WO2010025640A1 - 镜面屏幕及其制造方法 - Google Patents

镜面屏幕及其制造方法 Download PDF

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Publication number
WO2010025640A1
WO2010025640A1 PCT/CN2009/072898 CN2009072898W WO2010025640A1 WO 2010025640 A1 WO2010025640 A1 WO 2010025640A1 CN 2009072898 W CN2009072898 W CN 2009072898W WO 2010025640 A1 WO2010025640 A1 WO 2010025640A1
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WIPO (PCT)
Prior art keywords
mirror screen
front frame
mirror
frame portion
substrate
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Application number
PCT/CN2009/072898
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English (en)
French (fr)
Inventor
张祐严
许书维
沈昌明
Original Assignee
昆山渝榕电子有限公司
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Publication of WO2010025640A1 publication Critical patent/WO2010025640A1/zh

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29CSHAPING OR JOINING OF PLASTICS; SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDED FOR; AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
    • B29C45/00Injection moulding, i.e. forcing the required volume of moulding material through a nozzle into a closed mould; Apparatus therefor
    • B29C45/16Making multilayered or multicoloured articles

Definitions

  • the present invention relates to a mirror screen and a method of manufacturing the same, and more particularly to a mirror screen that can be applied to various electronic devices and a method of manufacturing the same.
  • the mirror screen is the goal that the industry has been pursuing because of its advantages of durability, deformation resistance, good display performance, and clean appearance.
  • the mirror screen includes a mirror screen panel, a front frame, a liquid crystal display panel, and a rear case.
  • the current method of mirror screen manufacturing is:
  • the method is prone to problems such as degumming, overflowing or mirror screen board unevenness, short circuit, etc., and is costly, inefficient, and does not utilize mass production.
  • the mirror screen manufactured by this method uses a glue-glued mirror screen panel, the mirror screen cannot be recycled after being discarded.
  • the main object of the present invention is to provide a mirror screen and a method of manufacturing the same, which are practical, durable, low in cost, high in production efficiency, and environmentally friendly.
  • the present invention provides a mirror screen comprising: a mirror screen housing, a liquid crystal display panel, and a rear housing, wherein the liquid crystal display panel is fixedly disposed between the mirror screen housing and the rear housing
  • the mirror screen housing includes a mirror screen substrate and a front frame portion integrally formed on the mirror screen substrate.
  • the invention also provides a method for manufacturing a mirror screen, the method comprising:
  • Forming the mirrored screen housing includes the following steps:
  • the mold is aligned with the mirror screen substrate injection molding device to form a mirror screen substrate; and the front frame portion is directly injection molded on the mirror screen substrate.
  • the mirror screen of the present invention and the manufacturing method thereof directly inject the front frame portion of the liquid crystal display on the mirror screen substrate, so that the front frame portion and the mirror screen substrate form an integral structure, without glue glue, from the source Reduce and control the use of toxic and hazardous substances in electronic products, improve the recovery rate and resource utilization rate of electronic products, avoid environmental pollution during the process of resource utilization, fully comply with environmental protection requirements, and have simple manufacturing methods.
