Paper container with spout

The spouted paper container addresses liquid rippling and material waste by using angled gable roof panels and inward folding lines to guide liquid flow, achieving a smaller spout and reduced material use.

JP7749162B2Active Publication Date: 2025-10-03NIPPON PAPER IND CO LTD
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Patent Information

Application Number
JP2025518110
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Priority Date
2023-05-02
Filing Date
2024-03-27
Publication Date
2025-10-03
Estimated Expiration
2044-03-27

AI Technical Summary

Technical Problem

Conventional spouted paper containers with small stoppers face issues of liquid rippling and spillage due to the interaction of liquid and air at the spout, limiting the spout size and requiring excessive material use.

Method used

The spouted paper container design features gable roof panels with an inclination angle of 35 to 55 degrees and arc-shaped inward folding lines, along with a protrusion to guide liquid flow, reducing spout diameter and preventing rippling.

Benefits of technology

The design effectively prevents liquid rippling and allows for a smaller spout diameter while minimizing material usage and preventing deformation, enhancing pouring ease and reducing environmental impact.

✦ Generated by Eureka AI based on patent content.

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Abstract

In order to obtain a mouth-spout-equipped paper container capable of reducing the size of a mouth spout and effectively preventing the wave of a liquid flowing through the mouth spout at the time of pouring the liquid, provided is a mouth-spout-equipped gable-top-type paper container 1, in which one of a pair of gable-top-forming panels 10, 11 forming a top portion 16 has a mouth spout 18 attached thereon, wherein the inclination angle of the pair of gable-top-forming panels forming the top portion is set to 35-55 degrees.
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Description

[Technical Field]

[0001] The present invention relates to a paper container with a spout for containing liquids such as milk and juice. [Background technology]

[0002] A widely used paper container for holding liquids such as milk or juice is a gable roof-type stoppered paper container made of paperboard material laminated with thermoplastic resin on the front and back surfaces, with four body panels, the edges of which are joined by vertical seal panels to form the body, with a pair of opposing gable roof-forming panels each having an outer top seal panel at its upper end, and a pair of opposing gable wall-forming panels each having an inner top seal panel at its upper end, connected to the upper ends of the body panels, the pair of gable wall-forming panels being folded between the pair of gable roof-forming panels, and the outer top seal panel and the inner top seal panel being heated and sealed at predetermined positions to form the top, with a stopper attached to one of the pair of gable roof-forming panels (see, for example, Patent Document 1). In such spouted paper containers, the spouts are generally made of resin.

[0003] Currently, there is a growing demand to reduce the use of resin as much as possible in view of the environmental pollution caused by the disposal of resin products, and there is a demand for smaller stoppers in the case of paper containers with stoppers. Conventional paper containers with stoppers generally have a body angle of around 70 mm and a top inclination angle of around 30 degrees, and stoppers with a diameter (the diameter of the part of the stopper through which the liquid flows out) of 20 mm to 30 mm are widely used. [Prior art documents] [Patent documents]

[0004] [Patent Document 1] Japanese Patent Application Publication No. 9-226755 Summary of the Invention [Problem to be solved by the invention]

[0005] As mentioned above, even in spouted paper containers, miniaturization of the stoppers is desirable from the viewpoint of environmental pollution, but miniaturizing the stopper also reduces the diameter of the stopper. However, if the diameter of the stopper is small, the liquid that flows toward the stopper when the liquid is being dispensed is likely to fill and block the inside of the stopper, and the liquid trying to come out of the stopper and the air trying to enter the paper container through the stopper push against each other, and the liquid flowing inside the stopper is pushed by the air trying to enter the paper container, causing the liquid dispensed from the stopper to have irregular wavy motions, which can lead to spills from a cup or the like, making it impossible to expect normal liquid dispensing, and also restricting the amount of liquid that can be dispensed.

[0006] As a result of extensive testing and research to resolve the above-mentioned problems while making the plug smaller, the inventors focused on the inclination angle of the gable roof forming panel that forms the top to which the plug is attached, and completed the present invention.

