WO2020199985A1 - 移动终端 - Google Patents

移动终端 Download PDF

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Publication number
WO2020199985A1
WO2020199985A1 PCT/CN2020/080913 CN2020080913W WO2020199985A1 WO 2020199985 A1 WO2020199985 A1 WO 2020199985A1 CN 2020080913 W CN2020080913 W CN 2020080913W WO 2020199985 A1 WO2020199985 A1 WO 2020199985A1
Authority
WO
WIPO (PCT)
Prior art keywords
terminal body
state
housing
mobile terminal
flexible screen
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/CN2020/080913
Other languages
English (en)
French (fr)
Inventor
林骥龙
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.)
Vivo Mobile Communication Co Ltd
Original Assignee
Vivo Mobile Communication 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.)
Filing date
Publication date
Application filed by Vivo Mobile Communication Co Ltd filed Critical Vivo Mobile Communication Co Ltd
Publication of WO2020199985A1 publication Critical patent/WO2020199985A1/zh
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/02Constructional features of telephone sets
    • H04M1/0202Portable telephone sets, e.g. cordless phones, mobile phones or bar type handsets
    • H04M1/0206Portable telephones comprising a plurality of mechanically joined movable body parts, e.g. hinged housings
    • H04M1/0208Portable telephones comprising a plurality of mechanically joined movable body parts, e.g. hinged housings characterized by the relative motions of the body parts
    • H04M1/0214Foldable telephones, i.e. with body parts pivoting to an open position around an axis parallel to the plane they define in closed position
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/02Constructional features of telephone sets
    • H04M1/0202Portable telephone sets, e.g. cordless phones, mobile phones or bar type handsets
    • H04M1/026Details of the structure or mounting of specific components
    • H04M1/0266Details of the structure or mounting of specific components for a display module assembly
    • H04M1/0268Details of the structure or mounting of specific components for a display module assembly including a flexible display panel

Definitions

  • the present disclosure relates to the field of communication technology, and in particular to a mobile terminal.
  • the embodiments of the present disclosure provide a mobile terminal to solve the problem that a mobile terminal with a foldable flexible screen in the related art is prone to wrinkles of the flexible screen when the folding part of the flexible screen is in an unfolded state.
  • the embodiments of the present disclosure provide a mobile terminal, including:
  • the first terminal body and the second terminal body are connected to each other.
  • a flexible screen covering the surfaces of the first terminal body and the second terminal body
  • a telescopic structure the first terminal body is connected to the second terminal body through the telescopic structure;
  • the telescopic structure when the angle between the first terminal body and the second terminal body is the first angle, the telescopic structure is in the first state, and the length of the telescopic structure is the first length; When the angle between the first terminal body and the second terminal body is the second angle, the telescopic structure is in the second state, and the length of the telescopic structure is the second length.
  • the first terminal body is connected to the second terminal body through a telescopic structure, and the telescopic structure has a first state with a first length and a second state with a second length.
  • the angle between the second terminal body is the first angle.
  • the telescopic structure may be at the first length of the smaller length.
  • the angle between the first terminal body and the second terminal body is the second angle, such as:
  • the terminal body and the second terminal body are laid flat, that is, the flexible screen is in the unfolded state, and the telescopic structure is in the second state of the longer second length, which can increase the relative distance between the first terminal body and the second terminal body when unfolded Therefore, the extension length of the first terminal body and the second terminal body when unfolded is extended, so as to avoid wrinkles in the folded part when the flexible screen is in the unfolded state, and ensure the flat unfolding of the flexible screen, thereby helping to improve the display effect of the display screen.
  • Figure 1 shows a schematic diagram of a mobile terminal with a foldable flexible screen in a folded state
  • Figure 2 shows a schematic diagram of a mobile terminal with a foldable flexible screen in an unfolded state
  • FIG. 3 shows a schematic diagram of a mobile terminal in a folded state according to an embodiment of the present disclosure
  • FIG. 4 shows an exploded schematic diagram of a mobile terminal according to an embodiment of the present disclosure
  • Figure 5 shows an exploded schematic diagram of the telescopic structure of an embodiment of the present disclosure
  • Figure 6 shows a cross-sectional view of the telescopic structure of the embodiment of the present disclosure in a first state
  • FIG. 7 shows a schematic diagram of a mobile terminal in an unfolded state according to an embodiment of the present disclosure
  • Fig. 8 shows a cross-sectional view of the telescopic structure of the embodiment of the present disclosure in a second state.
  • the first ball head structure
  • a mobile terminal with a foldable flexible screen is in a folded state.
  • the mobile terminal includes a first terminal body 11 and a second terminal body 12, and the flexible screen 13 covers the first terminal body 11 and the second terminal body 12.
  • the first terminal body 11 and the second terminal body 12 are connected by a shaft 14 so that the first terminal body 11 is rotatable relative to the second terminal body 12.
  • such a mobile terminal that directly connects the first terminal body 11 and the second terminal body 12 through the shaft 14 is in the unfolded state as shown in FIG. 2, that is, when the first terminal body 11 and the second terminal body 12 are flat, because The rotating stroke is greater than the linear stroke, and a wrinkle 15 is formed at the rotating shaft 14, which affects the display effect of the flexible screen.
  • an embodiment of the present disclosure provides a mobile terminal, which includes a first terminal body 11, a second terminal body 12, a flexible screen, and a telescopic structure 2.
  • the flexible screen covers the surfaces of the first terminal body 11 and the second terminal body 12; the first terminal body 11 is connected to the second terminal body 12 through the telescopic structure 2, and Through the telescopic structure 2, the first terminal body 11 is rotatable relative to the second terminal body 12.
  • the telescopic structure 2 includes a first state in which both ends of the first terminal body 11 and the second terminal body 12 have a first length, and a connection between the first terminal body 11 and the second terminal body. Both ends of the terminal body 12 have a second state with a second length.
  • the telescopic structure 2 In the case where the angle between the first terminal body 11 and the second terminal body 12 is the first angle, the telescopic structure 2 is in the first state, and the length of the telescopic structure 2 is the first length; When the angle between the first terminal body 11 and the second terminal body 12 is the second angle, the telescopic structure 2 is in the second state, and the length of the telescopic structure 2 is the second length.
  • first terminal body 11 and the second terminal body 12 may be connected by at least one telescopic structure 2.
  • first terminal body 11 and the second terminal body 12 may be connected by two telescopic structures 2.
  • a plurality of telescopic structures 2 may also be provided between the first terminal body 11 and the second terminal body 12.
  • the specific number of the telescopic structures 2 may also be based on the number of the first terminal body 11 and the second terminal body 12 connected. The size of the side is determined.
