The present invention relates to the field of communications technologies, and in particular, to a mobile terminal port and a mobile terminal.
In an existing waterproof design of a mobile phone, a device+silicone cover dual-device assembly manner is used, and liquid injection silicone is used and molded on a plastic or iron surface. An all-in-one waterproof design solution can effectively improve waterproof reliability of the entire mobile phone. As shown in
The present invention provides a mobile terminal port and a mobile terminal, to improve a sealing effect of the mobile terminal.
The present invention provides a mobile terminal port, where the terminal port includes a port body and a sealing cover, the sealing cover is assembled surrounding an opening end of the port body, the sealing cover has an elastic extrusion part that extends outside the opening end, and the elastic extrusion part is extruded and deformed along a vertical direction of the port body.
In the foregoing embodiment, the sealing cover is directly assembled surrounding the port body. The sealing cover extends outside an end face of the port body in a parallel manner, and may form waterproof sealing with a housing of a waterproof mobile terminal device. However, an existing sealing silicone ring extends in a normal direction of a metal sleeve, and the housing needs to be made to match a shape of the sleeve and then can be sealed. In comparison with the prior art, a parallel design is used in a sealing structure provided in this embodiment of the present invention, and the housing can be assembled and sealed by using only a small plane. This greatly reduces a length of the mobile device and reduces an assembling difficulty. In addition, a vertical extrusion manner effectively improves a sealing effect.
In a specific implementation, a card slot is disposed around a side wall of the port body, and the sealing cover is clamped in the card slot. The card slot is disposed on the port body, and the sealing cover is clamped in the card slot, so as to provide a support force to the sealing cover.
During specific disposal, an end face, which is far away from the opening end, of the elastic extrusion part is an inclined surface matching a housing of a mobile terminal. The elastic extrusion part may form a matching structure according to a shape of the housing, so as to ensure sealing of the port.
To further improve sealing of the terminal port, a ring-shaped protrusion structure is disposed on the end face, which is far away from the opening end, of the elastic extrusion part. The protrusion structure matches the housing. Therefore, the sealing effect is further improved.
Preferably, to ensure the sealing effect, the sealing cover is injected and molded on the port body. The sealing cover is directly injected and molded on the port body. Therefore, sealing between the sealing cover and the port body is ensured.
The present invention further provides a mobile terminal, where the mobile terminal includes a housing and the foregoing mobile terminal port.
An opening structure is disposed on the housing, the mobile terminal port is located inside the housing, and an elastic sealing cover of the mobile terminal port is connected to the opening structure in a sealing manner.
In the foregoing embodiment, the sealing cover is directly assembled surrounding a port body. The sealing cover extends outside an end face of the port body in a parallel manner, and may form waterproof sealing with the housing of the waterproof mobile terminal device. However, an existing sealing silicone ring extends in a normal direction of a metal sleeve, and the housing needs to be made to match a shape of the sleeve and then can be sealed. In comparison with the prior art, a parallel design is used in a sealing structure provided in this embodiment of the present invention, and the housing can be assembled and sealed by using only a small plane. This greatly reduces a length of the mobile device and reduces an assembling difficulty. In addition, a vertical extrusion manner effectively improves a sealing effect.
During specific disposal, when a ring-shaped protrusion structure is disposed on an end face, which is far away from the opening end, of the elastic extrusion part, a groove matching the protrusion structure is disposed on a side wall inside the housing and around the opening structure. The groove matches the protrusion structure. Therefore, assembly accuracy is further improved, and the sealing effect is improved.
In a specific embodiment, a cross section of the groove is arc-shaped, and the protrusion structure has an arc-shaped end face matching the groove. Matching of the arc-shaped groove further improves the sealing effect.
1. Terminal port; 2. Silicone cover; 10. Port body
11. Card slot; 20. Sealing cover; 21. Elastic extrusion part
22. Protrusion structure; 23. Inclined surface; 30. Housing
To make the objectives, technical solutions, and advantages of the present invention clearer, the following further describes the present invention in detail with reference to the accompanying drawings. Apparently, the described embodiments are merely some but not all of the embodiments of the present invention. All other embodiments obtained by a person of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.
