Watch

By combining the design of connectors and elastic components with quick-release buttons and limiting structures, the problem of difficult bezel removal in existing smartwatches has been solved, achieving a low-difficulty and high-efficiency bezel removal process, and improving the watch's water resistance.

CN223808643UActive Publication Date: 2026-01-16BEIJING XIAOMI MOBILE SOFTWARE CO LTD
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Patent Information

Application Number
CN202520255149.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-17
Publication Date
2026-01-16
Estimated Expiration
2035-02-17

AI Technical Summary

Technical Problem

The process of removing the bezel of existing smartwatches requires users to manually rotate it several times, which is especially difficult when hands are wet, resulting in low disassembly efficiency.

Method used

The watch features a combination of connectors and elastic elements. Under external force, the connectors overcome the bias force of the elastic elements and unlock the bezel. The bezel can be quickly disassembled by pressing the quick-release button. Combined with a limiting structure and waterproof design, the connection stability and water resistance are ensured.

Benefits of technology

It enables easy and efficient removal of the bezel, allowing users to quickly remove it without rotating it, adapting to different hand sizes, and improving the watch's water resistance and lifespan.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a watch, which comprises a watch bezel, a middle frame and an assembling assembly, and is characterized in that the assembling assembly comprises a connecting piece and a first elastic piece; the connecting piece is mounted in the middle frame, and the first elastic piece biases the connecting piece in a state of being locked and connected with the watch bezel; when the connecting piece is pushed by external force, the connecting piece can overcome the bias force of the first elastic piece to be unlocked from the watch bezel. The watch bezel of the watch is low in dismounting difficulty and high in dismounting efficiency.
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Description

TECHNICAL FIELD

[0001] The present disclosure relates to the technical field of watches, in particular to a watch. BACKGROUND

[0002] The smart watch not only enables the user to know the time at any time and any place, but also records the parameters such as the walking mileage, heartbeat and heart rate of the user, and is widely applied in people's life.

[0003] In the related art, the bezel of the watch is generally connected with the middle frame by threads. When the watch needs to be disassembled due to a problem, the user needs to manually rotate the bezel, so that the bezel is rotated several turns relative to the middle frame, and then the bezel can be removed.

[0004] The above disassembly method has certain requirements on the strength of the user, and especially when the user has water on the hands, the disassembly difficulty is greater, resulting in low disassembly efficiency. UTILITY MODEL CONTENT

[0005] In view of this, the present disclosure provides a watch, which has low disassembly difficulty and high disassembly efficiency.

[0006] Specifically, the technical scheme includes the following:

[0007] In a first aspect, the present disclosure provides a watch, which includes a bezel, a middle frame and an assembly component, the assembly component includes a connecting piece and a first elastic piece;

[0008] The connecting piece is installed on the middle frame, and the first elastic piece biases the connecting piece to a state of being locked with the bezel.

[0009] When the connecting piece is pushed by an external force, the connecting piece can overcome the biasing force of the first elastic piece and be unlocked with the bezel.

[0010] Optionally, the connecting piece includes a first clasp part, the bezel has a second clasp part, and when the first clasp part and the second clasp part are buckled, the connecting piece is locked with the bezel.

[0011] Optionally, the first clasp part and the second clasp part are both hook-shaped structures; or,

[0012] One of the first clasp part and the second clasp part is a groove structure, and the other is a protruding structure.

[0013] Optionally, the connecting piece includes a connecting main part and a protruding connecting part, the middle frame has a first through hole, and the protruding connecting part extends into the first through hole and can slide relative to the middle frame in the first through hole.

[0014] The first elastic member is supported between the middle frame and the connecting body.

[0015] Optionally, the assembly component further comprises a first limiting member, the first limiting member is sleeved on the end of the protruding connecting part, the end of the protruding connecting part is located on the side of the first through hole away from the connecting body, and the first limiting member limits the protruding connecting part from being pulled out of the first through hole.

[0016] Optionally, the first limiting member is a concave structure or a ring structure, and the end of the protruding connecting part has a second limiting groove, and the first limiting member is partially embedded in the second limiting groove.

[0017] Optionally, the assembly component further comprises a waterproof ring, the waterproof ring is sleeved on the protruding connecting part and located between the protruding connecting part and the inner wall of the first through hole.

[0018] Optionally, the side wall of the protruding connecting part has a waterproof ring groove, and the waterproof ring is partially embedded in the waterproof ring groove.

[0019] Optionally, the watch further comprises a quick release assembly, the quick release assembly is connected with the middle frame, and the quick release assembly comprises a quick release button and a second elastic member.

[0020] The second elastic member biases the quick release button to a first position, and when the quick release button is in the first position, the connecting member and the bezel are in locked connection.

[0021] When the quick release button is pressed, the connecting member is pushed against the biasing force of the second elastic member.

[0022] Optionally, the quick release assembly further comprises a force transmission member and a third elastic member, the force transmission member is located between the quick release button and the connecting member, and the third elastic member biases the force transmission member to a second position, and when the force transmission member is in the second position, the connecting member and the bezel are in locked connection.

[0023] When the quick release button is pressed, the force transmission member is pushed, so that the force transmission member pushes the connecting member against the biasing force of the third elastic member.

[0024] Optionally, the quick release button has a first inclined surface, the force transmission member has a second inclined surface, the first inclined surface and the second inclined surface are in contact and can slide relative to each other.

[0025] When the quick release button is pressed, the first inclined surface pushes the second inclined surface, so that the force transmission member pushes the connecting member.

