The present application claims priority under 35 U.S.C. § 119 to Japanese Patent Application No. 2018-165998, filed on Sep. 5, 2018. The contents of this application are incorporated herein by reference in their entirety.
The present disclosure relates to a packaging kit and a packaging set.
A packaging box is provided with fold lines. The packaging box is set up by bending some parts of a sheet of cardboard along the fold lines, thereby enabling packaging of a target object to be packaged.
A packaging kit according to an aspect of the present disclosure includes a sheet member. A target object to be packaged is to be placed on the sheet member. The sheet member includes a placement surface, a standing side, and a tongue piece. The placement surface allows the target object to be placed thereon. The standing side is elongated from the placement surface. The standing side is raised relative to the placement surface. The placement surface and the standing side are provided with the tongue piece. The tongue piece includes a protrusion edge. The tongue piece is located on a side of at least one side edge of the standing side.
In an embodiment, the tongue piece is in contact with a side edge of the standing side or the placement surface.
In an embodiment, the tongue piece further includes a taper. The taper is obliquely elongated towards the protrusion edge with the tongue piece becoming gradually narrower in width.
In an embodiment, the placement surface or the standing side is further provided with a rise-height section. The tongue piece is in contact with the rise-height section with the standing side raised.
In an embodiment, the tongue piece is bent in a V shape in side view so that the protrusion edge corresponds to a vertex of the V-shape in side view.
In an embodiment, the protrusion edge protrudes outside the standing side.
In an embodiment, the protrusion edge protrudes outside the placement surface.
In an embodiment, the standing side is provided with an opening in at least part of an area of the standing side adjacent to the tongue piece.
In an embodiment, the placement surface is provided with an opening in at least part of an area of the placement surface adjacent to the tongue piece.
In an embodiment, the packaging kit further includes a center tongue piece. The center tongue piece includes a center protrusion edge. The placement surface and the standing side are provided with the center tongue piece. The center tongue piece is located on a center side of the standing side rather than the tongue piece.
In an embodiment, the standing side is provided with an opening in at least part of an area of the standing side adjacent to the center tongue piece.
In an embodiment, the placement surface is provided with an opening in at least part of an area of the placement surface adjacent to the center tongue piece.
In an embodiment, the sheet member further includes a top flap elongated from the standing side. The protrusion edge protrudes below the placement surface. A recess is formed in an area of the top flap on a side of a boundary of the top flap and the standing side. The recess is located at a position corresponding to the protrusion edge.
In an embodiment, the sheet member further includes a top flap. The protrusion edge protrudes below the placement surface. The top flap includes a cut. The cut is located at a position corresponding to the protrusion edge.
A packaging set according to an aspect of the present disclosure includes the above-described packaging kit, and a holder. A holder is to be placed on the placement surface with the holder holding the target object.
In an embodiment, the holder includes a film, and a holder sheet member. The film is attached to the holder sheet member.
Embodiments of the present disclosure will hereinafter be described with reference to the drawings. Note that identical or equivalent elements have been allocated identical reference numerals, and description thereof has been omitted as appropriate.
A packaging kit 100 according to a first embodiment of the present disclosure will be described with reference to
As illustrated in
The sheet member 110 includes a placement surface 120, two standing sides (a standing side 130a and a standing side 130b), four tongue pieces (a tongue piece 140a, a tongue piece 140b, a tongue piece 140c, and a tongue piece 140d), and top flaps (a top flap 150a and a top flap 150b). The sheet member 110 is made of, for example a sheet of cardboard.
In the present specification, the standing side 130a and the standing side 130b may also collectively be referred to as standing sides 130. In the present specification, the tongue piece 140a, the tongue piece 140b, the tongue piece 140c, and the tongue piece 140d may also collectively be referred to as tongue pieces 140. In the present specification, the top flap 150a and the top flap 150b may also collectively be referred to as top flaps 150.
The placement surface 120 allows the target object to be placed thereon.
The standing side 130a and the standing side 130b are elongated from the placement surface 120. The standing side 130a and the standing side 130b are raised relative to the placement surface 120. The standing side 130a and the standing side 130b are bent towards a Z-axis positive direction relative to the placement surface 120. The standing side 130a and the standing side 130b face to each other.
