WO2019061390A1 - 可穿戴设备 - Google Patents

可穿戴设备 Download PDF

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Publication number
WO2019061390A1
WO2019061390A1 PCT/CN2017/104732 CN2017104732W WO2019061390A1 WO 2019061390 A1 WO2019061390 A1 WO 2019061390A1 CN 2017104732 W CN2017104732 W CN 2017104732W WO 2019061390 A1 WO2019061390 A1 WO 2019061390A1
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WO
WIPO (PCT)
Prior art keywords
support body
display screen
wearable device
flexible display
flexible
Prior art date
Application number
PCT/CN2017/104732
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English (en)
French (fr)
Inventor
夏新元
吴伟峰
Original Assignee
深圳市柔宇科技有限公司
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 深圳市柔宇科技有限公司 filed Critical 深圳市柔宇科技有限公司
Priority to CN201780091418.XA priority Critical patent/CN110708978A/zh
Priority to PCT/CN2017/104732 priority patent/WO2019061390A1/zh
Publication of WO2019061390A1 publication Critical patent/WO2019061390A1/zh

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    • AHUMAN NECESSITIES
    • A44HABERDASHERY; JEWELLERY
    • A44CPERSONAL ADORNMENTS, e.g. JEWELLERY; COINS
    • A44C5/00Bracelets; Wrist-watch straps; Fastenings for bracelets or wrist-watch straps

Definitions

  • the present invention relates to the field of wearable electronic devices, and in particular, to a wearable device.
  • wearable devices such as wristbands
  • mobile phone functions as mobile terminals.
  • the demand for the user experience is relatively increased.
  • the conventional wristband screen is small, and the display effect cannot match the multimedia function and satisfy the user experience.
  • Embodiments of the present invention provide a wearable device having a folding screen.
  • the wearable device comprises a casing, a flexible wristband connected to the casing, a flexible display screen and a folding portion, the folding portion comprising a support body and an elastic bending body connected to the support body, the support The body and the elastic bending body form a supporting surface, the flexible display screen is laminated on the supporting surface, and the supporting body is partially fixed on the outer casing, and the elasticity is pushed against the folding of the flexible display screen
  • the bent body is elastically deformed and bent, and another part of the support body is folded by the elastic bending body and magnetically fixed to a part of the support body provided on the outer casing, and the visible portion is the flexible display The display area of the screen.
  • the flexible display screen of the wearable device according to the embodiment of the invention can be folded in multiple layers by the folding portion, and the folded portion is supported and folded by the support body formed by the magnet and the elastic bending body, thereby realizing large-screen display and improving the wearable device. user experience.
  • FIG. 1 is a schematic structural view of a wearable device provided by the present invention.
  • FIG. 2 is an intent view of the screen state of the wearable device shown in FIG. 1.
  • FIG. 2 is an intent view of the screen state of the wearable device shown in FIG. 1.
  • FIG. 3 is an exploded perspective view of the wearable device screen shown in FIG. 2.
  • FIG. 4 is an exploded perspective view of the folded portion of the wearable device screen shown in FIG. 3.
  • an embodiment of the present invention provides a wearable device 100 including a housing 10 , a flexible wrist strap 20 coupled to the housing 10 , a flexible display screen 30 , and a folding portion 40 .
  • the folding portion 40 includes a support body A and an elastic bending body (not shown) connected to the support body A.
  • the support body and the elastic bending body form a supporting surface, and the flexible display screen 30 is laminated on the support body.
  • the supporting surface 41 is bent as the folding of the flexible display screen is elastically deformed by the folding of the elastic bending body, and another part of the supporting body is folded by the elastic bending body and is disposed in the A part of the support body on the outer casing is fixed by magnetic attraction, and the visible portion of the flexible display screen 30 which is located outside is the display area B of the flexible display screen, that is, the display area B serves as a display screen of the wearable device.
  • the wearable device 100 is a smart watch. In addition to the function of the watch itself, it can be used as a mobile phone and an audio and video player.
  • the flexible display 30 is expanded to facilitate a larger user.
  • the screen displays the video; at the same time, the flexible display is a touch-sensitive display, which is convenient for the user to perform the touch operation.
