CN110572492A - Electronic device - Google Patents

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Publication number
CN110572492A
CN110572492A CN201910838316.0A CN201910838316A CN110572492A CN 110572492 A CN110572492 A CN 110572492A CN 201910838316 A CN201910838316 A CN 201910838316A CN 110572492 A CN110572492 A CN 110572492A
Authority
CN
China
Prior art keywords
middle frame
display
electronic device
mounting portion
display part
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
CN201910838316.0A
Other languages
Chinese (zh)
Inventor
姜洋
王锦涛
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Guangdong Oppo Mobile Telecommunications Corp Ltd
Original Assignee
Guangdong Oppo Mobile Telecommunications Corp Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Guangdong Oppo Mobile Telecommunications Corp Ltd filed Critical Guangdong Oppo Mobile Telecommunications Corp Ltd
Priority to CN201910838316.0A priority Critical patent/CN110572492A/en
Publication of CN110572492A publication Critical patent/CN110572492A/en
Pending legal-status Critical Current

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/02Constructional features of telephone sets
    • H04M1/0202Portable telephone sets, e.g. cordless phones, mobile phones or bar type handsets
    • H04M1/026Details of the structure or mounting of specific components
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/02Constructional features of telephone sets
    • H04M1/0202Portable telephone sets, e.g. cordless phones, mobile phones or bar type handsets
    • H04M1/026Details of the structure or mounting of specific components
    • H04M1/0266Details of the structure or mounting of specific components for a display module assembly

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  • Engineering & Computer Science (AREA)
  • Signal Processing (AREA)
  • Devices For Indicating Variable Information By Combining Individual Elements (AREA)

Abstract

The embodiment of the application provides electronic equipment which comprises a display screen, a middle frame and a connecting support; the display screen comprises a main display part and a side display part, wherein the surface of a middle frame of the middle frame is connected with a first non-display surface of the main display part, and the middle frame can provide supporting force for the main display part; the first connecting surface of the connecting bracket is connected with the second non-display surface of the side display part, and the connecting bracket can provide supporting force for the side display part; the second connecting surface of the connecting support is connected with the side surface of the middle frame, and the middle frame can provide supporting force for the connecting support. The electronic equipment of this application embodiment, on the one hand, main display portion and side display portion all have corresponding support piece, and the installation of main display portion and side display portion is more stable, and on the other hand links together side display portion and center through linking bridge, and linking bridge can adapt to the side display portion and the center of different shapes, has reduced the installation degree of difficulty of side display portion and center.

Description

Electronic device
Technical Field
The present application relates to the field of electronic technologies, and in particular, to an electronic device.
Background
In recent years, flexible display panels made of flexible materials can maintain display performance when bent. The flexible display screen is applied to electronic equipment such as a mobile phone, so that the side face of the electronic equipment can display information, and the screen occupation ratio of the electronic equipment is increased.
However, when the flexible display screen capable of being displayed laterally is assembled with the middle frame, the shape of the side portion of the flexible display screen is often not adapted to the shape of the side portion of the middle frame, so that the side portion of the middle frame and the side portion of the flexible display screen cannot be attached together, the side portion of the flexible display screen cannot be supported by the middle frame, and the connection between the flexible display screen and the middle frame is unreliable.
Disclosure of Invention
The embodiment of the application provides an electronic equipment, links together the side display part and the center of display screen through linking bridge, and the center is more reliable to the support of display screen.
The electronic equipment that this application embodiment provided includes:
The display screen comprises a main display part and a side display part, wherein the main display part comprises a first non-display surface, the side display part is formed by bending one side of the main display part towards one side where the first non-display surface is located, and the side display part comprises a second non-display surface;
The middle frame comprises a middle frame surface and a middle frame side surface, and the middle frame side surface is connected with the middle frame surface; and
The connecting bracket comprises a first connecting surface and a second connecting surface, and the second connecting surface is connected with the first connecting surface;
The surface of the middle frame is connected with the first non-display surface, so that the middle frame provides supporting force for the main display part; the first connecting surface is connected with the second non-display surface so that the connecting bracket provides a supporting force for the side display part; the second connecting surface is connected with the side surface of the middle frame, so that the middle frame provides supporting force for the connecting support.
According to the electronic device provided by the embodiment of the application, the surface of the middle frame is connected with the first non-display surface of the main display part of the display screen, and the middle frame can provide supporting force for the main display part; the first connecting surface of the connecting bracket is connected with the second non-display surface of the side display part of the display screen, and the connecting bracket can provide supporting force for the side display part; the second connecting surface of the connecting support is connected with the side surface of the middle frame, and the middle frame can provide supporting force for the connecting support. According to the electronic equipment, on one hand, the main display part and the side display part of the display screen are provided with the corresponding supporting pieces, and the connection between the display screen and the middle frame is more reliable; on the other hand, the side display part and the middle frame are connected together through the connecting support, the connecting support can adapt to the side display part and the middle frame in different shapes, and the mounting difficulty of the side display part and the middle frame is reduced.
Drawings
In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings used in the description of the embodiments will be briefly introduced below. It is obvious that the drawings in the following description are only some embodiments of the application, and that for a person skilled in the art, other drawings can be derived from them without inventive effort.
Fig. 1 is a first structural schematic diagram of an electronic device according to an embodiment of the present application.
Fig. 2 is an exploded view of an electronic device according to an embodiment of the present disclosure.
Fig. 3 is a schematic structural diagram of a display screen of the electronic device shown in fig. 2.
Fig. 4 is a schematic structural diagram of a middle frame of the electronic device shown in fig. 2.
Fig. 5 is a schematic structural view of a connection bracket of the electronic device shown in fig. 2.
Fig. 6 is a schematic structural diagram of a second electronic device according to an embodiment of the present application.
Fig. 7 is a third schematic structural diagram of an electronic device according to an embodiment of the present application.
Fig. 8 is a fourth schematic structural diagram of an electronic device according to an embodiment of the present application.
Fig. 9 is a fifth structural schematic diagram of an electronic device according to an embodiment of the present application.
