Detachable intelligent watch

By setting clutch parts and a powerful failure structure in the smart watch, the problem of short battery life and inability to leave the pallet is solved, and the rapid disassembly and strong pressure resistance of the watch body is achieved.

CN222887742UActive Publication Date: 2025-05-20GUANGDONG XIAOTIANCAI TECH CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202421728162.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-22
Publication Date
2025-05-20
Estimated Expiration
2034-07-22

AI Technical Summary

Technical Problem

The battery life of the smartwatch is short and needs to be taken off frequently for charging or repair. In case of violence, the main body of the watch cannot leave the pallet, which can easily cause irrecoverable structural damage.

Method used

A detachable smart watch is designed, and the main body of the watch and the pallet are removably connected by setting up clutch parts. Users can quickly disassemble the main body of the watch through control components, which is simple and convenient to operate.

Benefits of technology

The watch body is quickly installed or disassembled, avoiding the inconvenience of frequent removal and wear, and the strong failure structure of the elastic parts and abutment parts when encountering strong force, avoiding irrecoverable damage to the watch body.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN222887742U_ABST
    Figure CN222887742U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of intelligent equipment, and provides a detachable intelligent watch, which comprises a watch main body, a watchband and a supporting plate, the supporting plate is connected with the watchband, the front surface of the supporting plate is rotatably provided with a base capable of rotating along the circumferential direction relative to the supporting plate, the watch main body is provided with a mounting groove, and the base extends into the mounting groove. One side of the base is connected to one side of the mounting groove through a first rotating structure, the other side of the base is connected to the other side of the mounting groove through a second rotating structure, and the first rotating structure or / and the second rotating structure is / are provided with a clutch component used for enabling the base to be connected with or separated from the watch body. According to the detachable intelligent watch provided by the utility model, the clutch part is arranged on the first rotating structure or / and the second rotating structure, so that the connection or separation of the base and the watch main body can be conveniently realized, the installation or disassembly of the watch main body and the supporting plate can be realized, the operation is simple and convenient, and the disassembly and installation processes can be rapidly completed.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model belongs to the technical field of intelligent devices, and particularly relates to a detachable smart watch. Background Art

[0002] With the progress of technology, devices for realizing communication functions are becoming more and more diverse. Among them, smart watches are affordable, delicate, small and portable, and can simply realize information prompts, sports and health monitoring, travel payment, etc. More importantly, based on the above functions, smart watches can also be equipped with more function modules, such as realizing call functions, and the set cameras can realize video and shooting functions.

[0003] Due to the powerful functions of the above smart watches, the application scope and application scenarios of smart watches are becoming more and more extensive, and the usage time is also continuously increasing. However, the battery life of smart watches is relatively short, and users often need to take off the smart watches for charging during sleep, or take off the smart watches for repair when the main body of the smart watch is damaged. Therefore, taking off the smart watch for charging or repair, and putting it on after charging or repair are inconvenient for users invisibly during the multiple take-off and wear processes. Moreover, when the watch body encounters violence, the watch body cannot fall off the tray, which will cause irreparable structural damage. Summary of the Utility Model

[0004] The purpose of the utility model is to at least overcome one of the above-mentioned deficiencies of the prior art, and provides a detachable smart watch. By setting a clutch component, the watch body and the tray can be detachably connected conveniently. When charging or repair is needed, the watch body can be directly disassembled through a control component. The structural design is simple and the operation is convenient.

[0005] The technical solution of the utility model is: a detachable smart watch, including a watch body, a watch band and a tray. The tray is connected to the watch band. A base that can rotate circumferentially relative to the tray is rotatably arranged on the front surface of the tray. The watch body is provided with an installation groove. The base extends into the installation groove. One side of the base is connected to one side of the installation groove through a first rotation structure, and the other side of the base is connected to the other side of the installation groove through a second rotation structure. The first rotation structure or / and the second rotation structure is provided with a clutch component for engaging or separating the base from the watch body.