[0007] An object of the present invention is to provide a paper container with a spout that has a small spout and that can effectively prevent rippling of liquid flowing inside the spout when the liquid is poured out. [Means for solving the problem]

[0008] In order to achieve the above object, the invention described in claim 1 provides a gable roof-type stoppered paper container made of a paperboard material laminated with a thermoplastic resin on both sides, with four body panels, the edges of which are joined by vertical seal panels to form the body, a pair of opposing gable roof forming panels each having an outer top seal panel at its upper end, and a pair of opposing gable wall forming panels each having an inner top seal panel at its upper end, which are connected to the upper ends of the body panels, the pair of gable wall forming panels being folded between the pair of gable roof forming panels, and the outer top seal panel and the inner top seal panel being heated and sealed at predetermined positions to form a top, and a stopper being attached to one of the pair of gable roof forming panels, in which the inclination angle of the pair of gable roof forming panels that form the top is between 35 degrees and 55 degrees, and the folding lines formed on the pair of gable wall forming panels are arc-shaped and curved inward in order to fold the pair of gable wall forming panels between the pair of gable roof forming panels. The pair of gable wall forming panels and the upper ends of the body panel are connected via a top horizontal fold line, the top horizontal fold line is downwardly arcuate, a protrusion is formed between the pair of gable wall forming panels and the body panel with the top horizontal fold line as its apex, and the depth of the top horizontal fold line from an imaginary line connecting the upper ends of both sides of the body panel to which the gable wall forming panels are connected is 5% to 15% of the width of the body panel. It is characterized by:

[0009] According to the invention of claim 1, the pair of gable roof forming panels that form the top are inclined at an angle of 35 degrees or more, which is greater than that of a conventional paper container with a top inclination angle of about 30 degrees, and the angle between the pair of gable roof forming panels and the body panel to which the pair of gable roof forming panels are connected is gentler.This means that when tilting the spouted paper container to pour liquid, the container must be tilted at a greater angle than a conventional spouted paper container.As a result, liquid is prevented from flowing suddenly near the spout, making it easier for air to enter the spouted paper container.This effectively prevents rippling of liquid poured from the spout, making it possible to reduce the diameter of the spout and, therefore, the size of the spout.

[0010] Furthermore, because the inclination angle of the pair of gable roof forming panels is 55 degrees or less, it is possible to prevent the angle at which the spouted paper container must be tilted too deeply before the liquid flows into the spout, making it difficult to pour the liquid, or the height of the top being too high, resulting in wasted space inside the spouted paper container, and even to prevent an increase in the amount of paper material used. Furthermore, because the folding lines formed on the pair of gable wall forming panels are arc-shaped and curve inward, when the paper container is formed from paperboard material, the arc-shaped folding edges of the pair of gable wall forming panels folded from the folding lines protrude toward the spout, and this protruding portion guides the liquid in the spouted paper container toward the spout when liquid is poured, making it easier to pour the liquid from the spout. The pair of gable wall-forming panels and the upper ends of the body panel are connected via a top horizontal fold line, which forms a downward arc. This creates a larger, more gradual angle between the pair of gable wall-forming panels and the body panel to which they are connected than if the top horizontal fold line were straight. This facilitates guiding the liquid inside the spout-equipped paper container toward the spout, facilitating the pouring of the liquid from the spout. Furthermore, a protrusion is formed between the pair of gable wall-forming panels and the body panel, with the top horizontal fold line as its apex. In conventional paper containers, the bottom of the carton would swell under the weight of the liquid after filling (a phenomenon known as "body bulge"). This protrusion prevents deformation of the body 7. Furthermore, in recent years, there has been a demand for a reduction in the basis weight of the paperboard material in order to conserve resources. This protrusion makes it possible to suppress body bulge even when the base paper basis weight is reduced. Furthermore, the depth from the imaginary line connecting the upper ends of both sides of the body panel to which the pair of gable wall forming panels are connected at the top horizontal fold line is 5% or more of the width of the body panel, so the angle formed by the pair of gable wall forming panels and the body panel is a more preferable angle for guiding the liquid in the spout-equipped paper container toward the spout when the liquid is poured.

