Display method, intelligent terminal and storage medium

By responding to user operations, the target interface is displayed in each screen area according to the posture and angle data of the smart terminal, and the problems of complex and poor flexibility of the display method in the prior art are solved, thereby improving the user experience.

CN120215762APending Publication Date: 2025-06-27CHONGQING TRANSSION COMM TECH LTD
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Patent Information

Application Number
CN202510313050.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-14
Publication Date
2025-06-27

AI Technical Summary

Technical Problem

The display methods of existing smart terminals are complex and have poor flexibility, resulting in poor user experience.

Method used

In response to the user's first operation, the corresponding target interface is displayed in each screen area according to the preset strategy according to the posture data and angle data of the folded screen.

Benefits of technology

It realizes the display method of smart terminals, is simple and convenient to operate, and improves the user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides a display method, an intelligent terminal and a storage medium, and is applied to the intelligent terminal, the intelligent terminal comprises a foldable screen and a rotating shaft, the foldable screen comprises at least two screen areas, and the method comprises the following steps: responding to a first operation, and according to attitude data and angle data of the foldable screen, displaying the first operation; and displaying the corresponding target interface in each screen area of the folding screen according to a preset strategy. In response to the first operation of the user, the display interface of each screen area in the intelligent terminal is flexibly switched according to the posture data and the angle data of the folding screen, the operation is simple and convenient, and the user experience is improved.
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Description

Technical Field

[0001] The present application relates to the field of electronic information technology, and particularly relates to a display method, a smart terminal, and a storage medium. Background Art

[0002] With the development of science and technology, the screen area of smart terminals with foldable screens is increasing. The display method of smart terminals with foldable screens mainly determines the folding state according to an angle sensor to switch the display content of the screen area.

[0003] In the process of conceiving and implementing the present application, the inventors found that at least the following problems exist: during the user's operation of the smart terminal, the display area of the screen can only be switched by changing the state of the smart terminal, which is a relatively complex and inflexible method, resulting in a poor user experience.

[0004] Therefore, how to simplify the display method of the smart terminal has become an urgent problem to be solved.

[0005] It should be understood that the foregoing description is for providing general background information and does not necessarily constitute prior art. Summary of the Invention

[0006] In view of the above technical problems, the present application provides a display method, a smart terminal, and a storage medium, which can respond to the user's first operation, and the smart terminal determines and displays the target interface of each screen area according to the change of state data, with simple and convenient operation and high user experience.

[0007] The present application provides a display method applied to a smart terminal, which includes a foldable screen and a rotating shaft, and the foldable screen includes at least two screen areas. The method includes:

[0008] Responding to the first operation, and respectively displaying corresponding target interfaces in each screen area of the foldable screen according to the attitude data and angle data of the foldable screen according to a preset strategy.

[0009] Optionally, the preset strategy includes:

[0010] Determining a first playback state of a first screen area in at least two screen areas and a second playback state of a second screen area in the at least two screen areas according to the attitude data and the angle data; the first screen area is the screen area provided with a gyroscope; the second screen area includes the screen areas other than the first screen area in the at least two screen areas;

[0011] Determine or generate a first target interface and a second target interface according to the first playback state and the second playback state, and display the first target interface in the first screen area and the second target interface in the second screen area.

[0012] Optionally, the angle data includes the included angle between every two adjacent screen areas among the at least two screen areas; determining the first playback state of the first screen area among the at least two screen areas and the second playback state of the second screen area among the at least two screen areas according to the attitude data and the angle data includes:

[0013] Determine the horizontal deflection angle of the first screen area according to the attitude data;

[0014] Determine the first playback state of the first screen area and the second playback state of the second screen area according to the horizontal deflection angle and the first included angle between the first screen area and the second screen area; the second screen area is the screen area that is adjacent to the first screen area and other than the first screen area among the at least two screen areas; the playback state includes a reactive state, an interactive state, and a static state.

[0015] Optionally, the second screen area includes at least two sub-screen areas; the first included angle includes at least two; determining the first playback state of the first screen area and the second playback state of the second screen area according to the horizontal deflection angle and the first included angle between the first screen area and the second screen area includes:

[0016] When the horizontal deflection angle is 0 and all the at least two first included angles are the first threshold, determine that both the first playback state of the first screen area and the second playback state of the second screen area are static;

[0017] Or,

[0018] When the horizontal deflection angle is 0 and there is a first included angle among the at least two first included angles that is not the first threshold, determine that the first playback state of the first screen area is the reactive state, determine that the second playback state of the sub-screen area corresponding to the first included angle that is not the first threshold is the interactive state, and determine that the second playback state of the sub-screen area corresponding to the first included angle that is the first threshold is the reactive state.

[0019] Optionally, the second screen area includes at least two sub-screen areas; the first included angle includes at least two; determining the first playback state of the first screen area and the second playback state of the second screen area according to the horizontal deflection angle and the first included angle between the first screen area and the second screen area includes:

[0020] When the horizontal deflection angle is not 0, determine the first playback state of the first screen area as the interactive state;

[0021] Determine the second playback state of the sub-screen area corresponding to the first included angle being the first threshold as the responsive state;

[0022] Determine the second playback state of the sub-screen area corresponding to the first included angle being greater than the first threshold as the interactive state, and the display direction of the second target interface of the sub-screen area corresponding to the first included angle being greater than the first threshold is opposite to the display direction of the first target interface;

[0023] Determine the second playback state of the sub-screen area corresponding to the first included angle being less than the first threshold as the interactive state, and the display direction of the second target interface of the sub-screen area corresponding to the first included angle being less than the first threshold is the same as the display direction of the first target interface.

[0024] Optionally, the determining or generating the first target interface and the second target interface according to the first playback state and the second playback state, and displaying the first target interface in the first screen area and the second target interface in the second screen area includes:

[0025] When both the first playback state and the second playback state are static, obtain first image data, and determine or generate a first interface according to the first image data, and display the first interface in the first screen area and the second screen area; the first target interface includes the first interface, and the second target interface includes the first interface;

[0026] Or,

[0027] When both the first playback state of the first screen area and the second playback state of the second screen area are non-static, and the angle data is greater than or equal to a second threshold, determine or generate the first target interface and the second target interface according to the first playback state, the second playback state, and the first image data, display the first target interface in the first screen area, and display the second target interface in the second screen area;

[0028] The first image data includes multiple frames of image data. When the angle data is between the second threshold and the third threshold, the image refresh frequency of the multiple frames of image data is positively correlated with the angle data; when the angle data is between the third threshold and the first threshold, the image refresh frequency of the multiple frames of image data is negatively correlated with the angle data; the third threshold is less than the first threshold, and the second threshold is less than the third threshold.

[0029] Optionally, the second screen area includes at least two sub-screen areas; when the first playback state of the first screen area and the second playback state of the second screen area are both non-static, and the angle data is greater than or equal to a second threshold, determining or generating the first target interface and the second target interface according to the first playback state, the second playback state, and the first image data, and displaying the first target interface on the first screen area and the second target interface on the second screen area, includes:

[0030] When the first playback state is an interactive state and the angle data is greater than or equal to the second threshold, determining or generating a second interface according to the first image data and the gesture data, displaying the second interface on the first screen area, determining or generating a third interface according to the second interface and the angle data, and displaying the third interface on the sub-screen area where the second playback state is a reactive state;

[0031] Determining or generating a fourth interface according to the second interface and the angle data, and displaying the fourth interface on the sub-screen area where the second playback state is an interactive state;

[0032] Wherein, the display direction of the second interface is the same as that of the third interface, and the display direction of the second interface is opposite to that of the fourth interface; the first target interface includes the second interface, and the second target interface includes the third interface and the fourth interface.

[0033] Optionally, the determining or generating the first target interface and the second target interface according to the first playback state, the second playback state, and the first image data, and displaying the first target interface on the first screen area and the second target interface on the second screen area, includes:

[0034] When the first playback state is a reactive state and the angle data is greater than or equal to the second threshold, determining or generating a fifth interface according to the first image data and the angle data, and displaying the fifth interface on the sub-screen area where the second playback state is an interactive state;

[0035] Determining or generating a sixth interface according to the fifth interface and the angle data, and displaying the sixth interface on the first screen area;

[0036] Displaying the sixth interface on the sub-screen area where the second playback state is a reactive state;

[0037] Wherein, the display direction of the fifth interface is the same as that of the sixth interface; the first target interface includes the sixth interface, and the second target interface includes the fifth interface and the sixth interface.

[0038] Optionally, determining or generating a first target interface and a second target interface according to the first playback state and the second playback state, and displaying the first target interface in the first screen area and the second target interface in the second screen area includes:

[0039] When both the first playback state and the second playback state are non-static, determining the difference between the angle data and 180°;

[0040] When the absolute value of the angle data or the difference is less than a second threshold, acquiring second image data;

[0041] Determining or generating a seventh interface according to the second image data;

[0042] Displaying the seventh interface in the first screen area and the second screen area.

[0043] The present application further provides a display device. The intelligent terminal includes a foldable screen and a rotating shaft. The foldable screen includes at least two screen areas. The device includes:

[0044] A first display module, configured to determine or generate a target interface corresponding to each screen area according to the attitude data and the angle data, and display the corresponding target interface in each screen area respectively.

[0045] The present application further provides an intelligent terminal, including: a foldable screen, a memory, and a processor. Wherein, a display program is stored on the memory, and when the display program is executed by the processor, the steps of the above method are implemented.