[0026] Optionally, the quick release assembly further comprises a housing structure, the quick release button, the second elastic member, the force transmission member and the third elastic member are all mounted on the housing structure, and the housing structure is connected with the middle frame.

[0027] The housing structure has a first opening and a second opening, the quick release button at least partially extends out of the first opening, and the force transmission member at least partially extends out of the second opening.

[0028] Optionally, the housing structure further has a third opening and a third limiting cover plate, the third limiting cover plate is configured to close the third opening, and the second elastic member is supported between the third limiting cover plate and the quick release button.

[0029] The quick release button has a fourth limiting structure, the fourth limiting structure cooperates with the sidewall of the first opening to limit the quick release button from being pulled out of the first opening.

[0030] Optionally, the fourth limiting structure is a protruding structure and is distributed on opposite sides of the quick release button, and the sidewall of the first opening has a concave structure; or,

[0031] The fourth limiting structure is a concave structure and is distributed on opposite sides of the quick release button, and the sidewall of the first opening has a protruding structure.

[0032] Optionally, the quick release assembly further comprises a fifth limiting cover plate, the fifth limiting cover plate has a fourth opening and is mounted on the housing structure.

[0033] The force transmission member comprises a force transmission main body part and a force transmission protruding part, the force transmission protruding part extends out of the housing structure through the second opening and the fourth opening, and the third elastic member is supported between the force transmission main body part and the fifth limiting cover plate.

[0034] Optionally, the watch further comprises a watchband, the watchband comprises a plurality of watchband particles, and the quick release assembly is one of the plurality of watchband particles closest to the middle frame.

[0035] Optionally, the middle frame further has a sixth limiting structure, and the bezel further has a seventh limiting structure.

[0036] One of the sixth limiting structure and the seventh limiting structure is a target limiting structure, and the target limiting structure comprises a locking part and an unlocking part.

[0037] When the other one of the sixth limiting structure and the seventh limiting structure cooperates with the locking part, the bezel is locked and connected with the middle frame.

[0038] When the other one of the sixth limiting structure and the seventh limiting structure cooperates with the unlocking part, the bezel is unlocked with the middle frame.

[0039] Optionally, the locking part is a continuously extended arc-shaped groove, and the unlocking part is a notch connected with the arc-shaped groove.

[0040] The other one of the sixth limiting structure and the seventh limiting structure is an extending structure, and the extending structure can slide in the locking part.

[0041] When the extending structure is in the locking part, the bezel is locked with the middle frame; and when the extending structure slides to the unlocking part, the bezel is unlocked with the middle frame.

[0042] Optionally, the middle frame further has a first alignment mark structure, and the bezel further has a second alignment mark structure; when the first alignment mark structure is aligned with the second alignment mark structure, the other one of the sixth limiting structure and the seventh limiting structure cooperates with the unlocking part, and the bezel is unlocked with the middle frame.

[0043] Optionally, an edge of the bezel close to the middle frame has a continuous wave-shaped structure, and the wave-shaped structure includes a plurality of concave parts and convex parts alternately arranged.

[0044] The watch further includes a spring, one end of the spring is fixedly connected with the middle frame, and the other end of the spring is located in one concave part.

[0045] Optionally, the middle frame has a plurality of spring mounting grooves; and the plurality of springs are one-to-one correspondingly mounted in the plurality of spring mounting grooves.

[0046] The watch provided by the embodiment of the present disclosure includes an assembly including a connecting piece and a first elastic piece. The connecting piece is mounted on the middle frame and is biased by the first elastic piece to be locked with the bezel. Thus, the connecting piece is used to lock the middle frame with the bezel. When the connecting piece is pushed by an external force, the connecting piece can overcome the biasing force of the first elastic piece and be unlocked with the bezel. That is, the user can press or push the connecting piece to unlock the bezel and the connecting piece, and then easily remove the bezel. Therefore, when the bezel of the watch is removed, the user does not need to rotate the bezel several times, but only needs to press a specific position, so that the bezel is removed easily and efficiently. BRIEF DESCRIPTION OF DRAWINGS

[0047] In order to more clearly illustrate the technical solutions in the embodiments of the present disclosure, the drawings needed to be used in the embodiments will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present disclosure, and for those skilled in the art, other drawings can also be obtained from these drawings without creative labor.

[0048] Figure 1 An exploded schematic view of a watch provided by an embodiment of the present disclosure;

[0049] Figure 2 A structural schematic view of an assembly of a watch provided by an embodiment of the present disclosure;

[0050] Figure 3 A partial sectional view of a watch provided by an embodiment of the present disclosure;

[0051] Figure 4 An exploded schematic view of an assembly of a watch provided by an embodiment of the present disclosure;

[0052] Figure 5 An exploded schematic view of a quick release assembly of a watch provided by an embodiment of the present disclosure;

[0053] Figure 6 A structural schematic view of a middle frame of a watch provided by an embodiment of the present disclosure;

[0054] Figure 7 A structural schematic view of a watch provided by an embodiment of the present disclosure; Figure 6 An enlarged schematic view of the structure at circle A shown in the figure;

[0055] Figure 8 A structural schematic view of a quick release key in a quick release assembly provided by an embodiment of the present disclosure;

[0056] Figure 9 A structural schematic view of a force transmission member in a quick release assembly provided by an embodiment of the present disclosure;

[0057] Figure 10 A structural schematic view of a watch bezel provided by an embodiment of the present disclosure;

[0058] Figure 11 A structural schematic view of a watch provided by an embodiment of the present disclosure; Figure 10 An enlarged schematic view of the structure at circle B shown in the figure;

[0059] Figure 12 A structural schematic view of a watch provided by an embodiment of the present disclosure;

[0060] Figure 13 A partial sectional view of a watch provided by an embodiment of the present disclosure;

[0061] Figure 14A structural schematic diagram of a shell in a watch is provided for an embodiment of the present disclosure.

