Disassembling and assembling tool, charging box of intelligent ring and intelligent ring suite

By designing mounting slots and pry bar structures on the smart ring, combined with elastic reset components, the problem of the inability to disassemble and assemble the functional modules of the smart ring was solved, enabling personalized settings and convenient replacement of the modules.

CN121893205APending Publication Date: 2026-04-21GEER TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
GEER TECH CO LTD
Filing Date
2025-12-29
Publication Date
2026-04-21

AI Technical Summary

Technical Problem

The existing smart ring's functional modules cannot be personalized according to user needs and cannot be disassembled or replaced.

Method used

Design a disassembly and assembly tool that uses an assembly slot on a smart ring and a fixing bracket to clamp or detach the module. Combined with a pry bar structure and an elastic reset component, it enables the rapid disassembly and assembly of functional modules.

Benefits of technology

It enables personalized settings and convenient disassembly and replacement of the smart ring function module, thus improving the user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a disassembling and assembling tool, a charging box of an intelligent ring and an intelligent ring suite, the disassembling and assembling tool comprises a supporting table, a first elastic reset piece and a pinch bar structure, the supporting table is installed on the groove bottom wall of a containing groove, the pinch bar structure is hinged to the groove side wall of the containing groove, and the first elastic reset piece is connected with the pinch bar structure and the groove side wall of the containing groove; in the process that the intelligent ring moves towards the supporting table, the pinch bar structure abuts against the fixing frame and pushes the fixing frame to the loosening position from the clamping position, so that the functional module is separated from the assembling groove and borne on the supporting table. The detachable design is achieved through the functional module on the intelligent ring and the fixing frame, and the matching relation between the pry bar structure on the disassembling and assembling tool and the fixing frame is achieved, so that on one hand, personalized setting of the functional module on the intelligent ring can be achieved, and replacement can be conducted according to the user requirement; and on the other hand, the functional modules can be conveniently disassembled, assembled and replaced.
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Description

Technical Field

[0001] This invention relates to the field of smart wearable device technology, and in particular to a disassembly and assembly tool, a charging case for a smart ring, and a smart ring kit. Background Technology

[0002] With the development of wearable smart devices, smart rings have gradually become a new type of smart terminal following smartwatches and smart bracelets due to their advantages of small size, comfortable wear, high concealment, and convenient all-day continuous monitoring. Currently, most smart rings on the market integrate various basic health management functions such as heart rate monitoring, blood oxygen detection, sleep analysis, and activity tracking.

[0003] However, the functional modules on smart rings in the existing technology are usually fixed at the factory, which makes it impossible for users to personalize the functional modules of the smart ring according to their daily needs or special scenarios, and also makes it impossible to disassemble and replace the functional modules. Summary of the Invention

[0004] The main objective of this invention is to provide a disassembly and assembly tool, a charging case for a smart ring, and a smart ring kit, aiming to solve the problems in the prior art where smart rings cannot personalize their functional modules and cannot disassemble and replace them.

[0005] To achieve the above objectives, the present invention proposes a disassembly and assembly tool for assisting in the disassembly and assembly of functional modules of a smart ring. The smart ring has an assembly slot, and the functional module can be installed in the assembly slot by a fixing bracket. The fixing bracket can move between a snap-fit ​​position and a release position to correspondingly snap the functional module into or out of the assembly slot. The disassembly and assembly tool is used to be placed in a receiving groove. The disassembly and assembly tool includes a support platform, a first elastic reset member and a pry bar structure. The support platform is installed on the bottom wall of the receiving groove, the pry bar structure is hinged to the side wall of the receiving groove, and the first elastic reset member is connected to the pry bar structure and the side wall of the receiving groove respectively. As the smart ring moves toward the support platform, the pry bar structure abuts against the fixing frame and pushes the fixing frame from the snap-fit ​​position to the release position, so that the functional module is disengaged from the assembly slot and supported on the support platform; the first elastic reset member is used to undergo elastic deformation during the movement of the smart ring toward the support platform, and is used to reset the pry bar structure by elastic restoring force when the smart ring moves away from the support platform.

