CN108803779A - A kind of fold mechanism for flexible screen - Google Patents
A kind of fold mechanism for flexible screen Download PDFInfo
- Publication number
- CN108803779A CN108803779A CN201810380670.9A CN201810380670A CN108803779A CN 108803779 A CN108803779 A CN 108803779A CN 201810380670 A CN201810380670 A CN 201810380670A CN 108803779 A CN108803779 A CN 108803779A
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- Prior art keywords
- shell
- sliding part
- support sliding
- receiving support
- receiving
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- G—PHYSICS
- G06—COMPUTING; CALCULATING OR COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F1/00—Details not covered by groups G06F3/00 - G06F13/00 and G06F21/00
- G06F1/16—Constructional details or arrangements
- G06F1/1613—Constructional details or arrangements for portable computers
- G06F1/1633—Constructional details or arrangements of portable computers not specific to the type of enclosures covered by groups G06F1/1615 - G06F1/1626
- G06F1/1637—Details related to the display arrangement, including those related to the mounting of the display in the housing
- G06F1/1652—Details related to the display arrangement, including those related to the mounting of the display in the housing the display being flexible, e.g. mimicking a sheet of paper, or rollable
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04M—TELEPHONIC COMMUNICATION
- H04M1/00—Substation equipment, e.g. for use by subscribers
- H04M1/02—Constructional features of telephone sets
- H04M1/0202—Portable telephone sets, e.g. cordless phones, mobile phones or bar type handsets
- H04M1/026—Details of the structure or mounting of specific components
- H04M1/0266—Details of the structure or mounting of specific components for a display module assembly
- H04M1/0268—Details of the structure or mounting of specific components for a display module assembly including a flexible display panel
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- Engineering & Computer Science (AREA)
- Computer Hardware Design (AREA)
- Theoretical Computer Science (AREA)
- Human Computer Interaction (AREA)
- Physics & Mathematics (AREA)
- General Engineering & Computer Science (AREA)
- General Physics & Mathematics (AREA)
- Signal Processing (AREA)
- Telephone Set Structure (AREA)
Abstract
The present invention relates to a kind of fold mechanisms for flexible screen, including first shell and second shell, first shell is rotatablely connected with second shell, further include the first receiving support sliding part and the second receiving support sliding part, the side of first receiving support sliding part is slidably connected with first shell, the side of second receiving support sliding part is slidably connected with second shell, side of the first receiving support sliding part far from first shell is mutually inserted with the second side of the receiving support sliding part far from second shell, first shell and second shell drive the first receiving support sliding part and the second receiving support sliding part sliding by driving member respectively in rotation.The clever structure of the fold mechanism for flexible screen of the present invention, it is of low cost, it is linked by mechanism, using the reciprocating movement of the relative rotation driving receiving support sliding part of fold mechanism, it is final realize in a folded configuration under the receiving function and unfolded state of deformable screen area to the support function of deformable screen area.
Description
Technical field
The present invention relates to technical field of electronic products, more particularly, to a kind of fold mechanism for flexible screen.
Background technology
Continuous universal with what is shielded comprehensively, mobile terminal is while pursuing large-size screen monitors visual experience, also balanced better
The physics limit of portability, single screen is the screen accounting that 100% is realized in the case where that can hold size.In portable premise
Under, in order to pursue the screen of bigger, folding mobile is developed, current folding mobile is realized using double screen, exhibition
Have between two pieces of screens after opening and significantly isolate sense, cannot achieve the perfection of visual effect.
Flexible screen technology is quickly grown, and in addition to flexible flexible screen, folding flexible screen also occurs, foldable soft
Property screen is due to there was only one piece of screen, and whole visual effect is more perfect after expansion.Flexible screen Foldable mobile terminal is according to folding
Position where poststack screen can be divided into interior bending flexible screen mobile terminal and outer bending flexible screen mobile terminal, wherein occurring curved
Bent screen area is known as deformable screen area.For interior bending mobile terminal, after folding screen in the inside of mobile terminal,
It is protected by the shell of mobile terminal, has better shock resistance.Though but bending mobile terminal can be real in the prior art
Existing jackknife action cannot achieve under folded state due to the non-stretchable characteristic of screen entirety to the receipts of deformable screen area
Hold the support function to deformable screen area under function and unfolded state.
