This application claims priority to Chinese Patent Application No. 202010617064.1, filed on Jun. 30, 2020, the entire content of which is incorporated herein by reference.
The present disclosure relates to the field of smart device and, in particular, to a hinge mechanism and an electronic device.
With expanding functions of electronic devices, such as mobile phones and computers, users not only have requirements for the functions of the electronic devices, but also have more requirements for the touch and feel and service life of the electronic devices. Many electronic devices, especially laptops, have a rotatable dual body structure that uses a hinge mechanism. However, in the hinge mechanism, the torque of a shaft often needs to be provided by shaft friction, which affects the service life of the shaft and makes it hard to control and adjust the torque.
One aspect of the present disclosure provides a hinge mechanism including a hinge assembly connected with a first body and a second body to rotatably connect the first body and the second body, and a torque assembly mounted at the first body and connected with the hinge assembly. When the first body and the second body are relatively rotated to drive an action of the hinge assembly, the hinge assembly drives an action of the torque assembly to cause at least a part of the torque assembly to translate relative to the first body to provide a torque for the hinge assembly.
Another aspect of the present disclosure provides an electronic device including a first body, a second body, and a hinge mechanism rotatably connect the first body and the second body. The hinge mechanism includes a hinge assembly connected with a first body and a second body to rotatably connect the first body and the second body, and a torque assembly mounted at the first body and connected with the hinge assembly. When the first body and the second body are relatively rotated to drive an action of the hinge assembly, the hinge assembly drives an action of the torque assembly to cause at least a part of the torque assembly to translate relative to the first body to provide a torque for the hinge assembly.
Reference numerals: Hinge assembly 1; Torque assembly 2; First friction member 3; Second friction member 4; First bracket 5; Second bracket 6; First shaft 7; Second shaft 8; Third shaft 9; Fourth shaft 10; Fifth shaft 11; Notch 12; Protrusion 13; First link 14; Second link 15.
Technical solutions of the present disclosure will be described with reference to the drawings. It will be appreciated that the described embodiments are some rather than all of the embodiments of the present disclosure. Other embodiments conceived by those having ordinary skills in the art on the basis of the described embodiments without inventive efforts should fall within the scope of the present disclosure.
In the description of this specification, the phrases “in an example embodiment,” “in another example embodiment,” or “in some embodiments” refer to one or more of the same or different embodiments consistent with the present disclosure. Those skilled in the art can combine the different embodiments or examples described in this specification or the features of the different embodiments or examples when there is no conflict.
The hinge assembly 1 is used to connect the first body and the second body to rotatably connect the first body and the second body. The torque assembly 2 is mounted at the first body and is connected to the hinge assembly 1. When the first body and the second body are relatively rotated to drive an action of the hinge assembly 1, the hinge assembly 1 drives an action of the torque assembly 2 to cause at least a part of the torque assembly 2 to translate relative to the first body to provide a torque for the hinge assembly 1.
For example, the hinge assembly 1 includes a plurality of shafts. The plurality of shafts form a whole that can drive each other and restrain each other. The first body and the second body may be connected to two of the plurality of shafts of the hinge assembly 1, respectively connected, or may be connected to the whole formed by the plurality of shafts, to realizes a rotation connection between the two bodies. The torque assembly 2 is used to provide the torque to the hinge assembly 1. The torque assembly 2 is mounted at the first body and connected to the hinge assembly 1. When a user rotates the first body, the first body drives the hinge assembly 1, and the hinge assembly 1 drives the torque assembly 2, to cause the torque assembly 2 to translate relative to the first body based on the drive of the hinge assembly 1 to generate a friction. The torque is formed for the hinge assembly 1 by the friction, that is, the hinge assembly 1 and the first body are sequentially stagnated by the friction to prevent the first body from continuing to rotate, thereby achieving an effect of a torque of the shaft.
As described in above embodiments, the hinge assembly 1 may drive the torque assembly 2 to translate relative to the first body during movement and generate the friction used to create the torque of the shaft and block a rotation of the first body by the configuration of the torque assembly 2 connected to the hinge assembly 1. Compared with conventional hinge mechanisms that use shaft friction to provide torque, the hinge mechanism consistent with the present disclosure may protect the shaft, extend service life of the shaft, and improve the turning feel when the user turns the first body.