[0046] The present application further provides a computer storage medium. The computer storage medium stores a computer program, and when the computer program is executed by a processor, the steps of the above method are implemented.

[0047] As described above, the display method of the present application can be applied to an intelligent terminal, including: in response to a first operation, according to the attitude data and the angle data of the foldable screen, displaying corresponding target interfaces in each screen area of the foldable screen according to a preset strategy, which can flexibly switch the display interfaces of each screen area of the intelligent terminal, is simple and convenient to operate, and improves the user experience. Description of the Drawings

[0048] The accompanying drawings here are incorporated into the specification and form a part of this specification, showing embodiments consistent with this application, and are used together with the specification to explain the principles of this application. To more clearly illustrate the technical solutions of the embodiments of this application, the accompanying drawings required for use in the description of the embodiments will be briefly introduced below. Obviously, for those of ordinary skill in the art, other accompanying drawings can also be obtained based on these drawings without creative efforts.

[0049] Figure 1 Schematic diagram of the hardware structure of an intelligent terminal for implementing various embodiments of this application;

[0050] Figure 2 Schematic diagram of a communication network system architecture provided by an embodiment of this application;

[0051] Figure 3 Schematic diagram of the state of an intelligent terminal provided by an embodiment of this application;

[0052] Figure 4 Application scenario diagram of a display method provided by an embodiment of this application;

[0053] Figure 5 Application schematic diagram of a display method shown according to the second embodiment;

[0054] Figure 6 Application schematic diagram of a display method shown according to the third embodiment;

[0055] Figure 7 Another application schematic diagram of a display method shown according to the third embodiment;

[0056] Figure 8 Another application schematic diagram of a display method shown according to the third embodiment;

[0057] Figure 9 Schematic diagram of the structure of a display device shown according to the fourth embodiment.

[0058] The realization of the objectives of this application, functional features and advantages will be further described with reference to the embodiments and the accompanying drawings. Through the above accompanying drawings, the clear embodiments of this application have been shown, and there will be more detailed descriptions later. These accompanying drawings and text descriptions are not intended to limit the scope of the concept of this application in any way, but to explain the concept of this application to those skilled in the art by referring to specific embodiments. Detailed implementation manners

[0059] Exemplary embodiments will be described in detail herein, and examples thereof are shown in the accompanying drawings. When the following description refers to the accompanying drawings, unless otherwise indicated, the same numbers in different drawings represent the same or similar elements. The embodiments described in the following exemplary embodiments do not represent all embodiments consistent with the present application. On the contrary, they are merely examples of devices and methods consistent with some aspects of the present application as detailed in the appended claims.

[0060] It should be noted that, in this document, the terms "comprising", "including" or any other variation thereof are intended to cover a non-exclusive inclusion, such that a process, method, article or device comprising a series of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article or device. Without further limitation, an element defined by the phrase "comprising a..." does not exclude the existence of additional identical elements in the process, method, article or device comprising such element. In addition, components, features, and elements with the same name in different embodiments of the present application may have the same meaning or different meanings, and their specific meanings need to be determined based on their explanations in the specific embodiments or further in combination with the context of the specific embodiments.

[0061] It should be understood that although the terms first, second, third, etc. may be used herein to describe various information, such information should not be limited to these terms. These terms are only used to distinguish the same type of information from each other. For example, without departing from the scope of this document, the first information may also be referred to as the second information, and similarly, the second information may also be referred to as the first information. Depending on the context, the word "if" as used herein may be interpreted as "when" or "while" or "in response to determining". Furthermore, as used herein, the singular forms "a", "an" and "the" are also intended to include the plural forms unless the context indicates otherwise. It should be further understood that the terms "comprising", "including" indicate the presence of the described features, steps, operations, elements, components, items, types, and / or groups, but do not exclude the presence, occurrence or addition of one or more other features, steps, operations, elements, components, items, types, and / or groups. The terms "or", "and / or", "including at least one of the following" used in the present application can be interpreted inclusively, or mean any one or any combination. For example, "including at least one of the following: A, B, C" means "any one of the following: A; B; C; A and B; A and C; B and C; A and B and C", and again, "A, B or C" or "A, B and / or C" means "any one of the following: A; B; C; A and B; A and C; B and C; A and B and C". An exception to this definition occurs only when the combination of elements, functions, steps or operations is inherently mutually exclusive in some way.

[0062] It should be understood that although the steps in the flowcharts in the embodiments of the present application are shown sequentially in the direction of the arrows, these steps are not necessarily executed sequentially in the order indicated by the arrows. Unless there is a clear indication in this article, the execution of these steps has no strict order limit, and they can be executed in other orders. Moreover, at least a part of the steps in the figure may include multiple sub-steps or multiple stages. These sub-steps or stages are not necessarily executed at the same time, but can be executed at different times, and their execution order is not necessarily sequential, but can be executed alternately or alternately with at least a part of other steps or sub-steps or stages of other steps.

[0063] Depending on the context, the words "if" and "when" as used herein may be interpreted as "when...", "when...", "in response to determining", or "in response to detecting". Similarly, depending on the context, the phrase "if determined" or "if detected (stated condition or event)" may be interpreted as "when determined", "in response to determining", "when detecting (stated condition or event)", or "in response to detecting (stated condition or event)".

[0064] It should be noted that in this article, step codes such as S10, S20, and S30 are used. The purpose is to more clearly and briefly express the corresponding content and do not constitute a substantial limitation in order. Those skilled in the art may execute S20 first and then S10 during specific implementation, etc., but these should all be within the protection scope of the present application.

[0065] It should be understood that the specific embodiments described herein are only used to explain the present application and are not used to limit the present application.

[0066] In the following description, suffixes such as "module", "component", or "unit" used to represent elements are only for the convenience of the description of the present application, and they have no specific meaning in themselves. Therefore, "module", "component", or "unit" can be used interchangeably.

[0067] The intelligent terminal can be implemented in various forms. For example, the intelligent terminal described in the present application may include terminal devices with foldable screens and rotating shafts, such as horizontal folding mobile phones, vertical folding mobile phones, triple folding mobile phones, tablet computers with multi-foldable screens, notebook computers, handheld computers, personal digital assistants (PDAs), portable media players (PMPs), navigation devices, wearable devices, smart bracelets, pedometers, and other intelligent terminals, as well as fixed terminals such as digital TVs with multi-foldable screens and desktop computers.

[0068] In the following description, a smart terminal will be taken as an example for illustration. Those skilled in the art will understand that, except for the components specifically used for mobile purposes, the structure according to the embodiments of the present application can also be applied to fixed-type terminals.

[0069] Please refer to Figure 1 , which is a schematic diagram of the hardware structure of a smart terminal for implementing various embodiments of the present application. The smart terminal 100 may include: an RF (Radio Frequency) unit 101, a WiFi module 102, an audio output unit 103, an A / V (audio / video) input unit 104, a sensor 105, a display unit 106, a user input unit 107, an interface unit 108, a memory 109, a processor 110, and a power supply 111, etc. Those skilled in the art can understand that Figure 1 the smart terminal structure shown in

[0070] does not constitute a limitation to the smart terminal. The smart terminal may include more or fewer components than those shown in the figure, or combine certain components, or have different component arrangements. Figure 1 The following will specifically introduce each component of the smart terminal:

[0071] The radio frequency unit 101 can be used for receiving and transmitting information or signals during communication. Specifically, after receiving the downlink information from the base station, it is sent to the processor 110 for processing. Additionally, it sends the uplink data to the base station. Generally, the radio frequency unit 101 includes but is not limited to antennas, at least one amplifier, transceivers, couplers, low-noise amplifiers, duplexers, etc. Moreover, the radio frequency unit 101 can also communicate with the network and other devices via wireless communication. The above wireless communication can use any communication standard or protocol, including but not limited to GSM (Global System of Mobile communication), GPRS (General Packet Radio Service), CDMA2000 (Code Division Multiple Access 2000), WCDMA (Wideband Code Division Multiple Access), TD-SCDMA (Time Division-Synchronous Code Division Multiple Access), FDD-LTE (Frequency Division Duplexing - Long Term Evolution), TDD-LTE (Time Division Duplexing - Long Term Evolution), and 5G, etc.

[0072] WiFi belongs to short-distance wireless transmission technology. The intelligent terminal can help users send and receive emails, browse the web, and access streaming media through the WiFi module 102, which provides users with wireless broadband Internet access. Although Figure 1 the WiFi module 102 is shown, it can be understood that it is not an essential component of the intelligent terminal and can be omitted entirely within the scope of not changing the essence of the invention according to needs.

[0073] The audio output unit 103 can convert the audio data received by the radio frequency unit 101 or the WiFi module 102 or stored in the memory 109 into an audio signal and output it as sound when the intelligent terminal 100 is in modes such as call signal reception mode, call mode, recording mode, voice recognition mode, broadcast reception mode, etc. Moreover, the audio output unit 103 can also provide audio outputs related to specific functions executed by the intelligent terminal 100 (such as call signal reception sound, message reception sound, etc.). The audio output unit 103 can include speakers, buzzers, etc.

