Individual boxes

The packaging box design secures closure without a tamper seal and allows tool-assisted opening for reuse, addressing damage issues in conventional designs.

JP7786393B2Active Publication Date: 2025-12-16JVC KENWOOD CORP
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Patent Information

Application Number
JP2022568167
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Priority Date
2020-12-09
Filing Date
2021-11-24
Publication Date
2025-12-16
Estimated Expiration
2041-11-24

AI Technical Summary

Technical Problem

Conventional individual packaging boxes that prevent tampering using an insert piece and flaps can be damaged or deformed when opened, making them unusable for reuse.

Method used

A packaging box design with a main body, top and outer flaps, and a non-linear slit in the inner flap, allowing the box to be closed securely without a tamper seal, and opened using a dedicated tool without damaging the flaps or deforming the box.

Benefits of technology

Prevents tampering and allows secure closure without a seal, while enabling opening for item removal without damaging the box, facilitating reuse.

✦ Generated by Eureka AI based on patent content.

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Abstract

An individual packaging box (1) is provided with a main body (3) that has a first side panel (31a) and a second side panel (31c) that face one another. In a state where a top panel (5) has closed over an opening (11) and an inner flap (7) is located on an inner surface side of the second side panel (31c), when a distal end part (21) is deformed so as to match the shape of a slit (23) and passed through the slit (23) to enter the interior of the main body (3), the distal end part (21) reverts once in the interior of the main body (3). The foregoing makes it impossible to pull out the distal end part from the interior of the main body (3) to the exterior of the main body (3) through the slit (23), and the top panel (5) thus maintains the state of having closed over the opening (11). The top panel (5) has formed thereon through holes (17) for inserting, into the interior of the main body (3), an opening tool (25) for deforming the distal end part (21) that has reverted in the interior of the main body (3), so that the distal end part matches the shape of the slit (23).
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Description

[Technical Field]

[0001] The present disclosure relates to individual packaging boxes. [Background technology]

[0002] Conventionally, the affixing of a sticker has been a common method for preventing tampering of individual packaging boxes placed in stores. In recent years, in consideration of environmental impact, individual packaging boxes that prevent tampering without using a sticker have appeared. Patent Document 1 describes an individual packaging box in which one opening of a rectangular pillar-shaped box body is closed with an inner flap and an outer flap. An insert piece having a pair of bendable locking pieces is connected to the outer flap. The inner flap has a notch into which the insert piece with the pair of locking pieces folded is inserted. When the insert piece with the pair of locking pieces folded is inserted into the box body through the notch, the pair of locking pieces opens inside the box body, locking it, and the individual packaging box cannot be opened. [Prior art documents] [Patent documents]

[0003] [Patent Document 1] Japanese Patent Application Laid-Open No. 2003-26146 Summary of the Invention

[0004] The individual packaging box described in Patent Document 1 cannot be opened once the inserting piece is inserted into the box body and the box is closed. If an attempt is made to remove a product (stored item) from the individual packaging box for reasons such as inspection or repair, the inner and outer flaps may be damaged or the box body may be deformed, making it impossible to reuse the individual packaging box.

[0005] One or more embodiments aim to provide a packaging box that prevents tampering without using an anti-tamper seal and that can be opened after storing an item and closing the packaging box.

[0006] According to one aspect of one or more embodiments, the storage compartment includes a main body having first and second side panels facing each other and having an opening for inserting and removing stored items; a top panel connected to the end of the first side panel on the opening side and pivoting relative to the first side panel to open and close the opening; an inner flap connected to the top panel and pivoting relative to the top panel, and positioned on the inner surface of the second side panel when the top panel is closing the opening; and an outer flap having a base connected to the second side panel and pivoting relative to the second side panel, and a tip connected to the base and pivoting relative to the base, wherein a non-linear slit is formed in the inner flap. The individual packaging box is configured such that when the top plate closes the opening and the inner flap is positioned on the inner surface side of the second side plate and the tip portion is deformed to fit the shape of the slit and passed through the slit to enter the inside of the main body portion, the tip portion returns to its original state inside the main body portion and cannot be pulled out from the inside of the main body portion through the slit to the outside of the main body portion, and the top plate maintains the state in which the opening is closed, and the top plate has a through hole formed therein for inserting an opening tool into the inside of the main body portion to deform the tip portion that has been restored inside the main body portion to fit the shape of the slit.