Invention content
The object of the present invention is to provide a kind of fold mechanism for flexible screen, it is whole to solve bending movement in the prior art
End cannot achieve under folded state under the receiving function and unfolded state of deformable screen area to deformable screen area
The problem of support function.
The technical proposal for solving the technical problem of the invention is:A kind of fold mechanism for flexible screen, including the
One shell and second shell, the first shell are rotatablely connected with the second shell, and the fold mechanism further includes for branch
First receiving support sliding part of the deformable screen area of support receiving flexible screen and the second receiving support sliding part, described first
Receiving support sliding part side be slidably connected with the first shell, it is described second receiving support sliding part side with it is described
Second shell is slidably connected, side of the first receiving support sliding part far from the first shell and the second receiving branch
Side of the support sliding part far from the second shell is mutually inserted, and the first shell and the second shell are distinguished in rotation
The first receiving support sliding part and the second receiving support sliding part sliding are driven by driving member.
Optionally, it is arranged in the upper end for the side that the first shell is slidably connected with the first receiving support sliding part
There is first rotating shaft portion, is provided in the upper end for the side that the second shell is slidably connected with the second receiving support sliding part
First rotating shaft mounting portion, opens up first rotating shaft hole on the first rotating shaft mounting portion, and the first rotating shaft portion passes through described
One shaft hole is inserted on the first rotating shaft mounting portion and relatively rotates;In the second shell and the second receiving branch
The lower end for the side that support sliding part is slidably connected is provided with the second shaft, is supported in the first shell and first receiving
The lower end for the side that sliding part is slidably connected is provided with the second shaft mounting portion, and second is opened up on the second shaft mounting portion
Shaft hole, second shaft are inserted on the second shaft mounting portion by second shaft hole and make opposite turn
It is dynamic.
Optionally, the first rotating shaft portion and second shaft respectively include ontology and setting is connected to the ontology
On rotation axis, offer mounting hole respectively on the ontology in the first rotating shaft portion and the ontology of second shaft,
Installation can respectively in mounting hole in mounting hole on the ontology in the first rotating shaft portion and on the ontology of second shaft
The driving member of rotation.
Optionally, it is respectively formed in the periphery of the first rotating shaft mounting portion and the periphery of the second shaft mounting portion
The gear structure of border.
Optionally, the lower end difference of the upper end of the first receiving support sliding part and the second receiving support sliding part
It is formed with rack structure along glide direction.
Optionally, the driving member include axis body, for the border with the first rotating shaft mounting portion gear structure and
The gear structure of the border of the second shaft mounting portion be meshed connection first gear and be used for and it is described first receiving
Rack structure and described second on support sliding part accommodate the second tooth for supporting the rack structure on sliding part to be meshed connection
Wheel, the first gear and the second gear are arranged and are fixed on the axis body.
Optionally, the side of the first receiving support sliding part far from the first shell is formed with multiple first and inserts
Pawl, the second receiving support side of the sliding part far from the second shell are formed with the multiple second slotting pawls, and multiple described the
One slotting pawl is alternateed with multiple second slotting pawls to be arranged and is mutually inserted.
Optionally, one end on each first slotting pawl for grafting is formed with the first container, and each described second
It inserts one end on pawl for grafting and is formed with the second container, first container is with second container described first
Shell is enclosed the receiving space of the deformable screen area for protecting flexible screen when being turned folding with the second shell.
Optionally, it is flat to be formed with the first support for position adjacent with first container on each first slotting pawl
Platform, the flat surface of first support platform and the plane of the notch of first container are in same plane;It is each described
The position adjacent with second container is formed with the second support platform on second slotting pawl, and second support platform is put down
The plane of table top and the notch of second container is in same plane;First support platform and second support are flat
Platform forms the deformable screen area for being used to support flexible screen when the first shell and second shell rotation are unfolded
Supporting surface.
Optionally, the side and described second that the first shell is slidably connected with the first receiving support sliding part
The side that shell is slidably connected with the second receiving support sliding part is respectively arranged with mounting groove, and the first receiving support is slided
It is respectively arranged with mounting portion corresponding with the mounting groove, and the installation on moving part and the second receiving support sliding part
Portion is mounted in the mounting groove and the relatively described mounting groove sliding in the mounting groove.