[0017] Furthermore, since the depth from the virtual line at the top horizontal fold line is 15% or less of the width of the body panel, the protrusion with the top horizontal fold line as its apex between the pair of gable wall forming panels and the body panel is not large, and there is almost no risk of it interfering with adjacent paper containers during transportation, for example, and the interfering parts rubbing against each other and causing scratches. [Effects of the Invention]

[0018] As described above, the spouted paper container according to the present invention can reduce the size of the spout and effectively prevent rippling of the liquid flowing inside the spout when the liquid is poured out. [Brief explanation of the drawings]

[0019] [Figure 1] 1 is a front view showing an example of an embodiment of a spouted paper container according to the present invention. [Figure 2] FIG. 2 is a side view of FIG. [Figure 3] FIG. 2 is an explanatory development view of the spouted paper container shown in FIG. [Figure 4] An explanatory diagram showing the folded end of the gable wall forming panel peeking into the opening of the plug attached to the gable roof forming panel. [Figure 5] 4 is an explanatory diagram showing another example of the top horizontal fold line shown in FIG. 3. FIG. [Figure 6] 2 is an explanatory diagram comparing the inclination of the spouted paper container shown in FIG. 1 with that of a conventional spouted paper container at the start of liquid dispensing. DETAILED DESCRIPTION OF THE INVENTION

[0020] DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS Hereinafter, embodiments of the spouted paper container according to the present invention will be described in detail with reference to the drawings. Figures 1 to 5 show an example of an embodiment of a spouted paper container according to the present invention, where Figure 1 is a front view of the spouted paper container of this example, Figure 2 is a side view of Figure 1, Figure 3 is an explanatory view of an expanded spouted paper container shown in Figure 1, Figure 4 is an explanatory view showing the folded end of the gable wall forming panel visible within the opening of the spout attached to the gable roof forming panel, Figure 5 is an explanatory view showing another example of the top horizontal fold line shown in Figure 3, and Figure 6 is an explanatory view comparing the inclination of the spouted paper container shown in Figure 1 when liquid pouring begins with that of a conventional spouted paper container.

[0021] The spouted paper container 1 of this example is made of a paperboard material with a thermoplastic resin laminated on the front and back surfaces, and has four body panels 2, 3, 4, and 5, the edges of which are joined by a vertical seal panel 6 to form a body 7. In this example shown in Figures 1 to 5, the width of the body panels 2, 3, 4, and 5 is 70 mm, which is a common body square dimension, and in the present invention, panels with a square dimension of 40 to 75 mm are preferably used.

[0022] A pair of gable roof forming panels 10, 11 are connected to the upper ends of the body panels 2, 4, and each panel has outer top seal panels 8, 9 at its top, facing each other. Also, a pair of gable wall forming panels 14, 15 are connected to the upper ends of the body panels 3, 5, and each panel has inner top seal panels 12, 13 at its top, facing each other. The gable wall forming panels 14, 15 are folded between the gable roof forming panels 10, 11, and the outer top seal panels 8, 9 and the inner top seal panels 12, 13 are heated and sealed in place to form a gable roof apex 16. One of the gable roof forming panels 10, 11 that forms the apex 16, in this case gable roof forming panel 11, is formed with a plug mounting hole 17 and a plug 18 is attached.

[0023] In this example, the inclination angle θ1 of the gable roof forming panels 10, 11 that form the top 16 is between 35 degrees and 55 degrees.

[0024] In addition, the gable wall forming panels 14, 15 are formed with folding lines 19, 20, 21, 22 for folding the gable wall forming panels 14, 15 between the gable roof forming panels 10, 11. In this example, the folding lines 19, 20, 21, and 22 are arc-shaped and curve inward. The curvature of the folding lines 19, 20, 21, and 22 is not particularly limited, but is preferably such that when the gable wall forming panels 14 and 15 are folded along the folding lines 19, 20, 21, and 22, the folded end A formed by the folding lines 19, 20, 21, and 22 is positioned near the opening of the plug 18 attached to the gable roof forming panel 11 or slightly peeks into the opening (when viewed from the front, the folded end A can be seen by 5 mm or less). In this example, the curvature of the folding lines 19, 20, 21, and 22 is such that the folded end A of the gable wall forming panels 14 and 15 is slightly peeks into the opening of the plug 18 (see FIG. 4).

