WO2017166144A1 - 柔性触控显示屏 - Google Patents

柔性触控显示屏 Download PDF

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Publication number
WO2017166144A1
WO2017166144A1 PCT/CN2016/077923 CN2016077923W WO2017166144A1 WO 2017166144 A1 WO2017166144 A1 WO 2017166144A1 CN 2016077923 W CN2016077923 W CN 2016077923W WO 2017166144 A1 WO2017166144 A1 WO 2017166144A1
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WO
WIPO (PCT)
Prior art keywords
support
support body
display screen
main body
positioning
Prior art date
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
Application number
PCT/CN2016/077923
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English (en)
French (fr)
Inventor
夏新元
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Shenzhen Royole Technologies Co Ltd
Original Assignee
Shenzhen Royole Technologies Co Ltd
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.)
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Publication date
Application filed by Shenzhen Royole Technologies Co Ltd filed Critical Shenzhen Royole Technologies Co Ltd
Priority to CN201680014711.1A priority Critical patent/CN107484426B/zh
Priority to PCT/CN2016/077923 priority patent/WO2017166144A1/zh
Publication of WO2017166144A1 publication Critical patent/WO2017166144A1/zh
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

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    • GPHYSICS
    • G06COMPUTING OR CALCULATING; COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/03Arrangements for converting the position or the displacement of a member into a coded form
    • G06F3/041Digitisers, e.g. for touch screens or touch pads, characterised by the transducing means
    • G06F3/0412Digitisers structurally integrated in a display
    • GPHYSICS
    • G06COMPUTING OR CALCULATING; COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/03Arrangements for converting the position or the displacement of a member into a coded form
    • G06F3/041Digitisers, e.g. for touch screens or touch pads, characterised by the transducing means
    • GPHYSICS
    • G06COMPUTING OR CALCULATING; COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F2203/00Indexing scheme relating to G06F3/00 - G06F3/048
    • G06F2203/041Indexing scheme relating to G06F3/041 - G06F3/045
    • G06F2203/04102Flexible digitiser, i.e. constructional details for allowing the whole digitising part of a device to be flexed or rolled like a sheet of paper

Definitions

  • the present invention relates to the field of electronic communication, and in particular to a flexible touch display screen.
  • Electronic devices such as mobile phones, PDAs, and notebooks are widely used in life. Users generally operate the electronic devices through touch screens or external keyboards. With the development of high technology, consumers' portability to electronic devices. And the requirements for diversity are getting higher and higher. For example, reducing the size of the electronic device facilitates carrying and setting the touch screen to improve operability.
  • the touch-sensitive flexible touch display can be shrunk and portable, and is widely used in the future. Since the flexible touch display screen is a flexible structure, it is not enough to support the touch force of the human hand on the surface. Therefore, the existing flexible touch display screen must be placed on a hard support table when used. Desktops, walls, etc., cause inconvenience to the user.
  • the embodiment of the invention provides a flexible touch display screen, which can realize its own support for the screen.
  • the flexible touch display screen of the present invention comprises a display main body and a support main body.
  • the display main body includes a display surface and a back surface opposite to the display surface
  • the support main body includes a first support body and a second support fixed to the back surface of the display main body.
  • the first support body and the second support body are independent of each other.
  • the first support body and the second support body abut each other to support the display screen main body when the display
  • the screen main body is stowed, the first support body and the second support body are separated from each other.
  • the flexible touch display screen of the present application is provided with a support body on the back of the display main body, and the flexible touch display screen supports the main body as a plane support when using the flattening, and supports the flexible display screen; the user can operate the screen anytime and anywhere Instead of looking for a flat support screen such as a table, it is convenient for the user to operate on the surface.
  • FIG. 1 is a schematic diagram of a flexible touch display screen provided by the present invention, wherein the flexible touch display screen is in an unfolded state.
  • FIG. 2 is a schematic view showing the bending of the flexible touch display screen shown in FIG. 1.
  • FIG. 3 is a schematic diagram of a flexible touch display screen according to another embodiment of the present invention.
  • FIG. 4 is a schematic view of the flexible touch display screen of FIG. 1 with a positioning assembly.