[0006] In one embodiment, the support platform includes a bracket, a second elastic reset member, and a slide. The bracket is mounted on the bottom wall of the receiving groove, the slide is slidably mounted on the bracket, and the second elastic reset member is connected to the bracket and the slide respectively. During the process of the smart ring moving towards the support platform to abut against the slide and pushing the slide towards the bottom wall of the receiving groove, the pry bar structure can abut against the fixing frame and push the fixing frame from the snap-fit ​​position to the release position, so that the functional module is disengaged from the assembly groove and supported on the support platform; the second elastic reset member is used to undergo elastic deformation during the sliding of the slide towards the bottom wall of the receiving groove, and is used to reset the slide by elastic restoring force when the smart ring moves away from the support platform.

[0007] In one embodiment, the slide includes a slider, a support rod, and a support plate. The bracket forms a sliding space extending vertically. The slider is slidably disposed within the sliding space. The second elastic reset member is disposed at the bottom of the slider and connected to the bracket. The bottom of the support rod is connected to the slider. The support rod extends upward through the bracket, and the top of the support rod is connected to the support plate. The support plate is used to support the functional module.

[0008] In one embodiment, the slider has a closed annular guide groove on its side wall. The disassembly and assembly tool also includes a connecting rod, the top end of which is a movable end and the bottom end is a hinged end, respectively. The hinged end is hinged to the bottom of the bracket. The movable end extends into the guide groove. The extension path of the guide groove has a first locking position and a second locking position that engage with the movable end, as well as a first abutting position and a second abutting position that abut with the movable end. The extension path of the guide groove, excluding the first locking position, the second locking position, the first abutting position, and the second abutting position, slides with the movable end. The movable end of the connecting rod can slide from the first engaging position to abut against the first abutting position during the process of the smart ring pushing the slide table towards the bottom wall of the receiving groove, and slide to engage with the second engaging position under the push of the second elastic reset member when the smart ring moves away from the support platform; the movable end of the connecting rod can also slide from the second engaging position to abut against the second abutting position during the process of the smart ring pushing the slide table towards the bottom wall of the receiving groove, and slide to engage with the first engaging position under the push of the second elastic reset member when the smart ring moves away from the support platform.

[0009] In one embodiment, the guide groove is heart-shaped and includes a first guide segment, a second guide segment, a third guide segment, and a fourth guide segment connected end to end in sequence; The first guide segment and the fourth guide segment are connected to the bottom of the guide groove, and the first guide segment and the fourth guide segment extend in different directions so that their connection point forms the first snap-fit ​​position; the first guide segment and the second guide segment are connected to the top of the guide groove, and the first guide segment and the second guide segment extend in different directions so that their connection point forms the first abutment position; the second guide segment and the third guide segment are connected to the top of the guide groove, and the second guide segment and the third guide segment extend in different directions so that their connection point forms the second snap-fit ​​position; the third guide segment and the fourth guide segment are connected to the top of the guide groove, and the third guide segment and the fourth guide segment extend in different directions so that their connection point forms the second abutment position, wherein the second snap-fit ​​position is lower than the first abutment position and the second abutment position, and is located horizontally between the first abutment position and the second abutment position.

[0010] In one embodiment, each of the assembly slots is provided with two fixing frames on both sides of the smart ring circumference. Each of the disassembly and assembly tools includes two opposing pry bar structures, each pry bar structure corresponding to one of the two fixing frames. The number of the first elastic reset members is the same as the number of the pry bar structures and is provided in a one-to-one correspondence. Each pry bar structure includes an abutting end and a rotating end. The rotating end is hinged to the side wall of the receiving slot, and the abutting end is used to abut against the fixing frame. As the smart ring pushes the slide towards the bottom wall of the receiving groove, each of the abutting ends abuts against the fixing frame and swings away from the other abutting end to push the fixing frame from the snap-fit ​​position to the release position. The first elastic reset member is used to drive the abutting end to swing towards the other abutting end to reset the pry bar structure.

[0011] In one embodiment, each of the pry bar structures extends from the rotating end in a direction away from the other pry bar structure to form a pulling part, the two pulling parts are connected by a connecting rope, and each of the pulling parts is connected to the side wall of the receiving groove by a first elastic reset member; The slider has an abutment post on the side facing the pulling part. The abutment post is used to pull down the connecting rope when the connecting rod is engaged with the second locking position, and to pull the two pulling parts towards each other through the connecting rope, so that the two pry bar structures move away from each other and away from the functional module supported on the support plate.