[0025] In this example, the adjacent gable wall forming panels 14, 15 and the body panels 3, 4 are separated by top horizontal fold lines 23, 24, which are downward arcs that curve downward. This creates a protrusion with the top horizontal fold lines 23, 24 as its apex between the gable wall forming panels 14, 15 and the body panels 3, 4 (see Figure 1).

[0026] In conventional paper containers, the bottom of the carton swells due to the weight of the liquid after filling (the so-called "bulging"), which causes a loss of appearance, but the presence of this protrusion prevents deformation of the body 7. In recent years, there have been cases where a reduction in the basis weight of the paperboard material is required from the perspective of resource conservation, but this protrusion has the advantage of making it possible to suppress bulging even if the basis weight of the base paper is reduced. Conventional paper containers have a basis weight of 300 g / m 2 Generally, a paperboard material with a basis weight of 300 g / m2 or more is used. 2 It is possible to use a paperboard material with a basis weight of less than 200 g / m 2 More than 400g / m 2 A paperboard stock of less than 250 g / m may be used, more preferably 2 More than 350g / m 2 A paperboard stock of less than 250 g / m may be used, with a basis weight of 250 g / m being particularly preferred. 2 More than 300g / m 2 A paperboard stock of less than 100 mm can be used. On the other hand, if a protrusion is present, the container may come into contact with an adjacent container during transportation or when the container is displayed for sale, and the contacted area may be scratched or scratched.

[0027] In this example, the top horizontal fold lines 23, 24 are continuous downward arcs from their start point to their end point, but this is not limited to this, and the center of the top horizontal fold lines 23, 24 can also be discontinuous as shown in Figure 5. This reduces the occurrence of protrusions with the top horizontal fold lines 23, 24 as apexes between the gable wall forming panels 14, 15 and the body panels 3, 4.

[0028] The depth D from an imaginary line L connecting the upper ends of both sides of the body panels 3,5 to which the gable wall forming panels 14,15 are connected at the top horizontal fold lines 23,24 is 5% to 15% of the width S of the body panels 3,5.

[0029] In addition, in this example, as described above, the body panels 3, 5 and the gable wall forming panels 14, 15 connected to the upper ends of the body panels 3, 5 are separated by top horizontal fold lines 23, 24, but there are no top horizontal fold lines between the body panels 2, 4 and the gable roof forming panels 10, 11 connected to the upper ends of the body panels 2, 4, and they are connected without a partition.

[0030] Therefore, the boundary between the gable roof forming panels 10, 11 that form the top 16 formed by folding the gable wall forming panels 14, 15 between the gable roof forming panels 10, 11 and the body panels 2, 4 that form the body 7 has an arc-shaped bend at the part where the gable roof forming panels 10, 11 are connected to the upper ends of the body panels 2, 4 (see Figure 1).

[0031] According to the spouted paper container 1 configured as described above, the inclination angle θ1 of the gable roof forming panels 10, 11 that form the top 16 is set to 35 degrees or more, so that the inclination angle is larger than, for example, a conventional spouted paper container 100 in which the inclination angle θ2 of the gable roof forming panels 102, 103 that form the top 101 is about 30 degrees, and the angle between the gable roof forming panels 10, 11 and the body panels 2, 4 to which the gable roof forming panels 10, 11 are connected is gentler. Therefore, when tilting the spouted paper container 1 to pour liquid, it must be tilted to a deeper angle than the conventional spouted paper container 100 in order to pour liquid (see Figure 6). Figure 6 compares the tilt angle (pour start angle) θ3 of the spouted paper container 1 of this example when tilted until liquid pours from the spout 18 with the tilt angle (pour start angle) θ4 of the conventional spouted paper container 100 when tilted until liquid pours from the spout 18, using the spouted paper container 1 of this example when the inclination angle θ1 of the gable roof forming panels 10, 11 is 50 degrees and the spouted paper container 100 when tilted until liquid pours from the spout 18, with the spouted paper container 1 of this example when tilted until liquid pours from the spout 18 with the spouted paper container 100 when tilted until liquid pours from the spout 18.

