The application relates to the technical field of communication devices, and more particularly to a battery for an electronic device and an electronic device.
In a related art, a battery is fixed in an electronic device mostly by adopting a double-sided adhesive tape. For example, a lithium battery of a smart phone is adhered to a rear cover of the phone through at least one easy-to-pull adhesive tape. In order to dismount the battery of the phone, the easy-to-pull adhesive tape can be pulled to take the battery out of the rear cover by the easy-to-pull adhesive tape. However, the easy-to-pull adhesive tape is easily broken in a pulling process due to its characteristics of softness, high deformation rate and high stickiness, and a wrapping layer on the battery is easily deformed by the pulling force of the easy-to-pull adhesive tape.
The application is intended to at least solve one of the technical problems in a related art. To this end, the application provides a battery for an electronic device. The battery for the electronic device has the advantages of simple structure, strong structural strength and easiness for dismounting.
The application provides an electronic device, which includes the abovementioned battery for the electronic device.
A battery for an electronic device according to embodiments of the application includes: a body module having a first surface and a second surface that are oppositely provided; a component module coupled to the body module; a wrapping layer configured to wrap the component module; a first insulating film arranged on the first surface, wherein a part of the first insulating film extends to the component module and is adhered to the wrapping layer; a second insulating film arranged on the second surface, wherein a part of the second insulating film extends to the component module and is adhered to the wrapping layer; and at least one easy-to-pull adhesive tape, each including an adhesion portion, an adhesive-free region and a hand pulling portion. The adhesion portion is located at one end of the easy-to-pull adhesive tape and adhered to the second surface, the hand pulling portion is located at the other end of the easy-to-pull adhesive tape, the hand pulling portion bypasses the component module and is then overlapped with the first insulating film, the hand pulling portion is located on a side, away from the component module, of the first insulating film, the adhesive-free region is located between the adhesion portion and the hand pulling portion, and the adhesive-free region is bonded to the wrapping layer.
According to the battery for the electronic device in the embodiments of the application, the body module and the component module are integrated by use of the first insulating film and the second insulating film, and the easy-to-pull adhesive tape is provided with the adhesive-free region which is bonded to the wrapping layer, so that when the easy-to-pull adhesive tape is pulled, an external force can be transmitted to the whole battery to exert uniform stress on the body module, the component module and the easy-to-pull adhesive tape, thereby reducing the probability of stress concentration at a specific position of the easy-to-pull adhesive tape. By virtue of the solution, the easy-to-pull adhesive tape can be effectively prevented from being broken, meanwhile, the easy-to-pull adhesive tape can also be prevented from deforming the films wrapping the body module or the component module, and the body module and the component module can be conveniently dismounted from a shell.
An electronic device according to the embodiments of the application includes a shell, at least one reinforcing rib being arranged on an inner surface of the shell; and the abovementioned battery for the electronic device, the battery being close to the at least one reinforcing rib.
According to the electronic device in the embodiments of the application, the body module and the device body are integrated by use of the first insulating film and the second insulating film, and the easy-to-pull adhesive tape is provided with the adhesive-free region which is bonded to the wrapping layer, so that when the easy-to-pull adhesive tape is pulled, an external force can be transmitted to the whole battery to exert uniform stress on the body module, the component module and the easy-to-pull adhesive tape, thereby reducing the probability of stress concentration at a specific position of the easy-to-pull adhesive tape. By virtue of the solution, the easy-to-pull adhesive tape can be effectively prevented from being broken, meanwhile, the easy-to-pull adhesive tape can also be prevented from deforming the films wrapping the body module or the component module, and the body module and the component module can be conveniently dismounted from the shell.
The abovementioned and/or additional aspects and advantages of the application will become apparent and easy to understand from descriptions made to the embodiments in combination with the following drawings.
The embodiments of the application will be described below in detail. Examples of the embodiments are shown in the drawings throughout which the same or similar sign numbers represent the same or similar components or components with the same or similar functions. The embodiments are exemplarily described below with reference to the drawings, and the embodiments are only adopted to explain the application and should not be understood as limits to the application.