  • FIG. 5 is a schematic diagram of another embodiment of a positioning assembly of the flexible touch display screen of FIG. 1.
  • Fig. 6 is an enlarged schematic view showing a portion VI of Fig. 5.
  • FIG. 7 is a schematic diagram of still another embodiment of the flexible touch display screen shown in FIG. 1.
  • the present invention provides a flexible touch display screen.
  • the flexible touch display screen according to the embodiment of the present invention is used for, but not limited to, a mobile phone, a tablet computer, a palmtop computer, a personal digital assistant (PDA), or an e-reader.
  • PDA personal digital assistant
  • the embodiment of the present invention does not specifically limit this.
  • the display main body and the support main body includes a display surface and a back surface opposite to the display surface
  • the support main body includes a first support body and a second support body fixed to the back surface of the display main body, the first support body and the second support body
  • the support bodies are independent of each other, and when the display main body is unfolded, the first support body and the second support body abut each other to support the display screen main body, and when the display main body is retracted, the first A support body and the second support body are separated from each other.
  • the flexible touch display screen of the present application includes a display body 10 and a support body 20 .
  • the display main body includes a display surface and a back surface opposite to the display surface (not labeled), and the support main body 20 has a flat shape for supporting the display main body 10 so that the display can withstand the touch when the user operates.
  • One side of the support body 20 is a support surface 21, and the other side opposite to the support surface 21 is provided with a first support body 22 and a second support body 23 arranged on one side of the first support body 22.
  • the display main body 10 is laid and fixed to the support body 20, and the back surface is attached to the support surface 21, and when the display main body is unfolded, the first support body 22 and the second support body 23 are The opposite sides of each other are opposed to each other to support the display main body.
  • the support main body 20 is bent along with the display main body 10, the first support body 22 and the second support body The opposite sides of the two sides are separated and separated.
  • the hardness of the first support body 22 and the second support body 23 is greater than the hardness of the display body.
  • the support body 20 is made of a material having a certain hardness such as rubber or plastic which can be bent.
  • the support body 20 is flat and integrally formed, and the first support body 22 and the second support body 23 are cut upwardly on the lower surface of the support body 20.
  • the support body 20 includes a flat body (not shown), the support surface 21 is a surface of the flat body, and the first support body 22 and the second support body 23 are plate bodies. And attached to the surface of the flat body opposite to the support surface 21 by a sticking method.
  • first support body 22 and the second support body 23 can also be directly fixed to the bottom surface of the display screen main body 10 by means of pasting or the like, and the support surface 21 is composed of the first support body 22 and the second support body.
  • the top surfaces of 23 are composed together. That is, the first support body and the second support body are detachably fixed to the back surface of the display main body.
  • the support body 20 does not need to be made of a bendable material, but can be directly made of a rigid material.
  • the support body 20 is a plate having the same thickness as the display main body 10, and the surface supporting the display main body 10 is the support surface 21, and the other surface is formed by cutting to form a rectangular area.
  • the support body 22 and the second support body 23 include two opposite first side edges 221, and the second support body 23 includes two opposite second side edges 231. When the support body 20 is stretched flat, the first side 221 of the first support 22 abuts against the second side 231 of the second support 23 .
  • the support main body 20 When the display main body 10 is bent or folded in the display direction, the support main body 20 is bent along with the display main body 10, the first side 221 of the first support body 22 and the second side of the second support body 23 The side edges 231 are separated and relatively open, and the first side 221 forms an angle with the second side 231 to provide a certain bending space for the display main body 10.
  • the flexible touch display screen of the present application is provided with a support body 20 on the back of the display main body 10, and the flexible touch display screen supports the main body 20 as a plane support when the flattening is used, and the side of the first support body 22 and the second support body 23 Reciprocal to each other, thus supporting the flexible display screen; the user can operate the screen anytime and anywhere, without looking for a flat support screen such as a table, which is convenient for the user to touch on the surface, thereby improving the portability of use; when the display main body 10 When the bending is required to be stowed, the first support body 22 and the side of the second support body 23 are relatively open to facilitate the storage of the flexible touch display screen.