[0074] The A / V input unit 104 is used to receive audio or video signals. The A / V input unit 104 may include a Graphics Processing Unit (GPU) 1041 and a microphone 1042. The GPU 1041 processes the image data of a still picture or video obtained by an image capture device (such as a camera) in a video capture mode or an image capture mode. The processed image frames can be displayed on the display unit 106. The display unit 106 includes a foldable screen. The image frames processed by the GPU 1041 can be stored in the memory 109 (or other storage media) or transmitted via the radio frequency unit 101 or the WiFi module 102. The microphone 1042 can receive sound (audio data) via the microphone 1042 in operating modes such as a phone call mode, a recording mode, a voice recognition mode, etc., and can process such sound into audio data. The processed audio (voice) data can be converted into a format that can be transmitted to a mobile communication base station via the radio frequency unit 101 in the case of the phone call mode and output. The microphone 1042 can implement various types of noise cancellation (or suppression) algorithms to cancel (or suppress) the noise or interference generated during the reception and transmission of audio signals.

[0075] The smart terminal 100 further includes at least one sensor 105, such as a light sensor, a motion sensor, and other sensors. Optionally, the light sensor includes an ambient light sensor and a proximity sensor. Optionally, the ambient light sensor can adjust the brightness of the display panel 1061 according to the brightness of the ambient light, and the proximity sensor can turn off the display panel 1061 and / or the backlight when the smart terminal 100 is moved to the ear. As a type of motion sensor, the accelerometer sensor can detect the magnitude of acceleration in all directions (generally three axes), and can detect the magnitude and direction of gravity when stationary, and can be used for applications that identify the posture of the smart terminal (such as landscape / portrait screen switching, related games, magnetometer posture calibration), vibration recognition related functions (such as a pedometer, tapping), etc.; as for other sensors that the smart terminal can also be configured with, such as a fingerprint sensor, a pressure sensor, an iris sensor, a molecular sensor, a gyroscope, a barometer, a hygrometer, a thermometer, an infrared sensor, etc., they will not be elaborated here.

[0076] The display unit 106 is used to display information input by the user or information provided to the user. The display unit 106 may include a display panel 1061, and the display panel 1061 can be configured in the form of a Liquid Crystal Display (LCD), an Organic Light-Emitting Diode (OLED), etc.

[0077] The user input unit 107 can be used to receive input numerical or character information, and generate key signal inputs related to the user settings and function control of the smart terminal. Optionally, the user input unit 107 may include a touch panel 1071 and other input devices 1072. The touch panel 1071, also known as a touch screen, can collect touch operations of the user thereon or nearby (such as operations of the user using a finger, a stylus, or any suitable object or accessory on or near the touch panel 1071), and drive the corresponding connection device according to a preset program. The touch panel 1071 can include two parts: a touch detection device and a touch controller. Optionally, the touch detection device detects the touch orientation of the user, detects the signal brought by the touch operation, and transmits the signal to the touch controller; the touch controller receives the touch information from the touch detection device, converts it into contact coordinates, and then sends it to the processor 110, and can receive and execute commands sent by the processor 110. In addition, the touch panel 1071 can be implemented in multiple types such as resistive, capacitive, infrared, and surface acoustic wave. In addition to the touch panel 1071, the user input unit 107 may further include other input devices 1072. Optionally, the other input devices 1072 may include, but are not limited to, one or more of a physical keyboard, function keys (such as volume control keys, switch keys, etc.), a trackball, a mouse, a joystick, etc., and specific details are not limited here.

[0078] Optionally, the touch panel 1071 may cover the display panel 1061. After the touch panel 1071 detects a touch operation thereon or nearby, it transmits the operation to the processor 110 to determine the type of the touch event. Subsequently, the processor 110 provides a corresponding visual output on the display panel 1061 according to the type of the touch event. Although in Figure 1 the touch panel 1071 and the display panel 1061 are implemented as two independent components to realize the input and output functions of the smart terminal, in some embodiments, the touch panel 1071 and the display panel 1061 may be integrated to realize the input and output functions of the smart terminal, and specific details are not limited here.

[0079] The interface unit 108 serves as an interface through which at least one external device can be connected to the smart terminal 100. For example, the external device may include a wired or wireless headset port, an external power supply (or battery charger) port, a wired or wireless data port, a memory card port, a port for connecting a device with an identification module, an audio input / output (I / O) port, a video I / O port, a headphone port, and so on. The interface unit 108 can be used to receive inputs from the external device (such as data information, power, etc.) and transmit the received inputs to one or more components within the smart terminal 100, or can be used to transmit data between the smart terminal 100 and the external device.

[0080] The memory 109 can be used to store software programs and various data. The memory 109 mainly includes a program storage area and a data storage area. Optionally, the program storage area can store an operating system, application programs required for at least one function (such as a sound playback function, an image playback function, etc.); the data storage area can store data created according to the use of the smart terminal (such as audio data, phone book, etc.). In addition, the memory 109 can include high-speed random access memory, and can also include non-volatile memory, such as at least one magnetic disk storage device, a flash memory device, or other volatile solid-state storage devices.

[0081] The processor 110 is the control center of the smart terminal, connecting various parts of the entire smart terminal through various interfaces and circuits. By running or executing the software programs and / or modules stored in the memory 109, and calling the data stored in the memory 109, it executes various functions of the smart terminal and processes data, thereby monitoring the smart terminal as a whole. The processor 110 can include one or more processing units; preferably, the processor 110 can integrate an application processor and a modem processor. Optionally, the application processor mainly processes the operating system, user interface, and application programs, etc., and the modem processor mainly processes wireless communications. It can be understood that the above-mentioned modem processor may not be integrated into the processor 110.

[0082] The smart terminal 100 can also include a power supply 111 (such as a battery) for supplying power to each component. Preferably, the power supply 111 can be logically connected to the processor 110 through a power management system, so as to implement functions such as management of charging, discharging, and power consumption management through the power management system.

[0083] Although Figure 1 not shown, the smart terminal 100 can also include a Bluetooth module, etc., which will not be elaborated here.

[0084] To facilitate the understanding of the embodiments of the present application, the communication network system on which the smart terminal of the present application is based will be described below.

[0085] Please refer to Figure 2 , Figure 2 which is an architecture diagram of a communication network system provided by an embodiment of the present application. This communication network system is an LTE system of the Universal Mobile Telecommunications Technology. This LTE system includes a UE (User Equipment) 201, an E-UTRAN (Evolved UMTS Terrestrial Radio Access Network) 202, an EPC (Evolved Packet Core) 203, and the operator's IP service 204 that are sequentially communicatively connected.

[0086] Optionally, the UE 201 may be the above-mentioned terminal 100, which will not be elaborated here.

[0087] The E-UTRAN 202 includes an eNodeB 2021 and other eNodeBs 2022, etc. Optionally, the eNodeB 2021 may be connected to other eNodeBs 2022 through a backhaul (such as an X2 interface), the eNodeB 2021 is connected to the EPC 203, and the eNodeB 2021 may provide access for the UE 201 to the EPC 203.

[0088] The EPC 203 may include an MME (Mobility Management Entity) 2031, an HSS (Home Subscriber Server) 2032, other MMEs 2033, an SGW (Serving GateWay) 2034, a PGW (PDN Gate Way) 2035, a PCRF (Policy and Charging Rules Function) 2036, etc. Optionally, the MME 2031 is a control node that processes the signaling between the UE 201 and the EPC 203 and provides bearer and connection management. The HSS 2032 is used to provide some registers to manage functions such as a home location register (not shown in the figure) and stores some user-specific information such as service characteristics and data rates. All user data may be sent through the SGW 2034. The PGW 2035 may provide IP address allocation for the UE 201 and other functions. The PCRF 2036 is a policy and charging control policy decision point for service data flows and IP bearer resources, and it selects and provides available policy and charging control decisions for a policy and charging enforcement function unit (not shown in the figure).

[0089] The IP service 204 may include the Internet, an intranet, an IMS (IP Multimedia Subsystem), or other IP services, etc.

[0090] Although the above has been described by taking the LTE system as an example, those skilled in the art should be aware that the present application is not only applicable to the LTE system, but also applicable to other wireless communication systems, such as GSM, CDMA2000, WCDMA, TD-SCDMA, and future new network systems (such as 5G), etc., which are not limited here.

[0091] Based on the above intelligent terminal hardware structure and communication network system, various embodiments of the present application are proposed.

[0092] Figure 3 It is a schematic diagram of a state of a smart terminal.

[0093] Taking the foldable screen smart terminal as a triple-fold mobile phone as an example, refer to Figure 3 , the triple-fold mobile phone has at least three screen areas (Screen A, Screen B, Screen C), and has at least three states: the folded state (as shown in 301), the hovering state (as shown in 302, 303), and the unfolded state (as shown in 304).

[0094] When the user wants to switch the display interface of the screen area in the triple-fold mobile phone, the display area of the triple-fold mobile phone can be switched by changing the state of the smart terminal. For example, when the user switches the triple-fold mobile phone to the folded state, the outermost screen area 3011 is used as the display area to display the corresponding content; or, when the user switches the triple-fold mobile phone to the unfolded state, Screens A, B, and C are all used as the display area to display the corresponding content. The operation of this method is relatively complex and lacks flexibility, resulting in a poor user experience.

[0095] To solve the above problems, an embodiment of the present application provides a display method that can be applied to a smart terminal including a foldable screen and a rotating shaft, and the foldable screen includes at least two screen areas. In response to the user's first operation, according to the attitude data and angle data of the foldable screen, the corresponding target interfaces are respectively displayed in each screen area of the foldable screen according to a preset strategy, which can flexibly switch the display area of the smart terminal, the display content of each screen area, etc., and the operation is simple and convenient, improving the user experience.

[0096] Still taking the foldable screen smart terminal as a triple-fold mobile phone as an example, combined with Figure 4 , the application scenario of the present application is introduced.