[0006] Further, a clutch component is provided at the first rotating structure. The base has a first side and a second side. A first rotating shaft connecting portion is provided on the first side. The watch body is provided with a mounting hole that penetrates the side surface of the mounting groove. The clutch component includes an abutting member slidably disposed in the mounting hole and capable of docking with the first rotating shaft connecting portion. A first docking portion for docking with the first rotating shaft connecting portion is provided at the front end of the abutting member. The clutch component further includes an operating component for driving the abutting member to slide, and an elastic member is provided between the operating component and the abutting member.

[0007] Further, the operating portion includes a locking member, a sleeve, and a push rod arranged from front to back. The sleeve is completely accommodated in the mounting hole. The push rod is slidably disposed in the sleeve. The front end of the push rod is connected to the rear end of the locking member. The front end of the locking member is connected to the abutting member. The front end of the elastic member abuts against the abutting member, and the rear end abuts against the front end of the locking member.

[0008] Further, a plurality of front indexing teeth are provided on the circumferential wall of the front end of the locking member, and a plurality of rear indexing teeth are provided circumferentially on the front end of the push rod. The front indexing teeth are in contact with and mesh with the rear indexing teeth. A locking position is provided at the front end of the sleeve, and a sliding groove is provided along the side wall of the sleeve. The front indexing teeth can abut against the locking position or slide in the sliding groove.

[0009] Further, a first helical tooth and a second helical tooth are provided at the front end of the sleeve. The locking position is provided between the first helical tooth and the second helical tooth. The distance between the first helical tooth and the first rotating shaft connecting portion is less than the distance between the second helical tooth and the first rotating shaft connecting portion.

[0010] Further, the elastic member is provided as a spring, and the spring is sleeved on the abutting member and abuts against the locking member.

[0011] Further, a second rotating shaft connecting portion is provided on the second side. The watch body is provided with a second docking portion. The second rotating shaft connecting portion is provided as a protrusion or a depression, and the corresponding second docking portion is provided as a depression or a protrusion.

[0012] Further, the protrusion is provided as a hemispherical surface, and the depression is provided as a bowl-shaped depression corresponding to the hemispherical surface. The hemispherical surface of the protrusion is accommodated in the bowl-shaped depression, and the watch body can be flipped relative to the support plate.

[0013] Further, a plurality of grooves are provided on the inner side wall of the sleeve, and a plurality of protrusions are provided on the outer surface of the push rod. The grooves and the protrusions are in sliding fit so that the push rod is slidably disposed in the sleeve.

[0014] Further, the base is rotatably arranged on the tray through a rotating shaft, and an anti-rotation structure is arranged between the rotating shaft and the base.

[0015] A detachable smart watch provided by the present utility model is provided with a clutch component at the connection between the watch body and the base. Through the clutch component, the connection or separation of the base and the watch body can be realized. The operation is simple and convenient, and the installation or disassembly of the watch body can be quickly realized; the rotating shaft connects the base to the tray, enabling the watch body to rotate 360 degrees bidirectionally relative to the tray, so that the watch body does not need to be removed to facilitate shooting or sharing the content of the display screen; the arrangement of the abutting member and the elastic member in the clutch component also forms a strong failure structure. When the watch body encounters violence, the elastic member can be compressed by the abutting member, causing the watch body to disengage from the base to avoid part failure; the arrangement of the first rotating structure or / and the second rotating structure enables the watch body to flip with the rotating structure as the rotating shaft to facilitate shooting or sharing the content of the display screen. Description of the Drawings

[0016] In order to more clearly illustrate the technical solutions in the embodiments of the present utility model, the following will briefly introduce the drawings required for use in the embodiments. Obviously, the drawings in the following description are only some embodiments of the present utility model. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0017] Figure 1 It is an axonometric three-dimensional structural schematic diagram of the tray and the watch body of the detachable smart watch provided by the embodiment of the present utility model after being flipped by a certain angle;

[0018] Figure 2 It is a three-dimensional structural diagram of the watch body and the tray of the detachable smart watch provided by the embodiment of the present utility model when they are integrated;