  • the support body 20 further includes a processor and a power source (not shown), the processor and the power source are disposed in the first support body 22, or the processor is disposed on the first support body 22, the power source is disposed in the second support body 23, and the processor and the power source and the display
  • the screen main body 10 is electrically connected.
  • the processor is disposed in the first support body 22, and the power source is disposed in the second support body 23.
  • the first support body 22 is a plurality of and sequentially arranged, and the plurality of first support bodies 22 are respectively provided with a processor, and the second support body 23 is provided with a power source. .
  • Flexible display space is limited, the processor is placed in the support body, and through multiple processors, the flexible display for better performance.
  • the first support body 22 is one, and the second support body 23 is plural and sequentially arranged, and each of the second support bodies 23 is provided with a power source to make the flexible display screen obtain longer through a large number of batteries. Use time.
  • the support body 20 may include a plurality of first support bodies 22 and a plurality of second support bodies 23, and a plurality of first support bodies 22 and A plurality of second support bodies 23 are regularly arranged, and a second support body 23 is disposed between each of the two first supports 22.
  • the two first support bodies 22 and the second support body 23 are provided with a processor, and each of the second support bodies 23 is provided with a power source. Get better performance by collaborating across multiple processors while maintaining a certain amount of power usage time.
  • first support body 22 and the second support body 23 can be electrically connected and physically detachably connected to the back surface of the display main body 10 by means of plugging (for example, the back of the display main body 10 is provided with two sockets, first The support body 22 and the second support body 23 are provided with a plug).
  • plugging for example, the back of the display main body 10 is provided with two sockets, first The support body 22 and the second support body 23 are provided with a plug.
  • the first support 22 having the processor can be removed and the second support 23 having the battery can be mounted.
  • the second support body 23 having the battery can be removed and replaced with the first support 22 having the processor.
  • the support body 20 further includes a positioning component, the positioning component includes a first positioning body 25 and a second positioning body 26 , and the first positioning body 25 is disposed on the first supporting body.
  • the second positioning body 26 is disposed at one end of the second supporting body 23 toward the end of the first supporting body 22, the first positioning 25 and the second The positioning body 26 cooperates to achieve locking between the first support body 22 and the second support body 23.
  • an end of the first support body 22 facing the second support body 23 is a first side 221
  • an end of the second support body 23 facing the first support body 22 is a second side. Side 231.
  • the first positioning body 25 and the second positioning body 26 are both magnetic components, and the two magnetic components are magnetic. Suction.
  • the magnetic element includes any one of a magnetic field generating element (such as a magnet), a magnetic conductive element (such as metallic iron), and a magnetic field changing element (such as an electromagnet).
  • the first positioning body 25 and the second positioning body 26 are preferably electromagnets. When the electromagnet is spread out, the magnetic force is generated when the display screen is spread out. When the display screen is to be folded up, the power is turned off to make the magnetic force disappear or weaken, which is convenient for folding.
  • the first positioning body 25 and the second positioning body 26 are both electromagnets. When the supporting body 20 is flattened, the first side 221 and the second side of the first supporting body 22 are second.
  • the second side 231 of the support body 23 is resisted, and the first positioning body 25 and the second positioning body 26 magnetically attract and fix the first support body 22 and the second support body 23 to ensure that the support body 20 is flattened.
  • the state improves the stability of use of the support body 20.
  • the first support body 22 and the second support body 23 are plural, the two first side edges 221 of the first support body 22 and the two second side edges 231 of the second support body 23 are provided. magnet.
  • the second support body 23 is made of a material that is attracted to the magnet, such as iron. When the first support body 22 is in contact with the second support body 23, it can also be adsorbed and fixed.
  • the magnetic property of the magnetic element is variable, and the magnetic property of at least one of the first positioning body 25 and the second positioning body 26 when the display main body 10 is stowed is weaker than the magnetic property of the display main body 10 when it is unfolded.
  • the second positioning body 26 is a hook 27 disposed at an end of the second supporting body 23 , and the first supporting body 22 is provided with the card.
  • the socket (not shown) through which the hook 27 passes, the first positioning body 25 includes a button 281 attached to the first support body 22, a rotating shaft 282 received in the first supporting body 22, and a spring 283 connected to the button 281.