Fig. 10 is a sixth structural schematic diagram of an electronic device according to an embodiment of the present application.
Detailed Description
The embodiment of the application provides electronic equipment. The electronic device may be a smart phone, a tablet computer, or other devices, and may also be a game device, an AR (Augmented Reality) device, an automobile device, a data storage device, an audio playing device, a video playing device, a notebook computer, a desktop computing device, or other devices.
The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. It is to be understood that the embodiments described are only a few embodiments of the present application and not all embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without inventive step, are within the scope of the present application.
Referring to fig. 1, fig. 1 is a schematic view of a first structure of an electronic device provided in an embodiment of the present application, and the electronic device 100 may include a display screen 10, a middle frame 30, and a rear cover 50.
The display screen 10 may be used to display information such as images, text, etc. The Display screen 10 may be a Liquid Crystal Display (LCD) or an Organic Light-Emitting Diode (OLED) Display screen.
The display screen 10 may be mounted on the middle frame 30 and connected to the rear cover 50 through the middle frame 30 to form a display surface of the electronic device 100. The display screen 10 serves as a front case of the electronic apparatus 100, and forms a housing of the electronic apparatus 100 together with the rear cover 50 for accommodating other electronic devices or functional components of the electronic apparatus 100. For example, the housing may be used to house electronic devices or functional components of the electronic device 100 such as a processor, memory, one or more sensors, a camera module, and the like.
The display screen 10 may include a display area as well as a non-display area. Wherein the display area performs the display function of the display screen 10 for displaying information such as images, text, etc. The non-display area does not display information. The non-display area can be used for setting functional components such as a camera module and a display screen touch electrode.
The display screen 10 may be a full-face screen. At this time, the display screen 10 may display information in a full screen, so that the electronic apparatus 100 has a large screen occupation ratio. The display screen 10 includes only a display region and does not include a non-display region, or the non-display region has a small area for the user. At this time, functional components such as a camera module and a proximity sensor in the electronic device 100 may be hidden under the display screen 10.
The display screen 10 may be a flexible screen made of a flexible material, so that the display screen 10 is foldable and bendable.
The middle frame 30 may have a thin plate-like or sheet-like structure, or may have a hollow frame structure. The middle frame 30 is used for providing a supporting function for the electronic devices or functional components in the electronic device 100, so as to mount the electronic devices or functional components in the electronic device 100 together. For example, functional components such as a camera module, a receiver module, a circuit board, and a battery in the electronic apparatus 100 may be mounted on the middle frame 30 for fixing. Moreover, the material of the middle frame 30 may include a metal material or a plastic material.
The rear cover 50 is used to form an outer contour of the electronic device 100. The rear cover 50 may be integrally formed. In the forming process of the rear cover 50, structures such as a rear camera module hole, a fingerprint identification module mounting hole and the like can be formed on the rear cover 50.
The rear cover 50 may be made of metal, such as magnesium alloy, stainless steel, etc. Note that the material of the rear cover 50 according to the embodiment of the present application is not limited to this, and other methods may be employed. For example, the rear cover 50 may be made of plastic. For another example, the rear cover 50 may be made of ceramic or glass. For another example, the rear cover 50 may include a plastic material and a metal material, and the rear cover 50 may be a housing structure in which the metal and the plastic are matched with each other. Specifically, the metal part may be formed first, for example, a magnesium alloy substrate is formed by injection molding, and then plastic is injected on the magnesium alloy substrate to form a plastic substrate, so as to form a complete housing structure.
Referring to fig. 2 and 3, fig. 2 is an exploded view of an electronic device according to an embodiment of the present disclosure, and fig. 3 is a schematic structural diagram of a display screen of the electronic device shown in fig. 2.
The display screen 10 may further include a main display unit 11 and a side display unit 12. The main display unit 11 and the side display unit 12 may be integrally formed.
The main display part 11 may have a planar structure, and when the main display part 11 is mounted on the middle frame 30, the planar structure of the main display part 11 may be attached to a surface of the middle frame 30 to be stably mounted on the middle frame 30.
The main display unit 11 may have a rigid planar structure so that the electronic apparatus 100 has a fixed form; the main display portion 11 may also be a flexible planar structure, and under the action of an external force, the flexible main display portion 11 may be deformed to form a bendable and foldable display structure.
The main display part 11 may include a first non-display surface 111 and a first display surface 112 that are oppositely disposed, when a user views from the outside of the electronic device 100, the first display surface 112 is a surface visible to the main display part 11, and the first display surface 112 is used for displaying information; the first non-display surface 111 is a surface invisible to the main display unit 11, the first non-display surface 111 is used for connection with the middle frame 30, and most of the electronic devices and functional components in the electronic apparatus 100 are disposed on the first non-display surface 111 side of the main display unit 11.
The side display unit 12 is connected to the main display unit 11, and the side display unit 12 is formed by bending toward a side of the main display unit 11 where the first non-display surface 111 of the main display unit 11 is located. The side display unit 12 may have a planar structure, and the side display unit 12 may have a curved structure.
The side display 12 may include a second non-display surface 121 and a second display surface 122 that are oppositely disposed, and when viewed from the outside of the electronic device 100, the second display surface 122 is a surface visible to the side display 12, and the second display surface 122 is used for displaying information. The second non-display surface 121 is a surface invisible to the side display unit 12, and the second non-display surface 121 is used for connecting with other components of the electronic apparatus 100 to fix the side display unit 12. The second non-display surface 121 of the side display unit 12 may be directly connected to the sidewall of the middle frame 30, and the second non-display surface 121 of the side display unit 12 may be indirectly connected to the sidewall of the middle frame 30 by another connecting member.
Here, the side display part 12 may form a first plane structure in at least one space between the first display surface 112 of the main display part 11 and the rear cover 50 of the electronic device 100, and an included angle between the side display part 12 and the main display part 11 may be an acute angle, a right angle, and an obtuse angle.