[0012] In one embodiment, the two pry bar structures are arranged opposite each other along a first horizontal direction. Each pry bar structure includes a connecting rod and two swing rods respectively disposed at both ends of the connecting rod. The two swing rods are respectively located on both sides of the slider along a second horizontal direction. The first horizontal direction is perpendicular to the second horizontal direction. The end of each swing rod away from the connecting rod forms the rotating end, and the connecting rod forms the abutting end. The two pull parts arranged on the same side are connected by a connector, and the number of abutting posts and the connector are the same and correspond one-to-one.

[0013] In one embodiment, the functional module is provided with a snap-fit ​​hole, and the fixing frame is provided with a first snap-fit ​​block for snapping into the snap-fit ​​hole when the fixing frame is in the snap-fit ​​position, and when the fixing frame is in the snap-fit ​​position, a gap is formed between the snap-fit ​​hole and the first snap-fit ​​block; The pry bar structure is provided with a second locking block at the position corresponding to the first locking hole. The second locking block is used to extend into the gap and abut against the first locking block during the movement of the smart ring toward the support platform, so as to push the fixing frame from the locking position to the releasing position.

[0014] The present invention also provides a charging case for a smart ring, comprising: The box body has multiple receiving slots spaced apart inside it. The above-mentioned disassembly and assembly tools are arranged in a one-to-one correspondence with the number of the receiving slots. At least some of the disassembly and assembly tools have the functional module on their support platform, while at least some of the disassembly and assembly tools do not have the functional module on their support platform. A charging slot is provided in the housing and is spaced apart from the receiving slot. The charging slot is an annular groove adapted to the shape of the smart ring, and a wireless charging module for charging the smart ring is provided inside the charging slot.

[0015] The present invention also provides a smart ring kit, comprising: The aforementioned charging case; A smart ring is housed in the charging slot. The smart ring has an assembly slot. The functional module can be installed in the assembly slot by a fixing bracket. The fixing bracket can move between a snap-fit ​​position and a release position to correspondingly snap the functional module into or out of the assembly slot.

[0016] In this invention, an assembly slot is created on the smart ring, allowing the functional module to be engaged or disengaged within the slot via a fixing bracket, thus completing the installation of the functional module. Furthermore, the design of the pry bar structure on the disassembly tool allows the pry bar structure to abut against the fixing bracket as the smart ring moves towards the support platform. With the movement of the smart ring, the pry bar structure pushes the fixing bracket from the engaged position to the disengaged position, thereby removing the functional module. The functional module, supported on the support platform, can be installed by the smart ring moving towards the support platform, causing the functional module itself to push the fixing bracket from the disengaged position to the engaged position, thus achieving rapid assembly and disassembly of the functional module. Additionally, the first elastic reset component can reset the pry bar structure after the smart ring moves away from the support platform, ensuring the pry bar structure is aligned with the fixing bracket for easy disassembly of the functional module in subsequent operations.

[0017] This invention achieves detachable design of functional modules on a smart ring through a fixing bracket, and the pry bar structure on the disassembly and assembly tool cooperates with the fixing bracket. On the one hand, it enables personalized settings of functional modules on the smart ring, which can be replaced according to user needs. On the other hand, it enables convenient disassembly and replacement of functional modules. Attached Figure Description

[0018] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on the structures shown in these drawings without creative effort.

[0019] Figure 1 This is a schematic diagram of the structure of a charging box provided in an embodiment of the present invention; Figure 2 A schematic diagram of the disassembly and assembly tool provided in an embodiment of the present invention when it comes into contact with a smart ring from one perspective; Figure 3 This is a schematic diagram of the disassembly and assembly tool provided in an embodiment of the present invention when it comes into contact with a smart ring, viewed from another angle. Figure 4 This is a schematic diagram of the structure of a smart ring provided in an embodiment of the present invention when the active end is pressed down to abut against the first abutment position, from one viewpoint. Figure 5 This is a schematic diagram of the structure of a smart ring provided in an embodiment of the present invention when the active end is pressed down to abut against the first abutment position, from another perspective. Figure 6 This is a schematic diagram of the disassembly and assembly tool provided in an embodiment of the present invention when the smart ring is far from the support base and the movable end is engaged with the second locking position; Figure 7 This is a schematic diagram of the structure of the disassembly and assembly tool provided in an embodiment of the present invention when the smart ring is close to the support base for installing the functional module and the movable end abuts against the second abutment position. Figure 8 This is a schematic diagram of the disassembly and assembly tool provided in an embodiment of the present invention when the functional module of the smart ring has been installed and the active end is engaged with the first snap-fit ​​position. Figure 9 This is a schematic diagram of the guide groove of a disassembly and assembly tool provided in an embodiment of the present invention.