[0007] According to one or more embodiments of the individual packaging box, tampering can be prevented without using an anti-tamper seal, and the individual packaging box can be opened after the contents are stored and the individual packaging box is closed. [Brief explanation of the drawings]

[0008] [Figure 1] FIG. 1 is a perspective view of an individual packaging box according to one or more embodiments, showing the opening in an open state. [Figure 2] FIG. 2 is a development view of a first member of first and second members that constitute an individual packaging box according to one or more embodiments. [Figure 3] FIG. 3 is a development view of a second member of the first and second members that constitute the individual packaging box according to one or more embodiments. [Figure 4] FIG. 4 is a perspective view of the individual packaging box according to one or more embodiments, showing the opening in the middle of being closed. [Figure 5] FIG. 5 is a perspective view of the individual packaging box according to one or more embodiments, showing the opening closed and the outer flap before being inserted into the main body. [Figure 6] FIG. 6 is a perspective view of the individual packaging box according to one or more embodiments, showing the opening closed and the outer flap inserted into the main body. [Figure 7] 7 is a partial cross-sectional view of an individual box according to one or more embodiments, cut along a plane perpendicular to the X direction, in the same manner as FIG. 4, with the opening being partially closed. [Figure 8] 8 is a partial cross-sectional view of an individual packaging box according to one or more embodiments, taken along a plane perpendicular to the X direction, in the same manner as FIG. 5, before the opening is closed and the outer flap is inserted into the main body. [Figure 9] FIG. 9 is a partial plan view of an individual box according to one or more embodiments, as viewed in the direction of arrow A8 in FIG. [Figure 10] 10 is a partial cross-sectional view of an individual box according to one or more embodiments, cut along a plane perpendicular to the X direction, with the opening closed and the outer flap inserted into the main body, similar to FIG. 5. [Figure 11] 11 is a partial plan view of the individual packaging box shown in FIG. 10 cut along A100-A100 and viewed in the direction of arrow A10 in FIG. [Figure 12] FIG. 12 is a partial cross-sectional view showing a state in which an opening tool is brought close to the individual packaging box shown in FIG. [Figure 13] 13 is a partial plan view of the individual packaging box shown in FIG. 12 cut along A120-A120 and viewed in the direction of arrow A12 in FIG. [Figure 14] FIG. 14 is a partial cross-sectional view showing a state in which the opening tool is inserted into the main body. [Figure 15] 15 is a partial plan view of the individual packaging box shown in FIG. 14, cut along A140-A140 and viewed in the direction of arrow A14 in FIG. DETAILED DESCRIPTION OF THE INVENTION

[0009] An individual box 1 according to one or more embodiments shown in Fig. 1 accommodates an electrical device such as headphones or any other device as an example of an object to be accommodated. As shown in Fig. 1, the individual box 1 includes a main body 3, a top panel 5, an inner flap 7, and an outer flap 9. The main body 3 is formed in the shape of a rectangular parallelepiped box. The top panel 5 is rectangular. The longitudinal direction of the main body 3 is the X direction (left-right direction), the lateral direction of the main body 3 perpendicular to the X direction is the Y direction (depth direction), and the direction perpendicular to the X and Y directions is the Z direction (height direction).

[0010] The main body 3 comprises a bottom plate 29 and four side plates 31a to 31d. Side plate 31a (first side plate) and side plate 31c (second side plate) face each other, and side plate 31b and side plate 31d face each other. The main body 3 has an opening 11 at its upper end (end in the Z direction) for putting in and taking out stored items. The individual box 1 is formed symmetrically when viewed from the side plate 31c side. The individual box 1 is formed from a material such as paper of a predetermined thickness. The material forming the individual box 1 is assumed to be paper.

[0011] As an example, the individual packaging box 1 is constructed by folding a first member 39 shown in the unfolded view of Figure 2 and a second member 41 shown in the unfolded view of Figure 3 along the folding lines shown by dashed lines, and then bonding the two together at appropriate locations with adhesive to integrate them.