  • the first terminal body 11 and the second terminal body 12 are connected by a telescopic structure 2, and the first terminal body 11 is rotatable relative to the second terminal body 12 through the telescopic structure 2, so as to cover the first terminal body.
  • the flexible screens on the terminal body 11 and the second terminal body 12 have a first bending angle state, such as a folded state and a second bending angle state, such as an unfolded state.
  • the telescopic structure 2 has a first state with a first length and a second state with a second length.
  • the angle between the first terminal body 11 and the second terminal body 12 is the first angle, such as the first terminal body 11 and the second terminal body 12 are stacked together (as shown in Figure 3), the flexible screen is in the folded state, and the telescopic structure 2 is in the first state of the first length with the smaller length, ensuring that when the mobile terminal is in the folded state, the first terminal The tightness of the fit between the body 11 and the second terminal body 12;
  • the angle between the first terminal body 11 and the second terminal body 12 is the second angle.
  • the flexible screen is in an unfolded state.
  • the telescopic structure 2 is in the second state with the longer second length, which can increase the relative distance between the first terminal body 11 and the second terminal body 12, thereby extending the time when the first terminal body 11 and the second terminal body 12 are unfolded.
  • the telescopic structure 2 includes:
  • the second connecting member 22 the first end of the second connecting member 22 is rotatably connected with the second terminal body 12, and the second end of the second connecting member 22 is provided with a second locking fitting 222;
  • the first connecting member 21 and the second connecting member 22 are matedly connected.
  • first connecting member 21 when the first locking fitting 212 and the second locking fitting 222 are in an alignment state, the first connecting member 21 is fixed relative to the second connecting member 22, and the telescopic structure 2 In the second state; when the first locking fitting 212 and the second locking fitting 222 are out of alignment, the first connecting member 21 and the second connecting member 22 can be opposite Moving, when the first connecting member 21 and the second connecting member 22 are relatively movable to a preset position, the telescopic structure 2 is in the first state.
  • the first connecting member 21 is fixed relative to the second connecting member 22 ,
  • the telescopic structure 2 is maintained in the second state;
  • the first locking fitting 212 and the second locking fitting 222 are in a dislocated state (as shown in FIG. 6)
  • the first connection The member 21 and the second connecting member 22 are relatively movable, the telescopic structure 2 can be switched between the first state and the second state, and the first connecting member 21 and the second Under the condition that the connecting member 22 can relatively move to a preset position, the telescopic structure 2 is in the first state.
  • the arrangement position of the first locking fitting 212 on the first connecting piece 21 and the arrangement position of the second fitting piece 222 on the second connecting piece 22 can be extended according to the length of the flexible screen when it is unfolded. The length is determined.
  • a plurality of second locking fittings 222 arranged along the stretching/contraction direction can be provided on the second connecting member 22, so that the The locking cooperation of a locking fitting 212 and a different second locking fitting 222 realizes the adjustment of different lengths of the telescopic structure 2 and improves the versatility.
  • the telescopic structure 2 includes a first connector 21 rotatably connected with the first terminal body 11, and a second connector 22 rotatably connected with the second terminal body 12, ensuring that the telescopic structure 2 and the first terminal body 12 A terminal body 11 is rotatable, and the telescopic structure 2 and the second terminal body 12 are rotatable, so that the first terminal body 11 and the second terminal body 12 can be rotated separately.
  • the telescopic structure 2 changes from the second length state Switch to the first length state, so that the first locking fitting 212 and the second locking fitting 222 are switched between the alignment state and the disengaged state, so that the telescopic structure 2 can be in the first length state and Switch between the second length state; further, in the case that the first connecting member 21 and the second connecting member 22 can be moved to a preset position, the telescopic structure 2 can be stably The first state.
  • the second end of the first connecting member 21 is a hollow first cylindrical structure 211; the first locking fitting 212 is disposed on the first cylindrical structure 211;
  • the second end of the second connecting member 22 is a hollow second columnar structure 221; the second locking fitting 222 is disposed on the second columnar structure 221; wherein, the first columnar structure 211 is inserted Set in the second columnar structure 221.
  • the first columnar structure 211 is inserted into the second columnar structure 221.
  • the telescopic structure 2 can be placed The first state or the second state, and can switch between the first state and the second state.
  • first locking fitting 212 is a protruding structure arranged on the outer surface of the first columnar structure 211;
  • second locking fitting 222 is an opening arranged on the second columnar structure 211 ;
  • the first locking fitting 212 and the second locking fitting 222 are in an alignment state; when the protruding structure is separated from the opening , The first locking fitting 212 and the second locking fitting 222 are in a disengaged state.
  • the shape of the protrusion structure may be a spherical head or a hemispherical head.
  • the telescopic structure 2 When the telescopic structure 2 is in the second state, because the part where the protrusion structure is provided on the first connector 21 is a hollow columnar structure, a deformation space for the protrusion structure is provided, so that when the protrusion structure is locked into the opening, the The protruding structure compresses the first connector 21 and/or the second connector 22 toward each other, so that the telescopic structure 2 is switched from the second state to the first state, which is convenient for operation and simple in structure.
  • the first housing of the first terminal body 11 is provided with a first recess 111, and the first end of the first connecting member 21 is located in the first recess. 111 and rotatably connected with the second housing.
  • a first recessed portion 111 is provided on the first housing of the first terminal body 11, and the first recessed portion 111 forms the accommodating space and the rotating space of the first end of the first connector 21 to It is ensured that the first connecting member 21 is rotatable relative to the first terminal body 11, that is, the first terminal body 11 is guaranteed to be rotatable relative to the second terminal body 12.
  • first recessed portion 111 will be specifically described below with reference to specific examples:
  • Example 1 The first recess 111 extends from the first surface of the first housing to at least the second surface of the first housing; the first surface is the The surface where the flexible screen is located or the opposite surface of the surface where the flexible screen is located on the first housing, and the first surface and the second surface are arranged adjacently.
  • the first terminal The body 11 is rotatable relative to the second terminal body 12 to a folded state in which the flexible screen is arranged facing each other (that is, the flexible screen is located between the first terminal body 11 and the second terminal body 12), or the first terminal body 11 is relative to the second terminal body.
  • the main body 12 can be rotated to a state where the flexible screen is flat.
  • the first terminal body 11 and the second terminal body 12 can be rotated to a flat state to make the flexible screen flat; when the flexible screen is not used, the first terminal body 11 and the second terminal body can be The terminal body 12 is rotated to a folded state, and the flexible screen is located between the first terminal body 11 and the second terminal body 12, which can protect the flexible screen and avoid damage to the flexible screen.