In the description of the application, it is to be understood that directions or position relations indicated by “center”, “longitudinal”, “transverse”, “length”, “width”, “thickness”, “up”, “down”, “front”, “rear”, “left”, “right”, “top”, “bottom”, “inside”, “outside”, “circumferential” and the like are directions or position relations shown based on the drawings, and are only to facilitate and simplify the description of the application instead of indicating or implying that indicated devices or components must have specific directions and be constructed and operated at the specific directions, therefore these terms may not be understood as limitations to the application. In addition, features defined by “first” and “second” may explicitly indicate or impliedly include one or more features. In the description of the application, unless otherwise noted, term “multiple” means that the number is equal to or more than 2.
In the description of the application, it is to be noted that, unless otherwise clearly specified and defined, terms “mounting”, “coupled” and “coupling” shall be generally understood. For example, the terms may represent fixed coupling, and may also represent detachable coupling, or integrated coupling. the terms may represent mechanical coupling, and may also, represent electric coupling. The terms may represent direct coupling, and may also represent indirect coupling through an intermediate. The terms may represent internal communication between two elements. Those of ordinary skill in the art can understand specific meanings of the foregoing terms in the application according to specific situations.
A battery 100 for an electronic device 200 and electronic device 200 according to the embodiments of the application will be described below with reference to
It is to be noted that, in the embodiments of the application, an “electronic device” (or called a “terminal” and a “mobile terminal”) used here includes, but not limited to, a device configured to receive and/or send a communication signal through a wireline connection (for example, a Public Switched Telephone Network (PSTN), a Digital Subscriber Line (DSL), a digital cable, a direct cable connection and/or other types of data connections/networks), and/or through a wireless interface (of, for example, a cellular network, a Wireless Local Area Network (WLAN), a digital television network like a Digital Video Broadcasting Handheld (DVB-H) network, a satellite network, an Amplitude Modulation (AM)-Frequency Modulation (FM) broadcast transmitter and/or other communication terminals). A communication terminal configured to communicate through a wireless interface may be called a “wireless communication terminal”, a “wireless terminal” and/or a “mobile terminal”. Examples of the mobile terminal include, but not limited to: a satellite phone or a cell phone; a Personal Communication System (PCS) terminal capable of integrating a cellular radio phone and data processing, faxing and data communication capabilities; a radio phone, a pager, Internet/intranet access, a Web browser, a memo pad, a calendar and a Personal Digital Assistant (PDA) equipped with a Global Positioning System (GPS) receiver; and a conventional laptop and/or palmtop receiver or another electronic device including a radio phone transceiver.
The electronic device may be various devices capable of acquiring data from the outside and processing the data, or, the electronic device may be various devices provided with built-in batteries and capable of acquiring currents from the outside and charging the batteries, for example, a mobile phone, a tablet computer, a computing device or an information display device.
As shown in
Specifically, as shown in
As shown in
As shown in
It is to be noted that, in the adhesive-free region 62, at least one surface in the surface, facing the component module 2, of the easy-to-pull adhesive tape 6 and the surface, away from the component module 2, of the easy-to-pull adhesive tape 6 is a surface with relatively poor stickiness or without stickiness.
The easy-to-pull adhesive tape 6 is an adhesion material and includes a thermoplastic polyurethane (TPU) thin film and rubber glue. Glue (for example, rubber glue) may be arranged on at least one side in upper and lower lateral surfaces of the TPU thin film. The rubber glue includes the following raw materials in parts by weight: 30 to 50 parts of thermoplastic rubber, 30 to 50 parts of a C5 petroleum resin, 20 to 40 parts of a terpene resin, 1 to 10 parts of a plasticizer, 0.1 to 2 parts of a pigment, 1 to 5 parts of polyisobutylene and 100 to 2,000 parts of toluene. The TPU thin film is 30 to 100 microns thick, and the rubber glue is 20 to 50 microns thick. The rubber glue is applied to the TPU thin film in a coating manner.
When the battery 100 is dismounted from a shell 7 of the electronic device 200, the hand pulling portion 63 of the easy-to-pull adhesive tape 6 may be pulled to pry the body module 1 and the component module 2 up. Since the adhesion portion 61 of the easy-to-pull adhesive tape 6 is adhered to the second surface 12, the easy-to-pull adhesive tape 6 can drive the battery 100 to move, so that the battery 100 can be dismounted from the shell 7. The adhesive-free region 62 of the easy-to-pull adhesive tape 6 is bonded to the wrapping layer 3, so that resistance to the easy-to-pull adhesive tape 6 may be reduced when the easy-to-pull adhesive tape 6 starts to be pulled, and the probability that the easy-to-pull adhesive tape 6 is broken may be reduced.