  • the support body A is a plate body structure and is divided into at least two portions, and each two portions are connected by an elastic bending body.
  • the support body A is a magnet, that is, a plate-shaped magnet, for supporting a flexible display screen, and the two portions of the laminate are attracted and positioned while being folded.
  • the support A is provided with a magnet and is positioned by a magnet after folding, for example, a magnet provided at the edge of each part of the support.
  • the support body A and the outer periphery of the flexible display screen 30 are provided with a flexible edging to protect the support body A and the flexible display screen 30 and ensure the appearance integrity of the flexible display screen.
  • the first display area presented by the flexible display screen 30 in an unfolded state is converted into a second display area of the flexible display screen by folding, and the second display area is a display area B located outside the folded flexible display screen .
  • the first display area presented by the expanded state is the entire display area of the flexible display screen 30.
  • the first display area of the expanded state presentation may be a partial display area as needed.
  • the second display area is for the screen after the flexible display screen is folded.
  • the hardness of the elastic bending body is smaller than the hardness of the flexible display screen 30.
  • an external force is applied to bend the flexible display screen, and the elastic bending body is deformed and bent by the external force given by the support body.
  • the bending region of the flexible display screen 30 is offset.
  • the force bending force pushes the elastic bending body to bend along with the bending trajectory of the flexible display screen, so that the flexible display screen controls the deformation direction, the bending strength and the angle of the elastic bending body, and does not clamp and control the display screen.
  • the state of the bent region, and the elastic bending body itself is an elastic material, which does not generate a tensile force on the flexible display screen when the bending is deformed, thereby avoiding damage to the flexible display screen.
  • the elastic bending body is made of rubber, and the support body A is integrally formed with the elastic bending body.
  • the support body and the elastic bending body may be fixedly connected by adhesion, hot melt, or the like.
  • another part of the support body A is unfolded in a direction perpendicular to the winding direction of the flexible wristband 20. As shown in FIG. 2, the winding direction is around the wrist of the user.
  • the flexible display screen is provided with a controller and a sensor connected to the controller, the sensor sensing the folded state of the flexible display screen, and controlling the area of the display screen of the flexible display screen by the controller .
  • the flexible display screen 30 is a full-screen display screen when fully deployed, and is displayed separately as a display area of the display screen of the wearable device when folded, and the screen at this time is still a complete screen; It is only used as the display screen of the dial when the playback function is not used.
  • the wearable device is specifically described in the specific embodiment.
  • the flexible display screen 30 has a three-fold structure, which can be folded into three layers and displayed on the outer side. The area is not the back of the flexible display.
  • the support body A includes a first support body 42, a second support body 43, and a third support body 44.
  • the elastic bending body includes a first elastic bending body 45 and a second elastic bending body 46.
  • the first elastic bending body 45 is connected between the first supporting body 42 and the second supporting body 43 , and the second supporting body 43 and the third supporting body 44 are connected with the The second elastic bending body 46, the first support body 42, the second support body 43, and the third support body 44 are laminated to each other when the flexible display screen 30 is folded.
  • the first support body 42, the second support body 43, and the third support body 44 are all magnets, or the first support body 42 or the second support body 43 or the third branch
  • the support 44 is a magnet.
  • the first support body 42, the second support body 43, and the third support body 44 are both plate bodies and are magnets.
  • the first support body 42 includes a first surface 421 and the second support body 43 includes a second surface 431.
  • the third support body 44 includes a third surface 441, and the first surface 421, the second surface 431, the third surface 441, and the planar surface c of the first elastic bending body 45 and the second elastic bending body 46 are common.
  • the support surface 41 is formed.
  • the flexible display screen 30 is laminated on the support surface 41, and the back surface of the display screen is fixedly connected to the support surface 41.
  • the first support body 42 , the first elastic bending body 45 , the second support body 43 , the second elastic bending body 46 and the third support body 44 are sequentially connected and integrally formed to increase the entire bending part. Stability and processing accuracy.
  • the first elastic bending body 45 and the second elastic bending body 46 may be fixedly connected to the first support body 42, the second support body 43, and the third support body 44 by means of pasting, hot melting, or the like. .