[0012] As shown in Fig. 2, the first member 39 includes a top panel 5, an inner flap 7, side panels 31a and 31b, a bottom panel component 43, a side flap 45, a bottom flap 47, and a connecting piece 49. The first member 39 can be formed by cutting a single sheet of paper. As shown in Fig. 3, the second member 41 includes an outer flap 9, side panels 31c and 31d, a top flap 51, a bottom panel component 53, a side flap 55, a bottom flap 57, and a connecting piece 59. The second member 41 can also be formed by cutting a single sheet of paper.

[0013] The connecting piece 49 of the first member 39 is attached to the end portion on the inner surface side of the side plate 31d of the second member 41. The connecting piece 59 of the second member 41 is attached to the end portion on the inner surface side of the side plate 31b of the first member 39. The bottom plate constituent parts 43 and 53 are attached to the bottom flaps 47 and 57 to form the bottom plate 29 shown in Fig. 1. In this manner, the individual packaging box 1 shown in Fig. 1 is formed.

[0014] Here, the case where the individual box 1 is formed from two sheets, the first member 39 and the second member 41, is shown, but it is also possible to form the individual box 1 from a single sheet of paper. In this case, for example, the connecting piece 59 may be omitted and the side plate 31b and the side plate 31c may be connected. Also, here, the bottom plate 29 is formed by the bottom plate constituent parts 43 and 53 and the bottom flaps 47 and 57, but the method of forming the bottom plate 29 is not limited.

[0015] The configuration of the individual packaging box 1 will be described in more detail with reference to FIGS. 1 to 3. As shown in FIGS. 1 and 2, the top plate 5 is connected to the upper end of the side plate 31a. The top plate 5 is rotatable relative to the side plate 31a, with a boundary 13 with the side plate 31a serving as the center of rotation. Rotation means bidirectional rotation within an angular range of less than 360 degrees. By rotating the top plate 5, the top plate 5 opens and closes the opening 11 of the main body 3. The inner flap 7 is connected to the end of the top plate 5 opposite the boundary 13. The inner flap 7 is rotatable relative to the top plate 5, with a boundary 15 (first boundary) with the top plate 5 serving as the center of rotation.

[0016] Four circular through holes 17 are provided in the top plate 5 near the inner flap 7. The through holes 17 include a pair of inner through holes 171 and a pair of outer through holes 172. The four through holes 17 are aligned in the X direction at a predetermined interval. The through holes 17 are large enough that a human finger cannot fit through them. A slit 23 is formed in the inner flap 7, penetrating the inner flap 7. The slit 23 is formed in a non-linear shape, not a straight line. The four through holes 17 are provided near the boundary portion 15 so as to be located within the ranges of both ends of the slit 23 in the X direction.

[0017] 2, the slit 23 includes a central portion 231, a pair of intermediate portions 232 sandwiching the central portion 231, and a pair of end portions 233 sandwiching the central portion 231 and the intermediate portion 232. The central portion 231 is provided so as to be in contact with the boundary portion 15. The intermediate portions 232 are provided so as to be farther away from the boundary portion 15 as they move toward both outer sides in the X direction, and the end portions 233 are provided so as to be further away from the boundary portion 15 as they move toward both outer sides in the X direction.

[0018] The central portion 231 is located at the center of the boundary portion 15 in the X direction, and is formed linearly with a predetermined length in the X direction. The intermediate portion 232 is formed linearly with a predetermined length, although the portion connecting to the central portion 231 is wider. The end portion 233 connecting to the intermediate portion 232 is formed linearly with a predetermined length. The angle formed between the boundary portion 15 and the intermediate portion 232 is angle θ1. The angle formed between the boundary portion 15 and the end portion 233 is angle θ2, which is larger than angle θ1. The pair of intermediate portions 232 and the pair of end portions 233 are symmetrical with respect to a line perpendicular to the boundary portion 15 at the center of the boundary portion 15 in the X direction.

[0019] The middle portion 232 and the end portion 233 are inclined portions that connect to the central portion 231 on both outer sides thereof and are inclined away from the boundary portion 15. The inclined portion may be formed by one straight line segment having one angle, or may be formed by three or more straight line segments having three or more angles. The slit 23 has a non-linear shape due to the central portion 231 and the inclined portions. The inclined portion of the slit 23 may be formed by a curve such as an arc, or the entire slit 23 may be formed by a curve such as an arc.