The placement surface 120 and the standing side 130 are provided with the tongue pieces 140. Specifically, the placement surface 120 and the standing side 130a are provided with the tongue piece 140a and the tongue piece 140b. The placement surface 120 and the standing side 130b are provided with the tongue piece 140c and the tongue piece 140d. The packaging kit 100 is provided with a tongue piece 140 located on a side of at least one side edge of each standing side 130. Specifically, the tongue piece 140a and the tongue piece 140b are located at respective sides of both side edges of the standing side 130a. The tongue piece 140c and the tongue piece 140d are located at respective sides of both side edges of the standing side 130b. Each tongue piece 140 is in contact with a side edge of a corresponding standing side 130. Specifically, the tongue piece 140a and the tongue piece 140b are in contact with both the side edges of the standing side 130a. The tongue piece 140c and the tongue piece 140d are in contact with both the side edges of the standing side 130b. Each tongue piece 140 is therefore engaged with a corresponding standing side 130. Each of the tongue pieces 140a to 140d has a protrusion edge 142. The protrusion edges 142 will be described later with reference to
Each top flap 150 is elongated from a corresponding standing side 130. Specifically, the top flap 150a is elongated from the standing side 130a. The top flap 150b is elongated from the standing side 130b. The top flap 150a is bent towards a Y-axis positive direction relative to the standing side 130a. The top flap 150b is bent towards a Y-axis negative direction relative to the standing side 130b.
Hereinafter, the tongue pieces 140 will further be described with reference to
As illustrated in
The protrusion edge 142 protrudes outside the standing side 130b with the standing side 130b raised.
The body section 144 is elongated from the placement surface 120. With the standing side 130 raised, one part of the body section 144 is located inside the standing side 130b, while the other part of the body section 144 is located outside the standing side 130b. Length of the body section 144 is longer than length of the coupling section 146.
The coupling section 146 is continuous between the top flap 150 (see
The standing side 130b has, for example two rise-height sections 136. The body section 144 is in pressure contact with the rise-height sections 136 with the standing side 130 raised. Each tongue piece 140 is therefore engaged with a corresponding standing side 130.
The packaging kit 100 according to the first embodiment of the present disclosure will further be described with reference to
As illustrated in
As illustrated in
The coupling section 146 is rectangular. An end edge of the coupling section 146 on the side of the Y-axis negative direction, and the top flap 150a are continuous across the fold line 194. The fold line 194 functions as a pivot to allow the coupling section 146 to be turned around the fold line 194 relative to the standing side 130a.
The tongue piece 140a further includes a taper 148 besides the protrusion edge 142, the body section 144, and the coupling section 146. The taper 148 is obliquely elongated towards the protrusion edge 142 with the tongue piece 140a becoming gradually narrower in width. The body section 144 therefore becomes gradually narrower in width towards the standing side 130 from the placement surface 120.
The placement surface 120 is provided with four openings 127. In the present embodiment, each opening 127 is triangular. Each opening 127 is located in an area of the placement surface 120 adjacent to a corresponding tongue piece 140. Specifically, each opening 127 is located in at least part of the area of the placement surface 120 adjacent to the corresponding body section 144. In short, each opening 127 is provided in an internal corner of the fold line 191, and part of the body section 144 on the side of the placement surface 120. This therefore facilitates raising the standing side 130 when the standing side 130 is raised along the fold line 191 because friction generated between the standing side 130 and the tongue piece 140 is reduced. Furthermore, when the standing side 130 is raised along the fold line 191, it is possible to prevent the body section 144 from easily being bent due to the influence of the standing side 130 being bent.
Each standing side 130 is provided with two openings 137. In the present embodiment, each opening 137 is rectangular. Each opening 137 is located in at least part of an area of the standing side 130 adjacent to a corresponding tongue piece 140. Specifically, each opening 137 is located in an area of the standing side 130 adjacent to a corresponding coupling section 146. In short, the opening 137 is provided in an internal corner of the fold line 192 and the coupling section 146. This therefore facilitates raising the standing side 130 when the standing side 130 is raised along the fold line 191 because friction generated between the standing side 130 and the tongue piece 140 is reduced. Furthermore, when the standing side 130 is raised along the fold line 191, it is possible to prevent the coupling section 146 from easily being bent due to the influence of the standing side 130 being bent.
