Wearable devices

The connection method of the limiting column and limiting groove of the limiting part and the locking part and the buckle position solves the problem of difficult assembly of the watch body and the watch strap in the existing technology, and realizes simple and efficient assembly of wearable devices.

CN115191727BActive Publication Date: 2025-09-16GUANGDONG OPPO MOBILE TELECOMMUNICATIONS CORP LTD
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Patent Information

Application Number
CN202110402978.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-04-14
Publication Date
2025-09-16
Estimated Expiration
2041-04-14

AI Technical Summary

Technical Problem

In existing wearable devices, the assembly process of the watch body and the watch strap requires applying a large force, which makes assembly difficult.

Method used

The limiting column of the limiting part cooperates with the limiting groove, and the locking part cooperates with the buckle position to achieve a fixed connection between the watch body and the watch strap. During assembly, it can be completed by simply pushing the limiting column in one direction.

Benefits of technology

The assembly process is simplified, making the connection between the watch body and the watch strap simpler and more convenient, and improving assembly efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application provides a wearable device comprising a first body, a second body, and a connecting assembly. A limiting groove and a buckle are convexly provided on the first body. The connecting assembly is disposed on the second body and includes a limiting member and a locking member. The limiting member comprises a limiting post, which is configured to extend into and engage with the limiting groove. The locking member gradually engages with the buckle as the limiting post extends into the limiting groove. The wearable device provided by the present application is simple and convenient to assemble.
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Description

Technical Field

[0001] The present application relates to the field of wearable technology, and in particular to a wearable device. Background Art

[0002] Wearable devices, such as watches, often require a connecting assembly to securely connect the watch body and strap. In related art, connecting the watch body and strap via a pin-and-tube assembly requires first securing one end of the pin-and-tube assembly, located on the strap, to one end of the watch body. Then, applying pressure to reduce the pin-and-tube assembly's length, the other end of the pin-and-tube assembly is inserted into the other end of the watch body to complete the assembly. This approach requires applying significant force to compress the pin-and-tube assembly, making the entire assembly process difficult. Summary of the Invention

[0003] The present application provides a wearable device with a relatively simple assembly method.

[0004] The present application provides a wearable device, comprising:

[0005] A first body, wherein the first body is provided with a limiting groove and a buckle;

[0006] Second Entity; and

[0007] A connecting component is arranged on the second body, and the connecting component includes a limiting part and a locking part. The limiting part has a limiting column, and the limiting column is used to extend into the limiting groove and cooperate with the limiting groove; the locking part gradually cooperates with the buckle in the process of the limiting column extending into the limiting groove.

[0008] The wearable device provided in this application achieves a fixed connection between the second body and the first body by cooperating the limiting post of the limiting member provided on the second body with the limiting groove protruding from the first body, and cooperating the locking member provided on the second body with the buckle protruding from the first body. Since the limiting post and the limiting groove can be matched when the limiting post extends into the limiting groove, the assembly of the first and second bodies only requires pushing the limiting post in one direction to extend it into the limiting groove. In addition, the locking member and the buckle can be matched when the limiting post extends into the limiting groove, making the entire assembly process simple and convenient. BRIEF DESCRIPTION OF THE DRAWINGS

[0009] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the following briefly introduces the drawings required for use in the embodiments.

[0010] Figure 1 1 is a schematic diagram of the front structure of a wearable device provided in an embodiment of the present application;

[0011] Figure 2 yes Figure 1 A schematic diagram of the back structure of the wearable device shown;

[0012] Figure 3 yes Figure 1 A schematic structural diagram of the first body in the wearable device shown;

[0013] Figure 4 yes Figure 1 A schematic structural diagram of the second body and connecting components in the wearable device shown;

[0014] Figure 5 yes Figure 4 An exploded schematic diagram of the second body and the connecting assembly is shown;

[0015] Figure 6 yes Figure 4 A partial enlarged schematic diagram of area A is shown;

[0016] Figure 7 yes Figure 4 A schematic structural diagram of a position limiting member in the connecting assembly shown;

