Sheet package and package label
Patent Information
- Application Number
- JP2023159444
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2023-09-25
- Publication Date
- 2026-09-04
AI Technical Summary
In sheet packaging for wet tissues, the adhesive layers' strength changes in low temperature environments, causing the label to fail to peel partially, which blocks the outlet formation.
The sheet packaging incorporates a label with a specific layered structure, including a first resin layer, a silicon layer, a first adhesive layer, a second resin layer, and a cutting portion. The basis weight of silicon varies across different regions of the label, allowing for controlled peeling and outlet formation even in low temperature conditions.
The controlled peeling mechanism ensures that the label can be partially separated to form an outlet, maintaining the packaging's functionality across varying temperatures without unintended separation of adhesive layers.
Smart Images

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Abstract
Description
[Technical field]
[0001] The present invention relates to a sheet package in which a collection of sheets such as wet tissues is packaged, and a label for the package. [Background technology]
[0002] Patent Document 1 discloses a sheet packaging body that packages an assembly of sheets such as wet tissues. The sheet packaging body includes an assembly of a plurality of sheets, a film bag that packages the assembly and has a bag opening that serves as an outlet, and a label that covers the bag opening and is peelably attached to the surface of the film bag. The label is configured such that the bag opening can be opened by partially peeling the label off of the film bag, and a first adhesive layer that is part of the label can be exposed on the surface of the film bag around the bag opening. [Prior art documents] [Patent documents]
[0003] [Patent Document 1] Patent No. 5160195 Summary of the Invention [Problem to be solved by the invention]
[0004] The sheet packaging body has a first adhesive layer that is exposed around the bag opening when the label is partially peeled off, and a second adhesive layer that adheres the non-peeling portion of the label to the film bag. During normal use, the first adhesive layer is peeled off and exposed, and even when peeled off, the second adhesive layer continues to adhere to the film bag, so that a part of the label separates. However, in the usage environment of the sheet packaging body, for example, in a low temperature environment (for example, below freezing point), the adhesive strength of the first adhesive layer and the second adhesive layer changes, and it is sometimes impossible to realize a state in which the first adhesive layer peels off and the second adhesive layer does not peel off. As a result, the label is not partially peeled off in the intended form, and an outlet cannot be formed.
[0005] The present invention has been made in consideration of the above-mentioned problems, and aims to prevent the problem of an outlet not being able to be formed in a sheet packaging body in which the outlet is blocked before use and opened when the label is partially peeled off during use. [Means for solving the problem]
[0006] A sheet packaging body according to one embodiment includes an assembly of a plurality of sheets, a bag body that packages the assembly and has a bag opening that constitutes an outlet for the sheets, and a label that covers the bag opening and is peelably attached to the surface of the bag body. The label includes a first resin layer, a silicone layer that contacts the bag body side surface of the first resin layer and has silicone, a first adhesive layer that contacts the bag body side surface of the silicone layer and has a first adhesive, a second resin layer that contacts the bag body side surface of the first adhesive layer, and a cut portion that forms a label opening that constitutes an outlet for the sheets. The cut portion is not formed in the first resin layer, but is formed in the second resin layer. When the first resin layer is pulled from the upstream side to the downstream side in the opening direction, a part of the second resin layer is separated via the cut portion, and the separated part of the second resin layer is peeled off together with the first resin layer to form the label opening. The label has a first region extending downstream from an upstream edge of the cut portion in the tearing direction, and a second region extending downstream from a downstream edge of the cut portion in the tearing direction. The silicone layer and the first adhesive layer are provided in the first region and the second region. The basis weight of the silicone in the first region is lower than the basis weight of the silicone in the second region.
[0007] A label for packaging according to one embodiment is peelably attached to the surface of the bag that packages a collection of a plurality of sheets, and covers the bag opening of the bag in an openable and closable manner. The label has a first resin layer, a silicone layer that abuts against the bag side of the first resin layer and has silicone, a first adhesive layer that abuts against the bag side of the silicone layer and has a first adhesive, a second resin layer that abuts against the bag side of the first adhesive layer, and a cut portion that forms a label opening that constitutes an outlet for the sheet. The cut portion is not formed in the first resin layer, but is formed in the second resin layer. When the first resin layer is pulled from the upstream side to the downstream side in the unsealing direction, a part of the second resin layer is separated through the cut portion, and the separated part of the second resin layer is peeled off together with the first resin layer to form the label opening. The label has a first region that extends downstream from an upstream edge of the cut portion in the unsealing direction, and a second region that extends downstream from a downstream edge of the cut portion in the unsealing direction. The silicon layer and the first adhesive layer are provided in the first region and the second region, and the basis weight of the silicon in the first region is lower than the basis weight of the silicon in the second region. [Brief description of the drawings]
[0008] [Figure 1] FIG. 1 is a perspective view of a sheet structure including a sheet wrapping body and an exterior body. [Diagram 2] Fig. 2 is a plan view of the sheet packaging body, Fig. 2(A) shows a state in which the label is not separated and the outlet is not yet formed, and Fig. 2(B) shows a state in which the label is separated and the outlet is formed. [Diagram 3] FIG. 3 is a schematic cross-sectional view taken along the line AA shown in FIG. [Figure 4] FIG. 4 is a schematic cross-sectional view taken along the line BB shown in FIG. [Diagram 5] FIG. 5 is a partial enlarged view of part C in FIG. 2(B). [Figure 6] FIG. 6 is an enlarged schematic view of a portion D shown in FIG.
[0009] (1) Overview of the embodiment At least the following points will become apparent from the description of this specification and the accompanying drawings. The invention according to the first aspect is a sheet packaging body. The sheet packaging body includes an assembly of a plurality of sheets, a bag body that packages the assembly and has a bag opening that constitutes an outlet for the sheets, and a label that covers the bag opening and is peelably attached to the surface of the bag body. The label includes a first resin layer, a silicone layer that abuts against the bag body side surface of the first resin layer and has silicone, a first adhesive layer that abuts against the bag body side surface of the silicone layer and has a first adhesive, a second resin layer that abuts against the bag body side surface of the first adhesive layer, and a cut portion that forms a label opening that constitutes an outlet for the sheets. The cut portion is not formed in the first resin layer, but is formed in the second resin layer. The label is configured such that, when the first resin layer is pulled from the upstream side to the downstream side in the opening direction, a part of the second resin layer is separated through the cut portion, and the separated part of the second resin layer is peeled off together with the first resin layer to form the label opening. The label has a first region extending downstream from an upstream edge of the cut portion in the unsealing direction, and a second region extending downstream from a downstream edge of the cut portion in the unsealing direction. The silicone layer and the first adhesive layer are provided in the first region and the second region. The basis weight of the silicone in the first region is lower than the basis weight of the silicone in the second region. According to this aspect, the basis weight of the silicone in the first region is low, and it is difficult to peel off from the first adhesive. Therefore, peeling of the first adhesive layer and the silicone layer in the first region is suppressed when the label is separated, and the second resin layer separated through the cut portion can be peeled off together with the first resin layer to form a label opening and form a take-out port. In addition, since the basis weight of the silicone layer is high in the second region, the first adhesive layer and the silicone layer can be separated. Therefore, when the label is separated, the silicone layer and the first adhesive layer can be peeled off in the second region, and the silicone layer can be peeled off together with the first resin layer to expose the first adhesive layer. By exposing the first adhesive layer around the label opening after forming the label opening, the sheet packaging body after the label opening is formed can be adhered to the outer casing via the first adhesive layer, and the sheet can be held hygienically.
