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WO2014047970A1 - 液晶显示模组包装结构 - Google Patents

液晶显示模组包装结构 Download PDF

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Publication number
WO2014047970A1
WO2014047970A1 PCT/CN2012/082739 CN2012082739W WO2014047970A1 WO 2014047970 A1 WO2014047970 A1 WO 2014047970A1 CN 2012082739 W CN2012082739 W CN 2012082739W WO 2014047970 A1 WO2014047970 A1 WO 2014047970A1
Authority
WO
WIPO (PCT)
Prior art keywords
buffer
liquid crystal
crystal display
display module
side plates
Prior art date
Application number
PCT/CN2012/082739
Other languages
English (en)
French (fr)
Inventor
胡乾双
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 US13/703,957 priority Critical patent/US8960434B2/en
Publication of WO2014047970A1 publication Critical patent/WO2014047970A1/zh

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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
    • 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
    • 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
    • B65D81/053Corner, edge or end protectors
    • B65D81/057Protectors contacting four surfaces of the packaged article, e.g. four-sided corner protectors

Definitions

  • Liquid crystal display module packaging structure Liquid crystal display module packaging structure
  • the present invention relates to the field of packaging, and in particular, to a packaging structure of a liquid crystal display module. Background technique
  • liquid crystal display production includes an assembly process, that is, the liquid crystal display module, the main control circuit, the outer casing and the like are assembled, and the components thereof are first produced and sealed, and then assembled into the entire liquid crystal display. After the liquid crystal display module is produced, it is sealed in the packaging box of the liquid crystal display module, and then transported to the corresponding assembly station in a box.
  • the schematic diagram of the packaging process of the packaging structure of the existing liquid crystal display module is shown in FIG. 1.
  • the package includes: a box body 100, a bottom buffer unit 300 and a top buffer unit 500.
  • the bottom buffer unit 300 includes: a buffer The bottom plate 302 and the two buffer side plates 304 disposed on the buffer bottom plate 302 and located at the two ends of the buffer bottom plate 302 and the three limit positions disposed on the buffer bottom plate 302 and spaced apart between the two buffer side plates 304 are suspended.
  • the punching plate 306, the two buffering side plates 304 are spaced apart from each other by a plurality of mounting slots 305, and the three limiting plates 306 are provided with a plurality of limiting slots 307 corresponding to the mounting slots 305, and the bottom buffering
  • the top cushioning member 500 of the fitting 300 is provided with a corresponding structural arrangement corresponding to the bottom buffer structure 300.
  • the bottom buffering member 300 is first placed in the housing 100.
  • the liquid crystal display module 700 is sequentially mounted and fixed in the mounting slot 305 and the limiting slot 307.
  • the top buffering member 500 is further disposed. Placed on the upper end of the liquid crystal display module to complete the packaging.
  • the liquid crystal display module package the internal buffer device is commonly used in the material of expandable polyethylene (EPE), which is relatively high in material price during transportation or storage. It occupies a large storage space, and the number of recycling is relatively small, which greatly increases the packaging cost.
  • EPE expandable polyethylene
  • FIG. 2 is another schematic diagram of a packaging structure of a conventional liquid crystal display module.
  • the upper and lower buffer members 300 , 500 in the structure are all made of corrugated cardboard buffer, and the buffer material also occupies a large space. This results in higher transportation costs, resulting in higher packaging costs and fewer recycling times.
  • FIG. 3 is another schematic diagram of the packaging structure of the existing liquid crystal display module.
  • the upper and lower cushioning members 300" and 500" are all made of styrofoam (EPS), and the cushioning material also takes up a large space, resulting in an increase in transportation cost, resulting in higher packaging cost and less recycling times. This material is not naturally degradable and is not environmentally friendly.
  • EPS styrofoam
  • the liquid crystal display module occupies less storage space during transportation and storage, and solves the problem of high price, complicated structure and buffer of the existing liquid crystal display module packaging device.
  • the effect is not obvious and is an object of improvement for the inventors of the present application and those skilled in the related art. Summary of the invention
  • An object of the present invention is to provide a packaging structure of a liquid crystal display module, wherein an internal buffering device is provided with a receiving space, and an inflatable buffer body is used to fill a receiving space of the buffering device, thereby supporting a buffering device having a hollow interior.
  • the entire buffer device occupies less space, which can save packaging costs and achieve cost savings.
  • the present invention provides a packaging structure for a liquid crystal display module, comprising: a packaging box and a buffering device disposed in the packaging box, the buffering device comprising: a bottom buffering member and a bottom buffering member
  • the bottom buffering member includes: a buffer bottom plate, two buffer side plates disposed on the buffer bottom plate and located at two ends of the buffer bottom plate, and are disposed on the buffer bottom plate and spaced apart from each other
  • the first and second accommodating spaces are respectively disposed in the buffering side plate and the limiting plate, and the first and second accommodating spaces are respectively filled with several Inflatable cushion body.
  • a plurality of mounting slots are disposed on the two buffering side plates, and the three limiting slots are provided with a plurality of limiting slots corresponding to the plurality of mounting slots.
  • the two buffer side plates and the limiting plate are fixed to the buffer bottom plate by hot pressing.
  • the inflatable buffer body is provided with an inflation hole and a sealing device for sealing the inflation hole.
  • the inflatable buffer body is disposed on the two sides of the first and second accommodating spaces corresponding to the mounting groove and the limiting groove.
  • the package is a carton or a plastic material box.
  • the buffer side plate and the limiting plate are plastic products produced by the blister process.
  • the bottom bumper has the same structure as the top bumper.
  • the present invention also provides a packaging structure for a liquid crystal display module, comprising: a packaging box and a buffering device disposed in the packaging box, the buffering device comprising: a bottom buffering member and a top cushioning corresponding to the bottom cushioning member