  • the first terminal body 11 Relative to the second terminal body 12 when the first recessed portion 111 extends from a first surface opposite to the flexible screen on the first housing to a second surface adjacent to the first surface, the first terminal body 11 Relative to the second terminal body 12, it can be rotated to a folded state where the flexible screen is arranged opposite to each other (that is, the first terminal body 11 and the second terminal body 12 are located between the flexible screen), or the first terminal body 11 is relative to the second terminal body 12 can be rotated to the flat state of the flexible screen.
  • the mobile terminal has the largest screen usage area; when the first terminal body 11 and the second terminal body 12 are combined When rotated to the folded state, and the first terminal body 11 and the second terminal body 12 are located between the flexible screen, it is ensured that the flexible screen can still have a display effect in the folded state.
  • Example 2 The first recess 111 extends from the first surface of the first housing through the second surface of the first housing to the third surface of the first housing, and the first surface It is arranged opposite to the third surface.
  • the first surface may be the surface where the flexible screen on the first casing is located
  • the third surface may be the opposite surface of the surface where the flexible screen on the first casing is located
  • the second surface is the same as the first surface and the third surface. Adjacent settings.
  • the first terminal body 11 when the flexible screen is not in use, the first terminal body 11 can be rotated relative to the second terminal body 12 to the first folded state where the flexible screen is arranged opposite to each other (that is, the flexible screen is located between the first terminal body 11 and the second terminal body 11). Between the two terminal bodies 12), the flexible screen can be protected to avoid damage to the flexible screen.
  • the first terminal body 11 and the second terminal body 12 can be rotated to a tiled state to make the flexible screen tiled to ensure that the mobile terminal has the largest screen display area, or the first terminal body can be 11 is rotated relative to the second terminal body 12 to the second folded state where the flexible screen is arranged opposite to each other (that is, the first terminal body 11 and the second terminal body 12 are located between the flexible screen), so as to realize the display effect of the second folded state.
  • the first housing is further provided with a first shaft hole 112, the first shaft hole 112 passes through the first recessed portion 111; the first connecting member 21 One end is a first cylindrical rotating shaft (see the second cylindrical rotating shaft 223 in FIG. 5); the first cylindrical rotating shaft is disposed in the first shaft hole 112.
  • the axial direction of the first cylindrical shaft of the first connecting member 21 is perpendicular to the axial direction of the first cylindrical structure 211 on the first connecting member 21, so that the first cylindrical rotating shaft of the first connecting member 21 is disposed on the first connecting member 21.
  • the first columnar shaft rotates in the first shaft hole 112 to ensure that the first columnar structure 211 extends in the extension direction of the first recess 111 (for example, from the first surface to the second surface, or from the first surface).
  • One side moves within the second surface to the third surface), so that the first terminal body 11 rotates relative to the second terminal body 12.
  • the first end of the first connecting member 21 is a first ball head structure 213; the first ball head structure 213 is rotatably locked in the first concave portion 111.
  • the inner surface of the first recess 111 formed on the first housing is similar to the outer surface of the first ball head structure 213.
  • Surface matching spherical surface so that when the first ball head structure 213 is locked in the first recessed portion 111, it is ensured that the first ball head structure 213 is rotatable in the first recessed portion 111 and will not move away from the The first recessed portion 111 comes out.
  • the second housing of the second terminal body 12 is provided with a second recess 121, and the first end of the second connector 22 is located in the second recess. 121 and rotatably connected with the second housing.
  • a second recessed portion 121 is provided on the second housing of the second terminal body 12, and the second recessed portion 121 forms the accommodating space and the rotating space of the first end of the second connector 22 to It is ensured that the second connecting member 22 is rotatable relative to the first terminal body 11, that is, the first terminal body 11 is guaranteed to be rotatable relative to the second terminal body 12.
  • Example 1 The second recess 121 extends from the first surface of the second housing to at least the second surface of the second housing; the first surface is the The surface where the flexible screen is located or the opposite surface of the surface where the flexible screen is located on the second housing, and the first surface and the second surface are arranged adjacently.
  • the first terminal The body 11 is rotatable relative to the second terminal body 12 to a folded state in which the flexible screen is arranged facing each other (that is, the flexible screen is located between the first terminal body 11 and the second terminal body 12), or the first terminal body 11 is relative to the second terminal body.
  • the main body 12 can be rotated to a state where the flexible screen is flat.
  • the first terminal body 11 and the second terminal body 12 can be rotated to a flat state to make the flexible screen flat; when the flexible screen is not used, the first terminal body 11 and the second terminal body can be The terminal body 12 is rotated to a folded state, and the flexible screen is located between the first terminal body 11 and the second terminal body 12, which can protect the flexible screen and avoid damage to the flexible screen.
  • the first terminal body 11 Relative to the second terminal body 12 when the second recessed portion 121 extends from a first surface opposite to the flexible screen on the second housing to a second surface adjacent to the first surface, the first terminal body 11 Relative to the second terminal body 12, it can be rotated to a folded state where the flexible screen is arranged opposite to each other (that is, the first terminal body 11 and the second terminal body 12 are located between the flexible screen), or the first terminal body 11 is relative to the second terminal body 12 can be rotated to the flat state of the flexible screen.
  • the mobile terminal has the largest screen usage area; when the first terminal body 11 and the second terminal body 12 are combined When rotated to the folded state, and the first terminal body 11 and the second terminal body 12 are located between the flexible screen, it is ensured that the flexible screen can still have a display effect in the folded state.
  • Example 2 The second recess 121 extends from the first surface of the second housing through the second surface of the second housing to the third surface of the second housing, and the first surface It is arranged opposite to the third surface.
  • the first surface may be the surface where the flexible screen on the second casing is located
  • the third surface may be the opposite surface of the surface where the flexible screen on the second casing is located
  • the second surface is the same as the first surface and the third surface. Adjacent settings.
  • the first terminal body 11 when the flexible screen is not in use, the first terminal body 11 can be rotated relative to the second terminal body 12 to the first folded state where the flexible screen is arranged opposite to each other (that is, the flexible screen is located between the first terminal body 11 and the second terminal body 11). Between the two terminal bodies 12), the flexible screen can be protected to avoid damage to the flexible screen.
  • the first terminal body 11 and the second terminal body 12 can be rotated to a tiled state to make the flexible screen tiled to ensure that the mobile terminal has the largest screen display area, or the first terminal body can be 11 is rotated relative to the second terminal body 12 to the second folded state where the flexible screen is arranged opposite to each other (that is, the first terminal body 11 and the second terminal body 12 are located between the flexible screen), so as to realize the display effect of the second folded state.
  • the second housing is further provided with a second shaft hole (see the first shaft hole 112 in FIG. 4), and the second shaft hole passes through the second recessed portion 121;
  • the first end of the second connecting member 22 is a second cylindrical shaft 223; the second cylindrical shaft 223 is disposed in the second shaft hole.
