Spouted pouch
11358772 · 2022-06-14
Assignee
Inventors
Cpc classification
B65D75/566
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
Provided is a spouted pouch capable of improving the ability to suspend pouring liquid contents, the ease of adjusting a pouring force, and the ease of repouring. In the spouted pouch (10), a pouch body (20) has flow path control seal portions (22) formed on both left and right sides across an imaginary line A inside the outer edge seal portion (21). Assuming that a thickness dimension of the spout attachment base portion (31a) is taken as X, length dimension from the spout attachment base portion (31a) to the action point portion (22a) of flow path control seal portions (22) is taken as L, and a width dimension between the action point portions (22a) is taken as W, the thickness dimension X, the length dimension L, and the width dimension W are set so as to satisfy relationships of W/X=1.2 to 2.0 and L/X=0.3 to 1.5.
Claims
1. A spouted pouch comprising: a pouch body comprising a front film and a back film, a spout body attached to the pouch body, and a spout attached to the spout body, wherein: the pouch body has a first outer edge seal portion and a second outer edge seal portion formed on opposite sides of the spout body across an imaginary line extending along a center axis of the spout body, the first outer edge seal portion comprises a first oblique edge seal portion, a first side edge seal portion, an upper edge seal portion connecting the first oblique edge seal portion and the first side edge seal portion, and a first flow path control seal portion extending continuously from the first oblique edge seal portion toward an inside of the first outer edge seal portion, the second outer edge seal portion comprises a second oblique edge seal portion, a second side edge seal portion connecting directly to the second oblique edge seal portion, and a second flow path control seal portion extending continuously from the second oblique edge seal portion toward an inside of the second outer edge seal portion, the first and second oblique edge seal portions extend from the opposite sides of the spout body in a direction perpendicular to the imaginary line, the first and second side edge seal portions extend along a length of the pouch body, each of the first and second flow path control seal portions has an action point portion that is located at a position farthest from the spout body in an extending direction of the imaginary line, out of portions closest to the imaginary line, the spout body has a spout attachment base portion that is attached to a part of the outer edge seal portion such that the spout attachment base portion is interposed between the front film and the back film, the first and second flow path control seal portions abut the spout attachment base portion of the spout body, assuming that a thickness dimension of the spout attachment base portion in a direction orthogonally crossing a plane direction of the pouch body is taken as X, length dimension from the spout attachment base portion to the action point portion in the extending direction of the imaginary line is taken as L, and a width dimension between the action point portions of the first and second flow path control seal portions in a direction orthogonally crossing the imaginary line is taken as W, the thickness dimension X, the length dimension L, and the width dimension W are set so as to satisfy relationships of W/X=1.2 to 2.0 and L/X=0.3 to 1.5, the first and second flow path control seal portions form a film spaced region in a vicinity of the spout attachment base portion, the film spaced region is defined by a boundary beginning at one of the pair of action point portions and ending at the other of the pair of action point portions, the boundary having a first portion and a second portion that is farther from the spout than the first portion, in the first portion, the front film and the back film of the pouch body are in contact with each other, and in the second portion, the front film and the back film of the pouch body are separated from each other.
2. The spouted pouch according to claim 1, wherein the thickness dimension X, the length dimension L, and the width dimension W are set so as to satisfy relationships of W/X=0.3 L/X+a and a=1.11 to 1.55.
3. The spouted pouch according to claim 2, wherein the thickness dimension X, the length dimension L, and the width dimension W are set to satisfy relationships of W/X=0.045X+0.97 and L/X=0.15X−1.36.
4. The spouted pouch according to claim 1, wherein a thickness of each of the front film and the back film is set to 80 to 210 μm.
5. The spouted pouch according to claim 1, wherein an unsealed portion which communicates with a housing space in the pouch body that contains the liquid contents is formed at a position adjacent to a side portion of at least one of the first and second flow path control seal portions on an opposite side to the imaginary line in the direction orthogonally crossing the imaginary line.
6. The spouted pouch according to claim 1, wherein the width dimension W is narrower than a width of the spout attachment base portion.
7. The spouted pouch according to claim 1, wherein the second portion of the boundary defining the film spaced region is at a distance of from 5 mm to 20 mm from the pair of flow path control seal portions.
8. A spouted pouch, comprising: a pouch body, a spout body attached to the pouch body, and a spout attached to the spout body, wherein: the pouch body has an outer edge seal portion extending from both left and right side of the spout body in a direction perpendicular to an imaginary line extending along a center axis of the spout body, the outer edge seal portion comprising a pair of oblique edge seal portions and a pair of side edge seal portions, the pair of oblique edge seal portions extending from both the left and right sides of the spout body in the direction perpendicular to the imaginary line, and the pair of side edge seal portions being adjacent to the pair of oblique edge seal portions and extending along a length of the pouch body, the pouch body has a pair of flow path control seal portions that extend continuously from the pair of oblique edge seal portions toward an inside of the outer edge seal portion on both the left and right sides of the spout body, an unsealed portion which communicates with a housing space in the pouch body that contains the liquid contents is formed on a side of at least one of the pair of flow path control seal portions opposite from the spout body in a direction orthogonally crossing the imaginary line, each of the pair of flow path control seal portions abuts the spout body, and the unsealed portion abuts the at least one of the pair of flow path control seal portions.
