WO2022087975A1 - Dispositif de stockage et matériel externe - Google Patents

Dispositif de stockage et matériel externe Download PDF

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Publication number
WO2022087975A1
WO2022087975A1 PCT/CN2020/124906 CN2020124906W WO2022087975A1 WO 2022087975 A1 WO2022087975 A1 WO 2022087975A1 CN 2020124906 W CN2020124906 W CN 2020124906W WO 2022087975 A1 WO2022087975 A1 WO 2022087975A1
Authority
WO
WIPO (PCT)
Prior art keywords
storage
board
plate
flap
management mechanism
Prior art date
Application number
PCT/CN2020/124906
Other languages
English (en)
Chinese (zh)
Inventor
任德坚
Original Assignee
巧明国际有限公司
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 巧明国际有限公司 filed Critical 巧明国际有限公司
Priority to PCT/CN2020/124906 priority Critical patent/WO2022087975A1/fr
Priority to JP2023520462A priority patent/JP2023550871A/ja
Priority to CN202080003122.XA priority patent/CN112469635B/zh
Priority to US18/033,914 priority patent/US20230286701A1/en
Priority to EP20959138.7A priority patent/EP4238882A1/fr
Publication of WO2022087975A1 publication Critical patent/WO2022087975A1/fr

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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
    • B65D27/00Envelopes or like essentially-rectangular containers for postal or other purposes having no structural provision for thickness of contents
    • B65D27/06Envelopes or like essentially-rectangular containers for postal or other purposes having no structural provision for thickness of contents with provisions for repeated re-use
    • 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
    • B65D27/00Envelopes or like essentially-rectangular containers for postal or other purposes having no structural provision for thickness of contents
    • 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
    • B65D27/00Envelopes or like essentially-rectangular containers for postal or other purposes having no structural provision for thickness of contents
    • B65D27/12Closures
    • B65D27/14Closures using adhesive applied to integral parts, e.g. 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
    • B65D27/00Envelopes or like essentially-rectangular containers for postal or other purposes having no structural provision for thickness of contents
    • B65D27/12Closures
    • B65D27/20Closures using self-locking integral or attached elements
    • B65D27/22Tongue-and-slot or like closures; Tuck-in 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
    • B65D27/00Envelopes or like essentially-rectangular containers for postal or other purposes having no structural provision for thickness of contents
    • B65D27/32Opening devices incorporated during envelope manufacture
    • B65D27/34Lines of weakness
    • 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
    • B65D2203/00Decoration means, markings, information elements, contents indicators
    • B65D2203/02Labels
    • 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
    • B65D2203/00Decoration means, markings, information elements, contents indicators
    • B65D2203/10Transponders

Definitions

  • the present application relates to the field of storage technology, and in particular, to storage devices and external hardware.
  • the envelope provided by the related art has a short service life, is difficult to reuse after being unsealed once, and has poor environmental protection.
  • the purpose of the present application is to provide a storage device and external hardware, which can prolong the service life of each storage device, facilitate repeated use, and improve environmental protection.
  • the present application provides a storage body, which includes a storage body, a first flap, and at least one first safety management mechanism, the storage body includes a first plate and a second plate that are connected to each other, and the first plate A panel and the second panel can be folded along a fold line to form a storage cavity, and when the first panel and the second panel are folded along the fold line, the storage body has a communication with the storage cavity a storage port; the first plate is connected with the first flap, and the first flap is used for turning over relative to the first plate around a first set axis to overlap with the second plate surface to close the storage opening, or the first flap is used to turn relative to the first plate about the first set axis to extend from the storage opening into the storage cavity; the The first safety management mechanism is used to connect the first flap and the second board when the first flap is overlapped on the surface of the second board, so that the storage port is closed, Alternatively, the connection between the first flap and the second panel is disconnected, so that the storage port can be opened; the
  • the first safety management mechanism includes a first self-adhesive assembly and a first safety inspection part, the first self-adhesive assembly is disposed on the first flap or the second board, the first The safety inspection part is arranged on the first flap, and the first self-adhesive component is used to make the first flap and the The second plate is connected so that the storage port is closed; the first safety check part is used for disconnecting the connection between the first flap and the second plate, so that the storage port can be opened ;
  • the first self-adhesive assembly and the first safety inspection part are arranged in sequence along a preset direction, wherein the preset direction and the first set axis are arranged at an angle.
  • the first safety management mechanism further includes a force application part, the force application part is connected with the first safety inspection part, and the force application part is used to drive the first safety inspection part under the action of external force to make the first flap and the second flap.
  • the connection to the board is disconnected.
  • the storage device further includes a plug-in assembly
  • the plug-in assembly includes a slot and a latch that are plugged and matched with each other, one of the slot and the latch is provided in the first safety management mechanism, and the slot and the latch are provided.
  • the other of the locks is provided on the second plate.
  • the second safety management mechanism includes a second self-adhesive assembly and a second safety inspection part, the second self-adhesive assembly is disposed on the second board through the second safety inspection part, and the second self-adhesive assembly is used to make the
  • the second plate is connected to the first flap extending into the storage cavity so that the storage opening is closed, or is used to connect the adjacent storage opening of the first plate and the adjacent storage opening of the second plate, so that the storage opening is closed by the storage opening.
  • the second safety inspection part is used to disconnect the second plate from the first flap extending into the storage cavity so that the storage opening can be opened, or the second safety inspection part is used to make the first plate adjacent
  • the connection between the storage port and the adjacent storage port of the second board is disconnected, so that the storage port can be opened;
  • the second self-adhesive assembly and the second safety inspection part are sequentially arranged along a preset direction, wherein the preset direction Set at an angle to the first set axis.
  • the storage device further includes a first digital encoding member, and the first digital encoding member is disposed on at least one of the first board and the second board.
  • the first digital encoding member includes at least one of a machine-readable optical label assembly and a wireless radio frequency chip.
  • the first digital encoding member includes a mechanically readable optical label assembly
  • the mechanically readable optical label assembly is disposed on the second board
  • the number of the mechanically readable optical label assembly is the same as the number of the first security management organization
  • the storage device further includes a third safety management mechanism; the second plate is connected with a second flap, and the second flap is used for turning relative to the second plate around a second set axis, so as to Overlapped on the surface of the first plate to close or open the storage opening, or the second flap is used to flip about the second set axis relative to the second plate to remove the storage
  • the port extends into the storage cavity; the third safety management mechanism is used to make the second flap when the second flap overlaps the surface of the first plate and closes the storage port connected with the first board.
  • the third safety management mechanism includes a third self-adhesive assembly and a third safety inspection part, the third self-adhesive assembly is disposed on the second flap or the first board, the third The safety inspection part is arranged on the second flap, and the third self-adhesive component is used to make the second flap and the the first plate is connected so that the storage port is closed; the third safety check part is used for disconnecting the second flap from the first plate so that the storage port can be opened ;
  • the third self-adhesive assembly and the third safety inspection part are arranged in sequence along a preset direction, wherein the preset direction and the second set axis are arranged at an angle.
  • the storage device further includes external hardware
  • the external hardware includes a third board and a fourth board that are connected to each other
  • the third board can be connected to one of the first board and the second board
  • the fourth board Can be flipped relative to the third plate about a third set axis to overlap a surface of the other of the first plate and the second plate to close or open the storage port.
  • the fourth board is provided with a fourth safety management mechanism, and the fourth safety management mechanism is used to connect the first board or the second board overlapped with the fourth board to the fourth board.
  • the fourth safety management mechanism includes a fourth self-adhesive assembly and a fourth safety inspection part, the fourth self-adhesive assembly is connected to the fourth board through the fourth safety inspection part; the fourth self-adhesive assembly is used to make the The first plate or the second plate overlapped with the fourth plate is connected with the fourth plate to close the storage opening; the fourth safety inspection part is used to make the first plate or the second plate overlapped with the fourth plate and the fourth plate The connection of the board is disconnected, so that the storage port can be opened; the fourth self-adhesive assembly and the fourth safety inspection part are sequentially arranged along a preset direction, wherein the preset direction and the third preset axis are set at an angle.
  • the external hardware further includes a second digital encoding member, and the second digital encoding member is disposed on at least one of the third board and the fourth board.
  • the second digital encoding member includes at least one of a mechanically readable optical label assembly and a wireless radio frequency chip.
  • the present application provides an external hardware, which is used for setting on a storage body, the external hardware includes a third board and a fourth board that are connected to each other, the third board is used for connecting with the storage body, and the fourth board is provided with The fourth safety management mechanism, the fourth plate is used to turn around the third set axis relative to the third plate to close or open the storage opening of the storage body; the fourth safety management mechanism includes a fourth self-adhesive assembly and a fourth safety In the inspection part, the fourth self-adhesive assembly is connected to the fourth board through the fourth safety inspection part; the fourth self-adhesive assembly is used to connect the fourth board with the storage body to close the storage port, and the fourth safety inspection part is used for The fourth plate is disconnected from the storage body so that the storage port can be opened.
  • the external hardware further includes a second digital encoding member, and the second digital encoding member is disposed on at least one of the third board and the fourth board.
  • the second digital encoding member is at least one of a mechanically readable optical label assembly and a wireless radio frequency chip.
  • the storage device of the present application includes a storage body, a first flap and a first safety management mechanism
  • the storage body includes a first plate and a second plate that are connected to each other, and the first plate and the first plate
  • the two panels can be folded along the folding line to form a storage cavity.