[0020] Explanation of icon numbers: 100. Disassembly / assembly tools; 10. Support platform; 11. Bracket; 111. Sliding space; 12. Second elastic reset component; 13. Slide table; 131. Slider; 132. Support rod; 133. Support plate; 134. Guide groove; 1341. First locking position; 1342. Second locking position; 1343. First abutment position; 1344. Second abutment position; 1345. First guide section; 1346. Second guide section; 1347. Third guide section; 1348. Fourth guide section; 135. First guide slope; 136. Second guide slope; 137. Abutment 20. Connecting post; 30. First elastic reset component; 31. Pry bar structure; 32. Pulling part; 32. Connecting rod; 321. Abutting end; 33. Swinging rod; 331. Rotating end; 34. Second locking block; 40. Connecting rod; 41. Movable end; 42. Hinge end; 50. Connecting rope; 200. Charging box; 210. Box body; 211. Receiving slot; 212. Charging slot; 220. Cover; 300. Smart ring; 310. Assembly slot; 320. Fixing frame; 330. First locking block; 340. Functional module; 350. Locking hole; 360. Gap.

[0021] The realization of the objective, functional features and advantages of the present invention will be further explained in conjunction with the embodiments and with reference to the accompanying drawings. Detailed Implementation

[0022] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of the present invention.

[0023] It should be noted that if the embodiments of the present invention involve directional indicators (such as up, down, left, right, front, back, etc.), the directional indicators are only used to explain the relative positional relationship and movement of the components in a specific posture. If the specific posture changes, the directional indicators will also change accordingly.

[0024] Furthermore, if the embodiments of this invention involve descriptions such as "first" or "second," these descriptions are for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined with "first" or "second" may explicitly or implicitly include at least one of those features. Additionally, the use of "and / or" or "and / or" throughout the text includes three parallel solutions. For example, "A and / or B" includes solution A, solution B, or a solution where both A and B are satisfied simultaneously. Furthermore, the technical solutions of the various embodiments can be combined with each other, but this must be based on the ability of those skilled in the art to implement them. When the combination of technical solutions is contradictory or impossible to implement, it should be considered that such a combination of technical solutions does not exist and is not within the scope of protection claimed by this invention.

[0025] In existing smart rings, the functional modules are usually fixed at the factory, which prevents users from personalizing the functional modules according to their daily needs or special scenarios, and also prevents them from disassembling and replacing the functional modules.

[0026] To address the above problems, this invention proposes a disassembly and assembly tool 100.

[0027] Please combine Figures 1 to 5 The disassembly / assembly tool 100 in this embodiment is used to assist the smart ring 300 in disassembling and assembling the functional module 340. The smart ring 300 has an assembly slot 310. The functional module 340 can be installed in the assembly slot 310 through a fixing bracket 320. The fixing bracket 320 can move between a snap-fit ​​position and a release position to correspondingly snap the functional module 340 into or out of the assembly slot 310. The disassembly / assembly tool 100 is used to be placed in a receiving slot 211. The disassembly / assembly tool 100 includes a support platform 10, a first elastic reset member 20, and a pry bar structure 30. The support platform 10 is installed on the bottom wall of the receiving slot 211, and the pry bar structure... The pry bar structure 30 is hinged to the side wall of the receiving groove 211. The first elastic reset member 20 is connected to the pry bar structure 30 and the side wall of the receiving groove 211 respectively. During the movement of the smart ring 300 toward the support platform 10, the pry bar structure 30 abuts against the fixing frame 320 and pushes the fixing frame 320 from the snap-fit ​​position to the release position, so that the functional module 340 is disengaged from the assembly groove 310 and supported on the support platform 10. The first elastic reset member 20 is used to undergo elastic deformation during the movement of the smart ring 300 toward the support platform 10, and is used to reset the pry bar structure 30 by elastic restoring force when the smart ring 300 moves away from the support platform 10.

