WO2013174004A1 - 应用于易碎板的包装 - Google Patents

应用于易碎板的包装 Download PDF

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Publication number
WO2013174004A1
WO2013174004A1 PCT/CN2012/076034 CN2012076034W WO2013174004A1 WO 2013174004 A1 WO2013174004 A1 WO 2013174004A1 CN 2012076034 W CN2012076034 W CN 2012076034W WO 2013174004 A1 WO2013174004 A1 WO 2013174004A1
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WO
WIPO (PCT)
Prior art keywords
assembly
bottom plate
right member
package
groove
Prior art date
Application number
PCT/CN2012/076034
Other languages
English (en)
French (fr)
Inventor
陈仕祥
郭仪正
程加河
Original Assignee
深圳市华星光电技术有限公司
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 深圳市华星光电技术有限公司 filed Critical 深圳市华星光电技术有限公司
Priority to US13/519,367 priority Critical patent/US20140083891A1/en
Publication of WO2013174004A1 publication Critical patent/WO2013174004A1/zh

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    • 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
    • B65D81/00Containers, packaging elements, or packages, for contents presenting particular transport or storage problems, or adapted to be used for non-packaging purposes after removal of contents
    • B65D81/02Containers, packaging elements, or packages, for contents presenting particular transport or storage problems, or adapted to be used for non-packaging purposes after removal of contents specially adapted to protect contents from mechanical damage
    • B65D81/05Containers, packaging elements, or packages, for contents presenting particular transport or storage problems, or adapted to be used for non-packaging purposes after removal of contents specially adapted to protect contents from mechanical damage maintaining contents at spaced relation from package walls, or from other 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
    • B65D85/00Containers, packaging elements or packages, specially adapted for particular articles or materials
    • B65D85/30Containers, packaging elements or packages, specially adapted for particular articles or materials for articles particularly sensitive to damage by shock or pressure
    • B65D85/48Containers, packaging elements or packages, specially adapted for particular articles or materials for articles particularly sensitive to damage by shock or pressure for glass sheets

Definitions

  • the invention relates to the field of packaging boxes, and in particular to a packaging box applied to a frangible board.
  • the Array process of the previous stage fabrication of a monolithic array substrate and fabrication of a color filter substrate;
  • the Cell process of the middle section the whole array substrate and the color filter substrate are combined, and the liquid crystal is dropped between the two substrates, and the whole panel which is bonded with the liquid crystal is cut into a plurality of liquid crystal display panels. ;
  • the module process in the latter stage the liquid crystal display panel obtained after cutting is assembled with other components such as a backlight board, a circuit, a frame, and the like.
  • the liquid crystal display panel needs to be packaged and transported to a module factory specializing in the Module process to complete the Module process.
  • the currently used packaging box generally includes: a packaging box body 10 , a packaging cover body 20 , and a plurality of cushioning members 30 . Wherein, when the liquid crystal glass is packaged, the liquid crystal glass is spaced apart by the buffer member 30.
  • the material of the packaging box 10 is generally PP (Poly Propylene, polypropylene), because PP material has good buffering performance, and has a certain hardness, and there is no need to worry about the impact of the buffer member 30 on the clean room environment.
  • PP Poly Propylene, polypropylene
  • the packaging box 10 made of PP material is very expensive, which is not conducive to reducing the product cost.
  • the technical problem to be solved by the present invention is to provide a packaging box for fragile boards, which can reduce the size of the packaging box mold and reduce the production cost.
  • the present invention adopts a technical solution to provide a packaging box for a frangible board, comprising: a packaging box body, the packaging box body at least comprising a first assembly part and a second assembly part; a buffer member is plural, wherein the area of the buffer member is smaller than the area of the package body, and the material of the buffer member is polypropylene plastic; the first assembly and the second assembly have the same structure, the first assembly and the first assembly
  • the two assemblies each include a bottom plate, at least one of which includes a side wall extending vertically upward from a side of the bottom plate, and acrylonitrile-butadiene is used for each of the bottom plate and the side wall of the first assembly and the second assembly.
  • the styrene copolymer material or the high-density polyethylene material is integrally injection-molded, wherein the first assembly and the second assembly are integrally formed by splicing, and the bottom plate and the side wall of the first assembly and the second assembly are respectively spliced Forming at least a portion of the package body.
  • first assembly and the second assembly have the same structure, and the bottom plate and the side wall of the first assembly and the second assembly are respectively spliced to form at least a part of the package body.
  • the first assembly has two numbers, respectively an upper left member and a lower left member
  • the second assembly has two numbers, respectively an upper right member and a lower right member
  • the upper left member, the lower left member, the upper right member, and the lower right member each include a bottom plate.
  • a side wall extending vertically upward from a side of the bottom plate; the bottom plate and the side wall of the upper left member, the lower left member, the lower right member, and the upper right member are respectively spliced to form a package body, and the upper left member, the lower left upper member, the lower right member, and The respective side walls of the upper right member are joined end to end to form a semi-closed box structure.
  • the package body comprises a plurality of connection kits
  • the connection kit comprises a gasket and a screw
  • the gasket comprises a groove internally provided with a first threaded through hole, the groove is at least two
  • the upper left member, the lower left member, the right a plurality of splicing positions of the bottom plate and the bottom plate of each of the upper right member are respectively provided with a second threaded hole
  • the screw of the connection kit passes through the first threaded through hole and the second threaded hole to connect the adjacent upper left member, the lower left member, and the lower right
  • the member and the upper right member are joined together.
  • the spacer is rectangular, the grooves are four, and the grooves are rectangularly distributed on the spacer.
  • a plurality of splicing positions of the upper left member, the lower right member and the upper right member and the lower left member are spliced, and a plurality of splicing positions are arranged, and the splicing of the upper right member, the lower left member, the upper left member and the lower right member is correspondingly performed.
  • the position is provided with a groove, and the inside of the groove is provided with a snapping structure, and the protruding column and the groove are butted together, and the left upper member, the lower left member, the lower right member and the upper right member are integrally connected by the engagement of the engaging structure; or
  • the plurality of splicing positions for splicing the bottom plate of the upper left member and the lower right member and the upper right member and the lower left member are respectively provided with a stud and a groove, and the bottom plate of the upper right member and the lower left member and the upper left member and the lower right member are correspondingly spliced.
  • the splicing positions are respectively provided with a groove and a protrusion, and the inside of the groove is provided with a snap structure. After the protrusion and the groove are butted, the upper left member, the lower left member, the lower right member and the upper right member are engaged by the engagement of the engaging structure. Connected into one.
  • the buffer member comprises at least two buffer members.
