WO2012128253A1 - Boîte d'emballage dotée d'une fonction d'amortissement - Google Patents

Boîte d'emballage dotée d'une fonction d'amortissement Download PDF

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Publication number
WO2012128253A1
WO2012128253A1 PCT/JP2012/057022 JP2012057022W WO2012128253A1 WO 2012128253 A1 WO2012128253 A1 WO 2012128253A1 JP 2012057022 W JP2012057022 W JP 2012057022W WO 2012128253 A1 WO2012128253 A1 WO 2012128253A1
Authority
WO
WIPO (PCT)
Prior art keywords
buffer
plate
packaging box
support plate
packaging
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Ceased
Application number
PCT/JP2012/057022
Other languages
English (en)
Japanese (ja)
Inventor
芙美 和泉
宏一 丸橋
友宏 吉田
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Astellas Pharma Inc
Original Assignee
Astellas Pharma Inc
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Astellas Pharma Inc filed Critical Astellas Pharma Inc
Priority to JP2013505967A priority Critical patent/JP6060895B2/ja
Publication of WO2012128253A1 publication Critical patent/WO2012128253A1/fr
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D5/00Rigid or semi-rigid containers of polygonal cross-section, e.g. boxes, cartons or trays, formed by folding or erecting one or more blanks made of paper
    • B65D5/02Rigid or semi-rigid containers of polygonal cross-section, e.g. boxes, cartons or trays, formed by folding or erecting one or more blanks made of paper by folding or erecting a single blank to form a tubular body with or without subsequent folding operations, or the addition of separate elements, to close the ends of the body
    • B65D5/0254Rigid or semi-rigid containers of polygonal cross-section, e.g. boxes, cartons or trays, formed by folding or erecting one or more blanks made of paper by folding or erecting a single blank to form a tubular body with or without subsequent folding operations, or the addition of separate elements, to close the ends of the body with end closures formed by inward folding of flaps and securing them by means of a tongue integral with one of the flaps
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D5/00Rigid or semi-rigid containers of polygonal cross-section, e.g. boxes, cartons or trays, formed by folding or erecting one or more blanks made of paper
    • B65D5/02Rigid or semi-rigid containers of polygonal cross-section, e.g. boxes, cartons or trays, formed by folding or erecting one or more blanks made of paper by folding or erecting a single blank to form a tubular body with or without subsequent folding operations, or the addition of separate elements, to close the ends of the body
    • B65D5/10Rigid or semi-rigid containers of polygonal cross-section, e.g. boxes, cartons or trays, formed by folding or erecting one or more blanks made of paper by folding or erecting a single blank to form a tubular body with or without subsequent folding operations, or the addition of separate elements, to close the ends of the body with end closures formed by inward-folding of self-locking flaps hinged to tubular body
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D5/00Rigid or semi-rigid containers of polygonal cross-section, e.g. boxes, cartons or trays, formed by folding or erecting one or more blanks made of paper
    • B65D5/42Details of containers or of foldable or erectable container blanks
    • B65D5/44Integral, inserted or attached portions forming internal or external fittings
    • B65D5/50Internal supporting or protecting elements for contents
    • B65D5/5002Integral elements for containers having tubular body walls
    • B65D5/5011Integral elements for containers having tubular body walls formed by folding inwardly of extensions hinged to the upper or lower edges of the body
    • B65D5/5014Integral elements for containers having tubular body walls formed by folding inwardly of extensions hinged to the upper or lower edges of the body and with an integral end closure
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D77/00Packages formed by enclosing articles or materials in preformed containers, e.g. boxes, cartons, sacks or bags
    • B65D77/04Articles or materials enclosed in two or more containers disposed one within another

Definitions

  • the present invention relates to a packaging box having a buffering function, and more particularly to a packaging box having a buffering function having a buffering structure that prevents a tablet stored inside from being damaged by an external impact.
  • contents such as fragile tablets or fragile ampoules are stored in a packaging paper box, etc.
  • a foamed member, an air cap, etc. are provided in the gap between the paper box and the contents.
  • the buffer material was filled.
  • the contents are stored in a molded product made of a cushioning material that is molded in accordance with the shape of the contents, and then stored in a paper box.
  • an inner wall is formed on each side plate of a packaging box to form a double structure, and in order to support a vial or ampoule, a part of the inner wall is cut away to provide an insertion portion, and a holder such as a vial is provided.
  • the configuration is disclosed.
  • the packaging box of the said structure can protect a vial etc. from an external impact by fitting a vial etc. in an insertion part.
  • the packaging box with a buffer material of patent documents 3 and 4 is provided with a plate-shaped buffer material along the inner peripheral surface of both side surfaces. Both ends of the cushioning material are supported, and a predetermined cushioning space is provided between the cushioning material and the side plate of the packaging box.
  • the buffer material forming the buffer space is provided with an intermediate support portion to prevent bending of the intermediate portion.
  • the intermediate support part of the shock absorbing material of the packaging box with a shock absorbing material of patent document 4 forms a notch in the intermediate part of the shock absorbing material, bend
  • the packaging box of patent document 3 and 4 of the said structure absorbs the impact from the outside with a shock absorbing material, and protects what may be damaged by impact, such as a chemical
  • Patent Documents 1 to 4 all relate to a packaging box for storing a vial or the like having a certain strength and weight. Therefore, even when the packaging boxes disclosed in Patent Documents 1 to 4 are used, it is difficult to obtain a sufficient buffering effect when packaging tablets.
  • the cushioning material provided in the packaging boxes of Patent Documents 3 and 4 needs to have strength to hold a relatively heavy weight such as a drug kit, it prevents bending of the intermediate portion in the cushioning material. Intermediate support or cut and raised pieces are provided. Therefore, when a tablet that is lighter than the drug kit is stored, the buffer material is reinforced and the intermediate portion does not bend, so that the buffer material is too hard to obtain an appropriate buffer effect. .
  • Patent Document 5 discloses a packaging box S ′ that has an appropriate buffering capacity, has a simple structure, and can simplify the manufacturing process in order to protect the tablet from external impact. (See FIG. 13).
  • the packaging box S ′ with cushioning material of Patent Document 5 has double side walls by cushioning plates 43 ′ and 44 ′ formed by cutting part of the side flaps 41 ′ and 42 ′. It has a structure and has a buffering capacity for protecting a tablet (more specifically, a pillow containing a PTP sheet in which the tablet is packaged) from an external impact.
  • the buffer plates 43 ′ and 44 ′ include a part of the side flaps 41 ′ and 42 ′ provided above and the first support plates 45 a ′ and 46 a ′, and support plates (not shown) attached to the side surfaces. Therefore, the central portions of the buffer plates 43 'and 44' have flexibility, and can protect tablets that are vulnerable to external impacts and easily broken.