[0028] In the technical solution of this invention, by opening an assembly slot 310 on the smart ring 300, the functional module 340 is locked or disengaged within the assembly slot 310 via the fixing bracket 320, thus completing the installation of the functional module 340. Furthermore, through the design of the pry bar structure 30 on the disassembly tool 100, the pry bar structure 30 can abut against the fixing bracket 320 during the movement of the smart ring 300 toward the support platform 10. As the smart ring 300 moves, the pry bar structure 30 can push the fixing bracket 320 from the locked position to the released position, thereby removing the functional module 340. The functional module 340, supported on the support platform 10, can be installed by the smart ring 300 moving toward the support platform 10, which itself pushes the fixing bracket 320 from the released position to the locked position, thus achieving rapid disassembly and assembly of the functional module 340. Furthermore, the first elastic reset member 20 can reset the pry bar structure 30 after the smart ring 300 moves away from the support platform 10, so that the pry bar structure 30 is reset to a position that is directly opposite the fixing frame 320, which facilitates the next disassembly of the functional module 340.

[0029] The present invention achieves a detachable design for the functional module 340 on the smart ring 300 through the fixing bracket 320, and the cooperation relationship between the pry bar structure 30 on the disassembly and assembly tool 100 and the fixing bracket 320. On the one hand, it enables the functional module 340 on the smart ring 300 to be personalized and replaced according to user needs. On the other hand, it enables convenient disassembly and replacement of the functional module 340.

[0030] In one embodiment, the support platform 10 includes a bracket 11, a second elastic reset member 12, and a slide 13. The bracket 11 is mounted on the bottom wall of the receiving groove 211, and the slide 13 is slidably mounted on the bracket 11. The second elastic reset member 12 is connected to the bracket 11 and the slide 13 respectively. During the process of the smart ring 300 moving toward the support platform 10 to abut against the slide 13 and pushing the slide 13 toward the bottom wall of the receiving groove 211, the pry bar structure 30 can abut against the fixing frame 320 and push the fixing frame 320 from the snap-fit ​​position to the release position, so that the functional module 340 is disengaged from the assembly groove 310 and supported on the support platform 10. The second elastic reset member 12 is used to undergo elastic deformation during the process of the slide 13 sliding toward the bottom wall of the receiving groove 211, and is used to reset the slide 13 by elastic restoring force when the smart ring 300 moves away from the support platform 10.

[0031] By incorporating a bracket 11, a second elastic reset member 12, and a slide 13 within the support platform 10, the slide 13 can achieve controllable sliding during the contact between the smart ring 300 and the support platform 10. When the smart ring 300 moves toward the support platform 10, the slide 13 is actively pushed by the smart ring 300 and slides along the direction of the bracket 11. During this process, the second elastic reset member 12 undergoes elastic deformation and stores energy. When the smart ring 300 moves away from the support platform 10, the second elastic reset member 12 releases its elastic restoring force and resets the slide 13. Through the cooperation between the slide 13 and the bracket 11, when the smart ring 300 moves toward the slide 13, the sliding of the slide 13 will buffer the pressing force, preventing hard contact between the slide 13 and the functional module 340 on the smart ring 300, which could damage the functional module 340 or the slide 13.

[0032] The following is a specific embodiment illustrating the process of replacing the module of the smart ring 300. After the user positions the functional module 340 of the smart ring 300 facing the slide table 13, the user moves the smart ring 300 towards the slide table 13 and presses it down until the outer surface of the functional module 340 contacts the slide table 13. At this point, the pry bar structure 30 abuts against the fixing frame 320. As the smart ring 300 continues to press down, the slider 131 slides along the bracket 11 and causes the second elastic reset member 12 to deform. At the same time, the pry bar structure 30 is pushed outward by the pressing down of the smart ring 300, and causes the fixing member to unfold outward, thereby pushing the fixing frame 320 from the locked position to the released position. At this point, the functional module 340 is disengaged from the assembly slot 310 and is supported on the slide table 13. When the pry bar structure 30 unfolds outward, the first elastic reset member 20 also deforms. After the functional module 340 is disassembled, the smart ring 300 moves away from the slide table 13. At this point, the pressure applied by the hand through the smart ring 300 is no longer present. The first elastic reset member 20 resets the pry bar structure 30 through elastic restoring force, and the second elastic reset member 12 resets the slide table 13 through elastic restoring force, so as to facilitate the next disassembly of the functional module 340.