  • the present invention adopts a technical solution to provide a packaging box for a frangible board, comprising: a packaging box body, the packaging box body at least comprising a first assembly part and a second assembly part;
  • the assembly and the second assembly each include a bottom plate, at least one of which includes a side wall extending vertically upward from a side of the bottom plate, wherein the first assembly and the second assembly are integrally formed by splicing.
  • first assembly and the second assembly have the same structure, and the bottom plate and the side wall of the first assembly and the second assembly are respectively spliced to form at least a part of the package body.
  • each of the first assembly and the second assembly are integrally injection molded by using an acrylonitrile-butadiene-styrene copolymer material or a high-density polyethylene material.
  • the first assembly has two numbers, respectively an upper left member and a lower left member
  • the second assembly has two numbers, respectively an upper right member and a lower right member
  • the upper left member, the lower left member, the upper right member, and the lower right member each include a bottom plate.
  • a side wall extending vertically upward from a side of the bottom plate; the bottom plate and the side wall of the upper left member, the lower left member, the lower right member, and the upper right member are respectively spliced to form a package body, and the upper left member, the lower left upper member, the lower right member, and The respective side walls of the upper right member are joined end to end to form a semi-closed box structure.
  • the package body comprises a plurality of connection kits
  • the connection kit comprises a gasket and a screw
  • the gasket comprises a groove internally provided with a first threaded through hole, the groove is at least two
  • the upper left member, the lower left member, the right a plurality of splicing positions of the bottom plate and the bottom plate of each of the upper right member are respectively provided with a second threaded hole
  • the screw of the connection kit passes through the first threaded through hole and the second threaded hole to connect the adjacent upper left member, the lower left member, and the lower right
  • the member and the upper right member are joined together.
  • the spacer is rectangular, the grooves are four, and the grooves are rectangularly distributed on the spacer.
  • a plurality of splicing positions of the upper left member, the lower right member and the upper right member and the lower left member are spliced, and a plurality of splicing positions are arranged, and the splicing of the upper right member, the lower left member, the upper left member and the lower right member is correspondingly performed.
  • the position is provided with a groove, and the inside of the groove is provided with a snapping structure, and the protruding column and the groove are butted together, and the left upper member, the lower left member, the lower right member and the upper right member are integrally connected by the engagement of the engaging structure; or
  • the plurality of splicing positions for splicing the bottom plate of the upper left member and the lower right member and the upper right member and the lower left member are respectively provided with a stud and a groove, and the bottom plate of the upper right member and the lower left member and the upper left member and the lower right member are correspondingly spliced.
  • the splicing positions are respectively provided with a groove and a protrusion, and the inside of the groove is provided with a snap structure. After the protrusion and the groove are butted, the upper left member, the lower left member, the lower right member and the upper right member are engaged by the engagement of the engaging structure. Connected into one.
  • the packaging box applied to the fragile plate comprises a plurality of cushioning members, the area of the cushioning member is smaller than the area of the packaging box body, and the material of the cushioning member is polypropylene plastic.
  • the buffer member comprises at least two buffer members.
  • a packaging box for a frangible board comprising: a packaging box body, the packaging box body at least comprising a first assembly part and a second assembly part; a cover body, the package cover body is fastened to the package body to form a sealed structure; and the first assembly member and the second assembly member each include a bottom plate, at least one of which includes a side wall extending vertically upward from a side edge of the bottom plate, wherein The first assembly and the second assembly are integrally formed by splicing.
  • first assembly and the second assembly have the same structure, and the bottom plate and the side wall of the first assembly and the second assembly are respectively spliced to form at least a part of the package body.
  • each of the first assembly and the second assembly are integrally injection molded by using an acrylonitrile-butadiene-styrene copolymer material or a high-density polyethylene material.
  • the first assembly has two numbers, respectively an upper left member and a lower left member
  • the second assembly has two numbers, respectively an upper right member and a lower right member
  • the upper left member, the lower left member, the upper right member, and the lower right member each include a bottom plate.
  • a side wall extending vertically upward from a side of the bottom plate; the bottom plate and the side wall of the upper left member, the lower left member, the lower right member, and the upper right member are respectively spliced to form a package body, and the upper left member, the lower left upper member, the lower right member, and The respective side walls of the upper right member are joined end to end to form a semi-closed box structure.
  • the package body comprises a plurality of connection kits
  • the connection kit comprises a gasket and a screw
  • the gasket comprises a groove internally provided with a first threaded through hole, the groove is at least two
  • the upper left member, the lower left member, the right a plurality of splicing positions of the bottom plate and the bottom plate of each of the upper right member are respectively provided with a second threaded hole
  • the screw of the connection kit passes through the first threaded through hole and the second threaded hole to connect the adjacent upper left member, the lower left member, and the lower right
  • the member and the upper right member are joined together.
  • the invention has the beneficial effects that, different from the prior art, the present invention sets the packaging box of the packaging box applied to the frangible board into at least the first assembly and the separate assembly of the second assembly, and the first assembly
  • the bottom plate and the side wall of the piece and the second assembly are spliced to form a package body, and the single first assembly or the second assembly is smaller than the whole package body, thereby reducing the size of the mold and thereby reducing production cost.
  • FIG. 1 is a schematic structural view of a prior art packaging box applied to a frangible board
  • FIG. 2 is a schematic structural view of an embodiment of a packaging box of the present invention applied to a frangible plate;
  • FIG. 3 is a schematic structural view of a first application embodiment of the packaging box shown in FIG. 2;
  • Figure 4 is an enlarged schematic view showing the structure of the connecting kit in the first application embodiment of the packaging box shown in Figure 3;
  • Figure 5 is a schematic structural view of a second application embodiment of the packaging box shown in Figure 2;
  • Figure 6 is an enlarged schematic structural view of the buckle structure shown in Figure 5;
  • Figure 7 is a schematic structural view of a third application embodiment of the packaging box shown in Figure 2;
  • FIG. 8 is a schematic structural view of a fourth application embodiment of the packaging box shown in FIG. 2.
  • FIG. 8 is a schematic structural view of a fourth application embodiment of the packaging box shown in FIG. 2.
  • Figure 2 is a schematic view showing the structure of an embodiment of the package of the present invention applied to a frangible plate.
  • the embodiment of the package for applying the fragile board of the present invention comprises: a package body 1 and a package cover 2.
  • the package cover 2 is fastened to the package body 1 to form a sealed structure, and the dustproof and moistureproof level is improved.
  • the fragile plate refers to a fragile item such as a liquid crystal glass display or a liquid crystal glass substrate.
  • the package body 1 includes at least a first assembly 11 and a second assembly 12, the first assembly 11 includes a first bottom plate assembly 101, and the second assembly 12 includes a second bottom plate assembly 102.