[0010] According to a preferred embodiment, the invention according to the second embodiment may have the following features in the invention according to the first embodiment. The label has a third region extending downstream from the upstream edge of the label in the unsealing direction. The first adhesive layer is not provided in the third region, and the silicone layer is provided. In the third region, the second resin layer and the silicone layer are releasably overlapped. In the third region extending downstream from the upstream edge of the label in the unsealing direction, the first adhesive layer is not provided, and the second resin layer and the silicone layer are releasably overlapped, so that the label can be separated by grasping the part on the first resin layer side from the silicone layer. In addition, when the label is peeled downstream in the unsealing direction via the silicone layer, it reaches the first region where the silicone layer and the first adhesive layer abut. At this time, since the basis weight of the silicone in the first region is low, the first region does not continue to peel through the silicone layer, but maintains the adhesion state to the first adhesive layer side via the silicone layer, and the second resin layer separated via the cut portion is separated together with the first resin layer, so that the label opening can be formed in an intended manner.
[0011] According to a preferred embodiment, the invention according to embodiment 3 may have the following features in the invention according to embodiment 1 or embodiment 2. The label has a fourth region extending from the upstream edge of the cut portion in the unsealing direction toward the upstream side to the third region. The silicone layer is provided in the four regions. The basis weight of the silicone in the fourth region is higher than the basis weight of the silicone in the first region. According to this embodiment, since the basis weight of the silicone in the fourth region is higher than the basis weight of the silicone in the first region, the first resin layer and the first adhesive layer can be peeled off via the silicone layer. Furthermore, since the first adhesive layer is not arranged in the third region located upstream of the fourth region, the first resin layer can be peeled off from the second resin layer in the region from the upstream edge of the label in the unsealing direction to the upstream edge of the cut portion (the region including the third and fourth regions). In addition, since the basis weight of the silicon in the first region is low, the first resin layer and the second resin layer can be maintained in a bonded state via the first adhesive layer in the region (first region) from the upstream edge of the cut portion toward the downstream side without peeling the first resin layer and the first adhesive layer via the silicon layer. Therefore, the second resin layer separated via the cut portion can be separated together with the first resin layer, and the label opening can be formed in the intended manner.
[0012] According to a preferred embodiment, the invention according to embodiment 4 may have the following features in the invention according to any one of embodiments 1 to 3. The first adhesive layer is provided in the four regions. According to this embodiment, when the label is separated, the silicone layer and the first adhesive layer are peeled off in the fourth region, and the first adhesive layer can be exposed. The first adhesive layer is disposed around the label opening, and the sheet packaging body can be adhered to an exterior body or the like via the first adhesive layer. Therefore, it is possible to prevent liquid from evaporating too much through the label opening, and to reduce the space around the label opening to hold the sheet hygienically.
[0013] According to a preferred embodiment, the invention according to embodiment 5 may have the following features in the invention according to any one of embodiments 1 to 4. The silicon layer is arranged in a plurality of rectangular regions in a plan view in the first region. According to this embodiment, the silicon layer is arranged in a plurality of rectangular regions, which makes it easier to keep the intervals between the regions constant and suppresses unevenness in the silicon compared to a form in which the silicon layer is arranged in a plurality of circular regions. Therefore, by adjusting the basis weight according to the area ratio of the silicon, etc., it is easy to adjust the peel strength of the silicon in a desired manner.
[0014] According to a preferred aspect, the invention according to aspect 6 may have the following features in the invention according to any one of aspects 1 to 5. The area ratio of silicon in the silicon layer in the first region is 40% or less. The area ratio of silicon in the silicon layer in the second region is 50% or more. This aspect can preferably obtain the effect of preventing the first adhesive layer from peeling off the silicon layer in the first region and forming a label opening and an outlet, while preferably obtaining the effect of peeling off the silicon layer and the first adhesive layer in the second region, peeling off the silicon layer together with the first resin layer, and exposing the first adhesive layer.
[0015] According to a preferred embodiment, the invention according to embodiment 7 may have the following features in the invention according to any one of embodiments 1 to 6. The label has a fifth region disposed around the cut portion downstream of the first region in the unsealing direction and upstream of the second region in the unsealing direction. The silicon layer is provided in the fifth region. The basis weight of the silicon in the fifth region is higher than the basis weight of the silicon in the first region. When partially separating the label, in the region (e.g., the first region) upstream of the unsealing direction of the cut portion, the user can easily apply a force appropriately along the unsealing direction and peel the label in the intended manner. However, in the fifth region, which is one of the regions downstream of the unsealing direction of the cut portion, it may be difficult for the user to apply a force appropriately along the unsealing direction and peel the label in the intended manner. According to this embodiment, the basis weight of the silicon is higher in the first region than in the fifth region, and increases from the upstream side to the downstream side in the unsealing direction. Therefore, the label opening can be formed by peeling the label in the intended manner through the silicon layer even downstream of the unsealing direction of the cut portion.
[0016] According to a preferred embodiment, the invention according to embodiment 8 may have the following features in the invention according to any one of embodiments 1 to 7. The label has a second adhesive layer that abuts against the surface of the second resin layer facing the bag body and has a second adhesive, and a second silicone layer that abuts against the surface of the second adhesive layer facing the bag body and has silicone. The label has a third region that extends from the upstream edge of the label in the opening direction to the downstream side. The second adhesive layer is provided across the first region and the third region. The second silicone layer is not provided in the third region, but is provided in the first region. According to this embodiment, in the third region, the second silicone layer is not disposed on the inner side of the second adhesive layer, and the second adhesive layer is adhered to the bag body, so that the label can be joined to the bag body via the second adhesive layer. Therefore, the label can be partially separated via the cut portion, and the label in the region other than the separated portion continues to be adhered to the bag body, thereby maintaining the label opening. In addition, since the second silicone layer is provided between the second adhesive layer and the bag body in the first region, when the label is partially separated through the cut portion, the label can be easily peeled from the bag body in the first region. By smoothly peeling the label from the bag body in the first region, which is the upstream edge in the opening direction, the cut portion can be smoothly broken to form a label opening.
[0017] According to a preferred embodiment, the invention according to embodiment 9 may have the following features in the invention according to any one of embodiments 1 to 8. The label has a second adhesive layer that abuts against the bag body side surface of the second resin layer and has a second adhesive. The adhesive strength of the first adhesive may be higher than that of the second adhesive. According to this embodiment, since the adhesive strength of the first adhesive is high, the sheet packaging body after the label opening is formed can be adhered to the exterior body via the first adhesive layer by the first adhesive layer exposed after the label is partially separated, and the sheet can be hygienically held. On the other hand, since the adhesive strength of the second adhesive is low, when the label is partially separated, the separated part can be easily peeled off from the bag body. In addition, the second adhesive is exposed on the bag body side surface of the separated part after the label is partially separated. The second adhesive arranged in the separated part is separated from the bag body containing the sheet, and has no use of adhering the sheet packaging body after the label opening is formed to the exterior body, unlike the first adhesive. Therefore, even if the adhesive strength of the second adhesive is low, it has little effect on hygienic sheet holding.