  • the axial direction of the second cylindrical shaft 223 of the second connecting member 22 is perpendicular to the axial direction of the second cylindrical structure 221 on the second connecting member 22, so that the second cylindrical rotating shaft 223 of the second connecting member 22 is disposed at all In the second shaft hole, the second columnar shaft 223 rotates in the second shaft hole to ensure that the second columnar structure 221 extends in the extension direction of the second recess 121 (for example, from the first surface to the second surface, or from The first surface moves from the second surface to the third surface), so that the first terminal body 11 rotates relative to the second terminal body 12.
  • the second end of the second connecting member 22 is a second ball head structure (see the first ball head structure 213 in FIG. 5), and the second ball head structure has a rotatable clip Set in the second recessed portion 121.
  • the inner surface of the second recess 121 formed on the second housing matches the outer surface of the second ball head structure In this way, when the second ball head structure is locked in the second recessed portion 121, it is ensured that the second ball head structure is rotatable in the second recessed portion 121 and does not fall from the second recessed portion 121. Prolapse within 121.
  • the telescopic structure 2 further includes:
  • the first end of the elastic member 23 is located in the first columnar structure 211 and is fixed to the bottom of the first columnar structure 211; the second end of the elastic member 23 is located in the second The columnar structure 221 is fixed to the bottom of the second columnar structure 221.
  • the elastic member 23 may be a spring.
  • the elastic member 23 by disposing the elastic member 23 inside the first columnar structure 211 and the second columnar structure 221, the elastic member 23 can be protected by the first columnar structure 211 and the second columnar structure 221, thereby It is beneficial to increase the service life of the telescopic structure 2.
  • the telescopic structure 2 When the telescopic structure 2 is in the second length state, since the part where the protrusion structure is provided on the first connector 21 is a hollow columnar structure, a deformation space for the protrusion structure is provided, so that when the protrusion structure is locked into the opening, By pressing the protrusion structure, under the elastic recovery action of the elastic member 23, the telescopic structure 2 is automatically switched from the second state to the first state, and the structure is simple and easy to operate.
  • the elastic member 23 is in a stretched state.
  • the elastic member 23 is always in a stretched state, so when the first terminal body 11 and the second terminal body 12 are stacked, the flexible screen is in a folded state, and the telescopic structure 2 is in a first length state with a smaller length. , Through the stretching action of the elastic member 23 on the first connecting member 21 and the second connecting member 22, when the mobile terminal is folded, the tightness of the fit between the first terminal body 11 and the second terminal body 12 is ensured to avoid loosening, So as to ensure the reliability of mobile terminal folding;