  • at least one of the first bottom plate assembly 101 of the first assembly 11 and the second bottom plate assembly 102 of the second assembly 12 includes a first side wall assembly 201 extending vertically upward from the side of the first bottom plate assembly 101 Or the second side wall assembly 202 extending vertically upward from the side of the second bottom plate assembly 102, the first assembly 11 and the second assembly 12 are integrally formed by splicing, wherein the first bottom plate assembly 101 and the second bottom plate assembly 102
  • the first side wall assembly 201 and the second side wall assembly 202 are spliced into the side walls of the package body 1 by being spliced into the bottom plate of the package body 1.
  • first assembly member 11 and the second assembly member 12 are identical in structure, and the first bottom plate assembly 101 of the first assembly member 11 and the first side wall assembly 201 are respectively associated with the second bottom plate assembly 102 of the second assembly member 12,
  • the second side wall assembly 202 is spliced to form at least a portion of the package body 1. If the first assembly 11 and the second assembly 12 form only a part of the package body 1, the package for the frangible plate also includes other assemblies, the first assembly 11 and the second assembly 12 And other assembly pieces are spliced together into a complete package body 1.
  • the package body 1 of the package applied to the frangible plate is disposed as at least a separate component of the first assembly 11 and the second assembly 12, and the first assembly 11 and the second assembly 12 are performed.
  • the splicing is performed to form the package body 1, and the single first assembly member 11 or the second assembly member 12 is smaller than the one-piece package body 1, so that the size of the mold can be reduced, thereby reducing the production cost.
  • FIG. 3 is a schematic structural view of the first application embodiment of the packaging box shown in FIG.
  • the number of the first assembly members 11 is two, which includes the upper left member 111 and the lower left member 112; the second assembly member 12 is also two in number, and includes the lower right member 121 and the upper right member 122.
  • the first bottom plate assembly 101 includes a first bottom plate unit 1011 and a second bottom plate unit 1012
  • the second bottom plate assembly 102 includes a third bottom plate unit 1021 and a fourth bottom plate unit 1022
  • the first side wall assembly 201 includes a first side wall unit In 2011 and the second sidewall unit 2012
  • the second sidewall assembly 202 includes a third sidewall unit 2021 and a fourth sidewall unit 2022.
  • the upper left member 111 is formed by the first bottom plate unit 1011 and the first side wall unit 2011, the lower left member 112 is formed by the second bottom plate unit 1012 and the second side wall unit 2012, and the lower right member 121 is constituted by the third bottom plate unit 1021 and The third side wall unit 2021 is formed, and the upper right member 122 is formed by the fourth bottom plate unit 1022 and the fourth side wall unit 2022.
  • the first bottom plate unit 1011, the second bottom plate unit 1012, the third bottom plate unit 1021, and the fourth bottom plate unit 1022 are spliced to form a bottom plate of the package body 1, the first side wall unit 2011, the second side wall unit 2012, and the third side wall
  • the unit 2021 and the fourth side wall unit 2022 are spliced to form a side wall of the package body 1, and the side walls of the upper left member 111, the lower left upper member 112, the lower right member 121, and the upper right member 122 are connected end to end to form a semi-closed box. structure.
  • the upper left member 111 and the lower right member 121 are identical in structure, and the left lower member 112 and the upper right member 122 are also identical in structure, that is, the upper left member 111 and the lower right member 121 may be made of the same mold, and the lower left member 112 and the upper right member 122 are formed. It is also made using the same mold. It can reduce the size of the mold and reduce the production cost.
  • FIG. 4 is an enlarged schematic view showing the structure of the connection kit in the first application embodiment of the packaging box shown in FIG.
  • the package body 1 further includes a plurality of connection kits 4, and the connection kit 4 includes a gasket 41 and a screw 42.
  • the gasket 41 is internally provided with a groove 411.
  • the groove 411 is a through hole structure, and the through hole structure can be a thread.
  • the through holes and the grooves 411 are at least two; the plurality of splice positions of the bottom plates of the upper left member 111, the lower left upper member 112, the lower right member 121, and the upper right member 122 are each provided with the second screw holes 43. As shown in FIG.
  • connection assembly 4 is disposed on the upper left member 111, the lower left upper member 112, the lower right member 121, and the upper right member 122 as an example, and the upper left member 111, the lower left upper member 112, the lower right member 121, and When the upper right member 122 is connected, the screw 42 of the connection kit 4 penetrates the groove 411 and the second screw hole 43 to integrally connect the adjacent left upper member 111, the lower left upper member 112, the lower right member 121, and the upper right member 122.
  • the spacer 41 may have a rectangular shape, the number of the grooves 411 may be four, and the four grooves 411 are distributed in a rectangular shape on the spacer 41.
  • the shape of the spacer 41 and the number of the grooves 411 can be set according to actual needs.
  • the spacer 41 can be set to a circular shape, a plum blossom shape or the like, and the number of the grooves 411 can be two. Three, four or other numbers may be used as long as the adjacent upper left member 111, lower left upper member 112, lower right member 121, and upper right member 122 are integrally connected and firmly fixed. .
  • FIG. 5 is a schematic structural view of a second application embodiment of the packaging box shown in FIG.
  • a plurality of splicing positions for splicing the bottom plate 100 of the upper left member 111 and the lower right member 121 and the upper right member 122 and the lower left member 112 are respectively provided with a protrusion 1001 and a groove 1002, and an upper right member 122 and a lower left member.
  • the plurality of splicing positions corresponding to the bottom plate of the upper left member 111 and the lower right member 121 are respectively provided with a groove 1002 and a stud 1001. As shown in FIG.
  • a first engaging structure 1003 is disposed on the outer side of the protruding post 1001 .
  • the first engaging structure 1003 is an elastic component, and the recess 1002 is internally provided with a second engaging corresponding to the first engaging structure 1003 .
  • the protrusion 1001 is inserted into the groove 1002
  • the first engaging structure 1003 is engaged with the second engaging structure 1004, and finally the left upper member 111, the lower left member 112, the lower right member 121, and the upper right member 122 are connected and fixed. In one.
  • FIG. 7 is a schematic structural view of a third application embodiment of the packaging box shown in FIG. 2.
  • the plurality of splicing positions of the upper left member 111 and the lower right member 121 and the bottom right member 122 and the lower left member 112 are spliced, and only the protrusions 1005, the upper right member 122, the lower left member 112, the upper left member 111, and the lower right member 121 are disposed.
  • the plurality of splicing positions corresponding to the splicing of the bottom plate are only provided with the groove 1006, and the groove 1006 is internally provided with the engaging structure, and the engaging column 1005 and the groove 1006 are butted together and the card structure (refer to FIG. 6) is used for the card cooperation.
  • the upper left member 111, the lower left member 112, the lower right member 121, and the upper right member 122 are connected and fixed integrally.