  • the flexible display screen 30 is folded in three parts, the first support body 42 and the second support body 43 are folded in half, the third support body 44 and the second support body 43 are folded in half, and the second surface 431 is oriented.
  • the first surface 421 and the third surface 441 face away from the first surface 421.
  • magnets may be disposed at the edges of the first support body 42, the second support body 43, and the third support body 44, thereby realizing The positioning of the first support body 42, the second support body 43, and the third support body 44.
  • the flexible display screen 30 can also be stacked in multiple sections.
  • the hardness of the first elastic bending body 45 and the second elastic bending body 46 is smaller than the hardness of the flexible display screen 30.
  • the first elastic bending body 45 and the second elastic bending body 46 each include a bending section a and a connecting section b connected to opposite sides of the bending section a, and the thickness of the bending section a is smaller than
  • the connecting section of the first elastic bending body 45 is connected to the side of the first supporting body 42 and the side of the second supporting body 43 respectively; the connection of the second elastic bending body 46
  • the segment b connects the other side of the second support body 43 to the side of the third support body 44.
  • the thickness of the bending section a is smaller than the thickness of the connecting section b, one surface c of the first elastic bending body 45 and the second elastic bending body 46 remains flat, that is, the bending section a One surface is concave.
  • the first elastic bending body 45 is bent after the bending external force of the first support body 42 and the second support body 43 and the abutting force of the flexible display screen, and the first The bending section a of the elastic bending body 45 is relatively thin, is more easily deformed and folded, and can fold a certain space after the bending area of the flexible display screen 30.
  • the second elastically bent body 46 is in the second The external force of bending of the support body 43 and the third support body 44 and the abutting force of the flexible display screen are bent and folded.
  • the thickness of the bending section a and the thickness of the connecting section b can be the same. Since the elastic bending body itself is an elastic material, no tensile force is generated on the flexible display screen during bending deformation, and the strain is prevented. Or break the flexible display.
  • the folding portion 40 further includes a flexible carrier plate (not shown), the flexible carrier plate is located at a surface opposite to the support surface 41 to support the support body and the elastic bending body; the flexibility in this embodiment
  • the carrier plate supports the first support body 42, the second support body 43, and the third support body 44, and the first elastic bending body 45 and the second elastic bending body 46 to increase the supporting strength of the entire folding portion 40.
  • the outer casing 10 includes a mounting groove 11 , and the first supporting body 42 is fixed in the mounting groove 11 ; the second supporting body 43 and the third supporting body 44 are stacked on the first supporting body 42 . on.
  • the outer casing 10 includes a top case 101 and a bottom case 102.
  • the mounting groove 11 is located on the top case 101.
  • the flexible wristband 20 includes a first wristband shell 201 and a second wristband shell 202, and the first wristband shell 201 and the second wristband shell 202 are fastened to form a receiving cavity for receiving the wearable device 100.
  • Flexible battery 70 is provided to form a receiving cavity for receiving the wearable device 100 .
  • the top case 101 is connected to one end of the first wristband case 201, and the bottom case 102 is connected to one end of the second wristband case 202.
  • the top case 101 and the bottom case 102 are fastened to form a receiving cavity.
  • the outer casing 10 is made of metal or hard plastic, and the flexible wristband 20 and the outer casing 10 may be integrally molded in a mold, or may be connected by a hinge.
  • the flexible display screen 30 is folded into three layers, and the second support body 43 and the third support body 44 are stacked on the first support body 42 for the flexible display screen 30.
  • the display area B is used as a dial of the watch, and at the same time, the touch operation function can be realized, and of course, audio and video can be played, when the flexible display screen 30 is folded.
  • the sensor senses the folded state to transmit information to the controller, and the controller controls the area display of the flexible display screen, wherein the display screen is complete.
  • the flexible display screen 30 When the user needs a large screen, the flexible display screen 30 is simply opened to expand the first support body 42, the second support body 43, and the third support body 44, and the flexible display screen 30 is fully deployed for display, that is, the present embodiment.
  • the controller controls all display areas of the flexible display to display a picture. This is convenient for the user to carry and enhance the user's viewing experience.