  • the packaging box S ′ with cushioning material of Patent Document 5 forms the cushioning plates 43 ′ and 44 ′ by cutting out the portion of the mount constituting the side flaps 41 ′ and 42 ′.
  • Both 42 'and the buffer plates 43' and 44 ' cannot be large enough to limit the size of the buffer plates 43' and 44 '.
  • the size of the buffer plates 43 'and 44' cannot be arbitrarily increased, and there is room for improvement in order to improve the buffer capacity by the size of the flap. Therefore, in the packaging box, there is a technology that can arbitrarily set the size of the buffer plates 43 'and 44', and can provide a sufficiently high buffering capacity for tablets that are fragile against external impacts. It was desired.
  • the present invention has been made in view of the above-described problems, and an object of the present invention is a packaging box for packaging a PTP sheet in which tablets are stored, and includes a buffer space capable of obtaining sufficient buffer capacity. It is providing the packaging box which has a buffer function. Another object of the present invention is to provide a packaging box having a buffering function that has a simple structure and can simplify the manufacturing process.
  • the object is a packaging box formed by folding and assembling a single box-forming substrate and packaging a PTP packaging sheet containing tablets, and a series of side plates.
  • a PTP packaging sheet containing tablets and a series of side plates.
  • a buffer part formed on at least one of the insides of the pair of side plates facing each other, the buffer part being connected to the lid part side of the side plate toward the inside of the body part
  • the flap is connected to the side of the side flap facing the side to which the side plate is connected, and is connected to the lower side of the first support plate.
  • the first support plate is attached to the side flap.
  • a second support plate and a lower side of the second support plate And a third support plate coupled to the buffer plate, a flexible buffer plate extending from the support plate and spaced substantially parallel to the side plate at a predetermined interval, and extending from the buffer plate It is provided, and it is solved by providing the sticking piece stuck on the said trunk
  • the packaging box of the present invention has the buffer part on at least one of the side plates facing each other, and the buffer part is connected to the lid part side of the side plate toward the inside of the body part.
  • a flexible buffer plate extending from the support plate; and an adhesive piece extending from the buffer plate and attached to the trunk or the bottom.
  • the buffer plate provided on the side surface side is disposed apart from the side plate. Accordingly, since the buffer plate is supported only by the support plate and the sticking plate with respect to the side plate (that is, supported only at two points), the buffer plate has sufficient flexibility. Further, the buffer plate is not formed by cutting a part of the side flap, but has a flexibility extending from the support plate so as to be spaced apart from the side plate of the side flap at a predetermined interval and to be bent. Since it is the structure connected continuously, the buffer plate can be formed in arbitrary magnitude
  • the packaging box of this invention is provided with the buffer space in which sufficient buffer function is obtained with respect to the PTP sheet in which the tablet was accommodated. Since the packaging box of the present invention is formed by bending a single box-forming substrate, the configuration is simple and the manufacturing process is greatly simplified. Therefore, the packaging box of the present invention can be manufactured at low cost. Furthermore, since the sizes of the side flap and the buffer plate can be set independently of each other, the side flap can be formed sufficiently large even if the buffer plate is formed large. Therefore, since the gap between the lid and the trunk can be covered with the side flap, it is possible to effectively prevent foreign matter from entering the box from between the lid and the trunk.
  • the buffer plate is formed with a notch opening upward.
  • the buffer plate is provided with the notch portion opened upward, the buffer plate is more easily bent, and as a result, a packaging box having a buffer portion with a high buffer capacity can be obtained.
  • the packaging box of the present invention when 10 tablets of the PTP packaging sheet in which the tablets are packaged in one PTP packaging sheet are dropped from a height of 150 cm, It is preferably used when the tablet has the strength that the number of breakage is 1 tablet or more.
  • the packaging box of the present invention since the packaging box of the present invention includes a buffer portion having a very high buffering capacity, it is particularly preferably used for packaging tablets that are easily damaged as described above.
  • the packaging box of the present invention is particularly preferably used when the tablet is a tablet having a hardness of 9.8 N or more and 110 N or less.
  • the packaging box of the present invention is provided with a buffer portion having a high buffer capacity, it is particularly suitable for packaging fragile tablets having a hardness of a predetermined numerical value or less.
  • the strength of a tablet applicable to PTP packaging that is, the strength of a tablet that can be taken out by extruding a preparation from a cover sheet of normal PTP packaging
  • the hardness in the longitudinal direction of the tablet can be mentioned.
  • the hardness varies depending on the size and shape of the tablet. For example, when the diameter is about 8.0 mm, the hardness is about 9.8 N, when the diameter is about 10.0 mm, about 14.7 N, and further about 12.0 mm in diameter. Sometimes about 19.6 N or more is preferred.
  • the packaging box of the present invention is particularly preferably used when the tablet is an orally disintegrating tablet.
  • the packaging box having a buffering function of the present invention can secure a large buffer part, and since the buffer plate provided in the buffer part can be sufficiently bent, the buffering capacity is high. Therefore, the tablet packaged in the PTP sheet accommodated inside can be effectively protected from external impact. As a result, it can be particularly suitably used for tablets having the property of being easily broken by external impact.
  • the packaging box of this invention can form the packaging box which has a buffer structure inside a side plate by folding and assembling one box formation board
  • FIG. 2 It is a perspective view which shows the external appearance before opening of the packaging box which concerns on one Embodiment of this invention. It is a perspective view of the state where goods were stored in the packaging box concerning one embodiment of the present invention. It is a perspective view of the state where the side flap of the packaging box concerning one embodiment of the present invention was opened. It is a perspective view of the state where the side flap of the packaging box concerning one embodiment of the present invention was closed. It is sectional drawing (II sectional drawing of FIG. 2) of the packaging box which concerns on one Embodiment of this invention. It is an expanded view of the box formation board
  • FIG. 9 is a cross-sectional view of a packaging box according to another embodiment of the present invention ((a) a cross-sectional view taken along the line ii in FIG. 8, and (b) a cross-sectional view taken along the line ii-ii in FIG. 9). It is an expanded view of the box formation board
  • FIG. 1 is a perspective view showing an appearance before opening of a packaging box
  • FIG. 2 is a perspective view of a state in which articles are stored in the packaging box
  • 3 is a perspective view of the packaging box with the side flaps opened
  • FIG. 4 is a perspective view of the packaging box with the side flaps closed
  • FIG. 5 is a sectional view of the packaging box (II in FIG. 2).