[0062] The reference signs in the drawings represent the following respectively:

[0063] 10- watch bezel; 101- second clamping part; 102- seventh limiting structure; 1021- locking part; 1022- unlocking part; 103- second alignment mark structure; 104- wave structure; 1041- concave part; 1042- convex part;

[0064] 11- middle frame; 111- first through hole; 112- sixth limiting structure; 113- first alignment mark structure; 114- shell mounting groove; 115- eighth limiting groove;

[0065] 12- assembly component;

[0066] 121- connecting piece; 1211- first clamping part; 1212- main body part; 12121- eleventh limiting groove; 1213- protruding connecting part; 12131- second limiting groove; 12132- waterproof ring groove;

[0067] 122- first elastic piece;

[0068] 123- first limiting piece;

[0069] 124- waterproof ring;

[0070] 13- quick release assembly;

[0071] 131- quick release key; 1311- first inclined surface; 1312- fourth limiting structure; 1313- ninth limiting groove;

[0072] 132- second elastic piece;

[0073] 133- force transmission piece; 1331- second inclined surface; 1332- force transmission main body part; 1333- force transmission protruding part; 1334- tenth limiting groove;

[0074] 134- third elastic piece;

[0075] 135- shell structure; 1351- first opening; 1352- second opening; 1353- third opening; 1354- third limiting cover plate;

[0076] 136- fifth limiting cover plate; 1361- fourth opening;

[0077] 14- watchband; 141- watchband grain;

[0078] 15- shell; 151- welding part; 152- elastic part;

[0079] 16 - screen module.

[0080] The specific embodiments of the present disclosure have been shown and described in the above drawings, and will be described in more detail hereinafter. These drawings and detailed description are not intended to limit the scope of the concept of the present disclosure in any way, but to illustrate the concept of the present disclosure to those skilled in the art by referring to specific embodiments. DETAILED DESCRIPTION

[0081] The technical solutions in the embodiments of the present disclosure will be described clearly and completely below in combination with the drawings in the embodiments of the present disclosure. Obviously, the described embodiments are part of the embodiments of the present disclosure, rather than all the embodiments. Based on the embodiments in the present disclosure, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present disclosure.

[0082] The positional nouns such as "upper", "lower", "lateral" and the like involved in the embodiments of the present disclosure are generally based on the positions shown in the drawings or the relative positional relationship between structures when the watch is placed in the habit of a wristwatch, and these positional nouns are only used to more clearly describe the structures and the relationship between the structures, and are not intended to describe absolute positions. When the watch is placed in different postures, the positions may change, for example, "upper" and "lower" may be interchanged.

[0083] Unless otherwise defined, all technical terms used in the embodiments of the present disclosure have the same meanings as commonly understood by those skilled in the art.

[0084] In order to make the technical solutions and advantages of the present disclosure clearer, the embodiments of the present disclosure will be further described in detail below with reference to the drawings.

[0085] As shown in Figures 1-14 , the embodiments of the present disclosure provide a watch.

[0086] Referring to Figures 1-4 , the watch comprises a watch ring 10, a middle frame 11 and an assembly component 12, the assembly component 12 comprising a connecting piece 121 and a first elastic piece 122;

[0087] The connecting piece 121 is mounted on the middle frame 11, and the first elastic piece 122 biases the connecting piece 121 in a state of being locked with the watch ring 10.

[0088] When the connecting piece 121 is pushed by an external force, it can overcome the biasing force of the first elastic piece 122 and be unlocked with the watch ring 10.

[0089] The assembly of the watch provided by the embodiments of the present disclosure comprises a connecting piece and a first elastic piece. The connecting piece is mounted on the middle frame and is biased by the first elastic piece in a state of being locked with the bezel. In this way, the middle frame and the bezel are locked by the connecting piece. Further, when the connecting piece is pushed by an external force, the biasing force of the first elastic piece can be overcome to unlock the bezel. That is, the user can press or push the connecting piece to unlock the bezel and the connecting piece, and then easily remove the bezel. Therefore, when the bezel of the watch of the present disclosure is disassembled, the user does not need to rotate the bezel several times, but only needs to press a specific position, so that the bezel is disassembled with low difficulty and high efficiency.

[0090] Optionally, referring to Figure 1 , the watch further comprises a screen module 16, and the bezel 10 is configured to press-fit the screen module 16 on the middle frame 11. The screen module 16 can be a touch screen module.

[0091] Optionally, referring to Figures 2-4 , the connecting piece 121 comprises a first clamping part 1211, and the bezel 10 has a second clamping part 101. When the first clamping part 1211 is clamped with the second clamping part 101, the connecting piece 121 is locked with the bezel 10.

[0092] By clamping and connecting the two clamping parts, the connecting piece and the bezel can be locked and connected at low cost and high reliability, and the bezel and the middle frame are stably connected by the connecting piece.

[0093] Optionally, referring to Figure 3 , the first clamping part 1211 and the second clamping part 101 are both hook-shaped structures; or,

[0094] One of the first clamping part 1211 and the second clamping part 101 is a groove structure, and the other is a protruding structure.