  • the bottom buffering member includes: a buffer bottom plate, two buffer side plates disposed on the buffer bottom plate and located at two ends of the buffer bottom plate, and the buffer bottom plate disposed on the buffer bottom plate and spaced apart from the two buffer side plates Between the three limiting plates, the buffer side plate and the limiting plate are respectively provided with first and second vacant spaces And the first and second accommodating spaces are respectively filled with a plurality of inflatable buffer bodies;
  • the two buffer side plates are spaced apart from each other by a plurality of mounting slots, and the three limiting plates are provided with a plurality of limiting slots corresponding to the plurality of mounting slots;
  • the two buffer side plates and the limiting plate are fixed to the buffer bottom plate by means of hot pressing; wherein the inflatable buffer body is provided with an inflation hole and a sealing device for sealing the inflation hole;
  • the inflatable buffer body is disposed on the two sides of the first and second receiving spaces corresponding to the mounting groove and the limiting slot;
  • the packaging box is a carton or a plastic material box
  • the buffer side plate and the limiting plate are plastic products produced by the blister process; wherein the bottom buffering member and the top buffering member have the same structure.
  • the packaging structure of the liquid crystal display module of the present invention the internal buffer device is provided with a accommodating space, and the inflatable buffer body is used to fill the accommodating space of the buffer device, thereby supporting a hollow buffer device inside, It plays a role of fixing and protecting the liquid crystal display module, and better protects the liquid crystal display module when transporting the liquid crystal display module, thereby avoiding damage due to external force during product transportation, and the packaging box of the liquid crystal display module of the present invention
  • the buffer device can be reused, taking up less space and effectively reducing production costs.
  • FIG. 1 is a schematic diagram of a packaging process of a packaging structure of a conventional liquid crystal display module
  • FIG. 2 is another schematic view of a packaging structure of a conventional liquid crystal display module
  • FIG. 3 is another schematic diagram of a packaging structure of a conventional liquid crystal display module
  • FIG. 4 is an exploded perspective view of the bottom buffering member of the liquid crystal display module package structure of the present invention
  • FIG. 5 is a schematic perspective view of the buffer side panel and the limiting plate of FIG.
  • FIG. 6 is a schematic perspective structural view of an inflatable buffer body in a packaging structure of a liquid crystal display module according to the present invention.
  • the packaging structure of the liquid crystal display module of the present invention comprises: a packaging box (not shown) and a buffer device disposed in the packaging box, wherein the buffering device comprises: a bottom buffering member 2 and A top cushioning member (not shown) that cooperates with the bottom cushioning member 2, and the bottom cushioning member 2 has the same structure as the top cushioning member.
  • the bottom buffering member 2 includes: a buffer bottom plate 22, two buffer side plates 24 disposed on the buffer bottom plate 22 at both ends of the buffer bottom plate 22, and the buffer bottom plate 22 disposed on the buffer bottom plate 22 and spaced apart from each other.
  • the three limiting plates 26 between the side plates 24, the two buffer side plates 24 and the limiting plates 26 are fixed to the buffer bottom plate 22 by heat pressing.
  • the two buffering plates 24 are respectively disposed with a plurality of mounting slots 242.
  • the three limiting slots 26 are provided with a plurality of limiting slots 262 corresponding to the plurality of mounting slots 242.
  • the liquid crystal display module is mounted on the mounting slot.
  • the 242 and the corresponding limiting slot 262 function to fix and buffer the liquid crystal display module.
  • the buffer side plate 24 and the limiting plate 26 are plastic products produced by the blister process, and have the advantages of light weight, convenient transportation, good sealing performance, good cushioning performance, and the like, and the price is relatively cheap, thereby reducing the production cost. .
  • the buffering side plate 24 and the limiting plate 26 are provided with first and second accommodating spaces 240 and 260.
  • the first and second accommodating spaces 240 and 260 are filled with a plurality of inflatable buffer bodies 28, respectively. .
  • the inflatable buffer body 28 is disposed on the two sides of the first and second accommodating spaces 240 and 260 corresponding to the mounting groove 242 and the limiting groove 262, thereby supporting the buffer device to protect the liquid crystal display module.
  • the inflatable buffer body 28 is provided with an inflation hole (not shown) and a sealing device for sealing the inflation hole. When inflating, the inflation of the inflation hole can complete the inflation of the entire device. The inflation hole is sealed by a sealing device to achieve a cushioning effect. When the limit buffer is transported, the internal gas can be released to reduce the space occupancy and thus the transportation cost.
  • the advantages of the inflatable cushion body 28 are as follows:
  • the inflatable cushion body is composed of 99% air and 1% film, and is film-shaped before use, completely flat, does not occupy space, and can save a lot of transportation costs. And storage fee; ready to use, ready to fill, easy to use; strong shock resistance, good protection effect, single inflatable cushion can withstand 60kg weight without breaking, minimize damage rate; excellent support, Even if subjected to external force, the inflatable cushion body 28 can use air cushion to disperse pressure to avoid damage; it is non-polluting and environmentally friendly.
  • the packaging box is a carton or a plastic material box.
  • the embodiment is preferably a plastic box.
  • the plastic box has better structure than the commonly used carton, and is not easily damaged by repeated use, and can also be protected from moisture and water, and has better protection effect. And reuse of the box can also save packaging costs.
  • Liquid crystal display module (not shown) When packaging, place the bottom buffer 2 on the bottom of the box. Then, the liquid crystal display module is sequentially mounted on the bottom buffer member 2, and finally the top buffer member is mounted on the upper end of the liquid crystal module to complete the packaging.
  • the packaging structure of the liquid crystal display module of the present invention the internal buffer device is provided with a accommodating space, and the inflatable buffer body is used to fill the accommodating space of the buffer device, thereby supporting the inner buffering device, which is
  • the liquid crystal display module plays a role of fixing and protecting.
  • the liquid crystal display module is better protected from damage due to external force during the transportation of the product, and the packaging box of the liquid crystal display module of the present invention is slowed down.
  • the flushing device can be reused, taking up less space and effectively reducing production costs.