  • the flexible screen is in an unfolded state, and the telescopic structure 2 is in a second state with a larger length.
  • the first locking fitting 212 and the second locking fitting 222 Lock the first connecting piece 21 and the second connecting piece 22 to ensure the stability of the telescopic structure 2 in the second state; and the telescopic structure 2 is in the second state to increase the first terminal body 11 and the second terminal.

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  • Engineering & Computer Science (AREA)
  • Signal Processing (AREA)
  • Telephone Set Structure (AREA)

Abstract

本公开提供了一种移动终端,包括:第一终端本体和第二终端本体;柔性屏,柔性屏覆盖于第一终端本体和第二终端本体的表面;伸缩结构,第一终端本体通过伸缩结构与第二终端本体连接;其中,在第一终端本体与第二终端本体之间的角度为第一角度的情况下,伸缩结构处于第一状态,伸缩结构的长度为第一长度;在第一终端本体与第二终端本体之间的角度为第二角度的情况下,伸缩结构处于第二状态,伸缩结构的长度为第二长度。

Description

移动终端
相关申请的交叉引用
本申请主张在2019年3月29日在中国提交的中国专利申请No.201910253390.6的优先权,其全部内容通过引用包含于此。
技术领域
本公开涉及通信技术领域,尤其涉及一种移动终端。
背景技术
随着移动终端技术的发展,用户对移动终端的显示屏的面积需求也越来越高。为了满足用户对大屏移动终端的需求,具有可折叠柔性屏的移动终端越来越成为发展趋势之一。
发明内容
本公开实施例提供了一种移动终端,以解决相关技术中具有可折叠柔性屏的移动终端在柔性屏的折叠部分处于展开状态时,容易出现柔性屏褶皱的问题。
为了解决上述技术问题,本公开是这样实现的:
本公开实施例提供了一种移动终端,包括:
第一终端本体和第二终端本体;
柔性屏,所述柔性屏覆盖于所述第一终端本体和所述第二终端本体的表面;
伸缩结构,所述第一终端本体通过所述伸缩结构与所述第二终端本体连接;
其中,在所述第一终端本体与所述第二终端本体之间的角度为第一角度的情况下,所述伸缩结构处于第一状态,所述伸缩结构的长度为第一长度;在所述第一终端本体与所述第二终端本体之间的角度为第二角度的情况下,所述伸缩结构处于第二状态,所述伸缩结构的长度为第二长度。
本公开的上述方案中,第一终端本体通过伸缩结构与第二终端本体通过连接,并且伸缩结构具有第一长度的第一状态和第二长度的第二状态,这样,在第一终端本体和第二终端本体之间的角度为第一角度,如:在第一终端本体和第二终端本体相堆叠设置时,即柔性屏处于折叠状态,伸缩结构可以处于长度较小的第一长度的第一状态,保证移动终端折叠时,第一终端本体和第二终端本体之间贴合的紧密性;在第一终端本体和第二终端本体之间的角度为第二角度,如:在第一终端本体和第二终端本体平铺设置时,即柔性屏处于展开状态,伸缩结构处于长度较大的第二长度的第二状态,可以增加第一终端本体和第二终端本体展开时的相对距离,进而延长第一终端本体和第二终端本体展开时的延伸长度,从而避免柔性屏处于展开状态时在折叠部分产生褶皱,保证柔性屏的平整展开,从而有利于提高显示屏的显示效果。
附图说明
图1表示具有可折叠柔性屏的移动终端处于折叠状态的示意图;
图2表示具有可折叠柔性屏的移动终端处于展开状态的示意图;
图3表示本公开实施例的移动终端处于折叠状态的示意图;
图4表示本公开实施例的移动终端的分解示意图;
图5表示本公开实施例的伸缩结构的分解示意图;
图6表示本公开实施例的伸缩结构处于第一状态的剖面图;
图7表示本公开实施例的移动终端处于展开状态的示意图;
图8表示本公开实施例的伸缩结构处于第二状态的剖面图。
附图标记说明:
11、第一终端本体;
111、第一凹陷部;
112、第一轴孔;
12、第二终端本体;
121、第二凹陷部;
13、显示屏;
14、转轴;
15、褶皱部;
2、伸缩结构;
21、第一连接件;
211、第一柱状结构;
212、第一锁止配合件;
213、第一球头结构;
22、第二连接件;
221、第二柱状结构;
222、第二锁止配合件;
223、第二柱状转轴;
23、弹性件。
具体实施方式
下面将结合本公开实施例中的附图,对本公开实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例是本公开一部分实施例,而不是全部的实施例。基于本公开中的实施例,本领域普通技术人员在没有作出创造性劳动前提下所获得的所有其他实施例,都属于本公开保护的范围。
如图1,具有可折叠柔性屏的移动终端处于折叠状态,移动终端包括第一终端本体11和第二终端本体12,柔性屏13覆盖该第一终端本体11和第二终端本体12。其中,第一终端本体11和第二终端本体12之间通过转轴14连接,使得第一终端本体11相对于第二终端本体12之间可旋转。但是,这种通过转轴14直接连接第一终端本体11和第二终端本体12的移动终端,在如图2,处于展开状态,即第一终端本体11和第二终端本体12平铺时,因旋转的行程大于直线行程,会在转轴14处形成褶皱部15,影响柔性屏的显示效果。
如图3和图4,本公开实施例提供了一种移动终端,包括:第一终端本体11、第二终端本体12、柔性屏和伸缩结构2。
其中,所述柔性屏覆盖于所述第一终端本体11和所述第二终端本体12的表面;所述第一终端本体11通过所述伸缩结构2与所述第二终端本体12 连接,且通过所述伸缩结构2,所述第一终端本体11相对于所述第二终端本体12可转动。
其中,所述伸缩结构2包括连接所述第一终端本体11和所述第二终端本体12的两端具有第一长度的第一状态,以及连接所述第一终端本体11和所述第二终端本体12的两端具有第二长度的第二状态。
在所述第一终端本体11与所述第二终端本体12之间的角度为第一角度的情况下,所述伸缩结构2处于第一状态,所述伸缩结构2的长度为第一长度;在所述第一终端本体11与所述第二终端本体12之间的角度为第二角度的情况下,所述伸缩结构2处于第二状态,所述伸缩结构2的长度为第二长度。
具体的,第一终端本体11和第二终端本体12之间可以通过至少一个伸缩结构2连接。可选地,第一终端本体11和第二终端本体12之间可以通过两个伸缩结构2连接。当然,第一终端本体11和第二终端本体12之间还可以设置多个伸缩结构2,具体的设置伸缩结构2的数量还可以根据第一终端本体11与第二终端本体12相连接的一侧边的尺寸确定。