9. The spouted pouch according to claim 8, wherein the unsealed portion is formed on a side of both of the pair of flow path control seal portions opposite from the spout body in the direction orthogonally crossing the imaginary line.
10. The spouted pouch according to claim 8, wherein the pouch body has an attachment edge portion to which the spout is attached at a part of an outer edge of the pouch body, the outer edge seal portion has an attachment seal portion that is formed along the attachment edge portion, and each of the pair of flow path control seal portions is formed continuously with the attachment seal portion that is formed along the attachment edge portion.
11. The spouted pouch according to claim 8, wherein the pouch body is provided with a position mark indicating a position to be pressed with a finger.
12. The spouted pouch according to claim 11, wherein the position mark is formed on the imaginary line so as to include a position located on an inner side in a pouch plane direction away from the pair of flow path control seal portions.
13. The spouted pouch according to claim 12, wherein the position mark is formed around the position as a center.
14. The spouted pouch according to claim 8, wherein the outer edge seal portion further comprises an upper edge seal portion, and a lower edge seal portion, the pair of side edge seal portions are a first side edge seal portion and a second side edge seal portion, the spout is attached at the upper edge seal portion, the first side edge seal portion, or one of the pair of oblique edge seal portions that is formed by cutting a corner between the upper edge seal portion and the first side edge seal portion, and a gripping portion indicating a gripping position of the spouted pouch for a user is provided at the second side edge seal portion.
Description
BRIEF DESCRIPTION OF DRAWINGS
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REFERENCE SIGNS LIST
(18) 10 Spouted pouch
(19) 20 Pouch body
(20) 21 Outer edge seal portion
(21) 21a Upper edge seal portion
(22) 21b Lower edge seal portion
(23) 21c Side edge seal portion (first side edge seal portion, second side edge seal portion)
(24) 21d Oblique edge seal portion (attachment seal portion)
(25) 21e Second oblique edge seal portion
(26) 22 Flow path control seal portion
(27) 22a Action point portion
(28) 23 Unsealed portion
(29) 24 Position mark
(30) 25 Gripping portion
(31) 25a Unsealed portion
(32) 25b Slit
(33) 25c Cut
(34) 25d Hole
(35) 30 Spout
(36) 31 Spout body
(37) 31a Spout attachment base portion
(38) 32 Cap
(39) A Imaginary line
(40) R Film spaced region
DESCRIPTION OF EMBODIMENTS
(41) A spouted pouch 10 according to a first embodiment of the present invention will be described below with reference to the drawings.
(42) As illustrated in
(43) Each constituent element of the spouted pouch 10 will be described below with reference to
(44) First, the pouch body 20 has an overall shape as a standing pouch that includes an upper edge portion, a lower edge portion, a pair of side edge portions (a first side edge portion, a second side edge portion), and an oblique edge portion formed by cutting out a corner between the upper edge portion and one of the side edge portions (the first side edge portion), as illustrated in FIG. 1, which are formed by using laminated films composed of two front and back body materials and a bottom material bent in an inverted V shape to thermally weld the bottom material between the two body materials.
(45) The outer edge seal portion 21 is formed continuously along each edge portion of the body material of the pouch body 20, and includes, as illustrated in
(46) The spout 30 is composed of a spout body 31 and a cap 32, and is attached to the oblique edge portion of the pouch body 20 as illustrated in
(47) In this way, in the present embodiment, the oblique edge portion of the pouch body 20 functions as an attachment edge portion to which the spout 30 is attached, and the oblique edge seal portion 21d functions as an attachment seal portion formed along the attachment edge portion.
(48) As illustrated in
(49) As illustrated in
(50) Each of the flow path control seal portions 22 is formed on the left and right with the imaginary line A as a reference.
(51) As illustrated in
(52) Further, as illustrated in
(53) Next, the effect of the spouted pouch 10 of the present embodiment will be described below with reference to
(54) First, in the present embodiment, the pair of flow path control seal portions 22 are formed on both left and right sides across the imaginary line A. As a result, as illustrated in
(55) In this way, the flow path control seal portions 22 are formed, thereby making it possible to restrict the film opened portions (the portions where the front and back films are separated), in the outer edge of the film spaced region R, to a narrow range which is only the tip side (O positions in the figure) of the outer edge of the film spaced region R far from the spout 30.