[0018] The invention according to aspect 10 is a label for a package. The label for a package is peelably attached to the surface of the bag that packages an assembly of a plurality of sheets, and covers the bag opening of the bag in an openable and closable manner. The label has a first resin layer, a silicone layer that abuts against the bag-side surface of the first resin layer and has silicone, a first adhesive layer that abuts against the bag-side surface of the silicone layer and has a first adhesive, a second resin layer that abuts against the bag-side surface of the first adhesive layer, and a cut portion that forms a label opening that constitutes an outlet for the sheet. The cut portion is not formed in the first resin layer, but is formed in the second resin layer. The label is configured such that, when the first resin layer is pulled from the upstream side to the downstream side in the opening direction, a part of the second resin layer is separated via the cut portion, and the separated part of the second resin layer is peeled off together with the first resin layer to form the label opening. The label has a first region extending downstream from an upstream edge of the cut portion in the unsealing direction, and a second region extending downstream from a downstream edge of the cut portion in the unsealing direction. The silicone layer and the first adhesive layer are provided in the first region and the second region. The basis weight of the silicone in the first region is lower than the basis weight of the silicone in the second region. According to this aspect, the basis weight of the silicone in the first region is low, and it is difficult to peel off from the first adhesive. Therefore, peeling of the first adhesive layer and the silicone layer in the first region is suppressed when the label is separated, and the second resin layer separated through the cut portion can be peeled off together with the first resin layer to form an outlet for the sheet. In addition, since the basis weight of the silicone layer is high in the second region, the first adhesive layer and the silicone layer can be separated. Therefore, when the label is separated, the silicone layer and the first adhesive layer can be peeled off in the second region, and the silicone layer can be peeled off together with the first resin layer to expose the first adhesive layer. By exposing the first adhesive layer around the label opening, the bag body after the label opening is formed can be adhered to an outer body or the like via the first adhesive layer, and the sheet can be held in a hygienic manner.
[0019] (2) Overall structure of the sheet packaging The sheet packaging body 2 according to the embodiment will be described below with reference to the drawings. In the following description of the drawings, the same or similar parts are denoted by the same or similar reference numerals. However, it should be noted that the drawings are schematic and the ratios of the dimensions are different from the actual ones. Therefore, the specific dimensions should be determined with reference to the following description. In addition, the drawings may include parts with different dimensional relationships and ratios. In addition, the cross-sectional views show the components separated from each other for convenience of explanation, although there are some parts where the components are in contact with each other in the actual product.
[0020] The sheet packaging body 2 of this embodiment contains an assembly 4 of a plurality of sheets 41, and is attached to an exterior body 3 for use. The exterior body 3 contains the sheet packaging body 2 and has an exterior opening 32 that overlaps with an outlet 5 for the sheet 41 in the sheet packaging body 2. The sheet 41 is taken out through the exterior opening 32 and the outlet 5. FIG. 1 is an exploded perspective view of a sheet structure 1 including the sheet packaging body 2 and the exterior body 3, and shows a state in which the sheet packaging body 2 is not contained in the exterior body 3. The sheet packaging body 2 may be used alone without being contained in the exterior body 3.
[0021] The sheet structure 1 has a sheet wrapping body 2 and an exterior body 3. The sheet structure 1 has a top surface 11, a bottom surface 12 opposite the top surface 11, a left side surface 15 covering the side surface of the assembly 4, a right side surface 16, a front surface 13, and a rear surface 14. The top surface 11 is the surface on which the bag opening 22 of the sheet wrapping body 2 is disposed, and is the surface on which the exterior opening 32 of the exterior body 3 is disposed. The sheet structure 1 has a third direction D3 which is a height direction, and first and second directions D1 and D2 which extend in a planar direction and are perpendicular to each other.
[0022] The sheet packaging body 2 includes at least an assembly 4, a bag body 20, and a label 100. The assembly 4 includes a plurality of sheets 41. The assembly 4 may be a stack of a plurality of separated sheets 41, for example, a stack of a plurality of sheets 41 folded and stacked in the thickness direction. The sheets 41 may be at least folded with a crease FL along the first direction D1 as a base point. In the folded state, the sheets 41 adjacent to each other in the third direction D3 may be arranged alternately. The assembly 4 may be folded with a crease other than the crease FL before or after the crease FL. That is, the sheet 41 may be folded with a crease along the second direction D2 as a base point, and then folded with a crease along the first direction D1 as a base point. The crease FL along the first direction D1 of the present invention is a crease that serves as a base point when the sheet 41 is unfolded from the assembly 4.
[0023] In a configuration in which the sheet 41 is folded, the first direction D1 may be a direction along the fold FL of the assembly 4. The first direction D1 may be the longitudinal direction of the sheet structure 1 as in the present embodiment, or in a modified example, the first direction D1 may be the lateral direction of the sheet structure 1. In a modified example, the assembly 4 may be a plurality of sheets 41 connected together with weakened portions interposed therebetween, for example, a continuous body of a plurality of continuous sheets 41 wound into a roll.
[0024] Sheet 41 may be a dry sheet (e.g., nonwoven fabric, paper towel) or a wet sheet (e.g., wet tissue). Sheet 41 in this embodiment is a wet tissue impregnated with a liquid (medicine, etc.) containing alcohol. The wet tissue may be impregnated with the liquid in sheet 41, for example, 150 parts by mass to 300 parts by mass of liquid may be impregnated in an aggregate (in a dry state) of 100 parts by mass.
[0025] The bag body 20 is formed with a bag opening 22 that packages the assembly 4 and forms the take-out port 5 of the sheet 41. The bag opening 22 is a portion surrounded by a cut portion 26 (see FIG. 3). The cut portion 26 is formed by a fragile portion such as a perforation or a cut line, and is formed over the entire sheet located on the upper side of the sheet in the bag body. The cut portion 110 forms the outer edge of the bag opening 22. The bag body 20 formed in the bag body 20 is configured to contain the entire assembly 4. The bag body 20 may be made of a film. The material of the film is not particularly limited, and may be, for example, a mixture of polypropylene and polyethylene. The bag opening 22 may be arranged on the upper surface 11 side. In a form in which the sheet packaging body 2 is contained in the exterior body 3 and used, the exterior opening 32 is arranged to overlap at least a part of the bag opening 22 when the sheet packaging body 2 is attached to the exterior body 3.
[0026] The dimensions of the bag opening 22 may be any dimension that allows each sheet 41 to be pulled out. The shape of the bag opening 22 may be an ellipse, a horizontally (vertically) long circle, or a perfect circle in a plan view, and is not limited thereto. Preferably, the bag opening 22 is curved and does not have sharp corners in order to prevent the sheet 41 from getting caught. The bag opening 22 may be disposed at the center of the sheet packaging body 2 in the first direction D1 and the center in the second direction D2.
[0027] The label 100 is peelably attached to the surface of the bag body 20, and covers the bag opening 22 before use. When using the sheet 41, such as when attaching the sheet packaging body 2 to the exterior body 3, the user partially separates the label 100 to expose the bag opening 22 and arranges the label 100 so that the bag opening 22 and the exterior opening 32 overlap. Fig. 2(A) shows the label 100 in an unseparated state, and Fig. 2(B) shows the label 100 in a partially separated state to expose the bag opening 22. The configuration of the label 100 will be described in detail later.
[0028] The exterior body 3 has an exterior opening 32 that serves as an outlet for the sheet 41. The exterior opening 32 is configured to be arranged so as to overlap at least a part of the outlet 5 of the sheet packaging body. The exterior opening 32 may be arranged so as to overlap a part of the outlet 5, or may be arranged so as to overlap the entire area of the outlet 5. The exterior body 3 may have a base portion 37 arranged around the exterior opening 32. The base portion 37 is arranged surrounding the exterior opening 32. The base portion 37 may have a separation guide portion 34. The separation guide portion 34 is configured to protrude inward from the outer edge of the exterior opening 32 and guide the separation of the sheets 41 from each other. More specifically, the separation guide portion 34 protrudes from the center of the exterior opening 32 in one of the first direction D1 and the second direction D2 toward the inside in the other of the first direction D1 and the second direction D2, and guides the separation of the sheets 41 from each other. The separation guide portion 34 in this embodiment may be a portion that protrudes inward in the second direction D2 beyond the outer edge of the exterior opening 32 in the second direction D2. In a modified example, the separation guide portion 34 may be a portion that protrudes inward in the first direction D1 beyond the outer edge of the exterior opening 32 in the first direction D1. The user pulls the sheet 41 outward from the sheet structure 1 through the bag opening 22 and the exterior opening 32. At this time, the separation guide portion 34 abuts against the sheet 41, and when both the sheet to be removed and the next sheet 41 (located on the bottom side) are likely to be pulled out, the separation guide portion 34 functions to pull out only the sheet to be removed.