[0095] The above is an exemplary implementation of the first clamping part and the second clamping part provided by the embodiments of the present disclosure. In application, those skilled in the art can adjust the implementation of the clamping part according to the needs and actual conditions.

[0096] In some embodiments, referring to Figures 2-4 , the connecting piece 121 comprises a connecting body part 1212 and a protruding connecting part 1213, the middle frame 11 has a first through hole 111, and the protruding connecting part 1213 extends into the first through hole 111 and can slide relative to the middle frame 11 in the first through hole 111.

[0097] The first elastic piece 122 is supported between the middle frame 11 and the connecting body part 1212.

[0098] Based on the above setting, the connecting piece can be installed on the middle frame by means of the cooperation of the protruding connecting part and the first through hole, and maintained in the position of locking connection with the bezel without external force by means of the cooperation of the connecting body part and the first elastic piece. Since the protruding connecting part can slide in the first through hole relative to the middle frame, when there is external force pushing the connecting piece, the connecting piece can slide relative to the middle frame to change its own position, and further change the position of the first buckle part, so as to release the locking with the bezel, so that the bezel is easy to take off.

[0099] Optionally, referring to Figures 2-4 , the assembly component 12 further comprises a first limiting piece 123, the first limiting piece 123 is sleeved on the end of the protruding connecting part 1213, the end of the protruding connecting part 1213 is located on the side of the first through hole 111 away from the connecting body part 1212, and the first limiting piece 123 limits the protruding connecting part 1213 from being pulled out of the first through hole 111.

[0100] Based on the above setting, it can be ensured that the end of the protruding connecting part is always located on the side of the first through hole away from the connecting body part and cannot be pulled out, and further ensure that the connecting piece cannot fall off from the middle frame, and ensure the connection effect of the connecting piece on the bezel and the middle frame.

[0101] Optionally, referring to Figure 4 , the first limiting piece 123 is a concave-shaped structure or a ring-shaped structure; the end of the protruding connecting part 1213 has a second limiting groove 12131, and the first limiting piece 123 is partially embedded in the second limiting groove 12131.

[0102] By setting the protruding connecting part partially embedded in the second limiting groove, it can be ensured that the first limiting piece has good limiting effect on the protruding connecting part, and further ensure that the installation stability of the connecting piece is high.

[0103] In some embodiments, referring to Figures 2-4 , the assembly component 12 further comprises a waterproof ring 124, the waterproof ring 124 is sleeved on the protruding connecting part 1213 and located between the protruding connecting part 1213 and the inner wall of the first through hole 111.

[0104] Based on the above setting, even if the first through hole is set on the middle frame for installing the connecting piece, external water cannot enter the inside of the watch through the first through hole, and further the various components inside the watch can be ensured not to be invalid due to water. That is, the service life of the watch can be improved.

[0105] Optionally, referring to Figures 2-4 , the side wall of the protruding connecting part 1213 has a waterproof ring groove 12132, and the waterproof ring 124 is partially embedded in the waterproof ring groove 12132. In this way, it can be ensured that the waterproof ring is not easy to fall off, and further improve the waterproof effect of the watch.

[0106] In some embodiments, referring toFigure 1 、 3 and 5, the watch further comprises a quick release assembly 13 connected with the middle frame 11, the quick release assembly 13 comprises a quick release button 131 and a second elastic member 132;

[0107] The second elastic member 132 biases the quick release button 131 to a first position, wherein the connecting member 121 is locked with the bezel 10 when the quick release button 131 is in the first position;

[0108] When the quick release button 131 is pressed, the connecting member 121 is pushed against the biasing force of the second elastic member 132.

[0109] In this embodiment, the quick release button in the quick release assembly is pressed to push the connecting member and the bezel to be unlocked, that is, the user can press the quick release button to achieve the unlocking. The quick release button can be set at any position convenient for the user to operate according to the needs, so as to improve the convenience and efficiency of the user operation. Meanwhile, under the action of the second elastic member, the quick release button can return to the first position by the elastic force of the second elastic member when the user releases the button, so as to avoid the bezel from being unable to be locked when the bezel is subsequently installed.

[0110] In some embodiments, referring to Figure 3 and 5 , the quick release assembly 13 further comprises a force transmission member 133 and a third elastic member 134, the force transmission member 133 is located between the quick release button 131 and the connecting member 121, and the third elastic member 134 biases the force transmission member 133 to a second position, wherein the connecting member 121 is locked with the bezel 10 when the force transmission member 133 is in the second position;

[0111] When the quick release button 131 is pressed, the force transmission member 133 is pushed, so that the force transmission member 133 pushes the connecting member 121 against the biasing force of the third elastic member 134.

[0112] In this embodiment, the force transmission member is further arranged between the quick release button and the connecting member, which is conducive to making the setting position of the quick release button more flexible and making the user more convenient to operate the quick release button. Meanwhile, when the user releases the button, the quick release button returns to the first position and no longer pushes the force transmission member, and the force transmission member can return to the second position by the elastic force of the third elastic member. In this way, even if the bezel needs to be installed subsequently, the movement of the bezel will not have too much resistance, which is conducive to improving the assembly efficiency of the bezel.

