CN114546035A - Electronic equipment - Google Patents

Electronic equipment Download PDF

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Publication number
CN114546035A
CN114546035A CN202011330737.1A CN202011330737A CN114546035A CN 114546035 A CN114546035 A CN 114546035A CN 202011330737 A CN202011330737 A CN 202011330737A CN 114546035 A CN114546035 A CN 114546035A
Authority
CN
China
Prior art keywords
fixed pulley
sliding
assembly
piece
electronic device
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.)
Pending
Application number
CN202011330737.1A
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Chinese (zh)
Inventor
韦炜
杨松龄
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Shenzhen Royole Technologies Co Ltd
Original Assignee
Shenzhen Royole Technologies Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Shenzhen Royole Technologies Co Ltd filed Critical Shenzhen Royole Technologies Co Ltd
Priority to CN202011330737.1A priority Critical patent/CN114546035A/en
Publication of CN114546035A publication Critical patent/CN114546035A/en
Pending legal-status Critical Current

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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F1/00Details not covered by groups G06F3/00 - G06F13/00 and G06F21/00
    • G06F1/16Constructional details or arrangements
    • G06F1/1613Constructional details or arrangements for portable computers
    • G06F1/1633Constructional details or arrangements of portable computers not specific to the type of enclosures covered by groups G06F1/1615 - G06F1/1626
    • G06F1/1662Details related to the integrated keyboard
    • G06F1/1666Arrangements for reducing the size of the integrated keyboard for transport, e.g. foldable keyboards, keyboards with collapsible keys
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F1/00Details not covered by groups G06F3/00 - G06F13/00 and G06F21/00
    • G06F1/16Constructional details or arrangements
    • G06F1/1613Constructional details or arrangements for portable computers
    • G06F1/1633Constructional details or arrangements of portable computers not specific to the type of enclosures covered by groups G06F1/1615 - G06F1/1626
    • G06F1/1637Details related to the display arrangement, including those related to the mounting of the display in the housing
    • G06F1/1652Details 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
    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09FDISPLAYING; ADVERTISING; SIGNS; LABELS OR NAME-PLATES; SEALS
    • G09F9/00Indicating arrangements for variable information in which the information is built-up on a support by selection or combination of individual elements
    • G09F9/30Indicating arrangements for variable information in which the information is built-up on a support by selection or combination of individual elements in which the desired character or characters are formed by combining individual elements
    • G09F9/301Indicating arrangements for variable information in which the information is built-up on a support by selection or combination of individual elements in which the desired character or characters are formed by combining individual elements flexible foldable or roll-able electronic displays, e.g. thin LCD, OLED

Abstract

The embodiment of the invention discloses electronic equipment, which comprises a flexible piece, a shell component, a sliding cover component and a transmission mechanism, wherein the transmission mechanism is respectively connected with the shell component and the sliding cover component and is used for driving the sliding cover component to slide relative to the shell component so as to enable the electronic equipment to be switched between a closed state and an open state; the sliding cover assembly comprises a sliding piece and a supporting piece, the sliding piece is connected with the shell assembly in a sliding mode, and a track groove for the supporting piece to move is formed in the sliding piece; the support part is used for supporting at least part of the flexible part, a first end of the support part is connected with the shell assembly, and a second end of the support part is slidably arranged on the sliding part. Through the mode, the embodiment of the invention provides a new using mode, and can adapt to more diversified using requirements of electronic equipment.

Description

Electronic equipment
Technical Field
The embodiment of the invention relates to the technical field of terminal equipment, in particular to electronic equipment.
Background
With the progress of science and technology, electronic devices such as mobile phones, palm computers, and notebooks are widely used in daily life and work, and the electronic devices can be operated through a touch screen or a keyboard. For some mobile electronic devices, the terminal products with small screens are difficult to meet the office and entertainment requirements of users, and the terminal products with large screens are not convenient to carry although the terminal products with large screens are good in use experience.
At present, flexible ultrathin flexible elements such as a flexible screen and a flexible keyboard are available on the market, and a flat plate type structure cannot adapt to the flexible elements, so that the flexible elements are usually bent or unfolded by adopting a deformable structure. The current common deformable structure mainly comprises an inward folding structure and an outward folding structure, and the two modes are that the flexible piece is bent in a folding mode. However, these two methods still cannot satisfy the requirement of more diversified flexible members.
Disclosure of Invention
The technical problem mainly solved by the embodiments of the present invention is to provide an electronic device, which can be switched between a storage state and an expansion state, so as to store or expand at least a part of a flexible member.
In order to achieve the above object, one technical solution adopted by the embodiments of the present invention is: an electronic device is provided, which comprises a flexible member, a shell assembly, a sliding cover assembly and a transmission mechanism;
the transmission mechanism is respectively connected with the shell assembly and the sliding cover assembly, and is used for driving the sliding cover assembly to slide relative to the shell assembly so as to enable the electronic equipment to be switched between a closed state and an open state;
the sliding cover assembly comprises a sliding piece and a supporting piece, the sliding piece is connected with the shell assembly in a sliding mode, and a track groove for the supporting piece to move is formed in the sliding piece;
the supporting member is used for supporting at least part of the flexible member, a first end of the supporting member is connected with the shell assembly, a second end of the supporting member is slidably arranged on the sliding member, when the transmission mechanism drives the sliding cover assembly to slide relative to the shell assembly, the second end of the supporting member slides relative to the sliding member in the track groove, and the at least part of the flexible member is accommodated or unfolded along with the supporting member.