[0097] Refer to Figure 4 , in response to the user's first operation, the state data of the smart terminal is collected. As shown in 401, when it is determined according to the state data that the smart terminal is in the unfolded state, it can be determined that the target interfaces of Screens A, B, and C are the same. As shown in 402, when it is determined according to the state data (such as ∠a, ∠b, and ∠c in 402) that the smart terminal is in the hovering state, the target interfaces corresponding to Screens A, B, and C can be respectively determined, and the corresponding target interfaces are respectively displayed on each of Screens A, B, and C. The operation is simple, fast, and highly flexible.

[0098] It should be noted that the user information (including but not limited to user device information, user personal information, etc.) and data (including but not limited to data for analysis, stored data, displayed data, etc.) involved in one or more embodiments of this specification are all information and data that have been authorized by the user or fully authorized by all parties. And the collection, use, and processing of relevant data need to comply with relevant laws, regulations, and standards, and corresponding operation entrances are provided for users to choose to authorize or refuse.

[0099] Next, mainly taking a three-fold mobile phone as an intelligent terminal as an example, the technical solution shown in this application will be described in detail through specific embodiments. Optionally, the following embodiments can exist independently or be combined with each other. For the same or similar content, it will not be repeated in different embodiments.

[0100] The first embodiment

[0101] A display method provided by an embodiment of this application may include:

[0102] In response to a first operation, according to the attitude data and angle data of the folding screen, display corresponding target interfaces in each screen area of the folding screen according to a preset strategy.

[0103] Optionally, the intelligent terminal includes a foldable screen and a rotating shaft. The foldable screen includes at least two screen areas, and the rotating shaft is a component for connecting each screen area. The intelligent terminal includes multiple states such as a folded state, a hover state, and an unfolded state.

[0104] Optionally, the first operation is used to indicate the user's operations such as folding and unfolding the screen area in the intelligent terminal.

[0105] Optionally, in response to the first operation, the state data of the intelligent terminal can be collected by a sensing device, so as to determine data such as the state of the intelligent terminal and the angle between two adjacent screen areas in the intelligent terminal after the first operation.

[0106] Optionally, the state data includes but is not limited to attitude data and angle data.

[0107] Optionally, the attitude data of the intelligent terminal can be collected by a gyroscope. It should be understood that the attitude data collected by the gyroscope includes angular velocity data, angle data, and rotation axis information.

[0108] Optionally, the gyroscope can map the collected induction data to the tilt angle of the wide screen axis in the screen area. For example, the induction data Y = the tilt angle X, to obtain the horizontal deflection angle of the screen area.

[0109] Optionally, the attitude data collected by the gyroscope includes multiple directions (such as up, down, left, right, front, and back) and corresponding angular velocity information (such as yaw angle and pitch angle).

[0110] Optionally, the angle data can be collected by a Hall effect or capacitive angle sensor. The angle data can include the angle between every two adjacent screen areas in the smart terminal.

[0111] Optionally, before the first operation, the smart terminal can be in a locked screen state. The first operation is an unlocking operation implemented by the user through fingerprint input, password input, face recognition, etc., or other operations to wake up the screen (such as voice wake-up).

[0112] Optionally, the playing state of each screen area is determined according to the attitude data and the angle data, and then the target interface corresponding to each screen area is determined according to the playing state of each screen area, and the target interface corresponding to the screen area is displayed in each screen area.

[0113] Optionally, the target interfaces of each screen area can be the same or different.

[0114] Optionally, the playing state includes an interactive state, a reactive state, and a static state.

[0115] Optionally, the interactive state is used to indicate: in response to the first operation, among at least two screen areas of the smart terminal, the playing state of the screen area with the highest target interface switching frequency.

[0116] Optionally, the reactive state is used to indicate: the playing state of the screen area that has data interaction with the screen area in the interactive state.

[0117] Optionally, the static state is used to indicate the playing state of the screen area with the lowest target interface switching frequency.

[0118] Optionally, combining the attitude data and the angle data can change the display effect of the target interface in each screen area, such as determining the direction, speed (motion amplitude), frequency, etc. of the dynamic effect of the object movement in the interface according to the attitude data and the angle data.

[0119] Optionally, the preset strategy includes:

[0120] S1. According to the attitude data and the angle data, determine the first playing state of the first screen area among at least two screen areas, and the second playing state of the second screen area among the at least two screen areas; the first screen area is the screen area where the gyroscope is set; the second screen area includes the screen areas other than the first screen area among the at least two screen areas.

[0121] Optionally, based on the attitude data and angle data of the smart terminal, determine the first playback state of the first screen area among at least two screen areas. The first screen area is used to indicate the screen area with a gyroscope among at least two screen areas. The second screen area is used to indicate the screen areas other than the first screen area among at least two screen areas of the smart terminal.

[0122] Optionally, the smart terminal can be provided with one or more gyroscopes. Correspondingly, the first screen area can indicate one or more screen areas with gyroscopes.

[0123] Optionally, the gyroscope can be set at any corresponding position within the first screen area.

[0124] Optionally, the gyroscope can be set within the position area corresponding to the outermost screen area among at least two screen areas of the smart terminal, or the gyroscope can be set within the position area corresponding to the screen area that is adjacent to two or more screen areas among at least two screen areas of the smart terminal.

[0125] For example Figure 4 Taking the three-fold mobile phone shown as an example, the gyroscope can be set within the position areas corresponding to screen A and screen C, such that the first screen area (i.e., screen A and screen C) is adjacent to screen B respectively. Or, the gyroscope can be set within the position area corresponding to screen B, such that the first screen area (i.e., screen B) is adjacent to both screen A and screen C.

[0126] Optionally, based on the attitude data of the smart terminal and the angle data, determine the second playback state of the second screen area among at least two screen areas. The second screen area is the screen area of the smart terminal without a gyroscope.

[0127] Optionally, the second screen area can include one sub-screen area, or the second screen area can further include at least two sub-screen areas.

[0128] Still taking Figure 4 the three-fold mobile phone shown as an example, when the gyroscope is set on screen A, the second screen area includes screen B and screen C; or when the gyroscope is set within the position area corresponding to screen B, the second screen area includes screen A and screen C. Or when the gyroscope is set within the position areas corresponding to screen A and screen C, the second screen area includes screen B.

[0129] S2. Determine or generate a first target interface and a second target interface according to the first playback state and the second playback state, and display the first target interface in the first screen area and display the second target interface in the second screen area.

[0130] Optionally, based on the first playback state of the first screen area and the second playback state of the second screen area, determine the first target interface corresponding to the first screen area and the second target interface corresponding to the second screen area.

[0131] Optionally, display the first target interface in the first screen area and display the second target interface in the second screen area.

[0132] Optionally, the first target interface and the second target interface may be the same or different.

[0133] Optionally, the angle data includes the angle between each two adjacent screen areas among the at least two screen areas;

[0134] Optionally, the angle data includes the angle between each two adjacent screen areas among at least two screen areas of the smart terminal.

[0135] Still taking Figure 4 the three-fold mobile phone shown as an example, the angle data includes the angle between screen A and screen B, and the angle between screen B and screen C.

[0136] Optionally, S1 includes:

[0137] S11. According to the attitude data, determine the horizontal deflection angle of the first screen area; the first screen area is the screen area where the gyroscope is set.

[0138] Optionally, the gyroscope can be used to collect the deflection angle of the smart terminal relative to the horizontal plane. Correspondingly, when the first screen area is the screen area where the gyroscope is set, the horizontal deflection angle of the first screen area can be determined according to the attitude data of the smart terminal.

[0139] S12. According to the horizontal deflection angle and the first angle between the first screen area and the second screen area, determine the first playback state of the first screen area and the second playback state of the second screen area; the second screen area is, among the at least two screen areas, the screen area that is adjacent to the first screen area and other than the first screen area; the playback state includes the reaction state, the interaction state, and the static state.

[0140] Optionally, among at least two screen areas of the smart terminal, the screen area that is adjacent to the first screen area and other than the first screen area is determined as the second screen area. Based on the foregoing, the angle data includes the angle between each two adjacent screen areas. Correspondingly, the angle data includes the first angle between the first screen area and the second screen area.

[0141] Optionally, according to the horizontal deflection angle of the first screen area and the first included angle between the first screen area and the second screen, determine the first playback state of the first screen area and the second playback state of the second screen area.

[0142] Optionally, the first playback state of the first screen area and the second playback state of the second screen area may be the same or different.

[0143] Optionally, when there is a static screen area among at least two screen areas, it is determined that all screen areas in the intelligent terminal are static.

[0144] The embodiment of the present application provides a display method. In response to the first operation of the user, collect the state data of the intelligent terminal, determine or generate the target interface of each screen area according to the state data and display it, which can flexibly switch the display content of each screen area in the intelligent terminal, etc. The operation is simple and convenient, improving the user experience.

[0145] Second Embodiment

[0146] Optionally, the second screen area includes at least two sub-screen areas; the first included angle includes at least two.

[0147] Optionally, the second screen area includes at least two sub-screen areas, and the corresponding first screen area is adjacent to at least two sub-screen areas. In this way, the angle data includes the first included angle between the first screen area and each sub-screen area among at least two sub-screen areas.

[0148] Still taking the three-fold mobile phone as shown in Figure 4 When the gyroscope is set in the position area corresponding to screen B, the first screen area includes screen B, and the second screen area includes two sub-screen areas such as screen A and screen C. Correspondingly, the angle data includes the first included angle between screen B and screen A, and the first included angle between screen B and screen C.