[0017] Figure 8 yes Figure 1 An exploded schematic diagram of the first body, the second body, and the connecting components in the wearable device shown;

[0018] Figure 9 yes Figure 5 The illustrated connection assembly also includes an exploded schematic diagram of the rotating shaft;

[0019] Figure 10 yes Figure 1 A schematic cross-sectional view of the wearable device shown;

[0020] Figure 11 yes Figure 10 A partial enlarged schematic diagram of area B is shown;

[0021] Figure 12 yes Figure 11 A cross-sectional schematic diagram of the locking member sliding along the inclined surface of the buckle position;

[0022] Figure 13 yes Figure 11 A schematic cross-sectional view of the inclined surface of the locking member abutting against the buckle position;

[0023] Figure 14 yes Figure 7 A schematic diagram of the structure in which the locking member is provided with a protrusion and the limiting member is provided with a groove;

[0024] Figure 15 yes Figure 11 A cross-sectional diagram showing the locking member and the buckle position being separated;

[0025] Figure 16 yes Figure 2 A schematic structural diagram of a wearable device having a locking member provided with a toggle portion is shown. DETAILED DESCRIPTION

[0026] The following will be combined with the accompanying drawings in the embodiments of the present application to clearly and completely describe the technical solutions in the embodiments of the present application. Obviously, the embodiments described are only some embodiments of the present application, not all embodiments. The embodiments listed in the present application can be appropriately combined with each other.

[0027] Please refer to Figure 1 and Figure 2 , Figure 1 This is a front structural diagram of a wearable device 100 provided in an embodiment of the present application. Figure 2 This is a schematic diagram of the back structure of a wearable device 100 provided in an embodiment of the present application. The wearable device 100 provided in the present application can be a head-mounted device, a wristband device, etc., such as glasses, watches, bracelets, necklaces. In the embodiment of the present application, a watch is taken as an example. The wearable device 100 includes a first body 1, a second body 2, and a connecting component 3. In the wearable device 100 provided in the embodiment of the present application, the first body 1 is a watch body, and the second body 2 is a watch strap. Of course, in other embodiments, the first body 1 can be a watch strap, and the second body 2 can be a watch body; or, the first body 1 can be a glasses frame, etc., and the second body 2 can be a temple; or still further, the first body 1 can be a temple, and the second body 2 can be a glasses frame, etc. Among them, the first body 1 can be a mechanical watch body, an electronic watch body, etc. The material of the second body 2 can be metal, alloy, plastic, etc. Optionally, the material of the second body 2 is a soft rubber material. The connecting component 3 is used to connect the second body 2 to the first body 1.

[0028] For ease of description, the following examples are established. Figure 3 The coordinate system is described. The X-axis direction can be understood as the length direction of the second body 2 or the first body 1. The Y-axis direction can be understood as the width direction of the second body 2 or the first body 1. The Z-axis direction can be understood as the width direction of the second body 2 or the first body 1. The direction indicated by the arrow in the figure is the positive direction of the corresponding coordinate axis, and the direction opposite to the positive direction is the negative direction of the corresponding coordinate axis.

[0029] Please refer to Figure 2 and Figure 3 , a limiting groove and a buckle 303 are convexly provided on the first body 1. In the embodiment of the present application, two limiting grooves are used as an example for explanation. It can be understood that the number of limiting grooves can be one or more. In the embodiment of the present application, the two limiting grooves are respectively recorded as the first limiting groove 301 and the second limiting groove 302. Among them, the first limiting groove 301 can be a circular groove, a square groove, a trapezoidal groove, a triangular groove or other polygonal grooves.