  • the storage body is provided with a storage port that communicates with the storage cavity, and items can be placed in the storage cavity from the storage port.
  • the first panel is connected with a first flap, the first flap can be turned relative to the first panel relative to the first set axis to close or open the storage opening, or the first flap is used to wrap around relative to the first panel
  • the first set axis is turned over to extend into the storage cavity from the storage port;
  • the first safety management mechanism is used to connect the first flap and the second board when the first flap is overlapped on the surface of the second board, so that the storage port is closed, or the connection between the first flap and the second panel is disconnected, so that the storage port can be opened
  • the second panel is provided with a second safety management mechanism, and the second safety management mechanism is used for When the first flap extends into the storage cavity, the second plate is connected with the first flap to close the storage opening; or, the second safety management mechanism is used for when the first flap overlaps the surface of the second plate , connect the adjacent storage opening of the first plate and the adjacent storage opening of the second plate to close the storage opening.
  • the first safety management mechanism or the second safety management mechanism can be used to close the storage port, so that a storage body can use the first safety management mechanism and the second safety management mechanism to close the storage port more than or equal to twice, and use the first safety management mechanism and the second safety management mechanism to close the storage port more than twice. This extends the service life of each storage device, facilitates reuse, and improves environmental friendliness.
  • the beneficial effects of the external hardware of the present application include: the external hardware provided by the present application can be arranged on the storage body and used together with the storage body, and the external hardware includes a third board and a fourth board that are connected to each other, and the external hardware is arranged on the fourth board.
  • the fourth safety management mechanism of the board, the third board is used to connect with the storage body, the fourth safety management mechanism includes a fourth self-adhesive assembly and a fourth safety inspection part, and the fourth self-adhesive assembly is connected with the fourth safety inspection part through the fourth safety inspection part.
  • the fourth board is connected; the fourth self-adhesive assembly is used to connect the fourth board with the storage body to close the storage port, and the fourth safety inspection part is used to disconnect the connection between the fourth board and the storage body to make the storage port can be opened.
  • the storage port of the used storage body can be closed again by using external hardware, so as to prolong the service life of the storage body, facilitate the repeated use of the storage body, and improve environmental protection.
  • FIG. 1 is a schematic structural diagram of a storage device that does not include a second flap in an embodiment of the application;
  • FIG. 2 is a first structural schematic diagram of a storage device in an embodiment of the present application
  • FIG. 3 is a second structural schematic diagram of a storage device in an embodiment of the present application.
  • FIG. 4 is a first structural schematic diagram of the storage device when the first flap is overlapped with the second plate according to the embodiment of the present application;
  • FIG. 5 is a second structural schematic diagram of the storage device when the first flap is overlapped with the second plate according to the embodiment of the application;
  • FIG. 6 is a third structural schematic diagram of the storage device when the first flap is overlapped with the second plate according to the embodiment of the application;
  • FIG. 7 is a schematic diagram 4 of the structure of the storage device when the first flap is overlapped with the second plate according to the embodiment of the present application;
  • FIG. 8 is a schematic structural diagram of the storage device when the first flap is not overlapped with the second plate according to the embodiment of the present application;
  • FIG. 9 is a schematic structural diagram of an inspection part body in other embodiments of the present application.
  • FIG. 10 is a first structural schematic diagram of a storage device in another embodiment of the present application.
  • FIG. 11 is a second structural schematic diagram of a storage device in another embodiment of the present application.
  • FIG. 12 is a schematic structural diagram of the storage device with the first flap extending into the storage cavity in the embodiment of the application;
  • FIG. 13 is a first structural schematic diagram of a storage device including a second flap according to an embodiment of the application;
  • FIG. 14 is a second structural schematic diagram of a storage device including a second flap according to an embodiment of the application.
  • 15 is a schematic structural diagram of external hardware in an embodiment of the present application.
  • 16 is a schematic structural diagram of disposing external hardware on the storage body according to an embodiment of the present application.
  • 17 is a third schematic structural diagram of a storage device in an embodiment of the present application.
  • FIG. 18 is a schematic structural diagram of disposing external hardware on the storage body in another embodiment of the present application.
  • Icons 010-storage device; 100-storage body; 110-first board; 120-second board; 121-side wing; 130-storage cavity; 131-storage port; 132-first fold line; 133-second fold Line; 141-first setting axis; 142-second setting axis; 200-first flap; 210-first safety management mechanism; 211-first self-adhesive assembly; 212-first safety inspection part; 213-Forcing part; 214-Self-sealing adhesive tape; 215-Protective layer; 216-Inspection part body; 217-Connecting part; 218-Through hole group; 220-Second safety management mechanism; 221-Second self-adhesive 222-Second safety inspection part; 230-First plug-in assembly; 231-Second plug-in assembly; 232-Latch; 233-Slot; ; 240- the first digital code part; 241- the second digital code part; 242- bar
  • orientation or positional relationship indicated by the terms “inside”, “outside”, etc. is based on the orientation or positional relationship shown in the accompanying drawings, or is usually placed when the product of the application is used.
  • the orientation or positional relationship is only for the convenience of describing the present application and simplifying the description, rather than indicating or implying that the indicated device or element must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation on the present application.
  • the terms “first”, “second”, “third”, etc. are only used to differentiate the description and should not be construed as indicating or implying relative importance.
  • connection should be understood in a broad sense, for example, it may be a fixed connection or a detachable connection, or It can be connected in one piece; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be internal communication between two components.
  • preset direction refers to the direction of the ab arrow in the figure.
  • This embodiment provides a storage device, such as an envelope, a document bag, etc., which can be used to store letters, documents and other items.
  • a storage device such as an envelope, a document bag, etc.
  • the following uses an envelope as an example for detailed description.
  • the storage device 010 includes a storage body 100, and the storage body 100 includes a first plate 110 and a second plate 120 connected to each other, and the first plate 110 and the second plate 120 can be along a folding line ( Hereinafter referred to as the first folding line 132) is folded to form the storage cavity 130, when the first panel 110 and the second panel 120 are folded along the first folding line 132, the storage body 100 has a storage port 131 connected with the storage cavity 130; When the device 010 stores items, the items are placed in the storage cavity 130 through the storage port 131 .
  • connection method of the first board 110 and the second board 120 can be selected according to needs.
  • the following connection methods of the first board 110 and the second board 120 are only a partial list, and the specific connection methods are not limited thereto.
  • the first plate 110 and the second plate 120 are integrally formed in a plate-like structure, and there is a first folding line 132 between the first plate 110 and the second plate 120 .
  • the two panels 120 are folded along the first folding line 132, so that a storage cavity 130 is formed between the first panel 110 and the second panel 120, and the end of the first panel 110 is away from the first folding line 132 and the second panel 120 is away from the first panel 120.
  • One end of the folding line 132 forms the storage port 131 .
  • the storage body 100 can be made of hard board, such as cardboard, plastic board, etc., that is, the first board 110 and the second board 120 can be made of hard board.
  • the first board 110 is connected with a side flap 121 , and the side flap 121 can be folded relative to the first board 110 and connected with the second board 120 .
  • both sides of the first board 110 are connected with side wings 121 , so that the two sides of the first board 110 are connected to the second board 120 through the two side wings 121 respectively.
  • first board 110 and the side flaps 121 are integrally formed, there is a second folding line 133 between the side flaps 121 and the first board 110 , and the side flaps 121 are turned relative to the first board 110 along the second folding line 133 , and the connected to the surface of the second board 120 .
  • the connection method between the side wings 121 and the second board 120 may be bonding, or connection with fasteners such as staples, etc., which are not specifically limited herein.
  • first board 110 and the side wings 121 are bonded or connected with fasteners such as staples, etc., which are not specifically limited herein.
  • first board 110 and the second board 120 are adhesively connected, and the first end of the first board 110 and the first end of the second board 120 are bonded to each other, so that the first board 110 and the second board 120 are stacked, and a storage cavity 130 is formed between the first plate 110 and the second plate 120 , and a storage port 131 is formed at the second end of the first plate 110 and the second end of the second plate 120 .
  • the first board 110 is not connected to the side wings 121, and along the extending direction of the first folding line 132, the two sides of the first board 110 and the two sides of the second board 120 are connected in a one-to-one correspondence. It may be glued, or connected with fasteners such as staples, etc., which are not specifically limited here.
  • first plate 110 and the second plate 120 are connected by fasteners such as staples, and the first end of the first plate 110 and the first end of the second plate 120 are connected by fasteners such as staples, so that the first plate 110 and the second plate 120 are stacked, and a storage cavity 130 is formed between the first plate 110 and the second plate 120, and the second end of the first plate 110 and the second end of the second plate 120 form a storage cavity mouth 131.
  • the storage device 010 further includes a first flap 200 , the first panel 110 is connected to the first flap 200 , when the first panel 110 and the second panel 120 are folded along the first folding line 132 , the first flap 200 is used for flipping around the first set axis 141 relative to the first plate 110 to overlap the surface of the second plate 120 to close the storage port 131, or the first flap 200 is used for relative to the first set axis 141.
  • the first plate 110 is turned around the first set axis 141 to extend from the storage port 131 into the storage cavity 130 .
  • the storage device 010 further includes at least one first safety management mechanism 210 , and the first safety management mechanism 210 is used to make the first flap 200 overlap when the first flap 200 overlaps the surface of the second board 120 and closes the storage opening 131 .
