WO2016033763A1 - 多边形包装结构 - Google Patents

多边形包装结构 Download PDF

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Publication number
WO2016033763A1
WO2016033763A1 PCT/CN2014/085873 CN2014085873W WO2016033763A1 WO 2016033763 A1 WO2016033763 A1 WO 2016033763A1 CN 2014085873 W CN2014085873 W CN 2014085873W WO 2016033763 A1 WO2016033763 A1 WO 2016033763A1
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WO
WIPO (PCT)
Prior art keywords
buffer
polygonal
cover
base
top cover
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Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Ceased
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PCT/CN2014/085873
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English (en)
French (fr)
Inventor
赵芝霖
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TCL China Star Optoelectronics Technology Co Ltd
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Shenzhen China Star Optoelectronics Technology Co Ltd
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Application filed by Shenzhen China Star Optoelectronics Technology Co Ltd filed Critical Shenzhen China Star Optoelectronics Technology Co Ltd
Priority to US14/395,058 priority Critical patent/US20160059993A1/en
Publication of WO2016033763A1 publication Critical patent/WO2016033763A1/zh
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • 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
    • B65D81/107Containers, 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 using blocks of shock-absorbing material
    • 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 present invention relates to a polygonal packaging structure for a packaged sheet, and more particularly to a package for a liquid crystal module panel. Background technique
  • liquid crystal modules are the core components of liquid crystal display devices, and the reliability of packaging needs to be considered in transportation.
  • the conventional packaging method may not be able to properly carry external pressure during transportation, which may cause deformation of the multi-layer stacked liquid crystal module panel, which not only affects the use effect, but also causes unnecessary loss to the enterprise. Therefore, it is especially necessary to provide a box that resists pressure and resists impact.
  • the structure of the existing liquid crystal module packaging box is as shown in FIG. 1.
  • the packaging box comprises: an outer box 201, a bottom buffering member 202 and a top cover buffering member 203.
  • the package of the structure uses a soft cushioning material as a lining to prevent the liquid crystal module panels from colliding with each other, and at the same time, the high-strength box is used as the outer box 201 to prevent the inner panel from being damaged by external force and effectively protecting.
  • Multi-layer stacked LCD module panel The number of assembled panels in this type of packaging is generally less than 10 pieces.
  • the structure of the large-sized packaging box of the existing liquid crystal module is as shown in FIG. 2, and the large-sized packaging box is the same as the conventional packaging method, and includes the outer box body 301 and the bottom buffering unit 302, and realizes large-scale collection based on the traditional packaging method. Packing, saving the distance between single box and single piece, so as to increase the number of pieces, support parts need to be added in the box to meet the requirements of the external box compressive strength when stacking, and directly on the pallet 303 Carry out the packing operation.
  • Patent CN203033205U discloses a packaging basket comprising a bottom box surrounded by a three-stage bottom plate and an upper cover sealed to the bottom case.
  • the device is convenient, quick and recyclable, and reduces resource waste.
  • cushioning materials are higher, which increases packaging costs.
  • the material of the cushioning material is expandable polyethylene, and its texture is soft. It is easily compressed and deformed by external force.
  • the buffer material is usually designed very well. Thick, this not only consumes material, but also reduces the number of assembled liquid crystal module panels due to the large space occupied by the buffer material, thereby greatly increasing the packaging cost.
  • Compressive strength and impact resistance are inversely proportional to the number of panels.
  • the number of assembled panels is often small, and the number of assembled panels is less than 10; while the number of assembled panels is increased, support members are added on the inside of the cabinet to increase the number of boxes.
  • the compressive strength of the body increases the working steps of the staff, which is not conducive to improving work efficiency and increasing packaging costs.
  • the large package is bulky and it is difficult to remove the assembled panel.
  • the panel near the edge of the large package is easier to remove, and the panel at the center position is far from the position of the worker, making it difficult for the worker to operate, and it is difficult to take out the assembled panel.
  • SUMMARY OF THE INVENTION The technical problem to be solved by the present invention is to provide a polygonal packaging structure with low packaging cost. It has high compressive strength, good impact resistance, and can accommodate many LCD module panels. It also has the beneficial effects of safe, reliable and convenient operation.