Different from the prior art, the electronic device according to the embodiment of the invention is slidably connected with the housing assembly through the sliding part, one end of the supporting part is connected with the housing assembly, the other end of the supporting part can slide relative to the sliding part, and at least part of the flexible part is supported by the supporting part and can be accommodated or unfolded along with the supporting part, so that a new use mode is provided, and the electronic device can adapt to more diversified use requirements.
Drawings
In order to more clearly illustrate the technical solutions of the embodiments of the present application, the drawings required to be used in the embodiments of the present application will be briefly described below. It is obvious that the drawings described below are only some embodiments of the application, and that for a person skilled in the art, other drawings can be derived from them without inventive effort.
Fig. 1 is a schematic structural diagram of an electronic device in a closed state according to an embodiment of the present invention;
FIG. 2 is an exploded view of an electronic device according to an embodiment of the invention;
FIG. 3 is a schematic structural diagram of an electronic device in an open state according to an embodiment of the present invention;
FIG. 4 is a schematic structural diagram of an electronic device according to an embodiment of the present invention, in which a flexible member is hidden in an open state;
FIG. 5 is a cross-sectional view of an electronic device hiding a flexible member in an open state according to an embodiment of the invention;
FIG. 6 is a cross-sectional view of an electronic device hiding a flexible member in a closed state according to an embodiment of the invention;
FIG. 7 is a schematic structural diagram of a transmission structure of an electronic device according to an embodiment of the invention;
fig. 8 is a sectional view of a slider of an electronic apparatus according to an embodiment of the present invention;
FIG. 9 is a schematic structural diagram of a support of an electronic device according to an embodiment of the invention;
FIG. 10 is an enlarged view of portion A of FIG. 9;
fig. 11 is a schematic view illustrating a connection relationship between a support member and a flexible member of an electronic device according to an embodiment of the present invention;
FIG. 12 is an exploded view of a hidden flexible member of an electronic device in accordance with an embodiment of the present invention;
fig. 13 is a schematic structural diagram of an electronic device in an open state from another viewing angle according to an embodiment of the present invention;
fig. 14 is a partially enlarged view B of fig. 13.
Detailed Description
In order to facilitate an understanding of the present application, the present application is described in more detail below with reference to the accompanying drawings and specific embodiments. It will be understood that when an element is referred to as being "secured to" another element, it can be directly on the other element or intervening elements may also be present. When an element is referred to as being "connected" to another element, it can be directly connected to the other element or intervening elements may be present. The terms "vertical," "horizontal," "left," "right," and the like as used herein are for descriptive purposes only.
Unless defined otherwise, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this application belongs. The terminology used in the description of the present application is for the purpose of describing particular embodiments only and is not intended to be limiting of the application. As used herein, the term "and/or" includes any and all combinations of one or more of the associated listed items.
In addition, the technical features mentioned in the different embodiments of the present application described below may be combined with each other as long as they do not conflict with each other.
Referring to fig. 1 and fig. 2, an electronic device 10 according to an embodiment of the present invention includes a flexible member 100, a housing assembly 200, a sliding cover assembly 300, and a transmission mechanism 400; the housing assembly 200 has a containing cavity 201 and an opening 202 communicated with the containing cavity 201, and the sliding cover assembly 300 is at least partially contained in the containing cavity 201 through the opening 202; the transmission assembly 400 is located in the accommodating cavity 201 and is connected to the housing assembly 200 and the sliding cover assembly 300 respectively, and in this embodiment, the transmission assembly 400 is fixed in the housing assembly 200. The transmission assembly 400 is used for driving the sliding cover assembly 300 to slide relative to the housing assembly 200 to switch the electronic device 10 between the closed state and the open state, so as to accommodate or expand at least part of the flexible member 100.
The flexible component 100 may be a flexible electronic device such as a flexible display screen, a flexible touch screen, a flexible keyboard, and a flexible sensing module. For example, the flexible member 100 is a flexible keyboard, the sliding cover assembly 300 is used for supporting the flexible keyboard, and when the electronic device 10 is in the closed state, almost the entire flexible keyboard is accommodated in the accommodating cavity 201 along with the sliding cover assembly 300; when the electronic device 10 is in the open state, the flexible keyboard is in the unfolded state with the slide cover assembly 300 opened.
For another example, the flexible member 100 is a flexible screen, and the housing assembly 200 and the sliding cover assembly 300 support the flexible screen together, as shown in fig. 1, when the electronic device 10 is in the closed state, a part of the flexible screen is accommodated in the accommodating cavity 201 along with the sliding cover assembly 300; as shown in fig. 3, when the electronic device 10 is in the open state, the portion of the flexible screen is in the expanded state as the slider assembly 300 is opened.