[0149] Step S12 in this method may include S121 and / or S122:

[0150] S121. When the horizontal deflection angle is 0 and all the at least two first included angles are the first threshold, determine that the first playback state of the first screen area and the second playback state of the second screen area are both static.

[0151] Optionally, when the horizontal deflection angle of the first screen area is 0, it is indicated that the first screen area is parallel to the horizontal plane, obtain the first included angle between the first screen area and each sub-screen area, and when the first included angles between the first screen area and at least two sub-screen areas are all 0, determine that the first playback state of the first screen area and the second playback state of the second screen area are both static.

[0152] Optionally, when both the first screen area and the second screen area are static, the target interfaces of the first screen area and the second screen area can be the same.

[0153] S122. When the horizontal deflection angle is 0 and there is a first included angle among the at least two first included angles that is not the first threshold, determine that the first playback state of the first screen area is the reactive state, determine that the second playback state of the sub-screen area corresponding to the first included angle that is not the first threshold is the interactive state, and determine that the second playback state of the sub-screen area corresponding to the first included angle that is the first threshold is the reactive state.

[0154] Optionally, when the horizontal deflection angle of the first screen area is 0 and there is a first included angle among the first included angles between the first screen area and at least two sub-screen areas that is not the first threshold, determine that the first playback state of the first screen area is the reactive state.

[0155] Optionally, determine that the second playback state of the sub-screen area corresponding to the first included angle that is the first threshold between the sub-screen area and the first screen area is the reactive state.

[0156] Optionally, determine that the second playback state of the sub-screen area corresponding to the first included angle that is not the first threshold between the sub-screen area and the first screen area is the interactive state.

[0157] Optionally, when the horizontal deflection angle of the first screen area is 0 and there is a first included angle among the first included angles between the first screen area and at least two sub-screen areas that is not the first threshold, the second playback states of the sub-screen areas in the second screen area may be the same or different.

[0158] Optionally, when the horizontal deflection angle of the first screen area is 0 and the first included angles between each sub-screen area in the second screen area and the first screen area are all the first threshold, the second playback states of all sub-screen areas in the second screen area are all the reactive state.

[0159] Optionally, when the horizontal deflection angle of the first screen area is 0 and the first included angles between each sub-screen area in the second screen area and the first screen area are all not the first threshold, the second playback states of all sub-screen areas in the second screen area are all the interactive state.

[0160] Optionally, the first threshold is 180° or the first threshold is 165°.

[0161] Based on this, the intelligent terminal can respond to the user's first operation on the intelligent terminal, adjust the playback states of the first screen area and the second screen area, so as to change the playback interfaces and playback effects of the first screen area and the second screen area, and the operation is simple and convenient.

[0162] Optionally, determining the first playback state of the first screen area and the second playback state of the second screen area according to the horizontal deflection angle and the first included angle between the first screen area and the second screen area includes:

[0163] When the horizontal deflection angle is not 0, determining the first playback state of the first screen area as the interactive state.

[0164] Determining the second playback state of the sub-screen area corresponding to the first included angle being the first threshold as the reactive state;

[0165] Determining the second playback state of the sub-screen area corresponding to the first included angle being greater than the first threshold as the interactive state, and the display direction of the second target interface of the sub-screen area corresponding to the first included angle being greater than the first threshold is opposite to the display direction of the first target interface;

[0166] Determining the second playback state of the sub-screen area corresponding to the first included angle being less than the first threshold as the interactive state, and the display direction of the second target interface of the sub-screen area corresponding to the first included angle being less than the first threshold is the same as the display direction of the first target interface.

[0167] Optionally, when the horizontal deflection angle of the first screen area is not 0, determining the first playback state of the first screen area as the interactive state.

[0168] Optionally, determining the second playback state of the sub-screen area corresponding to the first included angle with the first screen area being the first threshold as the reactive state.

[0169] Optionally, when the first included angle with the first screen area is the first threshold, indicating that the corresponding sub-screen area is parallel and connected to the first screen area.

[0170] Optionally, determining the second playback state of the sub-screen area corresponding to the first included angle with the first screen area being greater than the first threshold as the interactive state.

[0171] Optionally, the display direction of the second target interface of the sub-screen area corresponding to the first included angle with the first screen area being greater than the first threshold is opposite to the display direction of the first target interface of the first screen area.

[0172] Optionally, determining the second playback state of the sub-screen area corresponding to the first included angle with the first screen area being less than the first threshold as the interactive state.

[0173] Optionally, the display direction of the second target interface of the sub-screen area where the first included angle with the first screen area is less than the first threshold is the same as the display direction of the first target interface of the first screen area.

[0174] Figure 5 It is a schematic diagram of an application scenario provided by an embodiment of the present application.

[0175] Taking the first screen area as screen B and the first threshold as 180° as an example, please refer to Figure 5 , screen B and the second screen area (adjacent to screen A and screen C). The first horizontal deflection angle ∠a is the deflection angle of screen B relative to the horizontal plane, and the first included angle includes ∠b between screen B and screen A and ∠c between screen B and screen C.

[0176] As shown in 701, when the first horizontal deflection angle is 0 and each first included angle (including ∠b and ∠c) is 0, the intelligent terminal is in the unfolded state, and screens A, B, and C are all static. Correspondingly, the target interfaces of screens A, B, and C are the same. Refer to Figure 5 702 in

[0177] As shown in 703 and 704, when the first horizontal deflection angle is 0° and ∠b and ∠c are not 180°, the intelligent terminal is in the hovering state, screen A is in the interactive state, screen B is in the reactive state, and screen C is in the interactive state.

[0178] As shown in 705, when the first horizontal deflection angle is 0°, ∠b is not 180°, and ∠c is 180°, the intelligent terminal is in the hovering state, screen A is in the interactive state, screen B is in the reactive state, and screen C is in the reactive state.

[0179] As shown in 706, when the first horizontal deflection angle is not 0°, ∠b is not 180°, and ∠c is 180°, the intelligent terminal is in the hovering state, screen A is in the reactive state, screen B is in the interactive state, and screen C is in the interactive state.

[0180] As shown in 707 - 709, when the first horizontal deflection angle is not 0° and ∠b and ∠c are not 180°, the intelligent terminal is in the hovering state, screen A is in the reactive state, screen B is in the interactive state, and screen C is in the interactive state. Among them, for the first included angle between screen A and screen B shown in 707 and 708 is greater than 180°, then the second playback state of screen A is the interactive state. And for the first included angle between screen C and screen B is greater than 180°, then the second playback state of screen C is the interactive state. For the first included angle between screen A and screen B shown in 709 is less than 180°, then the second playback state of screen A is the interactive state, and for the first included angle between screen C and screen B is greater than 180°, then the second playback state of screen C is the reactive state.

[0181] In the embodiment of the present application, in response to a first operation of a user on a smart terminal, the display interfaces of each screen area in the smart terminal and the display directions of each display interface are flexibly switched, the operation is simple and convenient, and the user experience is improved.

[0182] Third Embodiment

[0183] A schematic flow chart of step S2 of another display method provided by the embodiment of the present application. In this method, step S2 may include:

[0184] S21. When both the first playback state and the second playback state are static, obtain first image data, and determine or generate a first interface according to the first image data, and display the first interface in the first screen area and the second screen area; the first target interface includes the first interface, and the second target interface includes the first interface.

[0185] Optionally, when the first playback state in the first screen area and the second playback state in the second screen area are both static, obtain the first image data.

[0186] Optionally, the first image data may be pre-set image data, or image data selected by the user through the first operation.

[0187] Optionally, the first image data may be image data, video data, an animation composed of multiple frames of image data, a wallpaper, etc.

[0188] Optionally, the animation and the wallpaper may include at least two layers: a bottom layer is a background layer, and an upper layer is an object layer, an effect layer, etc. When the screen area is in a mutual dynamic state or a reaction state, the image data of the background layer remains unchanged, and the image data in the object layer and the effect layer may change with the pose data and the angle data.

[0189] Optionally, determine or generate a first interface according to the first image data, and display the first interface in the first screen area and the second screen area.

[0190] Optionally, the first target interface in the first screen area includes the first interface, and the second target interface in the second screen area includes the second interface.

[0191] S22. When the first playback state of the first screen area and the second playback state of the second screen area are both non-static, and the angle data is greater than or equal to the second threshold, determine or generate the first target interface and the second target interface according to the first playback state, the second playback state, and the first image data, display the first target interface in the first screen area, and display the second target interface in the second screen area; the first image data includes multiple frames of image data. When the angle data is between the second threshold and the third threshold, the image refresh frequency of the multiple frames of image data is positively correlated with the angle data; when the angle data is between the third threshold and the first threshold, the image refresh frequency of the multiple frames of image data is negatively correlated with the angle data; the third threshold is less than the first threshold, and the second threshold is less than the third threshold.

[0192] Optionally, when the first playback state of the first screen area and the second playback state of the second screen area are both non-static, and the angle data is greater than or equal to the second threshold, it is determined that the first target interface of the first screen area is different from the second target interface of the second screen area.

[0193] Optionally, determine or generate the first target interface of the first screen area and the second target interface of the second screen area according to the first playback state of the first screen area, the second playback state of the second screen area, and the first influence data.

[0194] Optionally, display the first target interface in the first screen area and display the second target interface in the second screen area.

[0195] Optionally, the first image data may include multiple frames of image data, such as videos, animations, etc.