(56) Thus, when poring liquid contents is performed for refilling with the liquid contents, it is possible to satisfactorily perform temporary stop of pouring liquid contents (ability to suspend the pouring), ease of adjusting a pouring force the liquid contents, and the like by pressing only the tip side of the outer edge of the film spaced region R (a portion about 5 mm to 20 mm away from the pair of flow path control seal portions 22) with the finger while the pourability at the film spaced region R where the front and back films are separated from each other is maintained.
(57) Further, in the present embodiment, as illustrated in
(58) Further, the unsealed portions 23 are formed at side portions of the respective flow path control seal portions 22 on the opposite sides to the imaginary line A, thereby making it possible to allow the liquid contents to enter at least one of the pair of unsealed portions 23 irrespective of the tilt of spouted pouch 10 when poring liquid contents is performed. Therefore, it is possible to stably obtain the effect of improving the ability to suspend the pouring and the ease of repouring due to the expansion of the unsealed portions 23.
(59) Further, each of the flow path control seal portions 22 is formed continuously with the oblique edge seal portion 21d serving as the attachment seal portion, thereby making it possible to stably ensure the adhesion strength between the front and back films at each of the flow path control seal portions 22. Further, as illustrated in
(60) Next, a spouted pouch 10 according to a second embodiment of the present invention will be described with reference to
(61) In the first embodiment, as illustrated in
(62) In other words, in the second embodiment, the entirety of each of the flow path control seal portions 22 is formed continuously with the upper edge seal portion 21a and the side edge seal portion 21c (which are adjacent to the oblique edge seal portion 21d serving as the attachment seal portion) in the direction orthogonally crossing the imaginary line A.
(63) Next, an experimental example carried out to confirm the relationship between setting of the dimensions of the respective parts of the spouted pouch 10 and the ability to suspend poring liquid contents and the ease of repouring the liquid contents will be described below with reference to
(64) First, in the present experimental example, a length dimension L from the bottom surface of the spout attachment base portion 31a to the action point portion 22a in the extending direction of the imaginary line A and a width dimension W between the action point portions 22a of the pair of flow path control seal portions 22 in the direction orthogonally crossing the imaginary line A were changed to a variety of values as indicated in a table of
(65) Test items and an evaluation method used in the experimental examples are as follows.
(66) <Test Item>
(67) Size of pouch body 20: Standing pouch with width 200 mm×height 300 mm
(68) Layer constitution of the films of pouch body 20: PET (polyethylene terephthalate) of 12 μm/NY (nylon) of 15 μm/PE (polyethylene) of 150 μm, from the outer layer side
(69) Diameter of pouring hole of spout 30: Φ8.6
(70) Thickness dimension X of spout attachment base portion 31a: 11.7 mm
(71) Seal form of oblique edge seal portion 21d of spouted pouch 10: with unsealed portion 23 (
(72) Liquid contents: 1 kg of water
(73) <Evaluation Method>
(74) The ability to suspend the pouring was evaluated as follows: “O” (open circle) for the case where poring liquid contents was stopped and “X” (cross) for the case where poring liquid contents could not be stopped; the ease of repouring was evaluated as follows: “O” for the case where the flow rate of repouring was approximately the same as compared with no flow control seal portion, “Δ” (triangle) for the case where a flow rate of 70% to 80% was maintained during repouring, and “X” for the case where the flow rate of repouring was as low as less than 50%.
(75) The results of the above experimental example are illustrated in
(76) First, it was observed that the thickness dimension X, the length dimension L, and the width dimension W in both the spouted pouches 10 with and without the unsealed portion 23 formed are preferably set to satisfy relationships of W/X=1.2 to 2.0, and L/X=0.3 to 1.5.
(77) That is, in the above case, it was confirmed that satisfactory results can be obtained for both the ability to suspend poring liquid contents and the ease of repouring the liquid contents.
(78) The above ranges of W/X=1.2 to 2.0 and L/X=0.3 to 1.5 are ranges surrounded by thick lines in the table illustrated in
(79) Further, in addition to satisfying the above relationships, it was observed that the thickness dimension X, the length dimension L, and the width dimension W are preferably set to satisfy a relationship of W/X=0.3 L/X+a (a=1.11 to 1.55). In this case, more stable, satisfactory results are obtained for both the ability to suspend the pouring and the ease of repouring.
(80) Further, it was observed that the thickness dimension X, the length dimension L, and the width dimension W are preferably set to satisfy relationships of W/X=0.045X+0.97 and L/X=0.15X−1.36. In this case, more stable, satisfactory results are obtained for both the ability to suspend the pouring and the ease of repouring.