In the related art, a wrapping layer with relatively high stickiness wraps the component module, and because an adhesion stress between the wrapping layer with the relatively high stickiness and a first insulating layer or a second insulating layer or an adhesion stress between the wrapping layer and the easy-to-pull adhesive tape is relatively strong, when the easy-to-pull adhesive tape drives the battery, stress concentration is easily formed at the position, contacting with an edge of the battery, of the easy-to-pull adhesive tape, making the easy-to-pull adhesive tape be easily broken by the component module.
According to the battery 100 for the electronic device 200 in the embodiments of the application, the body module 1 and the component module 2 are integrated by use of the first insulating film 4 and the second insulating film 5, the easy-to-pull adhesive tape 6 is provided with the adhesive-free region 62 which is bonded to the wrapping layer 3, so that when the easy-to-pull adhesive tape 6 is pulled, an external force can be transmitted to the whole battery 100 to exert uniform stress on the body module 1, the component module 2 and the easy-to-pull adhesive tape 6, thereby reducing the probability of stress concentration at a specific position of the easy-to-pull adhesive tape 6. By virtue of the solution, the easy-to-pull adhesive tape 6 can be effectively prevented from being broken, meanwhile, the easy-to-pull adhesive tape 6 can also be prevented from deforming the films wrapping the body module 1 or the component module 2, and the body module 1 and the component module 2 can be conveniently dismounted from the shell 7. In addition, arrangement of the adhesive-free region can effectively reduce adhesion of an adhesive substance on the easy-to-pull adhesive tape 6 to the body module 1 or the component module 2, and thus certain surface cleanliness can still be ensured in a dismounting process of the battery 100.
According to an embodiment of the application, stickiness of both the first insulating film 4 and the second insulating film 5 is higher than stickiness of the wrapping layer 3. Therefore, structural strength of the component module 2 can be strengthened, and integrity of the body module 1 and the component module 2 can also be improved. When the easy-to-pull adhesive tape 6 is pulled, the external force can be transmitted to the whole battery 100 to exert uniform stress on the body module 1, the component module 2 and the easy-to-pull adhesive tape 6, thereby reducing the probability of stress concentration at a specific position of the easy-to-pull adhesive tape 6. For further improving the structural strength of the component module 2 and preventing the component module 2 from being damaged when the easy-to-pull adhesive tape 6 is pulled, in an example shown in
According to an embodiment of the application, at least one through hole 33 is formed at the position, bonded to the first insulating film 4, of the wrapping layer 3. As shown in
As shown in
According to an embodiment of the application, as shown in
According to some embodiments of the application, a portion, bonded to the at least one easy-to-pull adhesive tape 6, of the wrapping layer 3 is a Teflon film. It is to be noted that the Teflon film may be a film structure made from a Teflon material. Teflon may be called polytetrafluoroethylene (PTFE) or may be called a “non-stick coating”, an “easy-to-clean material”, “king of plastic” or “halar”. This material has the characteristics of resistance to acids, resistance to alkalis and resistance to various organic solvents. In addition, PTFE has the characteristic of resistance to high temperatures and a lubrication effect, and is extremely low in friction coefficient.
Of course, the structure of the wrapping layer 3 is not limited thereto. For example, in some other embodiments of the application, the portion, bonded to the at least one easy-to-pull adhesive tape 6, of the wrapping layer 3 is coated with a Teflon layer, so that cost may be reduced. For another example, the whole wrapping layer 3 is a Teflon film, so that a process for the wrapping layer 3 may be simplified. For another example, the wrapping layer 3 is a silicone adhesive layer. A silicone adhesive (or called SILICONE) is an organosilicon product like an ointment, and, after contacting with water in the air, may be cured into a tough rubber solid. The silicone adhesive is mainly divided into a de-acetic type, a dealcoholized type, a deaminated type and a de-propyl type, and all polymers including chemical components polydimethylsiloxane and silicon dioxide may be called silicone. The silicone adhesive is usually used for adhering and sealing glass, and thus is called a glass cement. The silicone adhesive is strong in adhesive strength and tensile strength, and also has the characteristics of weather resistance, vibration resistance, moisture resistance, odor resistance and adaptability to great thermal changes.