[0029] The exterior body 3 may have an exterior lid portion 36 that covers the exterior opening 32 and the base portion 37 in an openable and closable manner. The exterior lid portion 36 may be capable of realizing a state in which the exterior opening 32 is covered and a state in which the exterior opening 32 is exposed, with the hinge portion 38 as the opening / closing base point. When taking out the sheet 41, the user performs an operation of opening the exterior lid portion 36 with the hinge portion 38 as the base point, and when not taking out the sheet 41, the user performs an operation of closing the exterior lid portion 36 to cover the exterior opening 32. The exterior body 3 may have the exterior opening 32, the base portion 37, the exterior lid portion 36, and the hinge portion 38, and may be configured to be attached only to the upper surface of the sheet packaging body 2 (so-called wet tissue lid), or may have a surrounding portion 39 that surrounds the entire sheet packaging body 2. The exterior body 3 of this embodiment has the surrounding portion 39. The surrounding portion 39 has a top surface region that extends outward from the exterior opening 32 and the base portion 37 on the top surface 11, a bottom surface region that is disposed on the bottom surface 12, and side surfaces that are disposed on the left side surface 15, the right side surface 16, the front surface 13, and the rear surface 14. The bottom surface region or the top surface region is configured to be detachable or openable / closable with respect to the side surfaces, and is configured to allow the sheet wrapping body 2 to be inserted into and removed from the exterior body 3.
[0030] Next, the label 100 of the sheet wrapping body 2 will be described in detail. FIG. 3 is a schematic cross-sectional view taken along the line AA shown in FIG. 2(A). FIG. 4 is a schematic cross-sectional view taken along the line BB shown in FIG. 2(B). FIG. 5 is a partial enlarged view of the C portion of FIG. 2(B). The label 100 has an inner side T101 and an outer side T102 opposite to the inner side T101. The outer side T102 is the outer side of the sheet wrapping body 2, and the inner side T101 is the bag body 20 side. The label 100 is formed by laminating a plurality of layers. In the label 100 of this embodiment, the outer layer 101, the outer adhesive layer 102, the printing layer 103, the first resin layer 104, the first silicone layer 105, the first adhesive layer 106, the second resin layer 107, the second adhesive layer 108, and the second silicone layer 109 are laminated in this order from the outer side T102 to the inner side T101. It is sufficient that the label 100 according to the present invention has at least the first resin layer 104, the first silicone layer 105, the first adhesive layer 106, and the second resin layer 107. The first silicone layer 105 constitutes the "silicone layer" of the present invention.
[0031] The outer layer 101 is the outermost layer and constitutes the outer surface of the label 100. The outer layer 101 is transparent or translucent, and may be made of a laminating resin that protects the printed layer 103. The outer adhesive layer 102 bonds the outer layer 101 and the printed layer 103. The printed layer 103 is a layer on which printing is performed to display decoration or information. The outer layer 101, the outer adhesive layer 102, and the printed layer 103 may be disposed over the entire area of the label 100 in a plan view.
[0032] The first resin layer 104 is located on the inner surface side T101 of the printed layer 103, and on the outer surface side T102 of the first silicon layer 105, the first adhesive layer 106, and the second resin layer 107. The first resin layer 104 is configured so that the entirety of the label 100 is peeled off from the bag body 20 without breaking when the label 100 is properly separated. The first resin layer 104 may be disposed over the entire area of the label 100 in a plan view. The first resin layer 104 may be made of resin, and the first resin layer 104 of the present embodiment is made of foamed PET (polyester resin that is extruded and foamed). The thickness of the first resin layer 104 may be 30 μm to 70 μm, and the thickness of the first resin layer of the present embodiment is 50 μm.
[0033] The first silicon layer 105 abuts on the surface of the inner surface side T101 of the first resin layer 104 and contains silicon. The first silicon layer 105 may be made of silicone resin as long as it contains silicon. The first silicon layer 105 is configured to be easily peeled off from the adhesive layer containing the adhesive. In the region of the first silicon layer 105 where the basis weight of the silicon is high, the first silicon layer 105 is easily peeled off from the adhesive layer, and in the region of the first silicon layer 105 where the basis weight of the silicon is low, the first silicon layer 105 is more difficult to peel off from the adhesive layer compared to the region where the basis weight is high. The first silicon layer 105 abuts on the first adhesive layer 106, and the ease of peeling off from the first adhesive layer 106 is adjusted by the basis weight of the silicon. The first silicon layer 105 may be disposed at least around the cut portion 110 that forms the label opening 125. In FIG. 2(B), the region where the first silicon layer 105 is provided is indicated by hatching.
[0034] The first adhesive layer 106 abuts against the surface of the inner surface side T101 of the first silicon layer 105 and has a first adhesive. The first adhesive can be exemplified by a hot melt adhesive. The first adhesive is provided at least in an area overlapping the label opening 125. In the area overlapping the label opening 125, an area where the first adhesive layer 106 and the first resin layer 104 abut is provided without the first silicon layer 105 being disposed. The area where the first adhesive layer 106 and the first resin layer 104 abut without the first silicon layer 105 being disposed is an area surrounded by a shaded area (an area where the first silicon layer 105 is disposed) in FIG. 2(B). The area where the first adhesive layer 106 and the first resin layer 104 abut is provided in an area surrounded by a cut portion 110.
[0035] The second resin layer 107 abuts against the surface of the inner surface side T101 of the first adhesive layer 106. A cut portion 110 is formed in the second resin layer 107, and a label opening 125 is formed therein. The second resin layer 107 may be disposed over the entire area of the label 100 in plan view. The second resin layer 107 may be made of resin, and the second resin layer 107 in this embodiment is made of PET (polyethylene terephthalate). The thickness of the second resin layer 107 may be 30 μm to 70 μm, and the thickness of the second resin layer 107 in this embodiment is 50 μm.
[0036] The second adhesive layer 108 abuts against the surface of the inner side T101 of the second resin layer 107 and has a second adhesive. The second adhesive can be exemplified by a hot melt adhesive. The second adhesive layer 108 bonds the label 100 and the bag body 20. A cut portion 110 is formed in the second adhesive layer 108, and a label opening 125 is formed. The second adhesive layer 108 may be disposed over the entire area of the label 100 in a plan view. The surface of the bag body side T101 of the second adhesive layer 108 abuts against the bag body 20 and is adhered to the bag body 20. Since the second adhesive layer 108 is adhered to a portion (bag separation portion) surrounded by the cut portion 26 that forms the bag opening 22, when the label 100 is separated, the bag separation portion is also separated to form the bag opening 22. In addition, the label 100 in this embodiment has the second adhesive layer 108, but in a modified example, an adhesive layer equivalent to the second adhesive layer 108 may be provided on the bag body 20, and the label 100 may not have the second adhesive layer 108.
[0037] The second silicon layer 109 abuts against the surface of the inner side T101 of the second adhesive layer 108 and contains silicon. The second silicon layer 109 only needs to contain silicon (silicon) and may be made of silicone resin. The second silicon layer 109 straddles the upstream edge 111 of the cutting portion 110 in the unsealing direction P and may straddle the area surrounded by the cutting portion 110 and the area outside the surrounded area.
[0038] The label 100 is configured to be partially separable. When a part of the label 100 is separated, a label opening 125 that constitutes the outlet 5 is formed. As shown in FIG. 2(A) and FIG. 3, the label 100 is attached to the surface of the bag body 20 in an unseparated state (when the outlet 5 is not formed). When the multiple layers of the label 100 are peeled off and some of the layers are cut off, the label opening 125 is formed. The label opening 125 is a portion surrounded by the cut portion 110. The cut portion 110 is formed by a fragile portion such as a perforation or a cut line, and is formed over a certain range in the thickness direction across the multiple layers. The cut portion 110 constitutes the outer edge of the label opening 125.