The side display portion 12 may also form a first concave curved surface structure in at least one space between the first display surface 112 of the main display portion 11 and the rear cover 50 of the electronic device 100, in this case, the first concave curved surface structure may be curved toward the second non-display surface 121 side of the side display portion 12, an opening of the first concave curved surface structure may be disposed toward the outside of the electronic device 100, and a curvature of the first concave curved surface may be selected according to an actual situation of the electronic device 100 so as to adapt to an outer shape of the electronic device 100.
the side display portion 12 may form a first convex curved structure in at least one space between the first display surface 112 of the main display portion 11 and the rear cover 50 of the electronic device 100, in which case the first convex curved structure may be curved toward the second display surface 122 side of the side display portion 12, and an opening of the first convex curved structure may be disposed toward the inside of the electronic device 100, for example, the opening of the first convex curved structure may be disposed toward the middle frame 30. The curvature of the first convex curved structure may also be selected according to the actual situation of the electronic device 100 to adapt to the external shape of the electronic device 100.
The length of the bent side display part 12 may be less than or equal to the length of the side wall of the casing of the electronic device 100, so that the side display part 12 may form a part of the side wall of the casing of the electronic device 100 or form the whole side wall of the casing of the electronic device 100.
It is understood that when the side display 12 forms a part of the side wall of the housing of the electronic device 100, other parts of the housing of the electronic device 100 can be formed by the middle frame 30, the rear cover 50, and the like, and the complete side wall of the housing of the electronic device 100 can be formed by the cooperation of the middle frame 30, the rear cover 50 and the side display 12.
The physical keys on the electronic device 100 according to the embodiment of the present application may be disposed on the other side of the electronic device 100 without the side display unit 12; the exposed physical keys of the electronic device 100 may be eliminated and replaced with the touch keys under the screen; alternatively, related software programs may be designed to replace the physical keys.
The side display unit 12 may be bent toward the first non-display surface 111 of the main display unit 11 on the side of the main display unit 11. For example, the side display part 12 may be formed by bending a top side display part toward the first non-display surface 111 of the main display part 11 at the top side of the main display part 11; a bottom-side display unit is formed on the first non-display surface 111 of the main display unit 11 on the bottom side of the main display unit 11; a left display unit is formed on the left side of the main display unit 11 toward the first non-display surface 111 of the main display unit 11; a right display portion is formed on the right side of the main display portion 11 toward the first non-display surface 111 of the main display portion 11.
The plurality of side display portions 12 may be formed by bending toward the first non-display surface 111 of the main display portion 11 on a plurality of sides of the main display portion 11. For example, the two opposing side display portions 12 are formed on the first non-display surface 111 of the main display portion 11 on the two opposing sides of the main display portion 11. For another example, two adjacent side display portions 12 are formed on the first non-display surface 111 of the main display portion 11 on both adjacent sides of the main display portion 11. Alternatively, a plurality of side display units 12 are formed on the first non-display surface 111 of the main display unit 11 so as to be sequentially connected to each other on all side portions of the main display unit 11.
The side display 12 may have a rigid curved structure so that the electronic device 100 has a fixed form; the side display portion 12 may also be a flexible curved structure, and the flexible side display portion 12 may be deformed under the action of an external force to form a bendable and foldable display structure.
when the main display unit 11 displays information, the side display unit 12 can display additional information related thereto. For example, information such as video, pictures, text, etc. may be displayed on the main display part 11, and information such as channels, volume, subtitles, function buttons, etc. may be displayed on the side display part 12. Of course, the side display part 12 may also display the additional information alone regardless of the information displayed on the main display part 11, for example, when the main display part 11 is in the closed state, the side display part 12 may be used to display time or the like. That is, the main display unit 11 and the side display unit 12 of the embodiment of the present application may operate together, and the main display unit 11 and the side display unit 12 may operate independently of each other.
In addition, the electronic device 100 according to the embodiment of the present application may further include a cover plate covering the main display unit 11 and the side display unit 12 to protect the main display unit 11 and the side display unit 12 and prevent the main display unit 11 and the side display unit 12 from being scratched or damaged by water. The cover plate 20 may be a transparent glass cover plate, so that a user can see through the cover plate 20 to observe contents displayed by the main display unit 11 and the side display unit 12, and the cover plate 20 may be a glass cover plate made of sapphire.
With reference to fig. 2 in combination with fig. 4 and fig. 6, fig. 4 is a schematic structural diagram of a middle frame of the electronic device shown in fig. 2, and fig. 6 is a second schematic structural diagram of the electronic device according to the embodiment of the present disclosure. The middle frame 30 is located on the non-display side of the display screen 10, that is, the middle frame 30 may be located in an accommodating space formed by the first non-display surface 111 of the main display part 11 and the second non-display surface 121 of the side display part 12.
the middle frame 30 may include a bearing portion 31 and a frame portion 32, and the bearing portion 31 includes a middle frame surface 311. The frame portion 32 is connected to an edge of the carrying portion 31, and the frame portion 32 protrudes from the middle frame surface 311 of the carrying portion 31 on at least one side of the carrying portion 31 to form an accommodating space 33 together with the carrying portion 31, and electronic devices or functional components such as a circuit board, a battery, and the like of the electronic apparatus 100 can be located in the accommodating space 33.
The middle frame surface 311 may be connected to the first non-display surface 111 of the main display portion 11, so that the middle frame 30 provides a supporting force for the main display portion 11.
The middle frame surface 311 may have a planar structure, and the middle frame surface 311 of the planar structure may closely adhere to the first non-display surface 111 of the main display portion 11 of the planar structure, so that the main display portion 11 is more closely connected to the middle frame 30, and the middle frame 30 may uniformly bear the weight of the main display portion 11.
The frame portion 32 may include a frame bottom surface 321, and the frame bottom surface 321 is disposed at an end of the frame portion 32 away from the middle frame surface 311. Also, the bezel bottom surface 321 may be directly or indirectly connected to an inner surface of the rear cover 50 of the electronic device 100, and the rear cover 50 covers an outer side of the middle frame 30 to protect electronic devices and the like provided on the middle frame 30.
The frame bottom 321 and the inner surface of the rear cover 50 may be connected together by bonding, clamping, or the like.