  • the push rod 284 is rotatably mounted on the rotating shaft 282 and has a buckle 285 at one end thereof.
  • the button 281 compresses the spring 283 to rotate the push rod 284 to lock or unlock the hook 27 and the buckle 285. .
  • a first side edge 221 of the first support body 22 is provided with a socket, and the socket penetrates the inside of the first support body 22.
  • the rotating shaft 282 is fixed in the socket, and the push rod 284 and the buckle 285 are rotatably connected to the rotating shaft 282.
  • the button 281 is fixed on the push rod 284 and passes through the surface of the first supporting body 22 facing away from the supporting surface 21, and the push rod 284 is disposed on the rotating shaft 282.
  • the inside of the first support body 22 is fixed to one end of the button 281, and the buckle 285 is fixed to one end of the push rod 284.
  • the push rod 284 can drive the buckle 285 and the button 281 to rotate about the rotating shaft 282.
  • the buckle 285 and the button 281 are respectively located on opposite sides of the push rod 284.
  • the spring 283 and the buckle 284 are respectively located at opposite ends of the push rod 284.
  • the spring 283 is fixed to the opposite end of the push rod 284.
  • the two ends of the spring 283 are respectively fixed on the inner side wall of the push rod 284 and the first support body 22.
  • the spring 283 will generate a pulling force on the end of the push rod 284, preventing the push rod 284 and the buckle 27 from rotating around the rotating shaft 282. Therefore, the buckle 285 cannot be detached from the hook 27, thereby achieving the purpose of locking.
  • the button 281 When the support body 20 needs to be bent, the button 281 must be pressed first, and the compression spring 283 pushes the push rod 284 to rotate along the rotating shaft 282, thereby driving the buckle 285 to rotate and the hook 27 to unlock, and thus the first support body 22 and the second support. Body 23 is unlocked.