[0019] Figure 3 It is a three-dimensional structural schematic diagram of the base and the clutch component of the detachable smart watch provided by the embodiment of the present utility model;

[0020] Figure 4 It is an assembly sectional view of the base and the clutch part of the detachable smart watch provided by the embodiment of the present utility model;

[0021] Figure 5 It is a three-dimensional structural schematic diagram of the clutch component of the detachable smart watch provided by the embodiment of the present utility model;

[0022] Figure 6 It is an exploded view of the operating part of the clutch component of the detachable smart watch provided by the embodiment of the present utility model after hiding the abutting member and the elastic member;

[0023] Figure 7 This is a three-dimensional assembly schematic diagram of the operating component after hiding the clutch component, the abutting component and the elastic component of the detachable smart watch provided by the embodiment of the present utility model.

[0024] Marks and names in the attached drawings:

[0025] Support plate 1, mounting groove 11, mounting hole 12, watch body 2, camera 21, clutch component 3, operating component 30, abutting component 31, extension part 311, elastic component 32, locking component 33, front indexing tooth 331, inserting part 332, ejector rod 34, rear indexing tooth 341, accommodating groove 342, protruding part 343, operating end 344, sleeve 35, locking position 351, sliding groove 352, first helical tooth 353, second helical tooth 354, guiding groove 355, base 4, first side 41, second side 42, rotating shaft 5, anti-rotation structure 51, first rotating structure 6, first rotating shaft connecting part 61, first docking part 62, second rotating structure 7, second rotating shaft connecting part 71, second docking part 72 Specific embodiments

[0026] In order to make the purpose, technical solutions and advantages of the present utility model clearer, the present utility model will be further described in detail below with reference to the attached drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present utility model and are not used to limit the present utility model.

[0027] It should be noted that the terms "set" and "connected" should be understood in a broad sense. For example, it can be directly set and connected, or indirectly set and connected through intermediate components and intermediate structures.

[0028] In addition, in the embodiments of the present utility model, if there are terms indicating orientation or positional relationship such as "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc., they are based on the orientation or positional relationship shown in the attached drawings or the conventional placement state or use state. They are only for the convenience of describing the present utility model and simplifying the description, rather than indicating or implying that the structures, features, devices or elements referred to must have a specific orientation or positional relationship, nor must they be constructed and operated in a specific orientation. Therefore, it cannot be understood as a limitation to the present utility model. In the description of the present utility model, unless otherwise specified, the meaning of "a plurality" is two or more.

[0029] In the specific embodiments, the various specific technical features and each embodiment described can be combined in any suitable manner without conflict. For example, different embodiments can be formed by combining different specific technical features / embodiments. To avoid unnecessary repetition, the various possible combination methods of the specific technical features / embodiments in the present utility model will not be described separately.

[0030] As Figure 1 and Figure 2 shown, the present utility model discloses a detachable smart watch, including a watch body 2, a watch band, and a support plate 1. The support plate 1 is connected to the watch band. A base 4 that can rotate circumferentially relative to the support plate 1 is rotatably provided on the front surface of the support plate 1. The watch body 2 is provided with a mounting groove 11. The base 4 extends into the mounting groove 11. One side of the base 4 is connected to one side of the mounting groove 11 through a first rotating structure 6, and the other side of the base 4 is connected to the other side of the mounting groove 11 through a second rotating structure 7. The first rotating structure 6 or / and the second rotating structure 7 is provided with a clutch member 3 for engaging or separating the base 4 from the watch body 2. For the detachable smart watch provided by the present utility model, by providing the clutch member 3 in the first rotating structure 6 or / and the second rotating structure 7, the engagement or separation of the base 4 and the watch body 2 can be conveniently realized, so that the watch body 2 and the support plate 1 can be installed or disassembled. The operation is simple and convenient, and the installation or disassembly process can be quickly completed. The base 4 can rotate circumferentially relative to the support plate 1, which can drive the watch body 2 to rotate circumferentially relative to the support plate 1, and 360° rotation of the watch body 2 can be realized. The base 4 can also make a 360-degree circumferential rotation relative to the support plate 1. The watch body 2 can be flexibly rotated to a suitable orientation for use, facilitating sharing the content of the display screen or taking pictures with the camera 21.

