CN113168299A - Display control method, storage medium and display terminal - Google Patents

Display control method, storage medium and display terminal Download PDF

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Publication number
CN113168299A
CN113168299A CN201880097618.0A CN201880097618A CN113168299A CN 113168299 A CN113168299 A CN 113168299A CN 201880097618 A CN201880097618 A CN 201880097618A CN 113168299 A CN113168299 A CN 113168299A
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China
Prior art keywords
control method
user interface
graphical user
display screen
display control
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CN201880097618.0A
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Chinese (zh)
Inventor
潘英强
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Shenzhen Royole Technologies Co Ltd
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Shenzhen Royole Technologies Co Ltd
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Publication of CN113168299A publication Critical patent/CN113168299A/en
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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/14Digital output to display device ; Cooperation and interconnection of the display device with other functional units

Abstract

A display control method, a storage medium and a display terminal are provided, the display control method is applied to the display terminal, the display terminal comprises a flexible display screen, and the display control method comprises the following steps: judging whether the bending radian of the flexible display screen is changed or not (S101); when the bending radian of the flexible display screen is changed, adjusting the size of a graphical user interface displayed on the flexible display screen (S102). According to the method, the detection unit is arranged to detect the bending radian of the flexible display screen of the display terminal, and the size of the user interface is changed according to the bending radian, so that the user experience of the display terminal is improved.