When the electronic device 10 is in the closed state, the flexible member 100 is at least partially wound from the front side of the sliding cover assembly 300 to the back side close to the sliding cover assembly 300, and is accommodated in the accommodating cavity 201 of the housing assembly 200. Specifically, the at least part of the flexible member 100 is located inside the sliding cover assembly 300 near the back of the sliding cover assembly 300. When the electronic device 10 is in the open state, the at least part of the flexible member 100 protrudes from the accommodating cavity 201 of the housing assembly 200 and is unfolded on the front side of the electronic device 10. Specifically, the at least part of the flexible member 100 also extends from the inside of the sliding cover assembly 300 and is unfolded at the front side of the sliding cover assembly 300.
For convenience of description, in the present embodiment, the flexible member supported by the housing assembly 200 is denoted as a non-bending region 100A, and the flexible member supported by the sliding cover assembly 300 is denoted as a bending region 100B; it should be understood from the above description that in some embodiments, the non-inflection region 100A is not necessary. In the present embodiment, the non-bending region 100A and the bending region 100B are a complete touch module or a display module. In other embodiments, the non-bending region 100A and the bending region 100B may be two separate modules, for example, the non-bending region 100A and the bending region 100B are two separate touch modules or display modules, and the non-bending region 100A and the bending region 100B are integrally connected. Alternatively, the non-bending region 100A may be a non-flexible member, i.e., the non-bending region 100A may not be bent.
Referring to fig. 4 and 5, the sliding cover assembly 300 includes a sliding member 310 and a supporting member 320, the sliding member 310 is slidably connected to the housing assembly 200, and the sliding member 310 is provided with a track groove 3101 for the supporting member 320 to move; the supporting member 320 is used for supporting the bending region 100B of the flexible member, a first end 321 of the supporting member 320 is connected to the housing assembly 200, a second end 322 of the supporting member 320 is slidably disposed on the slider 310, and when the sliding cover assembly 300 is driven by the transmission mechanism to slide relative to the housing assembly 200, the second end 322 of the supporting member 320 moves in the track groove 3101 relative to the slider 310.
The supporting member 320 is a flat plate structure, and the supporting member 320 includes a bending section (not shown), the bending section is bent at a bending position, so that the second end 322 of the supporting member 320 bends toward the back side of the supporting member 320, and the bending position of the supporting member 320 moves relative to the housing assembly 200 as the sliding cover assembly 300 and the housing assembly 200 approach or move away from each other.
Specifically, the sliding member 310 moves outward relative to the housing assembly under the driving of the transmission mechanism 400, so that the electronic device 10 is switched from the closed state to the open state, since the entire sliding member 310 moves away from the accommodating cavity 201, and the first end 321 of the supporting member 320 is a fixed end connected to the housing assembly 200, the second end 322 of the supporting member 320 moves away from the accommodating cavity 201 at double speed in the track groove 3101, and the bending position of the supporting member 320 increases in distance from the housing assembly 200, i.e., the first end 321 of the supporting member 320, so that the supporting area of the supporting member 320 increases, and the bending region 100B of the flexible member is in the unfolded state.
As shown in fig. 6, when it is required to receive the bending region 100B of the flexible member, the sliding member 310 moves inward relative to the housing assembly under the driving of the transmission mechanism 400, so that the electronic device 10 is switched from the open state to the closed state, and similarly, since the entire sliding member 310 moves toward the accommodating chamber 201 and the first end 321 of the supporting member 320 is a fixed end connected to the housing assembly 200, the second end 322 of the supporting member 320 moves toward the accommodating chamber 201 at double speed in the track groove 3101, and the distance between the bending position of the supporting member 320 and the housing assembly 200, that is, the first end 321 of the supporting member 320, is reduced, so that the supporting area of the supporting member 320 is reduced, and thus the bending region 100B of the flexible member is accommodated in the accommodating chamber 201 along with the supporting member 320.
It can be seen that the movement of the supporter 320 in the track groove 3101 with respect to the slider 310 is a process of changing the bending position of the supporter 320. When the slide cover assembly 300 is relatively close to the housing assembly 200, the bending position of the support member 320 is closer to the first end 321 than the second end 322, and as the slide cover assembly 300 and the housing assembly 200 move away from each other, the bending position of the support member 320 moves toward the second end 322.
Referring to fig. 7, the transmission mechanism 400 includes a driving assembly and a reversing device, the reversing device includes a first slider 431, a second slider 432, a third slider 433 and a reversing connection assembly, the driving assembly is used for driving the first slider 431 to move, the second slider 432 and the third slider 433 are respectively fixed to two opposite ends of the slider 310, and when the driving assembly drives the first slider 431 to move, the first slider 431 drives the second slider 432 and the third slider 433 to move along the sliding direction of the slider 310 through the reversing connection assembly.