[0031] As Figures 1 to 7As shown, specifically, the clutch component 3 is arranged at the first rotating structure 6. The base 4 has a first side 41 and a second side 42. The first side 41 is provided with a first rotating shaft connecting portion 61. The watch body 2 is provided with a mounting hole 12 that penetrates the side surface of the through mounting groove 11. The front end of the mounting hole 12 on the side surface penetrates the side surface of the mounting groove 11, and the rear end penetrates the outside of the watch body 2. The clutch component 3 is arranged in the mounting hole 12. The clutch component 3 includes a contact member 31 that is slidably arranged in the mounting hole 12 and can be docked with the first rotating shaft connecting portion 61. The front end of the contact member 31 is provided with a first docking portion 62 for docking with the first rotating shaft connecting portion 61. The clutch component 3 further includes an operating component 30 for driving the contact member 31 to slide along the mounting hole 12. An elastic member 32 is arranged between the operating component 30 and the contact member 31. In the embodiment of the present utility model, the first rotating shaft connecting portion 61 is set as a semi-spherical structure protruding outward, and the corresponding first docking portion 62 is set as a bowl-shaped depression, that is, an inward concave semi-spherical structure. In specific applications, the first rotating shaft connecting portion 61 and the first docking portion 62 can also be set as other connection structures, as long as the watch body 2 can rotate with the first rotating structure 6 as the flipping axis. For example, the first rotating shaft connecting portion 61 can also be set as a cylindrical protrusion, and the corresponding first docking portion 62 is set as a corresponding cylindrical groove. The cylindrical protrusion is inserted into the cylindrical groove, and the watch body 2 can also be flipped relative to the base 4. The positions of the protrusion and the groove can also be interchanged. For example, the first rotating shaft connecting portion 61 is set as a bowl-shaped depression, and the first docking portion 62 is set as a semi-spherical structure protruding outward.

[0032] Specifically, in this embodiment, the end of the mounting hole 12 close to the first docking portion 62 is defined as the front end. The operating member 30 includes a locking member 33, a sleeve 35, and a push rod 34 arranged from front to back. The sleeve 35 is fixedly accommodated in the mounting hole 12. The push rod 34 is slidably arranged in the sleeve 35, and the front end of the push rod 34 abuts against the rear end of the locking member 33. The front end of the locking member 33 cooperates with the abutting member 31, and the elastic member 32 is arranged between the locking member 33 and the abutting member 31. The operating member 30 can drive the abutting member 31 to slide axially relative to the first rotating shaft connecting portion 61 in the mounting hole 12, so as to realize the contact and docking of the first rotating shaft connecting portion 61 and the first docking portion 62, or to separate the first rotating shaft connecting portion 61 and the first docking portion 62. In specific applications, the rear end of the push rod 34 is an operating end 344 that can be pressed by the user. The operating end 344 can protrude from the rear end of the mounting hole 12 to form a button. When it is necessary to install or disassemble the watch body 2, the button (operating end 344) can be directly pressed. When it is necessary to connect the watch body 2 to the base 4, the operating end 344 is pressed. At this time, the push rod 34 slides in the sleeve 35 close to the first rotating shaft connecting portion 61, abuts against and pushes the locking member 33, so that the locking member 33 slides close to the first rotating shaft connecting portion 61, and drives the abutting member 31 to slide forward through the elastic member 32, so that the first docking portion 62 moves toward the first rotating shaft connecting portion 61. Finally, the first rotating shaft connecting portion 61 and the first docking portion 62 are in contact and remain docked under the elastic force of the elastic member 32, realizing the connection between the watch body 2 and the base 4. When it is necessary to disassemble the watch body 2, the operating end 344 is pressed again and then released. At this time, the internal actions are as follows: when pressing, the push rod 34 slides in the sleeve 35 close to the first rotating shaft connecting portion 61, continuously pushing the locking member 33 to slide forward along the mounting hole 12, and the elastic member 32 is continuously compressed. After releasing the pressing of the operating end 344, under the action of the elastic restoring force of the elastic member 32, the elastic member 32 abuts against and pushes the front end of the locking member 33, so that the locking member 33 slides away from the first rotating shaft connecting portion 61. The elastic member 32 can return to a state close to the free state, and the elastic member 32 no longer makes the abutting member 31 dock with the first rotating shaft connecting portion 61, and the first rotating shaft connecting portion 61 and the first docking portion 62 can be separated, so that the watch body 2 can be disassembled from the base 4.

