The present invention relates to a multifold packaging bag formed by stacking multiple films and, in particular, to a packaging bag colored with a colorant.
Packaging bags formed by forming, into a bag shape, a multifold film formed by stacking multiple films have been proposed as bags for packaging fluid, semifluid, powder, or the like. In such a packaging bag, the films forming the multifold film are unbonded over a wide range and can sideslip with respect to each other in the unbonded range. Thus, even if a pinhole occurs in one film, the other films can remain intact. Even if one film receives a bending stress, the other film can slide and escape. Therefore, such a packaging bag has advantageous effects, including improvements in mechanical properties such as pinhole resistance and impact resistance.
For example, Patent Literature 1 discloses a packaging bag and a manufacturing method thereof. This packaging bag is formed by bending a multifold film into a tubular shape and then sealing the edges and has containing space for containing an object to be packaged.
Patent Literature 1: Japanese Unexamined Patent Application Publication No. 2004-43025
Such packaging bags may be colored using a colorant such as a pigment or dye for the enhancement of design properties, the discovery of a foreign object, or other purposes. However, the colorant may move to and stain the packaged object.
As described above, the films forming the multifold film are unbonded over a wide range and thus the mechanical properties are improved. However, when the films forming the multifold film have high blocking properties, a pinhole penetrating through multiple films may occur, or the films may fail to slide and escape. This may result in problems such as the degradation of the mechanical properties.
Accordingly, an object of the present invention is to provide a packaging bag that can prevent a colorant contained in a multifold film from staining a packaged object and in which the films forming the multifold film have low blocking properties and thus high mechanical properties can be maintained.
In order to achieve the above object, in a packaging bag formed by forming a multifold film into a bag shape, the multifold film being formed by stacking a plurality of multilayer films, a colorant is contained in a layer of the multilayer films, the layer containing the colorant being not in contact with an object to be packaged.
In the packaging bag of the present invention, the colorant is contained in at least one layer except for the layer in contact with the containing space. Accordingly, the layer containing the colorant does not contact the packaged object, thereby preventing the colorant from moving to the packaged object.
In the packaging bag of the present invention, the colorant is preferably contained in at least a layer of one of adjacent two multilayer films forming the multifold film, the layer being in contact with the other multilayer film.
If the colorant is contained in at least a layer of one of adjacent two multilayer films of the multilayer films forming the multifold multilayer film in the packaging bag, the layer being in contact with the other multilayer film, the blocking properties of the one multilayer film and the other multilayer film can be reduced.
According to the present invention, the layer containing the colorant does not contact the packaged object, thereby preventing the colorant from moving to the packaged object. Thus, it is possible to provide a packaging bag that can prevent a packaged object from being stained by a colorant. Further, if the colorant is contained in a layer of one of adjacent two multilayer films, the layer being in contact with the other multilayer film, it is possible to provide a packaging bag in which the multilayer films have low blocking properties and thus high mechanical properties such as high impact resistance and high pinhole resistance can be maintained.
Now, an embodiment of a packaging bag and a manufacturing method thereof according to the present invention will be described in detail with reference to the drawings.
In the present embodiment, a packaging bag 1 sealed using envelope seaming will be described as an example. First, the configuration of the packaging bag 1 will be outlined.
Subsequently, as shown in
In the packaging bag 1 thus configured, a colorant is contained in only at least one layer except for the layer in contact with the packaged object (containing space), that is, except for the outermost layer of the tubular multilayer film. Hereafter, the layer configuration of the packaging bag 1 will be described in detail.
The front side consists of the inner multilayer film 2 (21) and outer multilayer film 3 (31), and the back side consists of the inner multilayer film 2 (22) and outer multilayer film 3 (32). In the regions other than the longitudinal seal 9 and transverse seals 10 and 11, the inner multilayer film 2 and outer multilayer film 3 are not bonded together and can move (sideslip or contact/separate) with respect to each other. Note that in
In the inner multilayer film 2, the third layer 2a, the second layer 2b, and the first layer 2c are disposed in this order from the side thereof adjacent to the containing space S2. That is, the colorant is contained in the layer (first layer 2c) which is not the third layer 2a, which is in contact with the containing space S2. Since the colorant contained in the first layer 2c does not move to the packaged object contained in the containing space S2, it is possible to prevent the colorant from staining the packaged object.
