CN210978172U - Resistance mechanism applied to inward-folding flexible screen terminal hinge - Google Patents

Resistance mechanism applied to inward-folding flexible screen terminal hinge Download PDF

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Publication number
CN210978172U
CN210978172U CN201920939202.0U CN201920939202U CN210978172U CN 210978172 U CN210978172 U CN 210978172U CN 201920939202 U CN201920939202 U CN 201920939202U CN 210978172 U CN210978172 U CN 210978172U
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CN
China
Prior art keywords
connecting plate
supporting frame
flexible screen
resistance mechanism
resistance
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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.)
Expired - Fee Related
Application number
CN201920939202.0U
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Chinese (zh)
Inventor
刘小杰
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.)
Anfano Feifeng Anji Communications Products Co ltd
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Anfano Feifeng Anji Communications Products Co ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Priority to CN201920939202.0U priority Critical patent/CN210978172U/en
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Publication of CN210978172U publication Critical patent/CN210978172U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model provides a resistance mechanism applied to a terminal hinge of an inward-folding flexible screen, which comprises a middle supporting structure, wherein the middle supporting structure is connected with a left supporting frame and a right supporting frame through a synchronizing mechanism, and the hinge is provided with a left connecting plate and a right connecting plate which are respectively connected with the left supporting frame and the right supporting frame in a sliding way; sliding guide structures are arranged between the left supporting frame and the left connecting plate and between the right supporting frame and the right connecting plate; the resistance mechanism is arranged at the sliding guide structure and provides friction resistance to the front and back sliding. The utility model discloses utilize the slip guide structure to set up resistance mechanism, this mechanism can be used for providing the effect of stall function at any time or only play the effect of providing the operation and feeling at any time, has solved sliding part's clearance problem, and the resistance is adjusted more simple and conveniently moreover.