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

Abstract

一种液晶显示模组包装结构,包括:包装箱及设于包装箱内的缓冲装置,所述缓冲装置包括:底部缓冲件(2)及与底部缓冲件(2)相配合的顶部缓冲件,所述底部缓冲件(2)包括:缓冲底板(22)、设于缓冲底板(22)上且位于缓冲底板(22)两端的两缓冲侧板(24)及设于缓冲底板(22)上且间隔设置于两缓冲侧板(24)之间的三个限位板(26),所述缓冲侧板(24)、限位板(26)内分别设有第一与第二容置空间(240,260),且该第一与第二容置空间(240,260)内分别填充有数个充气式缓冲体(28)。本发明对液晶显示模组起到固定及保护的作用,避免产品运输过程中由于外力而损坏,且本发明缓冲装置可重复使用,占用空间少,进而有效降低生产成本。

Description

液晶显示模组包装结构 技术领域
本发明涉及包装领域, 尤其涉及一种液晶显示模组包装结构。 背景技术
电子行业的产品具有复杂, 高价值与更新速度快等特性, 制造商之间 有着复杂的供应链, 就目前的电子产品的产销形态而言, 大多都是在不同 地方分别进行产品的生产, 组装以及配销等作业, 使得电子产品的零件, 半成品等不得不在厂商之间运送。 在液晶显示器生产领域, 液晶显示器的 生产包括一个组装过程, 即将液晶显示模组、 主控电路、 外壳等部分进行 组装, 其各部件是先生产好封存起来, 待后续组装成整个液晶显示器。 其 中, 液晶显示模组生产完成后封存在液晶显示模组包装箱中, 然后成箱地 运送往相应的组装工站。
现有的液晶显示模组包装结构包装流程示意图如图 1 所示, 包装箱包 括: 箱体 100、 底部緩冲件 300及顶部緩冲件 500, 所述底部緩冲件 300 包括: 一緩冲底板 302及设与緩冲底板 302上且位于緩冲底板 302两端的 两緩冲侧板 304及设于緩冲底板 302上且间隔设于两緩冲侧板 304之间的 三个限位緩冲板 306, 所述两緩冲侧板 304 均间隔设置数个安装槽 305 , 所述三个限位板 306对应该些安装槽 305处设有数个限位槽 307, 所述与 底部緩冲件 300配合的顶部緩冲件 500上设有与底部緩冲结构 300相应的 结构设置。 安装时, 首先将底部緩冲件 300置于箱体 100内, 其次, 将液 晶显示模组 700按顺序依次安装固定于安装槽 305、 限位槽 307 中, 最 后, 再将顶部緩冲件 500置于液晶显示模组上端, 进而完成包装。
然而, 这种液晶显示模组包装, 内部緩冲装置的常釆用的材质为可发 性聚乙烯(EPE, Expandable Polyethylene, 又称珍珠棉) , 其材料价格较 高, 在运输或仓储过程中占有较大的存储空间, 且回收利用次数比较少, 进而大大的提高了包装成本。
请参阅图 2为现有液晶显示模组包装结构另一示意图, 该种结构中的 上下緩冲件 300,、 500,全为瓦楞纸板緩冲制成, 此緩冲材料同样占据空间 较大, 造成运输成本较高, 从而造成购买的包装成本较高, 回收次数比较 少。
请参阅图 3 为现有液晶显示模组包装结构又一示意图, 该种结构中的 上下緩冲件 300"、 500"全为保丽龙 (EPS)制成, 此緩冲材料同样占据空间 较大, 造成运输成本增加, 从而造成购买的包装成本较高, 回收次数比较 少, 并且此材料不可自然降解, 不具环保性。