  • the mirror screen manufactured by the method of the present invention is durable and has high cost and high production efficiency, and does not cause problems such as degumming and deformation.
  • FIG. 1 is a schematic cross-sectional view of a mirror screen of the present invention.
  • FIG. 2 is a schematic exploded view of a cross section of a mirror screen of the present invention.
  • FIG 3 is a plan view of a mirror screen housing of a mirror screen of the present invention.
  • FIG. 4A is a schematic cross-sectional view of a mirror screen housing of another embodiment of a mirror screen of the present invention.
  • 4B is a schematic cross-sectional view of a mirror screen housing of still another embodiment of the mirror screen of the present invention.
  • Fig. 5 is a schematic view showing the manufacturing process of the apparatus using the mirror screen of the present invention.
  • Figure 6 is a flow chart showing the manufacture of the mirror screen of the present invention.
  • FIG. 1 is a schematic cross-sectional view of a mirror screen of the present invention
  • FIG. 2 is a schematic exploded view of a mirror screen according to the present invention
  • the mirror screen 100 of the present invention comprises: a mirror screen housing 1.
  • the liquid crystal display panel 2 and a rear case 3 are fixedly disposed between the mirror screen housing 1 and the rear case 3.
  • FIG. 3 is a schematic plan view of a mirror screen housing of a mirror screen according to the present invention.
  • the mirror screen housing 1 includes a mirror screen substrate 11 and a front frame portion 12, and the mirror screen substrate 1 1 is substantially rectangular.
  • the front frame portion 12 is formed on an edge portion of a surface 11 of the mirror screen substrate 11 and has an edge and a mirror screen.
  • the periphery 110 of the curtain substrate 11 is flush.
  • the edge of the front frame portion 12 may extend beyond the peripheral edge 110 of the mirrored screen substrate 11 or at a certain distance from the peripheral edge 110 of the mirrored screen substrate 11.
  • FIG. 4A a schematic cross-sectional view of a mirrored screen housing of another embodiment of the mirror screen of the present invention
  • the front frame portion 12 extends beyond and surrounds the peripheral edge 110 of the mirrored screen substrate 11, and the other surface of the mirrored screen substrate 11. 112 flush.
  • FIG. 4B it is a schematic cross-sectional view of a mirror screen housing according to still another embodiment of the mirror screen of the present invention.
  • the front frame portion 12 is spaced apart from the peripheral edge 110 of the mirror screen substrate 11.
  • the mirror screen substrate 11 is made of an acrylic material or a resin
  • the front frame portion 12 is made of an engineering plastic, a resin, a carbon fiber material, a metal, or the like.
  • some special functional coatings may be added to the surface of the mirror screen substrate 11, for example, an anti-reflection coating (not shown) is added to increase the transmittance, and an anti-radiation layer (not shown) is added to have radiation protection. And block harmful light and other functions.
  • FIG. 5 is a schematic diagram showing the manufacturing process of the apparatus using the mirror screen of the present invention
  • FIG. 6 is a schematic flow chart of manufacturing the mirror screen of the present invention.
  • the manufacturing method of the mirror screen of the present invention comprises the following steps:
  • the liquid crystal display panel 2 is assembled between the mirror screen housing 1 and the rear housing 3;
  • Forming the mirrored screen housing 1 includes the following steps:
  • a mirror screen substrate injection device 61 and a front frame portion injection device 62 are provided.