[0030] The second limiting groove 302 can be a circular groove, a square groove, a trapezoidal groove, a triangular groove, or other polygonal groove. The first limiting groove 301 and the second limiting groove 302 can be protruding from the same side of the first body 1 or from different sides. In this embodiment, the connection between the first body 1 and the second body 2 serves as the connection between the watch body and the watchband. Therefore, the first limiting groove 301 and the second limiting groove 302 are located on the same side of the first body 1. In addition, the first limiting groove 301 and the second limiting groove 302 are located on the same side of the first body 1, which helps to improve the structural compactness of the first body 1. The first limiting groove 301 and the second limiting groove 302 are spaced apart. In other words, there is a gap between the first limiting groove 301 and the second limiting groove 302. In this embodiment, the first limiting groove 301 and the second limiting groove 302 are protruding from the YZ plane of the first body 1. The opening of the first limiting groove 301 can face the positive direction of the X axis, the positive direction of the Y axis, the negative direction of the Y axis, the positive direction of the Z axis, or the negative direction of the Z axis. The opening of the second limiting groove 302 may be oriented toward the positive direction of the X-axis, the positive direction of the Y-axis, the reverse direction of the Y-axis, the positive direction of the Z-axis, or the reverse direction of the Z-axis. The orientation of the opening of the first limiting groove 301 is the same as the orientation of the opening of the second limiting groove 302. In the embodiment of the present application, the first limiting groove 301 and the second limiting groove 302 are arranged along the Y-axis direction, and the opening of the first limiting groove 301 and the opening of the second limiting groove 302 are both oriented toward the positive direction of the Z-axis. Among them, the opening of the first limiting groove 301 and the opening of the second limiting groove 302 are both oriented toward the positive direction of the Z-axis, which can be understood as the groove wall of the first limiting groove 301 and the groove wall of the second limiting groove 302 extending in a straight line along the positive direction of the Z-axis, or the first limiting groove 301 and the second limiting groove 302 extending obliquely along the positive direction of the Z-axis. The buckle position 303 can be located between the first limiting groove 301 and the second limiting groove 302, or on the side of the first limiting groove 301 facing away from the second limiting groove 302, or on the side of the second limiting groove 302 facing away from the first limiting groove 301. Of course, in other embodiments, the buckle position 303 can be located on a different side of the first body 1 than the first limiting groove 301 and the second limiting groove 302. In the embodiment of the present application, the buckle position 303 is located on the same side of the first body 1 as the first limiting groove 301 and the second limiting groove 302, and is located between the first limiting groove 301 and the second limiting groove 302.

[0031] In the embodiment of the present application, the first limiting groove 301, the second limiting groove 302, and the buckle 303 are all protruded from the outside of the first body 1. Among them, the buckle 303 is a boss provided on the outer surface of the first body 1. By protruding the first limiting groove 301, the second limiting groove 302, and the buckle 303 from the outside of the first body 1, the structural impact on the first body 1 itself is small, damage to the structure of the first body 1 can be avoided, and the first body 1 with smooth edges and good integrity can be formed. Among them, the first limiting groove 301, the second limiting groove 302, and the buckle 303 can be integrally formed with the first body 1, or fixed to the outside of the first body 1 by welding, bonding, bolting, etc.

[0032] Please refer to Figure 2 and Figure 4 The connecting assembly 3 includes a limiting member 304 and a locking member 305 provided on the second body 2 .

[0033] In one embodiment, please refer to Figure 4 and Figure 5 One end of the second body 2 is provided with a mounting groove 201. A limiting member 304 is installed in the mounting groove 201. Optionally, when the limiting member 304 is installed in the mounting groove 201, the outer surface of the limiting member 304 abuts against the groove wall of the mounting groove 201, thereby forming a snap fit to prevent the limiting member 304 from falling out of the mounting groove 201. Of course, the limiting member 304 can also be fixed in the mounting groove 201 by bonding, welding, threaded connection, magnetic connection, snap connection, or other connection methods. In other embodiments, the limiting member 304 can be integrally formed with the second body 2.

[0034] By providing a mounting groove 201 at one end of the second body 2 and installing the stopper 304 within the mounting groove 201, the space occupied by the stopper 304 and the second body 2 can be reduced. Furthermore, after the first body 1 and the second body 2 are assembled, the stopper 304 is hidden between the first body 1 and the second body 2 by being installed within the mounting groove 201, thereby improving the smoothness of the connection between the first body 1 and the second body 2 and the overall appearance of the wearable device 100.