(81) In the experimental example described above, the film thickness of the pouch body 20 is described as being 177 μm (12 μm PET/15 μm NY/150 μm PE). However, in a case where the film thickness of the pouch body 20 is set to 80 μm to 210 μm, it was confirmed that the same result as the experimental results illustrated in
(82) Further, the experimental results illustrated in
(83) The embodiments of the present invention have been described above in detail. However, the present invention is not limited to the above-described embodiments, and various design changes can be made without departing from the invention defined in the claims.
(84) For example, the spouted pouch 10 may be configured by any combination of the respective configurations of the plurality of embodiments described above and a plurality of modified examples described later.
(85) Further, the specific aspect of the pouch body 20 may be of various ways, and its specific examples include a body in which synthetic resin films such as polyester, polypropylene, polyamide, polyethylene, polybutylene terephthalate, or ethylene-vinyl alcohol copolymer, or known synthetic resin films such as coating films or vapor deposition films in which a gas barrier property or moisture barrier property is imparted to the above synthetic resin films, a body formed by laminating sheets of paper or aluminum foil on a synthetic resin film, and the like.
(86) Further, in the above-described embodiments, the spouted pouches 10 have been described as being used for refill containers. However, the specific use of the spouted pouch 10 is not limited to them, and the spouted pouches 10 of the present embodiments may be used as, for example, containers, not to be used for refilling, for containing water, seasoning, and the like.
(87) Further, in the above-described embodiments, the pouch body 20 has been described as having a whole shape having the upper edge portion, the lower edge portion, the pair of side edge portions, and the oblique edge portion. However, the specific shape of the pouch body 20 is not limited to them, and the pouch body 20 may have any shape such as, for example, a square shape or a trapezoidal shape as a whole shape, an irregular shape partially ragged, or the like. Further, additional processing may be made in the vicinity of the spout 30 so as to facilitate the work of pressing the tip side of the outer edge of the film spaced region R with the fingers when refilling with the liquid contents is performed. For example, as illustrated in
(88) Further, in the above-described embodiments, the pouch body 20 has been described as being of a standing pouch type. However, it may have various forms such as a pillow type pouch, a gusset type pouch, a flat pouch and the like. Further, as in the above-described embodiments, all (four sides) of the edge portion of the laminated films maybe thermally welded, or in the case where the pouch body 20 is formed by folding one laminated film, and the like, two or three sides of the edge may be thermally welded without thermally welding the other portion of the edge.
(89) In the above-described embodiments, the spout 30 has been described as being attached at the oblique edge portion of the pouch body 20 as illustrated in
(90) Further, in the above-described embodiments, the unsealed portions 23 have been described as being formed adjacent to the respective flow path control seal portions 22. However, as illustrated in
(91) Further, in the above-described embodiments, each of the flow path control seal portions 22 has been described as being formed continuously with the attachment seal portion (the oblique edge seal portion 21d). However, the specific aspect of the flow path control seal portion 22 is not limited to this, and as illustrated in
(92) Further, in the above-described embodiments and modified examples, each of the flow path control seal portions 22 has been described as being composed of one seal portion which is continuous with or independent from the attachment seal portion. However, each of the flow path control seal portions 22 may be composed of two or more seal portions which are continuous with or independent from the attachment seal portion.
(93) Further, the specific shape of the flow path control seal portion 22 may be any shape, and for example, in the example illustrated in
(94) Further, in the above-described embodiments, each of the flow path control seal portions 22 is formed on the left and right with respect to the imaginary line A as a reference. However, each of the flow path control seal portions 22 may be symmetric or different on both sides.
(95) Further, as a modified example, as illustrated in
(96) Further, in the present embodiment, the spout attachment base portion 31a has described as having a rhombus shape. However, the spout attachment base portion 31a may have any known shape.
(97) Further, as a modified example, as illustrated in
(98) The forming position of the gripping portion 25 may be any position as long as it can guide the user on how to hold the spouted pouch 10, but when the spout 30 is attached at the oblique edge portion formed at the corner between the upper edge portion and the first side edge portion, the upper edge portion (in particular, a portion closer to the first side edge portion than to the center of the upper edge portion), or the first side edge portion (in particular, a portion closer to the center of the upper edge portion than to the first side edge portion), the gripping portion 25 is preferably formed at the second side edge seal portion 21c, and in particular, preferably formed at a portion closer to the lower edge portion 21b than to the center of the second side edge seal portion 21c so that the center of the gripping portion 25 or the entire gripping portion 25 is positioned, as illustrated in
(99) In addition, when a position A in
(100) Further, the specific aspect of the gripping portion 25 may be anything as long as it allows the user to easily grip the spouted pouch 10. For example, as illustrated in
(101) Further, as illustrated in
(102) Further, as illustrated in
(103) Further, in the above-described embodiments, the distances (L) from the spout attachment base portion 31a to the respective action point portions 22a on the left and right sides in the extending direction of the imaginary line A have been described as being equal. However, each of the action point portions 22a may be shifted in the extending direction of the imaginary line A.