For example, a first sealant 34 may be formed between the frame bottom 321 and the inner surface of the rear cover 50, and glue may be filled in the first sealant 34 by a dispenser to achieve adhesion between the frame bottom 321 and the rear cover 50. The glue can be shadowless glue, silica gel and the like. The rear cover 50 is connected with the middle frame 30 through glue, on one hand, the rear cover 50 can be fixed with the middle frame 30, on the other hand, the joint of the rear cover 50 and the middle frame 30 can be sealed through the glue, and the waterproof and dustproof effects of the joint of the rear cover 50 and the middle frame 30 are improved.
For another example, the positioning posts and the positioning sleeves may be disposed on the bottom 321 of the frame and the inner surface of the rear cover 50, and the positioning posts are embedded in the positioning sleeves, so that the middle frame 30 and the rear cover 50 can be clamped. Compared with the mode of fixing through bolts, the middle frame 30 and the rear cover 50 are fixed through the positioning columns and the positioning sleeves, screw holes do not need to be formed in the outer surface of the rear cover 50, and the integrity of the rear cover 50 is guaranteed.
It is understood that, when the rear cover 50 is covered outside the middle frame 30, the side display part 12 of the display screen may form the above-mentioned planar structure, the first convex curved structure, and the first concave curved structure in at least one space between the first display surface 112 of the main display part 11 and the rear cover 50 to form a part of a side wall of the casing of the electronic device 100, or to form the entire side wall of the casing of the electronic device 100.
Bezel portion 32 may also include a middle frame side 322, where middle frame side 322 may be directly or indirectly coupled to side display portion 12. The middle frame side 322 may form a portion of a side wall of the casing of the electronic apparatus 100 to form the side wall of the casing of the electronic apparatus 100 together with the side display part 12. The middle frame side 322 may form the entire side wall of one side of the housing of the electronic apparatus 100, so as to form the entire side wall of the electronic apparatus 100 together with the side display 12 provided at the other side of the housing of the electronic apparatus 100.
The middle frame side 322 may be a planar structure, and the middle frame side 322 may also be a curved structure.
Specifically, the middle frame side 322 may include a second planar structure extending from the middle frame surface 311 toward the side where the rear cover 50 is located, and an included angle between the second planar structure and the middle frame surface 311 may be an acute angle, a right angle, and an obtuse angle.
The included angle between the second planar structure and the middle frame surface 311 may be between 95 degrees and 120 degrees, and the inclination degree of the middle frame side surface 322 is in a proper range, on one hand, in the connection bracket 70 of the display screen 10 and the electronic device 100, in the assembly process with the middle frame 30, the middle frame side surface 322 may play a role in guiding the connection bracket 70, so as to reduce the assembly difficulty of the connection bracket 70 and the middle frame 30, and on the other hand, the middle frame side surface 322 may not be too steep, so as to increase the assembly difficulty of the middle frame 30.
The middle frame side 322 may further include a second concave curved surface structure extending from the middle frame surface 311 toward the side where the rear cover 50 is located, the second concave curved surface structure being curved toward the non-display surface 121 of the side display part 12, an opening of the second concave curved surface structure being toward the side display part 12, and a curvature of the second concave curved surface may be selected according to a position of an electronic device inside the electronic device 100, so as to make a layout of the electronic devices inside the middle frame 30 and the electronic device 100 more reasonable.
The middle frame side 322 may also include a second convex curved structure extending from the middle frame surface 311 toward the side where the rear cover 50 is located, the second convex curved structure may be curved toward the display surface of the side display part 12, an opening of the second convex curved structure faces away from the side display part 12, and a curvature of the second convex curved structure may be selected according to a position of an electronic device inside the electronic device 100, so as to make the layout of the middle frame 30 and the electronic device 100 more reasonable.
With continued reference to fig. 4 and 6, the middle frame 30 may further include a middle frame extending surface 323, the middle frame extending surface 323 is disposed opposite to the middle frame surface 311, the middle frame extending surface 323 extends toward a side of the middle frame side surface 322, which is far away from the middle frame surface 311, where the side display portion 12 is located, so that the middle frame side surface 322 and the middle frame extending surface 323 may form an accommodating recess 35, and at least a portion of the connecting bracket 70 may be located in the accommodating recess 35.
It is understood that the middle frame extension plane 323 may extend from an end of the frame portion 32 opposite to the middle frame surface 311 of the bearing portion 31 toward a side where the side display portion 12 is located, that is, the middle frame extension plane 323 is on the same plane with the bottom of the middle frame side surface 322.
in the embodiment of the present application, the middle frame 30 is provided with the middle frame extending surface 323, the middle frame extending surface 323 is matched with the middle frame side surface 322 to form the accommodating groove 35, at least a portion of the connecting bracket 70 is located in the accommodating groove 35, and the middle frame extending surface 323 can provide a supporting force for the connecting bracket 70.
Referring to fig. 5 in conjunction with fig. 6, fig. 5 is a schematic structural diagram of a connection bracket of the electronic device shown in fig. 2. The connection bracket 70 may include at least a first connection surface 71 and a second connection surface 72 connected to each other, the first connection surface 71 being connected to the second non-display surface 121 of the side display part 12 so that the connection bracket 70 provides a supporting force for the side display part 12, and the second connection surface 72 being connected to the middle frame side surface 322 so that the middle frame 30 provides a supporting force for the connection bracket 70 and the side display part 12.
In the electronic device 100 provided in the embodiment of the application, the middle frame surface 311 of the middle frame 30 is connected to the first non-display surface 111 of the main display unit 11, and the middle frame 30 can provide a supporting force for the main display unit 11; the first connecting surface 71 of the connecting bracket 70 is connected with the second non-display surface 121 of the side display part 12, and the connecting bracket 70 can provide a supporting force for the side display part 12; the second of linking bridge 70 is connected face 72 and is connected with center side 322, center 30 can provide the holding power for linking bridge 70 again, and then, electronic equipment 100 of the embodiment of this application, on the one hand, main display portion 11 and the side display portion 12 of display screen 10 all have corresponding support piece, the installation of display screen 10 is more stable, on the other hand, link together display screen 10 and center 30 through linking bridge 70, linking bridge 70 can adapt to the display screen 10 and the center 30 of different shapes, the installation degree of difficulty of display screen 10 and center 30 has been reduced.