  • the first flap 200 can be used to close the storage port 131 , or the connection between the first flap 200 and the second panel 120 can be disconnected, so that the storage port 131 can be opened.
  • the first flap 200 can be inserted into the storage cavity 130, so that the first flap 200 is clamped between the second plate 120 and the article.
  • the first flap 200 is sometimes clamped between the first plate 110 and the article, or the first flap 200 can be turned around the first set axis 141 so that the first flap 200 overlaps the second plate 120 and connect the first flap 200 with the second plate 120 by using the first safety management mechanism 210 to prevent the items placed in the storage cavity 130 from accidentally falling out of the storage opening 131;
  • the first safety management mechanism 210 is used to disconnect the connection between the first flap 200 and the second plate 120, so that the first flap 200 can rotate around the first set axis 141 to open the storage port 131.
  • first flap 200 is used to turn around the first set axis 141 relative to the first plate 110 to overlap with the surface of the second plate 120 to close the storage port 131, which means: the first flap The wings 200 are used to flip around the first set axis 141 relative to the first plate 110 to overlap the surface of the second plate 120 facing away from the first plate 110 to close the storage port 131 .
  • the first flap 200 is overlapped on the surface of the second board 120, and the first flap 200 is connected with the second board 120 by the first safety management mechanism 210, and the first flap 200 is raised to overlap with the second board
  • the stability of the 120 ensures that the first flap 200 can reliably close the storage opening 131, thereby effectively improving the reliability of the storage of items.
  • the second board 120 is provided with a second safety management mechanism 220 , and the second safety management mechanism 220 is used to make the second board 120 and the first flap 200 extend into the storage cavity 130 , A flap 200 is connected to close the storage port 131; in this way, when the storage device 010 is used to store items and the storage port 131 needs to be closed, the first safety management mechanism 210 or the second safety management mechanism 220 can be selected to be closed as required. Storage port 131 .
  • the first flap 200 when the storage device 010 is used to store items for the first time and the storage port 131 needs to be closed, the first flap 200 can be turned forward and inserted into the storage cavity 130 from the storage port 131, and the first flap 200 can be clamped Holding between the second board 120 and the items in the storage cavity 130 , the first flap 200 is connected to the second board 120 by the second safety management mechanism 220 , so that the storage port 131 is covered by the second board 120 and the first flap 200 .
  • the second safety management mechanism 220 can be destroyed, so that the connection between the first flap 200 and the second plate 120 is disconnected, and the first flap 200 is reversed, so that the first flap 200 is stored from the storage After taking it out from the cavity 130 , the items in the storage cavity 130 can be taken out from the storage port 131 .
  • the first flap 200 can be turned forward and overlapped on the surface of the second board 120 , and the first flap 200 can be used to make the first flap 200 200 is connected with the second plate 120, so that the storage port 131 is closed by the first flap 200; when the item needs to be taken out, the first safety management mechanism 210 can be destroyed, so that the connection between the first flap 200 and the second plate 120 is disconnected, The storage opening 131 can be opened by inverting the first flap 200 , so that the items in the storage cavity 130 can be taken out from the storage opening 131 .
  • the first flap 200 when the storage device 010 is used to store items for the first time and the storage port 131 needs to be closed, the first flap 200 can be turned forward and overlapped on the surface of the second plate 120, using the first safety The management mechanism 210 connects the first flap 200 and the second plate 120, so that the storage port 131 is closed by the first flap 200; when the item needs to be taken out, the first safety management mechanism 210 can be destroyed, so that the first flap 200 is connected to the first flap 200. The connection of the two plates 120 is disconnected, and the first flap 200 is reversed to open the storage port 131 , so that the items in the storage cavity 130 can be taken out from the storage port 131 .
  • the first flap 200 can be turned forward and inserted into the storage cavity 130 from the storage port 131, and the first flap 200 can be clamped in the first flap 200.
  • the second safety management mechanism 220 is used to connect the first flap 200 to the second plate 120, so that the storage port 131 is jointly closed by the second plate 120 and the first flap 200;
  • the second safety management mechanism 220 can be destroyed, so that the connection between the first flap 200 and the second plate 120 is disconnected, and the first flap 200 is reversed, so that the first flap 200 is removed from the storage cavity 130 Taking out, the items in the storage cavity 130 can be taken out from the storage port 131 .
  • the envelope provided by the related art usually needs to be provided with a structure for gluing at the storage opening 131, so that the storage opening 131 of the envelope is sealed by gluing; during the opening process, the edge of the envelope needs to be cut with a knife, or the edge of the envelope needs to be cut with force. Tear open the envelope to take out the items stored in the envelope. After each envelope is unsealed and taken out, it does not have the structure of re-bonding to close the storage opening 131, so that the envelope provided by the related art has a short service life, and it is unsealed once. It is difficult to reuse after that, and the environmental protection is poor.
  • the storage device 010 provided in this application can use the first safety management mechanism 210 or the second safety management mechanism 220 to close the storage port 131 , so that a storage body 100 can use the first safety management mechanism 210 and the second safety management mechanism 220 to close the storage
  • the openings 131 are formed at least twice, thereby prolonging the service life of each storage device 010, facilitating repeated use, and improving environmental protection.
  • the second safety management mechanism 220 is configured to make the first plate 110 adjacent to the storage port 131 and the second plate when the first flap 200 overlaps the surface of the second plate 120 . 120 is connected adjacent to the storage port 131 to close the storage port 131 .
  • the first safety management mechanism 210 can be used to close the storage port 131 when the items are stored for the first time and the storage port 131 needs to be closed
  • the second safety management mechanism can be used when the items are stored for the second time and the storage port 131 needs to be closed.
  • the second safety management mechanism 220 is used to close the storage port 131; and when the item is stored for the second time and the storage port 131 needs to be closed, the first safety management mechanism is used.
  • the management mechanism 210 closes the storage port 131; in this way, the storage device 010 can also be used to reliably store items at least twice, so as to prolong the service life of the storage device 010, facilitate repeated use, and improve environmental protection.
  • the number of the first security management organizations 210 can be selected according to requirements. When the number of the first security management organizations 210 is larger, the number of times the storage device 010 is used for repeated use is also increased.
  • the storage device 010 includes three groups of first safety management mechanisms 210 ; in this way, the storage device 010 stores items and the storage port 131 is closed for four safe storage times, and one safety storage is performed by the first safety storage device 010 .
  • the second safety management mechanism 220 connects the second plate 120 and the first flap 200 to close the storage port 131, and the other three safety storages are realized by the first safety management mechanism 210 to connect the second plate 120 and the first flap 200 to close the storage.
  • Port 131 is implemented.
  • the number of groups of the first security management organization 210 may be one group (as shown in FIG. 1 ), two groups, four groups, etc., which are not specifically limited herein.
  • the second board 120 is not provided with the second safety management mechanism 220.
  • the storage device 010 includes at least two sets of the first safety management mechanism 210.
  • a set of first safety management mechanisms 210 are used to connect the first flap 200 and the second plate 120 to realize the closure of the storage port 131 .
  • the first safety management mechanism 210 of this embodiment includes a first self-adhesive component 211 and a first safety inspection part 212 .
  • the first safety inspection part 212 is disposed on the first flap 200 , and the first self-adhesive
  • the glue assembly 211 is disposed on the first flap 200 through the first safety inspection part 212, and the first self-adhesive glue assembly 211 is used to connect the first flap 200 and the second plate 120, so that the storage port 131 is closed;
  • the safety inspection part 212 is used to disconnect the connection between the first flap 200 and the second board 120, so that the storage port 131 can be opened;
  • the first self-adhesive assembly 211 and the first safety inspection part 212 are in sequence along a preset direction Arrangement, wherein the preset direction is set at an angle with the first setting axis 141 .
  • the first flap 200 connected to the second board 120 needs to be turned over to open the storage port 131, it is only necessary to destroy the structure of the first safety inspection portion 212, and then the first flap 200 and the The connection of the second plate 120 enables the first flap 200 to rotate freely around the first set axis 141, so as to be turned over to open the storage port 131, so as not to damage the structure of the storage body 100, so as to facilitate the next reuse of storage
  • the body 100 stores articles.
  • the first self-adhesive assembly 211 is disposed on the second board 120
  • the first safety inspection portion 212 is disposed on the first flap 200
  • the first self-adhesive assembly 211 is used for the first folding
  • the wings 200 overlap the surface of the second plate 120 the first flap 200 and the second plate 120 are connected, so that the storage port 131 is closed, that is, when the first flap 200 overlaps the surface of the second plate 120 , the first self-adhesive component 211 is connected with the first flap 200 through the first safety inspection part 212;
  • the port 131 can be opened.
  • the first flap 200 connected to the second board 120 needs to be turned over to open the storage port 131, it is only necessary to destroy the structure of the first safety inspection portion 212, and then the first flap 200 and the The connection of the second plate 120 enables the first flap 200 to rotate freely around the first set axis 141, so as to be turned over to open the storage port 131, so as not to damage the structure of the storage body 100, so as to facilitate the next reuse of storage
  • the body 100 stores articles.
  • the preset direction in this embodiment is set perpendicular to the first setting axis 141 , that is, the included angle between the preset direction and the first setting axis 141 is 90°.
  • the included angle between the preset direction and the first set axis 141 may also be 88°, 93°, etc., which is not specifically limited herein.