Description

Resistance mechanism applied to inward-folding flexible screen terminal hinge
Technical Field
The utility model relates to a flexible screen mobile terminal of infolding and hinge thereof.
Background
The current flexible screen mobile terminal of infolding, in order to improve the protection to the flexible screen when flexible screen terminal is folded, it has sliding part, but sliding part's movement clearance is very difficult to handle rationally.
Disclosure of Invention
The utility model aims to solve the technical problem that a be applied to resistance mechanism of flexible screen terminal hinge of infolding is provided, the multifunctionalization of structure is given in the clearance of solution sliding part that can be reasonable. Therefore, the utility model adopts the following technical scheme:
a resistance mechanism applied to a terminal hinge of an inward-folding flexible screen comprises a middle supporting structure, wherein the middle supporting structure is connected with a left supporting frame and a right supporting frame through a synchronization mechanism; sliding guide structures are arranged between the left supporting frame and the left connecting plate and between the right supporting frame and the right connecting plate; the resistance mechanism is arranged at the sliding guide structure and provides friction resistance to the front and back sliding.
On the basis of adopting above-mentioned technical scheme, the utility model discloses still can adopt following further technical scheme, or to these further technical scheme combined use:
the guide structure comprises a guide shaft and a guide sleeve matched with the guide shaft.
The structure for increasing the resistance comprises a reed pipe, the reed pipe is connected to the left side connecting plate and the right side connecting plate respectively, the guide shaft is connected to the left side supporting frame and the right side supporting frame, and the reed pipe clamps the guide shaft.
The guide sleeve and the reed pipe are connected to the side edges of the left connecting plate and the right connecting plate respectively, and the guide sleeve is arranged around the reed pipe.
And the left casing and the right casing of the flexible screen terminal are fixedly connected with the left connecting plate and the right connecting plate respectively.
The left connecting plate and the right connecting plate are further rotatably connected with the middle supporting structure through cranks respectively.
Because of adopting the technical scheme of the utility model, the utility model discloses utilize the slip guide structure to set up resistance mechanism, this mechanism can be used for providing stall at any time the effect of locate function at any time or only play the effect of providing the operation and feeling, has solved sliding part's clearance problem, and the resistance is adjusted more simple and conveniently moreover.
Drawings
Fig. 1 is an exploded view of an embodiment of a hinge provided by the present invention.
Fig. 2 is a schematic view of an embodiment of the hinge provided by the present invention.
Fig. 3 is a schematic view of an embodiment of the hinge provided by the present invention in a flattened state with the left movable plate and the right movable plate hidden.
Fig. 4 is a schematic view of an embodiment of the hinge provided by the present invention in a folded state.
Fig. 5 is a cross-sectional view of the flexible screen terminal in the flattened state provided by the present invention.
FIG. 6 is a schematic view of the embodiment of FIG. 4 in a flattened state.
Fig. 7 is an enlarged view of a portion a in fig. 5.
FIG. 8 is a schematic view of the combination of the left and right side mounts and the synchronization mechanism of the embodiment of FIG. 1.
Fig. 9 is a cross-sectional view of the flexible screen terminal provided by the present invention in a folded state.
Fig. 10 is a schematic view of an embodiment of a sliding connection between a connection board and a support frame in a flexible screen terminal provided by the present invention
Detailed Description
Reference is made to the accompanying drawings. The utility model provides a be applied to flexible screen terminal hinge of infolding, including middle bearing structure 1, middle bearing structure sets up the support chassis, and its outside is the decorative cover, and its top surface sets up flexible screen holding surface 10, and middle bearing structure passes through lazytongs and connects left side support frame 31 and right side support frame 32 for left side support frame 31 and the synchronous antiport of right side support frame 32.
The hinge is provided with a left connecting plate 51 and a right connecting plate 52 which are respectively connected with the left supporting frame 31 and the right supporting frame 32 in a sliding way; sliding guide structures are arranged between the left supporting frame 31 and the left connecting plate 51 and between the right supporting frame 32 and the right connecting plate 52; the resistance mechanism is arranged at the sliding guide structure. The left connecting plate 51 and the right connecting plate 52 are respectively used for installing and connecting a left casing 71 and a right casing 72 of the flexible screen terminal, and the left connecting plate 51 and the right connecting plate 52 are respectively provided with connecting positions, such as a plurality of screw connecting positions 53, for installing and connecting the left casing 71 and the right casing 72 of the flexible screen terminal. The flexible screen 100 is located at the inner side of the mobile terminal, the left casing 71 and the left connecting plate 51 are connected through screws, the right casing 72 and the right connecting plate 52 are connected, the flexible screen is fixedly connected with the left casing 71 and the right casing 72 respectively, when the flexible screen terminal is unfolded, the flexible screen is supported by the supporting plates in the left casing and the right casing at two sides, the middle part of the flexible screen supporting surface 10 is provided with the left movable supporting plate 61 and the right movable supporting plate 62, and when the flexible screen terminal is folded from the unfolded state, two ends of the flexible screen can move together with the left casing 71 and the right casing 72 respectively instead of relative movement.
The guide structure comprises a guide shaft 33 and a guide sleeve 54 matched with the guide shaft 33, and the guide sleeve is arranged on the side edges of the left connecting plate 51 and the right connecting plate 52.
The resistance mechanism comprises a reed pipe 55, the reed pipe 55 is respectively connected to the side edges of the left connecting plate 51 and the right connecting plate 52, the guide sleeves 54 are respectively arranged in front of and behind the reed pipe 55, the guide shafts 33 are respectively connected to the left supporting frame and the right supporting frame, the reed pipe 55 clamps the guide shafts 33, and different frictional resistance can be obtained only by adjusting the length of the reed pipe 55.
The hinge is further provided with a left crank 41 and a right crank 42, the left crank 41 and the right crank 42 are both rotationally connected with the middle supporting structure, a left connecting plate 51 and a right connecting plate 52 are rotationally connected with the left crank 41 and the right crank 42 respectively, the positions of the rotation centers of the left crank and the left supporting frame are configured to be in the process of folding the flexible screen terminal from flattening, the left connecting plate 51 (with the left casing 71) is driven to move towards the direction far away from the middle supporting structure 1, and the left connecting plate 51 (with the left casing 71) moves towards the middle supporting structure 1 in the process of folding the flexible screen terminal from flattening.
The positions of the rotational centers of the right crank 42 and the right support frame 32 are configured such that the right connecting plate 52 (with the right housing 72) is urged to move away from the intermediate support structure 1 during the process from being flattened to being folded, and the right connecting plate 52 (with the right housing 72) moves toward the intermediate support structure 1 during the process from being flattened to being folded.
The rotation center B1 of the left crank and the rotation center B2 of the right crank are both higher than the flexible screen supporting surface 10 of the middle supporting structure 1 and close to or at the neutral layer height of the flexible screen. The neutral layer height of the flexible screen refers to a position height of the flexible screen, in the thickness direction of the flexible screen, which is not extended nor shortened when the flexible screen is bent and unfolded. The left crank 41 and the right crank 42 can be connected with the circular arc guide rail 44 on the middle support structure 1 through the circular arc slider 43, the circle centers of the circular arc slider 43 and the circular arc guide rail 44 are both higher than the flexible screen support surface 10 of the middle support structure, and when the flexible screen terminal is flattened, the height of the circular arc slider 43 is not higher than the height of the flexible screen support surface 10.
The movement mechanism is also provided with a left movable support plate 61 and a right movable support plate 62 which are respectively rotatably connected with the left side and the right side of the upper side of the middle support structure 1, and the reference numeral 63 is a connecting shaft; left side activity support plate 61 and right side activity support plate 62 still respectively with left side support frame 31 and right side support frame 32 swing joint, left side support frame 31 and right side support frame 32 are provided with the spacing hole of direction 34, left side activity support plate 61 and right side activity support plate 62 set up with the spacing hole of direction 34 complex uide pin 63, when the terminal exhibition of flexible screen is ordinary, the pore wall of the spacing hole of direction 34 supports uide pin 63.
The left crank 41 and the right crank 42 are bent downward, and the outer ends of the left crank and the right crank extend into the lower parts of the left movable support plate 61 and the right movable support plate 22 respectively and are connected with the left connecting plate 51 and the right connecting plate 52 through the shaft 45, and the left connecting plate 51 and the right connecting plate 52 are also positioned below the left movable support plate 61 and the right movable support plate 62 respectively.
The synchronizing mechanism can adopt a gear connecting structure and comprises a gear connecting frame 2, the gear connecting frame 2 is arranged at the end part of the middle supporting structure 1, the synchronizing mechanism is provided with 4 gears 21, 22, 23 and 24 which are sequentially meshed and connected, and gear shafts of the gears 21 and 24 are respectively connected with the left supporting frame 31 and the right supporting frame 32 to serve as the rotating centers of the left supporting frame 31 and the right supporting frame 32. The rotating centers of the left supporting frame and the right supporting frame are lower than the flexible screen supporting surface 10. The rotational centers of the left and right side support frames are located closer to the center line of the center support structure 1 than the rotational centers of the left and right side cranks 41 and 42 in the left-right direction, or the rotational centers of the left and right side cranks 41 and 42 are located outside than the rotational centers of the left and right side support frames 31 and 32 in the left-right direction.
The above is only the specific embodiment of the present invention, but the structural features of the present invention are not limited thereto, and it is anticipated that the resistance mechanism of the present invention can be applied to various flexible screen mobile terminals with sliding parts, and any person skilled in the art is in the field of the present invention, and the changes or modifications made are all covered in the protection scope of the present invention.