  • a polygonal packaging structure for packaging a sheet-shaped carrier, comprising at least a buffer base at the bottom and a buffer top cover at the top, wherein the buffer base is provided with a plurality of accommodating grooves, and the accommodating grooves are radially arranged around the center.
  • the buffer top cover is provided with a fixing groove corresponding to the receiving groove.
  • the buffer base includes a cushion pad and a base
  • the buffer top cover includes a buffer cover and a top cover
  • a box body is disposed between the buffer base and the buffer top cover.
  • the cushion pad and the base are both polygonal structures, and the cushion is disposed inside the base.
  • the buffer cover and the top cover are both polygonal structures, and the buffer cover is disposed inside the top cover.
  • the box body is an integrally enclosed cylindrical polygonal wall surface, and the wall surface is provided with a plurality of rafts for supporting.
  • the number of the defects is an even number and is greater than 4. Further, the number of the defects is eight.
  • the accommodating groove is provided with a first starting end and a first end, the first starting end is close to a center of the buffer base, and the first end is close to an edge of the buffer base.
  • the fixing slot is provided with a second starting end and a second end, and the second starting end is adjacent to the Buffering the center of the top cover, the second end being adjacent to the edge of the buffer top cover.
  • the radial receiving groove on the cushion pad is used for fixing the liquid crystal module panel, and the upper end of the liquid crystal module panel is reinforced by a corresponding buffer cover, and the cushion pad and the buffer cover both have a buffer protection function, and are transported.
  • the safety protection function is adopted.
  • the accommodating groove is radially distributed along the outer diameter of the cushion pad along the center of the cushion pad, and each panel is equidistant from the edge of the cushion pad, which is convenient for the worker to install and disassemble.
  • the polygonal box can be folded and stored along the crucible, saving storage space, recycling and recycling, and reducing packaging costs.
  • the casing having the polygonal wall surface has better compression strength and impact resistance. It can be known from the basic physics knowledge that the tantalum formed by the intersection of two planes has better compressive strength, and the more the number of tantalum, the greater the compressive strength generated, and at the same time, the corners of the box have better resistance against the plane. Impact performance, because the number of ridges and corners of the polygonal box is larger than that of the conventional package, it has better compressive strength and impact resistance.
  • FIG. 1 is a schematic structural view of a conventional liquid crystal module packaging box.
  • 2 is a schematic structural view of a conventional large-sized liquid crystal module packaging box.
  • 3 is a schematic structural view of a polygonal packaging structure according to an embodiment of the present invention.
  • 4 is a structural view of a cushion pad and a buffer cover according to an embodiment of the present invention.
  • FIG. 5 is a structural view showing a casing of an embodiment of the present invention.
  • Figure 6 is a schematic view of another embodiment of the present invention.
  • Figure 7 is a schematic view showing the load distribution of the casing of Figure 5.
  • FIG. 8 is a schematic view showing the installation sequence of the polygonal packaging structure according to the embodiment of the present invention. DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS In order to better explain the technical features and structures of the present invention, the embodiments of the present invention and the accompanying drawings are described in detail below. Referring to FIG. 3, the present invention provides a polygonal packaging structure for packaging a sheet carrier, comprising at least a bottom buffer base 230 and a top buffer top cover 290.
  • the buffer base 230 includes a cushion 120 and a base 110, and the cushion 120 And the base 110 is a polygonal structure, the cushion 120 is set inside the base 110; the buffer top cover 290 includes a buffer cover 140 and a top cover 150, and the buffer cover 140 and the top cover 150 are both polygonal structures, and the buffer cover 140 is set in the The inside of the top cover 150 is disposed between the buffer base 230 and the buffer top cover 290. The upper end and the lower end of the case 130 are respectively sleeved on the cushion 120 and the buffer cover 140. As shown in FIG. 4, the accommodating slot 121 is provided with a plurality of accommodating slots 121.
  • the accommodating slots 121 are radially arranged for fixing and mounting the liquid crystal module panel, and the buffering protection is provided.
  • the first end 1212 is adjacent to the center of the cushion 120, and the first end 1212 is adjacent to the edge of the cushion 120.
  • the receiving groove 121 is radially arranged from the center of the cushion 120 toward the edge of the cushion 120.