[0020] 1 and 2, the pair of through holes 171 are formed at positions facing the pair of intermediate portions 232 across the boundary portion 15. The pair of through holes 172 are formed at positions facing the pair of end portions 233 across the boundary portion 15.

[0021] The top plate 5 has a semicircular through-hole 67 located at the center of the boundary portion 15 and connecting to the central portion 231. As will be described later, the through-hole 67 is provided to allow a finger to be placed thereon when pulling out the outer flap 9 or opening the top plate 5.

[0022] 1 and 3, the outer flap 9 is provided near the upper end of the side panel 31c. The outer flap 9 is formed by cutting a portion of the area spanning the side panel 31c and the top flap 51 and bending the cut area outward at the connecting portion 35 with the side panel 31c. The width of the outer flap 9 in the X direction is narrower than the width of the inner flap 7 in the X direction.

[0023] The outer flap 9 has a base 19 and a tip 21, and the tip 21 is folded at a boundary 37 (second boundary) between the base 19 and the tip 21. The boundary 37 is located at the center in the width direction of the base 19 and the tip 21. The base 19 is formed from a part of the cut side panel 31c, and the tip 21 is formed from a part of the cut top flap 51.

[0024] As shown in Figure 3, two notches 33 of a predetermined length are formed in the end of the side plate 31c on the top flap 51 side (the upper end of the main body 3). The connecting portion 35 is a line segment connecting the ends of the two notches 33 on the side away from the top flap 51. The outer flap 9 is rotatable relative to the side plate 31c around the connecting portion 35. The tip portion 21 is rotatable relative to the base portion 19 around the boundary portion 37. The connecting portion 35 and the boundary portion 37 are parallel to each other.

[0025] 1 and 3, notches 71 are formed between the base 19 and the tip 21 on both outer sides of the boundary 37. The formation of the notches 71 between the base 19 and the tip 21, excluding the boundary 37, allows both ends of the tip 21 in the width direction to bend in a direction intersecting the plane of the tip 21.

[0026] As shown in Figure 3, a fold 20 may be provided in the tip 21 in a direction perpendicular to the boundary 37. The thickness of the paper may be thinner at the fold 20 than at other parts of the tip 21. By providing the fold 20 in the tip 21, the tip 21 becomes more likely to deform in a direction intersecting the surface.

[0027] In the individual packaging box 1 configured as described above, the opening 11 is open in the initial state as shown in Fig. 1. When an item is placed inside the main body 3, the side flaps 45 and 55 are rotated to cover the left and right ends of the opening 11, and the top flap 51 is further rotated relative to the side plate 31c to cover the opening 11, the box assumes the state shown in Fig. 4 or 7. The top flap 51 mostly covers the opening 11 on the inside of the top plate 5.

[0028] 4 or 7, when the top plate 5 is rotated closer to the top flap 51 and the left and right ends of the inner flap 7 are inserted into gaps 52 formed on both outer sides of the outer flap 9 between the side plate 31c and the top flap 51, the state shown in FIG. 5 or 8 is achieved. In the state shown in FIG. 5 or 8, the inner flap 7 is positioned on the inner side of the side plate 31c and closes the opening formed by cutting the base 19 at the upper end of the side plate 31c. The top plate 5 closes the opening formed by cutting the tip 21 of the top flap 51 and covers the entire top flap 51. The top plate 5 closes the opening 11 via the side flaps 45 and 55 and the top flap 51.

[0029] As shown in Fig. 8, the inner flap 7 contacts the inner surface of the side plate 31c. When the outer flap 9 is viewed in the direction of arrow A8 in Fig. 8, the inner flap 7 and the outer flap 9 are in the positional relationship shown in Fig. 9.

[0030] 5 or 8, when base 19 and tip portion 21 are rotated to deform the left and right ends of tip portion 21 to fit the shape of slit 23, tip portion 21 is passed through slit 23 and inserted into main body 3, resulting in the state shown in Fig. 6. As shown by the two-dot chain line in Fig. 11, when tip portion 21 is inserted into slit 23, tip portion 21 deforms to follow the shape of slit 23 and passes through slit 23.

[0031] When the entire tip portion 21 passes through the slit 23 and enters the inside of the main body 3, the deformed tip portion 21 returns to the state it was in before passing through the slit 23. Therefore, as shown in Fig. 10, the tip portion 21 comes into contact with the inner surface of the top plate 5. In Fig. 11, the tip portion 21 coming into contact with the inner surface of the top plate 5 is shown by a dashed line.