The shape of the first connecting surface 71 may be adapted to the shape of the second non-display surface 121 of the side display 12, that is, the first connecting surface 71 may be a planar structure adapted to the second non-display surface 121, or a curved structure, so that the first connecting surface 71 and the second non-display surface 121 can be tightly attached to each other, and the connecting bracket 70 can uniformly bear the weight of the side display 12.
Specifically, when the side display 12 is a first planar structure formed in at least one space between the first display surface 112 of the main display 11 and the rear cover 50 of the electronic device 100, the first connection surface 71 may be a planar structure adapted to the first planar structure, and the inclination direction and the inclination angle of the planar structure may be the same as those of the first planar structure, so that the first connection surface 71 and the second non-display surface 121 of the side display 12 can be closely attached.
When the side display 12 is a first concave curved surface structure formed in at least one space between the first display surface 112 of the main display 11 and the rear cover 50 of the electronic device 100, the first connection surface 71 may also be a concave curved surface structure adapted to the first concave surface structure, and the curvature, the arc length, and the like of the concave curved surface structure may be adapted to the curvature and the arc length of the first concave surface structure, so that the first connection surface 71 and the second non-display surface 121 of the side display 12 can be closely attached.
When the side display 12 is a first convex curved surface structure formed in at least one space between the first display surface 112 of the main display 11 and the rear cover 50 of the electronic device 100, the first connection surface 71 may also be a convex curved surface structure adapted to the first convex surface structure, and the curvature, the arc length, and the like of the convex curved surface structure may be adapted to the curvature and the arc length of the first convex surface structure, so that the first connection surface 71 and the second non-display surface 121 of the side display 12 can be tightly attached.
The side display part 12 and the connecting bracket 70 may be connected together by bonding, clamping, or the like.
For example, a snap-fit workpiece may be disposed on the non-display surface 121 of the side display part 12, and correspondingly, a snap-fit female member may be disposed on the first connecting surface 71 of the connecting bracket 70, the snap-fit male member is snap-fitted into the snap-fit female member, and the connecting bracket 70 and the side display part 12 are snap-fitted together.
A snap female member may be further disposed on the second non-display surface 121 of the side display part 12, and correspondingly, a snap workpiece may be disposed on the first connecting surface 71 of the connecting bracket 70, the snap workpiece is snap-fitted into the snap female member, and the connecting bracket 70 and the side display part 12 are snap-fitted together.
For another example, a second glue sealing portion 74 may be formed between the first connecting surface 71 of the connecting bracket 70 and the second non-display surface 121 of the side display portion 12, and glue is filled between the second glue sealing portion 74 by using a dispenser to bond the first connecting surface 71 and the second non-display surface 121. The glue can be shadowless glue, silica gel and the like.
For another example, the electronic device 100 according to the embodiment of the present application further includes a first adhesive member, one surface of the first adhesive member is connected to the first connection surface 71, the other surface of the first adhesive member is connected to the second non-display surface 121 of the side display unit 12, and the first connection surface 71 is bonded to the second non-display surface 121 of the side display unit 12 by the first adhesive member.
The first adhesive member may be a first foam double-sided tape, one surface of the first foam double-sided tape is connected to the second non-display surface 121 of the side display portion 12, and the other surface of the first foam double-sided tape is connected to the first connection surface 71 of the connection bracket 70, so that the connection bracket 70 and the side display portion 12 are adhered together by the first foam double-sided tape.
The connecting bracket 70 and the side display part 12 are connected together through a first foam double-sided adhesive tape, on one hand, the foam double-sided adhesive tape has good compression performance, and the space occupied by the foam double-sided adhesive tape is small; on the other hand, the foam double-sided adhesive has good impact absorption, and connects the first connecting surface 71 and the second non-display surface 121 of the side display part 12 together, so that the edge warping probability when the two are bonded can be reduced, and the two are connected more firmly.
it is understood that, in the electronic device 100 of the embodiment of the present application, the connecting bracket 70 and the side display 12 may also be adhered and snapped together at the same time, so that the connecting bracket 70 and the side display 12 are combined more tightly.
With reference to fig. 6 in combination with fig. 7 and fig. 8, fig. 7 is a schematic structural diagram of an electronic device according to an embodiment of the present application, and fig. 8 is a schematic structural diagram of an electronic device according to an embodiment of the present application.
The shape of the second connecting surface 72 of the connecting bracket 70 may be adapted to the shape of the middle frame side surface 322, that is, the second connecting surface 72 may be a curved surface structure or a planar structure adapted to the middle frame side surface 322, so that the second connecting surface 72 and the middle frame side surface 322 may be tightly attached, and the middle frame 30 may uniformly bear the weight of the connecting bracket 70.
As shown in fig. 6, the middle frame side 322 is a second planar structure extending from the middle frame surface 311 to the side where the rear cover 50 is located, the second connection surface 72 may also be a planar structure adapted to the second planar structure, and both the inclination direction and the inclination angle of the planar structure may also be adapted to the inclination direction and the inclination angle of the second planar structure, so that the second connection surface 72 and the middle frame side 322 can be tightly attached.
It is understood that the second connecting surface 72 may have the same plane structure as the second plane structure, the angle between the plane structure and the middle frame surface 311 may be between 95 degrees and 120 degrees, and the side display portion 12 and the connecting bracket 70 may be integrally assembled with the middle frame 30 along the extending direction of the second plane structure.
As shown in fig. 7, when the middle frame side 322 is a second concave curved surface structure extending from the middle frame surface 311 to the side where the rear cover 50 is located, the second connecting surface 72 may also be a concave curved surface structure adapted to the second concave surface structure, and the curvature, the arc length, and the like of the concave curved surface structure may be adapted to the curvature and the arc length of the second concave surface structure, so that the second connecting surface 72 and the middle frame side 322 may be tightly attached.