  • the engaging structure may also be a protruding post and a groove having a threaded matching structure, which can facilitate the splicing and disassembling of the upper left member 111, the lower left upper member 112, the lower right member 121, and the upper right member 122, saving time and improving Work efficiency.
  • the snap structure can also be other situations, and will not be described too much here.
  • the package applied to the frangible plate further includes a plurality of cushioning members 3 having an area smaller than the area of the package body 1, that is, smaller than the upper left member 111.
  • the material of the cushioning member 3 is polypropylene plastic.
  • Polypropylene plastic not only has good cushioning performance, but also has high impact resistance, strong mechanical properties, resistance to various organic solvents and acid and alkali corrosion, and does not drop dust, so there is no need to worry about the clean room environment.
  • the material selected for the packaging box 1 can be harder than the buffering member, and the price can be relatively cheap.
  • the cushioning performance and cost can be considered, that is, the cushioning performance is good, and the cost is low.
  • the cushioning member 3 When packaging the frangible plate, the cushioning member 3 is first laid on the bottom plate of the packaging box 1, and then the frangible plate is placed on the cushioning member 3, after which another buffering member is placed on the frangible plate, and so on. Finally, the package cover 2 is fastened to the package body 1 to form a sealed structure. Of course, if the gap between the package cover 2 and the fragile plate packaged inside is large, it is sufficient to fill the cushion member 3.
  • the cushioning member 3 can also be divided into several parts. If the cushioning member 3 is injection molded, the cushioning member 3 can also be split into the size of the upper left member 111, the lower left member 112, the lower right member 121, and the upper right member 122. The four buffer block sections. It is also possible to reduce the size of the mold for manufacturing the cushion member 3, thereby reducing the production cost.
  • FIG. 8 is a schematic structural view of a fourth application embodiment of the packaging box shown in FIG.
  • the package applied to the frangible plate further includes a support block 300 which is further divided into a corner support block 3001 and an intermediate support block 3002 depending on the position at which it is disposed.
  • the corner support block 3001 and the intermediate support block 3002 are both disposed on the side wall of the package body 1.
  • the bottom plate and the side wall of each of the first assembly member 11 and the second assembly member 12 are both ABS (Acrylonitrile).
  • ABS Advanced Chemical Vapor
  • acrylonitrile-butadiene-styrene copolymer material or HDPE (High Density) Polyethylene, high density polyethylene) material is injection molded.
  • ABS materials and HDPE materials are fully capable of meeting the fixing and buffering of liquid crystal glass, and are inexpensive, and can reduce production costs.
  • the package cover 2 may also be made of ABS material or HDPE material.