Wherein the direction in which the second slider 432 and the third slider 433 move is different from the direction in which the first slider 431 moves. In the embodiment shown in the drawings, the driving assembly includes a motor 410 and a screw rod 420, the motor 410 is fixed on the housing assembly 200, and the screw rod 420 is disposed perpendicular to the sliding direction of the slider 310 and is connected to an output end of the motor 410; the first sliding block 431 is connected to the screw rod 420, and the motor 410 drives the first sliding block 431 to move through the screw rod 420, so that the moving direction of the second sliding block 432 and the third sliding block 433 is perpendicular to the moving direction of the first sliding block 431.
The reversing connection assembly comprises a connection member 447 and a fixed pulley block, and the first sliding block 431, the second sliding block 432 and the third sliding block 433 are connected through the connection member 447. The connecting member 447 may be a connecting string, a connecting band, a connecting strip, etc.
In an embodiment, the fixed pulley group includes a first fixed pulley 441, a second fixed pulley 442, a third fixed pulley 443, and a fourth fixed pulley 444 respectively fixed to the housing assembly 200, the first fixed pulley 441, the second fixed pulley 442, the third fixed pulley 443, and the fourth fixed pulley 444 are disposed in a matrix, a line connecting the first fixed pulley 441 and the second fixed pulley 442, and a line connecting the third fixed pulley 443 and the fourth fixed pulley 444 are parallel to the sliding direction of the sliding member 310, and the connecting member 447 is sleeved on the fixed pulley group and sequentially passes through the first fixed pulley 441, the second fixed pulley 442, the fourth fixed pulley 444, the third fixed pulley 443, and finally returns to the first fixed pulley 441.
In the above embodiment, the connection member is connected in an X-shape in the area of the matrix formed by the first fixed pulley 441, the second fixed pulley 442, the third fixed pulley 443, and the fourth fixed pulley 445. The driving assembly may drive the first slider 431 to move in a direction of a line connecting the first fixed pulley 441 and the third fixed pulley 443, or in a direction of a line connecting the second fixed pulley 442 and the fourth fixed pulley 444. For example, the lead screw 420 may be disposed along either side of the X-shape
In the embodiment shown in the figures, the set of crown blocks further comprises a fifth crown block 445 and a sixth crown block 446. In the present embodiment, the driving assembly drives the first slider 431 to move in the direction of the line connecting the fourth fixed pulley 444 and the fifth fixed pulley 445, or in the direction of the line connecting the third fixed pulley 443 and the sixth fixed pulley 446, or in the direction of the line connecting the first fixed pulley 441 and the sixth fixed pulley 446, or in the direction of the line connecting the second fixed pulley 442 and the fifth fixed pulley 445.
Optionally, in some other embodiments, the set of crown blocks further comprises a guide for guiding the extending direction of the connecting member 447. The guide piece is one or more of a hollow hose, a buckle, a guide rail and the like. It will be appreciated that the guide member may guide the connecting member 447 to extend in a straight line, or to extend in a curved line, or to extend along a fold line, etc. For example, when the guide is not included in the group of fixed pulleys, the connection member 447 between the first and second fixed pulleys 441 and 442 extends in a straight line, and when the guide is included in the group of fixed pulleys, the connection member 447 between the first and second fixed pulleys 441 and 442 may extend in a straight line, a curved line, or a broken line. In this embodiment, the moving direction of the first sliding block 431 depends on the extending direction of the connecting member 447, and the first sliding block 431 can be driven by the driving assembly to move along a moving track of a straight line, a curved line or a broken line.
The above-mentioned fixed pulleys are all fixed to the housing assembly 200, the fifth fixed pulley 445 and the sixth fixed pulley 446 are located in a matrix region formed by the first fixed pulley 441, the second fixed pulley 442, the third fixed pulley 443, and the fourth fixed pulley 444, and the fifth fixed pulley 445 is located between the motor 410 and an extreme position where the first slider 431 is closest to the motor 410.
The connecting member 447 is sleeved on the fixed pulley block, sequentially passes through the first fixed pulley 441, the second fixed pulley 442, the fifth fixed pulley 445, the fourth fixed pulley 444, the third fixed pulley 443 and the sixth fixed pulley 446, and finally returns to the first fixed pulley 441. Wherein the connecting member 447 is connected in an X-shape in the region formed by the first fixed pulley 441, the second fixed pulley 442, the fifth fixed pulley 445 and the sixth fixed pulley 446.
In specific implementation, the first slider 431 may be sleeved on the lead screw 420 and in threaded fit with the lead screw 420, when the electronic device is switched from the open state shown in fig. 7 to the closed state, the motor 410 drives the lead screw 420 to rotate in the forward direction, and drives the first slider 431 to move in the direction away from the motor 410, the first slider 431 drives the second slider 432 to move in the direction away from the motor 410 in the direction perpendicular to the lead screw 420 through the connecting member 447, and meanwhile, the second slider 432 drives the third slider 433 to move in the direction away from the motor 410 in the direction perpendicular to the lead screw 420, so as to drive the slider 310 fixed to the second slider 432 and the third slider 433 to move in the direction close to the accommodating cavity 201.