该实施例中,第一终端本体11和第二终端本体12通过伸缩结构2连接,且第一终端本体11通过所述伸缩结构2相对于第二终端本体12可转动,以使覆盖在第一终端本体11和第二终端本体12上的柔性屏具有呈第一弯折角度的状态,如:折叠状态和呈第二弯折角度的状态,如:展开状态。
并且伸缩结构2具有第一长度的第一状态和第二长度的第二状态,这样,在第一终端本体11和第二终端本体12之间的角度为第一角度,如:第一终端本体11和第二终端本体12相堆叠设置(如图3)时,柔性屏处于折叠状态,伸缩结构2处于长度较小的第一长度的第一状态,保证移动终端处于折叠状态时,第一终端本体11和第二终端本体12之间贴合的紧密性;
在第一终端本体11和第二终端本体12之间的角度为第二角度,如:第一终端本体11和第二终端本体12平铺设置时(如图7),柔性屏处于展开状态,伸缩结构2处于长度较大的第二长度的第二状态,可以增加第一终端本体11和第二终端本体12之间的相对距离,从而延长第一终端本体11和第二终端本体12展开时的延伸长度(第一终端本体11上远离伸缩结构2的一端 到第二终端本体12上远离伸缩结构2的一端之间的距离),从而避免柔性屏处于展开状态时在折叠部分产生褶皱,保证柔性屏的平整展开,从而有利于提高柔性屏的显示效果,还有利于延长柔性屏的使用寿命。
如图5,所述伸缩结构2包括:
第一连接件21,所述第一连接件21的第一端与所述第一终端本体11转动连接,所述第一连接件21的第二端设置有第一锁止配合件212;
第二连接件22,所述第二连接件22的第一端与所述第二终端本体12转动连接,所述第二连接件22的第二端设置有第二锁止配合件222;所述第一连接件21与所述第二连接件22配合连接。
其中,所述第一锁止配合件212与所述第二锁止配合件222处于对位状态时,所述第一连接件21相对于所述第二连接件22固定,所述伸缩结构2处于所述第二状态;所述第一锁止配合件212与所述第二锁止配合件222处于脱离对位状态时,所述第一连接件21与所述第二连接件22可相对移动,在所述第一连接件21与所述第二连接件22可相对移动至预设位置的情况下,所述伸缩结构2处于所述第一状态。
具体的,所述第一锁止配合件212与所述第二锁止配合件222处于对位状态时(如图8),所述第一连接件21相对于所述第二连接件22固定,所述伸缩结构2保持为所述第二状态;所述第一锁止配合件212与所述第二锁止配合件222处于脱离对位状态时(如图6),所述第一连接件21与所述第二连接件22可相对移动,所述伸缩结构2能够在所述第一状态与所述第二状态之间切换,且在所述第一连接件21与所述第二连接件22可相对移动至预设位置的情况下,所述伸缩结构2处于所述第一状态。
具体的,第一锁止配合件212在第一连接件21上的设置位置,以及第二所示配合件222在第二连接件22上的设置位置,可以根据柔性屏在展开时需要延长的长度确定。
可选地,为了保证该伸缩结构2适用于不同柔性屏延伸长度的需求,可以在第二连接件22上设置多个沿拉伸/收缩方向设置的第二锁止配合件222,这样通过第一锁止配合件212与不同的第二锁止配合件222的锁止配合,实现伸缩结构2不同长度的调整,提高了多适用性。
该实施例中,伸缩结构2包括与所述第一终端本体11转动连接的第一连接件21,以及与所述第二终端本体12转动连接的第二连接件22,保证伸缩结构2与第一终端本体11之间可转动,并且伸缩结构2与第二终端本体12之间可转动,从而实现第一终端本体11和第二终端本体12能够分别转动。
并且伸缩结构2的第一连接件21和第二连接件22之间在达到第二长度状态时,可以通过第一锁止配合件212与第二锁止配合件222处于对位状态进行锁止,保证伸缩结构2处于第二长度状态的稳定性和可靠性;进一步地,在第一锁止配合件212与第二锁止配合件222脱离对位状态时,伸缩结构2从第二长度状态切换至第一长度状态,从而通过第一锁止配合件212与第二锁止配合件222在对位状态和脱离对位状态之间切换,实现伸缩结构2能够在所述第一长度状态与所述第二长度状态之间切换;更进一步地,在所述第一连接件21与所述第二连接件22可相对移动至预设位置的情况下,所述伸缩结构2能够稳定地处于所述第一状态。
具体的,所述第一连接件21的第二端为中空的第一柱状结构211;所述第一锁止配合件212设置于所述第一柱状结构211上;
所述第二连接件22的第二端为中空的第二柱状结构221;所述第二锁止配合件222设置于所述第二柱状结构221上;其中,所述第一柱状结构211插设于所述第二柱状结构221内。
该实施例中,所述第一柱状结构211插设于所述第二柱状结构221内,通过第一柱状结构211在第二柱状结构221内的插设位置的调整,实现伸缩结构2能够处于第一状态或第二状态,并且能够在所述第一状态与所述第二状态之间切换。
进一步地,所述第一锁止配合件212为设置于所述第一柱状结构211外表面上的突起结构;所述第二锁止配合件222为设置于第二柱状结构211上的开孔;
其中,所述突起结构卡设于所述开孔内时,所述第一锁止配合件212与所述第二锁止配合件222处于对位状态;所述突起结构脱离所述开孔时,所述第一锁止配合件212与所述第二锁止配合件222处于脱离对位状态。
可选地,所述突起结构的形状可以是球头或者半球头。
具体的,在伸缩结构2处于第一状态时,通过拉伸第一连接件21和/或第二连接件22,使得伸缩结构2处于第二状态时,第一连接件21上的突起自动卡设至第二连接件22上的开孔内,实现第一连接件21和第二连接件22之间的锁止,保证伸缩结构2处于第二状态的稳定性和可靠性;
在伸缩结构2处于第二状态时,由于第一连接件21上设置突起结构的部分为中空的柱状结构,提供了突起结构的形变空间,这样在突起结构卡设至开孔内时,通过按压突起结构,并相向压缩第一连接件21和/或第二连接件22,使得伸缩结构2从第二状态切换至第一状态,便于操作且结构简单。
可选地,如图4和图5,所述第一终端本体11的第一壳体上设有第一凹陷部111,所述第一连接件21的第一端位于所述第一凹陷部111内,并与所述第二壳体转动连接。
该实施例中,在第一终端本体11的第一壳体上设置第一凹陷部111,该第一凹陷部111形成该第一连接件21的第一端的容置空间和旋转空间,以保证第一连接件21相对于第一终端本体11可旋转,即保证第一终端本体11相对于第二终端本体12可旋转。
以下结合具体示例对上述第一凹陷部111进行具体说明:
示例一:所述第一凹陷部111从所述第一壳体的第一面至少延伸至所述第一壳体的第二面;所述第一面是所述第一壳体上所述柔性屏所在的面或所述第一壳体上所述柔性屏所在面的相对面,且所述第一面和所述第二面相邻设置。
具体的,作为一种实现方式,当该第一凹陷部111从第一壳体上所述柔性屏所在的第一面延伸至与所述第一面相邻的第二面时,第一终端本体11相对于第二终端本体12可旋转至柔性屏相向设置的折叠状态(即柔性屏位于第一终端本体11与第二终端本体12之间),或者第一终端本体11相对于第二终端本体12可旋转至柔性屏平铺的状态。这样在使用柔性屏时,可以将第一终端本体11和第二终端本体12旋转至平铺的状态以使柔性屏平铺;在不使用柔性屏时,可以将第一终端本体11和第二终端本体12旋转至折叠的状态,且柔性屏位于第一终端本体11和第二终端本体12之间,可以对柔性屏起到保护作用,避免柔性屏损坏。