[0039] The cut portion 110 is not formed over the entire thickness direction of the label 100. The cut portion 110 is not formed in the first resin layer 104, but in the second resin layer 107. More specifically, the cut portion 110 is not formed in the first resin layer 104, and is not formed in a layer on the outer side T102 of the first resin layer 104. The cut portion 110 in this embodiment is formed only on the inner side T101 of the boundary between the first resin layer 104 and the first adhesive layer 106. The region on the inner side of the boundary including the second resin layer 107 is separated via the cut portion 110, but the region on the outer side of the boundary including the first resin layer 104 does not have the cut portion 110 formed therein, and is not separated via the cut portion 110. A portion of the second resin layer 107 on the outer side T102 of the boundary including the first resin layer 104 is pulled from the upstream side P1 to the downstream side P2 in the unsealing direction P, so that a part of the second resin layer 107 separates through the cut portion 110, and the separated portion of the second resin layer 107 peels off together with the first resin layer 104 to form a label opening 125. The separated portion of the second resin layer 107 is the portion surrounded by the cut portion 110.
[0040] As shown in Fig. 4, when the label opening 125 is formed, a part of the bag body 20 (referred to as a bag separating portion) is separated from the bag body 20 together with a part of the label 100 (referred to as a label separating portion). In a state in which the label separating portion and the bag separating portion are both separated, a bag opening 22 is formed in the bag body 20 by separation of the bag separating portion, and a label opening 125 is formed in the label 100 by separation of the label separating portion. As shown in Fig. 4, the take-out opening 5 is formed by an area where the label opening 125 and the bag opening 22 overlap. The label opening 125 of this embodiment is formed to be slightly larger than the bag opening 22 in a plan view. The entire area of the bag opening 22 is covered by the label opening 125.
[0041] The line L100 in FIG. 3 indicates a separation line that separates the label 100 when the outlet 5 is formed. The label 100 is separated by being pulled from the upstream side P1 to the downstream side P2 in the unsealing direction P. The label 100 has an upstream edge 121 that is an edge of the upstream side P1 and a downstream edge 122 that is an edge of the downstream side P2. The separation line L100 is formed between the first resin layer 104 and the first adhesive layer 106 in the region between the upstream edge 121 toward the downstream side P2 to the upstream edge 111 of the cutting portion 110 in the unsealing direction P. The separation line L100 extends to the inner side T101 at the upstream edge 111 of the cutting portion 110 and reaches the surface of the inner side T101 of the label 100. The separation line L100 extends not only along the upstream edge 111 of the cut portion 110 but also along the entire cut portion 110 in a plan view toward the inner side T101, and reaches the surface of the inner side T101 of the label 100. Therefore, the separation line L100 is in a ring shape along the cut portion 110. The area surrounded by the cut portion 110 becomes a label separation portion that can be separated from the area outside the cut portion 110. The separation line L100 is close to the cut portion 26 of the bag body 20, and the bag separation portion surrounded by the cut portion 26 is separated from the bag body together with the label separation portion. The separation line L100 is formed between the first resin layer 104 and the first adhesive layer 106 from the downstream edge 112 of the cut portion 110 toward the downstream side P2. In the label 100 configured in this manner, when the label 100 is properly separated, as shown in FIG. 4, the label opening 125 and the bag opening 22 form the take-out opening 5.
[0042] In the state where the label 100 is appropriately separated as described above, the first adhesive layer 106 peels off and the second adhesive layer 108 does not peel off, but peels off at an appropriate layer (between the first silicon layer 105 and the first adhesive layer 106 in this embodiment), and the label 100 has a label opening 125 formed through the cut portion 110. However, in the use environment of the sheet packaging body 2, for example, in an environment with low temperature (for example, below freezing point), the adhesive strength of the first adhesive layer 106 and the second adhesive layer 108 changes, and it may not be possible to realize a state where the first adhesive layer 106 peels off and the second adhesive layer 108 does not peel off. For example, the adhesive strength of the first adhesive layer 106 decreases, and the first adhesive layer 106 and the second resin layer 107 peel off in the area surrounded by the cut portion 110, and the entire area surrounded by the cut portion 110 cannot be separated, resulting in a defect in which the outlet 5 cannot be formed. Furthermore, the adhesive strength of the outer adhesive layer 102 may decrease, causing the outer adhesive layer 102 and the printed layer 103 to peel off, making it impossible to separate the entire area surrounded by the cut portion 110, and causing a problem in which the outlet 5 cannot be formed. In order to suppress these problems, it is possible to increase the adhesive strength of the adhesive layer. However, if the adhesive strength is made too high, other members may break unintentionally. More specifically, if the adhesive strength of the adhesive layer is increased, for example, the first resin layer 104 may break, causing a problem in which the outlet 5 cannot be formed.
[0043] The sheet packaging body 2 according to the present invention is configured to resolve the problem of being unable to form the sheet removal opening 5. Next, a detailed description will be given of the configuration for resolving the problem of being unable to form the removal opening 5. The label 100 has multiple regions in a plan view, and the basis weight of the silicon of the first silicon layer 105 is adjusted depending on the region to prevent the problem of being unable to form the removal opening 5.
[0044] The label 100 has a plurality of regions in plan view. Each region is shown in FIG. 5. The label 100 has a first region R1 extending from an upstream edge 111 in the opening direction P of the cutting portion 110 to a downstream side P2 in a plan view. The first region R1 only needs to include the upstream edge 111 in the opening direction P of the cutting portion 110, and may straddle the upstream edge 111 in the opening direction P of the cutting portion 110 in the opening direction P. The range of the first region R1 in the opening direction P may be 1 mm or more and 5 mm or less from the upstream edge 111 toward the downstream side P2, and 1 mm or more and 5 mm or less from the upstream edge 111 toward the upstream side P1.
[0045] The label 100 has a second region R2 extending from the downstream edge 112 of the cutting portion 110 in the opening direction P to the downstream side P2 in a plan view. The second region R2 only needs to include the downstream edge 112 of the cutting portion 110 in the opening direction P, and may straddle the downstream edge 112 of the cutting portion 110 in the opening direction P. The range of the second region R2 in the opening direction P may be 1 mm or more and 5 mm or less from the downstream edge 112 toward the downstream side P2, and 1 mm or more and 5 mm or less from the downstream edge 112 toward the upstream side P1.
[0046] The label 100 has a third region R3 extending from the upstream edge 121 to the downstream side P2 in the unsealing direction P of the label 100 in a plan view. The first adhesive layer 106 is not disposed in the third region R3. Therefore, in the third region R3, the layers (the outer layer 101, the outer adhesive layer 102, the printed layer 103, the first resin layer 104, and the first silicone layer 105) on the outer surface side T102 of the first adhesive layer 106 are stacked so as to be separable from the second resin layer 107, and function as a gripping portion when unsealing the label 100. The edge of the downstream side P2 of the third region may be 5 mm or more and 10 mm or less from the upstream edge 121 of the label 100 toward the downstream side P2.
[0047] The label 100 has a fourth region R4 that extends from the upstream edge 111 of the cutting portion 110 toward the upstream side P1 to the third region R3 in a plan view. The fourth region R4 is a region sandwiched between the first region R1 and the third region R3 in the opening direction P. Therefore, the edge of the upstream side P1 of the fourth region R4 is the edge of the downstream side P2 of the third region R3, and the edge of the downstream side P2 of the fourth region R4 is the edge of the upstream side P1 of the first region R1.