[0032] As a result, the liquid content is prevented from flowing all at once near the spout, effectively preventing the inside of spout 18 from being filled and blocked by liquid flowing toward spout 18 when the liquid is being poured, and it becomes easier for air to be taken in from spout 18 into spouted paper container 1. This effectively prevents the liquid poured from spout 18 from rippling, making it possible to reduce the diameter of spout 18, which in turn allows for the spout 18 to be made smaller, and in addition, the area of ​​gable wall forming panels 14, 15 is larger than that of conventional containers, making it easier for consumers to take it out of the display shelf when purchasing.

[0033] Specifically, with regard to the diameter of the stopper 18, in the present invention, even when a stopper with a diameter of 25 mm or less is used, rippling of the liquid can be effectively suppressed. If the diameter is too small, rippling of the liquid will occur, so in the present invention, it is preferable to use a stopper with a diameter of 15 mm to 25 mm, and more preferably a stopper with a diameter of 20 mm to 25 mm.

[0034] If the inclination angle θ1 of the gable roof forming panels 10, 11 that form the top 16 is less than 35 degrees, the angle at which the spouted paper container 1 is tilted (the pouring start angle) until the liquid flows into the spout 18 becomes shallow, making it easier for the liquid to flow all at once near the spout 18, making it difficult to reduce the diameter of the spout 18.

[0035] The angle at which the spouted paper container 1 is tilted until the liquid is poured from the spout 18, i.e., the pouring start angle, is determined by the inclination angle θ1 of the gable roof forming panels 10, 11, and the pouring start angle θ3 is preferably 55 degrees or more and less than 70 degrees, and particularly preferably 55 degrees or more and less than 65 degrees. Even when using a spout with a relatively small diameter of 20 mm or more and 25 mm or less, rippling and splashing are less likely to occur, improving ease of pouring.

[0036] The ease of pouring liquid was tested for the examples of the present invention and the comparative examples below, and the test results are shown in Table 1. Ease of pouring evaluation ○: It was easy to pour. △: It was difficult to pour.

[0037] [Table 1]

[0038] Furthermore, the inclination angle θ1 of the gable roof forming panels 10, 11 that form the top 16 is set to 55 degrees or less, which prevents the angle at which the spouted paper container 1 is tilted too deeply before the liquid flows into the spout 18, making it difficult to pour the liquid, and also prevents the height of the top 16 from becoming too high, resulting in wasted space within the spouted paper container 1 and, further, increasing the amount of paper material used.

[0039] If the inclination angle θ1 of the gable roof forming panels 10, 11 exceeds 55 degrees, it becomes difficult to pour the liquid, wasteful space is generated inside the spouted paper container 1, and more paper material is used.

[0040] In addition, in this example, in order to fold the gable wall forming panels 14, 15 between the gable roof forming panels 10, 11, the folding lines 19, 20, 21, 22 formed on the gable wall forming panels 14, 15 are arc-shaped and curve inward, so that the arc-shaped folding edge portion A of the gable wall forming panels 14, 15 folded from the folding lines 19, 20, 21, 22 protrudes toward the stopper 18, and this protruding portion guides the liquid in the spout-equipped paper container 1 toward the stopper 18 when the liquid is poured, making it easier to pour the liquid from the stopper 18.

[0041] In addition, in this example, the top horizontal fold lines 23, 24 connecting the gable wall forming panels 14, 15 and the body panels 3, 5 are downward arc-shaped, so the angle between the gable wall forming panels 14, 15 and the body panels 3, 5 is larger and gentler than if the top horizontal fold lines 23, 24 were straight lines.As a result, when pouring liquid, it is easier to guide the liquid in the spout-equipped paper container 1 toward the spout 18, making it easier to pour the liquid from the spout 18.