[0033] Specifically, a guiding groove 355 is provided on the inner sidewall of the sleeve 35, and a protruding portion 343 is provided on the outer sidewall of the ejector rod 34. The ejector rod 34 is slidably arranged in the sleeve 35 through the cooperation of the protruding portion 343 and the guiding groove 355 on the inner side of the sleeve 35. A front indexing tooth 331 is provided on the circumferential wall of the locking member 33 near the front end, and a plurality of rear indexing teeth 341 are circumferentially arranged at the front end of the ejector rod 34. When the ejector rod 34 is slidably arranged in the sleeve 35, the rear indexing teeth 341 are in contact with and can mesh with the front indexing teeth 331. A first helical tooth 353 and a second helical tooth 354 are provided at the front end of the sleeve 35. A locking position 351 is provided between the first helical tooth 353 and the second helical tooth 354. A chute 352 with a certain length is arranged on the sidewall of the sleeve 35 from front to back. The distance between the second helical tooth 354 and the first rotating shaft connecting portion 61 is less than the distance between the second helical tooth 354 and the first rotating shaft connecting portion 61, so that the first helical tooth 353 and the second helical tooth 354 are integrally in a stepped shape, and the locking position 351 is the sidewall of the stepped shape.It is set that the first rotating shaft connecting portion 61 and the first docking portion 62 can be disengaged before the first pressing operation end 344. When the first pressing operation end 344 is pressed, the rear indexing tooth 341 abuts and meshes with the front indexing tooth 331. The ejector rod 34 pushes the locking member 33 to move towards the first rotating shaft connecting portion 61. While moving, the front end of the locking member 33 compresses the elastic member 32. The front indexing tooth 331 slides in the chute 352 until the inclined surface of the front indexing tooth 331 is flush with the inclined surface of the first helical tooth 353. Immediately, the front indexing tooth 331 disengages from the chute 352. Under the action of the elastic restoring force of the elastic member 32, the elastic member 32 abuts and pushes the front end of the locking member 33, so that the front indexing tooth 331 moves along the first helical tooth 353 (the locking member 33 rotates synchronously) until the front indexing tooth 331 contacts the locking position 351, and the front indexing tooth 331 is axially and circumferentially limited by the locking position 351. During this process, the abutting member 31 is driven to slide axially relative to the first rotating shaft connecting portion 61 in the mounting hole 12, so that the first rotating shaft connecting portion 61 and the first docking portion 62 are docked, and the watch body 2 and the base 4 are connected. When the second pressing operation end 344 is pressed, the rear indexing tooth 341 abuts and meshes with the front indexing tooth 331. The ejector rod 34 pushes the locking member 33 to move towards the first rotating shaft connecting portion 61. While the locking member 33 moves, it compresses the elastic member 32. The front indexing tooth 331 moves along the locking position 351 towards the first rotating shaft connecting portion 61 until the inclined surface of the front indexing tooth 331 is flush with the inclined surface of the second helical tooth 354. Immediately, the front indexing tooth 331 is disengaged from the restriction of the locking position 351. Under the action of the elastic restoring force of the elastic member 32, the elastic member 32 abuts and pushes the front end of the locking member 33. The front indexing tooth 331 moves along the second helical tooth 354 (the locking member 33 rotates synchronously). The front indexing tooth 331 slides into the chute 352, so that the locking member 33 slides backward along the chute 352 and switches to the unlocked state. The elastic member 32 can return to a state close to the free state. At this time, the first rotating shaft connecting portion 61 and the first docking portion 62 can be disengaged, so that the watch body 2 and the base 4 can be disassembled. According to the above alternating operations of the first pressing and the second pressing, when installation or disassembly is required, the watch body 2 and the base 4 can be connected or disassembled.