A packaging kit 100 according to a second embodiment of the present disclosure will be described with reference to
In the first embodiment the coupling section 146 of each tongue piece 140 and a corresponding top flap 150 are continuous, but in the present embodiment the coupling section 146 of each tongue piece 140 and the standing side 130 are continuous.
A packaging method of a target object 50 to be packaged using the packaging kit 100 will be described with reference to
As illustrated in
The standing side 130a and the standing side 130b are first bent towards a Z-axis positive direction. Bending the standing side 130a in the Z-axis positive direction enables the tongue piece 140a and the tongue piece 140b to be engaged with the standing side 130a. It is therefore possible to prevent the standing side 130a in a standing position from easily restoring with cardboard restoring force. It is consequently possible to keep the standing side 130a in the standing position at an angle of about 90 degrees relative to the placement surface 120.
Similarly, bending the standing side 130b in the Z-axis positive direction enables the tongue piece 140c and the tongue piece 140d to be engaged with the standing side 130b. It is therefore possible to prevent the standing side 130b in a standing position from easily restoring with cardboard restoring force. It is consequently possible to keep the standing side 130b in the standing position at an angle of about 90 degrees relative to the placement surface 120.
As illustrated in
As illustrated in
As described above with reference to
Each tongue piece 140 is in contact with a side edge of a corresponding standing side 130. This therefore allows each tongue piece 140 to be engaged with the corresponding standing side 130. It is consequently possible to prevent each standing side 130 in a standing position from easily restoring with the cardboard restoring force. It is consequently possible to keep each standing side 130 in the standing position at the angle of about 90 degrees relative to the placement surface 120.
Each tongue piece 140 also has the taper 148. The taper 148 is obliquely elongated towards a corresponding protrusion edge 142 with the tongue piece 140 becoming gradually narrower in width. It is therefore possible to easily engage each tongue piece 140 with the corresponding standing side 130 because the taper 148 is provided so that the tongue piece 140 becomes gradually wider in width towards the placement surface 120.
A packaging kit 100 according to a third embodiment of the present disclosure will be described with reference to
In the first embodiment the protrusion edge 142 of each tongue piece 140 protrudes outside the standing side 130, whereas in the present embodiment the protrusion edge 142 of each tongue piece 140 protrudes outside the placement surface 120 as illustrated in
Also in the present embodiment, in the same way as the first embodiment, each tongue piece 140 is bent in a V shape in side view (by about 90 degrees) with the standing side 130 raised so that the protrusion edge 142 thereof corresponds to a vertex of the V shape in side view. Each tongue piece 140 is in contact with a side edge of the placement surface 120. This therefore allows each tongue piece 140 to be engaged with the placement surface 120.
The packaging kit 100 according to the third embodiment of the present disclosure will be described in detail with reference to
As illustrated in
As illustrated in
Each coupling section 146 is rectangular. In the figure, an end edge of the coupling section 146 on the side of a Y-axis positive direction, and the placement surface 120 are continuous across the fold line 194. The fold line 194 functions as a pivot to allow the coupling section 146 to be turned around the fold line 194 relative to the placement surface 120.
The tongue piece 140a has a taper 148 besides the protrusion edge 142, the body section 144, and the coupling section 146. The taper 148 is obliquely elongated towards the protrusion edge 142 with the tongue piece 140a becoming gradually narrower in width. The body section 144 therefore becomes gradually narrower in width towards the placement surface 120 from the standing side 130.
Each standing side 130 is provided with two openings 138. In the present embodiment, each opening 138 is triangular. The opening 138 is located in an area of the standing side 130 adjacent to the tongue piece 140. Specifically, the opening 138 is located in at least part of the area of the standing side 130 adjacent to the body section 144. In short, the opening 138 is provided at an internal corner of the fold line 191 and part of the body section 144 on the side of the standing side 130. This therefore facilitates raising the standing side 130 when the standing side 130 is raised along the fold line 191 because friction generated between the standing side 130 and the tongue piece 140 is reduced. Furthermore, it is possible to prevent the body section 144 from easily being bent due to the influence of the standing side 130 being bent when the standing side 130 is raised along the fold line 191.