  • the flexible display screen 30 of the wearable device according to the embodiment of the present invention can be folded in multiple layers by the folding portion 40.
  • the folded portion 40 is supported and folded by the support body formed by the magnet and the elastic bending body, and the structure is simple and convenient to use, and is realized.
  • the large screen display improves the performance of the flexible display.

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  • Devices For Indicating Variable Information By Combining Individual Elements (AREA)

Abstract

可穿戴设备(100),包括外壳(10)、与外壳(10)连接的柔性腕带(20)、柔性显示屏(30)及折叠部(40),折叠部(40)包括支撑体(A)和连接于支撑体(A)上的弹性弯折体,支撑体(A)及弹性弯折体形成一支撑面(41),柔性显示屏(30)层叠于支撑面(41)上,支撑体(A)一部分固定于外壳(10)上,随着柔性显示屏(30)的折叠抵推弹性弯折体弹性变形而弯折,支撑体(A)的另一部分通过弹性弯折体折叠并且与设置于外壳(10)上的部分支撑体(A)通过磁性相吸固定,可视部分为柔性显示屏(30)的显示区域。

Description

可穿戴设备 技术领域
本发明涉及穿戴式电子设备技术领域,尤其涉及一种可穿戴设备。
背景技术
随着高科技发展,可穿戴设备,比如手环不仅仅实现简单的显示、监控信息、还可以进行与手机功能等整合作为移动终端进行使用。随着多媒体功能的提高,用户使用体验的需求也相对提高,现有技术中常规的手环屏幕较小,其显示效果不能配合多媒体功能及满足用户体验。
发明内容
本发明实施例提供一种具有折叠屏幕的可穿戴设备。
本发明提供的可穿戴设备,包括外壳、与所述外壳连接的柔性腕带、柔性显示屏及折叠部,所述折叠部包括支撑体和连接于支撑体上的弹性弯折体,所述支撑体及弹性弯折体形成一支撑面,所述柔性显示屏层叠于所述支撑面上,所述支撑体一部分固定于所述外壳上,随着所述柔性显示屏的折叠抵推所述弹性弯折体弹性变形而弯折,所述支撑体的另一部分通过所述弹性弯折体折叠并且与设置于所述外壳上的部分支撑体通过磁性相吸固定,可视部分为所述柔性显示屏的显示区域。
本发明实施例所述的可穿戴设备的柔性显示屏通过折叠部可以多层折叠,折叠部通过磁铁形成的支撑体与弹性弯折体实现支撑以及折叠,实现大屏幕显示,提高可穿戴设备的用户体验。
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是本发明提供的可穿戴设备的结构示意图。
图2是图1所示的可穿戴设备屏幕展开状态意图。
图3是图2所示的可穿戴设备屏的分解示意图。
图4是图3所示的可穿戴设备屏的折叠部的分解示意图。
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。