  • the package cover 2 can also be split into several parts, such as a first cover plate and a second cover plate that are split into corresponding sizes of the first assembly member 11 and the second assembly member 12, or further, the package cover body 2
  • the left upper cover unit, the left lower cover unit, the right lower cover unit, and the right upper cover unit four portions corresponding to the upper left member 111, the lower left member 112, the lower right member 121, and the upper right member 122 are detachably divided.
  • the left upper cover unit and the right lower cover unit have the same structure
  • the left lower cover unit and the right upper cover unit have the same structure, that is, the left upper cover unit and the right lower cover unit can be integrally injection molded, the left lower cover unit and the upper right cover
  • the plate unit structure can also be integrally formed. The size of the mold for making the package cover 2 can be reduced, thereby reducing the production cost.
  • the size of the above-mentioned package applied to the frangible plate is set depending on the size of the frangible plate, and is not limited thereto.
  • the present invention also provides a package for a frangible plate, the package for a liquid crystal glass substrate comprising the package body according to any of the above embodiments without a package cover.
  • the package of the present invention applied to a frangible board has the following advantages:
  • the packaging box is assembled by splicing by a plurality of separate components, which can reduce the size of the mold, thereby reducing the cost;
  • the packaging box itself is integrally injection molded with materials with relatively poor buffering properties such as ABS or HDPE. Only the buffering parts are made of materials with relatively good buffering properties such as PP, because ABS or HDPE materials are cheap and have good resistance. Impact, while PP has better cushioning performance, and the two have complementary advantages, which at the same time reduces the cost of the entire package.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Buffer Packaging (AREA)
  • Gasket Seals (AREA)
  • Packages (AREA)
  • Packaging Frangible Articles (AREA)

Abstract

一种应用于易碎板的包装箱,包括包装箱体(1),包装箱体至少包括第一组装件(11)和第二组装件(12);第一组装件和第二组装件均包括底板(101、102),至少其中之一包括自底板的侧边垂直向上延伸的侧壁(201、202),其中第一组装件和第二组装件通过拼接形成一体。通过上述方式,能够减小包装箱体模具尺寸、降低生产成本。

Description

应用于易碎板的包装
【技术领域】
本发明涉及包装箱技术领域,特别是涉及一种应用于易碎板的包装箱。
【背景技术】
现有技术液晶显示器的生产过程基本包括:
前段的Array制程:整块阵列基板的制作以及彩色滤光片基板的制作;
中段的Cell制程:将整块阵列基板和彩色滤光片基板结合并在两片基板间滴上液晶后贴合、将滴上液晶后贴合的整块面板切割成多个液晶显示面板的制作;
后段的Module制程:将切割后得到的液晶显示面板与其他组件如背光板、电路、外框等多种零组件组装的制作。
其中,将滴上液晶后贴合的整块面板切割成多个液晶显示面板并进行检查之后,需要用包装箱将液晶显示面板包装起来运送到专门负责Module制程的模组厂完成Module制程。
然而,如图1所示,目前常用的包装箱一般包括:包装箱体10、包装盖体20以及多片缓冲件30。其中,在包装液晶玻璃时,液晶玻璃之间采用缓冲件30间隔开。
包装箱体10材质一般采用PP(Poly Propylene,聚丙烯),因为PP材质缓冲性能较好,同时具有一定的硬度,而且亦不用担心缓冲件30掉粉屑影响无尘室环境。但是采用PP材质的包装箱体10,其造价非常昂贵,不利于降低产品成本。
【发明内容】
本发明主要解决的技术问题是提供一种应用于易碎板的包装箱,能够减小包装箱体模具尺寸、降低生产成本。
为解决上述技术问题,本发明采用的一个技术方案是:提供一种应用于易碎板的包装箱,包括:包装箱体,包装箱体至少包括第一组装件和第二组装件;缓冲件,缓冲件为多个,其中,缓冲件的面积小于包装箱体的面积,并且,缓冲件的材料为聚丙烯塑料;第一组装件和第二组装件的结构相同,第一组装件和第二组装件均包括底板,至少其中之一包括自底板的侧边垂直向上延伸的侧壁,并且,第一组装件和第二组装件各自的底板和侧壁均采用丙烯腈-丁二烯-苯乙烯共聚物材料或高密度聚乙烯材料一体注塑成型,其中,第一组装件和第二组装件通过拼接形成一体,并且,第一组装件和第二组装件的底板和侧壁分别进行拼接形成包装箱体的至少一部分。
其中,第一组装件和第二组装件的结构相同,第一组装件和第二组装件的底板和侧壁分别进行拼接形成包装箱体的至少一部分。