For improving coupling stability of the battery 100 and other parts, in an example of the application, as shown in
It can be understood that, for conveniently pulling one end of the battery 100 up by use of the easy-to-pull adhesive tape 6, a material with relatively low stickiness may be arranged at a position close to the end portion. For improving the coupling stability and firmness between the battery 100 and the other parts, a material with relatively high stickiness is arranged at a portion close to the other end of the battery 100. The adhesive-free region of the easy-to-pull adhesive tape 6 is close to one end of the battery 100 and the adhesion portion 61 of the easy-to-pull adhesive tape 6 is close to the other end of the battery 100. For example, as shown in
For conveniently pulling the hand pulling portion 63, in an example of the application, the hand pulling portion 63 of the easy-to-pull adhesive tape 6 may be a ring structure, and may also be a strip structure or a flaky structure. According to an embodiment of the application, there may be multiple easy-to-pull adhesive tapes 6 that are spaced. Therefore, when the body module 1 and the component module 2 are dismounted from the shell 7 by use of the easy-to-pull adhesive tape 6, the external force may be applied to the multiple easy-to-pull adhesive tapes 6, so that the external force may be decentralized to the battery 100, and the battery 100 may be uniformly stressed.
In an example shown in
In each embodiment, an adhesive may be arranged at any position of the adhesive tapes. For example, the adhesive may be arranged at two end portions of each adhesive tape and an intersection of the two adhesive tapes only, and the adhesive is adhered to the battery 100. That is, the battery 100 is coupled to the easy-to-pull adhesive tape 6 through five points. Therefore, particularly in the solution that the four end portions of the two adhesive tapes are adhered to the four corners of the adhesion portion 61 respectively, the coupling reliability of the body module 1 and the easy-to-pull adhesive tape 6 may further be improved to prevent the dismounting failure caused by breakage of the adhesive tape in the dismounting process of the battery 100, and meanwhile, materials are saved.
As shown in
Specifically, the shell 7 may define a mounting cavity 73, and components (for example, a main board) of the electronic device 200 may be mounted in the mounting cavity 73 and coupled to the shell 7. As shown in
According to the electronic device 200 in the embodiments of the application, a body module 1 and a component module 2 are integrated by use of a first insulating film 4 and a second insulating film 5, an easy-to-pull adhesive tape 6 is provided with an adhesive-free region 62 which is bonded to a wrapping layer 3, so that when the easy-to-pull adhesive tape 6 is pulled, an external force can be transmitted to the whole battery 100 to exert uniform stress on the body module 1, the component module 2 and the easy-to-pull adhesive tape 6, thereby reducing the probability of stress concentration at a specific position of the easy-to-pull adhesive tape 6. By virtue of the solution, the easy-to-pull adhesive tape 6 can be effectively prevented from being broken, meanwhile, the easy-to-pull adhesive tape 6 can also be prevented from deforming the films wrapping the body module 1 or the component module 2, and the body module 1 and the component module 2 can be conveniently dismounted from the shell 7.
According to an embodiment of the application, as shown in
As shown in
The electronic device 200 according to the embodiments of the application will be described below with reference to
As shown in
As shown in
As shown in
Specifically, as shown in
As shown in
Stickiness of both the first insulating film 4 and the second insulating film 5 is higher than stickiness of the wrapping layer 3. Therefore, structural strength of the component module 2 can be strengthened, and integrity of the body module 1 and the component module 2 can also be improved. When the easy-to-pull adhesive tape 6 is pulled, an external force can be transmitted to the whole battery 100 to exert uniform stress on the body module 1, the component module 2 and the easy-to-pull adhesive tape 6, thereby reducing the probability of stress concentration at a specific position of the easy-to-pull adhesive tape 6. For further improving the structural strength of the component module 2, as shown in
As shown in
The whole wrapping layer 3 may be a Teflon film. It is to be noted that the Teflon film may be a film structure made from a Teflon material. Teflon may be called PTFE or may be called a “non-stick coating”, an “easy-to-clean material”, “king of plastic” or “halar”. This material has the characteristics of resistance to acids, resistance to alkalis and resistance to various organic solvents. In addition, PTFE has the characteristic of resistance to high temperatures and a lubrication effect, and is extremely low in friction coefficient.