  • the liquid crystal module panel can be arranged along the circumference after being inserted into the accommodating groove 121, which is convenient for the staff to install and disassemble, and at the same time, the accommodating quantity of the polygonal packaging structure is ensured.
  • the buffer cover 140 is provided with a plurality of fixing slots 141.
  • the fixing slots 141 are radially arranged for reinforcing the installed liquid crystal module panel and providing support buffer protection.
  • the fixing slot 141 is provided with a second starting end 1411 and a second end 1412.
  • the second starting end 1411 is adjacent to the center of the buffer cover 140, and the second end 1412 is adjacent to the edge of the buffer cover 140.
  • the fixing groove 141 is radially arranged from the center of the buffer cover 140 toward the edge of the buffer cover 140.
  • the fixing groove 141 is arranged and installed.
  • the circumferential arrangement position of the liquid crystal module panel corresponds.
  • the box body 130 is an integrally formed cylindrical polygonal wall surface, and the wall surface is provided with a plurality of crucibles 131 for supporting. Generally, the number of the crucibles 131 is an even number greater than 4, and the number of turns on the box body in the embodiment is 8 article.
  • the box body 130 can be folded and stored along the crucible 131 to save storage space, as shown in FIG. Further, as shown in Fig. 6, in another embodiment, when the number of turns on the casing is wireless, the casing is cylindrical.
  • the compressive strength of the box is provided by the four side walls, and the compressive strength of the raft formed by the intersection of the two side walls is the largest. It is reasonably inferred that when the number of rafts increases, the box The greater the compressive strength produced, the compressive strength of the polygonal box is much better than that of the conventional box under the condition that the polygonal box body is substantially the same as the circumference of the conventional box body.