  • FIG. 6 is a development view of the box forming substrate of the packaging box
  • FIG. 7 is a front view of the packaging box in a folded state.
  • FIGS. 8 to 10 relate to another embodiment of the present invention
  • FIG. 8 is a perspective view of the packaging box with the side flap opened
  • FIG. 9 is the packaging box with the side flap closed.
  • 10 is a sectional view of the packaging box ((a) a sectional view taken along line ii in FIG. 8, (b) is a sectional view taken along line ii-ii in FIG. 9)
  • FIG. 11 is a box formation of the packaging box. It is an expanded view of a board
  • FIG. 12 is a perspective view of a state in which a side flap of a packaging box is opened according to still another embodiment of the present invention.
  • the packaging box S1 of this example is a rectangular parallelepiped box for storing articles.
  • the packaging box S1 is a substantially hollow rectangular shape comprising a lid 10 and four side plates 21, 22, 23, 24. A shape body 20 and a bottom 30 are provided.
  • the packaging box S1 is configured such that an article can be taken in and out from the upper surface by opening the lid 10.
  • buffer portions 40a and 40b in which buffer spaces for reducing the impact on the articles stored in the package box S1 are formed inside a pair of opposite side surfaces of the package box S1 (FIG. 4). reference).
  • the body portion is configured by connecting four substantially rectangular side plates 21, 22, 23, and 24, and the side plate 21 and the side plate 23, and the side plate 22 and the side plate 24 are arranged substantially in parallel. Yes.
  • the cover plate 11 is formed in a substantially rectangular shape, and is connected to the upper side of the side plate 21 so as to be bent.
  • the insertion flap 12 is connected to the end side opposite to the side connected to the side plate 21 so as to be bent.
  • the lid 10 is fixed to the state shown in FIG. 1 by inserting the insertion flap 12 into the inside of the side plate 23.
  • the bottom 30 is formed by combining the bottom flaps 31, 32, 33, 34 connected to the lower side of the side plates 21, 22, 23, 24 constituting the body 20.
  • the side plate 21 is connected to the side plate 22 and the side plate 24 on both the left and right sides, and the lid plate 11 is connected to the upper side and the bottom flap 31 is connected to the lower side so as to be bent.
  • the side plate 23 is disposed substantially parallel to the side plate 21 with a predetermined interval, and is connected to the side plate 22 and the side plate 24 on both the left and right sides.
  • a bottom flap 33 is connected to the lower side of the side plate 23 so that it can be bent.
  • the side plate 22 and the side plate 24 are disposed substantially in parallel with a predetermined interval, and are connected to the side plate 21 and the side plate 23 on the left and right sides, respectively.
  • the buffer portion 40 a includes a side flap 41, a first support plate 45 a as a support plate that is continuously provided from the side flap 41 and adhered to the side flap 41, and a first support plate 45 a A buffer plate 43 extending through the second support plate 45 b and the third support plate 45 c, and an adhesive piece 47 extending from the buffer plate 43 and adhered to the bottom plate 32.
  • the buffer portion 40a has a side flap 41 connected to the lid portion 10 side (the upper end in the present embodiment) of the side plate 22 toward the inside of the body portion, and a side (the main side) of the side flap 41 connected to the side plate 22.
  • a first support plate 45a connected to the side facing the upper end in the embodiment (in this embodiment, the end facing the end to which the side plate 22 is connected) and attached to the side flap;
  • a second support plate 45b connected to the lower side (lower end in the present embodiment) of the first support plate 45a, and a lower support (lower end in the present embodiment) of the second support plate 45b and buffered.
  • the second support plate 45b is not attached to the side plate 22 and the side flap 41, and is provided to absorb the thickness of the side flap 41 and the first support plate 45a when the side flap 41 is closed. Also, when the side flap 41 is opened, the second support plate 45b absorbs the thickness of the side flap 41 and the first support plate 45a, so that the side flap 41 is easy to open.
  • the third support plate 45c is installed on the side plate 22 and the buffer plate 43, and is disposed so as to be substantially horizontal. Therefore, since a space is maintained between the side plate 22 and the buffer plate 43, the packaging box S1 has a function of mitigating external impact.
  • the third support plate 45 c and the sticking plate 47 are formed substantially parallel to each other, and the sticking piece 47 is stuck to the inner surface of the bottom flap 32.
  • the second support plate 45b, the third support plate 45c, and the buffer plate 43 are formed with notches 45d.
  • the cutout portion 45d is formed so as to be cut out from a substantially central portion of the upper end of the buffer plate 43 toward the third support plate 45c.
  • the notch portion 45d when the content stored in the packaging box S1 is taken out, it also functions as a thimble hole, making it easier to take out the content. If the area of the notch 45d is reduced, the strength of the buffer 40a is improved, and if the area of the notch 45d is increased, the content can be easily taken out. Therefore, the area of the notch 45d is necessary. It can be changed as appropriate depending on the buffer capacity (strength of the buffer 40a) and workability.
  • the buffer capacity can be adjusted by changing the area of the notch 45d, the control of the buffer capacity can be made easier. That is, when the flexibility of the buffer plate 43 is desired to be increased, the notch portion 45d may be formed larger, and when the rigidity of the buffer plate 43 is desired to be improved, the notch portion 45d is formed smaller ( Or it is not provided). Therefore, the packaging box S1 can arbitrarily control the size of the buffer plate 43 and the size of the notch 45d, and depends on the hardness (breakability) and weight of the tablet 4 accommodated therein. Thus, an appropriate buffer capacity can be provided.
  • the connection part c of the support plate 45c, the connection part d of the third support plate 45c and the buffer plate 43, and the connection part e of the buffer plate 43 and the sticking piece 47 are formed to be bendable.
  • the connection portion a is subjected to half-cutting processing so as to be easily folded, and perforations are formed in the connection portions b to e so as to be easily bent.
  • the sticking piece 47 connected to the buffer plate 43 is stuck to the bottom flap 32 and is formed with substantially the same width as the third support plate 45c disposed horizontally. And the edge of the sticking piece 47 is arrange
  • FIG. 5 shows a cross-sectional view taken along the line II of FIG. Since the buffer portions 40a and 40b formed at the two locations are symmetrical with each other, for convenience, one buffer portion 40a side formed inside the side plate 22 will be described as a representative.
  • the side plate 22 and the buffer plate 43 are formed at substantially the same height and are arranged so as to be substantially parallel with a predetermined distance therebetween.