[0113] Optionally, referring to Figure 3 , 5 and 8-9, the quick release button 131 has a first inclined surface 1311, the force transmission member 133 has a second inclined surface 1331, and the first inclined surface 1311 and the second inclined surface 1331 are in contact and can slide relative to each other;

[0114] When the quick release button 131 is pressed, the first inclined surface 1311 pushes the second inclined surface 1331, and the force conducting piece 133 pushes the connecting piece 121.

[0115] By setting the first inclined surface and the second inclined surface, the movement direction of the quick release button can be different from the movement direction of the force conducting piece, and thus the position of the quick release button and the movement direction of the quick release button can be more flexibly set, improving the convenience of user operation. Figure 3 As shown, by means of the first inclined surface and the second inclined surface, the pressing of the quick release button by the user in a direction perpendicular to the surface of the watch can drive the force conducting piece and the connecting piece to move in a direction parallel to the surface of the watch.

[0116] In some embodiments, referring to Figure 3 and 5 , the quick release assembly 13 further includes a housing structure 135, and the quick release button 131, the second elastic piece 132, the force conducting piece 133 and the third elastic piece 134 are all mounted on the housing structure 135, and the housing structure 135 is connected with the middle frame 11.

[0117] The housing structure 135 has a first opening 1351 and a second opening 1352, and the quick release button 131 at least partially extends out of the first opening 1351, and the force conducting piece 133 at least partially extends out of the second opening 1352.

[0118] In this embodiment, the quick release button, the second elastic piece, the force conducting piece and the third elastic piece in the quick release assembly are all encapsulated in the housing structure, and the overall appearance of the quick release assembly is relatively high. The quick release button at least partially extends out of the first opening, which can ensure that the user can effectively touch the quick release button to realize the function of quick release of the watch ring. The force conducting piece at least partially extends out of the second opening, which can ensure the pushing effect of the force conducting piece on the connecting piece.

[0119] Optionally, referring to Figure 3 , the housing structure 135 further has a third opening 1353 and a third limiting cover plate 1354, the third limiting cover plate 1354 is configured to close the third opening 1353, and the second elastic piece 132 is supported between the third limiting cover plate 1354 and the quick release button 131.

[0120] The quick release button 131 has a fourth limiting structure 1312, and the fourth limiting structure 1312 cooperates with the side wall of the first opening 1351 to limit the quick release button 131 from being pulled out of the first opening 1351.

[0121] By setting the third opening in the shell structure, the convenience of installing the quick release key and the force transmission member in the shell structure can be effectively improved. By setting the third limiting cover plate and supporting the second elastic member between the third limiting cover plate and the quick release key, on the one hand, the shell structure can be encapsulated, and on the other hand, the stable function of the quick release assembly can be ensured. The quick release key also has a fourth limiting structure, which can ensure that the quick release key will not come out of the first opening after being installed into the shell structure, thereby ensuring the functionality of the quick release assembly. In practice, the third limiting cover plate can be fixed to the shell structure by laser welding or screws.

[0122] Optionally, referring to Figure 5 , the fourth limiting structure 1312 is a protruding structure, and is distributed on opposite sides of the quick release key 131, and the side wall of the first opening 1351 has a recessed structure; or,

[0123] The fourth limiting structure 1312 is a recessed structure, and is distributed on opposite sides of the quick release key 131, and the side wall of the first opening 1351 has a protruding structure.

[0124] In this embodiment, the limiting of the quick release key is achieved by the cooperation of the protruding structure and the recessed structure, which is simple in structure and low in cost.

[0125] Optionally, referring to Figure 3 and 5 , the quick release assembly 13 further includes a fifth limiting cover plate 136, the fifth limiting cover plate 136 has a fourth opening 1361, and is installed in the shell structure 135;

[0126] The force transmission member 133 includes a force transmission main body part 1332 and a force transmission protruding part 1333, the force transmission protruding part 1333 extends out of the shell structure 135 through the second opening 1352 and the fourth opening 1361, and the third elastic member 134 is supported between the force transmission main body part 1332 and the fifth limiting cover plate 136.

[0127] By means of the fifth limiting cover plate, it can be ensured that the force transmission member will not come out of the shell structure, thereby ensuring the stable function of the force transmission member. In practice, the fifth limiting cover plate can be fixed to the shell structure by laser welding or screws.

[0128] Optionally, the number of the quick release assembly 13 and the assembly assembly 12 is one or more, a plurality of quick release assemblies 13 and a plurality of assembly assemblies 12 are one-to-one corresponding, and are symmetrically arranged or spaced apart, so as to improve the locking effect on the bezel.

[0129] In some embodiments, referring to Figure 12 , the watch further includes a watchband 14, the watchband 14 includes a plurality of watchband particles 141, and the quick release assembly 13 is one of the watchband particles 141 closest to the middle frame 11.

[0130] In the embodiment, the quick release assembly directly serves as the head bead (i.e., the bead closest to the middle frame) of the watchband, or the head bead of the watchband is prepared as the quick release assembly, so that the bezel of the watch is easy to disassemble, and the watch is not additionally structured and the appearance of the watch is not degraded.

[0131] In some embodiments, with reference to Figure 6 , 10 and 13, the middle frame 11 further has a sixth limiting structure 112, and the bezel 10 further has a seventh limiting structure 102;

[0132] One of the sixth limiting structure 112 and the seventh limiting structure 102 is a target limiting structure, and the target limiting structure includes a locking portion 1021 and an unlocking portion 1022;

[0133] The other of the sixth limiting structure 112 and the seventh limiting structure 102, when cooperating with the locking portion 1021, causes the bezel 10 to be locked and connected with the middle frame 11;

[0134] The other of the sixth limiting structure 112 and the seventh limiting structure 102, when cooperating with the unlocking portion 1022, causes the bezel 10 to be unlocked from the middle frame 11.

