Magnetic suction type rubber sleeve structure and mobile equipment
By adopting a magnetic rubber sleeve structure on mobile electronic devices, the problem of inconvenience of accessories and easy scratching of mobile phones is solved, the portability and protection of accessories are achieved, and the user experience is improved.
Patent Information
- Application Number
- CN202422230133.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-11
- Publication Date
- 2025-06-27
- Estimated Expiration
- 2034-09-11
AI Technical Summary
Mobile electronic equipment accessories are inconvenient to carry and are prone to scratch the mobile phone, resulting in poor user experience.
The magnetic rubber sleeve structure is adopted to absorb the accessories on the mobile phone, and a combination of the first rubber shell, support plate, magnetic components and second rubber shell is used to form a detachable magnetic suction connection to improve the portability and protection effect of the accessories.
It improves the portability and convenience of use of accessories, prevents accessories from scratching the phone, and improves the user experience.
Smart Images

Figure CN223038610U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of electronic devices, and in particular, to a magnetic rubber sleeve structure and a mobile device. Background Art
[0002] During the use of mobile electronic devices such as mobile phones and tablet computers, users usually use some accessories, such as a portable solid-state drive (PSSD). These accessories need to be adapted to the mobile phone for use. However, during the use of these accessories, they are not convenient to carry, and the accessories are likely to scratch the mobile phone, resulting in a poor user experience. Summary of the Utility Model
[0003] In view of this, in order to solve at least one of the above defects, it is necessary to provide a magnetic rubber sleeve structure. By using this magnetic rubber sleeve structure, the accessory is adsorbed on the mobile phone, improving the portability of the accessory during use. Moreover, since the accessory is inside the rubber sleeve, it is not likely to scratch the mobile phone, thus improving the user experience.
[0004] In addition, the present application also provides a mobile device using the aforementioned magnetic rubber sleeve structure.
[0005] The present application provides a magnetic rubber sleeve structure, which includes: a first rubber shell, a support plate, a magnetic component, and a second rubber shell. The first rubber shell includes an outer wall and a partition connected to the inner side of the outer wall. The outer wall encloses an accommodation space, and the partition divides the accommodation space into a first cavity and a second cavity arranged in a stacked manner. The support plate is located in the first cavity, and the support plate has a mounting groove. The magnetic component is located in the mounting groove. The second rubber shell covers the opening of the first cavity away from the second cavity.
[0006] In some possible embodiments, the materials of both the first rubber shell and the second rubber shell are silicone.
[0007] In some possible embodiments, the support plate includes a support portion located around the mounting groove, and a first rubber layer is provided between the support portion and the second rubber shell.
[0008] In some possible embodiments, the support plate includes a first surface and a second surface arranged opposite to each other. The first surface is close to the partition, and the second surface is close to the second rubber shell. The second surface includes a first part and a second part connected to each other. The first part is recessed towards the first surface to form the mounting groove, and the second part is recessed towards the first surface to form a plurality of strip-shaped grooves. The support portion is formed between adjacent two strip-shaped grooves.
[0009] In some possible embodiments, the installation groove includes a first groove and a second groove. The first groove is annular and has a notch. The second groove is located corresponding to the notch of the first groove. The magnetic assembly includes a first magnet located in the first groove and a second magnet located in the second groove.
[0010] In some possible embodiments, a second adhesive layer is provided between the partition plate and the support plate.
[0011] In some possible embodiments, a notch is provided at the edge of the partition plate, and a clamping portion is provided on the outer sidewall corresponding to the notch. The clamping portion can be embedded into the notch.
[0012] In some possible embodiments, a retaining piece is provided at one end of the outer sidewall away from the second rubber shell. The retaining piece extends towards the middle of the accommodating space and encloses the opening of the second cavity.
[0013] In some possible embodiments, the first rubber shell is of an integral structure.