  • the third support plate 45c and the sticking piece 47 are Each is arranged in parallel. These are connected via bendable connection portions b to e. Therefore, in the packaging box S1, the buffer space surrounded by the buffer plate 43, the side plate 22, the third support plate 45c, and the sticking piece 47 forms a parallelogram. Therefore, since the buffer plate 43 is supported only by the upper end and the lower end, it has appropriate flexibility.
  • the buffer plate 43 is configured by a piece of paper continuously provided from the side flap 41, the size of the buffer plate 43 and the side flap 41 can be arbitrarily set independently of each other. Therefore, the area of the buffer plate 43 can be increased, and as a result, the packaging box S1 can obtain a sufficient buffer capacity.
  • the area of the side flap 41 is not dependent on the area of the buffer plate 43 and can secure a large area, in the packaging box S1, the space between the lid portion 10 and the trunk portion 20 is placed in the box. It is possible to prevent foreign matters from entering.
  • the buffer part 40a folds the bottom flaps 31, 32, 33, 34 of the packaging box S1 as shown in FIG. 7, the angle between the sticking piece 47 and the third support plate 45c (the angle with respect to the side plate 22). By changing, it can be deformed into a flat shape.
  • the buffer plate 43 can be expanded and contracted inward of the trunk portion according to the folding operation of the bottom flap 32. This is because the angle of the sticking piece 47 changes in accordance with the change in the angle of the bottom flap 32, and the buffer plate 43 moves in the inner and outer directions of the trunk portion 20.
  • a pillow packaged product (pillow) 2 in which tablets 4 are enclosed will be described as an example of an article stored in the packaging box S1.
  • five pillows 2 encapsulated in a state where a plurality of PTP packaging sheets 3 supporting tablets 4 are stacked are stored side by side in parallel.
  • the PTP packaging sheet 3 in the pillow 2 is disposed so as to be parallel to the buffer plate 43.
  • the packaging box S1 of the present invention has a particularly high buffering capacity against the tablet 4 which is vulnerable to impact and has high hardness but is easily broken.
  • the packaging box S1 of the present invention is suitable for packaging a plurality of tablets 4 that are easily broken against impact. Furthermore, it is also suitable for tablets having low hardness and fragile properties such as orally disintegrating tablets.
  • the pillow 2 is stored in a state where there is no gap in contact with the adjacent pillow 2 and the buffer portions 40a and 40b, and is stored so as not to move in the packaging box S1. Therefore, the distance between the buffer part 40a and the buffer part 40b depends on the size (horizontal width) of the pillow 2 to be packaged, and is formed to be approximately an integral multiple of the horizontal width of the pillow 2.
  • a sheet 51 such as a note or advertisement may be inserted between the pillows 2 as shown in FIG.
  • the buffer plates 43 and 44 provided on the side surface side expand and contract in accordance with the folding operation of the bottom flaps 32 and 34 to form buffer spaces between the side plates 22 and 24 for protecting internal articles from impact, respectively. Therefore, the buffer space is configured only when the buffer plates 43 and 44 are bulged. In this manner, when the buffer plates 43 and 44 are bulged, a buffering effect can be obtained against an external impact. Specifically, the shock energy can be absorbed by the elastic deformation and plastic deformation of the buffer plates 43 and 44 and the side plates 22 and 24 to effectively prevent the article from being damaged.
  • the strength of the buffer plates 43 and 44 can be adjusted by adjusting the shape and size of the notches 45d and 46d to obtain an optimal buffering effect, and can be stably held from the side surface direction of the article.
  • the buffer plates 43 and 44 are in close contact with the pillow 2 which is the content without providing a gap, but the notches 45d and 46d also function as thimbles, so the pillow 2 can be easily taken out. Since the expansion and contraction of the buffer plates 43 and 44 can be made to follow the folding operation of the bottom flaps 32 and 34, the packaging operation and the taking in and out operation of the article are facilitated. Therefore, work efficiency can be increased and packaging costs can be reduced. Further, when the packaging box S1 is folded, the packaging box S1 can be folded into a flat shape as shown in FIG. 7, so that a necessary space can be kept small when the packaging box S1 is stored or transported.
  • the packaging box S1 of the present invention is not configured to form the buffer portions 40a and 40b by cutting out the side flaps 41 and 42, the area of the side flaps 41 and 42 can be secured large. Therefore, the effect which prevents a foreign material from entering between the cover part 10 and the trunk
  • FIG. 6 shows a development view of the box forming substrate 1 for assembling the packaging box S1.
  • the packaging box S1 shown in this example is formed by folding and assembling a box forming substrate 1 made of a single sheet formed by punching blank paper (blank sheet).
  • the box forming substrate 1 is formed of a paper material having moderate flexibility and moderate strength for forming a casing.
  • four side plates 21, 22, 23, and 24 constituting the trunk portion 20 are connected in series in the trunk direction, and the other lid portion 10, the bottom portion 30 and the buffer portion are provided at the edge portions of the side plates.
  • the constituent pieces forming 40a and 40b are connected.
  • the side plate 21 is connected to the side plate 22 on one end side in the longitudinal direction and to the sticking piece 25 on the other end side. Further, the lid plate 11 is connected to one end side in the height direction, and the bottom flap 31 is connected to the other end side.
  • the insertion flap 12 is connected to the cover plate 11, and the sticking piece 31 a is connected to the bottom flap 31.
  • the side plate 22 connected to one end side of the side plate 21 has a side plate 23 connected to the other end side, and a series of constituent pieces forming the buffer portion 40a connected to one end side in the height direction.
  • a bottom flap 32 is connected to the other end of the base plate.
  • the side plate 23 connected to one end side of the side plate 22 has a side plate 24 connected to the other end side, and a cut line 50 is formed so as to cut out one end side in the height direction, and the other end side in the height direction is formed.
  • the bottom flap 33 is connected.
  • the tear line 50 defines an opening portion fixed by the cover plate 11 and an adhesive tape when the cover plate 11 of the packaging box S1 is closed, and is formed by fine perforations.
  • a sticking piece 33 a is connected to the bottom flap 33.
  • the other end side of the side plate 24 connected to one end side of the side plate 23 is a free end.
  • a series of component pieces forming the buffer portion 40b is connected to one end side in the height direction, and a bottom flap 34 is connected to the other end side in the height direction.
  • each said component piece is connected via the broken line f, respectively.
  • a series of constituent pieces forming the buffer portion 40a includes a side flap 41, a first support plate 45a, a second support plate 45b, a third support plate 45c, a buffer plate 43, and a sticking piece 47 from the side plate 22 side.
  • These connection portions a to e are perforated (or half-cut) and easily bent. Then, the connection portions a, d, and e are bent inwardly, and the connection portions b and c are bent so as to be valley-folded, and the sticking piece 47 is stuck to the inner surface of the bottom flap 32.