其中,第一组装件数量为二,分别为左上构件和左下构件,第二组装件数量为二,分别为右上构件和右下构件;左上构件、左下构件、右上构件以及右下构件均包括底板以及自底板的侧边垂直向上延伸的侧壁;左上构件、左下构件、右下构件以及右上构件的底板和侧壁分别拼接形成包装箱体,并且,左上构件、左下上构件、右下构件以及右上构件各自的侧壁首尾连接形成半封闭的箱体结构。
其中,包装箱体包括多个连接套件,连接套件包括垫片和螺丝,其中,垫片包括内部设置有第一螺纹通孔的凹槽,凹槽至少为两个;左上构件、左下构件、右下构件以及右上构件各自的底板的多个拼接位置均设置有第二螺纹孔,连接套件的螺丝穿设第一螺纹通孔和第二螺纹孔而将相邻的左上构件、左下构件、右下构件以及右上构件连接成一体。
其中,垫片呈矩形,凹槽为四个,并且凹槽呈矩形分布于垫片上。
其中,左上构件、右下构件与右上构件、左下构件的底板进行拼接的的多个拼接位置设置有凸柱,右上构件、左下构件与左上构件、右下构件的底板对应进行拼接的多个拼接位置设置有凹槽,并且凹槽内部设置有卡合结构,凸柱与凹槽对接后经卡合结构的卡合作用将左上构件、左下构件、右下构件以及右上构件连接成一体;或者,左上构件、右下构件与右上构件、左下构件的底板进行拼接的的多个拼接位置分别设置有凸柱和凹槽,右上构件、左下构件与左上构件、右下构件的底板对应进行拼接的多个拼接位置分别设置有凹槽和凸柱,并且凹槽内部设置有卡合结构,凸柱与凹槽对接后经卡合结构的卡合作用将左上构件、左下构件、右下构件以及右上构件连接成一体。
其中,缓冲件至少包括两个缓冲构件。
为解决上述技术问题,本发明采用的一个技术方案是:提供一种应用于易碎板的包装箱,包括:包装箱体,包装箱体至少包括第一组装件和第二组装件;第一组装件和第二组装件均包括底板,至少其中之一包括自底板的侧边垂直向上延伸的侧壁,其中,第一组装件和第二组装件通过拼接形成一体。
其中,第一组装件和第二组装件的结构相同,第一组装件和第二组装件的底板和侧壁分别进行拼接形成包装箱体的至少一部分。
其中,第一组装件和第二组装件各自的底板和侧壁均采用丙烯腈-丁二烯-苯乙烯共聚物材料或高密度聚乙烯材料一体注塑成型。
其中,第一组装件数量为二,分别为左上构件和左下构件,第二组装件数量为二,分别为右上构件和右下构件;左上构件、左下构件、右上构件以及右下构件均包括底板以及自底板的侧边垂直向上延伸的侧壁;左上构件、左下构件、右下构件以及右上构件的底板和侧壁分别拼接形成包装箱体,并且,左上构件、左下上构件、右下构件以及右上构件各自的侧壁首尾连接形成半封闭的箱体结构。
其中,包装箱体包括多个连接套件,连接套件包括垫片和螺丝,其中,垫片包括内部设置有第一螺纹通孔的凹槽,凹槽至少为两个;左上构件、左下构件、右下构件以及右上构件各自的底板的多个拼接位置均设置有第二螺纹孔,连接套件的螺丝穿设第一螺纹通孔和第二螺纹孔而将相邻的左上构件、左下构件、右下构件以及右上构件连接成一体。
其中,垫片呈矩形,凹槽为四个,并且凹槽呈矩形分布于垫片上。
其中,左上构件、右下构件与右上构件、左下构件的底板进行拼接的的多个拼接位置设置有凸柱,右上构件、左下构件与左上构件、右下构件的底板对应进行拼接的多个拼接位置设置有凹槽,并且凹槽内部设置有卡合结构,凸柱与凹槽对接后经卡合结构的卡合作用将左上构件、左下构件、右下构件以及右上构件连接成一体;或者,左上构件、右下构件与右上构件、左下构件的底板进行拼接的的多个拼接位置分别设置有凸柱和凹槽,右上构件、左下构件与左上构件、右下构件的底板对应进行拼接的多个拼接位置分别设置有凹槽和凸柱,并且凹槽内部设置有卡合结构,凸柱与凹槽对接后经卡合结构的卡合作用将左上构件、左下构件、右下构件以及右上构件连接成一体。
其中,应用于易碎板的包装箱包括多个缓冲件,缓冲件的面积小于包装箱体的面积,并且,缓冲件的材料为聚丙烯塑料。
其中,缓冲件至少包括两个缓冲构件。
为解决上述技术问题,本发明采用的另一个技术方案是:提供一种应用于易碎板的包装箱,包括:包装箱体,包装箱体至少包括第一组装件和第二组装件;包装盖体,包装盖体扣合包装箱体以形成密闭结构;并且,第一组装件和第二组装件均包括底板,至少其中之一包括自底板的侧边垂直向上延伸的侧壁,其中,第一组装件和第二组装件通过拼接形成一体。
其中,第一组装件和第二组装件的结构相同,第一组装件和第二组装件的底板和侧壁分别进行拼接形成包装箱体的至少一部分。
其中,第一组装件和第二组装件各自的底板和侧壁均采用丙烯腈-丁二烯-苯乙烯共聚物材料或高密度聚乙烯材料一体注塑成型。
其中,第一组装件数量为二,分别为左上构件和左下构件,第二组装件数量为二,分别为右上构件和右下构件;左上构件、左下构件、右上构件以及右下构件均包括底板以及自底板的侧边垂直向上延伸的侧壁;左上构件、左下构件、右下构件以及右上构件的底板和侧壁分别拼接形成包装箱体,并且,左上构件、左下上构件、右下构件以及右上构件各自的侧壁首尾连接形成半封闭的箱体结构。
其中,包装箱体包括多个连接套件,连接套件包括垫片和螺丝,其中,垫片包括内部设置有第一螺纹通孔的凹槽,凹槽至少为两个;左上构件、左下构件、右下构件以及右上构件各自的底板的多个拼接位置均设置有第二螺纹孔,连接套件的螺丝穿设第一螺纹通孔和第二螺纹孔而将相邻的左上构件、左下构件、右下构件以及右上构件连接成一体。
本发明的有益效果是:区别于现有技术的情况,本发明将应用于易碎板的包装箱的包装箱体设置成至少第一组装件和第二组装件的单独部件,将第一组装件和第二组装件的底板和侧壁进行拼接以形成包装箱体,单独的第一组装件或第二组装件都比整块的包装箱体小,因此能够减小模具尺寸,从而降低生产成本。
【附图说明】
图1是现有技术应用于易碎板的包装箱的结构示意图;
图2是本发明应用于易碎板的包装箱实施例的结构示意图;
图3是图2所示包装箱体第一应用实施例的结构示意图;
图4是图3所示包装箱体第一应用实施例中连接套件的结构放大示意图;
图5是图2所示包装箱体第二应用实施例的结构示意图;
图6是图5所示卡扣结构的放大结构示意图;
图7是图2所示包装箱体第三应用实施例的结构示意图;
图8是图2所示包装箱体第四应用实施例的结构示意图。
【具体实施方式】
下面结合附图和实施例对本发明进行详细说明。
参阅图2,图2是本发明应用于易碎板的包装箱实施例的结构示意图。本发明应用于易碎板的包装箱实施例包括:包装箱体1和包装盖体2。包装盖体2扣合包装箱体1以形成密闭结构,并提高防尘防湿等级。全文中,易碎板指液晶玻璃显示屏或者液晶玻璃基板等易碎物品。
该包装箱体1至少包括第一组装件11和第二组装件12,第一组装件11包括第一底板组件101,第二组装件12包括第二底板组件102。其中,第一组装件11的第一底板组件101和第二组装件12的第二底板组件102中至少其中之一包括自第一底板组件101自侧边垂直向上延伸的第一侧壁组件201或自第二底板组件102的侧边垂直向上延伸的第二侧壁组件202,第一组装件11和第二组装件12通过拼接形成一体,其中,第一底板组件101和第二底板组件102拼接成包装箱体1的底板,第一侧壁组件201和第二侧壁组件202拼接成包装箱体1的侧壁。
进一步地,第一组装件11和第二组装件12的结构相同,第一组装件11的第一底板组件101、第一侧壁组件201分别与第二组装件12的第二底板组件102、第二侧壁组件202进行拼接形成包装箱体1的至少一部分。如果第一组装件11和第二组装件12仅形成了包装箱体1的一部分,此时该应用于易碎板的包装箱还包括其它组装件,第一组装件11、第二组装件12以及其它组装件一并拼接成完整的包装箱体1。
本发明实施例,将应用于易碎板的包装箱的包装箱体1设置成至少第一组装件11和第二组装件12的单独部件,将第一组装件11和第二组装件12进行拼接以形成包装箱体1,单独的第一组装件11或第二组装件12都比整块的包装箱体1小,因此能够减小模具尺寸,从而降低生产成本。