In the outer multilayer film 3, the first layer 3c, the second layer 3b, and the third layer 3a are disposed in this order from the side thereof adjacent to the inner multilayer film 2. That is, the first layer 3c adjacent to the inner multilayer film 2, of the outer multilayer film 3 and the first layer 2c adjacent to the outer multilayer film 3, of the inner multilayer film 2 contain the colorant. For the above reasons, the embodiment of the present invention can reduce the blocking properties of the outer multilayer film 3 and inner multilayer film 2. Thus, advantageous effects can be obtained, including the maintenance of the high mechanical strengths, such as the high impact resistance and high pinhole resistance, of the packaging bag 1. While known materials such as an organic synthetic dye (tar dye), natural dye, and inorganic pigment may be used as the colorant as appropriate, an inorganic pigment is preferred in terms of the blocking properties.
As shown in
Next, a method for manufacturing the packaging bag 1 will be described using a case in which it is manufactured using a pillow packaging machine 100 as shown in
The first step in which a multifold multilayer film is formed into a tubular shape: a multifold multilayer film 4 obtained from a roll film 5 travels around feed rolls 120 and 121 and is led to a former 112. A sensor 119 is disposed on the path from the roll film 5 to the former 112. The sensor 119 detects register marks printed on the multifold multilayer films 4 at predetermined intervals in the length direction so that the multifold multilayer films 4 each having a predetermined length can be fed onto the path in the packaging machine 100 at predetermined time intervals. During the passage through the former 112, each multifold multilayer film 4 is bent into a tubular body in which the edges 7 and 8 of the bent multifold multilayer film overlap each other. More specifically, the multifold multilayer film 4 in which the first layers 2c and 3c, second layers 2b and 3b, and third layers 2a and 3a are stacked in this order from the inside, as shown in
The second step in which a longitudinal seal is formed: at the timing when a multifold multilayer film 4 moves at a predetermined time interval, a longitudinal sealer 113 heat-seals the overlapping edges 7 and 8 of the multifold multilayer film 4 by contacting the contact surfaces thereof with each other or separate them from each other, thereby forming a longitudinal seal 9.
The third step in which a lower transverse seal is formed: after the longitudinal sealer 113 completes the heat-sealing, a squeezing roll 115 is closed to squeeze the tubular body formed from the multifold multilayer film 4. Then, transversely sealing machines 116 and 117 are closed to form a lower transverse seal 10 in a predetermined position of the flattened tubular body.
The fourth step in which an object to be packaged is filled: a predetermined amount of an object W to be packaged is introduced into a hopper 111 and thus filled into the tubular body.
The fifth step in which an upper transverse seal is formed: a predetermined length of a yet-to-be-separated packaging bag 1a, the tubular body and the multifold multilayer film 4 following the tubular body are fed by opening the squeezing roll 115 and transversely sealing machines 116 and 117 and then rotating the feed roll 114. Then, the transversely sealing machines 116 and 117 are closed to heat-seal a predetermined position, thereby forming an upper transverse seal 11, as well as forming a lower transverse seal 10 connected to the upper transverse seal 11, of a subsequent packaging bag located upstream of the path.
The sixth step in which the boundary between connected bags are cut: a press/cutter 118 is closed to press the lower transverse seal 10 of the yet-to-be-separated packaging bag 1a and the upper transverse seal 11 connected to the transverse seal 10, then cuts the boundary between both the upper transverse seal 11 and the transverse seal 10, and drops a packaging bag 1 onto a conveyor 130.
In this way, the packaging bag 1 shown in
While the embodiment of the present invention has been described, the invention is not limited thereto, as a matter of course. Various changes or modifications can be made thereto without departing from the spirit and scope of the invention.
For example, the multifold multilayer film does not have to be tubular and may be formed by stacking multiple separate multilayer films.
The multifold multilayer film may be a twofold multilayer film, in which two multilayer films are stacked, or may be any other multifold multilayer film, in which three or more multilayer films are stacked.
The colorant may be contained in only one multilayer film of the multifold multilayer film, or may be contained in the multiple multilayer films thereof. The colorant may also be contained in only one layer of each multilayer film, or may be contained in two or more of the multiple films.
Each multilayer film may consist of two layers or three or more layers. The colorant may be contained in an intermediate layer of a multilayer film. However, in terms of the blocking properties, the colorant is preferably contained in a layer of one of adjacent two multilayer films, the layer being in contact with the other multilayer film.
The stacked part of the packaging bag may be formed using butt seaming. The number of seals or the positions of the seals is not particularly limited. For example, three-side sealing or four-side sealing may be used.
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2013-039976 | Feb 2013 | JP | national |
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PCT/JP2014/053839 | 2/19/2014 | WO | 00 |
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WO2014/132847 | 9/4/2014 | WO | A |
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