[0135] In the embodiment, on the basis of the foregoing scheme, an anti-mis-touch design is additionally added, i.e., the bezel and the middle frame can be directly locked and connected or unlocked by means of the sixth limiting structure and the seventh limiting structure. When the user needs to disassemble the bezel, the unlocking portion of the target limiting structure needs to be cooperated with the other limiting structure, and the quick release button needs to be pressed at the same time. In this way, even if the user mis-touches the quick release button in daily life, the bezel will not directly fall off from the watch, and the installation stability of the bezel can be effectively ensured.

[0136] Optionally, with reference to Figure 10 and 13 The locking portion 1021 is a continuously extended arc-shaped groove, and the unlocking portion 1022 is a notch connected with the arc-shaped groove;

[0137] The other of the sixth limiting structure 112 and the seventh limiting structure 102 is a protruding structure, and the protruding structure can slide in the locking portion 1021;

[0138] When the protruding structure is located in the locking portion 1021, the bezel 10 is locked and connected with the middle frame 11; and when the protruding structure slides to the unlocking portion 1022, the bezel 10 is unlocked from the middle frame 11.

[0139] The above gives a specific implementation scheme of the sixth limiting structure and the seventh limiting structure, that is, the locking is realized by the cooperation of the arc-shaped groove and the protruding structure, and the unlocking is realized by the cooperation of the notch connected with the arc-shaped groove and the protruding structure. In use, the user can rotate the bezel (less than one turn) to make the protruding structure slide to the unlocking part, and then press the quick release key to disassemble the bezel. The above-mentioned mode has simple structure, low cost and high reliability.

[0140] Optionally, the number of the unlocking parts 1022 can be multiple, and the number of the protruding structures can be one or multiple. When the number of the protruding structures is one, the unlocking can be realized by rotating the protruding structure to the position of any unlocking part. When the number of the protruding structures is multiple and equal to the number of the unlocking parts, the multiple protruding structures correspond to the multiple unlocking parts one by one, and the unlocking can be realized by rotating each protruding structure to the position of the corresponding unlocking part. When the number of the protruding structures is multiple and less than the number of the unlocking parts, the unlocking can be realized by rotating each protruding structure to the position of an unlocking part.

[0141] Optionally, referring to Figure 1 and Figure 6 , the middle frame 11 further has a first alignment mark structure 113, and the bezel 10 further has a second alignment mark structure 103. When the first alignment mark structure 113 is aligned with the second alignment mark structure 103, the other one of the sixth limiting structure 112 and the seventh limiting structure 102 cooperates with the unlocking part 1022, and the bezel 10 is unlocked from the middle frame 11.

[0142] By means of the above two alignment mark structures, the efficiency of the user rotating the bezel to align the protruding structure with the unlocking part can be improved, which is beneficial to improve the speed of the user disassembling and assembling the bezel. In specific implementation, the two alignment mark structures can be protruding structures or recessed structures, or realized only by a coating of a specific material.

[0143] In some embodiments, referring to Figures 10-11 , the edge of the side of the bezel 10 close to the middle frame 11 has a continuous wave-shaped structure 104, and the wave-shaped structure 104 includes multiple concave parts 1041 and convex parts 1042 which appear and disappear alternately.

[0144] Referring to Figure 1 , the watch further includes an elastic sheet 15, one end of the elastic sheet 15 is fixedly connected with the middle frame 11, and the other end of the elastic sheet 15 is located in one concave part 1041.

[0145] Based on the above setting, the elastic sheet can continuously elastically slide from one concave part to another concave part in the process of the user rotating the bezel, so as to provide the user with continuous rotation feedback feeling, improve the experience of the user rotating the bezel, and also help the user better grasp the rotation amplitude.

[0146] Optionally, the number of the concave portions 1041 and the convex portions 1042 of the wave-shaped structure 104 of the bezel 10 is 144.

[0147] Optionally, when the second clamping portion 101 of the bezel 10 is in the form of a hook or a groove, the arc-shaped groove forming the locking portion 1021 can be reused as the second clamping portion to simplify the structure of the bezel. Further, the wave-shaped structure 104 can be formed on the side wall of the arc-shaped groove near the side of the middle frame, and the wave-shaped structure 104 also forms a corresponding notch when extending to the unlocking portion 1022 to ensure that the bezel and the middle frame can be unlocked.

[0148] Optionally, referring to Figure 1 and Figure 6 , the middle frame 11 has a plurality of spring mounting grooves 114; the number of the springs 15 is multiple, and the multiple springs 15 are one-to-one correspondingly mounted in the multiple spring mounting grooves 114.

[0149] Optionally, referring to Figure 14 , the spring 15 includes a welding portion 151 and a spring portion 152, the welding portion 151 can be welded in the spring mounting groove 114, and the spring portion 152 can be located in one of the concave portions 1041 of the wave-shaped structure 104. Optionally, the welding here can be laser welding.

[0150] Based on the above settings, the rotation feedback intensity of the user when rotating the bezel can be improved, and the user experience can be improved. At the same time, the spring is installed in the middle frame by means of the spring mounting groove, the installation stability is higher, and the space utilization rate of the watch is higher.