When the electronic device needs to be switched from the closed state to the open state, the motor 410 drives the screw rod 420 to rotate reversely, and the first slider 431 drives the second slider 432 and the third slider 433 through the connecting member 447, according to a principle similar to that described above. Through the reversing connection assembly, the sliders at the two ends can be driven to synchronously move through the same connection member, so that the speed and the stroke of the sliding member 310 at the two opposite ends are consistent in the sliding process of the shell assembly 200.
It should be noted that the figure only shows one arrangement of the transmission mechanism 400, and those skilled in the art can also change other arrangements for implementing the above-mentioned movement principle according to the arrangement, for example, the motor 410 and the screw rod 420 can be arranged near the bottom of the accommodating chamber 201.
In other embodiments, the motor 410 and the lead screw 420 may be replaced by other types of linear modules, for example, a synchronous belt type. The motor 410 and the screw rod 420 can be replaced by an air cylinder.
Alternatively, as shown in fig. 8, the track groove 3101 is provided in a U shape, and the opening of the U shape faces the accommodation chamber 201. Specifically, the track groove 3101 includes a first track groove 3101A, a second track groove 3101B, and an arc-shaped groove 3101C transitionally connecting the first track groove 3101A and the second track groove 3101B, the first track groove 3101A and the second track groove 3101B are parallel, and one end of the first track groove 3101A far from the arc-shaped groove 3101C is opened.
In other embodiments, the track groove 3101 may also be configured in multiple bends, for example, the track groove is configured in an inverted S shape, and includes a first track groove, a second track groove, a third track groove, a first arc-shaped groove transitionally connecting the first track groove and the second track groove, and a second arc-shaped groove transitionally connecting the second track groove and the third track groove, the first track groove, the second track groove, and the third track groove are parallel to each other, the first arc-shaped groove and the second arc-shaped groove face in opposite directions, and the same bottom, the end of the first track groove away from the first arc-shaped groove is open. Furthermore, along the sliding direction of the sliding part, a two-stage telescopic sleeving structure can be arranged on the sliding part, and when the electronic equipment is in a fully opened state, the supporting area of the supporting part can be doubled.
With respect to the supporting member 320, as shown in fig. 9, the supporting member 320 may include a plurality of link units 323 parallel to the first end 321 or the second end 322 of the supporting member 320 and sequentially and hingedly connected, and during the process of drawing the slider 310 outwards or pushing the slider 310 inwards, the link units 323 may relatively rotate to adapt to the track of the track groove 3101 and support the bending region 100B of the flexible member. Specifically, a connecting block 324 is arranged between two ends of each adjacent link unit 323, the connecting block 324 connects the two adjacent link units 323, and each link unit 323 is rotatably connected with the connecting block 324. Illustratively, a rotating shaft may be provided at one of the link unit 323 and the connecting block 324, and a shaft hole may be provided at the other of the link unit 323 and the connecting block 324, and the rotating connection between the link unit 323 and the connecting block 324 may be achieved by the rotating shaft and the shaft hole being engaged with each other.
In one embodiment, the total length of the plurality of link units 323 is greater than or equal to the sum of the sliding travel of slider 310 and the arc length of arc-shaped slot 3101C.
There is a gap between the supporting surface of the link unit 323 and the groove wall of the track groove 3101, and further, the upper end surface of the supporting surface of the link unit 323 can be arranged to be flush with the supporting surface of the housing assembly 200, and after the flexible member 100 is completely unfolded, the non-bending region 100A of the flexible member and the bending region 100B of the flexible member are located on the same plane.
In the arc-shaped groove 3101C, in order to make the supporting surface of the link unit 323 adhere to the curved portion of the bending region 100B of the flexible member and avoid the risk of a small R angle after the bending region 100B of the flexible member is unfolded, the supporting surface of the link unit 323 is set to be an arc-shaped surface, and the curvature of the arc-shaped surface is the same as that of the arc-shaped groove 3101C.
It is understood that the arcuate slot 3101C includes a first arcuate wall and a second arcuate wall that collectively define the arcuate slot 3101C, the curvature of the arcuate surface being the same as the curvature of the arcuate slot 3101C, i.e., the curvature of the arcuate surface is intermediate the curvature of the first arcuate wall and the curvature of the second arcuate wall.
As a further alternative, a thrust area for tightening the flexible member 100 is provided between the opposite ends of the supporting member 320. Alternatively, the thrust region may be disposed in a region adjacent to the first end 321 or/and the second end 322 of the support member 320, or in a middle region of the support member 320.
Illustratively, the supporting member 320 further includes an articulation hinge unit 325 provided at the second end 322 of the supporting member 320, one end of the flexible member 100 (or the bending region 100B of the flexible member) is fixed to the housing assembly 200, and the other end of the flexible member 100 is fixed to the articulation hinge unit 325, and as shown in fig. 10, at least one elastic member 326 is provided between the articulation hinge unit 325 and the adjacent link unit 323. Preferably, the resilient member 326 is in a compressed state whether the electronic device 10 is in the closed state or the open state.