  • the number of the first safety management agencies 210 is greater than or equal to two groups, all the first safety management agencies 210 are arranged in sequence along the preset direction, and one of the first safety management agencies 210 is far from the first set
  • the axis 141 is the closest, and the first safety inspection part 212 closest to the first set axis 141 is directly connected to the first flap 200 , and the first safety inspection parts 212 of the remaining first safety management mechanisms 210 pass through the distance from the first set axis.
  • the first safety inspection part 212 of another first safety management mechanism 210 that is closer is disposed on the first flap 200 , for example, the three groups of first safety management mechanisms 210 in this embodiment are far from the first set axis 141
  • the first safety inspection part 212 of the first safety management mechanism 210 is directly connected to the first flap 200, and the first safety inspection part 212 of the first safety management mechanism 210 is directly connected to the first flap 200.
  • the first safety inspection part 212 of the first safety management organization 210 is connected to the first flap 200 through the first safety inspection part 212 of the No. 3 first safety management organization 210, and the first safety inspection part of the No. 1 first safety management organization 210
  • the part 212 is connected to the first flap 200 through the first safety inspection part 212 of the No.
  • first safety management mechanism 210 The sequence of using the first safety management mechanism 210 to connect the first flap 200 and the second board 120 may be to use the first safety management mechanism 210 farthest from the first set axis 141 first, and then use the next relative to the previous one in turn.
  • the first safety management mechanism 210 close to the first set axis 141; in this way, the first safety inspection part 212 of the previous first safety management mechanism 210 can be destroyed, so that the first flap 200 and the second plate 120 can be damaged.
  • the connection is disconnected, avoid damaging the next first safety management mechanism 210, and then ensure that the storage device 010 is reused under the condition that other first safety management mechanisms 210 are not damaged; please refer to FIG. 4-FIG.
  • the storage device 010 of the present embodiment uses the three groups of first security management agencies 210 in an order of first using the No. 1 first security management agency 210, then using the No. 2 first security management agency 210, and finally using the No. 3 first security management agency 210.
  • the safety management agency 210 so that when the No. 1 first safety management agency 210 is used and the first safety inspection section 212 of the No. 1 first safety management agency 210 is destroyed, the No. 2 first safety management agency 210 and the third No.
  • the first security management mechanism 210 is still intact, and the storage device 010 can continue to be reused.
  • the first self-adhesive adhesive component 211 of this embodiment includes a self-sealing adhesive tape 214 and a protective layer 215 detachably covering the self-sealing adhesive tape 214 , and the self-sealing adhesive tape 214 is at a side away from the protective layer 215 Adhesion with the first safety inspection part 212, and the first safety inspection part 212 is connected with the first flap 200, so that the self-sealing adhesive tape 214 and the self-sealing adhesive tape 214 are disposed on the first safety inspection part 212 through the first safety inspection part 212.
  • Flap 200 when the first flap 200 overlaps the surface of the second board 120, and the first self-adhesive component 211 needs to be used to connect the first flap 200 to the second board 120, the protective layer 215 can be torn off Then use the self-sealing tape 214 to bond the side of the self-sealing tape 214 away from the first safety inspection part 212 to the second board 120, so that the first flap 200 can be connected with the second board 120; destroy the first safety inspection part 212, That is, the connection between the first flap 200 and the second plate 120 can be disconnected, so that the first flap 200 can be freely turned around the first set axis 141 .
  • the protective layer 215 can be used to cover the side of the self-sealing adhesive tape 214 away from the first security inspection part 212 when the first flap 200 does not need to be bonded to the second board 120 through the self-sealing adhesive tape 214, so as to protect the protective layer 215.
  • Self-sealing tape 214 can be used to cover the side of the self-sealing adhesive tape 214 away from the first security inspection part 212 when the first flap 200 does not need to be bonded to the second board 120 through the self-sealing adhesive tape 214.
  • the side of the self-sealing adhesive tape 214 away from the protective layer 215 is bonded to the surface of the second board 120 , and the first safety inspection part 212 is connected to the first flap 200 ; the first flap 200 is overlapped on the surface of the second board 120, and when the first flap 200 and the second board 120 need to be connected by the first self-adhesive component 211, the protective layer 215 can be torn off, and then the self-sealing adhesive tape 214 can be used.
  • the side away from the second board 120 is connected with the first safety inspection part 212, so that the first flap 200 can be connected with the second board 120; by destroying the first safety inspection part 212, the first flap 200 and the second board 120 can be connected.
  • the connection of the two plates 120 is disconnected, so that the first flap 200 can be freely turned around the first set axis 141 .
  • the first safety inspection part 212 of this embodiment includes an inspection part body 216 and a connecting part 217 , the self-sealing adhesive tape 214 is connected with the connecting part 217 , and the inspection part body 216 is used for connecting the connecting part 217 to the first folding part 217 .
  • the wings 200 are connected; the inspection part body 216 of the first safety inspection part 212 closest to the first set axis 141 is directly connected with the first flap 200, and the inspection part body 216 of the first safety inspection part 212 farther from the first set axis 141
  • the inspection part body 216 is connected to the first flap 200 through the connection part 217 of the first safety inspection part 212 which is closer to the first set axis 141 .
  • the inspection part body 216 of the first safety inspection part 212 is directly connected with the first flap 200 , the inspection part body 216 of the first safety inspection part 212 of the No. 2 first safety management mechanism 210 and the No. 3 first safety management mechanism 210
  • the connection part 217 of the first safety inspection part 212 is connected, and the inspection part body 216 of the first safety inspection part 212 of the first safety management mechanism 210 No. 1 is connected with the connecting part of the first safety inspection part 212 of the first safety management mechanism 210 217 is connected, and the setting manner of the first security checking unit 212 having other numbers of the first security management mechanisms 210 is similar to that of the present embodiment, and details are not repeated here.
  • the self-sealing adhesive tape 214 adhered to the connecting portion 217 and the inspection portion body 216 are spaced apart along a preset direction; this arrangement makes it more convenient to attach the first flap 200 and the second plate 120 to the self-sealing tape 214 .
  • the structure of the inspection part body 216 is individually destroyed, so as to disconnect the connection between the first flap 200 and the second plate 120, thereby reliably avoiding damage to the structure of the storage body 100, so as to facilitate the repeated use of the storage body 100 .
  • the distance between the self-sealing adhesive tape 214 adhered to the connecting portion 217 and the inspection portion body 216 may be 1 mm, 1.5 mm, 1.2 mm, etc., which is not specifically limited herein.
  • the inspection part body 216 is a connecting strip, and the connecting strip is connected with the connecting part 217 and/or the first flap 200 in the form of break points; the connecting strip and the connecting part 217 are broken points.
  • the breakpoint connection refers to: along the length extending direction of the first set axis 141, the connection between the connection strip and the connection part 217 has a plurality of through holes or openings that are not connected at intervals, That is, the connection between the connecting strip and the connecting part 217 is not a complete connection along the extending direction of the connection between the two; the use of a breakpoint connection can make the connecting strip and the connecting part 217 easily disconnected under the action of external force.
  • first flap 200 of this embodiment is provided with three groups of first safety management mechanisms 210 as an example for illustration.
  • one side of the inspection part body 216 of the No. 3 first safety management mechanism 210 is connected to the first flap 200 in a breakpoint shape
  • the other side of the inspection part main body 216 of the No. 3 first safety management mechanism 210 is connected to
  • the connection part 217 of the No. 3 first safety management mechanism 210 is connected in a broken point shape, so that the connecting strip serving as the inspection part body 216 is easily torn with the first flap 200 and the No. 3 first flap under the external force.
  • connection portion 217 of the safety management mechanism 210 is disconnected, so that the connection between the first flap 200 and the connection portion 217 and the first self-adhesive component 211 adhered to the connection portion 217 is disconnected. 211 is also bonded to the second plate 120 at the same time, then when the connection between the inspection part body 216 and the first flap 200 and the connecting part 217 is disconnected at the same time, the connection between the first flap 200 and the second plate 120 is also disconnected. open. Similarly, one side of the inspection part body 216 of the No. 2 first safety management mechanism 210 is connected to the connecting part 217 of the No. 3 first safety management mechanism 210 in a breakpoint shape, and the inspection part body of the No.
  • the other side of the 216 is connected to the connection part 217 of the No. 2 first safety management mechanism 210 in the form of a break point, and one side of the inspection part body 216 of the No. 1 first safety management mechanism 210 is connected to the No. 2 first safety management mechanism 210.
  • the connection part 217 is connected in a broken point shape, and the other side of the inspection part body 216 of the No. 1 first safety management mechanism 210 is connected with the connection part 217 of the No. 1 first safety management mechanism 210 in a broken point shape; No. 1 and No. 2
  • the working principle of the inspection part main body 216 of the first safety management mechanism 210 is similar to that of the inspection part main body 216 of the No. 3 first safety management mechanism 210 , and details are not repeated here.
  • the connecting strip serving as the inspection part body 216 can be in a zigzag shape.
  • the inspection part body 216 can be prevented from accidentally connecting with the connecting part 217 or the first part.
  • the inspection part body 216 can be easily torn to be disconnected from the first flap 200 or the connecting part 217 under the action of external force.
  • the connecting strip serving as the inspection part body 216 is provided with a zigzag-shaped breakpoint, so that the inspection part body 216 can be damaged from the zigzag-shaped breakpoint under the action of external force, so that the inspection part body 216 The connection with the connection part 217 is disconnected.
  • the two sides of the inspection part main body 216 are respectively connected to the connecting parts 217 of the No. 1 first safety management mechanism 210 and the No.