  • the polygonal packaging structure is installed in the following order: First, the cushion 120 is set inside the base 101, and then the liquid crystal module panel 100 is sequentially placed in the receiving groove 121; again, the buffer cover 140 is installed in the liquid crystal mold. The upper end of the panel 100 is fixed to the liquid crystal module panel 100; finally, the box 130 is The buffer cover 140 is sleeved between the cushion pad 120 and the buffer cover 140, and the top cover 150 is covered to complete the assembly.
  • the polygonal packaging structure realizes the safety protection of the liquid crystal module panel by the fixing of the cushion pad, the buffer protection function, the reinforcement of the buffer cover, and the support buffer protection. Due to the polygonal structure design, the package can accommodate more LCD module panels, and at the same time, it has better compressive strength and impact resistance, ensuring reliability during transportation. Finally, the collapsible storage box saves storage space and increases recycling rate, which in turn reduces packaging costs. It should be noted that, in this context, relational terms such as first and second are used merely to distinguish one entity from another, and do not necessarily require or imply any actual relationship between the entities. Or order.

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

Abstract

多边形包装结构,用于包装片状载体,至少包括底部的缓冲底座(230)和顶部的缓冲顶盖(290),其中,所述缓冲底座(230)上设有若干容置槽(121),所述容置槽(121)呈中心向四周放射状排列,所述缓冲顶盖(290)上设有与所述容置槽(121)对应的固定槽(141)。该多边形包装结构具有包装成本低、抗压强度高、抗冲击性能好、可容纳较多液晶模组面板的特点,同时也具有包装安全、可靠、操作便捷的有益效果。

Description

多边形包装结构
技术领域
本发明涉及一种集装片状物的多边形包装结构, 尤其涉及用于液晶模组面 板的包装。 背景技术
在电子行业中, 电子产品的生产装配需要复杂的供应链支持。 通常, 电子 产品的零部件在不同地方批量生产、 制造, 经过运输, 统一运送至装配工厂进 行组装。 在液晶显示设备领域, 液晶模组作为液晶显示设备的核心部件, 在运 输中需要考虑包装的可靠性。 但是, 传统包装方式在运输中由于不能较好地承 载外部压力, 可能使多层堆叠的液晶模组面板产生变形, 不仅影响使用效果, 而且给企业带来不必要的损失。 所以, 提供一种抵抗压力、 抵抗冲击的包装箱 显得尤为必要。
现有的液晶模组包装箱结构如图 1所示, 包装箱包括: 外箱体 201、 底部缓 冲部件 202和顶盖缓冲部件 203。 该种结构的包装箱使用软性缓冲材料作为内衬, 防止液晶模组面板相互碰撞受损, 同时, 使用高强度箱体作为外箱体 201, 防止 内装面板受到外力冲击而受损, 有效保护多层堆叠的液晶模组面板。 该种包装 方式集装面板数量一般小于 10片。
现有的液晶模组大型包装箱结构如图 2所示, 大型包装箱与传统包装方式相 同, 包括外箱体 301和底部缓冲部件 302, 在传统包装方式基础上实现大型化集 合包装, 节约单箱间及单片间距离, 从而达到增加装片数的目的, 箱体内需添 加支撑部件以满足多层堆叠时对外箱抗压强度的要求, 同时可直接在栈板 303上 进行装箱操作。