[0151] Optionally, the first elastic member 122, the second elastic member 132, and the third elastic member 134 in the present disclosure can all be in the form of a spring structure or an elastic rubber structure, etc. To fix the above-mentioned elastic members, a limiting groove or the like structure can be formed on the structure cooperating with these elastic members.

[0152] Specifically, referring to Figure 4 , the main body portion 1212 of the connecting member 121 has an eleventh limiting groove 12121 near the side of the middle frame, and one end of the first elastic member 122 is installed in the eleventh limiting groove 12121. Referring to Figures 6-7 , the middle frame 11 has an eighth limiting groove 115, and the other end of the first elastic member 122 is installed in the eighth limiting groove 115. Optionally, the number of the eleventh limiting groove 12121 and the eighth limiting groove 115 can be one or more, such as two and distributed on both sides of the protruding connecting portion 1213 of the connecting member 121.

[0153] Referring to Figure 8The quick-release button 131 has a ninth limiting groove 1313 on one side close to the third limiting cover plate 1354, and one end of the second elastic member 132 is installed in the ninth limiting groove 1313. Optionally, the number of the ninth limiting groove 1313 and the second elastic member 132 is one or more, such as two.

[0154] With reference to Figure 9 The force transmission member 133 has a tenth limiting groove 1334 on one side close to the fifth limiting cover plate 136, and one end of the third elastic member 134 is installed in the tenth limiting groove 1334. The number of the tenth limiting groove 1334 and the third elastic member 134 is one or more, such as two.

[0155] Optionally, the watch of the embodiment of the present disclosure is a smart watch with the functions of intelligent display and detection of parameters such as heartbeat, body temperature, heart rate, and blood oxygen.

[0156] In summary, the bezel of the watch provided by the embodiment of the present disclosure can be easily and efficiently detached from the middle frame. The user can press the quick-release button vertically from the front or side with one hand or one finger, quickly release the locking of the bezel and the connecting member, and the process requires less strength from the user, and even if the user has water on his hands, it can also be quickly realized. In addition, the anti-mis-touch design is also added, which can effectively avoid the situation that the bezel falls off due to mis-touch in life.

[0157] In the present disclosure, the terms "first" and "second" are only for descriptive purposes, and cannot be understood as indicating or implying relative importance. The term "multiple" refers to two or more, unless otherwise explicitly limited.

[0158] Other embodiments of the present disclosure will be readily apparent to those skilled in the art upon considering the description hereof, with the present disclosure intended to cover any and all variations, uses, or adaptations of the present disclosure which follow, in general, the principles of the present disclosure and include uses of the present disclosure not specifically disclosed. The description and examples are to be considered exemplary only.

[0159] It should be understood that the present disclosure is not limited to the precise structures described and shown in the drawings, and various modifications and changes can be made without departing from its scope. The scope of the present disclosure is only limited by the appended claims.

Claims

1. A watch characterized in that, The watch comprises a watch bezel (10), a middle frame (11) and an assembly component (12), the assembly component (12) comprises a connecting piece (121) and a first elastic piece (122); The connecting piece (121) is installed on the middle frame (11), and the first elastic piece (122) biases the connecting piece (121) to a state of being locked with the watch bezel (10); When the connecting piece (121) is pushed by an external force, the connecting piece (121) can overcome the biasing force of the first elastic piece (122) to be unlocked with the watch bezel (10).

2. The watch of claim 1, wherein, The connecting piece (121) comprises a first clamping part (1211), the watch bezel (10) has a second clamping part (101), when the first clamping part (1211) is buckled with the second clamping part (101), the connecting piece (121) is locked with the watch bezel (10).

3. The watch of claim 2, wherein, The first clamping part (1211) and the second clamping part (101) are both hook-shaped structures; or, One of the first clamping part (1211) and the second clamping part (101) is a groove structure, and the other is a protruding structure.

4. The watch of claim 1, wherein, The connecting piece (121) comprises a connecting main part (1212) and a protruding connecting part (1213), the middle frame (11) has a first through hole (111), the protruding connecting part (1213) extends into the first through hole (111) and can slide relative to the middle frame (11) in the first through hole (111); The first elastic piece (122) is supported between the middle frame (11) and the connecting main part (1212).

5. The watch of claim 4, wherein, The assembly component (12) further comprises a first limiting piece (123), the first limiting piece (123) is sleeved on an end of the protruding connecting part (1213), the end of the protruding connecting part (1213) is located on a side of the first through hole (111) away from the connecting main part (1212), and the first limiting piece (123) limits the protruding connecting part (1213) from being pulled out of the first through hole (111).

6. The watch of claim 5, wherein, The first limiting piece (123) is a concave-shaped structure or a ring-shaped structure, the end of the protruding connecting part (1213) has a second limiting groove (12131), and the first limiting piece (123) is partially embedded in the second limiting groove (12131).

7. The watch of claim 4, wherein, The assembly component (12) further comprises a waterproof ring (124), the waterproof ring (124) is sleeved on the protruding connecting part (1213) and located between the protruding connecting part (1213) and an inner wall of the first through hole (111).

8. The watch of claim 7, wherein, A side wall of the protruding connecting part (1213) has a waterproof ring groove (12132), and the waterproof ring (124) is partially embedded in the waterproof ring groove (12132).

9. The watch according to any one of claims 1-8, characterized in that The watch further comprises a quick release assembly (13), the quick release assembly (13) is connected with the middle frame (11), and the quick release assembly (13) comprises a quick release key (131) and a second elastic piece (132). The second elastic member (132) biases the quick release button (131) to a first position, wherein the connecting member (121) is locked with the bezel (10) when the quick release button (131) is in the first position; The quick release button (131) is pressed to push the connecting member (121) against the biasing force of the second elastic member (132).