As shown in
As shown in
As shown in
The easy-to-pull adhesive tape 6 is an adhesion material and includes a TPU thin film and rubber glue. The rubber glue may be arranged on at least one side in upper and lower lateral surfaces of the TPU thin film. The rubber glue includes the following raw materials in parts by weight: 30 to 50 parts of thermoplastic rubber, 30 to 50 parts of a C5 petroleum resin, 20 to 40 parts of a terpene resin, 1 to 10 parts of a plasticizer, 0.1 to 2 parts of a pigment, 1 to 5 parts of polyisobutylene and 100 to 2,000 parts of toluene. The TPU thin film is 30 to 100 microns thick, and the rubber glue is 20 to 50 microns thick. The rubber glue is applied to the TPU thin film in a coating manner.
The hand pulling portion 63 of the easy-to-pull adhesive tape 6 may be a ring structure. There may be multiple easy-to-pull adhesive tapes 6 that are spaced, and the multiple easy-to-pull adhesive tapes 6 are parallel to one another. Therefore, when the body module 1 and the component module 2 are dismounted from the shell 7 by use of the easy-to-pull adhesive tape 6, the external force may be applied to the multiple easy-to-pull adhesive tapes 6, so that the external force may be decentralized to the battery 100, and the battery 100 may be uniformly stressed.
For improving coupling stability of the battery 100 and other parts, in an example of the application, as shown in
As shown in
As shown in
In the related art, a wrapping layer with relatively high stickiness wraps the component module, and because an adhesion stress between the wrapping layer with the relatively high stickiness and a first insulating layer or a second insulating layer is relatively strong, when the easy-to-pull adhesive tape drives the battery, stress concentration is easily formed at the position, contacting with an edge of the battery, of the easy-to-pull adhesive tape, making the easy-to-pull adhesive tape be easily broken by the component module.
In the embodiments of the application, when the battery 100 is dismounted from the shell 7 of the electronic device 200, the hand pulling portion 63 of the easy-to-pull adhesive tape 6 is overlapped with the first insulating layer, as shown in
In such a manner, the body module 1 and the component module 2 are integrated by use of the first insulating film 4 and the second insulating film 5, the easy-to-pull adhesive tape 6 is provided with the adhesive-free region 62 which is bonded to the wrapping layer 3, so that when the easy-to-pull adhesive tape 6 is pulled, the external force can be transmitted to the whole battery 100 to exert uniform stress on the body module 1, the component module 2 and the easy-to-pull adhesive tape 6, thereby reducing the probability of stress concentration at a specific position of the easy-to-pull adhesive tape 6. By virtue of the solution, the easy-to-pull adhesive tape 6 can be effectively prevented from being broken, meanwhile, the easy-to-pull adhesive tape 6 can also be prevented from deforming the films wrapping the body module 1 or the component module 2, and the body module 1 and the component module 2 can be conveniently dismounted from the shell 7.
In the descriptions of the specification, descriptions made with reference to terms “an embodiment”, “some embodiments”, “schematic embodiment”, “example”, “specific example”, “some examples” or the like imply inclusion of specific features, structures, materials or characteristics described in combination with the embodiment or the example in at least one embodiment or example of the application. In the specification, schematic expressions about the terms do not always refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics that are described may be combined appropriately in any one or more embodiment or examples.
Although the embodiments of the application have been shown and described, those of ordinary skill in the art may know that various variations, modifications, replacements and transformations may be made to these embodiments without departing from the principle and objective of the application and the scope of the application is limited by the claims and equivalents thereof.
Number | Date | Country | Kind |
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201720569798.0 | May 2017 | CN | national |
201710361299.7 | May 2019 | CN | national |
Filing Document | Filing Date | Country | Kind |
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PCT/CN2018/085098 | 4/28/2018 | WO | 00 |