作为另一种实现方式,当该第一凹陷部111从第一壳体上柔性屏所在面相对的第一面延伸至与所述第一面相邻的第二面时,第一终端本体11相对于第二终端本体12可旋转至柔性屏相背设置的折叠状态(即第一终端本体11与第二终端本体12位于柔性屏之间),或者第一终端本体11相对于第二终端本体12可旋转至柔性屏平铺的状态。这样在将第一终端本体11和第二终端本体12旋转至平铺的状态以使柔性屏平铺时,移动终端具有最大的屏幕使用区域;在将第一终端本体11和第二终端本体12旋转至折叠的状态,且第一终端本体11和第二终端本体12位于柔性屏之间时,保证柔性屏在折叠状态仍可以具有显示效果。
示例二:所述第一凹陷部111从所述第一壳体的第一面通过所述第一壳体的第二面延伸至所述第一壳体的第三面,所述第一面和所述第三面相对设置。
具体的,第一面可以是第一壳体上柔性屏所在的面,第三面可以是第一壳体上柔性屏所在面的相对面,且第二面分别与第一面和第三面相邻设置。
该实施例中,在不使用柔性屏时,可以将第一终端本体11相对于第二终端本体12可旋转至柔性屏相向设置的第一折叠状态(即柔性屏位于第一终端本体11与第二终端本体12之间),可以对柔性屏起到保护作用,避免柔性屏损坏。
在使用柔性屏时,可以将第一终端本体11和第二终端本体12旋转至平铺的状态以使柔性屏平铺,保证移动终端具有最大的屏幕显示区域,或者还可以将第一终端本体11相对于第二终端本体12旋转至柔性屏相背设置的第二折叠状态(即第一终端本体11与第二终端本体12位于柔性屏之间),实现第二折叠状态的显示效果。
进一步地,作为一种实现方式,所述第一壳体还设有第一轴孔112,所述第一轴孔112穿过所述第一凹陷部111;所述第一连接件21的第一端为第一柱状转轴(可参见图5中的第二柱状转轴223);所述第一柱状转轴设置于所述第一轴孔112内。
具体的,第一连接件21的第一柱状转轴的轴线方向与第一连接件21上的第一柱状结构211的轴线方向垂直,这样第一连接件21的第一柱状转轴设 置于所述第一轴孔112内,通过第一柱状转轴在第一轴孔112内旋转,保证第一柱状结构211在第一凹陷部111的延伸方向(如:从第一面到第二面,或者从第一面通过第二面到第三面)内移动,从而实现第一终端本体11相对第二终端本体12转动。
作为另一种实现方式,所述第一连接件21的第一端为第一球头结构213;所述第一球头结构213可转动的卡设于所述第一凹陷部111内。
具体的,当所述第一连接件21的第一端为第一球头结构213时,第一壳体上形成所述第一凹陷部111的内表面为与第一球头结构213的外表面相匹配的球面,这样在所述第一球头结构213卡设于所述第一凹陷部111内时,保证该第一球头结构213在第一凹陷部111内可转动且不会从该第一凹陷部111内脱出。
可选地,如图4和图5,所述第二终端本体12的第二壳体上设有第二凹陷部121,所述第二连接件22的第一端位于所述第二凹陷部121内,并与所述第二壳体转动连接。
该实施例中,在第二终端本体12的第二壳体上设置第二凹陷部121,该第二凹陷部121形成该第二连接件22的第一端的容置空间和旋转空间,以保证第二连接件22相对于第一终端本体11可旋转,即保证第一终端本体11相对于第二终端本体12可旋转。
以下结合具体示例对上述第二凹陷部121进行具体说明:
示例一:所述第二凹陷部121从所述第二壳体的第一面至少延伸至所述第二壳体的第二面;所述第一面是所述第二壳体上所述柔性屏所在的面或所述第二壳体上所述柔性屏所在面的相对面,且所述第一面和所述第二面相邻设置。
具体的,作为一种实现方式,当该第二凹陷部121从第二壳体上所述柔性屏所在的第一面延伸至与所述第一面相邻的第二面时,第一终端本体11相对于第二终端本体12可旋转至柔性屏相向设置的折叠状态(即柔性屏位于第一终端本体11与第二终端本体12之间),或者第一终端本体11相对于第二终端本体12可旋转至柔性屏平铺的状态。这样在使用柔性屏时,可以将第一终端本体11和第二终端本体12旋转至平铺的状态以使柔性屏平铺;在不使 用柔性屏时,可以将第一终端本体11和第二终端本体12旋转至折叠的状态,且柔性屏位于第一终端本体11和第二终端本体12之间,可以对柔性屏起到保护作用,避免柔性屏损坏。
作为另一种实现方式,当该第二凹陷部121从第二壳体上柔性屏所在面相对的第一面延伸至与所述第一面相邻的第二面时,第一终端本体11相对于第二终端本体12可旋转至柔性屏相背设置的折叠状态(即第一终端本体11与第二终端本体12位于柔性屏之间),或者第一终端本体11相对于第二终端本体12可旋转至柔性屏平铺的状态。这样在将第一终端本体11和第二终端本体12旋转至平铺的状态以使柔性屏平铺时,移动终端具有最大的屏幕使用区域;在将第一终端本体11和第二终端本体12旋转至折叠的状态,且第一终端本体11和第二终端本体12位于柔性屏之间时,保证柔性屏在折叠状态仍可以具有显示效果。
示例二:所述第二凹陷部121从所述第二壳体的第一面通过所述第二壳体的第二面延伸至所述第二壳体的第三面,所述第一面和所述第三面相对设置。
具体的,第一面可以是第二壳体上柔性屏所在的面,第三面可以是第二壳体上柔性屏所在面的相对面,且第二面分别与第一面和第三面相邻设置。
该实施例中,在不使用柔性屏时,可以将第一终端本体11相对于第二终端本体12可旋转至柔性屏相向设置的第一折叠状态(即柔性屏位于第一终端本体11与第二终端本体12之间),可以对柔性屏起到保护作用,避免柔性屏损坏。
在使用柔性屏时,可以将第一终端本体11和第二终端本体12旋转至平铺的状态以使柔性屏平铺,保证移动终端具有最大的屏幕显示区域,或者还可以将第一终端本体11相对于第二终端本体12旋转至柔性屏相背设置的第二折叠状态(即第一终端本体11与第二终端本体12位于柔性屏之间),实现第二折叠状态的显示效果。
进一步地,作为一种实现方式,所述第二壳体还设有第二轴孔(可参见图4中的第一轴孔112),所述第二轴孔穿过所述第二凹陷部121;所述第二连接件22的第一端为第二柱状转轴223;所述第二柱状转轴223设置于所述 第二轴孔内。
具体的,第二连接件22的第二柱状转轴223的轴线方向与第二连接件22上的第二柱状结构221的轴线方向垂直,这样第二连接件22的第二柱状转轴223设置于所述第二轴孔内,通过第二柱状转轴223在第二轴孔内旋转,保证第二柱状结构221在第二凹陷部121的延伸方向(如:从第一面到第二面,或者从第一面通过第二面到第三面)内移动,从而实现第一终端本体11相对第二终端本体12转动。
作为另一种实现方式,所述第二连接件22的第二端为第二球头结构(可参见图5中的第一球头结构213),所述第二球头结构可转动的卡设于所述第二凹陷部121内。
具体的,当所述第二连接件22的第一端为第二球头结构时,第二壳体上形成所述第二凹陷部121的内表面为与第二球头结构的外表面相匹配的球面,这样在所述第二球头结构卡设于所述第二凹陷部121内时,保证该第二球头结构在第二凹陷部121内可转动且不会从该第二凹陷部121内脱出。
如图5、图6和图8所示,所述伸缩结构2还包括:
弹性件23,所述弹性件23的第一端位于所述第一柱状结构211内,并与所述第一柱状结构211的底部固定;所述弹性件23的第二端位于所述第二柱状结构221内,并与所述第二柱状结构221的底部固定。
可选地,该弹性件23可以是弹簧。
该实施例中,通过将弹性件23设置于第一柱状结构211与第二柱状结构221的内部,可以通过第一柱状结构211和第二柱状结构221对弹性件23起到保护作用,从而有利于提高伸缩结构2的使用寿命。
在伸缩结构2处于第一长度状态时,通过拉伸第一连接件21和/或第二连接件22,使得伸缩结构2处于第二长度状态时,第一连接件21上的突起自动卡设至第二连接件22上的开孔内,实现第一连接件21和第二连接件22之间的锁止,保证伸缩结构2处于第二长度状态的稳定性和可靠性;