Alternatively, the connecting hinge unit 325 may be disposed at a region adjacent to the first end 321 or the second end 322 of the supporter 320, or at a middle region of the supporter 320. It is understood that the connection hinge unit 325 is not limited to be provided at the first end 321 or the second end 322 of the supporter 320, and the opposite sides of the connection hinge unit 325 may be provided with the link units 323. An elastic member 326 is provided between the optional connecting hinge unit 325 and the adjacent link unit 323 at both sides, or an elastic member 326 is provided between the adjacent link unit 323 at only one side thereof.
Alternatively, the number of the joint unit 325 may be plural, a plurality of the joint units 325 may be spaced by one or more link units 323, or any several of the plurality of joint units 325 may be adjacent to each other. It will be appreciated that resilient members 326 may also be provided between adjacent articulating joint units 325.
It should be noted that, if the connection hinge unit 325 is not disposed at the first end 321 or the second end 322 of the supporting member 320, one end or the other end of the flexible member 100 is fixed to the link unit 323 corresponding to the first end 321 or the second end 322 of the supporting member 320. That is, the two opposite ends of the flexible member 100 are fixedly connected to the two opposite ends of the supporting member 320.
The area where the elastic member 326 is located may form a thrust area to push the connecting hinge unit 325 and the adjacent link unit 323 away from each other, and particularly, after the flexible member 100 is unfolded, the elastic member 326 pushes the connecting hinge unit 325 away from the adjacent link unit 323 or pushes the adjacent link unit 323 away from the connecting hinge unit 325, so as to compensate the length of the supporting member 320 and tighten the flexible member 100.
Alternatively, in order to prevent the elastic members 326 from being detached, the connecting hinge unit 325 and/or the adjacent link unit 323 is provided with a receiving groove for receiving the elastic members 326, the receiving groove extending in the direction in which the supporting member 320 slides. Preferably, a guide post is disposed in the receiving groove, the guide post extends along the sliding direction of the supporting member 320, and the elastic member 326 is sleeved on the guide post. Alternatively, guide posts may be provided only on the connecting hinge unit 325 and/or the adjacent link unit 323.
The first end 321 of the supporting member 320 may be provided with a connecting hinge unit, or the first end 321 and the second end 322 of the supporting member 320 may be provided with a connecting hinge unit, respectively, and when the connecting hinge unit is connected with the housing assembly 200, one end of the bending region 100B of the flexible member may be directly fixed to the connecting hinge unit.
Further, in order to guide the relative movement between the connecting hinge unit 325 and the adjacent link unit 323, a groove 327 extending toward the adjacent link unit 323 is provided on the connecting hinge unit 325, a latch 328 extending toward the connecting hinge unit 325 is correspondingly provided on the adjacent link unit 323, and the latch 328 can be latched into the groove 327 and relatively move in the groove 327. Multiple sets of grooves 327 and clips 328 may be provided, and in another embodiment, the clips 328 may be provided on the connecting hinge unit 325 and the grooves 327 may be provided on adjacent link units 323.
In other embodiments, the connecting hinge unit 325 may not be provided, and an elastic member may be provided directly between the adjacent link units 323. Similarly, one end of the flexible member 100 (or the bending region 100B of the flexible member) is fixed to the housing assembly 200, and the other end of the flexible member 100 is fixed to the link unit 323 at the second end 322 of the supporting member 220; when the link unit 323 at the first end 321 of the supporting member 220 is connected to the housing assembly 200, one end of the bending region 100B of the flexible member may be directly fixed to the link unit 323 at the first end 321 of the supporting member 220.
As to the slider 310, please refer to fig. 11 and 12, the slider 310 includes a first side wall 311 and a second side wall 312, the first side wall 311 and the second side wall 312 are disposed oppositely along the sliding direction of the slider 310, the inner walls of the first side wall 311 and the second side wall 312 are both provided with the track groove 3101, and the ends of the first side wall 311 and the second side wall 312, which are relatively far away from the accommodating cavity 201, are arc-shaped portions; the supporter 320 is disposed between the first sidewall 311 and the second sidewall 312, and opposite ends of the supporter 320 are respectively embedded in the track grooves 3102 of the corresponding sidewalls.
The sliding member 310 further includes a fixing shaft 313 mounted between the first side wall 311 and the second side wall 312, the fixing shaft 313 being used for receiving the bending portion of the supporting member 320 (and the bending region 100B of the flexible member). Specifically, both ends of the fixed shaft 313 are respectively connected to the corresponding side walls, and if the second arc wall of the arc groove 3101C is located at the outer side of the first arc wall, a connection portion between the fixed shaft 313 and the corresponding side wall is overlapped with the first arc wall to receive the bent portion of the supporting member 320, and a moving process of the supporting member 320 in the track groove 3101 is a moving process of the supporting member 320 around the fixed shaft 313. Specifically, the curvature of the fixed shaft 313 corresponding to the supporting surface of the arc-shaped groove 3101C is the same as that of the arc-shaped groove 3101C, so as to make the supporting member 320 and the flexible member 100 slide more smoothly.