[0014] An embodiment of the present application further provides a mobile device, which includes an electronic device and the magnetic suction type rubber sleeve structure as described above adsorbed on the electronic device. The second cavity of the magnetic suction type rubber sleeve structure is used to accommodate accessories used in cooperation with the electronic device.
[0015] The magnetic suction type rubber sleeve structure provided by the present application adopts a rubber sleeve structure formed by a first rubber shell and a second rubber shell, and can install a magnetic assembly in the rubber sleeve structure to realize a magnetic suction type detachable connection between the rubber sleeve structure and the electronic device, which is convenient for the installation of accessories, improves the portability of the use of accessories, and the accessories will not scratch the electronic device under the protection of the soft rubber sleeve structure. Moreover, for the soft rubber sleeve, the user has a better touch feeling when using it, effectively improving the user experience. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the drawings required for the description of the embodiments of the present application will be briefly introduced below. Obviously, the drawings in the following description are only some embodiments of the present application. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts.
[0017] Figure 1 is a schematic structural diagram of the mobile device provided by the embodiment of the present application.
[0018] Figure 2 is a schematic structural diagram of the magnetic suction type rubber sleeve structure provided by the embodiment of the present application.
[0019] Figure 3 For Figure 2Exploded view of the magnetic suction rubber sleeve structure.
[0020] Figures 4 to 7 Schematic diagram of the assembly process of the magnetic suction rubber sleeve structure.
[0021] Description of main component symbols
[0022] Mobile device 1000 Notch 213
[0023] Magnetic suction rubber sleeve structure 100 Support part 22
[0024] First rubber shell 1 First surface 23
[0025] Outer wall 11 Second surface 24
[0026] Partition 12 Strip-shaped groove 25
[0027] Accommodating space 13 Notch 26
[0028] First cavity 131 Magnetic component 3
[0029] Second cavity 132 First magnet 31
[0030] Flap 14 Second magnet 32
[0031] First opening 15 Second rubber shell 4
[0032] Second opening 16 First step 41
[0033] Engaging part 17 First adhesive layer 5
[0034] Second step 18 Second adhesive layer 6
[0035] Support plate 2 Electronic device 200
[0036] Installation groove 21 Fitting 300
[0037] First groove 211 Second groove 212 Detailed implementation manners
[0038] Next, the technical solutions in the embodiments of the present application will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present application.
[0039] Please refer to Figure 1The present application provides a mobile device 1000, which includes an electronic device 200 and a magnetic rubber sleeve structure 100 detachably arranged on the electronic device 200. The magnetic rubber sleeve structure 100 can be used to accommodate and absorb an accessory 300 used in conjunction with the electronic device 200, thereby realizing a magnetically detachable connection between the accessory 300 and the electronic device 200. Among them, the electronic device 200 can be a mobile electronic product such as a mobile phone or a tablet computer with a magnetic suction function, and the accessory 300 can be a mobile solid-state hard disk (PSSD) or a mobile charger used in the mobile electronic product. By matching the magnetic rubber sleeve structure 100, the accessory 300 can be portable, which is conducive to improving the user experience.
[0040] Please refer to Figure 2 and Figure 3 As shown, the magnetic rubber sleeve structure 100 includes: a first rubber shell 1, a support plate 2, a magnetic component 3 and a second rubber shell 4. The first rubber shell 1 includes an outer wall 11 and a partition 12 connected to the inner side of the outer wall 11, the outer wall 11 encloses a accommodating space 13, and the partition 12 divides the accommodating space 13 into a first cavity 131 and a second cavity 132 which are stacked. The support plate 2 is located in the first cavity 131, and the support plate 2 has a mounting groove 21, and the magnetic component 3 is located in the mounting groove 21. The second rubber shell 4 covers the opening of the first cavity 131 away from the second cavity 132, so that the magnetic component 3 and the support plate 2 are encapsulated in the first cavity 131. Specifically, the second rubber shell 4 is attached to the electronic device 200, and the electronic device 200 has a magnetic attraction function. The magnetic component 3 can realize a detachable connection between the magnetic rubber sleeve structure 100 and the electronic device 200. In addition, the accessory 300 can be loaded into the second cavity 132 and adsorbed in the second cavity 132 through the magnetic component 3.