Description

Display control method, storage medium and display terminal Technical Field
The present invention relates to the field of display technologies, and in particular, to a display control method, a storage medium, and a display terminal.
Background
With the development of flexible display screens, more and more display terminals adopt flexible display screens, such as head-mounted display devices, televisions, flat panels, and the like. However, the flexible display screen is mounted on the current display terminal only for displaying, and the manner of displaying content on the flexible display screen is fixed, so that the display manner of the flexible display screen is single.
Disclosure of Invention
In order to overcome the defects of the prior art, the invention aims to provide a display control method, a storage medium and a display terminal.
The purpose of the invention is realized by adopting the following technical scheme: the display control method is applied to a display terminal, the display terminal comprises a flexible display screen, and the display control method comprises the following steps: judging whether the bending radian of the flexible display screen is changed or not; and when the bending radian of the flexible display screen is changed, adjusting the size of the graphical user interface displayed on the flexible display screen.
The present invention also provides a storage medium storing a computer-executable program which, when called by a computer, executes the aforementioned display control method.
The present invention also provides a display terminal, including: a flexible display screen; the detection unit is used for detecting the bending radian of the flexible display screen; a memory for storing a computer executable program; and a processor for calling the computer executable program to execute the aforementioned display control method.
According to the display control method, the storage medium and the display terminal provided by the invention, the bending radian of the flexible display screen of the display terminal is detected through the detection unit, and the size of the user interface is changed according to the bending radian, so that the user experience of the display terminal is improved.
Drawings
Fig. 1 is a flowchart of a display control method according to an embodiment of the present invention.
Fig. 2 is a schematic structural diagram of the detection unit detecting the bending radian of the flexible display screen when the bending radian of the flexible display screen changes.
Fig. 3 is a detailed flowchart of step S101.
Fig. 4 is a graphical user interface displayed by the flexible display screen when the bending radian is smaller than a preset value.
Fig. 5A is a schematic structural diagram of a flexible display screen with an increased bending radian.
FIG. 5B is a graphical user interface displayed when the curvature of the flexible display increases beyond a preset value.
Fig. 6 is a schematic view of a structure of a flexible display screen with reduced bending radian.
Fig. 7 is a block diagram of a storage medium according to an embodiment of the present invention.
Fig. 8 is a block diagram of a display terminal according to an embodiment of the present invention.
Detailed Description
The present invention will be further described with reference to the accompanying drawings and the detailed description, and it should be noted that any combination of the embodiments or technical features described below can be used to form a new embodiment without conflict.
The invention provides a control display method, a storage medium and a display terminal, wherein the display terminal comprises a flexible display screen and a detection unit for detecting the bending radian of the flexible display screen, and the user experience of the display terminal is improved by detecting the bending radian of the flexible display screen of the display terminal and changing the size of a user interface according to the bending radian.
Referring to fig. 1, fig. 1 is a diagram of a display control method applied to a display terminal having a flexible display screen, where the display control method specifically includes steps S101 to S102:
step S101: and judging whether the bending radian of the flexible display screen is changed.
Referring to fig. 2-3, the display terminal includes a flexible display screen 102 and a detection unit 103. The detection unit 103 is a sensor, which may be integrated in the flexible display screen 102 or mounted on the flexible display screen 102. When the flexible display screen 102 is bent, the distance between the two opposite ends of the flexible display screen 102 or the resistance of the flexible display screen 102 changes. The corresponding relation between the resistance value of the flexible display screen 102 and the bending radian of the flexible display screen 102 is preset, or the corresponding relation between the distance between the two opposite ends of the flexible display screen 102 and the bending radian of the flexible display screen 102 is preset.
The display terminal detects the change of the resistance value of the flexible display screen 102 or the change of the distance between the two opposite ends of the flexible display screen 102 through the detection unit 103, so as to obtain the corresponding change of the bending radian of the flexible display screen 102.
As shown in fig. 3, step S101 of determining whether the curvature of the flexible display screen changes includes steps S1011 to S1013:
step S1011, a first bending arc value of the flexible display screen at a first time and a second bending arc value of the flexible display screen at a second time are obtained.
Step S1012 compares the first bending curvature value and the second bending curvature value.
Step S1013, when the first bending radian value is not equal to the second bending radian value, the bending radian of the flexible display screen is changed.
In step S1013, the change of the curvature of the flexible display screen 102 specifically includes: when the first bending arc value is greater than the second bending arc value, the bending arc of the flexible display screen 102 is reduced. When the first bending arc value is smaller than the second bending arc value, the bending arc of the flexible display screen 102 is increased.