The placement surface 120 is provided with four openings 128. In the present embodiment, each opening 128 is rectangular. Each opening 128 is located in at least part of an area of the placement surface 120 adjacent to a corresponding tongue piece 140. Specifically, the opening 128 is located in an area of the placement surface 120 adjacent to a corresponding coupling section 146. It is therefore possible to facilitate raising the standing side 130 when the standing side 130 is raised along the fold line 191 because friction generated between the standing side 130 and the tongue piece 140 is reduced. Furthermore, it is possible to prevent the coupling section 146 from easily being bent due to the influence of the standing side 130 being bent when the standing side 130 is raised along the fold line 191.
A packaging method of a target object 50 to be packaged using the packaging kit 100 will be described with reference to
As illustrated in
The standing side 130a and the standing side 130b are first bent towards a Z-axis positive direction. Bending the standing side 130a in the Z-axis positive direction enables the tongue piece 140a and the tongue piece 140b to be engaged with the placement surface 120. It is therefore possible to prevent the standing side 130a in a standing position from easily restoring with cardboard restoring force. It is therefore possible to keep the standing side 130a in the standing position at an angle of about 90 degrees relative to the placement surface 120.
Similarly, bending the standing side 130b in the Z-axis positive direction enables a tongue piece 140c and a tongue piece 140d to be engaged with the placement surface 120. It is therefore possible to prevent the standing side 130b in a standing position from easily restoring with cardboard restoring force. It is consequently possible to keep the standing side 130b in the standing position at an angle of about 90 degrees relative to the placement surface 120.
As illustrated in
As illustrated in
A packaging kit 100 according to a fourth embodiment of the present disclosure will be described with reference to
As illustrated in
As illustrated in
The protrusion edge 142 protrudes inside the standing side 130b with the standing side 130b raised.
A body section 144 is elongated from the placement surface 120. The body section 144 is located inside the standing side 130b with the standing side 130 raised. Length of the body section 144 is almost the same as length of a coupling section 146.
The coupling section 146 is continuous between the standing side 130b and the body section 144. The coupling section 146 is located inside the standing side 130b with the standing side 130 raised.
In the present embodiment, with the standing side 130 raised, all the body section 144 and the coupling section 146 are located inside the standing side 130b. That is, with the standing side 130 raised, all of a tongue piece 140b is located inside the standing side 130b. It is therefore possible to cause all of the tongue piece 140b to fix a target object 50 to be packaged. It is consequently possible to prevent the target object 50 from easily being shifted during transportation.
The packaging kit 100 according to the fourth embodiment of the present disclosure will further be described with reference to
As illustrated in
As illustrated in
The coupling section 146 is rectangular. An end edge of the coupling section 146 on the side of a Y-axis negative direction, and the standing side 130 are continuous across the fold line 194. The fold line 194 functions as a pivot to allow the coupling section 146 to be turned around the fold line 194 relative to the standing side 130.
A packaging method of the target object 50 using the packaging kit 100 will be described with reference to
As illustrated in
The standing side 130a is bent towards a Z-axis positive direction so that the protrusion edge 142 of the tongue piece 140a, and the protrusion edge 142 of the tongue piece 140b protrude inside the standing side 130a and the placement surface 120. It is therefore possible to prevent the standing side 130a in a standing position from easily restoring with cardboard restoring force. It is consequently possible to keep the standing side 130a in the standing position at an angle of about 90 degrees relative to the placement surface 120.
Similarly, the standing side 130b is bent towards the Z-axis positive direction so that the protrusion edge 142 of a tongue piece 140c and the protrusion edge 142 of the tongue piece 140d protrude inside the standing side 130b and the placement surface 120. It is therefore possible to prevent the standing side 130b in a standing position from easily restoring with cardboard restoring force. It is consequently possible to keep the standing side 130b in the standing position at an angle of about 90 degrees relative to the placement surface 120.
As illustrated in
As illustrated in
A packaging kit 100 according to a fifth embodiment of the present disclosure will be described with reference to
As illustrated in
The sheet member 110 allows the target objects 50 to be placed thereon. The sheet member 110 includes two center tongue pieces (a center tongue piece 160a and a center tongue piece 160b), four second tongue pieces (a second tongue piece 170a, a second tongue piece 170b, a second tongue piece 170c, and a second tongue piece 170d), two second center tongue pieces (a second center tongue piece 180a and a second center tongue piece 180b), four protrusions 122, and four protrusions 152, besides a placement surface 120, two standing sides (a standing side 130a and a standing side 130b), four tongue pieces (a tongue piece 140a, a tongue piece 140b, a tongue piece 140c, and a tongue piece 140d), and a top flap (a top flap 150a and a top flap 150b).