请参阅图3,图3是图2所示包装箱体第一应用实施例的结构示意图。其中,第一组装件11数量为二,其包括左上构件111和左下构件112;第二组装件12数量亦为二,其包括右下构件121和右上构件122。其中,第一底板组件101包括第一底板单元1011和第二底板单元1012,第二底板组件102包括第三底板单元1021和第四底板单元1022,第一侧壁组件201包括第一侧壁单元2011和第二侧壁单元2012,第二侧壁组件202包括第三侧壁单元2021和第四侧壁单元2022。进一步地,左上构件111由第一底板单元1011和第一侧壁单元2011形成,左下构件112由第二底板单元1012和第二侧壁单元2012形成,右下构件121由第三底板单元1021和第三侧壁单元2021形成,以及右上构件122由第四底板单元1022和第四侧壁单元2022形成。第一底板单元1011、第二底板单元1012、第三底板单元1021和第四底板单元1022拼接形成包装箱体1的底板,第一侧壁单元2011、第二侧壁单元2012、第三侧壁单元2021和第四侧壁单元2022拼接形成包装箱体1的侧壁,并且,左上构件111、左下上构件112、右下构件121以及右上构件122各自的侧壁首尾连接形成半封闭的箱体结构。
值得注意的是,左上构件111和右下构件121结构相同,左下构件112和右上构件122结构也相同,即左上构件111和右下构件121可以采用同一模具制得,左下构件112和右上构件122亦采用同一模具制得。能够减小模具尺寸,降低生产成本。
并请结合图3和图4,图4是图3所示包装箱体第一应用实施例中连接套件的结构放大示意图。包装箱体1进一步包括多个连接套件4,连接套件4包括垫片41和螺丝42,其中,垫片41内部设置有凹槽411,凹槽411为通孔结构,该通孔结构可以是螺纹通孔,并且凹槽411至少为两个;左上构件111、左下上构件112、右下构件121以及右上构件122各自的底板的多个拼接位置均设置有第二螺纹孔43。如图4所示,以连接套件4设置于左上构件111、左下上构件112、右下构件121以及右上构件122拼接处为例进行说明,左上构件111、左下上构件112、右下构件121以及右上构件122进行连接时,连接套件4的螺丝42穿设凹槽411和第二螺纹孔43而将相邻的左上构件111、左下上构件112、右下构件121以及右上构件122连接成一体。
当然,垫片41可以呈矩形,凹槽411的数目可以是四个,而且该四个凹槽411呈矩形分布于垫片41上。值得注意的是,垫片41的形状以及凹槽411的数目可以根据实际需求进行设定,比如垫片41可以设置为圆形、梅花状或其它图形,凹槽411的数目可以为两个、三个、四个或者其它数目,只要能起到将相邻的左上构件111、左下上构件112、右下构件121以及右上构件122连接成一体并且牢牢固定住即可,此处不作过多限制。
请继续参阅图5,图5是图2所示包装箱体第二应用实施例的结构示意图。如图5所示,左上构件111、右下构件121与右上构件122、左下构件112的底板100进行拼接的的多个拼接位置分别设置有凸柱1001和凹槽1002,右上构件122、左下构件112与左上构件111、右下构件121的底板对应进行拼接的多个拼接位置分别设置有凹槽1002和凸柱1001。并请结合图6,凸柱1001外侧设置有第一卡合结构1003,该第一卡合结构1003为一弹性元件,凹槽1002内部设置有与第一卡合结构1003对应的第二卡合结构1004,凸柱1001插入凹槽1002后,第一卡合结构1003与第二卡合结构1004卡合,最终实现将左上构件111、左下构件112、右下构件121以及右上构件122连接并固定成一体。
或者,请继续参阅图7,图2所示包装箱体第三应用实施例的结构示意图。左上构件111、右下构件121与右上构件122、左下构件112的底板进行拼接的的多个拼接位置仅仅设置有凸柱1005,右上构件122、左下构件112与左上构件111、右下构件121的底板对应进行拼接的多个拼接位置仅仅设置有凹槽1006,并且凹槽1006内部设置有卡合结构,凸柱1005与凹槽1006对接后经卡合结构(可参阅图6)的卡合作用将左上构件111、左下构件112、右下构件121以及右上构件122连接并固定成一体。
上述实施例中,卡合结构还可以是具有螺纹配合结构的凸柱和凹槽,能够方便左上构件111、左下上构件112、右下构件121以及右上构件122的拼接与拆卸,节省时间,提高工作效率。当然,卡合结构亦可以是其它情形,此处不作过多描述。
继续参阅图2,在另一应用实施例中,应用于易碎板的包装箱还包括多个缓冲件3,该多个缓冲件3的面积小于包装箱体1的面积,即小于左上构件111、左下构件112、右下构件121以及右上构件122拼接后的底板的面积。并且,该缓冲件3的材料为聚丙烯塑料。聚丙烯塑料不仅具有较好的缓冲性能,还具有较高的耐冲击性,机械性质强韧,抗多种有机溶剂和酸碱腐蚀,并且不会掉粉屑,因此无需担心无尘室环境。相应地,包装箱体1选用的材料可以比缓冲件硬,价格也可以相对便宜,结合缓冲件,可以兼顾缓冲性能与成本,即有较好的缓冲性能的同时,成本低。
在包装易碎板时,先在包装箱体1的底板铺设缓冲件3,然后将易碎板放置于缓冲件3上,其后,在易碎板上铺放另一缓冲件,以此类推,最后将包装盖体2扣合于包装箱体1上以形成密闭结构。当然,包装盖体2与包装于内的易碎板之间若空隙较大,只要填充缓冲件3即可。
值得注意的是,缓冲件3也可拆分成若干部分,若缓冲件3采用注塑成型,缓冲件3也可以拆分成对应左上构件111、左下构件112、右下构件121以及右上构件122大小的四个缓冲块部分。也能够降低制作缓冲件3的模具的尺寸,从而降低生产成本。
另外,请参阅图8,图8是图2所示包装箱体第四应用实施例的结构示意图。应用于易碎板的包装箱还包括支撑块300,支撑块300视其设置位置的不同又分为角落支撑块3001和中间支撑块3002。该角落支撑块3001和中间支撑块3002均设置于包装箱体1的侧壁。
上述实施例中,第一组装件11和第二组装件12各自的底板和侧壁均采用ABS(Acrylonitrile Butadiene Styrene,丙烯腈-丁二烯-苯乙烯共聚物)材料或HDPE(High Density Polyethylene,高密度聚乙烯)材料一体注塑成型。ABS材料和HDPE材料完全能够满足用于液晶玻璃的固定和缓冲,且价格便宜,能够降低生产成本。
另外,包装盖体2亦可采用ABS材料或HDPE材料。并且,包装盖体2也可以拆分成若干部分,如拆分成对应第一组装件11、第二组装件12大小的第一盖板和第二盖板,或者进一步地,包装盖体2可拆分成对应左上构件111、左下构件112、右下构件121以及右上构件122大小的左上盖板单元、左下盖板单元、右下盖板单元以及右上盖板单元四部分。并且,左上盖板单元和右下盖板单元结构相同,左下盖板单元和右上盖板单元结构相同,即左上盖板单元和右下盖板单元可一体注塑成型,左下盖板单元和右上盖板单元结构亦可一体成型。能够降低制作包装盖体2的模具的尺寸,从而降低生产成本。
值得注意的是,上述应用于易碎板的包装箱的尺寸视易碎板的尺寸进行设置,此处不作过多限制。
本发明还提供一种应用于易碎板的包装箱,该应用于液晶玻璃基板的包装箱包括如上述任一实施例所述的包装箱体,而无包装盖体。
综上所述,本发明应用于易碎板的包装箱具有如下优点:
(1)包装箱体由多个单独部件以拼接方式组装而成,能够减小模具尺寸,从而降低成本;
(2)包装箱体本身采用ABS或HDPE等缓冲性能相对较差的材料一体注塑成型,仅缓冲件采用PP等缓冲性能相对较好的材料,因ABS或HDPE材料价格便宜且具有较好的耐冲击性,而PP则缓冲性能较好,两者相互优势互补,同时使得整个包装箱成本降低。
以上所述仅为本发明的实施例,并非因此限制本发明的专利范围,凡是利用本发明说明书及附图内容所作的等效结构或等效流程变换,或直接或间接运用在其他相关的技术领域,均同理包括在本发明的专利保护范围内。

Claims (20)

  1. 一种应用于易碎板的包装箱,其特征在于,包括:
    包装箱体,所述包装箱体至少包括第一组装件和第二组装件;