专利 CN203033205U公开了一种包装吊篮, 包括由三段底板折弯围成的底盒 以及密封扣合在底盒上的上盖。 该装置扣合密封方便、 快捷、 可重复循环利用, 降低资源浪费。
虽然在一定程度上现有技术提供的包装方式可解决可靠包装的问题, 但仍 存在一些缺陷:
( 1 )缓冲材料价格较高, 增加包装成本。缓冲材料的材质为可发性聚乙烯, 本身质地较软, 受外力作用后容易被压缩而产生较大变形, 为了降低液晶模组 之间相互发生碰撞的风险, 通常需将缓冲材料设计得很厚, 这样不仅耗费材料, 而且还会因缓冲材料占用较多空间而造成集装液晶模组面板的数量减少, 从而 极大地提高了包装成本。
(2) 抗压强度、 抗冲击性能与集装面板数量成反比。 包装箱具有较好抗压 强度和抗冲击性能时, 集装面板数量常常较少, 一般集装面板数量小于 10片; 而增加集装面板数量时, 需在箱体内侧增设支撑部件以提高箱体的抗压强度, 增加了工作人员的操作步骤, 不利于提高工作效率, 同时增加包装成本。
(3 ) 大型包装箱体积大, 不易取出集装后的面板。 大型包装箱内靠近边缘 位置的面板较容易取出, 而位于中央位置的面板, 由于距离工作人员的位置较 远, 使得工作人员较难进行操作, 不易取出集装后的面板。 发明内容 本发明所要解决的技术问题是提供一种多边形包装结构, 具有包装成本低、 抗压强度高、 抗冲击性能好、 可容纳较多液晶模组面板的特点, 同时也具有包 装安全、 可靠、 操作便捷的有益效果。 多边形包装结构, 用于包装片状载体, 至少包括底部的缓冲底座和顶部的 缓冲顶盖, 其中, 所述缓冲底座上设有若干容置槽, 所述容置槽呈中心向四周 放射状排列, 所述缓冲顶盖上设有与所述容置槽对应的固定槽。 进一步地, 所述缓冲底座包括缓冲垫和底座, 所述缓冲顶盖包括缓冲盖和 顶盖, 所述缓冲底座和缓冲顶盖之间套设有箱体。 更进一步地, 所述缓冲垫和底座均为多边形结构, 所述缓冲垫套装于所述 底座的内部。 更进一步地, 所述缓冲盖和顶盖均为多边形结构, 所述缓冲盖套装于所述 顶盖的内部。 更进一步地, 所述箱体的上端和下端分别套设于所述缓冲垫和所述缓冲盖 上。 更进一步地, 所述箱体为一体围成的筒状多边形壁面, 该壁面上设有若干 用于支撑的楞。 其中, 所述楞的数量为偶数, 且大于 4。 更进一步地, 所述楞的数量为 8条。 进一步地, 所述容置槽设有第一始端和第一末端, 所述第一始端靠近所述 缓冲底座的中心, 所述第一末端靠近所述缓冲底座的边缘。 进一步地, 所述固定槽设有第二始端和第二末端, 所述第二始端靠近所述 缓冲顶盖的中心, 所述第二末端靠近所述缓冲顶盖边缘。 本发明的有益效果:
( 1 ) 安全可靠、 操作便捷、 包装成本低。 在本发明的多边形包装结构中, 缓冲垫上的放射状容置槽用于固定液晶模 组面板, 液晶模组面板上端采用对应的缓冲盖进行加固, 缓冲垫与缓冲盖均具 有缓冲保护功能, 在运输过程中起到安全保护作用, 同时, 容置槽沿缓冲垫中 心向缓冲垫外径方向呈放射形分布, 每片面板距离缓冲垫边缘的距离相等, 方 便工作人员安装和拆卸。 另外, 多边形箱体可沿楞进行折叠收纳, 节约储存空 间, 可回收重复利用, 降低包装成本。
( 2 ) 抗压强度高、 抗冲击性能好。 在本发明的多边形包装结构中, 采用多边形壁面的箱体具有较好的抗压强 度和抗冲击性能。 从基础物理知识可知, 两个平面相交形成的楞具有较好的抗 压强度, 楞的数量越多, 产生的抗压强度越大, 同时, 箱体棱角处相对于平面 处有更好的抗冲击性能, 由于多边形箱体楞和棱角的数量大于传统包装箱, 所 以具有更好的抗压强度和抗冲击性能。
( 3 ) 可容纳较多液晶模组面板。 在本发明的多边形包装结构中, 采用环形放射状的容置槽保证了液晶模组 面板可沿圆周排列分布, 使多边形包装结构能够容纳液晶模组面板的数量远远 大于传统包装箱, 提高了空间利用率。 附图说明 图 1是现有的液晶模组包装箱的结构示意图。 图 2是现有的液晶模组大型包装箱的结构示意图。 图 3是本发明实施例多边形包装结构的结构示意图。 图 4是本发明实施例缓冲垫、 缓冲盖的结构图。 图 5是本发明实施例箱体的结构图。 图 6是本发明另一实施例示意图。 图 7是图 5中箱体的载荷分布示意图。 图 8是本发明实施例多边形包装结构安装顺序示意图。 具体实施方式 为了更好地阐述本发明的技术特点和结构, 以下结合本发明的实施例及其 附图进行详细描述。 参阅图 3, 本发明提供的多边形包装结构, 用于包装片状载体, 至少包括底 部的缓冲底座 230和顶部的缓冲顶盖 290, 其中, 缓冲底座 230包括缓冲垫 120 和底座 110,缓冲垫 120和底座 110均为多边形结构,缓冲垫 120套装于底座 110 的内部; 缓冲顶盖 290包括缓冲盖 140和顶盖 150, 缓冲盖 140和顶盖 150均为 多边形结构, 缓冲盖 140套装于所述顶盖 150的内部; 缓冲底座 230和缓冲顶 盖 290之间套设有箱体 130,箱体 130的上端和下端分别套设于缓冲垫 120和缓 冲盖 140上。 