[0042] In addition, in this example, the depth D from the imaginary line L connecting the upper ends of both sides of the body panels 3, 5 to which the gable wall forming panels 14, 15 are connected at the top horizontal fold lines 23, 24 is 5% or more of the width S of the body panels 3, 5, so the angle formed by the gable wall forming panels 14, 15 and the body panels 3, 5 is a more preferable angle for guiding the liquid in the spouted paper container 1 toward the spout 18 when the liquid is poured.

[0043] If the depth D from the imaginary line L at the top horizontal fold lines 23, 24 is less than 5% of the width S of the body panels 3, 5, it will be close to the angle formed by the gable wall forming panels 14, 15 and the body panels 3, 5 when the top horizontal fold lines 23, 24 are straight, and will not be a satisfactory angle for guiding the liquid in the spouted paper container 1 toward the spout 18 when the liquid is poured.

[0044] Furthermore, since the depth D from the imaginary line L at the top horizontal fold lines 23, 24 is 15% or less of the width S of the body panels 3, 5, there is almost no risk that the protrusion with the top horizontal fold lines 23, 24 as its apex between the gable wall forming panels 14, 15 and the body panels 3, 5 will interfere with an adjacent spouted paper container 1, for example, during transportation, causing the interfering parts to rub against each other and cause scratches.

[0045] If the depth D from the imaginary line L at the top horizontal fold lines 23, 24 exceeds 15% of the width S of the body panels 3, 5, the protrusion with the top horizontal fold lines 23, 24 as its apex will become large, causing interference with adjacent spouted paper containers 1, and the interfering parts may rub against each other, resulting in scratches.

[0046] In this example, the top horizontal fold lines 23, 24 are downward arc-shaped and continuous from their starting point to their end point. However, by making the central portions of the top horizontal fold lines 23, 24 discontinuous as shown in Figure 5, the occurrence of protrusions with the top horizontal fold lines 23, 24 as the apex between the gable wall forming panels 14, 15 and the body panels 3, 4 is reduced, thereby further reducing interference with adjacent spout-equipped paper containers 1 during transportation. [Explanation of symbols]

[0047] 1 Paper container with spout 2,3,4,5 Body Panels 6 Vertical Seal Panels 7. Torso 8,9 Outer top seal panel 10,11 Gable roof forming panel 12,13 Inner top seal panel 14,15 Gable wall forming panel 16 Top 17. Plug mounting hole 18 Stopper 19, 20, 21, 22 Folding lines 23,24 Top horizontal fold line 100 Conventional paper container with spout 101 Top 102,103 Gable roof forming panel L Virtual Line D Depth from the imaginary line at the top horizontal fold line S Body width θ1 inclination angle of the gable roof forming panel of the present invention θ2: Inclination angle of conventional gable roof forming panels θ3: Inclination angle of the spouted paper container of the present invention at the start of liquid pouring θ4: Inclination angle of a conventional paper container with a stopper when liquid begins to pour

Claims

[Claim 1] A gable roof-type paper container with a stopper is made of paperboard material laminated with thermoplastic resin on both sides, has four body panels, and the edges are joined by vertical seal panels to form the body, and a pair of opposing gable roof forming panels each having an outer top seal panel at its upper end and a pair of opposing gable wall forming panels each having an inner top seal panel at its upper end are connected to the upper ends of the body panels, and the pair of gable wall forming panels are folded between the pair of gable roof forming panels, and the outer top seal panel and the inner top seal panel are heated and sealed at predetermined positions to form a top, and a stopper is attached to one of the pair of gable roof forming panels. The inclination angle of the pair of gable roof forming panels forming the top is set to 35 degrees or more and 55 degrees or less, In order to fold the pair of gable wall forming panels between the pair of gable roof forming panels, the folding lines formed on the pair of gable wall forming panels are arc-shaped, curving inward, and the upper ends of the pair of gable wall forming panels and the body panel are connected via a top horizontal fold line, which is downwardly arc-shaped, and a protrusion is formed between the pair of gable wall forming panels and the body panel, with the top horizontal fold line as its apex. A paper container with a stopper, characterized in that the depth from an imaginary line connecting the upper ends of both sides of the body panel to which the gable wall forming panel is connected at the top horizontal fold line is 5% to 15% of the horizontal width of the body panel.

Citation Information

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