[0032] When the tip portion 21 returns to its pre-deformation state inside the main body 3, even if an attempt is made to rotate the outer flap 9 outward by pressing the tip portion 21 with a finger through the through-hole 67, the tip portion 21 cannot pass through the slit 23 from inside the main body 3, and therefore the outer flap 9 cannot be pulled out of the main body 3. As a result, the top plate 5 maintains a state in which the opening 11 of the main body 3 is closed via the side flaps 45 and 55 and the top flap 51. In Figure 10, even if an attempt is made to rotate the top plate 5 in the direction indicated by arrow A1, the outer flap 9 is caught on the inner flap 7, and therefore the top plate 5 cannot be rotated.

[0033] When the tip 21 passes through the slit 23 and enters the inside of the main body 3, the inner flap 7 and the outer flap 9 act as a closed state maintaining part that maintains the state in which the top plate 5 closes the opening 11.

[0034] As described above, when the contents are stored in the main body 3 and the individual packaging box 1 is closed as shown in Figure 6, the outer flap 9 cannot be pulled out and the top panel 5 cannot be opened. The individual packaging box 1 can be prevented from being tampered with without using an anti-tamper seal.

[0035] After storing an item in the main body 3 and closing the individual box 1, there may be a need to remove the item from the individual box 1 for reasons such as inspection or repair. The individual box 1 is configured so that it can be opened using a dedicated opening tool after it has been closed. Opening the individual box 1 with the opening tool does not damage the inner flap 7 or outer flap 9 or deform the main body 3, so there is no need to replace the individual box 1.

[0036] 12 to 15, an opening tool for opening the individual box 1 and how to open the individual box 1 using the opening tool will be described. As shown in FIG. 12 or 13, the opening tool 25 has a square pillar-shaped tool body 250 and two pairs of cylindrical protrusions 251 and 252 protruding from the tool body 250. The pair of cylindrical protrusions 251 has a first length, and the pair of cylindrical protrusions 252 has a second length that is longer than the first length. The opening tool 25 having the tool body 250 and the two pairs of protrusions 251 and 252 can be formed, for example, by integrally molding synthetic resin.

[0037] The distance between the pair of cylindrical protrusions 251 is the same as the distance between the inner pair of through holes 171 of the four through holes 17, and the distance between the pair of cylindrical protrusions 252 is the same as the distance between the outer pair of through holes 172 of the four through holes 17. The diameter of the protrusions 251 and 252 is slightly smaller than the diameter of the through hole 17. Therefore, the two pairs of protrusions 251 and 252 can be inserted into the four through holes 17.

[0038] 14 and 15 , when the opening tool 25 is pushed in, the pair of protrusions 251 deforms the portions of the tip portion 21 on both sides outer than the boundary portion 37, and the pair of protrusions 252 deforms both ends of the tip portion 21. As shown in Fig. 15, the pair of protrusions 251 deforms the portions of the tip portion 21 on both sides outer than the boundary portion 37 so as to face the pair of middle portions 232 of the slit 23. The pair of protrusions 252 deforms both ends of the tip portion 21 so as to face the pair of end portions 233 of the slit 23.

[0039] That is, the first length of the pair of protrusions 251 is a length that deforms the portions of the tip portion 21 on both sides outside the boundary portion 37 to match the position and shape of the pair of middle portions 232 of the slit 23. The second length of the pair of protrusions 252 is a length that deforms both end portions of the tip portion 21 to match the position and shape of the pair of end portions 233 of the slit 23.

[0040] Therefore, when the protrusions 251 and 252 of the opening tool 25 are pressed into the through-hole 17 and an attempt is made to rotate the outer flap 9 outward by pressing the tip 21 with a finger through the through-hole 67, the tip 21 passes through the slit 23 from inside the main body 3, and the outer flap 9 can be pulled out. When the outer flap 9 is pulled out, the individual box 1 returns to the state shown in FIG. 5 or FIG. 8. In FIG. 5, when the top plate 5 is lifted with a finger through the through-hole 67, the top plate 5 can be rotated in the direction indicated by arrow A1 in FIG. 8. When the top plate 5 is rotated in the direction indicated by arrow A1, the individual box 1 can be returned to the state shown in FIG. 4 or FIG. 7, and further, can be returned to the state shown in FIG. 1.