  • the second support plate 45b, the third support plate 45c, and the buffer plate 43 are formed with cut lines for forming a notch portion 45d formed in the vicinity of the center portion.
  • the buffer surface strength and the buffer effect of the buffer 40a can be adjusted.
  • the bottom part 30 is comprised by assembling the bottom flaps 31, 32, 33, and 34. As shown in FIG.
  • the box forming substrate 1 cut out from the blank paper (blank sheet) by the blade mold is first assembled with the buffer portions 40a and 40b.
  • the connecting portion a is bent, and then the attaching portion 41a of the side flap 41 and the first support plate 45a are attached (glued) with the connecting portion a being bent.
  • a part of the first support plate 45a has an embossed portion 45a 1 is provided with embossed so as to slightly recessed state as viewed from the front, is glued to the embossing unit 45a 1, the side flaps 41 It is easy to stick on and is suitable.
  • the outer periphery of the embossed portion 45a 1 is formed inside the outer periphery of the first support plate 45a, and the outer periphery of the embossed portion 45a 1 and the outer periphery of the first support plate 45a are formed apart from each other by a predetermined distance. ing. With such a configuration, when glued, the glue (adhesive) does not protrude from the first support plate 45a, and the appearance can be improved.
  • the sticking pieces 47 and 48 of the buffer portions 40a and 40b are bonded to the bottom flaps 32 and 34, respectively.
  • the buffer portions 40a and 40b are formed.
  • the buffer portions 40a and 40b are three-dimensionally assembled by sticking the sticking portions 47a and 48a of the sticking pieces 47 and 48 to the sticking portions 32b and 34b.
  • sticking part 32b, 34b is provided in the surface on the opposite side to the surface with which sticking part 32a, 34a was provided in bottom flaps 32, 34, respectively.
  • the sticking pieces 31a and 33a of the bottom flaps 31 and 33 are attached to the sticking portions 32a and 34a of the bottom flaps 32 and 34 while being folded inward.
  • the bottom part 30 is formed and it will be in the state before box making.
  • the sticking piece 25 connected with the side plate 21 is stuck on the sticking part 24a of the side plate 24.
  • FIG. Moreover, the process mentioned above can be performed with an assembly machine.
  • the packaging box S1 before box making assembled in this way can be made into a box-making state very easily by pushing the bottom part 30 stuck and folded inside to the outside.
  • the packaging box S1 having a buffer structure inside the side plates 22 and 24 can be started up three-dimensionally. Therefore, it is possible to improve the workability and reduce the manufacturing cost, and provide a packaging box S1 that can provide a sufficient buffering effect against an external impact at a low cost and with a simple manufacturing process. can do.
  • the assembly process is composed of a folding process and a sticking process along the broken line f, and it is suitable for assembling with a machine because the composition and number of times of folding and sticking are simple. Further, even in the state before the box making, it becomes a flat state without a raised portion, so that space saving at the time of storage can be achieved.
  • the box forming substrate 1 does not have the same configuration as described above.
  • the buffer portion 40a formed inside the side plate 22 is divided into two buffer portions having different heights, the gap is eliminated even when an article having a stepped shape is stored. be able to.
  • the height of the buffer portions 40a and 40b is determined by the length of the buffer plates 43 and 44 and the second support plates 45b and 46b (the height of the buffer plates 43 and 44).
  • Two buffer portions 40a and 40b having different heights 43 and 44 may be formed on the side plates 22 and 24, respectively.
  • FIG. 2 (Configuration of packaging box S2)
  • the structure of packaging box S2 which concerns on other embodiment is demonstrated with reference to FIG. 8, FIG.
  • the packaging box S2 of this example is characterized in that it includes buffer portions 140a and 140b different from the packaging box S1 of the above embodiment.
  • the description is abbreviate
  • the buffer portion 140 a includes a side flap 141, a first support plate 145 a as a support plate that is continuously provided from the side flap 141 and attached to the side flap 141, A buffer plate 143 extending from the support plate 145a and an adhesive piece 147 extending from the buffer plate 143 through the second support plate 145b and attached to the side plate 122 are provided.
  • the buffer portion 140a includes a side plate 122, a buffer plate 143 arranged in parallel with the side plate 122 at a predetermined interval, and a side flap connected to the upper end of the side plate 122 (the end portion on the lid portion 110 side).
  • 141 a first support plate 145a connected to the upper end of the side flap 141 (the end opposite to the end to which the side plate 122 is connected) and attached to the side flap 141, and the buffer plate 143
  • a second support plate 145b connected to the lower end; and an adhesive piece 147 connected to the lower end of the second support plate 145b.
  • the buffer plate 143 is connected to the lower end of the first support plate 145a.
  • the packaging box S ⁇ b> 2 of the present embodiment is characterized in that the sticking piece 147 is stuck to the inner surface of the side plate 122 instead of the bottom flap 132.
  • connection part a between the side flap 141 and the first support plate 145a, the connection part b' between the first support plate 145a and the buffer plate 143, and the buffer plate 143 and the second support plate 145b.
  • the connecting portion c ′, the second supporting plate 145b, and the connecting portion d ′ of the sticking piece 147 are formed to be bendable.
  • connection part a ′ is half-cut for easy folding, and the connection parts b ′ to d ′ are perforated or chevron-shaped cuts so as to be easily bent. Is formed.
  • the sticking piece 147 connected to the buffer plate 143 through the second support plate 145b is stuck to the side plate 122, and is formed to have substantially the same width as the buffer plate 143. Then, the connection portion c ′ between the second support plate 145b and the buffer plate 143 is folded inward and the side flap 141 is closed, so that the buffer portion 140a is formed between the buffer plate 143 and the side plate 122. Is done.
  • FIG. 10A shows a cross-sectional view taken along line ii of FIG. 8
  • FIG. 10B shows a cross-sectional view taken along line ii-ii of FIG.
  • FIG. 10 the state in which the pillow 2 was accommodated is shown for description. Since the buffer portions 140a and 140b formed in two places are symmetrical to each other, for convenience, one buffer portion 140a side formed inside the side plate 122 will be described as a representative.
  • the side plate 122 and the buffer plate 143, and the first support plate 145a (side flap 141) and the second support plate 145b are respectively arranged in parallel, and these can be bent connection portions. They are connected via b'-d '. Accordingly, the buffer space surrounded by the buffer plate 143, the side plate 122, the side flap 141, and the second support plate 145b forms a parallelogram, and the first support plate 145a (side flap 141) and By changing the angle of the second support plate 145b, the second support plate 145b can be deformed inwardly of the body portion 120. Therefore, since the buffer plate 143 is supported only by the upper end and the lower end, it has appropriate flexibility.