  • the mirror screen substrate injection device 61 and the front frame portion injection device 62 may be two vertical two-color injection devices or two horizontal two-color injection devices. Is two vertical monochrome injection molding devices or two horizontal monochrome injection molding devices;
  • the mold is aligned with the mirror screen substrate injection molding apparatus 61 to form a mirror screen substrate 11; and the front frame portion 12 is injection molded on the mirror screen substrate 11, and thus, the mirror screen housing 1 is formed.
  • forming the mirrored screen housing 1 specifically includes the steps of: providing a mold including a movable mold side 4, a first fixed mold side 51, and a second fixed mold side 52, wherein
  • the movable mold side 4 has a cavity corresponding to the shape of the mirror screen substrate 11, and the first mold side 51 has a plane corresponding to the surface (111 or 112) of the mirror screen substrate 11 for mating with the movable mold side 4 to form a mirror surface.
  • the screen substrate 11, the second fixed mold side 52 has a shape corresponding to the front frame portion 12 a cavity for mating with the movable mold side 4 to form the front frame portion 12;
  • the movable mold side 4 is aligned with the mirror screen substrate injection molding device 61, and the first fixed mold side 51 is engaged with the movable mold side 4 to form a mirror screen substrate 1 1 ;
  • the formed mirror screen substrate 11 is transferred together with the movable mold side 4 to the front frame injection unit 62, directly molded on the mirror screen substrate 11, and the second fixed mold side 52 is engaged with the movable mold side 4 to thereby The front frame portion 12 is formed, and thus, the mirror screen housing 1 is formed.
  • the step of transferring the formed mirror screen substrate 11 together with the movable mold side 4 to the front frame injection unit 62 is performed together with the mirror screen substrate 11 together with the movable mold side 4.
  • the front frame portion injection molding device 62 is aligned after the peripheral periphery of the movable mold side 4 is turned over by 180 degrees.
  • the present invention can also employ a manufacturing method of a transfer molding product: first, two single-color vertical or two horizontal injection molding machines are used as the mirror screen substrate injection device 61 and the front frame portion injection device 62, The mirror screen substrate 1 1 is first injection molded, and the mirror screen substrate 11 is taken out from the mold and placed on the front frame portion injection molding device 62 to be injection molded to form the front frame portion 12, thereby forming the mirror screen housing 1.
  • the steps of forming the mirror screen housing 1, the liquid crystal display panel 1 and the rear housing 3 are independent of each other, and the order of manufacture of the three is in no particular order, and may be performed simultaneously or sequentially according to actual conditions.
  • the mirror screen of the invention and the manufacturing method thereof directly form the front frame portion of the liquid crystal display on the mirror screen substrate, so that the front frame portion and the mirror screen substrate form an integral structure, without glue glue, reducing and controlling the electronic product from the source
  • the use of toxic and hazardous substances improves the recovery rate and resource utilization rate of electronic products, avoids the environmental pollution of e-waste in the process of resource utilization, fully meets environmental protection requirements, and has a simple manufacturing method, low cost and high production efficiency.
  • the mirror screen manufactured by the method of the invention is durable and does not cause problems such as degumming and deformation.