[0041] As described above, when it is necessary to remove an item from the individual packaging box 1 for reasons such as inspection or repair of the item, the individual packaging box 1 can be opened and the item can be removed by using the dedicated opening tool 25. In this process, the inner flap 7 and outer flap 9 are not damaged and the main body 3 is not deformed. After the inspection or repair of the item is complete, the item can be placed back into the main body 3 and the individual packaging box 1 can be closed. When it becomes necessary to remove an item from the individual packaging box 1 before shipping the product, the item can be removed using the opening tool 25. This prevents tampering at stores after the product has been shipped.

[0042] In one or more embodiments, the individual packaging box 1 is formed symmetrically, but may be formed asymmetrically. The slits 23 may be formed asymmetrically. Accordingly, the outer flap 9 may be formed asymmetrically. The inclined portion of the slit 23 may be formed in only one of the left and right directions. Accordingly, the tip 21 of the outer flap 9 may be configured to deform in only one of the left and right directions. The through holes 17 formed in the top plate 5 are positioned and numbered to correspond to the changes in the slits 23 and the tip 21. The opening tool 25 has a shape that corresponds to the changes in the through holes 17, the slits 23, and the tip 21.

[0043] The present invention is not limited to one or more of the above-described embodiments, and various modifications can be made without departing from the spirit of the present invention.

[0044] This application claims priority based on Japanese Patent Application No. 2020-203966, filed with the Japan Patent Office on December 9, 2020, the entire disclosure of which is incorporated herein by reference.

Claims

1. a main body having first and second side plates facing each other and an opening for inserting and removing stored items; a top plate connected to an end of the first side plate on the opening side and pivoting relative to the first side plate to open and close the opening; an inner flap connected to the top plate, pivoting relative to the top plate, and positioned on the inner surface side of the second side plate when the top plate is closing the opening; an outer flap having a base portion connected to the second side panel and pivotable relative to the second side panel, and a tip portion connected to the base portion and pivotable relative to the base portion; Equipped with The inner flap has a non-linear slit formed therein, When the top plate closes the opening and the inner flap is positioned on the inner surface side of the second side plate, if the tip portion is deformed to fit the shape of the slit and passes through the slit to enter the inside of the main body portion, the tip portion will return to its original shape inside the main body portion and will not be able to pass through the slit from the inside of the main body portion to the outside of the main body portion, and the top plate will maintain the state in which the opening is closed, The slit includes a central portion provided so as to contact a first boundary portion between the top plate and the inner flap, and inclined portions connected to the central portion on both outer sides of the central portion and inclined so as to move away from the first boundary portion, the inclined portion is formed by a plurality of pairs of straight line segments provided on both outer sides so as to sandwich the central portion, and an angle of each pair of straight line segments with respect to the first boundary portion increases as the line segment is positioned further outward; The top plate is formed with a plurality of pairs of through holes for inserting an opening tool into the inside of the main body portion to deform the tip portion restored inside the main body portion so as to match the shape of the slit, the through holes being opposed to each pair of line segments across the first boundary portion. Individual packaging box.

2. (delete)

3. the base portion and the tip portion are connected at a second boundary portion located at the center in the width direction of the base portion and the tip portion, Between the base portion and the tip portion on both outer sides of the second boundary portion, notches are formed to allow both ends of the tip portion in the width direction to bend in a direction intersecting the surface of the tip portion. The individual packaging box according to claim 1.

4. a top flap connected to an end of the second side plate on the opening side and pivoting relative to the second side plate to close the opening on the inner side of the top plate; The outer flap is formed by cutting a region spanning the second side panel and the top flap, The cut portion of the second side panel is the base portion, and the cut portion of the top flap is the tip portion. The individual packaging box according to claim 1 or 3.

5. The opening tool has a tool body and a plurality of pairs of protrusions protruding from the tool body and inserted into the plurality of pairs of through holes, The length of each of the pairs of protrusions is such that, when the pairs of protrusions are inserted into the pairs of through-holes, the tip portions are deformed to match the positions and shapes of the pairs of line segments in the inclined portion. The individual packaging box according to any one of claims 1, 3 and 4.

Citation Information

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