The fold mechanism for flexible screen for implementing the present invention, has the advantages that:The present invention's is used for flexible screen
Fold mechanism clever structure, it is of low cost, linked by mechanism, utilize fold mechanism relative rotation driving receiving support
The reciprocating movement of sliding part, it is final to realize in a folded configuration to right under the receiving function and unfolded state of deformable screen area
The support function of deformable screen area.
Description of the drawings
Fig. 1 is the status diagram of the fold mechanism unfolded state for flexible screen of the present invention;
Fig. 2 is the decomposition texture schematic diagram of the fold mechanism for flexible screen of the present invention;
Fig. 3 is the structural schematic diagram of the second shell of the fold mechanism for flexible screen of the present invention;
Fig. 4 is the schematic cross-sectional view of the line A-A of the fold mechanism for flexible screen of the present invention in Fig. 1;
Fig. 5 is the status diagram of the fold mechanism folded state for flexible screen of the present invention;
Fig. 6 is the schematic cross-sectional view of the line B-B of the fold mechanism for flexible screen of the present invention in Fig. 5;
Fig. 7 is the structural schematic diagram of the first receiving support sliding part of the fold mechanism for flexible screen of the present invention;
Fig. 8 is the partial enlarged view of the first receiving support sliding part of the fold mechanism for flexible screen of the present invention.
Specific implementation mode
With reference to the accompanying drawings and examples, the structure and specific implementation of the fold mechanism for flexible screen of the present invention are made
It further illustrates:
It should be appreciated that the specific embodiments described herein are merely illustrative of the present invention, it is not intended to limit the present invention.
The present invention relates to a kind of fold mechanism for flexible screen, which is mainly used in the flexibility of mobile terminal
Screen, such as mobile phone, IPAD.
As shown in figures 1 to 6, include first shell 1 and second shell 2 for the fold mechanism of flexible screen, first shell 1 with
Second shell 2 is rotatablely connected, and the both ends of flexible screen 100 are respectively fixedly connected in first shell 1 and second shell 2.With
Bending and exhibition can occur for the relative rotation of one shell 1 and second shell 2, the i.e. folding and expansion of mobile terminal, flexible screen 100
Flat, this subregion is the deformable screen area of flexible screen 100.
The fold mechanism further includes that the first receiving support of the deformable screen area for being used to support receiving flexible screen 100 is slided
The side of the receiving support sliding part 4 of moving part 3 and second, the first receiving support sliding part 3 is slidably connected with first shell 1, and second
The side of receiving support sliding part 4 is slidably connected with second shell 2, and first accommodates one of support sliding part 3 far from first shell 1
Side is mutually inserted with the second side of the receiving support sliding part 4 far from second shell 2, and first shell 1 and second shell 2 are rotating
When respectively pass through driving member 5 drive first receiving support sliding part 3 and second receiving support sliding part 4 slide.
As shown in Fig. 2, the upper end in the side that first shell 1 is slidably connected with the first receiving support sliding part 3 is provided with
First rotating shaft portion 11, the upper end that the side that support sliding part 4 is slidably connected is accommodated in second shell 2 and second are provided with first turn
Axis mounting portion 21 opens up first rotating shaft hole as shown in figure 3, with reference to the diagram of second shell 2 on first rotating shaft mounting portion 21
211, first rotating shaft portion 11 is inserted on first rotating shaft mounting portion 21 and is relatively rotated by first rotating shaft hole 211;Second
The lower end for the side that the receiving support sliding part 4 of shell 2 and second is slidably connected is provided with the second shaft 22, in first shell 1
The lower end for the side being slidably connected with the first receiving support sliding part 3 is provided with the second shaft mounting portion 12, pacifies in the second shaft
The second shaft hole (not indicated in figure) is opened up in dress portion 12, the second shaft 22 is inserted in the second shaft by the second shaft hole pacifies
In dress portion 12 and relatively rotate.Pass through matching for first rotating shaft hole 211 on first rotating shaft mounting portion 21 and first rotating shaft portion 11
Conjunction and the cooperation of the second shaft hole on the second shaft mounting portion 12 and the second shaft 22, first shell 1 and second shell 2
Between realize relatively rotate so that realize mobile terminal folding or expansion.