  • the buffer plate 143 is configured by a piece of paper continuously provided from the side flap 141, the size of the buffer plate 143 and the side flap 141 can be arbitrarily set independently of each other. Therefore, the area of the buffer plate 143 can be increased, and as a result, the packaging box S2 can obtain a sufficient buffer capacity.
  • the area of the side flap 141 is not dependent on the area of the buffer plate 143 and can secure a large area, in the packaging box S2, the space between the lid portion 110 and the trunk portion 120 is placed in the box. It is possible to prevent foreign matters from entering.
  • the buffer plate 143 can be expanded and contracted inward of the trunk portion 120 according to the bending operation of the side flap 141. This is because the angles of the first support plate 145a and the second support plate 145b change according to the change in the angle of the side flap 141, and the buffer plate 43 moves inward and outward of the body portion.
  • the buffer space of the buffer portion 140a is formed or folded as the side flap 141 is opened and closed.
  • the buffer space of the buffer portion 140a is configured only when the side flap 141 is folded and closed, when the side flap 141 is in an upright state (opened state), the take-out port is wide and the pillow 2 can be easily packed. is there.
  • the buffer plate 143 bulges inward and comes into contact with the pillow 2, thereby eliminating the gap between the pillow 2 and the inner surface of the packaging box S2. Further, when the cover plate 11 is folded to close the packaging box S2, the side flap 141 is fixed in a state of being folded inward. Therefore, when the packaging box S2 is closed, the pillow 2 and the inner surface of the packaging box S2 are fixed. It is possible to maintain a state in which there is no void.
  • the packaging box S2 of the present embodiment provides the following effects by providing such a buffer structure.
  • the buffer plates 143 and 144 provided on the side surfaces expand and contract in accordance with the folding operation of the side flaps 141 and 142 to form buffer spaces between the side plates 122 and 124, respectively, for protecting internal articles from impact. Therefore, the buffer space is configured only when the buffer plates 143 and 144 are bulged.
  • the take-out port is wide and the boxing operation is facilitated, and when the buffer plates 143 and 144 are bulged, a buffering effect is obtained against impacts from the outside.
  • the impact energy can be absorbed by the elastic deformation and plastic deformation of the buffer plates 143 and 144 and the side plates 122 and 124 to effectively prevent the article from being damaged.
  • sticking pieces 147 and 148 that are stuck to the side plate side continuously to the second support plates 145b and 146b are formed, and the sticking pieces 147 and 148 are the second support plates 145b and 146b (more specifically, Since the connecting portions c ′ and d ′) are attached to the side plates 122 and 124 so as to be separated from the bottom portion 30, the assembly of the packaging box can be facilitated. Further, since the expansion and contraction of the buffer plates 143 and 144 can be made to follow the folding operation of the side flaps 141 and 142, the buffer portions 140a and 140b are not easily caught when the articles are taken in and out, and the packaging work and the work in and out of the goods are easy It becomes. Therefore, yield and work efficiency can be increased, and packaging costs can be reduced. It is also suitable for packaging on machines.
  • FIG. 11 is a development view of the box forming substrate 1 ′ for assembling the packaging box S2.
  • the packaging box S2 shown in this example is formed by folding and assembling a box-forming substrate 1 'made of a single sheet formed by punching blank paper (blank sheet).
  • the box forming substrate 1 ′ is formed of a paper material having moderate flexibility and moderate strength for forming a casing.
  • the box forming substrate 1 ′ In the box forming substrate 1 ′, four side plates 121, 122, 123, and 124 constituting the body portion 120 are connected in series in the waist direction, and the other lid portion 110, the bottom portion 130, and the buffer are formed at the edge portions of the side plates.
  • the component pieces forming the portions 140a and 140b are connected.
  • the configuration other than the constituent pieces that form the buffer portions 140 a and 140 b is substantially the same as that of the box forming substrate 1 of the above embodiment, and thus the description thereof is omitted.
  • the sticking piece 125 is connected to one end side in the longitudinal direction, but may be connected to the side plate 121.
  • the buffer portion 140a and 140b are similar to each other, the buffer portion 140a connected to the side plate 122 will be described for convenience.
  • a series of constituent pieces forming the buffer portion 140a are connected to the side flap 141, the first support plate 145a, the buffer plate 143, the second support plate 145b, and the sticking piece 147 from the side plate 122 side.
  • Each of the connecting portions a ′ to d ′ is perforated (or half-cut) and is easily bent. Then, the connecting portions a ′, c ′, d ′ are folded inwardly, the connecting portion b ′ is folded in a valley fold, and the sticking piece 147 is stuck on the inner surface of the side plate 122.
  • the box forming substrate 1 ′ cut out from the blank paper (blank sheet) by the blade mold is first assembled with the buffer portions 140 a and 140 b.
  • the connecting portion a ′ is bent, and then the attaching portion 141a of the side flap 141 and the first support plate 145a are attached (glued) with the connecting portion a ′ bent.
  • the sticking pieces 147 and 148 of the buffer portions 140a and 140b are bonded to the side plates 122 and 124, respectively.
  • the buffer portions 140a and 140b are formed.
  • the buffer portions 140a and 140b are three-dimensionally assembled by sticking the sticking portions 147a and 148a of the sticking pieces 147 and 148 to the sticking portions 122a and 124a.
  • the bottom 130 is formed by sticking the sticking pieces 131a and 133a of the bottom flaps 131 and 133 to the sticking parts 132a and 134a of the bottom flaps 132 and 134, respectively, while folding them inward. Become.
  • the sticking piece 125 connected to the side plate 124 is stuck to the sticking portion 121 a of the side plate 121.
  • formation of buffer part 140a, 140b, sticking of the sticking piece 125, and sticking of the bottom part 130 are performed substantially simultaneously.
  • the process mentioned above can be performed with an assembly machine.
  • the packaging box S2 before boxing assembled in this way can be made into a box-making state very easily by pushing the bottom part 130 attached and folded inside to the outside.
  • the packaging box S2 having the buffer structure inside the side plates 122 and 124 can be raised in a three-dimensional manner by folding and assembling one box-forming substrate 1 ′. Further, the assembly process is constituted by a folding process and a sticking process along the broken line f ′, and the configuration and the number of constituent pieces to be folded and stuck are easy, so that it is suitable for assembly by a machine. Furthermore, since the flat state without the raised portion is obtained even before the box making, it is possible to save space during storage.
  • the buffer portions 140a and 140b are flat, so that the contents can be easily put therein.