[0034] The locking member 33 can slide and rotate along the mounting hole to move to the locked position (slide forward to keep the abutting member 31 in contact with the base 4) and the unlocked position (slide backward to release the abutting member 31 from contacting the base 4). The circumferential wall near the front end of the locking member 33 is provided with front indexing teeth 331. A chute 352 and a locking position 351 are provided at the front end of the sleeve 35. When the front indexing teeth 331 are engaged with the locking position 351, the locking member 33 is in the locked position. When the front indexing teeth 331 slide backward along the chute 352, the locking member 33 can be in the unlocked position. In a specific application, when the front indexing teeth 331 are located in the chute 352, the ejector rod 34 is pressed forward. The ejector rod 34 pushes the locking member 33 forward. The elastic member 32 is compressed, and the front indexing teeth 331 are pushed away from the chute 352. The front indexing teeth 331 are engaged with the root of the first helical tooth 353 under the guidance of the first helical tooth 353 (the locking member 33 rotates). At this time, the locking member 33 switches to the locked position. The ejector rod 34 is pressed again. The ejector rod 34 pushes the locking member 33 forward, so that the front indexing teeth 331 are pushed away from the first helical tooth 353. The elastic member 32 is further compressed, and the front indexing teeth 331 slide toward the chute 352 under the guidance of the second helical tooth 354 (the locking member 33 rotates). After the front indexing teeth 331 enter the chute, under the restoring force of the elastic member 32, the locking member 33 slides to the root of the chute 352. At this time, the locking member 33 switches to the locked position.

[0035] Specifically, the chute 352 is arranged from front to back along the side wall of the sleeve 35 (in this embodiment, four chutes 352 are arranged). The above-mentioned first helical tooth 353 and second helical tooth 354 are arranged between the chutes 352, and the first helical tooth 353 and the second helical tooth 354 are integrally in a stepped shape.

[0036] Specifically, the elastic member 32 is set as a spring. One end of the abutting member 31 away from the first docking portion 62 extends to form an extension portion 311. The extension portion 311 is set as a cylindrical structure. The locking member 33 is provided with a hole structure corresponding to the extension portion 311. The abutting member 31 is connected to the hole structure of the locking member 33 through the extension portion 311. The elastic member 32 is sleeved on the extension portion 311, and the rear end of the elastic member 32 abuts against the locking member 33. During the specific movement process, the front end of the locking member 33 compresses the elastic member 32, or under the action of the elastic restoring force, the elastic member 32 reversely pushes the front end of the locking member 33. The rear end of the locking member 33 is further provided with an insertion portion 332. The insertion portion 332 is accommodated in the accommodation groove 342 provided at the front end of the ejector rod 34. While realizing the contact between the front indexing teeth 331 and the rear indexing teeth 341, the front indexing teeth 331 can be simultaneously engaged with the locking position 351 or the sliding groove 352. The assembly of the clutch component 3 can refer to the following steps: Align the rear end of the ejector rod 34 with the front end of the sleeve 35. The guide groove 355 and the protrusion 343 are slidably engaged to slidably arrange the ejector rod 34 on the sleeve 35. Since the guide groove 355 does not penetrate the sleeve 35, the ejector rod 34 will not slip out from the rear end of the sleeve 35 after being engaged with the sleeve 35. Then align the insertion portion 332 of the locking member 33 with the accommodation groove 342. The front indexing teeth 331 and the rear indexing teeth 341 are in contact and the front indexing teeth 331 can slide in the sliding groove 352, or the front indexing teeth 331 are in contact with the locking position 351. Arrange the elastic member 32 and the abutting member 31 in sequence, and finally arrange the entire clutch component 3 in the installation hole 12.