[0035] Optional, such as Figure 6 As shown, the locking member 305 is provided on the limiting member 304 or directly on the second body 2. In the embodiment of the present application, the locking member 305 is provided on the limiting member 304. By providing the locking member 305 on the limiting member 304, the size of the second body 2 along the Y-axis direction can be reduced, which is conducive to forming a compact wearable device 100.

[0036] like Figure 7 As shown, Figure 7This is a schematic diagram of the structure of a limiting member 304 provided in an embodiment of the present application. The limiting member 304 includes a limiting post. It is understood that the number of limiting posts may be one or more. In the embodiment of the present application, two limiting posts are used as an example. The two limiting posts are respectively designated as a first limiting post 340 and a second limiting post 341. The first limiting post 340 and the second limiting post 341 are spaced apart.

[0037] Please refer to Figures 5 to 7 In the embodiment of the present application, the limiting member 304 also includes a base plate 342. The first limiting column 340 and the second limiting column 341 are arranged on the base plate 342. The base plate 342 forms a U-shaped groove and cooperates with the mounting groove 201 on the second body 2. In the embodiment of the present application, the first limiting column 340 and the second limiting column 341 are supported by the base plate 342, so that the base plate 342 cooperates with the mounting groove 201 on the second body 2, which is conducive to the detachability of the limiting member 304 and the second body 2. It can be understood that in other embodiments, the first limiting column 340 and the second limiting column 341 of the limiting member 304 can be directly arranged in the mounting groove 201 of the second body 2 without the need to set the base plate 342.

[0038] Among them, Figure 8 As shown, the first limiting column 340 and the second limiting column 341 are spaced apart. The first limiting column 340 is used to cooperate with the first limiting groove 301, and the second limiting column 341 is used to cooperate with the second limiting groove 302. The extension direction of the first limiting column 340 is the same as the extension direction of the second limiting column 341. In the embodiment of the present application, the first limiting column 340 and the second limiting column 341 both extend in the positive direction of the Z axis. Among them, the first limiting column 340 and the second limiting column 341 both extend in the positive direction of the Z axis, which can be understood as the first limiting column 340 and the second limiting column 341 extending in a straight line along the Z axis direction, or the first limiting column 340 and the second limiting column 341 extending obliquely along the Z axis direction.

[0039] The limiting post is used to extend into the limiting groove and cooperate with the limiting groove. Specifically, after the first body 1 and the second body 2 are assembled, the first limiting post 340 abuts against the groove wall of the first limiting groove 301, and the second limiting post 341 abuts against the groove wall of the second limiting groove 302. In the present application, during the process of assembling the wearable device 100, the first limiting post 340 on the limiting member 304 is extended into the first limiting groove 301, and the second limiting post 341 on the limiting member 304 is extended into the second limiting groove 302. Optionally, when the first limiting post 340 is fully extended into the first limiting groove 301, the first limiting post 340 abuts against the groove wall of the first limiting groove 301. When the first limiting post 340 is fully extended into the first limiting groove 301, the second limiting post 341 abuts against the groove wall of the second limiting groove 302.

[0040] In the embodiment of the present application, the first limiting groove 301, the second limiting groove 302, the first limiting column 340 and the second limiting column 341 are used to limit the movement between the second body 2 and the first body 1 along the first axial direction and along the second axial direction. It can be understood that the first limiting column 340 cooperates with the first limiting groove 301, and the second limiting column 341 cooperates with the second limiting groove 302 to achieve the limitation between the second body 2 and the first body 1 along the first axial direction and along the second axial direction. The first axial direction and the second axial direction are respectively the X-axis direction and the Y-axis direction. When the second body 2 and the first body 1 are connected as one body through the connecting component 3, there is no relative movement between the second body 2 and the first body 1 along the X-axis direction, and there is no relative movement between the second body 2 and the first body 1 along the Y-axis direction.