[0048] The label 100 has a fifth region R5 disposed around the cutting portion 110 on the downstream side P2 of the first region R1 in the opening direction P and on the upstream side P1 of the second region R2 in the opening direction in a plan view. The fifth region R5 may be provided in the center of the cutting portion 110 in the opening direction P, including a middle position 110C of the cutting portion 110. The fifth region R5 may be a region spanning the cutting portion 110.
[0049] The first silicon layer 105 and the first adhesive layer 106 are provided in the first region R1 and the second region R2. The basis weight of the silicon of the first silicon layer 105 in the first region R1 is lower than the basis weight of the silicon of the first silicon layer 105 in the second region R2. The basis weight of the silicon may be compared by comparing the area where the silicon is applied using a microscope or the like, or may be compared by comparing the weight per unit area of the region where the silicon is applied. The region where the silicon is applied is more easily peeled off by the adhesive than the region where the silicon is not applied, and the higher the basis weight of the silicon, the easier it is to peel off by the adhesive, and the lower the basis weight of the silicon, the harder it is to peel off by the adhesive. The first region R1 extends at least from the upstream edge 111 of the cutting portion 110 to the downstream side P2 in the opening direction P, and is a portion where the part (second resin layer 107, etc.) separated via the cutting portion 110 is peeled off together with the first resin layer 104 when the label 100 is separated. Depending on the manner in which the label 100 is pulled and the way in which the force is applied, the first silicon layer 105 and the first adhesive layer 106, which are peeled off together with the first resin layer 104, may peel off. In particular, when the temperature drops and the adhesive strength of the first adhesive decreases, the adhesive strength between the first adhesive layer 106 and the first silicon layer 105 cannot be secured, and the first adhesive layer 106 and the first silicon layer 105 may peel off in the first region R1, and the label opening 125 may not be formed. However, the basis weight of the silicon in the first region R1 is low, and it is difficult to peel off from the first adhesive. Therefore, peeling of the first adhesive layer 106 and the first silicon layer 105 in the first region R1 is suppressed during label separation, and the second resin layer 107 separated via the cutting portion 110 can be peeled off together with the first resin layer 104, forming the label opening 125.
[0050] The second region R2 extends from the downstream edge 112 of the cutting portion 110 to the downstream side P2 in the unsealing direction P. In the second region R2, since the basis weight of the first silicon layer 105 is high, the first adhesive layer 106 and the first silicon layer 105 can be separated. Therefore, when the label 100 is separated, the first silicon layer 105 and the first adhesive layer 106 can be peeled off in the second region R2 to expose the first adhesive layer 106. By exposing the first adhesive layer 106 around the label opening 125 after forming the label opening 125, the sheet packaging body 2 after forming the label opening 125 can be adhered to the exterior body 3 or the like via the first adhesive layer 106, and the sheet can be held hygienically.
[0051] The first silicon layer 105 may be disposed across the entire cutting portion 110. That is, the first silicon layer 105 is provided in a surrounding area located around the cutting portion. The surrounding area includes an area surrounded by the cutting portion 110 and an area outside the surrounded area. The first silicon layer 105 may be provided across a certain range (for example, a range of 5 mm or less) from the cutting portion 110 toward the inside and a certain range (for example, a range of 5 mm or less) from the cutting portion 110 toward the outside in a plan view. In order to form the cutting portion 110, it is necessary to cut a part of the layer of the label 100 in the thickness direction by the cutting blade. At this time, by providing the first silicon layer 105 in the area where the cutting portion 110 is formed, the problem that the adhesive constituting the adhesive layer adheres to the cutting blade can be suppressed. As shown in FIG. 5, the surrounding region may be a region including a first region R1, a third region R3, and a fifth region R5, and the first silicon layer 105 of this embodiment is provided along the cut portion 110 not only in the first region R1, the second region R2, and the fifth region R5, but also between the first region R1 and the second region R2, and between the second region R2 and the fifth region R5.
[0052] The first silicon layer 105 of this embodiment is provided in the first region R1, the second region R2, the third region R3, the fourth region R4, and the fifth region R5. The first silicon layer 105 is not provided in a region surrounded by the cut portion 110 and located inside a certain range extending inward from the cut portion 110. In a region surrounded by the cut portion 110 where the first silicon layer 105 is not provided, the first resin layer 104 and the second resin layer 107 are bonded together via the first adhesive layer 106. Therefore, the second resin layer 107 in the portion surrounded by the cut portion 110 can be peeled off together with the first resin layer 104.
[0053] The third region R3 may not be provided with the first adhesive layer 106, but may be provided with the first silicone layer 105. In the third region R3, the second resin layer 107 and the first silicone layer 105 may overlap releasably. In the third region extending downstream from the upstream edge 121 of the label 100, the first adhesive layer 106 is not provided, and the second resin layer 107 and the first silicone layer 105 overlap releasably, so that the label 100 can be separated by gripping the portion on the first resin layer 104 side from the first silicone layer 105. When the label 100 is peeled toward the downstream side P2 of the unsealing direction P via the first silicone layer 105, the label 100 reaches the first region R1 where the first silicone layer 105 and the first adhesive layer 106 abut against each other. At this time, since the basis weight of the silicon of the first silicon layer 105 in the first region R1 is low, the first region R1 does not continue to peel off via the silicon layer, but maintains an adhesive state to the first adhesive layer 106 side via the silicon layer, and the second resin layer 107 separated via the cut portion 110 can be separated together with the first resin layer 104, thereby forming the label opening 125 in the intended manner.
[0054] The first silicon layer 105 may also be provided in the fourth region R4. The basis weight of silicon of the first silicon layer 105 in the fourth region R4 may be the same as the basis weight of silicon of the first silicon layer 105 in the first region R1. Alternatively, the basis weight of silicon of the first silicon layer 105 in the fourth region R4 may be higher than the basis weight of silicon of the first silicon layer 105 in the first region R1. Since the basis weight of silicon of the fourth region R4 is higher than the basis weight of silicon of the first region R1, the first resin layer 104 and the first adhesive layer 106 can be peeled off via the first silicon layer 105. In addition, since the first adhesive layer 106 is not arranged in the third region R3 located on the upstream side P1 of the fourth region R4, the first resin layer 104 can be peeled off from the second resin layer 107 in the region from the upstream edge 121 of the label 100 in the opening direction to the upstream edge 111 of the cutting portion 110 (the region including the third region and the fourth region). At this time, since the basis weight of the silicon of the first silicon layer 105 in the first region R1 is low, the bonded state of the first resin layer 104 and the second resin layer 107 can be maintained through the first adhesive layer 106 in the region (first region) from the upstream edge 111 of the cut portion 110 toward the downstream side P2. Therefore, the second resin layer 107 separated through the cut portion can be separated together with the first resin layer 104 to form the label opening 125 in the intended manner. Preferably, the fourth region R4, which is configured with a comparatively high basis weight of silicon, may be disposed across the edge of the upstream side P1 of the first adhesive layer 106 in the unsealing direction P. The first resin layer 104 and the first adhesive layer 106 can be smoothly peeled off through the first silicon layer 105.
[0055] The first adhesive layer 106 may be provided in the fourth region R4. When the label 100 is separated, the first silicone layer 105 and the first adhesive layer 106 are peeled off in the fourth region R4, and the first adhesive layer 106 is exposed. More specifically, the first adhesive layer 106 is exposed around the label opening 125, and the second resin layer 107 is exposed in the region where the first adhesive layer 106 is not arranged. By exposing the first adhesive layer 106 around the label opening 125, the sheet packaging body 2 can be adhered to the inner surface of the exterior body 3 or the like via the first adhesive layer 106. Therefore, it is possible to suppress excessive evaporation of liquid through the label opening 125, and to reduce the space around the label opening 125 to hold the sheet hygienically.