[0196] Optionally, when the angle data is between the second threshold and the third threshold, in the first target interface of the first screen area determined according to the first image data, the image refresh frequency is positively correlated with the angle data; when the angle data is between the third threshold and the first threshold, in the second target interface of the second screen area determined according to the first image data, the image refresh frequency is negatively correlated with the angle data. In this way, the display effect of the target interface of each screen area, the movement speed (or movement amplitude) of the object in the image, and the position change amplitude of the object in the image can change with the included angle (including attitude data and angle data) corresponding to each screen area.

[0197] Optionally, the third threshold is less than the first threshold, and the second threshold is less than the third threshold.

[0198] Optionally, the third threshold is 90°.

[0199] Optionally, the second threshold is 15°, or the second threshold is 20°.

[0200] Based on this, different interfaces can be displayed in each screen area, and the display effects of each interface can be different. Moreover, the dynamic effects of the display effects in the interfaces of each screen area are strongly related to the physical operations of the user changing the state of the intelligent terminal and the folding angle of the intelligent terminal, and are more combined with vision. The interactivity is strong.

[0201] Optionally, the second screen area includes at least two sub-screen areas;

[0202] Optionally, when the first playback state of the first screen area and the second playback state of the second screen area are both non-static, and the angle data is greater than or equal to the second threshold, determining or generating the first target interface and the second target interface according to the first playback state, the second playback state, and the first image data, and displaying the first target interface in the first screen area and the second target interface in the second screen area includes:

[0203] When the first playback state is an interactive state and the angle data is greater than or equal to the second threshold, determining or generating a second interface according to the first image data and the attitude data, displaying the second interface in the first screen area, determining or generating a third interface according to the second interface and the angle data, and displaying the third interface in the sub-screen area where the second playback state is a reactive state;

[0204] Determining or generating a fourth interface according to the second interface and the angle data, and displaying the fourth interface in the sub-screen area where the second playback state is an interactive state;

[0205] Wherein, the display direction of the second interface is the same as the display direction of the third interface, and the display direction of the second interface is opposite to the display direction of the fourth interface; the first target interface includes the second interface, and the second target interface includes the third interface and the fourth interface.

[0206] Optionally, when the first playback state of the first screen area is an interactive state, determining or generating a second interface according to the horizontal deflection angle between the first screen area and the horizontal plane in the first image data and the attitude data, and displaying the second interface in the first screen area, and the first target interface includes the second interface.

[0207] Optionally, obtaining the second playback state of each sub-screen area in the second screen area and the first included angle between the first screen area and each sub-screen area.

[0208] Optionally, a third interface is determined or generated according to the second interface and a first included angle corresponding to a sub-screen area in the second playback state being a reactive state, and the third interface is displayed on the sub-screen in the second playback state being a reactive state. The second target interface includes the third interface. The third interface of the sub-screen area in the second playback state being a reactive state corresponds to the display effect of the second interface of the first screen area being an interactive state, that is, the interface display effect of the reactive screen area can change as the interface display effect in the adjacent interactive screen occurs.

[0209] Optionally, a fourth interface is determined or generated according to the second interface and a first included angle corresponding to a sub-screen area in the second playback state being an interactive state, and the fourth interface is displayed on the sub-screen area in the second playback state being an interactive state. The second target interface includes the fourth interface.

[0210] Optionally, the display direction of the second interface is the same as that of the third interface, and the display direction of the second interface is opposite to that of the fourth interface.

[0211] Optionally, when the first playback state of the first screen area is an interactive state, the second playback states of the sub-screen areas in the second screen area may be the same or different.

[0212] Optionally, when the first playback state of the first screen area is an interactive state, the second playback states of all the sub-screen areas in the second screen area are all in an interactive state.

[0213] Optionally, when the first playback state of the first screen area is an interactive state, the second playback states of all the sub-screen areas in the second screen area are all in a reactive state.

[0214] Optionally, when the first playback state of the first screen area is an interactive state, in the second screen area, the second playback states of some sub-screen areas are in an interactive state, and the second playback states of some sub-screen areas are in a reactive state.

[0215] Optionally, the second screen area includes at least two sub-screen areas; when the first playback state of the first screen area and the second playback state of the second screen area are both non-static, and the angle data is greater than or equal to a second threshold, determining or generating the first target interface and the second target interface according to the first playback state, the second playback state, and the first image data, and displaying the first target interface on the first screen area and displaying the second target interface on the second screen area includes:

[0216] When the first playback state is the reactive state and the angle data is greater than or equal to the second threshold, determine or generate a fifth interface based on the first image data and the angle data, and display the fifth interface in the sub-screen area where the second playback state is the interactive state;

[0217] Determine or generate a sixth interface based on the fifth interface and the angle data, and display the sixth interface in the first screen area;

[0218] Display the sixth interface in the sub-screen area where the second playback state is the reactive state;

[0219] Wherein, the display direction of the fifth interface is the same as that of the sixth interface; the first target interface includes the sixth interface, and the second target interface includes the fifth interface and the sixth interface.

[0220] Optionally, when the first playback state in the first screen area is the reactive state, the second playback states of the sub-screen areas in the second screen area may be the same or different.

[0221] Optionally, when the first playback state in the first screen area is the reactive state, the second playback states of all sub-screen areas in the second screen area are in the interactive state.

[0222] Optionally, when the first playback state in the first screen area is the reactive state, the second playback states of all sub-screen areas in the second screen area are in the reactive state.

[0223] Optionally, when the first playback state in the first screen area is the reactive state, in the second screen area, the second playback states of some sub-screen areas are in the interactive state, and the second playback states of some sub-screen areas are in the reactive state.

[0224] Optionally, obtain the second playback state of each sub-screen area in the second screen area, and the first angle between the first screen area and each sub-screen area.

[0225] Optionally, when the first playback state in the first screen area is the reactive state, determine or generate a fifth interface based on the first image data and the first angle of the sub-screen area where the second playback state is the interactive state, and display the fifth interface in the sub-screen area where the second playback state is the interactive state.

[0226] Optionally, the second target interface includes the fifth interface.

[0227] Optionally, when the first playback state in the first screen area is the reactive state, determine or generate a sixth interface based on the first image data and the first angle of the sub-screen area where the second playback state is the reactive state, and display the sixth interface in the first screen area.

[0228] Optionally, the first target interface includes the sixth interface.

[0229] Optionally, the sixth interface is displayed in the sub-screen area where the second playback state is the reactive state.

[0230] Optionally, the second target interface includes the sixth interface.

[0231] Optionally, the display direction of the fifth interface is the same as that of the sixth interface.

[0232] Figure 6 It is a schematic diagram of another application scenario provided by the embodiments of the present application.

[0233] Please refer to Figure 6 , taking the first screen area as screen B and the first image data as an animation including multiple frames of images as an example. In the three-fold mobile phone shown in 901 and 903, the horizontal deflection angle of screen area B is not 0°, and the first included angle between screen A and screen B is greater than 180°. Then, the second playback state of screen A is the interactive state. And the first included angle between screen C and screen B is greater than 180°. Then, the second playback state of screen C is the interactive state. As shown in 902 and 904, the display directions of screen B and screen C are the same. The display direction of screen B is opposite to that of screen A.

[0234] The first included angle between screen B and screen A shown in 903 is smaller than the first included angle between screen B and screen A shown in 901. Correspondingly, the refresh frequency of the animation displayed on screen B shown in 904 is greater than the refresh frequency of the animation displayed on screen B shown in 902. Correspondingly, in the animation displayed on screen B shown in 904, the water flow speed becomes faster, and the swimming speed of the small fish and the frequency of the change in the position of the small fish are higher than the swimming speed of the small fish and the frequency of the change in the position of the small fish in the animation displayed on screen B shown in 902.

[0235] The horizontal deflection angle of screen area B shown in 905 and 907 is 0°, and the first included angle between screen A and screen B is less than 180°. Then, the second playback state of screen A is the interactive state. And the first included angle between screen C and screen B is equal to 180°. Then, the second playback state of screen C is the reactive state. As shown in 906 and 908, the display directions of screen A, screen B, and screen C are all the same, and the refresh frequency of the animation displayed on screen B shown in 908 is greater than the refresh frequency of the animation displayed on screen B shown in 906. In this way, when the first included angle between screen A and screen B shown in 906 is 90°, the surging speed of the water flow in screen A changes and gradually forms a waterfall, and the swimming speed of the small fish. Correspondingly, in screen B and screen C shown in 908, the fluctuation amplitude of the water splash becomes larger and the swimming speed of the small fish increases accordingly.

[0236] When the horizontal deflection angle of the screen area B shown in 909 and 911 is 0°, and the first included angle between the screen A and the screen B is greater than 180°, the second playback state of the screen A is the reaction state. And when the first included angle between the screen C and the screen B is equal to 180°, the second playback states of the screen B and the screen C are the interactive states. As shown in 910 and 912, the display directions of the screen A, the screen B, and the screen C are the same, and the refresh frequency of the animation displayed on the screen B shown in 912 is greater than that of the animation displayed on the screen B shown in 910. In this way, when the first included angle between the screen B and the screen C shown in 910 is 90°, the surging speed of the water flow in the screen A and the screen B changes, gradually forming a waterfall, and the swimming speed of the small fish. Correspondingly, the fluctuation amplitude of the water splash in the screen C shown in 912 becomes larger, and the swimming speed of the small fish increases accordingly.

[0237] Figure 7 It is a schematic diagram of another application scenario provided by the embodiment of the present application.

[0238] Please refer to Figure 7 , taking the first target interface and the second target interface as the application interfaces of the video playback application as an example, when the screen A and the screen B are in the interactive state and the screen C is in the reaction state, the display directions of the screen A and the screen B are opposite, as shown in interface 1001. The display directions of the screen B and the screen C are the same, as shown in interface 1002.