  • the lid plate 111 is closed and the side flaps 141 and 142 are closed, the buffer portions 140a and 140b bulge smoothly and form a buffer space. Therefore, the packaging box S2 has a high buffer effect. It is easy to put in and out the contents while preparing.
  • the box forming substrate 1 may not have the same configuration as described above.
  • the buffer units 140a and 140b may be divided into a plurality of parts. In this case, for example, if the buffer part 140a formed inside the side plate 122 is divided into two buffer parts having different heights, the gap is eliminated even when an article having a stepped shape is stored. be able to. Specifically, since the height of the buffer portions 140a and 140b is determined depending on the size of the buffer plates 143 and 144, two buffer portions 140a and 140b having different heights of the buffer plates 143 and 144 are provided. What is necessary is just to form in the side plates 122 and 124.
  • FIG. 3 (Configuration of packaging box S3)
  • the configuration of a packaging box S3 according to still another embodiment (Embodiment 3) will be described with reference to FIG.
  • the packaging box S3 of this example is characterized by including buffer portions 240a and 240b different from the packaging box S1 of the above embodiment.
  • the description is abbreviate
  • the packaging box S3 of the present embodiment is characterized in that the buffer portions 240a and 240b do not have a cutout portion. Yes.
  • the buffer portions 240a and 240b having a large buffer capacity can be obtained.
  • the applicant of the present application has the packaging box S3 of the present invention according to the configuration of the above-described embodiment (the embodiment of the present invention) and the packaging box S ′ of Patent Document 5 shown in FIG.
  • a cushioning effect confirmation test is carried out using a packaging box configured to support the middle part of the cushioning material: comparative product 2) by bending it into a letter shape to make a cut-and-raised piece and connecting and fixing its tip to the side plate. The contents were checked for damage. The test contents and test results are shown below.
  • Each article A, B, C is stored as an article containing a pillow and a desiccant (powder desiccant packaged in a bag shape) held on a PTP packaging sheet. Each of the tablets was dropped from the height, and the number of broken tablets was examined.
  • -Specimen A Packaging box with a small buffer structure (Comparative Example 1)
  • -Specimen B Packaging box provided with an intermediate support in a buffer structure (Comparative Example 2)
  • -Specimen C Packaging box with large buffer structure (Example)
  • the pillow used was one in which two PTP packaging sheets and a desiccant were enclosed. More specifically, the PTP packaging sheet is enclosed in the pillow in a state where the storage portions (protruding portions) face each other so as to mesh with each other. Further, in one PTP packaging sheet, 14 tablets (7 tablets ⁇ 2 rows) are packaged.
  • the desiccant is formed in a flat bag shape, and is stored in the pillow so as to be along the surface side from which the medicine of the PTP packaging sheet is taken out. In addition, the desiccant is enclosed along one PTP packaging sheet among the two PTP packaging sheets.
  • each of the test bodies A, B, and C was packed in a box and dropped so that the left-side buffer part was down.
  • the pillow is in a state where the desiccant is stored so as to be upward with respect to the dropping direction of the packaging box (that is, a state where the tablet is most easily damaged because a buffering effect by the desiccant cannot be obtained).
  • one pillow contains two PTP sheets and a desiccant
  • one PTP packaging sheet contains 14 tablets. Is contained.
  • Specimen A of Comparative Example 1 has a structure in which a buffer portion is formed inside a side plate portion, but a buffer portion is formed by cutting a part of a side flap, and the area of the buffer plate is small, and the strength of the buffer portion Is relatively weak (low rigidity).
  • the test body B of Comparative Example 2 has a configuration in which the intermediate support portion is provided in the buffer portion, and the buffer portion strength is relatively strong (high rigidity).
  • the test body C which is an example of the present invention has a large area of the buffer plate as compared with the test body A and is not provided with an intermediate support portion like the test body B.
  • the buffer plate has moderate flexibility. Therefore, the specimen C has a configuration in which the strength of the buffer portion is medium (the rigidity is medium) compared to the specimens A and B.
  • test specimens A and B of the comparative example are formed so that the inside thereof has the same dimensions as when the buffer portions 240a and 240b of the test specimen C are expanded.
  • Other structures and dimensions are the same packaging box as the present invention.
  • PTP packaging sheet and tablets used in this test Details of the PTP packaging sheet and tablets used in this test are shown below.
  • the results of the tablet drop test used in this test are as follows: The number of broken tablets when dropped with the medicine container (pocket) up was 29 tablets, and the number of broken tablets when dropped with the pocket down was 118 tablets.
  • the tablet used in this test has a larger tablet weight than other general tablets. Furthermore, the size of the PTP packaging sheet is also larger than that of other general PTP packaging sheets.
  • Results Table 1 shows the number of broken tablets in the drop test for specimens A, B, and C.
  • the number of broken tablets is about one-fourth compared to the test body A, and one-third compared to the test body B. Compared to bodies A and B, it was shown that the number of broken tablets was extremely small. Therefore, it was recognized that the test body A (packaging box S3 of the present invention) has an extremely high buffer capacity.
  • the product of the present invention has a very high buffering capacity against external impacts as compared with the comparative example. Therefore, compared with the structure of the comparative example, the product of the present invention is not an article with a relatively large weight such as a vial, but has a sufficient flexibility in the buffer portion when a lightweight tablet is packaged. It has the ability. Compared to other general tablets, especially the tablets have higher hardness, and the tablets that are relatively heavy compared to general tablets are more reliably damaged against external impacts. It was confirmed that there was an effect that can be prevented.
  • the packaging boxes S1 to S3 of the present invention are not limited to the tablets used in the above-described confirmation test, but the strength of the tablets, from one PTP packaging sheet to a PTP packaging sheet packed with tablets from a height of 150 cm.
  • the packaging boxes S1 to S3 of the present invention are also used for tablets whose strength is such that when 10 tablets are dropped, the number of broken tablets is 1 or more (that is, tablets that are vulnerable to external impact). High buffer capacity. Moreover, it has a high buffering capacity even for tablets having a hardness of 9.8 N or more and 110 N (according to a tablet hardness meter manufactured by Schleunigel) or less. Therefore, the packaging foils S1 to S3 of the present invention are particularly preferably used for the above tablets.
  • Table 2 below shows examples of tablets (tablets A to G, of which tablets A to F are orally disintegrating tablets) packaged by the packaging boxes S1 to S3 of the present invention.
  • the drop test at this time was also evaluated using the drop tester DT-202 (manufactured by Yoshida Seiki) used in the confirmation test.
  • the hardness of the tablet shown in Table 2 is a value measured by a tablet hardness meter manufactured by Schleunigel.