10. The watch of claim 9, wherein, The quick release assembly (13) further comprises a force transmission member (133) and a third elastic member (134), the force transmission member (133) is located between the quick release button (131) and the connecting member (121), and the third elastic member (134) biases the force transmission member (133) to a second position, wherein the connecting member (121) is locked with the bezel (10) when the force transmission member (133) is in the second position; The quick release button (131) is pressed to push the force transmission member (133), so that the force transmission member (133) pushes the connecting member (121) against the biasing force of the third elastic member (134).

11. The watch of claim 10, wherein, The quick release button (131) has a first inclined surface (1311), and the force transmission member (133) has a second inclined surface (1331), the first inclined surface (1311) is in contact with and can slide relative to the second inclined surface (1331); The quick release button (131) is pressed to push the second inclined surface (1331) through the first inclined surface (1311), so that the force transmission member (133) pushes the connecting member (121).

12. The watch of claim 10, wherein, The quick release assembly (13) further comprises a housing structure (135), the quick release button (131), the second elastic member (132), the force transmission member (133) and the third elastic member (134) are all mounted on the housing structure (135), and the housing structure (135) is connected with the middle frame (11); The housing structure (135) has a first opening (1351) and a second opening (1352), the quick release button (131) at least partially extends out of the first opening (1351), and the force transmission member (133) at least partially extends out of the second opening (1352).

13. The watch of claim 12, wherein, The housing structure (135) further has a third opening (1353) and a third limiting cover plate (1354), the third limiting cover plate (1354) is configured to close the third opening (1353), and the second elastic member (132) is supported between the third limiting cover plate (1354) and the quick release button (131); The quick release button (131) has a fourth limiting structure (1312), the fourth limiting structure (1312) cooperates with the sidewall of the first opening (1351) to limit the quick release button (131) from being pulled out of the first opening (1351).

14. The watch of claim 13, wherein, The fourth limiting structure (1312) is a protruding structure and is distributed on opposite sides of the quick release button (131), and the sidewall of the first opening (1351) has a concave structure; or, The fourth limiting structure (1312) is a protruding structure and is distributed on opposite sides of the quick release button (131), and the sidewall of the first opening (1351) has a concave structure; or, The fourth limiting structure (1312) is a concave structure, and is arranged on opposite sides of the quick release key (131). The sidewall of the first opening (1351) has a convex structure.

15. The watch of claim 12, wherein, The quick release assembly (13) further comprises a fifth limiting cover plate (136) having a fourth opening (1361) and being mounted on the shell structure (135). The force transmission member (133) comprises a force transmission main body (1332) and a force transmission convex portion (1333) extending out of the shell structure (135) through the second opening (1352) and the fourth opening (1361). The third elastic member (134) is supported between the force transmission main body (1332) and the fifth limiting cover plate (136).

16. The watch according to any one of claims 10-15, characterized in that The watch further comprises a watchband (14) comprising a plurality of watchband particles (141). The quick release assembly (13) is one of the watchband particles (141) closest to the middle frame (11).

17. The watch of any one of claims 1-8 and 10-15, wherein, The middle frame (11) further comprises a sixth limiting structure (112), and the watch ring (10) further comprises a seventh limiting structure (102). One of the sixth limiting structure (112) and the seventh limiting structure (102) is a target limiting structure, which comprises a locking portion (1021) and an unlocking portion (1022). The other of the sixth limiting structure (112) and the seventh limiting structure (102) is matched with the locking portion (1021) to lock the watch ring (10) and the middle frame (11). The other of the sixth limiting structure (112) and the seventh limiting structure (102) is matched with the unlocking portion (1022) to unlock the watch ring (10) and the middle frame (11).

18. The watch of claim 17, wherein, The locking portion (1021) is a continuously extended arc-shaped groove, and the unlocking portion (1022) is a notch connected with the arc-shaped groove. The other of the sixth limiting structure (112) and the seventh limiting structure (102) is an extending structure which can slide in the locking portion (1021). When the extending structure is located in the locking portion (1021), the watch ring (10) and the middle frame (11) are locked. When the extending structure slides to the unlocking portion (1022), the watch ring (10) and the middle frame (11) are unlocked.

19. The watch of claim 17, wherein, The middle frame (11) further comprises a first alignment mark structure (113), and the watch ring (10) further comprises a second alignment mark structure (103). When the first alignment mark structure (113) is aligned with the second alignment mark structure (103), the other of the sixth limiting structure (112) and the seventh limiting structure (102) is matched with the unlocking portion (1022), and the watch ring (10) and the middle frame (11) are unlocked.

20. The watch of any one of claims 1-8, 10-15, and 18-19, wherein, The edge of the watch bezel (10) near one side of the middle frame (11) has a continuous wavy structure (104), and the wavy structure (104) comprises a plurality of concave portions (1041) and convex portions (1042) that appear alternately; The watch further comprises a spring sheet (15), one end of the spring sheet (15) is fixedly connected with the middle frame (11), and the other end of the spring sheet (15) is located in a concave portion (1041).

21. The watch of claim 20, wherein, The middle frame (11) has a plurality of spring sheet mounting grooves (114), and the plurality of spring sheets (15) are one-to-one correspondingly mounted in the plurality of spring sheet mounting grooves (114).