  • connection part 217 of the management mechanism 210 and the inspection part body 216 are provided with a plurality of zigzag-shaped breakpoints, and the zigzag-shaped breakpoints are arranged at intervals along the length extending direction of the first set axis 141 .
  • the inspection part body 216 is a connecting strip, and the connecting strip is connected with the connecting part 217 and/or the first flap 200 , and the inspection part body 216 of the No. 2 first safety management mechanism 210
  • the two sides of the connecting strip are respectively connected to the connecting part 217 of the No. 3 first safety management mechanism 210 and the connecting part 217 of the No. 2 first safety management mechanism 210
  • the connecting strip is provided with two rows of through-hole groups 218,
  • each row of through hole groups 218 includes a plurality of through holes arranged in sequence and spaced apart.
  • connection between the inspection part body 216 and the connecting part 217 is integrally formed, and the connection between the inspection part body 216 and the first flap 200 is also integrally formed, and the through holes in the through hole group 218 provided in the inspection part body 216 may be It can be formed by die-cutting, punching, etc., or can die-cut or punch out a breakpoint without connection at the connection between the inspection part body 216 and the connecting part 217 , which is not specifically limited here.
  • the inspection part body 216 is a tension band, and the tension band is connected to the connecting part 217 and/or the first flap 200 , taking the inspection part body 216 of the No. 3 first safety management mechanism 210 as an example It is explained that the two sides of the tension band are respectively connected to the first flap 200 and the connecting part 217 of the No. 3 first safety management mechanism 210, the length extension direction of the tension band is consistent with the extension direction of the first set axis 141, and the external force pulls the tension force The tension belt can be disconnected from the connection portion 217 and the first flap 200 at the same time.
  • the inspection part body 216 when the structure of the inspection part body 216 needs to be destroyed, the first flap 200 and the second plate When the connection of 120 is disconnected, the structure of the inspection part body 216 can be easily destroyed without using a knife, and the structure of the storage body 100 and the structure of the unused first safety management mechanism 210 will not be damaged, thereby effectively This ensures that the storage device 010 can be reused.
  • the first flap 200 is overlapped with the second board 120, and the self-sealing tape 214 is used to connect the first flap 200 and the second board 120, not only can damage
  • the structure of the inspection part body 216 disconnects the connection between the first flap 200 and the second plate 120, so that the first flap 200 can be freely turned around the first set axis 141 to open the storage port 131, take out items, and also Before destroying the structure of the inspection part body 216, it is possible to visually check whether the structure of the inspection part body 216 has been destroyed in advance, so as to ensure the reliability and safety of the items stored in the storage device 010.
  • the structure of the inspection part body 216 Before the connection of the second board 120 , the structure of the inspection part body 216 has been damaged, and it is determined that the items stored in the storage device 010 are not safely stored. If the connection between the first flap 200 and the second board 120 needs to be disconnected before , the structure of the inspection part body 216 is not damaged, then it is determined that the items stored in the storage device 010 are safely stored.
  • the first safety management mechanism 210 of this embodiment further includes a force applying part 213 , the force applying part 213 is connected with the first safety inspection part 212 , and the force applying part 213 is used to drive the first safety inspection part 213 under the action of external force
  • the inspection part 212 disconnects the first flap 200 from the second plate 120 .
  • an external force is applied to the force applying portion 213 , which can destroy the first safety inspection
  • the structure of the part 212 makes the connection between the first flap 200 and the second plate 120 disconnected, so as to achieve the effect of saving labor.
  • the urging portion 213 is provided at one end of the first safety inspection portion 212 .
  • both ends of the first safety inspection portion 212 are provided with force applying portions 213 .
  • the force-applying portion 213 and the inspection portion body 216 are integrally formed. This arrangement can ensure the stability of the connection between the force-applying portion 213 and the inspection portion body 216.
  • an external force acts on the force-applying portion 213, the force is applied.
  • the part 213 is not easily broken with the inspection part body 216 , so that the external force is applied to the force applying part 213 to tear off the inspection part body 216 , so that the connection between the first flap 200 and the second plate 120 is disconnected.
  • the connection between the force applying portion 213 and the inspection portion body 216 may also be bonding, or connection with fasteners such as staples, etc., which are not specifically limited herein.
  • the storage device 010 further includes a plug-in assembly (hereinafter referred to as the first plug-in assembly 230 ), and the first plug-in assembly 230 includes a slot 233 and a latch 232 that are plugged and matched with each other.
  • the first plug-in assembly 230 includes a slot 233 and a latch 232 that are plugged and matched with each other.
  • one of the slot 233 and the latch 232 is provided in the first security management mechanism 210
  • the other of the slot 233 and the latch 232 is provided in the second board 120 .
  • the latch 232 can be inserted into the slot 233 , so that the first flap 200 overlaps with the second board 120 more stably.
  • the first safety management mechanism 210 does not need to be used to bond the first flap 200 to the second plate 120
  • the first flap 200 can be turned over around the first set axis 141, so that the first flap 200 overlaps the second plate 120, and the latch 232 is inserted into the slot 233 is enough.
  • the latch 232 can also be inserted into the slot 233 to improve the stability of the connection between the first flap 200 and the second board 120 .
  • the first plug assembly 230 is not an essential component, that is, the storage device 010 may choose not to provide the first plug assembly 230 as required.
  • the latch 232 of this embodiment is connected with the first safety management mechanism 210 , so that the latch 232 is connected with the first flap 200 through the first safety management mechanism 210 ; the slot 233 is opened in the second board 120 .
  • the slot 233 can be opened in the first flap 200 or in the first safety management mechanism 210, so that the slot 233 can be set on the first flap 200 through the first safety management mechanism 210,
  • the latch 232 is disposed on the second board 120 .
  • the number of the first plug assemblies 230 may be the same as the number of the first safety management mechanisms 210 (as shown in FIG. 3 ), or may be different (as shown in FIG. 10 ).
  • the number of the first plug components 230 is the same as the number of the first security management mechanisms 210 , that is, the storage device 010 in this embodiment includes three sets of the first plug components 230 , and three sets of the first plug components 230
  • the latches 232 of the three groups of the first security management mechanisms 210 are arranged in a one-to-one correspondence, and the slots 233 of the three groups of the first plug-in components 230 are arranged at intervals along the preset direction.
  • the latches 232 of each group of the first plug assemblies 230 are correspondingly arranged with the connecting portions 217 of the corresponding first safety management mechanism 210 , that is, the latches 232 are connected to the connecting portions 217 , And along the extending direction of the first setting axis 141, the latch 232 is connected to the end of the connecting portion 217; in this way, the first plug-in assembly 230, the first self-adhesive assembly 211 and the first safety inspection portion 212 can be avoided. The three interfere with each other.
  • the latch 232 is integrally formed with the connecting portion 217 .
  • the latch 232 may be bonded to the connecting portion 217, etc., which is not specifically limited herein.
  • the latch 232 can be in various shapes as required, as shown in FIG. 11 , for example: the latch 232 is a rectangular insert 234, and the insert 234 is connected to the connecting portion 217; or the latch 232 is an insert 234, the insert piece 234 is connected with the connecting portion 217, and the end of the insert piece 234 away from the connecting portion 217 is provided with two card slots 235, and the two card slots 235 are distributed on both sides of the insert piece 234 along a preset direction; the latch 232 includes The insert 234 and the protrusion 236 are connected to the connecting portion 217 , the protrusion 236 is connected to the end of the insert 234 away from the connecting portion 217 , and the protrusion 236 extends toward or away from the first set axis 141 .
  • the slot 233 may also be in various shapes, for example, rectangular, curved, pentagonal, etc., which are not specifically limited herein.
  • each group of first plug assemblies 230 includes two slots 233, two latches 232 can be inserted and matched with the two slots 233 in one-to-one correspondence. This arrangement can improve the stability of the first plug assembly 230 in making the first flap 200 cooperate with the second board 120 .
  • the second safety management mechanism 220 of this embodiment includes a second self-adhesive component 221 and a second safety inspection part 222 , and the second self-adhesive component 221 is disposed on the second board through the second safety inspection part 222 120.
  • the second self-adhesive component 221 is used to connect the second board 120 with the first flap 200 extending into the storage cavity 130, so as to close the storage port 131;
  • the second safety inspection part 222 is used to connect the second board 120
  • the connection with the first flap 200 extending into the storage cavity 130 is disconnected, so that the storage port 131 can be opened;
  • the second self-adhesive components 221 and the second safety inspection part 222 are sequentially arranged along a preset direction.
  • This arrangement makes it convenient to use the second self-adhesive component 221 to close the storage port 131 when the storage device 010 is used for the first time for safe storage, that is, the articles can be put into the storage cavity 130 and the first flap can be closed.
  • 200 is inserted into the storage cavity 130, and the first flap 200 is clamped between the article and the second board 120, and the second board 120 and the first flap 200 are bonded by the second self-adhesive component 221,
  • the storage port 131 can be closed; and, after the second safety inspection portion 222 is damaged by external force, the connection between the second plate 120 and the first flap 200 is disconnected, and a storage port is formed between the first plate 110 and the second plate 120 131, so that the items in the storage cavity 130 can be easily taken out.
  • the above-mentioned second self-adhesive assembly 221 is used to connect the second plate 120 with the first flap 200 extending into the storage cavity 130 so as to close the storage port 131, which can be regarded as the second self-adhesive assembly 221 is used to connect the second plate 120 to the first plate 110 through the first flap 200 extending into the storage cavity 130 to close the storage port 131.