[0239] Optionally, the determining or generating the first target interface and the second target interface according to the first playback state and the second playback state, and displaying the first target interface in the first screen area and the second target interface in the second screen area includes:

[0240] When both the first playback state and the second playback state are non-static, determine the difference between the angle data and 180°;

[0241] When the absolute value of the angle data or the difference is less than the second threshold, obtain the second image data;

[0242] Determine or generate the seventh interface according to the second image data;

[0243] Display the seventh interface in the first screen area and the second screen area.

[0244] Optionally, when the playback state in the first screen area and the second playback state in the second screen area are both non-static, and the first included angle between the first screen area and each sub-screen area in the angle data is less than the second threshold, obtain the second image data.

[0245] Optionally, when the playback state of the first screen area and the second playback state of the second screen area are both non-static, determine the difference between the first angle between the first screen area and each sub-screen area and 180°. When the difference between the first angle between the first screen area and each sub-screen area and 180° is less than the first threshold, obtain the second image data.

[0246] Optionally, determine or generate a seventh interface according to the second image data, and display the seventh interface in the first screen area and the second screen area.

[0247] Optionally, the second image data may be image data, video data, animation, image data of an application (such as a snapshot, a screenshot, etc.). The corresponding seventh interface may be image data, video data, animation, an application interface of an application, etc.

[0248] Optionally, the second image data may be the same as the first image data or different from the first image data.

[0249] Optionally, the seventh interface may be the same as the first interface or different from the seventh interface.

[0250] Optionally, the first image data may include image data corresponding to an application. The first target interface and the second target interface may include an application interface of the application.

[0251] Figure 8 It is a schematic diagram of another application scenario provided by the embodiments of the present application.

[0252] Please refer to Figure 8 , taking the second threshold as 15° and the first image data being the same as the second image data as an example. In the triple-fold mobile phone shown in 1101, the middle screens A, B, and C are all static, and the display interface of the triple-fold mobile phone is as shown in interface 1102. In the triple-fold mobile phone shown in 1103, the absolute value of the difference between the first angle between screens A and B and 180° is less than 15°, and the absolute value of the difference between the first angle between screens B and C and 180° is less than 15°. Then, the display interface in the triple-fold mobile phone is as shown in 1104.

[0253] The embodiments of the present application respond to the user's first operation, flexibly switch the display interface of each screen area in different folding states, with simple operation and high interactivity, improving the user experience.

[0254] The above-listed are only reference examples. To avoid redundancy, they are not listed one by one here. In actual development or application, they can be flexibly combined according to actual needs. However, any combination belongs to the technical solution of the present application and is thus covered by the protection scope of the present application.

[0255] Fourth Embodiment

[0256] Figure 9 This is a schematic structural diagram of a display device provided by an embodiment of the present application. The display device 12 is applied to an intelligent terminal, which includes a foldable screen and a rotating shaft. The foldable screen includes at least two screen areas. Please refer to Figure 9 and the display device 12 includes: a first display module 120. Among them:

[0257] The first display module 1201 is configured to, in response to a first operation, display corresponding target interfaces in respective screen areas of the foldable screen according to the attitude data and angle data of the foldable screen according to a preset strategy.

[0258] Optionally, the first display module 1201 includes:

[0259] A state determination sub-module, configured to determine a first playback state of a first screen area among at least two screen areas and a second playback state of a second screen area among the at least two screen areas according to the attitude data and the angle data; the first screen area is the screen area where a gyroscope is set; the second screen area includes the screen areas other than the first screen area among the at least two screen areas;

[0260] An interface determination sub-module, configured to determine or generate a first target interface and a second target interface according to the first playback state and the second playback state, and display the first target interface in the first screen area and display the second target interface in the second screen area.

[0261] Optionally, the angle data includes an included angle between every two adjacent screen areas among the at least two screen areas; the state determination sub-module includes:

[0262] An angle determination unit, configured to determine a horizontal deflection angle of the first screen area according to the attitude data;

[0263] A state determination unit, configured to determine the first playback state of the first screen area and the second playback state of the second screen area according to the horizontal deflection angle and a first included angle between the first screen area and the second screen area; the second screen area is, among the at least two screen areas, the screen area other than the first screen area and adjacent to the first screen area; the playback state includes a responsive state, an interactive state, and a static state.

[0264] Optionally, the second screen area includes at least two sub-screen areas; the first included angle includes at least two; the state determination unit includes:

[0265] A first determination subunit, configured to determine that the first playback state of the first screen area and the second playback state of the second screen area are both static when the horizontal deflection angle is 0 and at least two of the first included angles are both the first threshold;

[0266] Or,

[0267] A second determination subunit, configured to determine that the first playback state of the first screen area is a reactive state when the horizontal deflection angle is 0 and there is a first included angle among at least two of the first included angles that is not the first threshold, determine that the second playback state of the sub-screen area corresponding to the first included angle that is not the first threshold is an interactive state, and determine that the second playback state of the sub-screen area corresponding to the first included angle that is the first threshold is a reactive state.

[0268] Optionally, the second screen area includes at least two sub-screen areas; the first included angle includes at least two; the state determination unit includes:

[0269] A third determination subunit, configured to determine that the first playback state of the first screen area is an interactive state when the horizontal deflection angle is not 0;

[0270] A fourth determination subunit, configured to determine that the second playback state of the sub-screen area corresponding to the first included angle that is the first threshold is a reactive state;

[0271] A fifth determination subunit, configured to determine that the second playback state of the sub-screen area corresponding to the first included angle greater than the first threshold is an interactive state, and the display direction of the second target interface of the sub-screen area corresponding to the first included angle greater than the first threshold is opposite to the display direction of the first target interface;

[0272] A sixth determination subunit, configured to determine that the second playback state of the sub-screen area corresponding to the first included angle less than the first threshold is an interactive state, and the display direction of the second target interface of the sub-screen area corresponding to the first included angle less than the first threshold is the same as the display direction of the first target interface.

[0273] Optionally, the interface determination sub-module includes:

[0274] A first display unit, configured to obtain first image data when both the first playback state and the second playback state are static, determine or generate a first interface according to the first image data, and display the first interface in the first screen area and the second screen area; the first target interface includes the first interface, and the second target interface includes the first interface;

[0275] Or,

[0276] A second display unit, configured to, when the first playback state of the first screen area and the second playback state of the second screen area are both non-static and the angle data is greater than or equal to a second threshold, determine or generate the first target interface and the second target interface according to the first playback state, the second playback state, and the first image data, display the first target interface in the first screen area, and display the second target interface in the second screen area; the first image data includes multiple frames of image data, when the angle data is between the second threshold and a third threshold, the image refresh frequency of the multiple frames of image data has a positive correlation with the angle data; when the angle data is between the third threshold and a first threshold, the image refresh frequency of the multiple frames of image data has a negative correlation with the angle data; the third threshold is less than the first threshold, and the second threshold is less than the third threshold.

[0277] Optionally, the second screen area includes at least two sub-screen areas; the second display unit includes:

[0278] A first display subunit, configured to, when the first playback state is an interactive state and the angle data is greater than or equal to the second threshold, determine or generate a second interface according to the first image data and the pose data, display the second interface in the first screen area, determine or generate a third interface according to the second interface and the angle data, and display the third interface in the sub-screen area where the second playback state is a reactive state;

[0279] A second display subunit, configured to determine or generate a fourth interface according to the second interface and the angle data, and display the fourth interface in the sub-screen area where the second playback state is an interactive state; wherein, the display direction of the second interface is the same as the display direction of the third interface, and the display direction of the second interface is opposite to the display direction of the fourth interface; the first target interface includes the second interface, and the second target interface includes the third interface and the fourth interface.

[0280] Optionally, the second screen area includes at least two sub-screen areas; the second display unit includes:

[0281] A third display subunit, configured to, when the first playback state is a reactive state and the angle data is greater than or equal to the second threshold, determine or generate a fifth interface according to the first image data and the angle data, and display the fifth interface in the sub-screen area where the second playback state is an interactive state;

[0282] A fourth display subunit, configured to determine or generate a sixth interface according to the fifth interface and the angle data, and display the sixth interface in the first screen area;

[0283] A fifth display subunit, configured to display the sixth interface in a sub-screen area where the second playback state is a responsive state; wherein, a display direction of the fifth interface is the same as a display direction of the sixth interface; the first target interface includes the sixth interface, and the second target interface includes the fifth interface and the sixth interface.

[0284] Optionally, the interface determination sub-module includes:

[0285] A difference determination unit, configured to determine a difference between the angle data and 180° when both the first playback state and the second playback state are non-static;

[0286] A data acquisition unit, configured to acquire second image data when an absolute value of the angle data or the difference is less than a second threshold;

[0287] A generation unit, configured to determine or generate a seventh interface according to the second image data;

[0288] A third display unit, configured to display the seventh interface in the first screen area and the second screen area.

[0289] This application further provides an intelligent terminal, which includes a foldable screen, a memory, and a processor. A display program is stored on the memory, and when the display program is executed by the processor, the steps of the display method in any of the above embodiments are implemented.

[0290] This application further provides a computer-readable storage medium, on which a display program is stored, and when the display program is executed by a processor, the steps of the display method in any of the above embodiments are implemented.

[0291] In the embodiments of the intelligent terminal and the computer-readable storage medium provided by this application, all technical features of any of the above display method embodiments may be included. The extended and explanatory content of the specification is basically the same as that of the above method embodiments, and will not be elaborated here.