[0041] Optional, such as Figure 8 As shown, the first limiting groove 301, the second limiting groove 302, the first limiting column 340 and the second limiting column 341 are all polygonal. In one embodiment, the first limiting groove 301, the second limiting groove 302, the first limiting column 340 and the second limiting column 341 have the same shape. The first limiting groove 301 is a rectangular groove, the first limiting column 340 is rectangular, and the first limiting column 340 cooperates with the first limiting groove 301. The second limiting groove 302 is a rectangular groove, the second limiting column 341 is rectangular, and the second limiting column 341 cooperates with the second limiting groove 302. The first limiting groove 301, the second limiting groove 302, the first limiting column 340 and the second limiting column 341 are used to limit the movement along the first axial direction, the movement along the second axial direction and the rotation along the target plane between the second body 2 and the first body 1. Among them, the first axial direction and the second axial direction are located in the target plane. It can be understood that in this embodiment, the first limiting groove 301, the second limiting groove 302, the first limiting column 340 and the second limiting column 341 are used to limit the movement along the X-axis direction, the movement along the Y-axis direction and the rotation along the XY plane between the second body 2 and the first body 1.

[0042] As the first limiting post 340 extends into the first limiting slot 301 and the second limiting post 341 extends into the second limiting slot 302, the locking member 305 engages with the locking position 303. The locking member 305 and the locking position 303 are used to restrict movement between the first body 1 and the second body 2 along the third axial direction. The first, second, and third axial directions are orthogonal to each other. In this embodiment, the third axial direction is the Z-axis.

[0043] It is understood that the first limiting post 340 of the connection assembly 3 provided herein cooperates with the first limiting groove 301, and the second limiting post 341 cooperates with the second limiting groove 302 to limit relative movement between the first body 1 and the second body 2 along the X-axis and along the Y-axis. The locking member 305 cooperates with the locking position 303 to limit relative movement between the first body 1 and the second body 2 along the Z-axis, thereby achieving a fixed connection between the first body 1 and the second body 2.

[0044] The wearable device 100 provided in the present application achieves a fixed connection between the second body 2 and the first body 1 by cooperating the limiting post of the limiting member 304 provided on the second body 2 with the limiting groove protruding from the first body 1. This allows the first limiting post 340 of the limiting member 304 provided on the second body 2 to abut against the wall of the first limiting groove 301 on the first body 1, and the second limiting post 341 to abut against the wall of the second limiting groove 302 on the first body 1. Furthermore, the locking member 305 provided on the second body 2 cooperates with the locking member 303 of the first body 1. Since the limiting post cooperates with the limiting groove when it extends into the limiting groove, assembly of the first body 1 and the second body 2 only requires pushing the limiting post in one direction to allow it to extend into the limiting groove. In other words, because the first limiting post 340 extends in the same direction as the second limiting post 341, the limiting member 304 only needs to be pushed in one direction when the first limiting post 340 is inserted into the first limiting slot 301 and the second limiting post 341 is inserted into the second limiting slot 302. Furthermore, the locking member 305 can be engaged with the locking portion 303 while the first limiting post 340 and the second limiting post 341 are inserted into the first limiting slot 301 and the second limiting post 341 are inserted into the second limiting slot 302, making the entire assembly process simple and convenient.

[0045] Optional, such as Figure 8 As shown, the opening of the limiting groove faces the thickness direction of the first body 1. The limiting post extends along the thickness direction of the second body 2. In the embodiment of the present application, the opening of the first limiting groove 301 and the opening of the second limiting groove 302 are both facing the thickness direction of the first body 1. The first limiting post 340 and the second limiting post 341 both extend along the thickness direction of the second body 2. The thickness direction of the second body 2 is the same as the thickness direction of the first body 1. The thickness direction of the second body 2 and the thickness direction of the first body 1 are the Z-axis direction. By making the opening of the first limiting groove 301 and the opening of the second limiting groove 302 both face the thickness direction of the first body 1, the second body 2 and the first body 1 can be assembled along the Z-axis direction during the assembly process, so that the first limiting post 340 and the second limiting post 341 slide along the Z-axis direction and respectively abut against the groove wall of the first limiting groove 301 and the groove wall of the second limiting groove 302.