As shown in Figures 2 and 3, first rotating shaft portion 11 and the second shaft 22 respectively include ontology 221 and setting is connected to this
Rotation axis 222 on body 221 offers respectively on the ontology 222 in first rotating shaft portion 22 and the ontology 222 of the second shaft 22
Mounting hole 223, the peace on the interior ontology 221 with the second shaft 22 of mounting hole 223 on the ontology 221 in first rotating shaft portion 11
Dress installs rotatable driving member 5 respectively in hole 223.It is understood that the quantity of driving member 5 is two, and it is respectively set
Lower end in the upper end of first shell 1 and second shell 2.Wherein, the rotation axis 222 in first rotating shaft portion 11 is on ontology 221
It is arranged upward, driving member 5 is located at the upside of ontology 221;Rotation axis 222 on second shaft 22 is on ontology 221 towards dividing into
It sets, driving member 5 is located at the downside of ontology 221.It is understood that the structure of first rotating shaft portion 11 and the second shaft 22 is phase
With.
As shown in figure 3, with reference to the diagram of second shell 2, installed in the periphery of first rotating shaft mounting portion 21 and the second shaft
The periphery in portion 12 is respectively formed with the gear structure 212 of border, i.e., pacifies in the periphery of first rotating shaft mounting portion 21 and the second shaft
The periphery in dress portion 12 is respectively formed with the gear teeth of border.As shown in fig. 7, the diagram of sliding part 3 is supported with reference to the first receiving, first
The upper end of receiving support sliding part 3 and the lower end of the second receiving support sliding part 4 are formed with rack knot respectively along glide direction
Structure 31.It is understood that first rotating shaft mounting portion 21 and the structure of the second shaft mounting portion 12 are identical.
As illustrated in fig. 1 and 2, driving member 5 includes axis body 53, for the gear structure with 21 border of first rotating shaft mounting portion
212 and second shaft mounting portion 12 border gear structure 212 be meshed connection first gear 51 and be used for and first
The rack structure 31 on the receiving support sliding part 4 of rack structure 31 and second on receiving support sliding part 3 is meshed connection
Second gear 52, first gear 51 and second gear 52, which are arranged, to be fixed on axis body 53.Wherein driving member 5 is in first rotating shaft portion 11
It is rotatablely connected relative to ontology 221 in the mounting hole 223 on the ontology 221 of the second shaft 22.It is understood that being located at
The position of the first gear 51 of the driving member 5 of upper end is corresponding with the gear structure 212 of 21 border of first rotating shaft mounting portion, is located at
The position of the first gear 51 of the driving member 5 of lower end is corresponding with the gear structure 212 of border of the second shaft mounting portion 12;Position
It is corresponding with the rack structure 31 on the first receiving support sliding part 3 in 52 position of second gear of the driving member 5 of upper end;It is located at
52 position of second gear of the driving member 5 of lower end is corresponding with the rack structure 31 on the second receiving support sliding part 4.
By above structure it is understood that first shell 1 is identical as the structure of second shell 2.
When the relative rotation of first shell 1 and second shell 2 is opened and closed, 21 border of first rotating shaft mounting portion that is arranged thereon
The gear structure 212 of 12 border of gear structure 212 and the second shaft mounting portion can be driven by the first gear 51 on driving member 5
Dynamic driving member 5 rotates, and then the second gear 52 on driving member 5 can support the rack structure on sliding part 3 by the first receiving
31 and second receiving support sliding part 4 on rack structure 31 driving first receiving support saddle 3 and second receiving support sliding
The movement of part 4.
As shown in Fig. 2, the first side of the receiving support sliding part 3 far from first shell 1 is formed with the multiple first slotting pawls 10,
Second receiving support side of the sliding part 4 far from second shell 2 is formed with the multiple second slotting pawls 20, multiple first slotting pawls 10 with it is more
A second slotting pawl 20, which alternates, to be arranged and is mutually inserted.First slotting pawl 10 and the second slotting pawl 20 are interspersed, and avoid the first receipts
Hold causes to interfere when the support receiving support sliding part 4 of sliding part 3 and second is opposite to be slided.
As shown in figure 3, with reference to the diagram of second shell 2, first shell 1 is slidably connected with the first receiving support sliding part 3
Side and the side that is slidably connected of the receiving support sliding part 4 of second shell 2 and second be respectively arranged with mounting groove 23, first
Mounting portion corresponding with mounting groove 23 is respectively arranged with (in figure on the receiving support receiving support sliding part 4 of sliding part 3 and second
Do not indicate), and mounting portion is mounted in mounting groove 23 and opposite mounting groove 23 slides in mounting groove 23.