参阅图 4, 缓冲垫 120上设有若干容置槽 121, 容置槽 121呈放射状排列, 用于固定安装液晶模组面板, 并提供缓冲保护, 其中容置槽 121设有第一始端 1211和第一末端 1212, 第一始端 1211靠近缓冲垫 120的中心, 第一末端 1212 靠近缓冲垫 120的边缘, 容置槽 121从缓冲垫 120的中心向缓冲垫 120的边缘 呈放射排列分布, 使液晶模组面板插设于容置槽 121后可沿圆周排列, 方便于 工作人员安装和拆卸, 同时, 保证了多边形包装结构的可容纳数量。 缓冲盖 140上设有若干固定槽 141, 固定槽 141呈放射状排列, 用于加固已 安装的液晶模组面板,并提供支撑缓冲保护,其中固定槽 141设有第二始端 1411 和第二末端 1412, 第二始端 1411靠近缓冲盖 140的中心, 第二末端 1412靠近 缓冲盖 140边缘, 固定槽 141从缓冲盖 140的中心向缓冲盖 140的边缘呈放射 排列分布, 固定槽 141排列位置与已安装液晶模组面板的圆周排列位置相对应。 箱体 130为一体围成的筒状多边形壁面, 该壁面上设有若干用于支撑的楞 131,一般要求楞 131的数量为大于 4的偶数,本实施例中箱体上的楞数为 8条。 在储运过程中, 箱体 130可沿楞 131进行折叠收纳, 节约储运空间, 见图 5。再 如图 6, 在另一实施例中, 当箱体上的楞数为无线大时, 箱体为圆筒形。 参阅图 7, 从基础物理知识可知, 箱体的抗压强度由四面侧壁提供, 且两面 侧壁相交形成的楞所产生的抗压强度最大, 经合理推断, 当楞的数量增多, 箱 体所产生的抗压强度越大, 因此, 在多边形箱体与传统箱体周长基本相同的条 件下, 多边形箱体的抗压强度远远优于传统箱体。 同时, 箱体棱角相对于箱体 壁面具有更好的抗冲击性能, 当楞数增多, 箱体棱角随之增多, 多边形箱体也 具有较好的抗冲击性能。 参阅图 8, 多边形包装结构安装顺序为: 首先, 将缓冲垫 120套装于底座 101的内部, 再将液晶模组面板 100依次安放于容置槽 121内; 再次, 将缓冲盖 140安装在液晶模组面板 100的上端,固定液晶模组面板 100;最后,将箱体 130 穿过缓冲盖 140套设在缓冲垫 120与缓冲盖 140之间, 再加盖顶盖 150完成装 配。 综上所述, 本发明提供的多边形包装结构, 通过缓冲垫的固定、 缓冲保护 作用和缓冲盖的加固、 支撑缓冲保护作用实现对液晶模组面板的安全保护。 由 于多边形结构设计, 使包装箱能够容纳较多的液晶模组面板, 同时, 具有较好 的抗压强度和抗冲击性能, 保证在运输过程中的可靠性。 最后, 可折叠收纳的 箱体, 节约储运空间, 增加回收重复使用率, 进而降低包装成本。 需要说明的是, 在本文中, 诸如第一和第二等之类的关系术语仅仅用来将 一个实体与另一个实体区分开来, 而不一定要求或者暗示这些实体之间存在任 何实际的关系或者顺序。 本发明的上述实施例仅仅是为清楚地说明本发明所作的举例, 而并非是对 本发明的实施方式的限定。 对于所属领域的普通技术人员来说, 在上述说明的 基础上还可以做出其他不同形式的变化或变动。 这里无需也无法对所有的实施 方式予以穷举。 凡在本发明的精神和原则之内所作的任何修改、 等同替换和改 进等, 均应包含在本发明权利要求的保护范围之内。

Claims

权 利 要 求 书
1、 多边形包装结构,用于包装片状载体,至少包括底部的缓冲底座和顶部 的缓冲顶盖, 其中, 所述缓冲底座上设有若干容置槽, 所述容置槽呈中心向四 周放射状排列, 所述缓冲顶盖上设有与所述容置槽对应的固定槽。
2、 根据权利要求 1所述的多边形包装结构,其中,所述缓冲底座包括缓冲 垫和底座, 所述缓冲顶盖包括缓冲盖和顶盖, 所述缓冲底座和缓冲顶盖之间套 设有箱体。
3、 根据权利要求 2所述的多边形包装结构,其中,所述缓冲垫和底座均为 多边形结构, 所述缓冲垫套装于所述底座的内部。
4、 根据权利要求 2所述的多边形包装结构,其中,所述缓冲盖和顶盖均为 多边形结构, 所述缓冲盖套装于所述顶盖的内部。
5、 根据权利要求 2所述的多边形包装结构,其中,所述箱体的上端和下端 分别套设于所述缓冲垫和所述缓冲盖上。
6、 根据权利要求 2所述的多边形包装结构, 其中, 所述箱体为一体围成 的筒状多边形壁面, 该壁面上设有若干用于支撑的楞。
7、 根据权利要求 6所述的多边形包装结构, 其中, 所述楞的数量为偶数, 且大于 4。
8、 根据权利要求 1所述的多边形包装结构,其中,所述容置槽设有第一始 端和第一末端, 所述第一始端靠近所述缓冲底座的中心, 所述第一末端靠近所 述缓冲底座的边缘。
9、 根据权利要求 1所述的多边形包装结构,其中,所述固定槽设有第二始 端和第二末端, 所述第二始端靠近所述缓冲顶盖的中心, 所述第二末端靠近所 述缓冲顶盖边缘。
PCT/CN2014/085873 2014-09-01 2014-09-03 多边形包装结构 Ceased WO2016033763A1 (zh)

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