由此可知, 如何提供有效的液晶显示模组包装装置, 实现液晶显示模 组在运送和仓储过程中占有存储空间少, 并解决现有液晶显示模组包装装 置价格偏高、 结构复杂、 緩冲效果不明显是本申请的发明人以及从事此相 关行业的技术领域者亟于改善的课题。 发明内容
本发明的目的在于提供一种液晶显示模组包装结构, 内部緩冲装置设 置容置空间, 使用充气式緩冲体填充緩冲装置的容置空间, 进而支撑内部 为中空的緩冲装置, 其整套緩冲装置占有空间少, 从而可以节省包装成 本, 达到节约成本的目的。
为实现上述目的, 本发明提供一种液晶显示模组包装结构, 包括: 包 装箱及设于包装箱内的緩冲装置, 所述緩冲装置包括: 底部緩冲件及与底 部緩冲件相配合的顶部緩冲件, 所述底部緩冲件包括: 緩冲底板、 设于緩 冲底板上且位于緩冲底板两端的两緩冲侧板及设于緩冲底板上且间隔设置 于两緩冲侧板之间的三个限位板, 所述緩冲侧板、 限位板内分别设有第一 与第二容置空间, 且该第一与第二容置空间内分别填充有数个充气式緩冲 体。
所述两緩冲侧板上均间隔设置数个安装槽, 所述三个限位板对应数个 安装槽设有数个限位槽。
所述两緩冲侧板及限位板通过热压的方式固定于緩冲底板上。
所述充气式緩冲体上设有充气孔及用于密封充气孔的密封装置。
所述充气式緩冲体设于第一与第二容置空间对应安装槽及限位槽两 侧。
所述包装箱为纸箱或塑胶材料箱。
所述緩冲侧板及限位板为吸塑工艺生产出的塑料制品。
所述底部緩冲件与顶部緩冲件具有相同的结构。
本发明还提供一种液晶显示模组包装结构, 包括: 包装箱及设于包装 箱内的緩冲装置, 所述緩冲装置包括: 底部緩冲件及与底部緩冲件相配合 的顶部緩冲件, 所述底部緩冲件包括: 緩冲底板、 设于緩冲底板上且位于 緩冲底板两端的两緩冲侧板及设于緩冲底板上且间隔设置于两緩冲侧板之 间的三个限位板, 所述緩冲侧板、 限位板内分别设有第一与第二容置空 间, 且该第一与第二容置空间内分别填充有数个充气式緩冲体;
其中, 所述两緩冲侧板上均间隔设置数个安装槽, 所述三个限位板对 应数个安装槽设有数个限位槽;
其中, 所述两緩冲侧板及限位板通过热压的方式固定于緩冲底板上; 其中, 所述充气式緩冲体上设有充气孔及用于密封充气孔的密封装 置;
其中, 所述充气式緩冲体设于第一与第二容置空间对应安装槽及限位 槽两侧;
其中, 所述包装箱为纸箱或塑胶材料箱;
其中, 所述緩冲侧板及限位板为吸塑工艺生产出的塑料制品; 其中, 所述底部緩冲件与顶部緩冲件具有相同的结构。
本发明的有益效果: 本发明液晶显示模组包装结构, 内部緩冲装置设 置容置空间, 使用充气式緩冲体填充緩冲装置的容置空间, 进而支撑内部 为中空的緩冲装置, 其对液晶显示模组起到固定及保护的作用, 在运输液 晶显示模组时, 更好的保护液晶显示模组, 避免产品运输过程中由于外力 而损坏, 且本发明液晶显示模组包装箱的緩冲装置可重复使用, 占用空间 少进而有效降低生产成本。
为了能更进一步了解本发明的特征以及技术内容, 请参阅以下有关本 发明的详细说明与附图, 然而附图仅提供参考与说明用, 并非用来对本发 明加以限制。 附图说明
下面结合附图, 通过对本发明的具体实施方式详细描述, 将使本发明 的技术方案及其它有益效果显而易见。
附图中,
图 1为现有液晶显示模组包装结构包装流程示意图;
图 2为现有液晶显示模组包装结构另一示意图;
图 3为现有液晶显示模组包装结构又一示意图;
图 4为本发明液晶显示模组包结构中底部緩冲件的立体分解图; 图 5为图 4中緩冲侧板及限位板立体结构示意图;