[0041] The first plastic shell 1 is mainly used to form two cavities for installing the magnetic component 3 and the accessory 300. The outer side wall 11 includes a first end face and a second end face that are arranged opposite to each other, wherein the first end face is close to the second plastic shell 4, and the second end face is far away from the second plastic shell 4. The first plastic shell 1 also includes a baffle 14 arranged on the second end face of the outer side wall 11, and the baffle 14 extends toward the middle of the accommodating space 13 and surrounds the first opening 15 of the second cavity 132. The baffle 14 is elastic, and the size of the accessory 300 is larger than the size of the first opening 15. In this way, when installing the accessory 300, the accessory 300 can open the baffle 14 and install it into the second cavity 132 through the first opening 15, and adsorb it on the magnetic component 3. The accessory 300 can be further fixed by the baffle 14.
[0042] In some embodiments, a second opening 16 may also be formed on the outer sidewall 11, and an output port on the fitting 300 located in the second cavity 132 may be exposed through the second opening 16 to facilitate connection of a data cable. Generally, the first rubber housing 1 is substantially rectangular, and the second opening 16 may be formed on a short side of the outer sidewall 11. When the magnetic rubber sleeve structure 100 is installed on the back of the electronic device 200, the second opening 16 may be close to the data interface end of the electronic device 200, for example, it may face downward to facilitate connection of the data cable.
[0043] In some embodiments, the first rubber housing 1 may be an integral structure, and specifically, it may be integrally formed with a soft rubber such as silicone.
[0044] The support plate 2 is mainly used for supporting and fixing the magnetic component 3. The mounting groove 21 on the support plate 2 has a profiling structure with the magnetic component 3, mainly for mounting and limiting the magnetic component 3 to prevent the magnetic component 3 from being misaligned during the movement process. Specifically, the opening of the mounting groove 21 may face the second rubber housing 4 to facilitate the installation of the magnetic component 3 more.
[0045] In some embodiments, the mounting groove 21 includes a first groove 211 and a second groove 212. The first groove 211 is annular, and the annular first groove 211 has a notch portion 213. The second groove 212 is located in the first groove 211 and corresponds to the outside of the notch portion 213. Correspondingly, the magnetic component 3 includes a first magnet 31 located in the first groove 211 and a second magnet 32 located in the second groove 212. Specifically, the magnetic component 3 may be a multi-polar wireless charging magnetic group.
[0046] In some embodiments, combined Figure 3 with Figure 4 As shown, a first glue layer 5 may be provided between the support plate 2 and the partition plate 12 to fix the support plate 2 in the first rubber housing 1. Specifically, the thickness of the first glue layer 5 is relatively thin, and the first glue layer 5 may be formed on the partition plate 12 by coating, and then the support plate 2 is attached to the first glue layer 5 to realize the bonding of the support plate 2 on the partition plate 12.
[0047] In some embodiments, the support plate 2 further includes a support portion 22 around the mounting groove 21, so that when the second rubber housing 4 is installed, the support portion 22 can be used to support the second rubber housing 4.
[0048] In some embodiments, combined Figure 3 with Figure 6As shown, a second adhesive layer 6 is provided between the support portion 22 and the second rubber housing 4, so that the second rubber housing 4 can be bonded to the support plate 2, realizing the connection and fixation between the second rubber housing 4 and the first rubber housing 1.