请参阅图1与图2,本发明实施例提供一种可穿戴设备100,其包括外壳10、与所述外壳10连接的柔性腕带20、柔性显示屏30及折叠部40。所述折叠部40包括支撑体A和连接于支撑体A上的弹性弯折体(图为标),所述支撑体及弹性弯折体形成一支撑面,所述柔性显示屏30层叠于所述支撑面41上,随着所述柔性显示屏的折叠抵推所述弹性弯折体弹性变形而弯折,所述支撑体的另一部分通过所述弹性弯折体折叠并且与设置于所述外壳上的部分支撑体通过磁性相吸固定,所述柔性显示屏30折叠后位于外侧的可视部分为所述柔性显示屏的显示区域B,即显示区域B作为可穿戴设备的显示屏。本实施例中,所述可穿戴设备100为智能手表,在具有手表本身的功能外,可以作为移动电话以及音频和视频播放器使用,所述柔性显示屏30展开后便于使用者有更大的屏幕观看视频;同时所述柔性显示为触控式显示屏,便于使用者进行触控操作。
本实施例中,所述支撑体A为板体结构且分为至少两个部分,每两部分之间通过弹性弯折体连接。所述支撑体A为磁铁,也就是板状的磁铁,用于支撑柔性显示屏,在折叠时层叠的两部分会相互吸引而定位。或者所述支撑体A上设有磁铁且在折叠后通过磁铁定位,比如,设于每部分支撑体边缘的磁铁。所述支撑体A与柔性显示屏30外周缘设有柔性包边,以保护支撑体A与柔性显示屏30并保证柔性显示屏外观整体性。所述柔性显示屏30由展开状态呈现的第一显示区域通过折叠转换为所述柔性显示屏的第二显示区域,所述第二显示区域为所述柔性显示屏折叠后位于外侧的显示区域B。本实施例中,由展开状态呈现的第一显示区域即为所述柔性显示屏30的全部显示区域。当然,也 可以根据需要,展开状态呈现的第一显示区域为部分显示区域。第二显示区域用于柔性显示屏折叠后的屏幕。
进一步的,所述弹性弯折体的硬度小于所述柔性显示屏30的硬度。在所述柔性显示屏需要弯折时,施加外力来弯折柔性显示屏,弹性弯折体受到支撑体给的外力发生变形弯折,此过程中所述柔性显示屏30的弯折区域存在抵持力抵推所述弹性弯折体随着柔性显示屏的弯折轨迹弯折,这样通过柔性显示屏控制弹性弯折体的变形方向、弯折力度以及角度,不会夹持和控制显示屏的弯折区域状态,而且所述弹性弯折体自身是弹性材料,在弯曲变形时不会对柔性显示屏产生拉力,避免折损柔性显示屏。
本实施例中,所述弹性弯折体为橡胶制成,所述支撑体A与所述弹性弯折体一体成型。当然,也可以所述支撑体与所述弹性弯折体通过粘贴、热熔等方式固定连接。进一步的,所述支撑体A的另一部分沿着垂直于柔性腕带20缠绕方向展开,如图2,缠绕方向就是围绕使用者的手腕一周,当使用者将手表戴在手腕上,当展开柔性形显示屏30进行观看和操作时,柔性显示屏30的长度展开方向是沿着手臂延伸的,柔性形显示屏30远离外壳的部分可以借助手臂来做支撑,这样更便于使用者的使用和对柔性显示屏30触控操作。
进一步的,所述柔性显示屏设有控制器和连接控制器的感测器,所述感测器感测所述柔性显示屏的折叠状态,并通过控制器控制柔性显示屏的显示画面的区域。本实施例中,所述柔性显示屏30在完全展开时是全屏显示画面,在折叠时作为可穿戴设备的显示屏的显示区域单独进行显示画面和操作,这个时候的画面依然是完整的画面;在不使用播放功能的时候只作为表盘的显示屏幕。
请参阅图3与图4,以具体实施方式进行具体说明所述的可穿戴设备,本实施例中,所述柔性显示屏30为三折式结构,可以折成3层并且位于外侧的是显示区域而非柔性显示屏的背面。所述支撑体A包括第一支撑体42、第二支撑体43和第三支撑体44。所述弹性弯折体包括第一弹性弯折体45和第二弹性弯折体46。所述第一支撑体42与所述第二支撑体43之间连接有所述第一弹性弯折体45,所述第二支撑体43与所述第三支撑体44之间连接有所述第二弹性弯折体46,所述第一支撑体42、第二支撑体43和第三支撑体44在柔性显示屏30折叠时相互层叠。所述第一支撑体42、第二支撑体43和第三支撑体44均为磁铁,或者所述第一支撑体42或者第二支撑体43或者第三支 撑体44为磁铁。