The slider 310 further includes a bottom wall 314 connecting the first side wall 311 and the second side wall 312, and the bottom wall is used for receiving the bending region 100B of the flexible member and the supporting member 320 when the bending region 100B of the flexible member is received in the receiving cavity 201 with the supporting member 320. The bottom wall 314 extends to the arc portions of the first side wall 311 and the second side wall 312 and forms a side barrier 315, and the distance between the side barrier 315 and the fixed shaft 313 is greater than the width of the arc-shaped groove 3101C, that is, after the support 320 is placed in the track groove 3101, a certain gap exists between the bending portion of the support 320 and the side barrier 315, and the bending region 100B of the flexible member passes through. Because only two ends of the bending region 100B of the flexible member are fixedly connected with two sides of the supporting member 320, the side blocking portion 315 can limit the rest of the bending region 100B of the flexible member to be tightly attached to the supporting surface of the supporting member 320, and can also be used for protecting the exposed bending region 100B of the flexible member. There is a gap between the support surface of link unit 323 and the walls of arcuate slot 3101C in which at least a portion of flexible member 100 is disposed.
The housing assembly 200 may include a first housing 210 and a second housing 220 fixed to each other, the first housing 210 and the second housing 220 form an accommodating cavity 201, please refer to fig. 13 and 14, two sliding channels 203 are defined between the first housing 210 and the second housing 220, the two sliding channels 203 are parallel to the depth direction of the accommodating cavity 201 and located at two opposite sides of the accommodating cavity 201, and the sliding member 310 may slide along the two sliding channels 203.
The first housing 210 includes an upper fixing cover 211 and an upper blocking wall 212 extending from the upper fixing cover 211 toward the second housing 220, the first end 321 of the supporting member 320 is fixed to the upper fixing cover 211, and the transmission mechanism 400 is disposed on the inner wall of the upper fixing cover 211; the second housing 220 includes a lower fixing cover 221 and a lower blocking wall 222 extending from the lower fixing cover 221 toward the first housing 210, the lower blocking wall 222 is located outside the upper blocking wall 212, and the upper blocking wall 212 and the lower blocking wall 222 form the sliding channel 203 therebetween.
The first side wall 311 and the second side wall 322 of the slider 310 are inserted into the two sliding channels 203, wherein the parts of the first side wall 311 and the second side wall 322, which are attached to the upper blocking wall 212, are located on the outer side of the upper blocking wall 212, and the parts of the first side wall 311 and the second side wall 322, which are attached to the lower blocking wall 222, are located on the inner side of the lower blocking wall 222; further, the portions of the first side wall 311 and the second side wall 322, which are attached to the lower blocking wall 222, are recessed inward by a depth equal to the thickness of the lower blocking wall 222, so that the portions of the first side wall 311 and the second side wall 322, which are attached to the upper blocking wall 212, and the lower blocking wall 222 can be located on the same vertical plane.
Alternatively, in the sliding direction of the slider 310, the lower blocking wall 222 is provided with a guide block 2221 protruding in the direction of the slider 310, and the outer walls of the first side wall 311 and the second side wall 322 of the slider 310 are correspondingly provided with a stopper groove 3102 matching with the guide block 2221, so that the sliding of the slider 310 is guided by the matching between the guide block 2221 and the stopper groove 3102.
In another embodiment, the guiding block 2221 may also be disposed on the upper blocking wall 212, and the limiting groove is adaptively disposed on the inner walls of the first side wall 311 and the second side wall 322 of the sliding member 310.
The electronic device 10 provided by the embodiment of the invention comprises a flexible member 100, a housing assembly 200, a sliding cover assembly 300 and a transmission mechanism 400, wherein the transmission mechanism 400 is used for driving the sliding cover assembly 300 to slide relative to the housing assembly 200; the sliding cover assembly 300 comprises a sliding piece 310 and a support piece 320, the sliding piece 310 is connected with the shell assembly 200 in a sliding manner, and the sliding piece 321 is provided with a track groove 3101 for the movement of the common support piece 320; the supporting member 320 is used for supporting the bending region 100B of the flexible member, a first end 321 of the supporting member 320 is connected to the housing assembly 200, a second end 322 of the supporting member 320 is slidably disposed on the sliding member 310, when the sliding cover assembly 300 is driven by the transmission mechanism 400 to slide relative to the housing assembly 200, the second end 322 of the supporting member 320 slidably moves in the track groove 3101 relative to the sliding member 310, and the bending region 100B of the flexible member is received or unfolded with the supporting member 320. In this way, the bending region 100B of the flexible member can be accommodated in the accommodating cavity 201 when not in use, and does not need to be exposed to the outside.
Finally, it should be noted that: the above examples are only intended to illustrate the technical solution of the present invention, but not to limit it; within the idea of the invention, also technical features in the above embodiments or in different embodiments may be combined, steps may be implemented in any order, and there are many other variations of the different aspects of the invention as described above, which are not provided in detail for the sake of brevity; although the present invention has been described in detail with reference to the foregoing embodiments, it will be understood by those of ordinary skill in the art that: the technical solutions described in the foregoing embodiments may still be modified, or some technical features may be equivalently replaced; and the modifications or the substitutions do not make the essence of the corresponding technical solutions depart from the scope of the technical solutions of the embodiments of the present invention.