图 6为本发明液晶显示模组包装结构中充气式緩冲体的立体结构示意 图。 具体实施方式 为更进一步阐述本发明所釆取的技术手段及其效果, 以下结合本发明 的优选实施例及其附图进行详细描述。
请参阅图 4 至图 6 , 本发明液晶显示模组包装结构, 包括: 包装箱 (未图示)及设于包装箱内的緩冲装置, 所述緩冲装置包括: 底部緩冲件 2及与底部緩冲件 2相配合的顶部緩冲件(未图示) , 所述底部緩冲件 2 与顶部緩冲件具有相同的结构。
所述底部緩冲件 2包括: 緩冲底板 22、 设于緩冲底板 22上且位于緩 冲底板 22两端的两緩冲侧板 24及设于緩冲底板 22上且间隔设置于两緩 冲侧板 24之间的三个限位板 26, 所述两緩冲侧板 24及限位板 26通过热 压的方式固定于緩冲底板 22上。 所述两緩冲侧板 24上均间隔设置数个安 装槽 242, 所述三个限位板 26对应数个安装槽 242设有数个限位槽 262, 所述液晶显示模组安装于安装槽 242及对应限位槽 262中, 对液晶显示模 组起到固定及緩冲的作用。
所述緩冲侧板 24及限位板 26为吸塑工艺生产出的塑料制品, 其具有 重量轻、 运输方便、 密封性能好, 緩冲性能良好等优点, 且价格较为便 宜, 进而降低生产成本。
所述緩冲侧板 24、 限位板 26内设有第一与第二容置空间 240、 260, 该第一与第二容置空间 240、 260 内分别填充有数个充气式緩冲体 28。 所 述充气式緩冲体 28 设于所述第一与第二容置空间 240、 260 对应安装槽 242及限位槽 262 两侧, 进而支撑緩冲装置以保护液晶显示模组。 所述充 气式緩冲体 28 上设有充气孔(未图示)及用于密封充气孔的密封装置, 在充气时通过对充气孔充气即可完成整个装置的充气, 充完气后, 在通过 密封装置将该充气孔密封, 以实现緩冲作用。 在限位緩冲装置运输时, 可 将其内部的气体放出, 以减少空间占用率, 进而降低运输成本。
所述充气式緩冲体 28 的优点有: 充气式緩冲体由 99 %的空气和 1 % 的胶膜组成, 未使用前为薄膜状, 完全平整, 不占空间, 可节省大量的运 输费及仓储费; 随时使用, 立刻充填, 使用方便; 抗震性强, 防护效果 好, 单一个充气式緩冲体可承受 60kg 的重压而不破裂, 将损坏率降至最 低; 支撑性绝佳, 即使遭遇外力挤压, 充气式緩冲体 28 也能利用气垫来 分散压力以避免损害; 无污染性, 环保可回收。
所述包装箱为纸箱或塑胶材料箱, 本实施例优选为塑胶箱子, 塑胶箱 子相比常用的纸箱结构较好, 且重复使用不易破损, 还可防潮、 防水, 起 到更好的保护作用, 且重复使用包装箱还可节省包装费用。
液晶显示模组(未图示) 包装时, 将底部緩冲件 2置于包装箱底板, 再将液晶显示模组按顺序安装于底部緩冲件 2上, 最后将顶部緩冲件安装 在液晶模组的上端, 进而完成包装。
综上所述, 本发明液晶显示模组包装结构, 内部緩冲装置设置容置空 间, 使用充气式緩冲体填充緩冲装置的容置空间, 进而支撑内部为中空的 緩冲装置, 其对液晶显示模组起到固定及保护的作用, 在运输液晶显示模 组时, 更好的保护液晶显示模组, 避免产品运输过程中由于外力而损坏, 且本发明液晶显示模组包装箱的緩冲装置可重复使用, 占用空间少进而有 效降低生产成本。
以上所述, 对于本领域的普通技术人员来说, 可以根据本发明的技术 方案和技术构思作出其他各种相应的改变和变形, 而所有这些改变和变形 都应属于本发明权利要求的保护范围。