Further, as shown in
The first friction member 3 includes a plate, and the second friction member 4 includes two oppositely arranged plates and a hollow cylinder connecting the two plates of the second friction member 4. The first friction member 3 may be directly fixed to the first body, or indirectly fixed to the first body through another component. The second friction member 4 is connected to the hinge assembly 1. The second friction member 4 may be only partially located between the friction member 3 and the corresponding first body or may be all located between the first friction member 3 and the corresponding first body. That is, the first friction member 3 and the corresponding first body enclose a cavity capable of accommodating the second friction member 4. The second friction member 4 is in the cavity and may move relative to the cavity. During the movement of the second friction member 4, a friction is generated when a surface of one of the two plates of the second friction member 4 and a surface of the first friction member 3 are in contact and move relative to each other, and a friction is also generated when a surface of another one of the two plates of the second friction member 4 and a surface of the first body are in contact and move relative to each other. The frictions are generated by the movement and used to create the torque of the shaft. In some embodiments, only one of the surfaces of the second friction member 4 and the first friction member 3 are in contact and move relative with each other to generate friction. To limit the second friction member 4 to prevent the second friction member 4 from deviating from the first friction member 3, a cavity in a similar form to the above-described cavity or another limiting mechanism needs to be formed.
Further, to facilitate disassembly, assembly, and maintenance of the hinge mechanism, the hinge mechanism further includes a first bracket 5 fixed to the first body and a second bracket 6.
The first friction member 3 is mounted at the first bracket 5, and the second friction member 4 is sandwiched between the first friction member 3 and the corresponding first bracket 5 and moves along the first friction member 3 and the first bracket 5 to generate the friction. The one end of the hinge assembly 1 is connected to the second friction member 4 and is movably connected to the first bracket 5.
The second bracket 6 is fixed to the second body, another end of the hinge assembly 1 is movably connected to the second bracket 6, and a part of the hinge assembly located between the two ends is rotatably connected to the first bracket and the second bracket, respectively.
Specifically, as shown in
To increase the friction, further increase the torque of the shaft effect, and enhance the feel when the user turns the first body or the second body, the contact surface between the first friction member 3 and the second friction member 4 and the contact surface between the second friction member 4 and the first bracket 5 are flat. The first friction member 3 and the second friction member 4, and/or the second friction member 4 and the first bracket 5 have a structure for increasing friction. The structure is not unique. For example, the structure may be a rib, or a bump, etc.
Further, the hinge assembly 1 may enable the first body and the second body to rotate in cooperation with each other within a range of 0° to 180°. When the first body and the second body are rotated to the coplanar state, the first bracket and the second bracket are driven by the hinge assembly to approach each other, thereby driving the first body and the second body to approach each other. When the first body and the second body are rotated to overlap each other and are in a stacked state, the first bracket 5 and the second bracket 6 are driven by the hinge assembly 1 to move away from each other, thereby driving the first body and the second body to move away from each other.
Further, as shown in
The first link 14 and a middle part of the second link 15 are rotatably connected through a first shaft 7. One end of the first link 14 is movably connected to the first bracket 5 through at least a second shaft 8. The torque assembly 2 is connected to the second shaft 8. Another end of the first link 14 is rotatably connected to the second bracket 6 through a third shaft 9. One end of the second link 15 is rotatably connected to the first bracket 5 through a fourth shaft 10. Another end of the second link 15 is movably connected to the second bracket 6 through a fifth shaft 11.
Specifically, the structures of the first link 14 and the second link 15 are shown in
Specifically, to better explain the movement process of the hinge mechanism, the following is a detailed description with reference to
Taking a laptop as an electronic device, the first body and the second body are the two bodies of the laptop, respectively, as an example, the first bracket 5 is mounted at the first body, the second bracket 6 is mounted at the second body. The first friction member 3 is fixed to the first bracket 5, and the second friction member 4 is sandwiched between the first friction member 3 and the first bracket 5 and is connected to the end of the hinge assembly 1 facing the first bracket 5 at the same time. The hinge assembly 1 is rotatably connected to the first bracket 5 and the second bracket 6 at the same time, and can move relative to the first bracket 5 and the second bracket 6 at the same time. When the user rotates the second body to open the laptop, the fifth shaft 11 of the hinge assembly 1 drives the second link 15 to move relative to the second bracket 6. The third shaft 9 rotates relative to the second bracket 6, and drives the second link 15 to rotate relative to the first link 14 based on the first shaft 7, and to rotate relative to the first bracket 5 based on the fourth shaft 10. At the same time, the second shaft 8 pushes the second friction member 4 to be moved together along the long hole of the first bracket 5 in the direction extending into the first bracket 5. Because a movement direction of the fifth shaft 11 is opposite to the movement direction of the second shaft 8, the second bracket 6 is moved driven by the second body to gradually approach the first bracket 5 until the two are rotated to the position shown in
Another embodiment of the present disclosure also provides an electronic device, which includes a first body, a second body, and the above-described hinge mechanism rotatably connecting the first body and the second body.
Other embodiments of the disclosure will be apparent to those skilled in the art from consideration of the specification and practice of the embodiments disclosed herein. It is intended that the specification and examples be considered as example only and not to limit the scope of the disclosure, with a true scope and spirit of the invention being indicated by the following claims.
Number | Date | Country | Kind |
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202010617064.1 | Jun 2020 | CN | national |