[0037] Specifically, a second rotating shaft connecting portion 71 is provided on the second side 42 of the base 4. Correspondingly, the watch body 2 is provided with a second docking portion 72. The second rotating shaft connecting portion 71 and the second docking portion 72 cooperate to form a second rotating structure 7. The second rotating shaft connecting portion 71 is set as a semi-spherical protrusion. Correspondingly, the second docking portion 72 is set as a bowl-shaped depression. The cooperation of the semi-spherical protrusion and the bowl-shaped depression enables the watch body 2 to achieve a flipping function. The structures of the first rotating structure 6 and the second rotating structure 7 can be set as exactly the same semi-spherical protrusions and bowl-shaped depressions, which can ensure the flipping of the watch body 2 and the smoothness of the flipping surface, and the overall flipping is synchronous and smooth. The clutch component 3 can be arranged on the left side or the right side of the watch body 2, or on both the left and right sides simultaneously. When the clutch component 3 is arranged on one side, the watch body 2 is provided with an installation hole 12 on the corresponding side. When the clutch component 3 is arranged on both the left and right sides simultaneously, installation holes 12 need to be provided on both sides of the watch body 2.

[0038] Specifically, the base 4 is rotatably arranged on the support plate 1 through the rotating shaft 5, and a rotation-stopping structure 51 is arranged between the rotating shaft 5 and the base 4. In this embodiment, the cross section of the rotating shaft 5 is "D"-shaped, and the base 4 is provided with a D-shaped hole. The D-shaped hole and the rotating shaft 5 form a rotation-stopping structure 51, which can make the base 4 rotate relative to the support plate 1, thereby driving the watch body 2 to achieve 360° rotation relative to the support plate 1, and can achieve the flipping of the watch body 2 relative to the support plate 1. The combination of the flipping achieved by the first rotating structure 6 and the second rotating structure 7 and the rotation achieved by the base 4 can conveniently share the content of the watch display screen or adjust the position of the camera 21 for shooting.

[0039] In specific applications, a locking piece can also be provided at one end of the support plate 1 away from the base 4, so that the watch body 2 and the support plate 1 remain locked, to avoid accidental flipping of the watch body 2 during some intense exercise, to avoid damage to the watch body 2. When the watch body 2 needs to be flipped, the locking piece can be operated to unlock the watch body 2. The locking piece can be an elastic buckle structure or a magnetic structure, etc.

[0040] Specifically, the setting of the elastic member 32 also provides a strong failure structure for the smart watch. When encountering a strong external force, the elastic member 32 will be compressed to a certain extent, and the first shaft connection part 61 and the first docking part 62 can be separated, so that the watch body 2 and the base 4 can be disassembled, avoiding irreversible structural damage to the watch body 2 and increasing maintenance costs.

[0041] The utility model provides a disassembled smart watch, in which a clutch component 3 is provided on the watch body 2. The clutch component 3 can be controlled to make the base 4 engage or disengage with the watch body 2, so as to complete the installation or disassembly of the watch body 2 and the support plate 1. The operation is simple and convenient, and the installation or disassembly of the watch body 2 can be quickly realized; the rotating shaft 5 connects the base 4 to the support plate 1, so that the watch body 2 can rotate 360 ​​degrees in both directions relative to the support plate 1, and it is convenient to take pictures or share the content of the display screen without taking off the watch body 2; the setting of the elastic member 32 and the abutment member 31 in the clutch component 3 also forms a strong failure structure. When the watch body 2 is strongly bent, the abutment member 31 reversely compresses the elastic member 32, so that the watch body 2 can be separated from the base 4, avoiding the failure of parts and causing damage to the watch body 2; the junction of the first rotating structure 6 and the second rotating structure 7 is set as a spherical surface or an arc surface, which can realize the watch to be flipped with the junction as the rotating axis, so that the watch body 2 can be flipped to a certain angle for shooting or sharing.