  • the display main body 10 includes two display modules 11
  • the support main body 20 is two and respectively support the two display modules 11 , and the ends of the two support main bodies 20 .
  • a positioning assembly is provided to achieve positioning of the two support bodies 20 after docking.
  • the positioning assembly can be the positioning assembly described in the above embodiments.
  • This structure makes the use of the flexible touch display more flexible, and the user can increase or decrease the number of display modules according to the requirements, thereby obtaining different display effects.
  • the flexible touch display screen does not require frame protection, so that adjacent display modules 11 do not have obvious seams after bonding, and the flexible touch display screen still appears to have a continuous effect, thereby improving the visual experience.

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Theoretical Computer Science (AREA)
  • Human Computer Interaction (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Devices For Indicating Variable Information By Combining Individual Elements (AREA)

Abstract

本发明提供一种柔性触控显示屏,其包括显示屏主体及支撑主体,所述支撑主体的一侧为支撑面,与所述支撑面相反的另一侧设有第一支撑体及排列于所述第一支撑体一侧的第二支撑体,所述显示屏主体平铺于所述支撑面上,所述第一支撑体与所述第二支撑体的彼此相对的侧边相抵持,所述支撑主体随着所述显示屏主体弯曲,所述第一支撑体与第二支撑体彼此相对的侧边相对张开。所述柔性触控显示屏在使用铺平时支撑主体作为平面支撑,使用者可以随时随地操作屏幕,方便用户进行操作。

Description

柔性触控显示屏 技术领域
本发明涉及电子通讯领域,尤其涉及一柔性触控显示屏。
背景技术
手机、掌上电脑、笔记本等电子装置被广泛应用到生活当中,用户一般是通过触控屏幕或者外置键盘来操作所述的电子装置,随着高科技的发展,消费者对电子装置的便携性及多元化性要求越来越高。比如,减小电子装置体积便于携带、设置触控屏提高操作性。触控式柔性触控显示屏可以收缩体积而且携带方便,在未来有广泛应用。由于柔性触控显示屏是柔性结构,本身并不足以支持人手在其表面的触摸力度,因此,现有的柔性触控显示屏在使用时都必须将其放置在硬质的支撑台面上,比如桌面、墙面等等,给使用者带来不便。
发明内容
本发明实施例提供一柔性触控显示屏,可以实现自身对屏幕的支撑。
本发明所述的柔性触控显示屏包括显示屏主体及支撑主体,显示屏主体包括显示面及与显示面相反的背面,支撑主体包括固定于显示屏主体背面的第一支撑体及第二支撑体,第一支撑体与第二支撑体相互独立,当所述显示屏主体展开时,所述第一支撑体与所述第二支撑体的彼此相抵持而支撑显示屏主体,当所述显示屏主体收起时,所述第一支撑体与第二支撑体相互分离。
本申请所述的柔性触控显示屏在显示屏主体背部设置支撑主体,柔性触控显示屏在使用铺平时支撑主体作为平面支撑,对柔性显示屏起到支撑作用;使用者可以随时随地操作屏幕,而不需要寻找桌子等平面支撑屏幕,方便用户在表面进行操作。
附图说明