Specifically, the number of the detection units 103 is at least 2, and the detection units are respectively arranged at two opposite ends of the flexible display screen 102. When the detecting units 103 detect that the distance between the two detecting units 103 is D1 at the first time t1, the preset bending arc value corresponding to D1 is α 1. At the second time t2, it is detected that the two detecting units 103 are spaced apart from each other by a distance D2, D2 corresponds to the preset bending arc value α 2, where t2 is greater than t 1.
The magnitude of the arc value α 1 and the arc value α 2 are compared, that is, the magnitude of D1 and D2 are compared.
When D1 is greater than D2, it is determined that the flexible display screen 102 is bent. At this time, the opposite ends of the flexible display screen 102 approach each other, and the curvature is gradually increased.
Similarly, when the detecting units 103 detect that the distance between the two detecting units 103 is D2 at the first time t1, the preset bending arc value corresponding to D2 is α 2. At the second time t2, it is detected that the two detecting units 103 are spaced apart from each other by a distance D1, D1 corresponds to the preset bending arc value α 1, where t2 is greater than t 1.
The magnitude of the arc value α 1 and the arc value α 2 are compared, that is, the magnitude of D1 and D2 are compared.
When D1 is greater than D2, it is determined that the flexible display screen 102 is gradually unfolded from the bent state to be straightened. At this time, the opposite ends of the flexible display screen 102 are away from each other, and the curvature gradually decreases.
Step S102: and when the bending radian of the flexible display screen is changed, adjusting the size of the graphical user interface displayed on the flexible display screen.
Referring to fig. 4, the flexible display screen 102 is in a long bar shape, and a display area 1021 and a non-display area 1023 are disposed on the flexible display screen 102. Two non-display areas 1023 are respectively arranged at two opposite ends of the flexible display screen 102, the display area 1021 is arranged between the non-display areas 1023, and the display boundary line a is positioned between the display area 1021 and the non-display areas 1023 so as to divide the display area 1021 and the non-display areas 1023.
The display area 1021 is used for displaying a graphical user interface, and the graphical user interface includes one or more icons, and each icon is associated with a corresponding application or information. Specifically, the icons include a primary icon 1024 and a secondary icon 1025. The display area of the main icon 1024 is larger than that of the auxiliary icon 1024, and the application or information corresponding to the main icon 1024 can be set according to the needs of the user. Preferably, the main icon 1024 is displayed with time and/or date information thereon.
The number of the auxiliary icons 1025 is multiple, and the display area of each auxiliary icon 1025 is adjusted according to the application program use condition corresponding to the auxiliary icon 1025, wherein the use condition comprises use duration and use frequency. The display area of the auxiliary icon 1025 with high use frequency is larger than that of the auxiliary icon 1025 with low use frequency, or the display area of the auxiliary icon 1025 with long use time is larger than that of the auxiliary icon 1025 with short use time.
In some embodiments, when the bending arc value of the flexible display screen 102 acquired by the detection unit 103 is smaller than the first preset value, the main icon 1024 is displayed at one end of the gui, or displayed at an edge of the gui. When the bending arc value of the flexible display screen 102 is greater than a second preset value, the position of the main icon 1024 is adjusted to the center position of the graphical user interface, wherein the second preset value is greater than the first preset value.
Further, when the position of the primary icon 1024 is adjusted to the center of the gui, the control sub-icon 1025 is adjusted to a ring surrounding the primary icon.
Referring to fig. 5A-5B, in some embodiments, the change of the curvature of the flexible display screen 102 is to increase the curvature of the flexible display screen 102, and the adjusting the size of the gui displayed on the flexible display screen in the display control method specifically includes: as the curvature of the flexible display screen 102 increases, the display area occupied by the graphical user interface displayed on the flexible display screen 102 decreases.
The reducing of the display area occupied by the graphical user interface displayed on the flexible display screen 102 may be controlling to reduce the display area occupied by each icon on the graphical user interface when the display area of the graphical user interface is reduced.
The reduction of the display area occupied by the graphical user interface displayed on the flexible display screen 102 may also be controlling the reduction of the space between two adjacent icons on the graphical user interface when the display area of the graphical user interface is reduced.
In some embodiments, the display control method further includes, when the curvature of the flexible display screen 102 increases to a preset value, controlling to adjust the main icon 1024 of the gui to a central position of the gui as the display area of the gui decreases, and adjusting the auxiliary icon 1025 of the gui to a ring surrounding the main icon 1024.
Preferably, the main icon 1024 of the graphical user interface is adjusted to the central position of the graphical user interface, specifically, the main icon 1024 gradually moves from one end of the graphical interface to the central position of the graphical user interface along with the increase of the curvature of the flexible display screen.
Referring to fig. 6, in some embodiments, the change of the curvature of the flexible display screen 102 is to reduce the curvature of the flexible display screen 102, and the adjusting the size of the gui displayed on the flexible display screen in the display control method specifically includes: as the curvature of the flexible display screen 102 gradually decreases, the display area occupied by the graphical user interface displayed on the flexible display screen 102 increases.