  • the second safety inspection part 222 is damaged by an external force
  • the second plate 120 is connected to the first plate 110.
  • the connection of the first flap 200 is disconnected, the storage port 131 between the first plate 110 and the second plate 120 can be opened.
  • the storage device 010 is used for general storage that does not require the storage port 131 to be closed, after the items are put into the storage cavity 130 , the first flap 200 can be inserted into the storage cavity 130 , and the first flap 200 can be inserted into the storage cavity 130 so that the first The flaps 200 may be clamped between the article and the second plate 120 .
  • the second self-adhesive assembly 221 is located between the second safety inspection part 222 and the storage port 131 ; in this way, when the structure of the second safety inspection assembly is destroyed, the second plate 120 and the first flap 200 When the connection is disconnected, and a new storage port 131 that communicates with the outside is formed between the first board 110 and the second board 120, the second self-adhesive component 221 is adhered to the first flap 200, and the storage The structure of the body 100 will not be damaged, so that the storage body 100 can be reused for storing articles.
  • the first flap 200 overlaps the surface of the second board 120
  • the second self-adhesive component 221 is used to make the first board 110 adjacent to the storage port 131 and the second board 120
  • the second safety inspection part 222 is used to disconnect the connection between the storage port 131 of the first board 110 and the storage port 131 of the second board 120, so that the storage port 131 is closed; so that the storage port 131 can be opened.
  • the articles are put into the storage cavity 130
  • the first flap 200 is overlapped on the surface of the second board 120
  • the second self-adhesive component 221 is used to attach the first board 110 adjacent to the storage port 131 and the second board 110 . Adhesion of the plate 120 adjacent to the storage port 131 can close the storage port 131 .
  • the structures and working principles of the second self-adhesive assembly 221 and the second safety inspection part 222 are respectively similar to the first self-adhesive assembly 211 and the first safety inspection part 212 , that is, the first safety management mechanism 210 and the first safety inspection part 212 are respectively similar.
  • the structure and working principle of the second security management organization 220 are similar, and details are not repeated here.
  • the storage device 010 further includes a first digital encoding member 240 , and the first digital encoding member 240 is disposed on at least one of the first board 110 and the second board 120 .
  • the first digital code 240 is used for intelligent management of the storage device 010 , which is traceable and convenient for security management, for example, used to identify and record who, when, and where the storage device 010 is used. It should be understood that the first digital encoding member 240 is not an essential component, and the storage device 010 may not be provided with the first digital encoding member 240 as required.
  • the first digital encoding member 240 includes at least one of a machine-readable optical label assembly and a wireless radio frequency chip 244 .
  • the mechanically readable optical label assembly and the radio frequency chip 244 can extract data with a scanner and a sensor respectively, and the extracted data can be transmitted to the computing hardware for further data analysis, management and other work.
  • the above computing hardware may refer to terminals such as computers and mobile phones, which are not specifically limited herein.
  • the mechanically readable optical label component includes at least one of a barcode 242 and a two-dimensional code 243 (Quick Response Code, QR Code).
  • the first digital encoding member 240 includes a mechanically readable optical label assembly (hereinafter referred to as the first mechanically readable optical label assembly 271 ), and the first mechanically readable optical label assembly 271 is disposed on the second board 120 , the number of the first mechanically readable optical label components 271 is the same as the number of the first safety management mechanism 210.
  • the first flap 200 is overlapped with the second board 120, the first safety management mechanism 210 and the mechanically readable optical label Volume labels are set in one-to-one correspondence. In this way, when each first security management organization 210 is used, the corresponding information can be recorded by the corresponding first machine-readable optical label component 271 , so as to facilitate the traceability and security management of the storage device 010 .
  • the first digital encoding member 240 further includes a second mechanically readable optical label assembly 272 , and the second mechanically readable optical label assembly 272 cooperates with the second security management mechanism 220 .
  • the first flap 200 is overlapped with the second board 120 , and the second security management mechanism 220 is matched with the second machine-readable optical label assembly 272 .
  • the second mechanically readable optical label assembly 272 and the plurality of first mechanically readable optical label assemblies 271 are arranged at intervals along the preset direction, and the second mechanically readable optical volume
  • the label assembly 272 is closest to the first set axis 141, and is sequentially defined as No. 4, No. 3, No. 2 and No. 1 mechanically readable optical label components from close to the first set axis 141 to far from the first set axis 141,
  • the No. 4 mechanically readable optical label component is the second mechanically readable optical label component 272
  • the No. 3, No. 2 and No. 1 are all the first mechanically readable optical label component 271 .
  • the first flap 200 When the storage device 010 is used for safe storage of the first closed storage port 131, the first flap 200 is inserted into the storage cavity 130, and the second safety management mechanism 220 connects the first flap 200 with the second plate 120, No. 4, No. 3 No. 2, No. 2 and No. 1 mechanically readable optical label assemblies are located on the side of the second plate 120 away from the first plate 110, that is, No. 4, No. 3, No. 2 and No. 1 mechanically readable optical label assemblies are all exposed , write the relevant information of the first safe storage into the No. 4 mechanically readable optical label assembly; when the storage device 010 is reused for the second safe storage that requires the closed storage port 131, as shown in FIG.
  • the first folding The wings 200 are overlapped on the surface of the second board 120 , the No. 1 first security management mechanism 210 connects the first flaps 200 with the second board 120 , the No. 1 mechanically readable optical label assembly is not blocked, No. 4, 3 No. 1 and No. 2 mechanically readable optical label assemblies are blocked, and No. 1 mechanically readable optical label assembly writes the relevant information of the second safe storage into No. 1 mechanically readable optical label assembly; as shown in Figure 5 , after the second safe storage, destroy the first safety inspection part 212 of the No.
  • each of the first mechanically readable optical label assembly 271 and the second mechanically readable optical label assembly 272 includes a barcode 242 and a two-dimensional code 243, and along the extending direction of the first set axis 141, each The barcode 242 and the two-dimensional code 243 of the mechanically readable optical label assembly are arranged on the second plate 120 at intervals.
  • the first digital encoding member 240 of this embodiment further includes a radio frequency chip 244 , and the radio frequency chip 244 is disposed at one end of the second board 120 away from the storage port 131 .
  • the radio frequency chip 244 may also be disposed on the first board 110 , or directly in the storage cavity 130 , or disposed on the second board 120 near the storage port 131 , which is not specifically limited here.
  • the first digital encoding member 240 may include only one of the barcode 242 , the two-dimensional code 243 and the radio frequency chip 244 , or a combination of any two of the above three.
  • the mechanically readable optical label assembly can be used to record postal information, such as the postal destination, origin, mailer's contact information, recipient's contact information, etc., and can also be used to record the information of the storage device 010.
  • postal information such as the postal destination, origin, mailer's contact information, recipient's contact information, etc.
  • the number of times of use and the like are not specifically limited here.
  • the first digital code piece 240 is used for the use process control and data collection of the storage device 010, which may include: ISO 9001-Implementation of retrospective quality management, such as who, what purpose, where, and when to use the storage Operational status and process control of device 010, and storage history for big data analysis; alternatively, ISO 14000 series to monitor environmental performance, including carbon footprint calculation, greenhouse gas emissions, and offset efficiency; this application reuses the same storage bin multiple times Compared with the energy saving benefit obtained by the traditional single-use storage device 010, the performance of environmental friendliness can be converted into a quantified carbon equivalent (CO2e) value.
  • CO2e quantified carbon equivalent
  • the application program for analyzing and supervising the data scanned or read from the first digital code member 240 is similar to the program provided by the related art, and the digital code information involved can be provided by all users of the storage device 010 data to understand usage behavior by communicating with the storage device 010 provider's website, and also retrospectively such as who, when, and where the storage device 010 is used to securely manage the storage device 010 .
  • the storage device 010 service provider can also analyze the number of times the same storage device 010 is reused, as well as other valuable information, such as logistics companies can provide tracking information for user reference, etc. Specific restrictions.
  • the storage device 010 of this embodiment further includes a second flap 250 , the second plate 120 is connected to the second flap 250 , and the second flap 250 is used for wrapping around the second flap 120 relative to the second plate 120 .
  • the two set axes 142 are turned over to overlap the surface of the first plate 110 to close or open the storage port 131 , or the second flaps 250 are used to turn around the second set axis 142 relative to the second plate 120 to remove from
  • the storage port 131 extends into the storage cavity 130; the second flap 250 is provided with at least one set of third safety management mechanisms 260, and the third safety management mechanism 260 is used to overlap the surface of the first board 110 with the second flap 250 When the storage port 131 is closed, the second flap 250 is connected with the first plate 110 . In this way, the second flap 250 connected to the second board 120 and the third safety management mechanism 260 provided on the second flap 250 can be used to further increase the usage times of the storage device 010 .
  • the above-mentioned second flap 250 is used for flipping around the second setting axis 142 relative to the second plate 120 to overlap the surface of the first plate 110 to close or open the storage port 131, which means: the second flap 250 is used for Relative to the second plate 120 and turned around the second set axis 142 to overlap with the surface of the first plate 110 facing away from the second plate 120 to close or open the storage port 131 .