As shown in fig. 8, when the middle frame side 322 is a second convex curved surface structure extending from the middle frame surface 311 toward the side where the rear cover 50 is located, the second connection surface 72 may also be a convex curved surface structure adapted to the second convex surface structure, and the curvature, the arc length, and the like of the convex curved surface structure may be adapted to the curvature and the arc length of the second convex surface structure, so that the second connection surface 72 and the middle frame side 322 may be tightly attached.
The second connecting surface 72 of the connecting bracket 70 of the embodiment of the application can be provided with a first mounting portion, the middle frame side surface 322 can be provided with a second mounting portion, and the first mounting portion is connected with the second mounting portion so as to realize that the second connecting surface 72 is connected with the middle frame side surface 322.
Wherein, the first installation part and the second installation part can be connected together by at least one of bonding, clamping and meshing connection.
The first mounting portion and the second mounting portion may include glue, that is, in the electronic device 100 according to the embodiment of the present application, a third glue sealing portion 75 may be formed between the second connection surface 72 of the connection bracket 70 and the middle frame side surface 322, and the glue is filled in the third glue sealing portion 75 by using a dispenser to achieve bonding 322 between the second connection surface 72 and the middle frame side surface 322. The glue can be shadowless glue, silica gel and the like.
the first and second mounting portions may also be joined together by a second adhesive. The first installation part comprises a first bonding surface, the second installation part comprises a second bonding surface, one surface of the second bonding piece is connected with the first bonding surface, and the other surface of the second bonding piece is connected with the second bonding surface, so that the first installation part and the second installation part are bonded.
The second adhesive member may be a second foam double-sided adhesive tape, one side of the second foam double-sided adhesive tape is connected to the second connecting surface 72 of the connecting bracket 70, and the other side of the second foam double-sided adhesive tape is connected to the middle frame side surface 322, so that the connecting bracket 70 and the middle frame 30 can be adhered together by the foam double-sided adhesive tape.
The linking bridge 70 of the embodiment of the present application, linking bridge 70 and center 30 link together through the cotton double faced adhesive tape of second bubble, because the cotton double faced adhesive tape of bubble has good compression performance, linking bridge 70 can be spacing between center 30 and side display part 12, makes the connection between center 30, linking bridge 70 and the side display part 12 three tighter.
Wherein, can also set up the buckle work piece on the first installation department, it is corresponding, can also set up the female piece of buckle on the second installation department, the public card of buckle inlays in the female piece of buckle, linking bridge 70 is in the same place with center 30 blocked joint.
Referring to fig. 9, fig. 9 is a fifth structural schematic diagram of an electronic device according to an embodiment of the present application. The fastening workpiece may be a first protrusion 76 disposed on one side of the second connection surface 72 and protruding out of the second connection surface 72, the fastening female member may be a first limiting hole disposed on the side 322 of the middle frame, and the first protrusion 76 is embedded in the first limiting hole to realize the fastening of the connection bracket 70 and the middle frame 30.
The first limiting hole can be a first limiting hole in the shape of a round hole or a square hole, the first bump 76 can also be a first circular or square bump, and the size of the first limiting hole and the size of the first bump 76 can be adapted to ensure that the first bump 76 is just clamped in the first limiting hole.
The second connecting surface 72 may be provided with a plurality of first protrusions 76, the plurality of first protrusions 76 may be disposed at an end of the second connecting surface 72 at intervals, and correspondingly, the middle frame side 322 may be provided with a plurality of first limiting holes, and the plurality of first limiting holes may also be disposed at an end of the middle frame side 322 at intervals, so that each first protrusion 76 is adapted to one first limiting hole.
The first protruding blocks 76 may also be disposed at two opposite ends of the second connecting surface 72 at intervals and in a staggered manner, a structure with staggered teeth is formed between the first protruding blocks 76, correspondingly, the middle frame side surface 322 may be disposed with a plurality of first limiting holes, the first limiting holes may also be disposed at two opposite ends of the middle frame side surface 322 at intervals and in a staggered manner, and a structure with staggered teeth is also formed between the first limiting holes, so that each first protruding block 76 is adapted to one first limiting hole.
Wherein, an end of the first protrusion 76 may be provided with the first guide face 761. The end of the first protrusion 76 may be an end of the first protrusion 76 that is clamped in the first position-limiting hole, and the first guide surface 761 is disposed toward the first position-limiting hole. The first guide surface 761 is disposed on the outer side surface of the end portion, and the first protrusion 76 can be clamped into the first limiting hole along the first guide surface 761, so that the clamping process of the connecting bracket 70 and the middle frame 30 is smoother.
The first guide face 761 may be disposed at an upper portion of an outer side surface of an end portion of the first protrusion 76, that is, an upper portion of the outer side surface of the first protrusion 76 forms a guide slope, and a lower portion is still a plane. The first projection 76 not only has a guiding function, but also is not easy to slide out of the first limiting hole.
wherein, can also set up the female piece of buckle on the first installation department, it is corresponding, can set up the buckle work piece on the second installation department, the buckle work piece inlay card is in the female piece of buckle, and linking bridge 70 can be in the same place with center 30 by the joint.
Referring to fig. 10, fig. 10 is a schematic view of a sixth structure of an electronic device according to an embodiment of the present application. The fastening workpiece may be a second protrusion 36 disposed on one side of the middle frame side 322 and protruding out of the middle frame side 322, the fastening female part may be a second limiting hole disposed on the second connecting surface 72 of the connecting bracket 70, and the second protrusion 36 is embedded in the second limiting hole to realize the clamping connection between the connecting bracket 70 and the middle frame 30.
The second limiting hole can be a first limiting hole in the shape of a round hole or a square hole, the second bump 36 can also be a circular or square second bump, and the size of the second limiting hole and the size of the second bump 36 can be matched, so that the second bump 36 is just clamped in the second limiting hole.