The increasing of the display area occupied by the graphical user interface displayed on the flexible display screen 102 may be controlling to increase the display area occupied by each icon on the graphical user interface when the display area of the graphical user interface is increased.
The increase of the display area occupied by the graphical user interface displayed on the flexible display screen 102 may also be controlled to increase the distance between two adjacent icons on the graphical user interface when the display area of the graphical user interface is increased.
In some embodiments, the display control method further includes, when the curvature of the flexible display screen 102 decreases to a predetermined value, controlling to adjust the main icon 1024 of the gui to one end of the gui and to adjust the sub icon 1025 of the gui to the opposite end of the gui as the display area of the gui increases, as shown in fig. 5C.
Preferably, the main icon 1024 of the graphical user interface is adjusted to the central position of the graphical user interface, specifically, the main icon 1024 gradually moves from the central position of the graphical interface to one end of the graphical user interface along with the reduction of the bending radian of the flexible display screen.
Referring to fig. 7, an embodiment of the invention provides a storage medium 20 for storing a computer executable program. The program is executed by a computer to implement the above-described display control method. In the above embodiments, the implementation may be wholly or partially realized by software, hardware, firmware, or any combination thereof. When implemented in software, may be implemented in whole or in part in the form of a computer program product. The computer program product includes one or more computer instructions. The procedures or functions described in accordance with the embodiments of the invention are generated in whole or in part when the computer program instructions are loaded and executed on a computer. The computer may be a general purpose computer, a special purpose computer, a network of computers, or other programmable device. The computer instructions may be stored in a computer readable storage medium or transmitted from one computer readable storage medium to another, for example, from one website site, computer, server, or data center to another website site, computer, server, or data center via wired (e.g., coaxial cable, fiber optic, Digital Subscriber Line (DSL)) or wireless (e.g., infrared, wireless, microwave, etc.). The computer-readable storage medium can be any available medium that a computer can store or a data storage device, such as a server, a data center, etc., that is integrated with one or more available media. The usable medium may be a magnetic medium (e.g., floppy Disk, hard Disk, magnetic tape), an optical medium (e.g., DVD), or a semiconductor medium (e.g., Solid State Disk (SSD)), among others.
It is clear to those skilled in the art that, for convenience and brevity of description, the specific working processes of the above-described systems, apparatuses and units may refer to the corresponding processes in the foregoing method embodiments, and are not described herein again.
Referring to fig. 8, an embodiment of the present invention further provides a display terminal 30, and the display terminal 30 may be used to execute the display control method provided by the present invention. The display terminal 30 comprises a flexible display 302, a detection unit 303, a processor 304 and a memory 305. The flexible display 302, the processor 304, the detection unit 303 and the memory 305 are connected by a bus to realize a communication function. The flexible display screen 302 has the same structure as the flexible display screen 102, and is not described herein.
The detecting unit 303 is configured to detect a bending radian of the flexible display screen 302 and obtain a corresponding bending radian value.
The number of the detection units can be one or more, preferably, the number of the detection units is at least two, and the detection units are respectively arranged on two opposite sides of the display area of the flexible display screen.
Memory 305 includes at least one of: random access memory, non-volatile memory external memory, said memory 305 being operable to store an executable program, said processor 304 being operable to execute any of the above-described display control methods by calling the executable program stored in said memory 305. The memory 305 mainly includes a program storage area and a data storage area, wherein the program storage area may store an operating system, an application program required for at least one function, and the like; the data storage area may store data created according to the use of the terminal, and the like. In the embodiment of the present invention, the operating system may be an Android system, an iOS system, a Windows operating system, or the like.
The processor 304 is a control center of the display terminal 30, connects various parts of the entire display terminal 30 by using various interfaces and lines, and calls the data stored in the memory 305 by running or executing the executable programs and/or units stored in the memory 305 to perform various functions of the terminal device and process data. The processor 304 may be composed of an Integrated Circuit (IC), for example, a single packaged IC, or a plurality of packaged ICs connected with the same or different functions. For example, the Processor 304 may include only a central processing unit, or may be a combination of a CPU, a Digital Signal Processor (DSP), a GPU, and various control chips. In the embodiment of the present invention, the CPU may be a single operation core, or may include multiple operation cores.
The above embodiments are only preferred embodiments of the present invention, and the protection scope of the present invention is not limited thereby, and any insubstantial changes and substitutions made by those skilled in the art based on the present invention are within the protection scope of the present invention.