    缓冲件,所述缓冲件为多个,其中,所述缓冲件的面积小于包装箱体的面积,并且,所述缓冲件的材料为聚丙烯塑料;
    所述第一组装件和第二组装件的结构相同,所述第一组装件和第二组装件均包括底板,至少其中之一包括自底板的侧边垂直向上延伸的侧壁,并且,所述第一组装件和第二组装件各自的底板和侧壁均采用丙烯腈-丁二烯-苯乙烯共聚物材料或高密度聚乙烯材料一体注塑成型,其中,所述第一组装件和第二组装件通过拼接形成一体,并且,所述第一组装件和第二组装件的底板和侧壁分别进行拼接形成包装箱体的至少一部分。
  2. 根据权利要求1所述的应用于易碎板的包装箱,其特征在于,
    所述第一组装件数量为二,分别为左上构件和左下构件,所述第二组装件数量为二,分别为右上构件和右下构件;
    所述左上构件、左下构件、右上构件以及右下构件均包括底板以及自底板的侧边垂直向上延伸的侧壁;
    所述左上构件、左下构件、右下构件以及右上构件的底板和侧壁分别拼接形成包装箱体,并且,所述左上构件、左下上构件、右下构件以及右上构件各自的侧壁首尾连接形成半封闭的箱体结构。
  3. 根据权利要求2所述的应用于易碎板的包装箱,其特征在于,
    所述包装箱体包括多个连接套件,所述连接套件包括垫片和螺丝,其中,所述垫片包括内部设置有第一螺纹通孔的凹槽,所述凹槽至少为两个;
    所述左上构件、左下构件、右下构件以及右上构件各自的底板的多个拼接位置均设置有第二螺纹孔,所述连接套件的螺丝穿设第一螺纹通孔和第二螺纹孔而将相邻的左上构件、左下构件、右下构件以及右上构件连接成一体。
  4. 根据权利要求3所述的应用于易碎板的包装箱,其特征在于,
    所述垫片呈矩形,所述凹槽为四个,并且所述凹槽呈矩形分布于垫片上。
  5. 根据权利要求2所述的应用于易碎板的包装箱,其特征在于,
    所述左上构件、右下构件与右上构件、左下构件的底板进行拼接的的多个拼接位置设置有凸柱,所述右上构件、左下构件与左上构件、右下构件的底板对应进行拼接的多个拼接位置设置有凹槽,并且所述凹槽内部设置有卡合结构,所述凸柱与凹槽对接后经卡合结构的卡合作用将左上构件、左下构件、右下构件以及右上构件连接成一体;
    或者,所述左上构件、右下构件与右上构件、左下构件的底板进行拼接的的多个拼接位置分别设置有凸柱和凹槽,所述右上构件、左下构件与左上构件、右下构件的底板对应进行拼接的多个拼接位置分别设置有凹槽和凸柱,并且所述凹槽内部设置有卡合结构,所述凸柱与凹槽对接后经卡合结构的卡合作用将左上构件、左下构件、右下构件以及右上构件连接成一体。
  6. 根据权利要求1所述的应用于易碎板的包装箱,其特征在于,
    所述缓冲件至少包括两个缓冲构件。
  7. 一种应用于易碎板的包装箱,其特征在于,包括:
    包装箱体,所述包装箱体至少包括第一组装件和第二组装件;
    所述第一组装件和第二组装件均包括底板,至少其中之一包括自底板的侧边垂直向上延伸的侧壁,其中,所述第一组装件和第二组装件通过拼接形成一体。
  8. 根据权利要求7所述的应用于易碎板的包装箱,其特征在于,
    所述第一组装件和第二组装件的结构相同,所述第一组装件和第二组装件的底板和侧壁分别进行拼接形成包装箱体的至少一部分。
  9. 根据权利要求7所述的应用于易碎板的包装箱,其特征在于,
    所述第一组装件和第二组装件各自的底板和侧壁均采用丙烯腈-丁二烯-苯乙烯共聚物材料或高密度聚乙烯材料一体注塑成型。
  10. 根据权利要求7所述的应用于易碎板的包装箱,其特征在于,
    所述第一组装件数量为二,分别为左上构件和左下构件,所述第二组装件数量为二,分别为右上构件和右下构件;
    所述左上构件、左下构件、右上构件以及右下构件均包括底板以及自底板的侧边垂直向上延伸的侧壁;
    所述左上构件、左下构件、右下构件以及右上构件的底板和侧壁分别拼接形成包装箱体,并且,所述左上构件、左下上构件、右下构件以及右上构件各自的侧壁首尾连接形成半封闭的箱体结构。
  11. 根据权利要求10所述的应用于易碎板的包装箱,其特征在于,
    所述包装箱体包括多个连接套件,所述连接套件包括垫片和螺丝,其中,所述垫片包括内部设置有第一螺纹通孔的凹槽,所述凹槽至少为两个;
    所述左上构件、左下构件、右下构件以及右上构件各自的底板的多个拼接位置均设置有第二螺纹孔,所述连接套件的螺丝穿设第一螺纹通孔和第二螺纹孔而将相邻的左上构件、左下构件、右下构件以及右上构件连接成一体。
  12. 根据权利要求11所述的应用于易碎板的包装箱,其特征在于,
    所述垫片呈矩形,所述凹槽为四个,并且所述凹槽呈矩形分布于垫片上。
  13. 根据权利要求10所述的应用于易碎板的包装箱,其特征在于,
    所述左上构件、右下构件与右上构件、左下构件的底板进行拼接的的多个拼接位置设置有凸柱,所述右上构件、左下构件与左上构件、右下构件的底板对应进行拼接的多个拼接位置设置有凹槽,并且所述凹槽内部设置有卡合结构,所述凸柱与凹槽对接后经卡合结构的卡合作用将左上构件、左下构件、右下构件以及右上构件连接成一体;
    或者,所述左上构件、右下构件与右上构件、左下构件的底板进行拼接的的多个拼接位置分别设置有凸柱和凹槽,所述右上构件、左下构件与左上构件、右下构件的底板对应进行拼接的多个拼接位置分别设置有凹槽和凸柱,并且所述凹槽内部设置有卡合结构,所述凸柱与凹槽对接后经卡合结构的卡合作用将左上构件、左下构件、右下构件以及右上构件连接成一体。
  14. 根据权利要求7所述的应用于易碎板的包装箱,其特征在于,
    所述应用于易碎板的包装箱包括多个缓冲件,所述缓冲件的面积小于包装箱体的面积,并且,所述缓冲件的材料为聚丙烯塑料。
  15. 根据权利要求14所述的应用于易碎板的包装箱,其特征在于,
    所述缓冲件至少包括两个缓冲构件。
  16. 一种应用于易碎板的包装箱,其特征在于, 包括:
    包装箱体,所述包装箱体至少包括第一组装件和第二组装件;
    包装盖体,所述包装盖体扣合包装箱体以形成密闭结构;
    并且,所述第一组装件和第二组装件均包括底板,至少其中之一包括自底板的侧边垂直向上延伸的侧壁,其中,所述第一组装件和第二组装件通过拼接形成一体。
  17. 根据权利要求16所述的应用于易碎板的包装箱,其特征在于,
    所述第一组装件和第二组装件的结构相同,所述第一组装件和第二组装件的底板和侧壁分别进行拼接形成包装箱体的至少一部分。
  18. 根据权利要求16所述的应用于易碎板的包装箱,其特征在于,
    所述第一组装件和第二组装件各自的底板和侧壁均采用丙烯腈-丁二烯-苯乙烯共聚物材料或高密度聚乙烯材料一体注塑成型。
  19. 根据权利要求16所述的应用于易碎板的包装箱,其特征在于,
    所述第一组装件数量为二,分别为左上构件和左下构件,所述第二组装件数量为二,分别为右上构件和右下构件;
    所述左上构件、左下构件、右上构件以及右下构件均包括底板以及自底板的侧边垂直向上延伸的侧壁;
    所述左上构件、左下构件、右下构件以及右上构件的底板和侧壁分别拼接形成包装箱体,并且,所述左上构件、左下上构件、右下构件以及右上构件各自的侧壁首尾连接形成半封闭的箱体结构。
  20. 根据权利要求19所述的应用于易碎板的包装箱,其特征在于,
    所述包装箱体包括多个连接套件,所述连接套件包括垫片和螺丝,其中,所述垫片包括内部设置有第一螺纹通孔的凹槽,所述凹槽至少为两个;
    所述左上构件、左下构件、右下构件以及右上构件各自的底板的多个拼接位置均设置有第二螺纹孔,所述连接套件的螺丝穿设第一螺纹通孔和第二螺纹孔而将相邻的左上构件、左下构件、右下构件以及右上构件连接成一体。
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