[0056] FIG. 6 is an enlarged schematic diagram of a portion D shown in FIG. 5. The region where silicon is applied is the region not hatched (white region) in FIG. 6. The first silicon layer 105 is arranged in a plurality of rectangular regions R10. The rectangular regions R10 may be in contact with each other or may be arranged at intervals. It is preferable that the rectangular regions are in contact with each other. According to this embodiment, silicon is arranged in a plurality of rectangular regions, so that the intervals between the regions can be easily kept constant compared to a form in which silicon is arranged in a plurality of circular regions, and unevenness of silicon can be suppressed. Therefore, by adjusting the basis weight according to the area ratio of silicon, etc., it is easy to adjust the peel strength of silicon in an intended manner.
[0057] The basis weight of silicon in the first silicon layer 105 may be different for each region. The basis weight can be calculated by the weight of silicon in the entire region. Silicone resin may be applied to the entire region, and the basis weight per unit area of silicon may be different for each region, or the basis weight per unit area of the applied silicone resin may be the same for each region, and the basis weight of silicon may be different for each region by different area ratios for each region. The configuration in which the area ratio of silicone resin is different for each region can be made different by, for example, the size of a plurality of regions (rectangular regions, etc.) and the difference in the shape of a plurality of regions (rectangular, circular, etc.). For example, as shown in FIG. 6, the area ratio of the region R11 to which silicon is applied in the first region R1 may be lower than the area ratio of the region R14 to which silicon is applied in the fourth region R4, and may be lower than the area ratio of the region R13 to which silicon is applied in the third region R3.
[0058] The area ratio of silicon of the first silicon layer 105 in the first region R1 may be 40% or less, and preferably 35% or less. The area ratio of silicon of the first silicon layer 105 in the first region R1 of this embodiment is 35%. The area ratio of silicon of the first silicon layer in the second region R2 may be 50% or more, and preferably 80% or more, and more preferably 100% or more. The area ratio of silicon of the first silicon layer 105 in the second region R2 of this embodiment is 100%. The area ratio of silicon of the first silicon layer 105 in the fourth region R4 may be the same as that of the first silicon layer 105. Alternatively, the area ratio of silicon of the first silicon layer 105 in the fourth region R4 may be 50% or more, and preferably 80% or more, and more preferably 100% or more. The area ratio of the first silicon layer 105 in the fourth region R4 of this embodiment is 50%. The area ratio of silicon of the first silicon layer 105 in the third region R3 may be 50% or more, preferably 80% or more, and more preferably 100% or more. The area ratio of the first silicon layer 105 in the third region R3 of this embodiment is 50%. The area ratio of silicon of the first silicon layer 105 in the fifth region R5 may be 50% or more, preferably 80% or more, and more preferably 100% or more. The area ratio of silicon of the first silicon layer 105 in the third region R3 of this embodiment and the area ratio of silicon of the first silicon layer 105 in the fifth region R5 are 100%. In the surrounding region, the basis weight of silicon may increase stepwise from the upstream side P1 of the opening direction P toward the downstream side P2. For example, the basis weight of silicon in the first silicon layer 105 may be lowest in the first region R1, higher in an intermediate region between the first region R1 and the fifth region R5 than the first region R1, the fifth region R5 may be higher than the intermediate region, and the second region R2 may be higher than the fifth region R5.
[0059] The first silicon layer 105 may also be provided in the fifth region R5. The basis weight of silicon of the first silicon layer 105 in the fifth region R5 may be higher than the basis weight of silicon of the first silicon layer 105 in the first region R1. When partially separating the label 100, in the region (for example, the first region) on the upstream side P1 of the cutting section 110 in the opening direction P, the user can easily apply a force appropriately along the opening direction and peel it off in the intended manner. However, in the fifth region R5, which is one of the regions on the downstream side P2 of the opening direction P of the cutting section 110, it may be difficult for the user to apply a force appropriately along the opening direction and peel it off in the intended manner. The basis weight of silicon is higher in the first region than in the fifth region, and increases from the upstream side P1 to the downstream side P2 of the opening direction P. Therefore, the label opening 125 can be formed by peeling it off via the first silicon layer 105 in the intended manner even on the downstream side of the opening direction of the cutting section. Preferably, the basis weight of silicon of the first silicon layer 105 in the fifth region R5 may be higher than the basis weight of silicon of the first silicon layer 105 in the first region R1 and lower than the basis weight of silicon of the first silicon layer 105 in the second region R2. The basis weight of silicon of the first silicon layer 105 is in the order of first region>fifth region>second region, and increases stepwise from the upstream side P1 to the downstream side P2 in the unsealing direction P. Therefore, the label opening 125 can be formed by peeling via the first silicon layer 105 in an intended manner even on the downstream side of the cut portion in the unsealing direction.
[0060] The second adhesive layer 108 may be provided across the first region R1 and the third region R3. More specifically, the second adhesive layer 108 may also be provided in a fourth region R4 located between the first region R1 and the third region R3, and may be provided across the first region R1, the third region R3, and the fourth region R4. The second silicon layer 109 may be provided in the first region R1, not in the third region R3. According to this embodiment, in the third region R3, the second silicon layer 109 is not disposed on the inner surface side T101 of the second adhesive layer 108, and the second adhesive layer 108 is adhered to the bag body 20, and the label 100 can be joined to the bag body 20 via the second adhesive layer 108. Therefore, the label 100 can be partially separated via the cutting portion 110, and the label 100 in the region other than the separated portion can be continued to be adhered to the bag body 20, and the label opening 125 can be maintained. In addition, in the first region R1, the second silicon layer 109 is disposed between the second adhesive layer 108 and the bag body 20. Therefore, when the label 100 is partially separated through the cutting portion 110, the label 100 can be easily peeled off from the bag body 20 in the first region R1. By smoothly peeling off the label 100 and the bag body 20 in the first region R1, which is the upstream edge 111 of the cutting portion 110 in the opening direction P, the cutting portion 110 can be smoothly broken to form the label opening 125. Note that the second silicon layer 109 in this embodiment is provided across the first region R1 and the fourth region R4, and is not provided in the third region R3.
[0061] The adhesive strength of the first adhesive may be higher than that of the second adhesive. Since the adhesive strength of the first adhesive is high, the sheet packaging body 2 after the label opening 125 is formed can be adhered to the exterior body 3 or the like through the first adhesive layer exposed after the label 100 is partially separated, and the sheet can be hygienically held. On the other hand, since the adhesive strength of the second adhesive is low, when the label 100 is partially separated, the separated part can be easily peeled off from the bag body. In addition, the second adhesive is exposed on the bag body side surface of the separated part after the label 100 is partially separated. The second adhesive arranged in the separated part is separated from the bag body containing the sheet, and unlike the first adhesive, there is no use of adhering the sheet packaging body 2 after the label opening 125 is formed to the exterior body 3. Therefore, even if the adhesive strength of the second adhesive is low, it has little effect on hygienic sheet holding. It is preferable that the adhesive strength of the second adhesive is strong enough to attach the separated part of the label 100 to the surface of the bag body 20 or the like and hold the separated part.
[0062] Preferably, the adhesive strength of the adhesive layers may be outer adhesive layer 102 > first adhesive layer 106 > second adhesive layer 108. Also, the breaking strength of the first resin layer may be higher than the peel strength of outer adhesive layer 102 from outer layer 101 and the peel strength of outer adhesive layer 102 from printed layer 103. The strength of the adhesive layers can be measured by the peel adhesion strength test method specified in JIS K 6854-2.