Claims (20)

  1. A display control method is applied to a display terminal, the display terminal comprises a flexible display screen, and the display control method is characterized by comprising the following steps:
    judging whether the bending radian of the flexible display screen is changed or not;
    and when the bending radian of the flexible display screen is changed, adjusting the size of the graphical user interface displayed on the flexible display screen.
  2. The display control method according to claim 1, characterized in that: and when the change of the bending radian of the flexible display screen is changed to increase the bending radian of the flexible display screen, reducing the display area occupied by the graphical user interface displayed on the flexible display screen.
  3. The display control method according to claim 2, characterized in that the display control method further comprises: and when the display area of the graphical user interface is reduced, controlling to reduce the display area occupied by each icon on the graphical user interface.
  4. The display control method according to claim 2 or 3, characterized in that the display control method further comprises: and when the display area of the graphical user interface is reduced, controlling to reduce the distance between two adjacent icons on the graphical user interface.
  5. The display control method according to claim 2 or 3, characterized in that the display control method further comprises: when the bending radian of the flexible display screen reaches a preset value, adjusting a main icon of the graphical user interface to the central position of the graphical user interface along with the reduction control of the display area of the graphical user interface, and adjusting an auxiliary icon of the graphical user interface to a ring surrounding the main icon.
  6. The display control method according to claim 5, characterized in that the display control method further comprises: and controlling the main icon to gradually move from one end of the graphical user interface to the central position of the graphical user interface along with the increase of the bending radian of the flexible screen.
  7. The display control method according to claim 5, characterized in that: and time and date information is displayed on the main icon.
  8. The display control method according to claim 5, characterized in that: and adjusting the display area of each auxiliary icon according to the service condition of the application program corresponding to the auxiliary icon, wherein the service condition comprises service duration and service frequency.
  9. The display control method according to claim 8, characterized in that: the higher the frequency of use of the secondary icon, the larger the display area of the secondary icon.
  10. The display control method according to claim 8, characterized in that: the longer the secondary icon is used, the larger the display area of the secondary icon.
  11. The display control method according to claim 1, characterized in that: increasing a display area occupied by a graphical user interface displayed on the flexible display screen when the change in the curvature of the flexible display screen occurs decreases the curvature of the flexible display screen.
  12. The display control method according to claim 11, wherein the display control method further comprises: and when the display area of the graphical user interface is increased, controlling to increase the display area occupied by each icon on the graphical user interface.
  13. The display control method according to claim 11 or 12, characterized in that the display control method further comprises: and when the display area of the graphical user interface is increased, controlling to increase the distance between two adjacent icons on the graphical user interface.
  14. The display control method according to claim 11 or 12, characterized in that the display control method further comprises: when the bending radian of the flexible display screen is reduced to a preset value, adjusting a main icon of the graphical user interface to one end of the graphical user interface and adjusting an auxiliary icon of the graphical user interface to the other opposite end of the graphical user interface along with the increase of the display area of the graphical user interface.
  15. The display control method according to claim 14, wherein the display control method further comprises: and controlling the main icon to gradually move from the center position of the graphical user interface to one end of the graphical user interface along with the reduction of the bending arc degree of the flexible screen.
  16. The display control method of claim 1, wherein the determining whether the curvature of the flexible display screen changes specifically comprises;
    acquiring a first bending arc value of the flexible display screen at a first time and acquiring a second bending arc value of the flexible display screen at a second time;
    comparing whether the first bending arc value and the second bending arc value are equal;
    and when the first bending radian value is not equal to the second bending radian value, judging whether the bending radian of the flexible display screen is changed.
  17. The display control method according to claim 1, characterized in that: the flexible display screen is in a strip shape and comprises two opposite end parts; when the bending radian of the flexible display screen is increased, the two end parts are close to each other.
  18. The display control method according to claim 1, characterized in that: the flexible display screen is in a strip shape and comprises two opposite end parts; when the bending radian of the flexible display screen is reduced, the two end parts are far away from each other.
  19. A storage medium, characterized by: the storage medium stores a computer-executable program that, when called by a computer, causes the computer to execute the display control method according to any one of claims 1 to 18.
  20. A display terminal, characterized in that the display terminal comprises:
    a flexible display screen;
    the detection unit is used for detecting the bending radian of the flexible display screen;
    a memory for storing a computer executable program; and
    a processor for invoking the computer executable program to perform a display control method according to any one of claims 1 to 18.
CN201880097618.0A 2018-12-29 2018-12-29 Display control method, storage medium and display terminal Pending CN113168299A (en)

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PCT/CN2018/125545 WO2020133394A1 (en) 2018-12-29 2018-12-29 Display control method, storage medium and display terminal

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KR20230109319A (en) * 2022-01-13 2023-07-20 엘지전자 주식회사 Display device and method thereof

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