As shown in figs 6-8, wherein Fig. 7 and Fig. 8 is the diagram of the first receiving support sliding part 3, each first slotting pawl 10
Upper one end for grafting is formed with the first container 101, each second one end for inserting on 20 pawls for grafting is formed with the
Two containers (do not indicate) in figure.As shown in fig. 6, the first container 101 and the second container are in first shell 1 and second shell
2 are enclosed the receiving space 200 of the deformable screen area for protecting flexible screen 100 when turning folding.First container
101 and the second container substantially semicircular in shape respectively, can also be in half elliptic etc..I.e. in a folded configuration, the first receiving branch
The support receiving support sliding part 4 of sliding part 3 and second retracts the mounting groove 23 of first shell 1 and second shell 2, the first receiving respectively
Slot 101 and the second container surround circular receiving space 200, protect the deformable screen area of flexible screen 100.
As Figure 7-8, position adjacent with the first container 101 on each first slotting pawl 10 is formed with first
Platform 102 is supportted, the flat surface of the first support platform 102 and the plane of the notch of the first container 101 are in same plane;It is each
The position adjacent with the second container is formed with the second support platform (not indicated in figure), the second support on a second slotting pawl 20
The flat surface of platform and the plane of the notch of the second container are in same plane.Wherein, as shown in figure 4, the first support platform
102 and second support platform formed when first shell 1 and the rotation of second shell 2 are unfolded and be used to support the variable of flexible screen 100
The supporting surface 300 in shaped screen region.I.e. in the deployed state, the first support platform 102 and the second support platform are interlaced, branch
Prop up the deformable screen area of flexible screen 100.
It is understood that the first slotting pawl 10 is identical with the structure of the second slotting pawl 20.It will be further understood that first
Receiving support sliding part 3 is identical with the structure of the second receiving support sliding part 4.
The clever structure of the fold mechanism for flexible screen of the present invention, it is of low cost, it is linked by mechanism, utilizes folding
The reciprocating movement of the relative rotation driving receiving support sliding part of mechanism, it is final to realize in a folded configuration to deformable screen area
To the support function of deformable screen area under the receiving function and unfolded state in domain.
The embodiments of the present invention are for illustration only, can not represent the quality of embodiment.
It these are only the preferred embodiment of the present invention, be not intended to limit the scope of the invention, it is every to utilize this hair
Equivalent structure or equivalent flow shift made by bright specification and accompanying drawing content is applied directly or indirectly in other relevant skills
Art field, is included within the scope of the present invention.
Claims (10)
1. a kind of fold mechanism for flexible screen, including first shell (1) and second shell (2), the first shell (1) with
Second shell (2) rotation connection, which is characterized in that the fold mechanism further includes being used to support receiving flexible screen (100)
Deformable screen area first receiving support sliding part (3) and second receiving support sliding part (4), it is described first receiving
Support sliding part (3) side be slidably connected with the first shell (1), it is described second receiving support sliding part (4) side and
The second shell (2) is slidably connected, it is described first receiving support sliding part (3) far from the first shell (1) side with
The second receiving support sliding part (4) is mutually inserted far from the side of the second shell (2), the first shell (1) and
The second shell (2) drives the first receiving support sliding part (3) and described the by driving member (5) respectively in rotation
Two receiving support sliding parts (4) slide.
2. fold mechanism according to claim 1, which is characterized in that accommodated in the first shell (1) and described first
The upper end of side that support sliding part (3) is slidably connected is provided with first rotating shaft portion (11), the second shell (2) with it is described
The upper end for the side that second receiving support sliding part (4) is slidably connected is provided with first rotating shaft mounting portion (21), described first
First rotating shaft hole (211) is opened up on shaft mounting portion (21), the first rotating shaft portion (11) passes through the first rotating shaft hole (211)
It is inserted on the first rotating shaft mounting portion (21) and relatively rotates;In the second shell (2) and the second receiving branch
The lower end of side that support sliding part (4) is slidably connected is provided with the second shaft (22), in the first shell (1) and described the
The lower end for the side that one receiving support sliding part (3) is slidably connected is provided with the second shaft mounting portion (12), at described second turn
The second shaft hole is opened up on axis mounting portion (12), second shaft (22) is inserted in described by second shaft hole
On two shaft mounting portions (12) and relatively rotate.