Claims (14)

1. An electronic device is characterized by comprising a flexible piece, a shell component, a sliding cover component and a transmission mechanism;
the transmission mechanism is respectively connected with the shell assembly and the sliding cover assembly, and is used for driving the sliding cover assembly to slide relative to the shell assembly so as to enable the electronic equipment to be switched between a closed state and an open state;
the sliding cover assembly comprises a sliding piece and a supporting piece, the sliding piece is connected with the shell assembly in a sliding mode, and a track groove for the supporting piece to move is formed in the sliding piece;
the supporting member is used for supporting at least part of the flexible member, a first end of the supporting member is connected with the shell assembly, a second end of the supporting member is slidably arranged on the sliding member, when the transmission mechanism drives the sliding cover assembly to slide relative to the shell assembly, the second end of the supporting member moves relative to the sliding member in the track groove, and the at least part of the flexible member is accommodated or unfolded along with the supporting member.
2. The electronic device of claim 1,
the support member includes a bending section which bends at a bending position, and the bending position of the support member moves relative to the housing assembly as the slide cover assembly and the housing assembly approach or move away from each other.
3. The electronic device of claim 2,
when the sliding cover component and the shell component are relatively close to each other, the bending position of the supporting piece is closer to the first end than the second end, and the bending position of the supporting piece moves towards the second end as the sliding cover component and the shell component are far away from each other.
4. The electronic device of claim 1,
the transmission mechanism comprises a driving assembly and a reversing device, the reversing device comprises a first sliding block connected with the driving assembly and a second sliding block connected with the sliding piece, the driving assembly is used for driving the first sliding block to move, and then the second sliding block is driven to move along a direction different from the moving direction of the first sliding block so as to drive the sliding piece to slide relative to the shell assembly.
5. The electronic device of claim 4,
the moving direction of the second sliding block is perpendicular to the moving direction of the first sliding block.
6. The electronic device of claim 5,
the reversing device further comprises a third sliding block and a reversing connecting assembly;
the drive assembly is used for driving the first slider to move, the second slider and the third slider are respectively fixed with the two opposite ends of the sliding part, and when the drive assembly drives the first slider to move, the first slider drives the second slider and the third slider to move along the sliding direction of the sliding part through the reversing connection assembly.
7. The electronic device of claim 4,
the driving assembly comprises a motor and a screw rod, the motor is fixed on the shell assembly, the screw rod is connected with the output end of the motor, the first sliding block is connected to the screw rod, and the motor drives the screw rod to rotate so that the first sliding block moves.
8. The electronic device of claim 6,
the reversing connection assembly comprises a connection piece and a fixed pulley block, and the first sliding block, the second sliding block and the third sliding block are connected through the connection piece;
the fixed pulley block comprises a first fixed pulley, a second fixed pulley, a third fixed pulley and a fourth fixed pulley which are fixed on the shell assembly respectively, the first fixed pulley, the second fixed pulley, the third fixed pulley and the fourth fixed pulley are arranged in a matrix mode, a connecting line of the first fixed pulley and the second fixed pulley, a connecting line of the third fixed pulley and the fourth fixed pulley are parallel to the sliding direction of the sliding piece, and the connecting piece is sleeved on the fixed pulley block and sequentially passes through the first fixed pulley, the second fixed pulley, the fourth fixed pulley, the third fixed pulley and finally returns to the first fixed pulley.
9. The electronic device of claim 8,
the fixed pulley block further comprises a fifth fixed pulley and a sixth fixed pulley which are arranged on the shell assembly respectively, and the connecting piece is sleeved on the fixed pulley block and sequentially passes through the first fixed pulley, the second fixed pulley, the fifth fixed pulley, the fourth fixed pulley, the third fixed pulley and the sixth fixed pulley and finally returns to the first fixed pulley.
10. The electronic device of any of claims 1-9,
the supporting piece comprises a plurality of chain link units which are sequentially hinged in parallel.
11. The electronic device of claim 10,
the track grooves comprise a first track groove, a second track groove and an arc-shaped groove which is in transition communication with the first track groove and the second track groove;
the first track groove is parallel to the second track groove, and one end of the first track groove, which is far away from the arc-shaped groove, is opened.
12. The electronic device of claim 11,
a gap exists between the supporting surface of the chain link unit and the wall of the arc-shaped groove, the supporting surface of the chain link unit is an arc-shaped surface, and the curvature of the arc-shaped surface is the same as that of the arc-shaped groove.
13. The electronic device of claim 10,
and a thrust area for tightening the flexible part is arranged between the two opposite ends of the supporting part.
14. The electronic device of claim 13,
one end of the flexible piece is fixed on the shell assembly, the other end of the flexible piece is fixed on the second end of the support piece, the support piece further comprises a connecting hinge joint unit, the connecting hinge joint unit is adjacent to the link unit, an elastic piece forming the thrust area is arranged between the link units, and the elastic piece is used for pushing the connecting hinge joint unit and the adjacent link units to be away from each other.
CN202011330737.1A 2020-11-24 2020-11-24 Electronic equipment Pending CN114546035A (en)

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Application publication date: 20220527