As shown in
An embodiment of the present invention provides a mobile terminal port. The terminal port includes a port body 1 and a sealing cover 20. The sealing cover 20 is assembled surrounding an opening end of the port body 1. The sealing cover 20 has an elastic extrusion part 21 that extends outside the opening end. The elastic extrusion part 21 may be extruded and deformed along a vertical direction of the port body 1.
In the foregoing embodiment, the sealing cover 20 is directly assembled surrounding the port body 1. The sealing cover 20 extends outside an end face of the port body 1 in a parallel manner, and may form waterproof sealing with a housing of a waterproof mobile terminal device. However, an existing sealing silicone ring extends in a normal direction of a metal sleeve, and the housing 30 needs to be made to match a shape of the sleeve and then can be sealed. In comparison with the prior art, a parallel design is used in a sealing structure provided in this embodiment of the present invention, and the housing 30 can be assembled and sealed by using only a small plane. This greatly reduces a length of the mobile device and reduces an assembling difficulty. In addition, a vertical extrusion manner effectively improves a sealing effect.
For ease of understanding a structure and a principle of the mobile terminal port provided in this embodiment of the present invention, the following describes in detail the structure and the principle with reference to specific accompanying drawings and embodiments.
Still as shown in
When the port body 1 and the sealing cover 20 are specifically connected, different connection manners may be used. The sealing cover 20 and the port body 1 may be bonded by sealant. Alternatively, the sealing cover 20 may be directly injected and molded on the port body 1. Preferably, to ensure a sealing effect between the port body 1 and the sealing cover 20, the sealing cover 20 is injected and molded on the port body 1. The sealing cover 20 is directly injected and molded on the port body 1. This ensures sealing between the sealing cover 20 and the port body 1, and improves the sealing effect of the port. In a specific molding process, the sealing cover 20 is a silicone cover. That is, silicone is directly injected and molded around the port. In addition, injection and molding improve connection strength between the silicone cover and the port body 1. It can be seen from
Still as shown in
In this embodiment, the elastic extrusion part 21 of the sealing cover 20 is configured to match the housing 30 to form a sealing structure. During specific disposal, the elastic extrusion part 21 may match a shape of the housing 30. For example, in a specific embodiment, an end face, which is far away from the opening end, of the elastic extrusion part 21 is an inclined surface 23 matching the housing 30 of the mobile terminal (as shown in
As shown in
As shown in
An opening structure is disposed on the housing 30. The mobile terminal port is located inside the housing 30, and an elastic sealing cover 20 of the mobile terminal port is connected to the opening structure in a sealing manner.
In the foregoing embodiment, the sealing cover 20 is directly assembled surrounding a port body 1. The sealing cover 20 extends outside an end face of the port body 1 in a parallel manner, and may form waterproof sealing with the housing of the waterproof mobile terminal device. However, an existing sealing silicone ring extends in a normal direction of a metal sleeve, and the housing 30 needs to be made to match a shape of the sleeve and then can be sealed. In comparison with the prior art, a parallel design is used in a sealing structure provided in this embodiment of the present invention, and the housing 30 can be assembled and sealed by using only a small plane. This greatly reduces a length of the mobile device and reduces an assembling difficulty. In addition, a vertical extrusion manner effectively improves a sealing effect.
As shown in
In a process of sealing, deformation that can be performed on the elastic extrusion part 21 includes deformation of the protrusion structure 22 and overall deformation of the elastic extrusion part 21, and a cross-sectional area of the protrusion structure 22 is less than a cross-sectional area of the elastic extrusion part 21. Therefore, the protrusion structure 22 is deformed more easily, and sealing can be formed between the protrusion structure 22 and the groove. When the foregoing structure is used, sealing between the protrusion structure 22 and the groove and sealing between the housing 30 and a part other than the protrusion structure 22 on the end face of the elastic extrusion part 21 are performed, to implement sealing between the port and the housing 30. Therefore, the sealing effect can be effectively improved.
As shown in
Obviously, a person skilled in the art can make various modifications and variations to the present invention without departing from the spirit and scope of the present invention. The present invention is intended to cover these modifications and variations provided that they fall within the scope of protection defined by the following claims and their equivalent technologies.
Filing Document | Filing Date | Country | Kind |
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PCT/CN2016/077736 | 3/29/2016 | WO | 00 |