In the present specification, the center tongue piece 160a and the center tongue piece 160b may also collectively be referred to as center tongue pieces 160. In the present specification, the second tongue piece 170a, the second tongue piece 170b, the second tongue piece 170c, and the second tongue piece 170d may also collectively be referred to as second tongue pieces 170. The second center tongue piece 180a and the second center tongue piece 180b may also collectively be referred to as second center tongue pieces 180.
The placement surface 120 and standing sides 130 are provided with the center tongue pieces 160. Specifically, the placement surface 120 and the standing side 130a are provided with the center tongue piece 160a. The placement surface 120 and the standing side 130b are provided with the center tongue piece 160b. Each center tongue piece 160 is located closer to the center of a corresponding standing side 130 than corresponding two tongue pieces 140. Specifically, the center tongue piece 160a is located closer to the center of the standing side 130a than the tongue piece 140a and the tongue piece 140b. In the present embodiment, the center tongue piece 160a is located at the center between the tongue piece 140a and the tongue piece 140b. That is, a distance between the tongue piece 140a and the center tongue piece 160a is equal to a distance between the tongue piece 140b and the center tongue piece 160a. Similarly, the center tongue piece 160b is located closer to the center of the standing side 130b than the tongue piece 140c and the tongue piece 140d. In the present embodiment, the center tongue piece 160b is located at the center between the tongue piece 140c and the tongue piece 140d. That is, a distance between the tongue piece 140c and the center tongue piece 160b is equal to a distance between the tongue piece 140d and the center tongue piece 160b.
Each center tongue piece 160 has a center protrusion edge 162. Each center protrusion edge 162 protrudes outside a corresponding standing side 130 with the corresponding standing side 130 raised.
The tongue pieces 140 and the center tongue pieces 160 enable easy fixing of the target object 50. Specifically, the tongue piece 140a, the center tongue piece 160a, the tongue piece 140c, and the center tongue piece 160b enable fixing of a target object 50a. The tongue piece 140b, the center tongue piece 160a, the tongue piece 140d, and the center tongue piece 160b enable fixing of a target object 50b.
Each top flap 150 and a corresponding standing side 130 are provided with two second tongue pieces 170. Specifically, the top flap 150a and the standing side 130a are provided with the second tongue piece 170a and the second tongue piece 170b. The top flap 150b and the standing side 130b are provided with the second tongue piece 170c and the second tongue piece 170d. The packaging kit 100 is provided with the second tongue piece 170 located on a side of at least one side edge of each standing side 130. Specifically, the second tongue piece 170a and the second tongue piece 170b are located at respective sides of both side edges of the standing side 130a. The second tongue piece 170c and the second tongue piece 170d are located at respective sides of both side edges of the standing side 130b. Each second tongue piece 170 is in contact with a side edge of a corresponding standing side 130. Specifically, the second tongue piece 170a and the second tongue piece 170b are in contact with the respective sides of both the side edges of the standing side 130a. The second tongue piece 170c and the second tongue piece 170d are in contact with the respective sides of both the side edges of the standing side 130b. Each of the second tongue pieces 170a to 170d has a protrusion edge 172.
Each top flap 150 and a corresponding standing side 130 are provided with the second center tongue piece 180. Specifically, the top flap 150a and the standing side 130a are provided with the second center tongue piece 180a. The top flap 150b and the standing side 130b are provided with the second center tongue piece 180b. Each second center tongue piece 180 is located closer to the center of a corresponding standing side 130 than corresponding two second tongue pieces 170. Specifically, the second center tongue piece 180a is located closer to the center of the standing side 130a than the second tongue piece 170a and the second tongue piece 170b. In the present embodiment, the second center tongue piece 180a is located at the center between the second tongue piece 170a and the second tongue piece 170b. That is, a distance between the second tongue piece 170a and the second center tongue piece 180a is equal to a distance between the second tongue piece 170b and the second center tongue piece 180a. Similarly, the second center tongue piece 180b is located closer to the center of the standing side 130b than the second tongue piece 170c and the second tongue piece 170d. In the present embodiment, the second center tongue piece 180b is located at the center between the second tongue piece 170c and the second tongue piece 170d. That is, a distance between the second tongue piece 170c and the second center tongue piece 180b is equal to a distance between the second tongue piece 170d and the second center tongue piece 180b. Each of the second center tongue piece 180a and the second center tongue piece 180b has a center protrusion edge 182.