  • “Upper” in Table 2 is the number of tablet breakage when dropping the PTP packaging sheet containing the tablets (protruded pockets) so that it is upward, and “Lower” is the PTP packaging sheet It is the number of tablet breaks when the tablet is dropped so that the part containing the tablet (protruded pocket part) faces downward.
  • the buffer units 40a and 40b (or the buffer units 140a and 140b and the buffer unit 240a, As in 240b), it is not necessary to provide the buffer portion so as to be symmetrical at two locations.
  • the buffering portions do not have to be provided at two locations. More specifically, when the pillow 2 has a sufficient cushioning effect on one side by enclosing the desiccant on one side partitioned by the PTP packaging sheet, the cushioning portion is only on one side in the packaging box. It is good also as the provided structure.
  • the packaging box having a cushioning function of the present invention can be used as a packaging box for packaging a PTP sheet containing a tablet having a fragile property against an external impact. Compared to a simple tablet, it can be suitably used for a tablet having a relatively large weight.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Cartons (AREA)
  • Buffer Packaging (AREA)
  • Packages (AREA)

Abstract

La présente invention a trait à une boîte d'emballage permettant d'emballer une feuille PTP dans laquelle une tablette a été disposée, laquelle boîte d'emballage est dotée d'une fonction d'amortissement et comprend un espace d'amortissement permettant d'offrir une capacité d'amortissement suffisante. Une boîte d'emballage (S) comprend : une partie de corps (20) qui est formée en pliant un ensemble de panneaux latéraux (21, 22, 23, 24) ; une partie de couvercle (10) qui est formée sur la partie supérieure ; une partie de base (30) qui est formée sur le fond ; et, à l'intérieur de la paire de panneaux latéraux (22, 24) qui sont face l'un à l'autre, des parties d'amortissement (40a, 40b). Les parties d'amortissement (40a, 40b) sont pourvues : de rabats extérieurs (41, 42) qui sont prévus en série à partir des panneaux latéraux (22, 24) vers l'intérieur de la partie de corps (20) ; de panneaux de support (45a, 46a) qui sont prévus en série à partir des rabats extérieurs (41, 42) de façon pliable et qui sont collés aux rabats extérieurs (41, 42) ; de panneaux d'amortissement (43, 44) qui s'étendent depuis les panneaux de support (45a, 46a) ; et de pièces de liaison (47, 48) qui sont collées à la partie de corps (20) ou à la partie de base (30), les pièces de liaison s'étendant depuis les panneaux d'amortissement (43, 44). Les panneaux d'amortissement (43, 44) sont disposés de manière à être espacés des panneaux latéraux (22, 24) et sont flexibles.
PCT/JP2012/057022 2011-03-23 2012-03-19 Boîte d'emballage dotée d'une fonction d'amortissement Ceased WO2012128253A1 (fr)

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Cited By (10)

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WO2014124770A1 (fr) 2013-02-13 2014-08-21 Cedrem Paroi anti-intrusion
JP2015091714A (ja) * 2013-11-08 2015-05-14 日立マクセル株式会社 電池トレイ及び梱包セット
JP2016068961A (ja) * 2014-09-26 2016-05-09 ノーベルファーマ株式会社 携行用薬剤セット
JP2018016321A (ja) * 2016-07-25 2018-02-01 株式会社クラウン・パッケージ 箱体、包装箱及び包装箱の製造方法
KR101840937B1 (ko) * 2016-07-27 2018-03-21 주식회사 삼보테크 안경렌즈 포장상자
JP2019006506A (ja) * 2018-10-09 2019-01-17 ノーベルファーマ株式会社 携行用薬剤セット
JP2019038615A (ja) * 2018-12-04 2019-03-14 ノーベルファーマ株式会社 携行用薬剤セット
CN109606890A (zh) * 2018-11-19 2019-04-12 珠海格力电器股份有限公司 一种家用电器用纸卡包装箱
KR20200000304U (ko) * 2018-07-27 2020-02-05 (주) 신원인팩 제품 고정이 가능한 포장용 상자
GB2607600A (en) * 2021-06-07 2022-12-14 Reckitt Benckiser Vanish Bv A box

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KR200489029Y1 (ko) * 2017-02-24 2019-04-18 씨제이제일제당 주식회사 상품 포장용 상자
CN111874400B (zh) * 2020-07-20 2022-02-11 珠海格力电器股份有限公司 用于包装盒的缓冲件及包装盒

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JP2000006956A (ja) * 1998-06-23 2000-01-11 Mita Ind Co Ltd 包装容器
WO2009072557A1 (fr) * 2007-12-04 2009-06-11 Astellas Pharma Inc. Boîte d'emballage avec fonction anti-choc

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JPH0513710Y2 (fr) * 1989-02-16 1993-04-12
JPH09323722A (ja) * 1996-06-05 1997-12-16 Takeda Chem Ind Ltd 緩衝材付き組立式包装箱
JP2000006956A (ja) * 1998-06-23 2000-01-11 Mita Ind Co Ltd 包装容器
WO2009072557A1 (fr) * 2007-12-04 2009-06-11 Astellas Pharma Inc. Boîte d'emballage avec fonction anti-choc

Cited By (11)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2014124770A1 (fr) 2013-02-13 2014-08-21 Cedrem Paroi anti-intrusion
JP2015091714A (ja) * 2013-11-08 2015-05-14 日立マクセル株式会社 電池トレイ及び梱包セット
JP2016068961A (ja) * 2014-09-26 2016-05-09 ノーベルファーマ株式会社 携行用薬剤セット
JP2018016321A (ja) * 2016-07-25 2018-02-01 株式会社クラウン・パッケージ 箱体、包装箱及び包装箱の製造方法
KR101840937B1 (ko) * 2016-07-27 2018-03-21 주식회사 삼보테크 안경렌즈 포장상자
KR20200000304U (ko) * 2018-07-27 2020-02-05 (주) 신원인팩 제품 고정이 가능한 포장용 상자
KR200491502Y1 (ko) * 2018-07-27 2020-04-17 (주)신원인팩 제품 고정이 가능한 포장용 상자
JP2019006506A (ja) * 2018-10-09 2019-01-17 ノーベルファーマ株式会社 携行用薬剤セット
CN109606890A (zh) * 2018-11-19 2019-04-12 珠海格力电器股份有限公司 一种家用电器用纸卡包装箱
JP2019038615A (ja) * 2018-12-04 2019-03-14 ノーベルファーマ株式会社 携行用薬剤セット
GB2607600A (en) * 2021-06-07 2022-12-14 Reckitt Benckiser Vanish Bv A box

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