在伸缩结构2处于第二长度状态时,由于第一连接件21上设置突起结构的部分为中空的柱状结构,提供了突起结构的形变空间,这样在突起结构卡设至开孔内时,通过按压突起结构,在弹性件23的弹性恢复作用下,使得伸 缩结构2自动从第二状态切换至第一状态,其结构简单,且便于操作。
进一步地,在伸缩结构2处于所述第一长度状态时,所述弹性件23处于拉伸状态。
该实施例中,弹性件23始终处于拉伸状态,这样在第一终端本体11和第二终端本体12相堆叠设置时,柔性屏处于折叠状态,伸缩结构2处于长度较小的第一长度状态,通过弹性件23对第一连接件21和第二连接件22的拉伸作用,保证移动终端折叠时,第一终端本体11和第二终端本体12之间贴合的紧密性,避免松动,从而保证移动终端折叠的可靠性;
在第一终端本体11和第二终端本体12平铺设置时,柔性屏处于展开状态,伸缩结构2处于长度较大的第二状态,通过第一锁止配合件212和第二锁止配合件222对第一连接件21和第二连接件22进行锁止,保证伸缩结构2处于第二状态时的稳定性;并且通过伸缩结构2处于第二状态以增加第一终端本体11和第二终端本体12展开时的延伸长度,从而避免柔性屏处于展开状态时在折叠部分产生褶皱,保证柔性屏的平整展开,从而有利于提高柔性屏的显示效果。
本说明书中的各个实施例均采用递进的方式描述,每个实施例重点说明的都是与其他实施例的不同之处,各个实施例之间相同相似的部分互相参见即可。
尽管已描述了本公开实施例的可选实施例,但本领域内的技术人员一旦得知了基本创造性概念,则可对这些实施例做出另外的变更和修改。所以,所附权利要求意欲解释为包括可选实施例以及落入本公开实施例范围的所有变更和修改。
最后,还需要说明的是,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或者操作与另一个实体或操作区分开来,而不一定要求或者暗示这些实体或操作之间存在任何这种实际的关系或者顺序。而且,术语“包括”、“包含”或者其任何其他变体意在涵盖非排他性的包含,从而使得包括一系列要素的过程、方法、物品或者终端设备不仅包括那些要素,而且还包括没有明确列出的其他要素,或者是还包括为这种过程、方法、物品或者终端设备所固有的要素。在没有更多限制的情况下,由语句“包括一个……” 限定的要素,并不排除在包括所述要素的过程、方法、物品或者终端设备中还存在另外的相同要素。
以上所述的是本公开的可选实施方式,应当指出对于本技术领域的普通人员来说,在不脱离本公开所述的原理前提下还可以作出若干改进和润饰,这些改进和润饰也在本公开的保护范围内。

Claims (15)

  1. 一种移动终端,包括:
    第一终端本体和第二终端本体;
    柔性屏,所述柔性屏覆盖于所述第一终端本体和所述第二终端本体的表面;
    伸缩结构,所述第一终端本体通过所述伸缩结构与所述第二终端本体连接;
    其中,在所述第一终端本体与所述第二终端本体之间的角度为第一角度的情况下,所述伸缩结构处于第一状态,所述伸缩结构的长度为第一长度;在所述第一终端本体与所述第二终端本体之间的角度为第二角度的情况下,所述伸缩结构处于第二状态,所述伸缩结构的长度为第二长度。
  2. 根据权利要求1所述的移动终端,其中,所述第二角度大于所述第一角度,所述第二长度大于所述第一长度。
  3. 根据权利要求1所述的移动终端,其中,所述伸缩结构包括:
    第一连接件,所述第一连接件的第一端与所述第一终端本体转动连接,所述第一连接件的第二端设置有第一锁止配合件;
    第二连接件,所述第二连接件的第一端与所述第二终端本体转动连接,所述第二连接件的第二端设置有第二锁止配合件;所述第一连接件与所述第二连接件配合连接;
    其中,所述第一锁止配合件与所述第二锁止配合件处于对位状态时,所述第一连接件相对于所述第二连接件固定,所述伸缩结构处于所述第二状态;所述第一锁止配合件与所述第二锁止配合件处于脱离对位状态时,所述第一连接件与所述第二连接件可相对移动,在所述第一连接件与所述第二连接件可相对移动至预设位置的情况下,所述伸缩结构处于所述第一状态。
  4. 根据权利要求3所述的移动终端,其中,
    所述第一连接件的第二端为中空的第一柱状结构;所述第一锁止配合件设置于所述第一柱状结构上;
    所述第二连接件的第二端为中空的第二柱状结构;所述第二锁止配合件 设置于所述第二柱状结构上;
    其中,所述第一柱状结构插设于所述第二柱状结构内。
  5. 根据权利要求4所述的移动终端,其中,所述第一锁止配合件为设置于所述第一柱状结构外表面上的突起结构;所述第二锁止配合件为设置于第二柱状结构上的开孔;
    其中,所述突起结构卡设于所述开孔内时,所述第一锁止配合件与所述第二锁止配合件处于对位状态;所述突起结构脱离所述开孔时,所述第一锁止配合件与所述第二锁止配合件处于脱离对位状态。
  6. 根据权利要求4或5所述的移动终端,其中,所述伸缩结构还包括:
    弹性件,所述弹性件的第一端位于所述第一柱状结构内,并与所述第一柱状结构的底部固定;所述弹性件的第二端位于所述第二柱状结构内,并与所述第二柱状结构的底部固定。
  7. 根据权利要求6所述的移动终端,其中,所述伸缩结构处于所述第一状态时,所述弹性件处于拉伸状态。
  8. 根据权利要求3所述的移动终端,其中,所述第一终端本体的第一壳体上设有第一凹陷部,所述第一凹陷部从所述第一壳体的第一面至少延伸至所述第一壳体的第二面;所述第一面是所述第一壳体上所述柔性屏所在的面或所述第一壳体上所述柔性屏所在面的相对面,且所述第一面和所述第二面相邻设置;
    所述第一连接件的第一端位于所述第一凹陷部内,并与所述第一壳体转动连接。
  9. 根据权利要求8所述的移动终端,其中,所述第一凹陷部从所述第一壳体的第一面通过所述第一壳体的第二面延伸至所述第一壳体的第三面,所述第一面和所述第三面相对设置。
  10. 根据权利要求8或9所述的移动终端,其中,所述第一壳体还设有第一轴孔,所述第一轴孔穿过所述第一凹陷部;
    所述第一连接件的第一端为第一柱状转轴;所述第一柱状转轴设置于所述第一轴孔内。
  11. 根据权利要求8或9所述的移动终端,其中,所述第一连接件的第 一端为第一球头结构;所述第一球头结构可转动的卡设于所述第一凹陷部内。
  12. 根据权利要求3所述的移动终端,其中,所述第二终端本体的第二壳体上设有第二凹陷部,所述第二凹陷部从所述第二壳体的第一面至少延伸至所述第二壳体的第二面;所述第一面是所述第二壳体上所述柔性屏所在的面或所述第二壳体上所述柔性屏所在面的相对面,且所述第一面和所述第二面相邻设置;
    所述第二连接件的第一端位于所述第二凹陷部内,并与所述第二壳体转动连接。
  13. 根据权利要求12所述的移动终端,其中,所述第二凹陷部从所述第二壳体的第一面通过所述第二壳体的第二面延伸至所述第二壳体的第三面,所述第一面和所述第三面相对设置。
  14. 根据权利要求12或13所述的移动终端,其中,所述第二壳体还设有第二轴孔,所述第二轴孔穿过所述第二凹陷部;
    所述第二连接件的第一端为第二柱状转轴;所述第二柱状转轴设置于所述第二轴孔内。
  15. 根据权利要求12或13所述的移动终端,其中,所述第二连接件的第二端为第二球头结构,所述第二球头结构可转动的卡设于所述第二凹陷部内。
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