[0063] (3) Other embodiments The above-described embodiment is a sheet packaging body 2, which has a bag body 20 and a label 100. However, the present invention may be a packaging body label (the label 100 in the above-described embodiment) that is peelably attached to the surface of the bag body 20 that packages the assembly 4 of multiple sheets 41 and covers the bag opening 22 of the bag body 20 in an openable and closable manner. The packaging body label 100 is peelably attached to the surface of the bag body 20 that packages the assembly 4 of multiple sheets 41 and covers the bag opening 22 of the bag body 20 in an openable and closable manner. The label 100 includes a first resin layer 104, a silicone layer (first silicone layer 105) that abuts against the surface of the first resin layer 104 facing the bag body 20 and has silicone, a first adhesive layer 106 that abuts against the surface of the silicone layer facing the bag body and has a first adhesive, a second resin layer 107 that abuts against the surface of the first adhesive layer 106 facing the bag body, and a cut portion 110 that forms a label opening 125 that constitutes an outlet for the sheet 41. The cut portion 110 is not formed in the first resin layer 104, but is formed in the second resin layer 107. When the first resin layer 104 is pulled from the upstream side P1 to the downstream side P2 in the unsealing direction P, a part of the second resin layer 107 is separated through the cut portion 110, and the separated part of the second resin layer 107 is peeled off together with the first resin layer 104 to form the label opening 125. The label 100 has a first region R1 extending from an upstream edge 111 of the cutting portion 110 in the unsealing direction P to the downstream side P2, and a second region R2 extending from a downstream edge of the cutting portion 110 in the unsealing direction P to the downstream side P2. The first silicon layer 105 and the first adhesive layer 106 are provided in the first region R1 and the second region R2. The basis weight of the silicon of the first silicon layer 105 in the first region R1 is lower than the basis weight of the silicon of the first silicon layer 105 in the second region R2. According to this embodiment, the basis weight of the silicon of the first silicon layer 105 in the first region R1 is low, and it is difficult to peel off from the first adhesive. Therefore, peeling of the first adhesive layer 106 and the first silicon layer 105 in the first region R1 is suppressed when the label is separated, and the second resin layer 107 separated via the cutting portion 110 can be peeled off together with the first resin layer 104 to form the take-out opening 5 of the sheet 41. Furthermore, in the second region R2, since the basis weight of the first silicon layer 105 is high, the first adhesive layer 106 and the first silicon layer 105 can be separated.Therefore, when the label 100 is separated, the first silicone layer 105 and the first adhesive layer 106 are peeled off in the second region R2, and the first silicone layer 105 is peeled off together with the first resin layer 104 to expose the first adhesive layer 106. By exposing the first adhesive layer 106 around the label opening 125, the bag body 20 after the label opening 125 is formed can be adhered to the exterior body 3 or the like via the first adhesive layer 106, and the sheet 41 can be held hygienically.
[0064] Although the present invention has been described in detail using the above-mentioned embodiment, it is clear to those skilled in the art that the present invention is not limited to the embodiment described in this specification. The present invention can be implemented in modified and altered forms without departing from the spirit and scope of the present invention defined by the description of the claims. Therefore, the description in this specification is intended to be illustrative and does not have any limiting meaning on the present invention. [Explanation of symbols]
[0065] 2: Sheet packaging 4: Aggregate 41:Sheet 5: Outlet 20: Bag body 22: Bag opening 26: Cutting section 100 : Label 101: Outer layer 102:Outer adhesive layer 103: Printing layer 104: 1st resin layer 105: First silicon layer 106: 1st adhesive layer 107: Second resin layer 108:Second adhesive layer 109: Second silicon layer 110: Cutting section 125: Label opening P: Opening direction P1: Upstream P2: Downstream side R1: 1st area R2: 2nd area R3: Region 3 R4: Region 4 R5: Region 5 T101: Inner side (pouch side) T102: Outer side
Claims
1. A sheet packaging body including an assembly of a plurality of sheets, a bag body for packaging the assembly and having a bag opening that constitutes an outlet for the sheets, and a label covering the bag opening and releasably attached to a surface of the bag body, The label comprises: A first resin layer; a silicon layer abutting against a surface of the first resin layer facing the bag body and having silicon; a first adhesive layer in contact with a surface of the silicon layer facing the bag body and having a first adhesive; a second resin layer in contact with a surface of the first adhesive layer facing the bag body; a cut portion for forming a label opening that constitutes an outlet for the sheet, the cut portion is not formed in the first resin layer but is formed in the second resin layer, a label opening is formed by pulling the first resin layer from the upstream side to the downstream side in a tear-opening direction, whereby a part of the second resin layer is separated through the cut portion, and the separated part of the second resin layer is peeled off together with the first resin layer, The label has a first region extending downstream from an upstream edge of the cut portion in the opening direction, and a second region extending downstream from a downstream edge of the cut portion in the opening direction, the silicon layer and the first adhesive layer are provided in the first region and the second region, A sheet packaging body, wherein the basis weight of the silicon in the first region is lower than the basis weight of the silicon in the second region.
2. The label has a third region extending downstream from an upstream edge of the label in the tearing direction, The third region is provided with the silicon layer instead of the first adhesive layer, The sheet packaging body according to claim 1 , wherein the second resin layer and the silicone layer are peelably overlapped in the third region.
3. The label has a fourth region extending upstream from an upstream edge of the cut portion in the opening direction to the third region, the silicon layer is provided in the fourth region, The sheet packaging body according to claim 2 , wherein a basis weight of the silicon in the fourth region is higher than a basis weight of the silicon in the first region.
4. The sheet packaging body according to claim 3 , wherein the first adhesive layer is provided in the fourth region.
5. The sheet packaging body according to claim 1 , wherein the silicon layer is arranged in a plurality of regions each having a rectangular shape in a plan view in the first region.
6. an area ratio of silicon of the silicon layer in the first region is 40% or less; The sheet packaging body according to claim 1 , wherein an area ratio of silicon in the silicon layer in the second region is 50% or more.
7. the label has a fifth region disposed around the cut portion downstream of the first region in the tearing direction and upstream of the second region in the tearing direction, the silicon layer is provided in the fifth region, The sheet packaging body according to claim 1 , wherein a basis weight of the silicon in the fifth region is higher than a basis weight of the silicon in the first region.
8. the label includes a second adhesive layer in contact with a surface of the second resin layer facing the bag body and having a second adhesive, and a second silicone layer in contact with a surface of the second adhesive layer facing the bag body and having silicone, The label has a third region extending downstream from an upstream edge of the label in the tearing direction, The second adhesive layer is provided across the first region and the third region, The sheet packaging body according to claim 1 , wherein the second silicon layer is not provided in the third region but is provided in the first region.
9. the label has a second adhesive layer in contact with the bag body side surface of the second resin layer and having a second adhesive, The sheet packaging body according to claim 1 , wherein an adhesive strength of the first adhesive is higher than an adhesive strength of the second adhesive.
10. A label for packaging that is peelably attached to a surface of a bag for packaging an assembly of a plurality of sheets and that covers an opening of the bag in an openable and closable manner, The label comprises: A first resin layer; a silicon layer abutting against a surface of the first resin layer facing the bag body and having silicon; a first adhesive layer in contact with a surface of the silicon layer facing the bag body and having a first adhesive; a second resin layer in contact with a surface of the first adhesive layer facing the bag body; a cut portion for forming a label opening that constitutes an outlet for the sheet, the cut portion is not formed in the first resin layer but is formed in the second resin layer, a label opening is formed by pulling the first resin layer from the upstream side to the downstream side in a tear-opening direction, whereby a part of the second resin layer is separated through the cut portion, and the separated part of the second resin layer is peeled off together with the first resin layer, The label has a first region extending downstream from an upstream edge of the cut portion in the opening direction, and a second region extending downstream from a downstream edge of the cut portion in the opening direction, the silicon layer and the first adhesive layer are provided in the first region and the second region, A label for a package, wherein the basis weight of the silicone in the first region is lower than the basis weight of the silicone in the second region.