Claims

权 利 要 求
1、 一种液晶显示模组包装结构, 包括: 包装箱及设于包装箱内的緩 冲装置, 所述緩冲装置包括: 底部緩冲件及与底部緩冲件相配合的顶部緩 冲件, 所述底部緩冲件包括: 緩冲底板、 设于緩冲底板上且位于緩冲底板 两端的两緩冲侧板及设于緩冲底板上且间隔设置于两緩冲侧板之间的三个 限位板, 所述緩冲侧板、 限位板内分别设有第一与第二容置空间, 且该第 一与第二容置空间内分别填充有数个充气式緩冲体。
2、 如权利要求 1 所述的液晶显示模组包装结构, 其中, 所述两緩冲 侧板上均间隔设置数个安装槽, 所述三个限位板对应数个安装槽设有数个 限位槽。
3、 如权利要求 1 所述的液晶显示模组包装结构, 其中, 所述两緩冲 侧板及限位板通过热压的方式固定于緩冲底板上。
4、 如权利要求 1 所述的液晶显示模组包装结构, 其中, 所述充气式 緩冲体上设有充气孔及用于密封充气孔的密封装置。
5、 如权利要求 2 所述的液晶显示模组包装结构, 其中, 所述充气式 緩冲体设于第一与第二容置空间对应安装槽及限位槽两侧。
6、 如权利要求 1 所述的液晶显示模组包装结构, 其中, 所述包装箱 为纸箱或塑胶材料箱。
7、 如权利要求 1 所述的液晶显示模组包装结构, 其中, 所述緩冲侧 板及限位板为吸塑工艺生产出的塑料制品。
8、 如权利要求 1 所述的液晶显示模组包装结构, 其中, 所述底部緩 冲件与顶部緩冲件具有相同的结构。
9、 一种液晶显示模组包装结构, 包括: 包装箱及设于包装箱内的緩 冲装置, 所述緩冲装置包括: 底部緩冲件及与底部緩冲件相配合的顶部緩 冲件, 所述底部緩冲件包括: 緩冲底板、 设于緩冲底板上且位于緩冲底板 两端的两緩冲侧板及设于緩冲底板上且间隔设置于两緩冲侧板之间的三个 限位板, 所述緩冲侧板、 限位板内分别设有第一与第二容置空间, 且该第 一与第二容置空间内分别填充有数个充气式緩冲体;
其中, 所述两緩冲侧板上均间隔设置数个安装槽, 所述三个限位板对 应数个安装槽设有数个限位槽;
其中, 所述两緩冲侧板及限位板通过热压的方式固定于緩冲底板上; 其中, 所述充气式緩冲体上设有充气孔及用于密封充气孔的密封装 置;
其中, 所述充气式緩冲体设于第一与笫二容置空间对应安装槽及限位 槽两侧;
其中, 所述包装箱为纸箱或塑胶材料箱;
其中, 所述緩冲侧板及限位板为吸塑工艺生产出的塑料制品; 其中, 所述底部緩沖件与顶部緩沖件具有相同的结构。
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