[0042] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modification, equivalent substitution or improvement made within the spirit and principle of the present utility model shall be included in the protection scope of the present utility model.

Claims

1. A detachable smart watch, comprising a watch body, a watch strap and a support plate, wherein the support plate is connected to the watch strap, characterized in that: The front side of the support plate is rotatably provided with a base which can rotate circumferentially relative to the support plate, the watch body is provided with a mounting groove, the base extends into the mounting groove, one side of the base is connected to one side of the mounting groove via a first rotating structure, and the other side of the base is connected to the other side of the mounting groove via a second rotating structure, and the first rotating structure and / or the second rotating structure are provided with a clutch component for engaging or disengaging the base from the watch body.

2. A detachable smart watch as claimed in claim 1, characterized in that: The clutch component is provided at the first rotating structure, the base has a first side and a second side, the first side is provided with a first rotating shaft connecting part, the watch body is provided with a mounting hole, the mounting hole passes through the side of the mounting groove, the clutch component includes an abutment member slidably provided in the mounting hole and capable of docking with the first rotating shaft connecting part, the front end of the abutment member is provided with a first docking part for docking with the first rotating shaft connecting part; the clutch component also includes an operating component for driving the abutment member to slide, and an elastic component is provided between the operating component and the abutment member.

3. A detachable smart watch as claimed in claim 2, characterized in that: The operating part includes a locking member, a sleeve and a push rod arranged from front to rear, the sleeve is completely accommodated in the mounting hole, the push rod is slidably arranged in the sleeve, the front end of the push rod is connected to the rear end of the locking member, the front end of the locking member is connected to the abutment member, the front end of the elastic member abuts the abutment member, and the rear end abuts the front end of the locking member.

4. A detachable smart watch as claimed in claim 3, characterized in that: A plurality of front indexing teeth are arranged on the peripheral wall at the front end of the locking member, a plurality of rear indexing teeth are arranged circumferentially on the front end of the push rod, the front indexing teeth are in contact with and mesh with the rear indexing teeth, a stop position is arranged at the front end of the sleeve, a sliding groove is arranged along the side wall of the sleeve, and the front indexing teeth can abut against the stop position or slide in the sliding groove.

5. A detachable smart watch as claimed in claim 4, characterized in that: The front end of the sleeve is provided with a first bevel tooth and a second bevel tooth, the locking position is provided between the first bevel tooth and the second bevel tooth, and the distance between the first bevel tooth and the first rotating shaft connecting portion is smaller than the distance between the second bevel tooth and the first rotating shaft connecting portion.

6. A detachable smart watch as claimed in claim 3, characterized in that: The elastic member is configured as a spring, and the spring is sleeved on the abutting member and abuts against the locking member.

7. A detachable smart watch as claimed in claim 2, characterized in that: The second side is provided with a second rotating shaft connecting portion, the watch body is provided with a second docking portion, the second rotating shaft connecting portion is configured as a protrusion or a depression, and the corresponding second docking portion is configured as a depression or a protrusion.

8. A detachable smart watch as claimed in claim 7, characterized in that: The protrusion is configured as a hemispherical surface, and the depression is configured as a bowl-shaped depression corresponding to the hemispherical surface. The hemispherical surface of the protrusion is accommodated in the bowl-shaped depression, and the watch body can be flipped relative to the support plate.

9. A detachable smart watch as claimed in claim 3, characterized in that: The inner wall of the sleeve is provided with a plurality of guide grooves, and the outer wall of the ejector rod is provided with a plurality of protrusions. The guide grooves and the protrusions are slidably matched so that the ejector rod is slidably arranged on the sleeve.

10. The detachable smart watch according to claim 1, characterized in that: The base is rotatably arranged on the supporting plate via a rotating shaft, and a rotation-stopping structure is arranged between the rotating shaft and the base.