为了更清楚地说明本发明实施例中的技术方案,下面将对实施例中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本发明的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还 可以根据这些附图获得其他的附图。
图1是本发明提供的柔性触控显示屏的示意图,其中柔性触控显示屏为展开状态。
图2是图1所示的柔性触控显示屏的弯曲的示意图。
图3是本发明另一实施例的柔性触控显示屏的示意图。
图4是图1所示的柔性触控显示屏设有定位组件的示意图。
图5是图1所示的柔性触控显示屏的定位组件的另一实施方式的示意图。
图6是图5所示的VI部分的放大示意图。
图7是图1所示的柔性触控显示屏的又一实施例的示意图。
具体实施方式
下面将结合本发明实施方式中的附图,对本发明实施方式中的技术方案进行清楚、完整地描述。
本发明提供了一柔性触控显示屏,本发明实施例涉及的柔性触控显示屏用于但不限于手机、平板电脑、掌上电脑、个人数字助理(Personal Digital Assistant,PDA)或电子阅读器等,本发明实施例对此不作具体限定。所述显示屏主体及支撑主体,显示屏主体包括显示面及与显示面相反的背面,支撑主体包括固定于显示屏主体背面的第一支撑体及第二支撑体,第一支撑体与第二支撑体相互独立,当所述显示屏主体展开时,所述第一支撑体与所述第二支撑体的彼此相抵持而支撑显示屏主体,当所述显示屏主体收起时,所述第一支撑体与第二支撑体相互分离。具体的以下述实施例进行详细说明。
请参阅图1与图2,本申请所述的柔性触控显示屏包括显示屏主体10及支撑主体20。显示屏主体包括显示面及与显示面相反的背面(图未标),所述支撑主体20为平板状,用以支撑显示屏主体10以使使用者在操作时显示屏可以承受触控的力度。所述支撑主体20的一侧为支撑面21,与所述支撑面21相反的另一侧设有第一支撑体22及排列于所述第一支撑体22一侧的第二支撑体23。所述显示屏主体10平铺并固定于支撑主体20,背面与所述支撑面21贴合,当所述显示屏主体展开时,所述第一支撑体22与所述第二支撑体23的彼此相对的侧边相抵持而支撑显示屏主体。当所述显示屏主体收起时,所述支撑主体20随着所述显示屏主体10弯曲,所述第一支撑体22与第二支撑体 23彼此相对的侧边相对张开而分离。
进一步的,所述第一支撑体22与第二支撑体23的硬度大于显示屏主体的硬度。本实施例中,所述支撑主体20为橡胶、塑料等可弯折的具有一定硬度的材料制成。所述支撑主体20为平板状且一体成型,所述第一支撑体22与第二支撑体23为在所述支撑主体20的下表面向上切割形成。在其它实施方式中,所述支撑主体20包括平板体(图未示),所述支撑面21为所述平板体的一个表面,所述第一支撑体22与第二支撑体23为板体,通过粘贴方式贴于所述平板体的与所述支撑面21相反的表面。此外,分离的第一支撑体22与第二支撑体23还可以直接通过粘帖等方式固定于显示屏主体10的底面,此时所述支撑面21由第一支撑体22及第二支撑体23的顶面共同组成。也就是说第一支撑体及第二支撑体可拆卸地固定于显示屏主体背面。此种情况下支撑主体20就无需采用可弯折材料,而是可以直接采用刚性的材料制造。
具体的,所述支撑主体20为与显示屏主体10尺寸相同的厚度均匀的板体,支撑显示屏主体10的表面为所述支撑面21,另一个表面通过切割形成矩形区域的所述第一支撑体22与第二支撑体23,所述第一支撑体22包括两个相对的第一侧边221,第二支撑体23包括两个相对的第二侧边231。当所述支撑主体20伸展平时,所述第一支撑体22的第一侧边221与第二支撑体23的第二侧边231相抵持。当显示屏主体10向显示方向弯曲或者折叠时,所述支撑主体20随着所述显示屏主体10弯曲,所述第一支撑体22的第一侧边221与第二支撑体23的第二侧边231分离且相对张开,第一侧边221与第二侧边231形成夹角,为显示屏主体10提供一定的弯折空间。
本申请所述的柔性触控显示屏在显示屏主体10背部设置支撑主体20,柔性触控显示屏在使用铺平时支撑主体20作为平面支撑,第一支撑体22与第二支撑体23侧边相互抵靠,从而对柔性显示屏起到支撑作用;使用者可以随时随地操作屏幕,而不需要寻找桌子等平面支撑屏幕,方便用户在表面进行触摸,提高了使用便携性;当显示屏主体10需要弯曲收起时,所述第一支撑体22与第二支撑体23的侧边相对张开,从而方便柔性触控显示屏收纳。
进一步的,所述支撑主体20还包括处理器及电源(图未示),所述处理器及电源设于所述第一支撑体22内,或者所述处理器设于所述第一支撑体22内,所述电源设于第二支撑体23内,并且所述处理器与所述电源与所述显示 屏主体10电连接。本实施例中,所述处理器设于所述第一支撑体22内,所述电源设于第二支撑体23内。