The second tongue pieces 170 and the second center tongue pieces 180 enable fixing of the target object 50. Specifically, the second tongue piece 170a, the second center tongue piece 180a, the second tongue piece 170c, and the second center tongue piece 180b enable fixing of the target object 50a. The second tongue piece 170b the second center tongue piece 180a, the second tongue piece 170d, and the second center tongue piece 180b also enable fixing of the target object 50b.
The protrusion edges 142 of the tongue pieces 140, the center protrusion edges 162 of the center tongue pieces 160, the protrusion edges 172 of the second tongue pieces 170, and the center protrusion edges 182 of the second center tongue pieces 180 protrude outside the standing sides 130. A buffering effect is therefore obtained, with the packaging kit 100 put in the outer case, by the protrusion edges 142 of the tongue pieces 140, the center protrusion edges 162 of the center tongue pieces 160, the protrusion edges 172 of the second tongue pieces 170, and the center protrusion edges 182 of the second center tongue pieces 180.
The protrusions 122 are elongated from the placement surface 120. Two protrusion 122 protrudes outside a corresponding standing side 130 from an end of the corresponding standing side 130. A buffering effect is therefore obtained by the protrusions 122 with the packaging kit 100 put in the outer case.
Two protrusions 152 are elongated from a corresponding top flap 150. Two protrusions 152 protrudes outside a corresponding standing side 130 from an end of the corresponding standing side 130. A buffering effect is therefore obtained by the protrusions 152 with the packaging kit 100 put in the outer case.
The packaging kit 100 according to the fifth embodiment of the present disclosure will further be described with reference to
As illustrated in
Each standing side 130 is provided with two openings 133. In the present embodiment, each opening 133 is triangular. Each opening 133 is located in an area of a corresponding standing side 130 adjacent to a corresponding center tongue piece 160. Therefore, when the standing sides 130 are raised, friction generated between the standing sides 130 and the center tongue pieces 160 is reduced, thereby facilitating raising of the standing sides 130. Furthermore, it is possible to prevent the center tongue pieces 160 from easily being bent into an unexpected shape due to the influence of the standing sides 130 being bent when the standing sides 130 are raised.
Each top flap 150 is provided with two openings 153. In the present embodiment, each opening 153 is triangular. Each opening 153 is located in an area of a corresponding top flap 150 adjacent to a corresponding second center tongue piece 180. Therefore, when the top flaps 150 are bent, friction generated between the top flaps 150 and the second center tongue pieces 180 is reduced, thereby facilitating bending of the top flaps 150. Furthermore, it is possible to prevent the second center tongue pieces 180 from easily being bent into an unexpected shape due to the influence of the top flaps 150 being bent when the top flaps 150 are bent.
A packaging method of the target object 50 using the packaging kit 100 will be described with reference to
As illustrated in
The standing side 130a and the standing side 130b are first bent towards a Z-axis positive direction. Bending the standing side 130a in the Z-axis positive direction enables the tongue piece 140a, the tongue piece 140b, and the center tongue piece 160a to be engaged with the standing side 130a. It is therefore possible to prevent the standing side 130a in a standing position from easily restoring with cardboard restoring force. It is consequently possible to keep the standing side 130a in the standing position at an angle of about 90 degrees relative to the placement surface 120.
Similarly, bending the standing side 130b in the Z-axis positive direction enables the tongue piece 140c, the tongue piece 140d, and the center tongue piece 160b to be engaged with the standing side 130b. It is therefore possible to prevent the standing side 130b in a standing position from easily restoring with cardboard restoring force. It is consequently possible to keep the standing side 130b in the standing position at an angle of about 90 degrees relative to the placement surface 120.
As illustrated in
As illustrated in
A packaging set 300 according to a sixth embodiment of the present disclosure will be described with reference to
As illustrated in
The structure of the packaging kit 100 is the same as that of the packaging kit 100 according to the third embodiment, and therefore the description thereof has been omitted.