  • the storage device 010 with the second flap 250 connected to the second plate 120 is used for storing articles including: putting the article into the storage cavity 130, extending the first flap 200 into the storage cavity 130, and The first flap 200 is placed between the article and the second panel 120, the second flap 250 is extended into the storage cavity 130, and the second flap 250 is placed between the second panel 120 and the first flap 200 Alternatively, the second flap 250 can be extended into the storage cavity 130, the second flap 250 can be between the first plate 110 and the article, or between the second plate 120 and the article, and then the first flap 200 The first flap 200 and the second plate 120 are bonded together by using the first safety management mechanism 210 to overlap the side of the second plate 120 away from the first plate 110 .
  • the third safety management mechanism 260 includes a third self-adhesive assembly 261 and a third safety inspection part 262, the third safety inspection part 262 is disposed on the second flap 250, and the third self-adhesive assembly 261 passes through the third safety inspection part 262.
  • the safety inspection part 262 is disposed on the second flap 250, and the third self-adhesive component 261 is used to connect the second flap 250 with the first board 110, so that the storage port 131 is closed; the third safety inspection part 262 is used for The connection between the second flap 250 and the first board 110 is disconnected, so that the storage port 131 can be opened; the third self-adhesive assembly 261 and the third safety inspection part 262 are sequentially arranged in a preset direction, wherein the preset The setting direction is set at an angle with the second setting axis 142 .
  • the extension direction of the second setting axis 142 is the same as that of the first setting axis 141 .
  • the structure of the second flap 250 is similar to that of the first flap 200 , and details are not described herein again.
  • the structures of the third self-adhesive assembly 261 and the third safety inspection part 262 and the way they are disposed on the second flap 250 are respectively the same as the structures of the first self-adhesive assembly 211 and the first safety inspection part 212 and the way they are disposed on the first self-adhesive assembly 211 and the first safety inspection part 212 .
  • the manners of the flaps 200 are similar, that is, the structures and working principles of the first safety management mechanism 210 and the third safety management mechanism 260 are similar, which will not be repeated here.
  • the third self-adhesive component 261 is disposed on the first board 110, the third safety inspection portion 262 is disposed on the second flap 250, and the third self-adhesive component 261 is used to connect the second flap 250 to the first flap 250.
  • the plate 110 is connected so that the storage port 131 is closed; the third safety check portion 262 is used to disconnect the second flap 250 from the first plate 110 so that the storage port 131 can be opened.
  • the third self-adhesive assembly 261 is disposed on the first board 110, and the third safety inspection portion 262 is disposed on the second flap 250, respectively, and the first self-adhesive assembly 211 is disposed on the first board. 110 and the first safety inspection part 212 are disposed on the first flap 200 in a similar manner, and details are not described herein again.
  • the number of the third safety management agencies 260 set on the second flap 250 can be selected according to needs. In this embodiment, there are three groups of third safety management agencies 260. In other embodiments, there may be one group, two groups, and the like.
  • the first board 110 in this embodiment is further provided with a third mechanically readable optical label assembly 273 , and the number of the third mechanically readable optical label assembly 273 is the same as the number of the third security management mechanism 260 They are consistent with each other and are set in one-to-one correspondence.
  • the specific setting method and working principle are similar to those of the first mechanically readable optical label assembly 271 , which will not be repeated here.
  • the storage device 010 further includes a second plug assembly 231 , the structure of the second plug assembly 231 is similar to that of the first plug assembly 230 , and the second plug assembly 231 includes plugs that are plugged with each other.
  • a slot and a latch, one of the slot and the latch is provided on the second flap 250 , and the other of the slot and the latch is provided on the first plate 110 .
  • the storage device 010 may not be provided with the second flap 250 .
  • the storage device 010 of this embodiment further includes external hardware 300
  • the external hardware 300 includes a third board 310 and a fourth board 320 that are connected to each other.
  • the third board 310 can be connected to the first board 110 .
  • the fourth plate 320 can be turned around the third set axis 311 relative to the third plate 310 to overlap the first plate 110 and the second plate 120 the other surface to close or open the storage port 131 .
  • the first safety management mechanism 210 and the second safety management mechanism 220 respectively provided on the first flap 200 and the second flap 250 can be used up, that is, when both fail, the external hardware 300 can be used to set them in storage.
  • the main body 100 uses the external hardware 300 to close the storage port 131, which can further prolong the service life of the storage main body 100; and each storage device 010 is configured with a plurality of external hardware 300, and the first security management mechanism 210 of the storage device 010 , When the second security management mechanism 220 and the third security management mechanism 260 are all invalid, the number of times that the second security management mechanism 220 and the third security management mechanism 260 can be reused depends on the number of the multiple external hardware 300 .
  • the fourth board 320 is provided with a fourth safety management mechanism 330 , and the fourth safety management mechanism 330 is used to connect the first board 110 or the second board 120 overlapping with the fourth board 320 to the fourth board 320 .
  • the storage port 131 can be reliably closed by the external hardware 300, so as to ensure reliable and safe storage by using the storage body 100 repeatedly.
  • the fourth safety management mechanism 330 includes a fourth self-adhesive assembly 331 and a fourth safety inspection part 332.
  • the fourth self-adhesive assembly 331 is connected to the fourth board 320 through the fourth safety inspection part 332; the fourth self-adhesive assembly 331 For connecting the first plate 110 or the second plate 120 overlapping with the fourth plate 320 to the fourth plate 320 to close the storage port 131; The connection between the first board 110 or the second board 120 and the fourth board 320 is disconnected, so that the storage port 131 can be opened;
  • the preset direction and the third setting axis 311 are set at an angle.
  • the third board 310 is provided with a self-adhesive assembly, and the third board 310 may be connected to the first board 110 or the second board 120 through the self-adhesive assembly. It should be noted that the structure of the self-adhesive assembly is similar to that of the first self-adhesive assembly 211 , and details are not described herein again.
  • the third board 310 of the external hardware 300 is connected to the first board 110, and the fourth board 320 can be rotated around the third setting axis 311 to overlap with the second board 120 as an example.
  • the third board 310 is connected to the first board 110 , and the fourth self-adhesive component 331 is connected to the fourth board 320 through the fourth safety inspection part 332 ;
  • the storage port 131 can be closed by using the external hardware 300;
  • the structure of the fourth safety inspection part 332 is damaged by external force, the connection between the second board 120 and the fourth board 320 is disconnected , the fourth plate 320 can be freely turned around the third set axis 311 to open the storage port 131 .
  • the external hardware 300 is connected to the storage body 100 , and the method used to close or open the storage port 131 will not damage the structure of the storage body 100 , and ensure that the storage body 100 can be reused by replacing the external hardware 300 with new ones. , the service life of the storage body 100 is sufficiently extended until the structure of the storage body 100 is destroyed.
  • the number of the fourth security management mechanisms 330 provided on the fourth board 320 can be selected according to requirements, for example, it can be one group, two groups, three groups, etc., which is not specifically limited here. Referring to FIG. 17 , when the external hardware 300 is installed on the storage body 100 to close the storage port 131 , a set of fourth safety management mechanisms 330 can be used to connect the fourth board 320 and the second board 120 each time to close the storage port 131 . Therefore, the number of times each external hardware 300 can close the storage port 131 for safe storage is determined by the number of the fourth safety management mechanisms 330 provided on the fourth board 320 .
  • each storage device 010 can be configured with multiple external hardware 300 , such as 1, 2, 3, etc., so as to increase the number of times of repeated use of the storage body 100 and prolong the storage period through the multiple external hardware 300 .
  • the service life of the device 010 is conducive to improving economic and environmental benefits.
  • the structure of the fourth self-adhesive assembly 331 and the fourth safety inspection part 332 and the manner in which they are arranged on the fourth board 320 are different from those of the first self-adhesive assembly 211 and the first safety inspection part 212 , respectively.
  • the structures and the manner in which the two are arranged on the first flap 200 are similar, that is, the structures and working principles of the first safety management mechanism 210 and the fourth safety management mechanism 330 are similar, and will not be repeated here.
  • both sides of the third plate 310 are connected with a fifth plate 340 , and the fifth plate 340 can be turned relative to the third plate 310 .
  • the fifth plate 340 can be turned over, so that the fifth plate 340 overlaps the fourth plate 320 and deviates from it.
  • One side of the third board 310, or the fifth board 340 is inserted between the third board 310 and the fourth board 320, and then the fifth board 340 and the fourth board 320 are connected, such as by gluing or using a stapler. Fastener connections, etc.
  • a plug cavity is formed between the third board 310 and the fourth board 320, and the first board 110 and the second board 120 of the storage body 100 can be plugged into the plug cavity at the same time, even if the third board 310 and the fourth board 320 are distributed on the outer sides of the first board 110 and the second board 120 respectively, so as to close the storage port 131 with the external hardware 300 .
  • connection method of the third plate 310 and the fourth plate 320 and the connection method of the third plate 310 and the fifth plate 340 may also be bonding, connection with fasteners such as a stapler, and the like.
  • the third board 310 may not be connected to the fifth board 340 , that is, when the external hardware 300 does not have the fifth board 340 , the third board 310 extends from the storage port 131 into the storage cavity 130 to communicate with
  • the first plate 110 is connected, that is, the third plate 310 can extend into the storage cavity 130 and be connected to the side of the first plate 110 facing the second plate 120, or the third plate 310 can extend into the storage cavity 130 and the second plate 120 is connected to the side of the first board 110, or the third board 310 can be connected to the side of the first board 110 that faces away from the second board 120, or the third board 310 can be connected to the second board 120 away from the first board 110 It is connected to one side of the first flap 200, and its function is similar to that of the first flap 200, which will not be repeated here.