图4所示,具体的,所述第一支撑体42、第二支撑体43和第三支撑体44均为板体,且为磁铁。所述第一支撑体42包括第一表面421,第二支撑体43包括第二表面431。第三支撑体44包括第三表面441,所述第一表面421、第二表面431、第三表面441以及第一弹性弯折体45和第二弹性弯折体46的为平面的表面c共同形成所述支撑面41。所述柔性显示屏30层叠于所述支撑面41上,且显示屏的背面与支撑面41连接固定。所述第一支撑体42、第一弹性弯折体45、第二支撑体43、第二弹性弯折体46与所述第三支撑体44之间依次连接并一体成型,增加整个折弯部的稳定性以及加工精度。当然,也可以所述第一弹性弯折体45和第二弹性弯折体46与所述第一支撑体42、第二支撑体43和第三支撑体44通过粘贴、热熔等方式固定连接。
本实施例中,所述柔性显示屏30分三部分进行折叠,所述第一支撑体42与第二支撑体43对折,第三支撑体44与第二支撑体43对折,第二表面431朝向所述第一表面421,第三表面441背向所述第一表面421。当所述第一支撑体42、第二支撑体43和第三支撑体44并非磁铁材料时可以在第一支撑体42、第二支撑体43和第三支撑体44边缘设有磁铁,进而实现所述第一支撑体42、第二支撑体43和第三支撑体44的定位。在其它实施方式中,所述柔性显示屏30也可以多部分层叠折叠。
进一步的,所述第一弹性弯折体45和第二弹性弯折体46的硬度小于所述柔性显示屏30的硬度。所述第一弹性弯折体45和第二弹性弯折体46均包括弯折段a和连接于所述弯折段a相对两侧的连接段b,所述弯折段a的厚度小于所述连接段b的厚度;所述第一弹性弯折体45的连接段分别连接所述第一支撑体42的侧面与第二支撑体43的侧面;所述第二弹性弯折体46的连接段b连接所述第二支撑体43的另一个侧面与第三支撑体44的侧面。虽然弯折段a的厚度小于所述连接段b的厚度,但是第一弹性弯折体45和第二弹性弯折体46的一个表面c依然保持为平面,也就是所述弯折段a的一个表面是内凹的。当柔性显示屏受外力弯折时,所述第一弹性弯折体45在第一支撑体42与第二支撑体43的弯曲外力以及柔性显示屏的抵推力下进行弯曲后折叠,而第一弹性弯折体45的弯折段a比较薄,更容易变形折叠,而且可以给所述柔性显示屏30的弯折区域折叠后一定的空间。同样,第二弹性弯折体46在第二 支撑体43与第三支撑体44的弯曲外力以及柔性显示屏的抵推力下进行弯曲后折叠。当然,所述弯折段a的厚度与所述连接段b的厚度是可以相同,由于所述弹性弯折体自身是弹性材料,在弯曲变形时不会对柔性显示屏产生拉力,避免拉伤或者折损柔性显示屏。
所述折叠部40还包括柔性承载板(图未示),所述柔性承载板位于与所述支撑面41相反的表面以支撑所述支撑体和所述弹性弯折体;本实施例中柔性承载板支撑所述第一支撑体42、第二支撑体43和第三支撑体44以及第一弹性弯折体45和第二弹性弯折体46,以增加整个折叠部40的支撑强度。
请参阅图3,所述外壳10包括安装槽11,所述第一支撑体42固定于所述安装槽11内;所述第二支撑体43与第三支撑体44层叠于第一支撑体42上。外壳10包括顶壳101和底壳102。所述安装槽11位于顶壳101上。所述柔性腕带20包括第一腕带壳201和第二腕带壳202,所述第一腕带壳201和第二腕带壳202扣合形成容纳腔,用于收容可穿戴设备100的柔性电池70。本实施例中,所述顶壳101连接于所述第一腕带壳201的一端,底壳102连接第二腕带壳202的一端,顶壳101和底壳102扣合形成收容腔,用于可穿戴设备100的电路板60。本实施例中,所述外壳10为金属或者硬质塑料,所述柔性腕带20与所述外壳10可以模内一体成型,也可以是通过铰链连接。
所述可穿戴设备100作为手表使用过程中,柔性显示屏30是成三层折叠状,所述第二支撑体43与第三支撑体44层叠于第一支撑体42上,柔性显示屏30的大概三分之一的屏幕露于外侧,即所述显示区域B,作为手表的表盘使用,同时可以实现触控操作功能,当然也可以播放音频和视频,这是在柔性显示屏30发生折叠时,感测器感测到折叠的状态将信息传递给控制器,控制器控制柔性显示屏的区域显示,其中,显示画面时完整的。当使用者需要大屏幕是,只需拉开柔性显示屏30使第一支撑体42、第二支撑体43和第三支撑体44展开,柔性显示屏30完全展开全部用来显示,即本实施例中所述的第一显示区域,当感测器感测到展开的状态将信息传递给控制器,控制器控制柔性显示屏的所有显示区域显示画面。如此方便使用者携带并提高用户的观看体验。