3. fold mechanism according to claim 2, which is characterized in that the first rotating shaft portion (11) and second shaft
Portion (22) respectively includes ontology (221) and setting is connected to the rotation axis (222) on the ontology (221), at described first turn
Mounting hole (223) is offered respectively on the ontology (221) of axle portion (11) and the ontology (221) of second shaft (22),
The interior ontology (221) with second shaft (22) of mounting hole (223) on the ontology (221) of the first rotating shaft portion (11)
On mounting hole (223) in the rotatable driving member (5) is installed respectively.
4. fold mechanism according to claim 3, which is characterized in that the periphery of the first rotating shaft mounting portion (21) with
The periphery of the second shaft mounting portion (12) is respectively formed with the gear structure (212) of border.
5. fold mechanism according to claim 4, which is characterized in that the upper end of the first receiving support sliding part (3)
With the lower end of the second receiving support sliding part (4) rack structure (31) is formed with respectively along glide direction.
6. fold mechanism according to claim 5, which is characterized in that the driving member (5) include axis body (53), for
The tooth of the border of the gear structure (212) of the border of the first rotating shaft mounting portion (21) and the second shaft mounting portion (12)
Wheel construction (212) be meshed connection first gear (51) and be used for and first receiving support sliding part (3) on tooth
Rack structure (31) in structure (31) and the second receiving support sliding part (4) is meshed the second gear of connection
(52), the first gear (51) and the second gear (52), which are arranged, is fixed on the axis body (53).
7. fold mechanism according to claim 1, which is characterized in that the first receiving support sliding part (3) is far from institute
The side for stating first shell (1) is formed with the multiple first slotting pawls (10), and the second receiving support sliding part (4) is far from described the
The side of two shells (2) is formed with the multiple second slotting pawls (20), multiple first slotting pawls (10) and multiple second slotting pawls
(20) it alternates and is arranged and is mutually inserted.
8. fold mechanism according to claim 7, which is characterized in that for grafting on each first slotting pawl (10)
One end is formed with the first container (101), and one end that grafting is used on each second slotting pawl (20) is formed with the second receiving
Slot, first container (101) rotate with second container in the first shell (1) and the second shell (2)
The receiving space (200) of the deformable screen area for protecting flexible screen (100) is enclosed when folding.
9. fold mechanism according to claim 8, which is characterized in that with described first on each first slotting pawl (10)
The adjacent position of container (101) is formed with the first support platform (102), the flat surface of first support platform (102)
It is in same plane with the plane of the notch of first container (101);With described on each second slotting pawl (20)
The adjacent position of two containers is formed with the second support platform, and the flat surface of second support platform is accommodated with described second
The plane of the notch of slot is in same plane;First support platform (102) is with second support platform described first
Shell (1) forms the branch for the deformable screen area for being used to support flexible screen (100) when being unfolded with the second shell (2) rotation
Support face (300).
10. fold mechanism according to claim 1, which is characterized in that the first shell (1) and the first receiving branch
The side and the second shell (2) that support sliding part (3) is slidably connected are slided with the second receiving support sliding part (4) to be connected
The side connect is respectively arranged with mounting groove (23), the first receiving support sliding part (3) and the second receiving support sliding
Mounting portion corresponding with the mounting groove (23) is respectively arranged on part (4), and the mounting portion is mounted on the mounting groove
(23) the relatively described mounting groove (23) is slided in and in the mounting groove (23).
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201711202574.7A CN107831836A (en) | 2017-11-27 | 2017-11-27 | A kind of fold mechanism for flexible screen |
CN2017112025747 | 2017-11-27 |
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CN108803779A true CN108803779A (en) | 2018-11-13 |
CN108803779B CN108803779B (en) | 2021-10-15 |
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Application Number | Title | Priority Date | Filing Date |
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CN201711202574.7A Withdrawn CN107831836A (en) | 2017-11-27 | 2017-11-27 | A kind of fold mechanism for flexible screen |
CN201810380670.9A Active CN108803779B (en) | 2017-11-27 | 2018-04-25 | Folding mechanism for flexible screen |
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Application Number | Title | Priority Date | Filing Date |
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CN201711202574.7A Withdrawn CN107831836A (en) | 2017-11-27 | 2017-11-27 | A kind of fold mechanism for flexible screen |
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CN108803779B (en) | 2021-10-15 |
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