[0049] Specifically, the support plate 2 includes a first surface 23 and a second surface 24 arranged oppositely. The first surface 23 is close to the partition plate 12, and the second surface 24 is close to the second rubber housing 4. The second surface 24 includes a first part and a second part connected to each other. The first part is recessed towards the first surface 23 to form the installation groove 21, and the second part is recessed towards the first surface 23 to form a plurality of strip-shaped grooves 25. The support portion 22 is formed between two adjacent strip-shaped grooves 25. By forming a plurality of strip-shaped grooves 25, the support plate 2 can form a hollow structure, thereby reducing the weight of the support plate 2. The second adhesive layer 6 can be formed on the long strip-shaped support portion 22 in the form of dot glue to form a narrow glue strip. On the one hand, it can save glue. In addition, when the first rubber housing 1 and the second rubber housing 4 are pressed together, the strip-shaped grooves 25 beside the support portion 22 can be adsorbed on the inner surface of the second rubber housing 4 under the action of negative pressure, further improving the bonding force between the second rubber housing 4 and the support plate 2.
[0050] In some embodiments, a notch 26 is provided at the edge of the support plate 2, and a clamping portion 17 is provided on the outer side wall 11 corresponding to the notch 26. The clamping portion 17 can be embedded in the notch 26. By providing the notch 26 and the clamping portion 17, it can play a role in preventing misassembly and facilitate the installation of the support plate 2. Specifically, the support plate 2 is generally a rectangular structure, and the notch 26 is located at one corner of the rectangle. Correspondingly, the clamping portion 17 is located at one corner inside the outer side wall 11.
[0051] In some embodiments, the support plate 2 is an integral structure and can be specifically formed by using a hard material to achieve a better supporting effect and reduce the risk of deformation and misalignment of the magnetic component 3. For example, the support plate 2 can also be formed by using a hard plastic, which can reduce the weight of the magnetic suction type rubber sleeve structure 100 and improve the bonding force with the first rubber housing 1 and the second rubber housing 4 at the same time.
[0052] The second rubber shell 4 can also be connected to the outer side wall 11 of the first rubber shell 1, further improving the connection and fixation between the first rubber shell 1 and the second rubber shell 4. Specifically, the second rubber shell 4 can be in a sheet shape, with a first step 41 formed at the edge. Correspondingly, a second step 18 is formed on the first end face of the outer side wall 11 of the first rubber shell 1. After covering the second rubber shell 4 at the opening of the first cavity 131 of the outer side wall 11, the first step 41 and the second step 18 cooperate to realize the connection between the first rubber shell 1 and the second rubber shell 4. To further strengthen the connection and fixation effect, a second adhesive layer 6 can be provided between the first step 41 and the second step 18.
[0053] In some embodiments, the material of the second rubber shell 4 can also be a soft rubber material such as silica gel. By making the first rubber shell 1 and the second rubber shell 4 from a flexible material like silica gel with a relatively light weight, it can prevent the accessory 300 from accidentally scratching the electronic device 200, and at the same time effectively improves the user's hand feeling.
[0054] It can be understood that the outer surfaces of the first rubber shell 1 and the second rubber shell 4 can be sprayed with appearance paint to meet various color requirements.
[0055] Specifically, the installation process of the magnetic adsorption rubber sleeve structure 100 includes the following steps:
[0056] Step 1, as Figure 4 shown, apply an adhesive on the surface of the partition 12 of the first rubber shell 1 close to the first cavity 131 to form a first adhesive layer 5.
[0057] Step 2, as Figure 5 shown, install the support plate 2 in the first cavity 131 and bond it to the first adhesive layer 5. At the same time, install the first magnet 31 in the first groove 211 and the second magnet 32 in the second groove 212.
[0058] Step 3, as Figure 6 shown, apply glue on the support part 22 of the support plate 2, the magnetic component 3, and the second step 18 at the end of the outer side wall 11 to form a second adhesive layer 6.
[0059] Step 4, as Figure 7 shown, install the second rubber shell 4 on the outer side wall 11, make the first step 41 cooperate with the second step 18, and install it between jigs for pressure holding and pressing, and then let it stand.
[0060] Step 5, spray appearance paint on the outer surfaces of the pressed first rubber shell 1 and second rubber shell 4, thus completing the entire technological process and finally obtaining the magnetic adsorption rubber sleeve structure 100.