[0046] In one embodiment, the openings of the first limiting groove 301 and the second limiting groove 302 are both oriented in the positive direction of the Z-axis. The first limiting post 340 and the second limiting post 341 both extend along the Z-axis. In this embodiment, the first body 1 and the second body 2 can be assembled from top to bottom. This facilitates the alignment of the first limiting post 340 with the first limiting groove 301 and the second limiting post 341 with the second limiting groove 302 during the assembly process, thereby improving assembly efficiency.

[0047] In another embodiment, the first limiting post 340 and the second limiting post 341 both extend in the Z-axis direction, and the opening of the first limiting slot 301 and the opening of the second limiting slot 302 both face in the opposite direction of the Z-axis. In this embodiment, the first body 1 and the second body 2 can be assembled from the bottom up. Compared to the embodiment in which the opening of the first limiting slot 301 and the opening of the second limiting slot 302 both face the positive direction of the X-axis or the Y-axis, only the assembly step of advancing the limiting member 304 from the bottom up is required to extend the first limiting post 340 into the first limiting slot 301 and the second limiting post 341 into the second limiting slot 302, thereby reducing the number of assembly steps and saving assembly time.

[0048] Further, such as Figure 9 As shown, the connecting assembly 3 further includes a rotating shaft 306, and the locking member 305 is sleeved on the rotating shaft 306 and is rotatably connected between the first limiting post 340 and the second limiting post 341 via the rotating shaft 306. Of course, in other embodiments, the locking member 305 and the limiting member can also be connected by a sliding connection, so that the matching state between the locking member 305 and the locking position 303 can be changed by sliding.

[0049] In this embodiment, the limiting member 304 is fixedly connected to the second body 2, and the locking member 305 is rotatably connected to the limiting member 304 via the rotating shaft 306. Therefore, the locking member 305 can be rotated relative to the first body 1 by rotating the rotating shaft 306, thereby changing the matching state between the locking member 305 and the buckle position 303, so that when the locking member 305 is matched with the buckle position 303, the first body 1 and the second body 2 are locked, and when the locking member 305 is not matched with the buckle position 303, the first body 1 and the second body 2 are unlocked.

[0050] Optional, please refer to Figure 10 and Figure 11When the limiting post and the limiting groove cooperate, the locking member 305 abuts against the buckle 303. In other words, when the limiting post and the limiting groove cooperate, the locking member 305 contacts the buckle 303. In this embodiment, by making the locking member 305 abut against the buckle 303, the locking member 305 and the buckle 303 cooperate to limit the movement between the first body 1 and the second body 2 along the Z-axis direction. This cooperation method is convenient for the process of the first limiting post 340 extending into the first limiting groove 301 and the second limiting post 341 extending into the second limiting groove 302. In addition, the cooperation method of the locking member 305 abutting against the buckle 303 is convenient for changing the cooperation state between the locking member 305 and the buckle 303 when the locking member 305 is rotated, making the locking member 305 and the buckle 303 easier to separate, thereby facilitating the unlocking and disassembly of the first body 1 and the second body 2.

[0051] In one embodiment, please refer to Figures 11 to 13 , the buckle 303 includes a connected limiting surface 331 and an inclined surface 332. The limiting surface 331 and the inclined surface 332 can be directly connected or connected through an arcuate transition surface. In the embodiment of the present application, the limiting surface 331 and the inclined surface 332 are connected through an arcuate transition surface. The limiting surface 331 and the inclined surface 332 are connected through an arcuate transition surface. The arcuate transition surface between the limiting surface 331 and the inclined surface 332 is conducive to the first limiting column 340 (refer to Figure 9 ) extends into the first limiting groove 301 and the second limiting column 341 (refer to Figure 9 ) is inserted into the second limiting groove 302 to ensure stability during the assembly process.

[0052] The limiting surface 331 can be a plane or an arcuate surface. The inclined surface 332 can be inclined in a straight line or in an arcuate shape. The locking member 305 includes a first abutting surface 351 and a second abutting surface 352 connected to each other. The first abutting surface 351 and the second abutting surface 352 can be directly connected or transitionally connected through an arcuate transition surface. The first abutting surface 351 can be a plane or an arcuate surface. The second abutting surface 352 can be a plane or an arcuate surface. In the embodiment of the present application, the first abutting surface 351 is an arcuate surface. The second abutting surface 352 is a plane.