本发明实施例所述的可穿戴设备的柔性显示屏30通过折叠部40可以多层折叠,折叠部40通过磁铁形成的支撑体与弹性弯折体实现支撑以及折叠,结构简单便于使用,并且实现大屏幕显示,提高柔性显示屏的使用性能。
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 (14)

  1. 一种可穿戴设备,其特征在于,所述可穿戴设备包括外壳、与所述外壳连接的柔性腕带、柔性显示屏及折叠部,所述折叠部包括支撑体和连接于支撑体上的弹性弯折体,所述支撑体及弹性弯折体形成一支撑面,所述柔性显示屏层叠于所述支撑面上,所述支撑体一部分设置于所述外壳上,随着所述柔性显示屏的折叠抵推所述弹性弯折体弹性变形而弯折,所述支撑体的另一部分通过所述弹性弯折体折叠并且与设置于所述外壳上的部分支撑体通过磁性相吸固定,可视部分为所述柔性显示屏的显示区域。
  2. 如权利要求1所述可穿戴设备,其特征在于,所述柔性显示屏的由展开状态呈现的第一显示区域通过折叠转换为所述柔性显示屏的第二显示区域,所述第二显示区域为所述柔性显示屏折叠后位于外侧的显示区域。
  3. 如权利要求2所述可穿戴设备,其特征在于,所述支撑体为磁铁,或者所述支撑体上设有磁铁且在折叠后通过磁铁定位。
  4. 如权利要求1所述可穿戴设备,其特征在于,所述弹性弯折体的硬度小于所述柔性显示屏的硬度。
  5. 如权利要求2所述可穿戴设备,其特征在于,所述支撑体与所述弹性弯折体一体成型。
  6. 如权利要求1所述可穿戴设备,其特征在于,所述支撑体的另一部分沿着垂直于柔性腕带缠绕方向展开。
  7. 如权利要求1-6任一项所述可穿戴设备,其特征在于,所述支撑体包括第一支撑体、第二支撑体和第三支撑体,所述弹性弯折体包括第一弹性弯折体和第二弹性弯折体,所述第一支撑体与所述第二支撑体之间连接有所述第一弹性弯折体,所述第二支撑体与所述第三支撑体之间连接有所述第二弹性弯折体,所述第一支撑体、第二支撑体和第三支撑体在柔性显示屏折叠时彼此层叠。
  8. 如权利要求7所述可穿戴设备,其特征在于,所述第一支撑体、第二支撑体和第三支撑体均为磁铁,或者所述第一支撑体或者第二支撑体或者第三支撑体为磁铁。
  9. 如权利要求8所述可穿戴设备,其特征在于,所述第一弹性弯折体和第二弹性弯折体均包括弯折段和连接于所述弯折段相对两侧的连接段,所述弯折段的厚度小于所述连接段的厚度;所述第一弹性弯折体的连接段和第二弹性 弯折体的连接段连接所述支撑体。
  10. 如权利要求7所述可穿戴设备,其特征在于,所述外壳包括安装槽及收容腔,所述第一支撑体固定于所述安装槽内,所述收容腔内收容可穿戴设备的电路板。
  11. 如权利要求1-7任一项所述可穿戴设备,其特征在于,所述柔性腕带包括第一腕带壳和第二腕带壳,所述第一腕带壳和第二腕带壳扣合形成容纳腔,用于收容可穿戴设备的柔性电池。
  12. 如权利要求1-7任一项所述可穿戴设备,其特征在于,所述柔性显示屏在完全展开时全屏显示画面,在折叠时作为所述可穿戴设备的显示屏的显示区域进行显示画面和操作。
  13. 如权利要求12所述可穿戴设备,其特征在于,所述柔性显示屏设有控制器和感测器,所述感测器感测所述柔性显示屏的折叠状态,并通过控制器控制柔性显示屏的显示画面的区域。
  14. 如权利要求1所述可穿戴设备,其特征在于,所述柔性显示屏为触控式显示屏。
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