Claims (6)

1. A resistance mechanism applied to a terminal hinge of an inward-folding flexible screen comprises a middle supporting structure, wherein the middle supporting structure is connected with a left supporting frame and a right supporting frame through a synchronization mechanism; sliding guide structures are arranged between the left supporting frame and the left connecting plate and between the right supporting frame and the right connecting plate; the resistance mechanism is arranged at the sliding guide structure and provides friction resistance to the front and back sliding.
2. The resistance mechanism as claimed in claim 1, wherein the guide structure comprises a guide shaft and a guide sleeve engaged with the guide shaft.
3. The resistance mechanism applied to the terminal hinge of the inward-folding flexible screen as claimed in claim 2, wherein the resistance mechanism comprises a reed pipe, the reed pipe is respectively connected to the left connecting plate and the right connecting plate, the guide shaft is connected to the left supporting frame and the right supporting frame, and the reed pipe clamps the guide shaft.
4. The resistance mechanism applied to the terminal hinge of the inward-folding flexible screen as claimed in claim 2, wherein the guide sleeve and the spring tube are respectively connected to the side edges of the left connecting plate and the right connecting plate, and the guide sleeve is arranged at the front and the rear of the spring tube.
5. The resistance mechanism as claimed in claim 1, wherein the left and right casings of the flexible screen terminal are fixedly connected to the left and right connection plates, respectively.
6. The resistance mechanism as claimed in claim 1, wherein said left and right side link plates are further rotatably connected to the intermediate support structure by means of a crank, respectively.
CN201920939202.0U 2019-06-20 2019-06-20 Resistance mechanism applied to inward-folding flexible screen terminal hinge Expired - Fee Related CN210978172U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920939202.0U CN210978172U (en) 2019-06-20 2019-06-20 Resistance mechanism applied to inward-folding flexible screen terminal hinge

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920939202.0U CN210978172U (en) 2019-06-20 2019-06-20 Resistance mechanism applied to inward-folding flexible screen terminal hinge

Publications (1)

Publication Number Publication Date
CN210978172U true CN210978172U (en) 2020-07-10

Family

ID=71418854

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201920939202.0U Expired - Fee Related CN210978172U (en) 2019-06-20 2019-06-20 Resistance mechanism applied to inward-folding flexible screen terminal hinge

Country Status (1)

Country Link
CN (1) CN210978172U (en)

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CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20200710

CF01 Termination of patent right due to non-payment of annual fee