[0053] As the limiting post extends into the limiting groove, the locking member 305 slides along the locking position 303. Specifically, as the first limiting post 340 extends into the first limiting groove 301 and the second limiting post 341 extends into the second limiting groove 302, the first abutting surface 351 of the locking member 305 contacts the inclined surface 332 of the limiting member 304, and the locking member 305 slides on the inclined surface 332. In this embodiment, by providing the inclined surface 332 on the locking position 303, the locking member 305 slides on the inclined surface 332 as the first limiting post 340 extends into the first limiting groove 301 and the second limiting post 341 extends into the second limiting groove 302. The inclined surface 332 provides a certain guiding function during the sliding process of the locking member 305. In addition, the inclined surface 332 can reduce the friction of the locking member 305 during the sliding process, thereby saving time and effort in assembling the first body 1 and the second body 2. The first abutting surface 351 of the locking member 305 is an arc-shaped surface, which can reduce the contact area between the first abutting surface 351 and the inclined surface 332, further reduce the friction force on the locking member 305 during the sliding process, and improve the assembly efficiency of the first body 1 and the second body 2.

[0054] When the first limiting post 340 abuts against the wall of the first limiting groove 301 and the second limiting post 341 abuts against the wall of the second limiting groove 302, the second abutting surface 352 abuts against the limiting surface 331. In other words, when the first body 1 and the second body 2 are assembled, that is, when the locking member 305 is engaged with the buckle 303, the second abutting surface 352 abuts against the limiting surface 331. In the embodiment of the present application, the limiting surface 331 and the second abutting surface 352 are both planar. The fact that both the limiting surface 331 and the second abutting surface 352 are planar increases the contact area between the limiting surface 331 and the second abutting surface 352, thereby improving the reliability of the engagement between the locking member 305 and the buckle 303.

[0055] For further information, please refer to Figure 13 and Figure 14 , the locking member 305 also includes a protrusion 353. A groove 343 is provided on the limiting member 304. Specifically, the groove 343 is provided on the bottom plate 342 of the limiting member 304 and is located between the first limiting column 340 and the second limiting column 341. During the sliding process of the locking member 305 on the inclined surface 332, the locking member 305 gradually rotates along the first direction, and the protrusion 353 gradually extends out of the groove 343. In the embodiment of the present application, the first direction can be referred to Figure 14M direction in FIG. When the second abutting surface 352 abuts the limiting surface 331, the protrusion 353 engages in the groove 343. Before assembling the first body 1 and the second body 2, the protrusion 353 on the locking member 305 and the groove 343 on the limiting member 304 secure the locking member 305 relative to the limiting member 304. When the locking member 305 slides along the inclined surface 332 on the buckle 303, the inclined surface 332 causes the locking member 305 to rotate, and the protrusion 353 on the locking member 305 extends out of the groove 343, causing the locking member 305 to rotate and connect with the limiting member 304 until the locking member 305 engages with the buckle 303, i.e., the second abutting surface 352 abuts the limiting surface 331.

[0056] In this embodiment, a protrusion 353 is provided on the locking member 305 and a groove 343 is provided on the limiting member 304. The protrusion 353 cooperates with the groove 343 so that the locking member 305 is fixed relative to the limiting member 304 before the first body 1 and the second body 2 are assembled. This can prevent the locking member 305 from rotating relative to the limiting member 304 before the first body 1 and the second body 2 are assembled, thereby preventing the reliability of the cooperation between the locking member 305 and the buckle 303 from being reduced.

[0057] Further, such as Figure 15 As shown, the connecting assembly 3 also includes an elastic member 307. Optionally, the elastic member 307 is a torsion spring. The elastic member 307 is arranged between the locking member 305 and the rotating shaft 306. When the locking member 305 gradually rotates in the first direction, the force of the locking member 305 on the elastic member 307 causes the elastic member 307 to gradually generate torque, and the torque is used to drive the locking member 305 to rotate in the second direction, so that after the locking member 305 cooperates with the buckle 303, the protrusion 353 is engaged in the groove 343. The second direction is opposite to the first direction. In the embodiment of the present application, the first direction can refer to Figure 15 In this embodiment, an elastic member 307 is provided between the locking member 305 and the rotating shaft 306. The elastic member 307 can drive the locking member 305 to rotate after the locking member 305 engages with the buckle position 303, so that the protrusion 353 is automatically engaged in the groove 343, thereby ensuring that the locking member 305 is fixed to the limiting member 304.