  • connection method between the third board 310 and the first board 110 may be bonding or connecting with fasteners such as staples, etc., which is not specifically limited here.
  • the external hardware 300 further includes a second digital encoding member 241 , and the second digital encoding member 241 is disposed on at least one of the third board 310 and the fourth board 320 .
  • the function and working principle of the second digital encoding member 241 are similar to those of the first digital encoding member 240 , and details are not described herein again.
  • the second digital encoding member 241 includes at least one of a mechanically readable optical label component and a wireless radio frequency chip 244 .
  • the machine-readable optical label component includes at least one of the barcode 242 and the two-dimensional code 243 .
  • the second digital encoding member 241 of this embodiment includes a mechanically readable optical label component (hereinafter referred to as the fourth mechanically readable optical label component 274 ), and the fourth mechanically readable optical label component 274 includes a barcode 242 and a two-dimensional code 243, along the extending direction of the third set axis 311, the barcode 242 and the two-dimensional code 243 are arranged at intervals, and the barcode 242 and the two-dimensional code 243 are both arranged corresponding to the fourth self-adhesive component 331 .
  • the fourth mechanically readable optical label component 274 includes a barcode 242 and a two-dimensional code 243, along the extending direction of the third set axis 311, the barcode 242 and the two-dimensional code 243 are arranged at intervals, and the barcode 242 and the two-dimensional code 243 are both arranged corresponding to the fourth self-adhesive component 331 .
  • the postal information such as the postal destination, the origin, the mailer's contact information, the recipient, can be recorded by using the barcode 242 and the two-dimensional code 243.
  • the contact information, etc. can also be used to record the usage times of the storage device 010, etc., which are not specifically limited here.
  • the barcode 242 can be used to record the number of times the storage device 010 is repeatedly used, and the two-dimensional code 243 can be used to record the postal information.
  • the barcode 242 can be used to record the postal information, and the two-dimensional code 243 can be used to record the number of times the storage device 010 is repeatedly used.
  • the second digital encoding member 241 further includes a radio frequency chip 244 , when the external hardware 300 is set on the storage body 100 , that is, when the third board 310 is connected with the first board 110 or the second board When the 120 is connected, the radio frequency chip 244 of the second digital encoder 241 can be put into the storage cavity 130 through the storage port 131 .
  • the function of the radio frequency chip 244 of the second digital encoding member 241 is similar to that of the radio frequency chip 244 of the first digital encoding member 240 , and details are not described herein again.
  • the external hardware 300 of this embodiment is used in cooperation with the storage body 100 to prolong the service life of the storage body 100 , even if the storage body 100 is repeatedly used for safe storage where the storage port 131 needs to be closed.
  • the external hardware 300 can also independently cooperate with other storage devices 010 such as envelopes and document bags of a third party to close the storage openings 131 of other envelopes and document bags for safe storage, and can also be replaced by The new external hardware 300 is used to extend the service life of other common envelopes and document bags, that is, to enable other envelopes and document bags to be reused and repeated for safe storage that can close the storage opening 131 .
  • the environmental protection benefit (reuse benefit) of the storage device 010 in this embodiment can be calculated by calculating the economic benefit and expressed as a carbon equivalent (CO2e) value, including: a single use of the storage device 010 is recorded as a unit value of 1 and used as the denominator, and this application is the first time
  • the storage device 010 is reused (ie, the storage device 010 is used for the second time), and the first safety management organization 210 is used for the first time when the storage device 010 is reused for the first time, and the unit value is 2, and as the numerator, the settlement is 2 then 2 Double the benefit; if the storage device 010 is reused twice and used twice, the unit value 1 plus 2 equals 3, and its benefit is 3 times. It can be seen that the storage device 010 of the present application has very considerable economic benefits through repeated use and prolonging its service life.
  • the storage port 131 may not be closed, and the first flap 200 and the second flap 250 only need to be folded so that they extend into the storage cavity 130 and the first flap 200 and the second flap 250 are folded.
  • the flap 200 is clamped between the articles in the storage cavity 130 and the second flap 250
  • the second flap 250 is clamped between the second plate 120 and the first flap 200 .
  • the coin storage port 131 can be divided, mainly including the following methods: folding the first flap 200 so that the first flap 200 is clamped in the storage cavity 130 Between the article and the second board 120, the second board 120 and the first flap 200 are connected by the second safety management mechanism 220, so that the storage port 131 can be closed; The flap 200 is clamped between the articles in the storage cavity 130 and the second board 120, so that the second flap 250 overlaps the side of the first board 110 away from the second board 120, and the third safety management mechanism 260 is used to make the The two flaps 250 are connected to the first board 110 ; or, the second flap 250 is folded so that the second flap 250 is clamped between the items in the storage cavity 130 and the first board 110 , so that the first flap 200 Overlapped on the side of the second board 120 away from the first board 110 , the first flap 200 is connected to the second board 120 by the first safety management mechanism 210 .
  • the external hardware 300 can be used to set on the storage body 100 to use In order to close the storage port 131, the used storage body 100 can be reused.
  • the first safety management mechanism 210 when storing items in the storage device 010 provided in this application, the first safety management mechanism 210 , the second safety management mechanism 220 , the third safety management mechanism 260 and the external hardware 300 can be used to close the storage port 131 for safe storage. Therefore, the storage body 100 can be effectively reused, and the service life of the storage body 100 can be prolonged.
  • the storage device of the present application uses the storage body to store articles, and when the articles are stored in the storage cavity of the storage body, the first safety management mechanism or the second safety management mechanism can be selected to close the storage port for safe storage. After one safety storage has been performed by closing the storage port with one of the first safety management mechanism and the second safety management mechanism, the other of the first safety management mechanism and the second safety management mechanism may also be used.
  • the storage port is closed for the next safe storage, and no matter whether the first safety management mechanism or the second safety management mechanism is used to close the storage port for safe storage, the basic structure of the storage body will not be damaged, so that the storage device can use the first safety management mechanism.
  • the management agency and the second safety management agency conduct at least two safe storages that can seal the storage opening.
  • the storage device including the second flap and the third safety management mechanism can also perform safe storage of closed storage openings for a greater number of times. Moreover, after the first safety management mechanism, the second safety management mechanism and the third safety management mechanism are all scrapped, the storage port of the storage body can be further closed with external hardware for safe storage, so as to further prolong the service life of the storage body. Since the storage device can be repeatedly stored safely, the service life of the storage device can be effectively prolonged, and the economic and environmental benefits can be improved.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Cartons (AREA)
  • Details Of Rigid Or Semi-Rigid Containers (AREA)

Abstract

L'invention concerne un dispositif de stockage (010) et un matériel externe (300) : le dispositif de stockage (010) comprend un corps de stockage (100) ; le corps de stockage (100) comporte une chambre de stockage (130) qui a des ports de stockage (131) ; une première plaque (110) du corps de stockage (100) est reliée à une première aile de pliage (200), un premier mécanisme de gestion de sécurité (201) est utilisé pour être relié à la première aile de pliage (200) et à une seconde plaque (120) de telle sorte que les ports de stockage (131) sont fermés ; la seconde plaque (120) comporte un second mécanisme de gestion de sécurité (220), qui est utilisé pour relier la seconde plaque (120) à la première aile de pliage (200), ou de telle sorte que le port de stockage adjacent (131) de la première plaque (110) est relié au port de stockage adjacent (131) de la seconde plaque (120) de façon à sceller les ports de stockage (131). Le corps de stockage (100) peut utiliser le premier mécanisme de gestion de sécurité (210) et le second mécanisme de gestion de sécurité (220) pour sceller les ports de stockage (131) deux fois ou plus, de façon à faciliter la réutilisation du corps de stockage (100) et améliorer la protection de l'environnement. Le matériel externe (300) peut resceller les ports de stockage (131) du corps de stockage usagé (100) de façon à prolonger la durée de vie du corps de stockage (100), faciliter la réutilisation du corps de stockage (100) et améliorer la protection de l'environnement.
PCT/CN2020/124906 2020-10-29 2020-10-29 Dispositif de stockage et matériel externe WO2022087975A1 (fr)

Priority Applications (5)

Application Number Priority Date Filing Date Title
PCT/CN2020/124906 WO2022087975A1 (fr) 2020-10-29 2020-10-29 Dispositif de stockage et matériel externe
JP2023520462A JP2023550871A (ja) 2020-10-29 2020-10-29 格納装置及び外部ハードウェア
CN202080003122.XA CN112469635B (zh) 2020-10-29 2020-10-29 储存装置和外置硬件
US18/033,914 US20230286701A1 (en) 2020-10-29 2020-10-29 Storage device and external hardware
EP20959138.7A EP4238882A1 (fr) 2020-10-29 2020-10-29 Dispositif de stockage et matériel externe

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
PCT/CN2020/124906 WO2022087975A1 (fr) 2020-10-29 2020-10-29 Dispositif de stockage et matériel externe

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WO2022087975A1 true WO2022087975A1 (fr) 2022-05-05

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US (1) US20230286701A1 (fr)
EP (1) EP4238882A1 (fr)
JP (1) JP2023550871A (fr)
CN (1) CN112469635B (fr)
WO (1) WO2022087975A1 (fr)

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CN112469635A (zh) 2021-03-09
CN112469635B (zh) 2022-10-25
EP4238882A1 (fr) 2023-09-06
JP2023550871A (ja) 2023-12-06

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