The middle frame side 322 may be provided with a plurality of second protrusions 36, the plurality of second protrusions 36 may be disposed at an end of the middle frame side 322 at intervals, and correspondingly, the second connecting surface 72 of the connecting bracket 70 may be provided with a plurality of second limiting holes, and the plurality of second limiting holes may also be disposed at an end of the second connecting surface 72 at intervals, so that each second protrusion 36 is adapted to one second limiting hole.
the second bumps 36 may also be disposed at two opposite ends of the middle frame side 322 at intervals and in a staggered manner, a structure with staggered teeth is formed between the second bumps 36, correspondingly, the second connection surface 72 of the connection bracket 70 may be disposed with a plurality of second limiting holes, the second limiting holes may also be disposed at two opposite ends of the second connection surface 72 at intervals and in a staggered manner, and a structure with staggered teeth is also formed between the second limiting holes, so that each second bump 36 is adapted to one second limiting hole.
The end of the second protrusion 36 may be provided with a second guide surface 361. The end of the second protrusion 36 may be one end of the second protrusion 36 in the second limiting hole, a second guide surface 361 is disposed on the outer side surface of the end, the second guide surface 361 is disposed toward the second limiting hole, the second protrusion 36 may be clamped into the second limiting hole along the second guide surface 361, and the second guide surface 361 guides the second protrusion 36 in the process of clamping and embedding the second protrusion 36 into the second limiting hole, so that the clamping and embedding process of the connecting bracket 70 and the middle frame 30 is smoother.
The second guiding surface 361 can be disposed on the upper portion of the outer side surface of the end of the second protrusion 36, i.e. the upper portion of the outer side surface of the second protrusion 36 forms a guiding slope, and the lower portion is still a plane. The second bump 36 not only has a guiding function, but also is not easy to slide out of the second limiting hole.
In the electronic device 100 of the embodiment of the application, the connecting bracket 70 and the middle frame 30 are connected together by the above-mentioned fastening workpiece and the fastening female member, and compared with the fastening connection through the nut and the nut, the connecting bracket 70 can be connected with the middle frame 30 in an embedded manner, and the mounting of the connecting bracket 70 and the middle frame 30 is more convenient.
Wherein, the first installation part can also be provided with a first rack, the second installation part can also be provided with a second rack, the second rack is matched with the first rack, the first rack is meshed with the second rack, and the connecting bracket 70 is meshed with the middle frame 30.
The first rack gear may be disposed at a middle portion of the second coupling surface 72 of the coupling bracket 70, and, accordingly,
The second rack may be disposed at a position of the middle frame side 322 corresponding to the position of the first rack, so that the first rack and the second rack may be engaged.
It will be appreciated that a plurality of first racks may be provided on the first mounting portion, and that the plurality of racks may be located on different portions of the second attachment surface 72; correspondingly, the second mounting part can be provided with second racks, the number and the positions of which are matched with the first racks, so that each first rack can be meshed and connected with one second rack.
It can be understood that two or more of the above-mentioned foam double-sided adhesive, fastener workpiece, fastener female member, and rack may be disposed on the first mounting portion and the second mounting portion at the same time, so that the connecting bracket 70 and the middle frame 30 may be bonded and clamped, bonded and engaged, clamped and engaged, and the like at the same time, and the connecting bracket 70 and the middle frame 30 are combined more tightly.
It should be noted that the manner of connecting the second connecting surface 72 with the middle frame side surface 322 is not limited to the above example, and other schemes for connecting the connecting bracket 70 with the middle frame 30 are within the scope of the present application.
In the electronic device 100 provided by the embodiment of the application, the shape of the first connection surface 71 of the connection bracket 70 may be adapted to the shape of the second non-display surface 121 of the side display portion 12, and the shape of the second connection surface 72 of the connection bracket 70 may be adapted to the shape of the middle frame side surface 322, on one hand, the side display portion 12, the connection bracket 70, and the middle frame side surface 322 are tightly attached, the space occupied by the connection bracket 70 is smaller, and the internal structure connection of the electronic device 100 is more compact; on the other hand, the display screen 10 and the middle frame 30 are connected together through the connecting bracket 70, and the connecting bracket 70 can adapt to the display screen 10 and the middle frame 30 in different shapes, so that the mounting difficulty of the display screen 10 and the middle frame 30 is reduced.
In the connecting bracket 70 of the embodiment of the present application, the second connecting surface 72 and the first connecting surface 71 can be directly connected together, that is, at least two sides of the second connecting surface 72 and the first connecting surface 71 are overlapped. For example, the first connecting surface 71 may include a first side and a second side that are spaced apart from each other, the first connecting surface 71 may be a curved surface structure formed between the first side and the second side, the second connecting surface 72 may be a planar structure or a curved surface structure formed between the first side and the second side, and the second connecting surface 72 may be connected to the middle frame side 322.
The second connecting surface 72 and the first connecting surface 71 of the connecting bracket 70 can also be connected together through a third connecting surface 73, and with continued reference to fig. 5, the first connecting surface 71, the second connecting surface 72 and the third connecting surface 73 are connected in sequence to form a surrounding structure.
With continued reference to fig. 6 to 8, the third connecting surface 73 may be a planar structure, the planar structure of the third connecting surface 73 may be attached to the middle frame extension surface 323 of the middle frame 30, the connecting bracket 70 may be closely attached to the middle frame 30, and the force applied to the connecting bracket 70 may be uniformly transmitted to the middle frame 30.
It is understood that the width of the third connection surface 73 can be adjusted according to the shapes of the first connection surface 71 and the second connection surface 72, and when the first connection surface 71 and the second connection surface 72 are both of curved surface structures, the width of the third connection surface 73 can be set to be smaller appropriately, so that the transition of the first connection surface 71, the third connection surface 73 and the second connection surface 72 is more natural. When the first connection surface 71 is a curved surface structure and the second connection surface 72 is an inclined plane structure, the width of the third connection surface 73 may be designed according to the inclination degree of the second connection surface 72, so that the third connection surface 73 may transition naturally with the first connection surface 71, and may also satisfy the inclination requirement of the second connection surface 72.
It should be noted that the number of the connecting brackets 70 of the present application may be the same as the number of the side display parts 12, so that each side display part 12 can bear the weight thereof through one connecting bracket 70 and the middle frame 30. For example, when the number of the side display parts 12 is two, the number of the connection brackets 70 in the electronic apparatus 100 may also be two.
