultrasonic vibration, and thus the ultrasonically sealed part 56 (see
[0110] In the example of
[0111] More specifically, in
[0112] Then, when the horn 31 and the anvil 32 are moved forward and reach the forward position, as shown in (c) of
[0113] In the example shown in
[0114] Next, an ultrasonic sealing method in which the ultrasonic sealing device according to the present invention is applied to the main sealing step in the rotary spout insertion sealing device (spouted bag manufacturing apparatus) disclosed in Patent Literature 4, which involves a spout, will be described below with reference to
[0115] The above-described spouted bag manufacturing apparatus is provided with a spout conveyance device that includes a plurality of sets of spout holding members 61 that are moved intermittently along an annular movement path while gripping the upper end of a spout 62. As described previously, while these spout holding members 61 are making one rotation around the movement path, the spouts 62 are successively supplied to the spout holding members 61, and these spouts 62 are held vertically by the spout holding members 61 as they are conveyed along the conveyance path. While the spouts 62 are being conveyed, a step of inserting and temporary sealing of the bag 63, a step of sealing one or more times, and a step of cooling the sealed part are carried out successively.
[0116] The above-described spouted bag manufacturing apparatus includes an ultrasonic sealing device near the stop position where the main sealing step is performed. This ultrasonic sealing device comprises the horn 64 and the anvil 65, as well as a contact member 73 provided directly below the horn 64. The contact member 73 is fixed to an attachment member of the horn 64 (see the attachment member 41 in
[0117] When the spout holding member 61 is stopped at the above-described stop position, the horn 64 and the anvil 65 are moved forward, films 66 and 67 on both sides of the bag 63 are clamped by the horn 64 and the anvil 65 at the location of the lower potion (to-be-sealed portion) 62a of the spout, and at the same time the contact member 73 is moved forward until its distal end touches and is pressed against the film 67 on the horn 64 side, at a location directly below the site that is clamped between the horn 64 and the anvil 65 (the clamped site). The location that the contact member 73 is in contact with film is the region adjacent to the above-described clamped site (region B shown in
[0118] Ultrasonic vibration is next generated from an ultrasonic vibration generator (see the ultrasonic vibration generator 36 of