[0058] For further information, please refer to Figure 15 and Figure 16The locking member 305 also includes a toggle portion 308. The toggle portion 308 is used to drive the locking member 305 to rotate in a first direction under the action of an external force so that the protrusion 353 gradually extends out of the groove 343 and the locking member 305 is separated from the buckle position 303. It can be understood that by applying an external force on the toggle portion 308, the locking member 305 can be separated from the buckle position 303, thereby unlocking the first body 1 and the second body 2, and achieving rapid disassembly and assembly of the first body 1 and the second body 2. Optionally, after the first body 1 and the second body 2 are assembled, the toggle portion 308 is located on the inner side of the wearable device 100. By arranging the toggle portion 308 on the inner side of the wearable device 100, the smoothness of the appearance of the wearable device 100 can be improved while achieving rapid disassembly and assembly of the first body 1 and the second body 2. Of course, in other embodiments, the toggle portion 308 can also be located on the outside of the wearable device 100.

[0059] The above are some implementation methods of the present application. It should be pointed out that for ordinary technicians in this technical field, several improvements and modifications can be made without departing from the principles of the present application. These improvements and modifications are also considered to be within the scope of protection of the present application.

Claims

1. A wearable device, characterized in that: include: A first body, wherein a limiting groove and a buckle are convexly provided on the first body, and the buckle comprises a connected limiting surface and an inclined surface; Second ontology; and The connecting assembly is arranged on the second body, and the connecting assembly includes a limit piece and a lock piece, the limit piece has a limit post, the limit post is used to extend into the limit groove and cooperate with the limit groove; the lock piece includes a first abutting surface and a second abutting surface connected to each other, the lock piece gradually cooperates with the buckle in the process of the limit post extending into the limit groove, and the lock piece slides along the inclined surface in the process of the limit post extending into the limit groove, the first abutting surface contacts the inclined surface, and when the limit post cooperates with the limit groove, the second abutting surface abuts the limit surface; the lock piece also includes a protrusion, and the limit piece is provided with a groove. In the process of the lock piece sliding along the inclined surface, the lock piece gradually rotates in a first direction, and the protrusion gradually extends out of the groove; when the second abutting surface abuts the limit surface, the protrusion is engaged in the groove; the protrusion cooperates with the groove to prevent the lock piece from rotating relative to the limit piece before the first body and the second body are assembled.

2. The wearable device according to claim 1, wherein: The opening of the limiting groove faces the thickness direction of the first body, the limiting column extends along the thickness direction of the second body, and the thickness direction of the second body is the same as the thickness direction of the first body.

3. The wearable device according to claim 1, wherein: The connecting assembly further comprises a rotating shaft, the locking member is sleeved on the rotating shaft and is rotatably connected to the limiting member via the rotating shaft.

4. The wearable device according to claim 3, wherein: The connecting assembly also includes an elastic member, which is arranged between the locking member and the rotating shaft. When the locking member gradually rotates along the first direction, the elastic member gradually generates torque, and the torque is used to drive the locking member to rotate along the second direction so that the protrusion is engaged in the groove, wherein the second direction is opposite to the first direction.

5. The wearable device according to claim 4, wherein: The locking member further includes a toggle portion, which is used to drive the locking member to rotate along the first direction under the action of an external force so that the protrusion gradually extends out of the groove and the locking member is separated from the buckle position.

6. The wearable device according to any one of claims 1 to 5, characterized in that: One end of the second body is provided with a mounting groove, and the connecting component is installed in the mounting groove.

7. The wearable device according to any one of claims 1 to 5, characterized in that: The limiting groove is a polygonal groove; the limiting column is a polygonal column.

Citation Information

Patent Citations

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