本实施例的其它实施方式中,所述第一支撑体22为多个且依次排列,所述多个第一支撑体22内均设有处理器,所述第二支撑体23内设有电源。柔性显示屏空间有限,将处理器设于支撑主体内,并且通过多个处理器协作,柔性显示屏以获得更好的性能。或者,第一支撑体22为一个,所述第二支撑体23为多个且依次排列,每个所述第二支撑体23内设有电源,以通过大量的电池使柔性显示屏获得更长的使用时间。
如图3,本申请的另一个实施例中,与上述实施例不同的是,支撑主体20可以包括多个第一支撑体22及多个第二支撑体23,多个第一支撑体22及多个第二支撑体23规则排列设置,并且每两个第一支撑22之间设有一个第二支撑体23。图中以两个第一支撑体22及第二支撑体23为例,所述多个第一支撑体22内均设有处理器,每个所述第二支撑体23内设有电源。以通过多个处理器协作获得更好的性能,并同时保证一定电量的使用时间。另外,也可以仅在部分支撑体内设置处理器或电池,另外一部分支撑体保留实心结构,以节省成本。
可以理解地,第一支撑体22与第二支撑体23可通过插接的方式与显示屏主体10的背面实现电连接及物理可拆卸连接(比如显示屏主体10背面设有二插口,第一支撑体22及第二支撑体23设有插头)。当需要获得更长的续航时间时,可将具有处理器的第一支撑体22拆下,装上具有电池的第二支撑体23。同样地,当需要获得更强的处理能力时,可将具有电池的第二支撑体23的拆下,换上具有处理器的第一支撑体22。
请参阅图4,进一步的,所述支撑主体20还包括定位组件,所述定位组件包括第一定位体25及第二定位体26,所述第一定位体25设于所述第一支撑体22内朝向所述第二支撑体23的一端,所述第二定位体26设于所述第二支撑体23朝向所述第一支撑体22的一端,所述第一定位25与及第二定位体26配合以实现所述第一支撑体22与所述第二支撑体23之间的锁持。具体的,所述第一支撑体22内朝向所述第二支撑体23的一端即为第一侧边221,所述第二支撑体23朝向所述第一支撑体22的一端为第二侧边231。本实施例中,所述第一定位体25与所述第二定位体26均为磁性元件,且两个磁性元件磁性 相吸。磁性元件包括磁场发生元件(如磁铁)、磁导性元件(如金属铁)以及磁场变化元件(如电磁铁)其中任意一种。所述第一定位体25与所述第二定位体26优选为电磁铁。为电磁铁时在显示屏铺开时才通电产生磁力,在显示屏要折叠起来时断电使磁力消失或减弱,方便进行折叠。本实施例中,所述第一定位体25与所述第二定位体26均为电磁铁,当所述支撑主体20展平时,所述第一支撑体22的第一侧边221与第二支撑体23第二侧边231抵持,第一定位体25与所述第二定位体26磁性相吸进而固定所述第一支撑体22与第二支撑体23,保证支撑主体20位于展平状态,提高了支撑主体20的使用稳定性。可以理解,当第一支撑体22与第二支撑体23为多个时,第一支撑体22的两个第一侧边221,第二支撑体23的两个第二侧边231均设有磁铁。在其它实施方式中,所述第二支撑体23为与磁铁相吸的材料制成,如铁,在第一支撑体22与第二支撑体23接触时,同样可以吸附固定。可以理解,磁性元件的磁性可变,第一定位体25与第二定位体26至少其中之一在所述显示屏主体10收起时的磁性弱于所述显示屏主体10展开时的磁性。
请参阅图5与图6,在其它实施方式中,所述第二定位体26为设于第二支撑体23端部的卡勾27,所述第一支撑体22上设有供所述卡勾27穿过的插口(图未标),所述第一定位体25包括装于第一支撑体22的按钮281、收容于第一支撑体22内的转轴282、与按钮281连接的弹簧283及推杆284。所述推杆284转动装于转轴282上且一端设有卡扣285,所述按钮281压缩弹簧283带动所述推杆284转动以使所述卡勾27与所述卡扣285卡持或解锁。具体的,所述第一支撑体22的一个第一侧边221上设有插口,插口贯通第一支撑体22内部。转轴282固定于插口内,推杆284及卡扣285旋转连接于转轴282上,按钮281固定于推杆284上且穿过第一支撑体22背向支撑面21的表面,推杆284设于第一支撑体22内部与按钮281一端固定,卡扣285固定于推杆284的一端。推杆284可带动卡扣285及按钮281绕转轴282旋转。卡扣285及按钮281分别位于推杆284的相反的两侧。所述弹簧283及所述卡扣284分别位于所述推杆284的相对两端。弹簧283固定于推杆284的相对另一端。所述弹簧283两端分别固定于推杆284与第一支撑体22内部侧壁上。当所述支撑主体20伸展平时,所述第一支撑体22的第一侧边221与第二支撑体23的第二侧边231相抵持,卡勾27插入所述插口抵推卡扣285,卡扣285带动推杆284 转动并压缩弹簧283直至卡扣285与卡勾27卡持。在卡扣285与卡扣27卡持之后,弹簧283恢复形变。如果不按下按钮281而是直接将第二支撑体23绕第一支撑体22弯折,那么弹簧283将会对推杆284的末端产生拉力,阻止推杆284及卡扣27绕转轴282旋转,使卡扣285无法从卡勾27中脱落,从而达到锁紧的目的。当所述支撑主体20需要弯曲时,必须先按压按钮281,压缩弹簧283推动推杆284沿转轴282转动,进而带动卡扣285转动与卡勾27解锁,进而第一支撑体22与第二支撑体23解锁。