In addition, the electronic device 100 of the embodiment of the present application may further include a circuit board, a battery, and the like. The circuit board may be mounted on the middle frame 30, and in particular, the circuit board may be mounted in a receiving space 33 formed by the bearing portion 31 and the frame portion 32 of the middle frame 30. The circuit board may be a motherboard of the electronic device 100. One, two or more of functional components such as a microphone, a loudspeaker, a receiver, an earphone interface, a universal serial bus interface (USB interface), a camera component, a distance sensor, an ambient light sensor, a gyroscope, a processor and the like can be integrated on the circuit board. Meanwhile, the display screen 10 may be electrically connected to a circuit board.
The circuit board may be provided with a display control circuit. The display control circuit outputs an electric signal to the display screen 10 to control the main display portion 11 and the side display portion 12 of the display screen 10 to display information.
The battery may be mounted on the middle frame 30. Meanwhile, the battery is electrically connected to the circuit board to enable the battery to power the electronic device 100. Wherein, the circuit board can be provided with a power management circuit. The power management circuit is used to distribute the voltage provided by the battery to the various electronic devices in the electronic apparatus 100.
The battery may be a rechargeable battery. For example, the battery may be a lithium ion battery.
it is understood that the electronic device 100 of the embodiment of the present application may further include other functional components and electronic devices, for example, a microphone, a speaker, a receiver, a camera module, a proximity sensor, a fingerprint identification module, and the like. The structures and mounting positions of these electronic devices and functional components can be referred to in the related art, and are not described in detail in the embodiments of the present application.
It should be noted that in the description of the present application, terms such as "first", "second", and the like are used only for distinguishing similar objects, and are not to be construed as indicating or implying relative importance or implicitly indicating the number of technical features indicated.
The electronic device provided by the embodiment of the present application is described in detail above. The principle and the implementation of the present application are explained herein by applying specific examples, and the above description of the embodiments is only used to help understand the method and the core idea of the present application; meanwhile, for those skilled in the art, according to the idea of the present application, there may be variations in the specific embodiments and the application scope, and in summary, the content of the present specification should not be construed as a limitation to the present application.

Claims (12)

1. An electronic device, comprising:
The display screen comprises a main display part and a side display part, wherein the main display part comprises a first non-display surface, the side display part is formed by bending one side of the main display part towards one side where the first non-display surface is located, and the side display part comprises a second non-display surface;
The middle frame comprises a middle frame surface and a middle frame side surface, and the middle frame side surface is connected with the middle frame surface; and
The connecting bracket comprises a first connecting surface and a second connecting surface, and the second connecting surface is connected with the first connecting surface;
The surface of the middle frame is connected with the first non-display surface, so that the middle frame provides supporting force for the main display part; the first connecting surface is connected with the second non-display surface so that the connecting bracket provides a supporting force for the side display part; the second connecting surface is connected with the side surface of the middle frame, so that the middle frame provides supporting force for the connecting support.
2. The electronic device according to claim 1, wherein the second non-display surface is a curved surface structure, an opening of the curved surface structure is disposed toward the middle frame, and the first connecting surface is attached to the second non-display surface.
3. The electronic device of claim 1, wherein the second connection surface is attached to a side surface of the middle frame.
4. The electronic device according to claim 3, wherein the side surface of the middle frame is a curved surface structure, and the second connecting surface is a curved surface structure attached to the side surface of the middle frame.
5. The electronic device according to claim 3, wherein the middle frame side surface is a planar structure, and the second connection surface is a planar structure attached to the middle frame side surface.
6. The electronic device of claim 1, wherein the middle frame further comprises a middle frame extension surface, the middle frame extension surface is connected with the middle frame side surface, and the middle frame extension surface extends from one end of the middle frame side surface, which is far away from the middle frame surface, toward a side where the connecting bracket is located, so that the middle frame extension surface and the middle frame side surface form a receiving groove, and at least a part of the connecting bracket is located in the receiving groove.
7. The electronic device according to claim 6, wherein the connecting bracket further comprises a third connecting surface, the first connecting surface, the second connecting surface and the third connecting surface are sequentially connected, and the third connecting surface is attached to the extending surface of the middle frame, so that the middle frame provides a supporting force for the connecting bracket.
8. The electronic device according to any one of claims 1 to 7, further comprising a first adhesive member, one surface of the first adhesive member being connected to the first connecting surface, and the other surface of the first adhesive member being connected to the second non-display surface, so as to achieve adhesion of the first connecting surface to the second non-display surface.
9. The electronic device according to any one of claims 1 to 7, wherein a first mounting portion is provided on the second connecting surface of the connecting bracket, a second mounting portion is provided on the side surface of the middle frame, and the first mounting portion is connected to the second mounting portion to realize that the second connecting surface is connected to the side surface of the middle frame.
10. The electronic device of claim 9, wherein the first mounting portion includes a first adhesive surface and the second mounting portion includes a second adhesive surface, the electronic device further comprising a second adhesive member, one surface of the second adhesive member being connected to the first adhesive surface and the other surface of the second adhesive member being connected to the second adhesive surface to achieve adhesion between the first mounting portion and the second mounting portion.
11. The electronic device of claim 9, wherein the first mounting portion includes a first bump, the second mounting portion includes a first limiting hole, and the first bump is embedded in the first limiting hole to realize the clamping connection between the first mounting portion and the second mounting portion.
12. The electronic device of claim 9, wherein the first mounting portion includes a second limiting hole, and the second mounting portion includes a second protrusion embedded in the second limiting hole to clamp the first mounting portion and the second mounting portion.
CN201910838316.0A 2019-09-05 2019-09-05 Electronic device Pending CN110572492A (en)

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CN111131570A (en) * 2019-12-30 2020-05-08 Oppo广东移动通信有限公司 Display module for folding screen and electronic equipment thereof
CN111131570B (en) * 2019-12-30 2021-11-30 Oppo广东移动通信有限公司 Display module for folding screen and electronic equipment thereof
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EP4221163A4 (en) * 2021-04-29 2024-04-10 Honor Device Co., Ltd. Electronic device

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Application publication date: 20191213