Landscapes

  • Engineering & Computer Science (AREA)
  • Manufacturing & Machinery (AREA)
  • Mechanical Engineering (AREA)
  • Devices For Indicating Variable Information By Combining Individual Elements (AREA)
  • Injection Moulding Of Plastics Or The Like (AREA)

Description

镜面屏幕及其制造方法
【技术领域】
本发明是关于一种镜面屏幕及其制造方法, 尤指一种可适用于各种电子 装置的镜面屏幕及其制造方法。
【背景技术】
镜面屏幕由于具有耐久性好、 抗变形、 显示效果佳、 外形筒洁美观等优 点, 是业界一直在追求的目标。 以笔记本电脑书为例, 其镜面屏幕包括一镜面 屏幕板、 一前框架、 一液晶显示面板以及一后壳体。 目前的镜面屏幕制造方 法是:
分别形成镜面屏幕板、 前框架、 液晶显示面板以及后壳体;
将液晶显示面板组装在该前框架与后壳体之间;
使用胶水将镜面屏幕板胶合在前框架上。
然而, 在制造和使用过程中, 该方法容易产生脱胶、 溢胶或镜面屏幕板 胶合不平整、 短路等诸多问题, 并且成本高、 效率低、 不利用大量生产。 另 外, 由于该方法制造的镜面屏幕使用了胶水胶合镜面屏幕板, 镜面屏幕废弃 后无法回收利用。
【发明内容】
本发明的主要目的在于提供一种镜面屏幕及其制造方法, 其实用、耐用、 成本低、 生产效率高且符合环保要求。
为达上述的目的, 本发明提供一种镜面屏幕, 包括: 一鏡面屏幕壳体、 一液晶显示面板以及一后壳体, 其中液晶显示面板固定设置在该镜面屏幕壳 体与后壳体之间, 该镜面屏幕壳体包括一镜面屏幕基板以及一前框部, 该前 框部一体形成在镜面屏幕基板上。
本发明还提供一种镜面屏幕的制造方法, 该方法包括:
分别形成镜面屏幕壳体、 液晶显示面板以及后壳体; 以及 将液晶显示面板组装在该镜面屏幕壳体与后壳体之间;
其中形成镜面屏幕壳体包括以下步骤:
提供一模具;
提供一镜面屏幕基板注塑装置以及一前框部注塑装置;
将模具对准镜面屏幕基板注塑装置注塑形成镜面屏幕基板; 以及 直接在该镜面屏幕基板上注塑形成前框部。
相较于现有技术, 本发明镜面屏幕及其制造方法将液晶显示器的前框部 直接注塑形成在镜面屏幕基板上, 使前框部与镜面屏幕基板形成一体结构, 不使用胶水胶合, 从源头减少和控制了电子产品中有毒有害物质的使用, 提 高了电子产品的回收率和资源化利用率, 避免了电子废物在资源化利用过程 中的环境污染, 完全符合环保要求, 且制造方法简单、 成本低、 生产效率高, 利用本发明的方法所制造的镜面屏幕坚固耐用, 不会产生脱胶、 变形等问题。
【附图说明】
图 1为本发明镜面屏幕的截面组装示意图。
图 2为本发明镜面屏幕的截面***示意图。
图 3为本发明镜面屏幕的镜面屏幕壳体的平面示意图。
图 4A为本发明镜面屏幕另一实施例的镜面屏幕壳体的截面示意图。 图 4B为本发明镜面屏幕又一实施例的镜面屏幕壳体的截面示意图。 图 5为利用本发明镜面屏幕的设备说明其制造流程的示意图。
图 6为制造本发明镜面屏幕的流程示意图。
【具体实施方式】
请参阅图 1与图 2 , 图 1为本发明镜面屏幕的截面组装示意图, 图 2为 本发明镜面屏幕的截面***示意图, 本发明一种镜面屏幕 1 00包括: 一镜面 屏幕壳体 1、一液晶显示面板 2以及一后壳体 3 , 其中液晶显示面板 2 固定设 置在该镜面屏幕壳体 1与后壳体 3之间。 请结合参阅图 3 , 图 3为本发明镜 面屏幕的镜面屏幕壳体的平面示意图, 该镜面屏幕壳体 1 包括一镜面屏幕基 板 11 以及一前框部 12 , 该镜面屏幕基板 1 1 大致呈长方形, 该前框部 12— 体形成在镜面屏幕基板 1 1的一表面 1 11的边缘部位上,并且其边缘与镜面屏 幕基板 11的周缘 110平齐。 