请参阅图7,进一步的,所述显示屏主体10包括两个显示模块11,所述支撑主体20均为两个且分别支撑所述两个显示模块11,所述两个支撑主体20端部设有定位组件,以实现两个支撑主体20对接后的定位。该定位组件可以为上述实施例所述的定位组件。此结构可使柔性触控显示屏的使用更加灵活,用户可根据需求自行增减显示模块的数量,从而获得不同的显示效果。并且,柔性触控显示屏不需要边框保护,因而相邻的显示模块11在接合之后不会出现明显的接缝,柔性触控显示屏看上去仍旧呈现出连续的效果,从而提升视觉体验。
以上所述是本发明的优选实施方式,应当指出,对于本技术领域的普通技术人员来说,在不脱离本发明原理的前提下,还可以做出若干改进和润饰,这些改进和润饰也视为本发明的保护范围。

Claims (15)

  1. 一种柔性触控显示屏,其特征在于,包括显示屏主体及支撑主体,所述显示屏主体包括显示面及与所述显示面相反的背面,所述支撑主体包括固定于所述显示屏主体背面的第一支撑体及第二支撑体,所述第一支撑体与所述第二支撑体相互独立,当所述显示屏主体展开时,所述第一支撑体与所述第二支撑体的彼此相抵持而支撑所述显示屏主体,当所述显示屏主体收起时,所述第一支撑体与第二支撑体相互分离。
  2. 如权利要求1所述的柔性触控显示屏,其特征在于,所述第一支撑体与所述第二支撑体的硬度大于显示屏主体的硬度。
  3. 如权利要求1所述的柔性触控显示屏,其特征在于,所述第一支撑体与所述第二支撑体内分别设有处理器及电源。
  4. 如权利要求1所述的柔性触控显示屏,其特征在于,所述显示屏主体在所述第一支撑体与所述第二支撑体的邻接处弯曲而收起。
  5. 如权利要求1所述的柔性触控显示屏,其特征在于,所述第一支撑体及所述第二支撑体包括相向的侧面,当所述显示屏主体展开时,所述第一支撑体与第二支撑体的侧面相互抵持,当所述显示屏主体收起时,所述第一支撑体与第二支撑体的侧面相互分离。
  6. 如权利要求1至5任一项所述的柔性触控显示屏,其特征在于,所述支撑主体还包括定位组件,所述定位组件包括第一定位体及第二定位体,所述第一定位体设于所述第一支撑体内朝向所述第二支撑体的一端,所述第二定位体设于所述第二支撑体朝向所述第一支撑体的一端,所述第一定位与及第二定位体配合以实现所述第一支撑体与所述第二支撑体之间的锁持。
  7. 如权利要求6所述的柔性触控显示屏,其特征在于,所述第一定位体与所述第二定位体均为磁性元件,当所述显示屏主体展开时,所述第一定位体与第二定位体相吸。
  8. 如权利要求7所述的柔性触控显示屏,其特征在于,所述第一定位体与所述第二定位体至少其中之一的磁性元件的磁性可变,所述第一定位体与第二定位体至少其中之一在所述显示屏主体收起时的磁性弱于所述显示屏展开时的磁性。
  9. 如权利要求6所述的柔性触控显示屏,其特征在于,所述第二定位体包括设于所述第二支撑体端部的卡勾,所述第一支撑体上设有朝向卡勾的卡扣,卡扣与卡勾相互卡扣以实现所述第一支撑体与所述第二支撑体之间的锁持。
  10. 如权利要求9所述的柔性触控显示屏,其特征在于,所述第一定位体还包括固定于所述第一支撑体内的转轴、旋转连接于所述转轴上的推杆、固定于所述推杆上的按钮、及连接所述推杆及所述第一支撑体的弹簧,所述卡扣固定于所述推杆上,当所述显示屏主体收起时,所述按钮压缩所述弹簧带动所述推杆转动以使所述卡扣与所述卡勾解锁。
  11. 如权利要求10所述的柔性触控显示屏,其特征在于,所述按钮及所述卡扣分别位于所述推杆的相反两侧。
  12. 如权利要求10所述的柔性触控显示屏,其特征在于,所述弹簧及所述卡扣分别位于所述推杆的相对两端。
  13. 如权利要求12所述的柔性触控显示屏,其特征在于,所述按钮位于所述弹簧及所述转轴之间且外露于第一支撑体表面。
  14. 如权利要求1至5任一项所述的柔性触控显示屏,其特征在于,所述显示屏主体包括二独立的显示模块,所述每一显示模块包括显示屏主体、支撑主体及定位组件,所述二显示模块通过定位组件对接实现所述显示屏主体的连接。
  15. 如权利要求1至5任一项所述的柔性触控显示屏,其特征在于,所述第一支撑体及第二支撑体可拆卸地固定于所述显示屏主体背面。
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