[0061] For existing electronic devices such as mobile phones with a magnetic attraction function, directly installing multi-polar magnets inside a soft silicone shell has a complex process and it is difficult to perform post-magnetization. In the embodiments of the present application, by dividing the first rubber shell 1 into two cavities and adding a support plate 2 inside the first cavity 131, through the cooperation of the support plate 2 with the first rubber shell 1 and the second rubber shell 4, the fixation of the magnetic component 3 inside the soft rubber sleeve is achieved, and post-magnetization can be realized. The structure and assembly process are simple.
[0062] The magnetic-attraction rubber sleeve structure 100 provided by the embodiments of the present application adopts a rubber sleeve structure formed by the first rubber shell 1 and the second rubber shell 4, which can install the magnetic component 3 inside the rubber sleeve structure to achieve a magnetically-attractable detachable connection between the rubber sleeve structure and the electronic device 200. The structure is simple, facilitating the installation of the accessory 300, improving the portability of the use of the accessory 300, enabling post-magnetization of the magnet, and moreover, the accessory 300 will not scratch the electronic device 200 under the protection of the flexible rubber sleeve structure. With the soft rubber sleeve structure, the user has a better touch when using it, effectively enhancing the user experience.
[0063] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present application and not to limit them. Although the present application has been described in detail with reference to the preferred embodiments, those of ordinary skill in the art should understand that the technical solutions of the present application can be modified or equivalently replaced without departing from the spirit and scope of the technical solutions of the present application.
Claims
1. A magnetic rubber sleeve structure, characterized in that: include: A first plastic shell includes an outer wall and a partition connected to the inner side of the outer wall, wherein the outer wall encloses a receiving space, and the partition divides the receiving space into a first cavity and a second cavity which are stacked; A support plate, located in the first cavity, and the support plate has a mounting groove; A magnetic component, located in the mounting slot; as well as The second plastic shell covers the opening of the first cavity away from the second cavity.
2. The magnetic rubber sleeve structure according to claim 1, characterized in that: The first plastic shell and the second plastic shell are both made of silicone.
3. The magnetic rubber sleeve structure according to claim 1, characterized in that: The support plate includes a support portion, the support portion is located around the mounting groove, and a first adhesive layer is provided between the support portion and the second adhesive shell.
4. The magnetic rubber sleeve structure according to claim 3, characterized in that: The support plate includes a first surface and a second surface that are arranged opposite to each other, the first surface is close to the partition, the second surface is close to the second plastic shell, the second surface includes a first part and a second part that are connected to each other, the first part is recessed toward the first surface to form the installation groove, the second part is recessed toward the first surface to form a plurality of strip grooves, and the support portion is formed between two adjacent strip grooves.
5. The magnetic rubber sleeve structure according to claim 1, characterized in that: The mounting groove includes a first groove and a second groove, the first groove is annular and has a notch, the second groove is located on the outer side of the first groove corresponding to the notch, and the magnetic component includes a first magnet located in the first groove and a second magnet located in the second groove.
6. The magnetic rubber sleeve structure according to claim 1, characterized in that: A second adhesive layer is provided between the partition plate and the support plate.
7. The magnetic rubber sleeve structure according to claim 1, characterized in that: The edge of the partition is provided with a notch, and the outer side wall is provided with a clamping portion corresponding to the notch, and the clamping portion can be embedded in the notch.
8. The magnetic rubber sleeve structure according to claim 1, characterized in that: A blocking piece is provided at one end of the outer side wall away from the second plastic shell, and the blocking piece extends toward the middle of the accommodating space and surrounds the opening of the second cavity.
9. The magnetic rubber sleeve structure according to claim 1, characterized in that: The first plastic shell is an integrated structure.
10. A mobile device, characterized in that: It comprises an electronic device and a magnetic rubber sleeve structure as claimed in any one of claims 1 to 9 adsorbed on the electronic device, wherein the second cavity of the magnetic rubber sleeve structure is used to accommodate accessories used in conjunction with the electronic device.