根据实际需求, 前框部 12的边缘可以超出镜面 屏幕基板 11的周缘 110, 或者与镜面屏幕基板 11的周缘 110保持一定距离。 例如图 4A 所示, 为本发明镜面屏幕另一实施例的镜面屏幕壳体的截面示意 图, 该前框部 12超出并且包围镜面屏幕基板 11 的周缘 110, 且与镜面屏幕 基板 11的另一表面 112平齐。 又例如图 4B所示, 为本发明镜面屏幕又一实 施例的镜面屏幕壳体的截面示意图, 该前框部 12与镜面屏幕基板 11的的周 缘 110保持一定距离。镜面屏幕基板 11是由压克力材料或树脂制成, 前框部 12是由工程塑料、 树脂、 碳纤维材料或金属等制成。 根据实际需要, 镜面屏 幕基板 11表面上可加一些具有特殊功能的镀层,例如:加镀增透膜(未图示) 以增加透光率, 增加防辐射层 (未图示) 从而具有防辐射和阻隔有害光线等 功能。
请参阅图 5以及图 6, 图 5为利用本发明镜面屏幕的设备说明其制造流 程的示意图, 图 6为制造本发明镜面屏幕的流程示意图, 本发明镜面屏幕的 制造方法, 包括以下步骤:
分别形成镜面屏幕壳体 1、 液晶显示面板 2以及后壳体 3; 以及
将液晶显示面板 2组装在该镜面屏幕壳体 1与后壳体 3之间;
其中形成镜面屏幕壳体 1 包括以下步骤:
提供一模具 (未标号);
提供一镜面屏幕基板注塑装置 61 以及一前框部注塑装置 62, 镜面屏幕 基板注塑装置 61和前框部注塑装置 62可以是两台立式双色注塑装置或两台 卧式双色注塑装置, 也可以是两台立式单色注塑装置或两台卧式单色注塑装 置;
将模具对准镜面屏幕基板注塑装置 61注塑形成镜面屏幕基板 11; 以及 在该镜面屏幕基板 11上注塑形成前框部 12, 这样, 就形成了镜面屏幕 壳体 1。
在本发明一较佳实施例中, 形成镜面屏幕壳体 1具体包括以下步骤: 提供一模具, 该模具包括一动模侧 4、 一第一定模侧 51以及一第二定模 侧 52, 其中动模侧 4具有对应于镜面屏幕基板 11形状的型腔, 第一定模侧 51具有对应于镜面屏幕基板 11的表面 ( 111或 112 )的平面, 用以与动模侧 4配合以形成镜面屏幕基板 11, 第二定模侧 52具有对应于前框部 12形状的 型腔, 用以与动模侧 4配合以形成前框部 12;
提供一镜面屏幕基板注塑装置 61以及一前框部注塑装置 62 ;
将动模侧 4对准镜面屏幕基板注塑装置 61注塑, 并利用第一定模侧 51 与动模侧 4配合从而形成镜面屏幕基板 1 1 ; 以及
将所形成的镜面屏幕基板 11连同动模侧 4一同转移至对准前框部注塑装 置 62 , 直接在该镜面屏幕基板 11上注塑, 并利用第二定模侧 52与动模侧 4 配合从而形成前框部 12 , 这样, 就形成了镜面屏幕壳体 1。
在本较佳实施例中,上述将所形成的镜面屏幕基板 1 1连同动模侧 4一同 转移至对准前框部注塑装置 62的步驟中, 是将镜面屏幕基板 11连同动模侧 4一同沿动模侧 4的***周边翻转 18 0度后对准前框部注塑装置 62。 在其他 实施例中,本发明还可以釆用转移式注塑产品的制造方法:首先使用两台单色 立式或两台卧式注塑机作为镜面屏幕基板注塑装置 61和前框部注塑装置 62, 先注塑形成镜面屏幕基板 1 1 , 将镜面屏幕基板 1 1从模具中取出转移放置在 前框部注塑装置 62上注塑形成前框部 12 , 从而形成镜面屏幕壳体 1。
请注意, 形成镜面屏幕壳体 1、 液晶显示面板 1 以及后壳体 3的步骤相 互独立, 三者的制造顺序不分先后, 根据实际情况, 可同时进行, 也可顺次 进行。
本发明所使用的模具、 注塑装置的结构、 原理都是本领域一般技术人员 所熟知的, 因此省去其结构、 原理的详细描述。
本发明镜面屏幕及其制造方法将液晶显示器的前框部直接注塑形成在镜 面屏幕基板上, 使前框部与镜面屏幕基板形成一体结构, 不使用胶水胶合, 从源头减少和控制了电子产品中有毒有害物质的使用, 提高了电子产品的回 收率和资源化利用率, 避免了电子废物在资源化利用过程中的环境污染, 完 全符合环保要求, 且制造方法筒单、 成本低、 生产效率高, 利用本发明的方 法所制造的镜面屏幕坚固耐用, 不会产生脱胶、 变形等问题。