[0292] This application embodiment further provides a computer program product, which includes computer program code. When the computer program code runs on a computer, the computer is caused to execute the methods in the above various possible implementation manners.

[0293] This application embodiment further provides a chip, which includes a memory and a processor. The memory is used to store a computer program, and the processor is used to call and run the computer program from the memory, so that a device installed with the chip executes the methods in the above various possible implementation manners.

[0294] It can be understood that the above scenarios are only examples and do not constitute a limitation on the application scenarios of the technical solutions provided by the embodiments of the present application. The technical solutions of the present application can also be applied to other scenarios. For example, as is known to those of ordinary skill in the art, with the evolution of the system architecture and the emergence of new business scenarios, the technical solutions provided by the embodiments of the present application are equally applicable to similar technical problems.

[0295] The serial numbers of the above embodiments of the present application are only for description and do not represent the superiority or inferiority of the embodiments.

[0296] The steps in the method of the embodiments of the present application can be adjusted, combined, and deleted according to actual needs.

[0297] The units in the devices of the embodiments of the present application can be combined, divided, and deleted according to actual needs.

[0298] In the present application, for the description of the same or similar term concepts, technical solutions, and / or application scenarios, generally only the first occurrence is described in detail. When it appears repeatedly later, for the sake of brevity, it is generally not described again. When understanding the technical solutions and other contents of the present application, for the same or similar term concepts, technical solutions, and / or application scenarios that are not described in detail later, reference can be made to the relevant detailed descriptions before.

[0299] In the present application, the descriptions of the various embodiments have their own emphases. For the parts not described in detail or recorded in a certain embodiment, reference can be made to the relevant descriptions of other embodiments.

[0300] The technical features of the technical solutions of the present application can be combined arbitrarily. For the sake of concise description, not all possible combinations of the technical features in the above embodiments are described. However, as long as the combinations of these technical features do not conflict, they should all be considered as the scope recorded in the present application.

[0301] Through the description of the above embodiments, those skilled in the art can clearly understand that the methods of the above embodiments can be implemented by means of software plus the necessary general hardware platform. Of course, it can also be implemented by hardware, but in many cases, the former is a better implementation method. Based on such an understanding, the essence of the technical solutions of the present application or the part that contributes to the prior art can be embodied in the form of a software product. This computer software product is stored in a storage medium as described above (such as ROM / RAM, magnetic disk, optical disc), and includes several instructions to enable a terminal device (which can be a mobile phone, computer, server, controlled terminal, or network device, etc.) to execute the methods of each embodiment of the present application.

[0302] In the above embodiments, it can be implemented in whole or in part by software, hardware, firmware, or any combination thereof. When implemented using software, it can 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. When the computer program instructions are loaded and executed on a computer, the processes or functions according to the embodiments of the present application are generated in whole or in part. The computer can be a general-purpose computer, a special-purpose computer, a computer network, or other programmable devices. The computer instructions can be stored in a computer-readable storage medium, or transmitted from one computer-readable storage medium to another computer-readable storage medium. For example, the computer instructions can be transmitted from one website, computer, server, or data center to another website, computer, server, or data center by wire (such as coaxial cable, optical fiber, digital subscriber line) or wirelessly (such as infrared, wireless, microwave, etc.). The computer-readable storage medium can be any available medium that can be accessed by a computer or a data storage device such as a server or a data center that includes one or more integrated available media. The available medium can be a magnetic medium (such as a floppy disk, a storage disk, a magnetic tape), an optical medium (such as a DVD), or a semiconductor medium (such as a Solid State Disk (SSD)), etc.

[0303] The above are only the preferred embodiments of the present application, and do not limit the patent scope of the present application. Any equivalent structure or equivalent process transformation made by using the content of the specification and drawings of the present application, or directly or indirectly applied in other related technical fields, shall be included in the patent protection scope of the present application by the same token.

Claims

1. A display method, characterized in that: The method comprises: In response to the first operation, the corresponding target interface is displayed in each screen area of ​​the folding screen according to the posture data and angle data of the folding screen and a preset strategy.

2. The method according to claim 1, characterized in that The preset strategies include: S1, determining a first play state of a first screen area among at least two screen areas and a second play state of a second screen area among the at least two screen areas according to the posture data and the angle data; the first screen area is a screen area where a gyroscope is set; the second screen area includes a screen area of ​​the at least two screen areas other than the first screen area; S2: Determine or generate a first target interface and a second target interface according to the first playback state and the second playback state, and display the first target interface in the first screen area, and display the second target interface in the second screen area.

3. The method according to claim 2, characterized in that The angle data includes an angle between each two adjacent screen areas in the at least two screen areas; The S1 includes: S11: determining a horizontal deflection angle of the first screen area according to the posture data; S12: Determine a first playback state of the first screen area and a second playback state of the second screen area according to the horizontal deflection angle and a first angle between the first screen area and the second screen area; the second screen area is a screen area other than the first screen area and adjacent to the first screen area among the at least two screen areas; the playback state includes a reactive state, an interactive state and a static state.

4. The method according to claim 3, characterized in that The second screen area includes at least two sub-screen areas; the first angle includes at least two; The S12 includes at least one of the following: When the horizontal deflection angle is 0 and the at least two first included angles are both the first threshold value, determining that the first play state of the first screen area and the second play state of the second screen area are both static; When the horizontal deflection angle is 0 and there is a first angle that is not the first threshold among the at least two first angles, the first playback state of the first screen area is determined to be a reaction state, the second playback state of the sub-screen area whose first angle is not corresponding to the first threshold is determined to be an interactive state, and the second playback state of the sub-screen area whose first angle is corresponding to the first threshold is determined to be a reaction state.

5. The method according to claim 3, characterized in that: The second screen area includes at least two sub-screen areas; the first angle includes at least two; The S12 comprises: When the horizontal deflection angle is not 0, determining the first playback state of the first screen area as an interactive state; Determine the second play state of the sub-screen area corresponding to the first angle being the first threshold as a reaction state; The second playback state of the sub-screen area corresponding to the first angle being greater than the first threshold is determined as an interactive state, and the display direction of the second target interface of the sub-screen area corresponding to the first angle being greater than the first threshold is opposite to the display direction of the first target interface; The second playback state of the sub-screen area whose first angle is smaller than the first threshold is determined as an interactive state, and the display direction of the second target interface of the sub-screen area whose first angle is smaller than the first threshold is the same as the display direction of the first target interface.

6. The method according to claim 2, characterized in that The S2 includes at least one of the following: S21: when both the first playback state and the second playback state are static, obtaining first image data, determining or generating a first interface according to the first image data, and displaying the first interface in the first screen area and the second screen area; the first target interface includes the first interface, and the second target interface includes the first interface; S22: When the first playback state of the first screen area and the second playback state of the second screen area are both non-static, and the angle data is greater than or equal to a second threshold, the first target interface and the second target interface are determined or generated according to the first playback state, the second playback state, and the first image data, and the first target interface is displayed in the first screen area, and the second target interface is displayed in the second screen area; the first image data includes multiple frames of image data, and when the angle data is between the second threshold and the third threshold, the image refresh frequency of the multiple frames of image data is positively correlated with the angle data; when the angle data is between the third threshold and the first threshold, the image refresh frequency of the multiple frames of image data is negatively correlated with the angle data; the third threshold is less than the first threshold, and the second threshold is less than the third threshold.

7. The method according to claim 6, characterized in that The second screen area includes at least two sub-screen areas; The S22 includes at least one of the following: When the first playback state is an interactive state and the angle data is greater than or equal to a second threshold, a second interface is determined or generated according to the first image data and the posture data, and the second interface is displayed in the first screen area; a third interface is determined or generated according to the second interface and the angle data, and the third interface is displayed in the sub-screen area where the second playback state is a reactive state; Determine or generate a fourth interface according to the second interface and the angle data, and display the fourth interface in the sub-screen area in which the second playback state is an interactive state; wherein the display direction of the second interface is the same as the display direction of the third interface, and the display direction of the second interface is opposite to the display direction of the fourth interface; the first target interface includes the second interface, and the second target interface includes the third interface and the fourth interface; When the first playback state is a reactive state and the angle data is greater than or equal to a second threshold value, a fifth interface is determined or generated according to the first image data and the angle data, and the fifth interface is displayed in a sub-screen area where the second playback state is an interactive state; a sixth interface is determined or generated according to the fifth interface and the angle data, and the sixth interface is displayed in the first screen area; the sixth interface is displayed in a sub-screen area where the second playback state is a reactive state; wherein a display direction of the fifth interface is the same as a display direction of the sixth interface; the first target interface includes the sixth interface, and the second target interface includes the fifth interface and the sixth interface.

8. The method according to claim 2, characterized in that: The S2 includes: When both the first playing state and the second playing state are non-static, determining a difference between the angle data and 180°; When the angle data or the absolute value of the difference is less than a second threshold, acquiring second image data; Determining or generating a seventh interface according to the second image data; The seventh interface is displayed in the first screen area and the second screen area.

9. An intelligent terminal, characterized in that: The smart terminal includes: a foldable screen, a memory, and a processor, wherein a display program is stored in the memory, and when the display program is executed by the processor, the steps of the display method according to any one of claims 1 to 8 are implemented.

10. A readable storage medium, characterized in that: The readable storage medium stores a computer program, and when the computer program is executed by a processor, the steps of the display method according to any one of claims 1 to 8 are implemented.