A placement surface 120 allows the holder 1 to be placed thereon. The holder 1 is allowed to hold a target object 50.
The holder 1 will be described with reference to
In the present embodiment, the board 10 is made of, for example a single sheet of cardboard that is about 5 millimeters in thickness. The film 30 is, for example an extendable (flexible) film made of polyethylene. The film 30 is colorless and transparent, but not limited to this. The film 30 may be so-called translucent or opaque, or may be colored.
Note that
As illustrated in
The main fold line 21 is disposed at approximately the center position of the board 10 in the front-back direction to be parallel to the left-right direction (parallel to an X-axial direction). The main fold line 21 allows font and back ends of the board 10 to easily be displaced above and bent.
The subsidiary fold line 23 is disposed adjacent to a right end of the board 10 to be parallel to the front-back direction (parallel to a Y-axial direction). The subsidiary fold line 24 is disposed adjacent to a left end of the board 10 to be parallel to the front-back direction. The subsidiary fold line 23 allows the right end to easily be displaced above and bent. The subsidiary fold line 24 allows a left end of the board 10 to easily be displaced above and bent.
The board 10 is provided with four divisions—namely, a displacement surface 11 that allows placement, thereon, of the target object 50 to be packaged (
The main fold line 21 is disposed between the displacement surface 11 and the adjacent surface 12. In other words, the displacement surface 11 and the adjacent surface 12 are divided by the main fold line 21. The displacement surface 11 is located at a front side of the board 10, while the adjacent surface 12 is located at a back side of the board 10. The raised section 15 is partitioned so that the raised section 15 is adjacent to the displacement surface 11 and the adjacent surface 12 via the subsidiary fold line 23, while the raised section 16 is partitioned so that the raised section 16 is adjacent to the displacement surface 11 and the adjacent surface 12 via the subsidiary fold line 24. The raised section 15 is part of the board 10, which is on a right side of the subsidiary fold line 23. The raised section 16 is part of the board 10, which is on a left side of the subsidiary fold line 24. In other words, the displacement surface 11 is part of the board 10, which is on a front side of the main fold line 21 and is between the subsidiary fold lines 23 and 24. The adjacent surface 12 is part of the board 10, which is on a back side of the main fold line 21 and is between the subsidiary fold lines 23 and 24.
The main fold line 21 allows the adjacent surface 12 and back parts of the raised sections 15 and 16 to be bent relative to the displacement surface 11 and front parts of the raised sections 15 and 16.
The film 30 is disposed to mainly surround the displacement surface 11 and the adjacent surface 12. The tubular film 30 is disposed so that a width direction (a direction perpendicular to a peripheral direction) of the film 30 corresponds to the left-right direction. In other words, the film 30 is wound around the board 10 with the main fold line 21 put through a tube formed by the film 30.
The film 30 may be attached to the board 10 by various methods. For example, the film 30 may be attached to the board 10 with the board 10 put through the film 30 shaped like a ring in advance. For example, the film 30 may also be attached to the board 10 as a result of the film 30 being wound around the board 10 at least one turn to be adhered by a wrapping packaging machine or the like. The fold lines 21, 23, and 24 allow the board 10 to be bent with the film 30 attached to the board 10.
In the present embodiment, the main fold line 21 is offset behind the center of the board 10 in the front-back direction. That is, the main fold line 21 is disposed at a position deviated from the center of the board 10. An area of the displacement surface 11 is larger than an area of the adjacent surface 12.
A packaging method of the target object 50 using the holder 1 will next be described. Each of
As illustrated in
With the board 10 bent, the target object 50 is displaced in a hollow space A between the displacement surface 11 and the film 30 (S12; displacement step). Thus, the adjacent surface 12 is bent along the main fold line 21 relative to the displacement surface 11, so that the holder 1 is brought into a bent state (hereinafter also referred to as a “bent state”). The holder 1 in the bent state allows the target object to be placed in the hollow space A between the film 30 and the upper surface of the board 10.