Claims

权 利 要 求 书
1.一种镜面屏幕, 包括: 一镜面屏幕壳体、 一液晶显示面板以及一后壳 体, 其中液晶显示面板组装在该镜面屏幕壳体与后壳体之间, 其特征在于: 该镜面屏幕壳体包括一镜面屏幕基板以及一前框部, 该前框部一体形成在镜 面屏幕基板上。
2.如权利要求 1所述的镜面屏幕,其特征在于: 该前框部一体形成在镜面 屏幕基板的一表面的边缘部位上。
3.如权利要求 2所述的镜面屏幕,其特征在于: 该前框部超出镜面屏幕基 板的该表面的边缘部位, 而包围镜面屏幕基板的周缘。
4.如权利要求 3所述的镜面屏幕,其特征在于: 该前框部的一表面与镜面 屏幕基板的另一表面平齐。
5.如权利要求 2所述的镜面屏幕,其特征在于: 该前框部的边缘与镜面屏 幕基板的周缘平齐或者与镜面屏幕基板的周缘保持一定距离。
6.如权利要求 1所述的镜面屏幕,其特征在于: 镜面屏幕基板是由压克力 材料或树脂制成, 前框部是由工程塑料、 树脂、 碳纤维材料或金属制成。
7.—种镜面屏幕的制造方法, 包括形成镜面屏幕壳体的步骤, 其特征在 于: 形成镜面屏幕壳体的步骤包括以下步骤:
提供一模具;
提供一镜面屏幕基板注塑装置以及一前框部注塑装置;
将模具对准镜面屏幕基板注塑装置注塑形成镜面屏幕基板; 以及 在该镜面屏幕基板上注塑形成前框部。
8.如权利要求 7所述的镜面屏幕的制造方法, 其特征在于: 该方法还包 括分别形成液晶显示面板以及后壳体的步骤。
9.如权利要求 8所述的镜面屏幕的制造方法, 其特征在于: 该方法还包 括将液晶显示面板组装在该镜面屏幕壳体与后壳体之间的步骤。
1 0.如权利要求 7所述的镜面屏幕的制造方法, 其特征在于: 该方法还包 括将该前框部注塑形成在镜面屏幕基板的一表面的边缘部位上的步骤。
1 1.如权利要求 1 0所述的镜面屏幕的制造方法, 其特征在于: 该方法还 包括使该前框部超出镜面屏幕基板的该表面的边缘部位, 而包围镜面屏幕基 板的周缘的步骤。
12.如权利要求 11所述的镜面屏幕的制造方法, 其特征在于: 该方法还 包括使该前框部的一表面与镜面屏幕基板的另一表面平齐的步骤。
1 3.如权利要求 12所述的镜面屏幕的制造方法, 其特征在于: 该模具包 括一动模侧以及一第一定模侧以及一第二定模侧, 其中动模侧具有对应于镜 面屏幕基板形状的型腔, 第一定模侧具有对应于镜面屏幕基板的外表面的平 面, 用以与动模侧配合以形成镜面屏幕基板, 第二定模侧具有对应于前框部 形状的型腔, 用以与动模侧配合以形成前框部。
14.如权利要求 1 3所述的镜面屏幕的制造方法, 其特征在于: 在将模具 对准镜面屏幕基板注塑装置注塑形成镜面屏幕基板的步骤中, 将动模侧对准 镜面屏幕基板注塑装置注塑, 并利用第一定模侧与动模侧配合从而形成镜面 屏幕基板。
15.如权利要求 1 3所述的镜面屏幕的制造方法, 其特征在于: 在注塑形 成前框部的步骤中, 利用第二定模侧与动模侧配合从而形成前框部。
16.如权利要求 1 3所述的镜面屏幕的制造方法, 其特征在于: 在注塑形 成前框部的步骤前, 还包括一将镜面屏幕基板连同动模侧一同沿动模侧的外 围周边翻转 180度后对准前框部注塑装置的步骤。
17.如权利要求 1 3所述的镜面屏幕的制造方法, 其特征在于: 在注塑形成 前框部的步骤前, 还包括一将镜面屏幕基板从模具中取出转移放置在前框部 注塑装置上的步驟。
18.如权利要求 7所述的镜面屏幕的制造方法, 其特征在于: 镜面屏幕基 板注塑装置和前框部注塑装置可以是立式双色注塑装置或卧式双色注塑装 置, 也可以是立式单色注塑装置或卧式单色注塑装置。
PCT/CN2009/072898 2008-09-05 2009-07-24 镜面屏幕及其制造方法 WO2010025640A1 (zh)

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