As depicted by a down arrow in
As illustrated in
Here, in the present embodiment, the raised sections 15 and 16 are bent along the subsidiary fold lines 23 and 24 relative to the displacement surface 11 at the abovementioned leveling step, and thereby become in a raised state. Thus, leveling the adjacent surface 12 relative to the displacement surface 11 enables stretching of the film 30. Note that the raised sections 15 and 16 may be raised after the leveling step (raising step).
As illustrated in
A packaging method of the target object 50 using the packaging set 300 will next be described with reference to
As illustrated in
Similarly, a tongue piece 140c and a tongue piece 140d are engaged with the placement surface 120 as a result of the standing side 130b being bent towards the Z-axis positive direction. It is therefore possible to prevent the standing side 130b in a standing position from easily restoring with cardboard restoring force. It is consequently possible to keep the standing side 130b in the standing position at an angle of about 90 degrees relative to the placement surface 120.
As illustrated in
As illustrated in
Note that the holder 1 has the film 30, but the present disclosure is not limited to this. For example, as long as the target object 50 is held, the holder 1 does not need to have any film 30.
A packaging set 300 according to a seventh embodiment of the present disclosure will be described with reference to
As illustrated in
The packaging kit 100 according to the seventh embodiment of the present disclosure will be described with reference to
As illustrated in
A packaging method of a target object 50 to be packaged using the packaging set 300 will next be described with reference to
As illustrated in
As illustrated in
Similarly, the tongue piece 140c and the tongue piece 140d are engaged with the placement surface 120 as a result of the standing side 130b being bent towards the Z-axis positive direction. It is therefore possible to prevent the standing side 130b in a standing position from easily restoring with cardboard restoring force. It is consequently possible to keep the standing side 130b in the standing position at an angle of about 90 degrees relative to the placement surface 120.
As illustrated in
The top flap 150a is further bent towards a Y-axis positive direction. The top flap 150b is also bent towards a Y-axis negative direction. The supporter 154a is consequently disposed inside the protrusion 17 and the protrusion 18. The supporter 154b is also disposed inside the protrusion 17 and the protrusion 18.
As illustrated in
A packaging set 300 according to an eighth embodiment of the present disclosure will be described with reference to
As illustrated in
The packaging set 300 according to the eighth embodiment of the present disclosure will further be described with reference to
As described with reference to
Similarly, the length of the top flap 150b along the X-axial direction is shorter than the distance between the tongue piece 140c and the tongue piece 140d. Two recesses 155 are also formed in both areas of a top flap 150b on a side of a boundary of the top flap 150b and a standing side 130b. Therefore, placing two packaging sets 300 by causing tongue pieces 140 of one of them to correspond to recesses 140 of the other enables the packaging sets 300 to be stacked in the Z-axial direction.
The tongue pieces 140 of an upper packaging set 300 are inserted into the recesses 155 of a lower packaging set 300. It is therefore possible to prevent the upper packaging set 300 from easily being shifted during transportation.
A packaging set 300 according to a ninth embodiment of the present disclosure will be described with reference to
As illustrated in
The packaging set 300 according to the ninth embodiment of the present disclosure will further be described with reference to
As described with reference to
Similarly, the length between the cuts 156 of the top flap 150b along the X-axial direction is shorter than the distance between the tongue piece 140c and the tongue piece 140d. The top flap 150b also has two cuts 156. Therefore, placing two packaging sets 300 by causing tongue pieces 140 of one of them to correspond to cuts 156 of the other enables the packaging sets 300 to be stacked in the Z-axial direction.
The tongue pieces 140 of the packaging set 300 to be stacked up are inserted into the cuts 156 of the packaging set 300 to be placed thereunder. It is therefore possible to prevent the packaging set 300 stacked up from easily being shifted during transportation.
[Variations]
Shape variation examples of tongue pieces 140 will be described with reference to
In the First to ninth embodiments, the taper 148 of each tongue piece 140 is elongated with the tongue piece 140 becoming gradually narrower in width towards a corresponding protrusion edge 142, but the present disclosure is not limited to this. For examples, as illustrated in
As illustrated in
As illustrated in
In the first to ninth embodiments, each tongue piece 140 has a rise-height section, but each tongue piece 140 does not need to have any rise-height section as illustrated in
The embodiments of the present disclosure have been described above with reference to the drawings (
Number | Date | Country | Kind |
---|---|---|---|
2018-165998 | Sep 2018 | JP | national |