[0033] Therefore, the pry bar structure 30 not only needs to be hinged to the side wall of the receiving groove 211, but also needs to be set at an angle to the downward pressing direction of the smart ring 300, so that the downward pressure of the smart ring 300 during the pressing process can generate a component force to both sides. This component force pushes the pry bar structure 30 outward, so that the pry bar structure 30 can drive the fixing frame 320 from the locked position to the released position.

[0034] In one embodiment, the slide table 13 includes a slider 131, a support rod 132, and a support plate 133. The bracket 11 forms a sliding space 111 extending vertically. The slider 131 is slidably disposed in the sliding space 111. The second elastic reset member 12 is disposed at the bottom of the slider 131 and connected to the bracket 11. The bottom of the support rod 132 is connected to the slider 131. The support rod 132 extends upward through the bracket 11, and the top of the support rod 132 is connected to the support plate 133. The support plate 133 is used to support the functional module 340.

[0035] The slider 131 slides vertically within the sliding space 111 enclosed by the bracket 11. The second elastic reset member 12 is located at the bottom of the slider 131, allowing the slider 131 to slide along the bracket 11 throughout the sliding motion. The bracket 11 provides reliable guiding support for the slider 131. The support rod 132 extends upward from the slider 131, and the support plate 133 is located at the top of the support rod 132 to support the functional module 340. This allows the support plate 133 to be closer to the functional module 340, enabling the functional module 340 to contact the support plate 133 earlier during the downward pressing process. The functional module 340 provides stable downward pressure, and the support plate 133 provides stable support.

[0036] In one embodiment, a first magnetic adsorption element is provided on the support plate 133, and a second magnetic adsorption element is provided in the functional module 340 for magnetic adsorption with the first magnetic adsorption element.

[0037] When the functional module 340 is pushed off the assembly slot 310 and falls onto the support plate 133 by the pry bar structure 30, the magnetic attraction between the first and second magnetic adsorption components reliably adsorbs the functional module 340 onto the surface of the support plate 133, ensuring its stability during load-bearing and preventing slippage or tipping due to inertia, vibration, or operational deviation. This improves the stability of the functional module 340.

[0038] Please combine Figures 2 to 9In one embodiment, a closed annular guide groove 134 is provided on the side wall of the slider 131. The disassembly and assembly tool 100 also includes a connecting rod 40, the top end of which is a movable end 41 and the bottom end is a hinged end 42, respectively. The hinged end 42 is hinged to the bottom of the bracket 11. The movable end 41 extends into the guide groove 134. A first locking position 1341 and a second locking position 1342 are formed on the extension path of the guide groove 134 to engage with the movable end 41, and a first abutting position 1343 and a second abutting position 1344 are formed to abut with the movable end 41. The extension path of the guide groove 134, except for the first locking position 1341, the second locking position 1342, the first abutting position 1343 and the second abutting position 1344, is connected to the movable end 41. The movable end 41 of the connecting rod 40 can slide from the first locking position 1341 to the first abutting position 1343 during the process of the smart ring 300 pushing the slide table 13 towards the bottom wall of the receiving groove 211, and slide to the second locking position 1342 under the push of the second elastic reset member 12 when the smart ring 300 moves away from the support table 10; the movable end 41 of the connecting rod 40 can also slide from the second locking position 1342 to the second abutting position 1344 during the process of the smart ring 300 pushing the slide table 13 towards the bottom wall of the receiving groove 211, and slide to the first locking position 1341 under the push of the second elastic reset member 12 when the smart ring 300 moves away from the support table 10.

[0039] A closed annular guide groove 134 is provided on the side wall of the slider 131, into which the movable end 41 of the connecting rod 40 extends and can move controllably between the first locking position 1341, the second locking position 1342, the first abutment position 1343, and the second abutment position 1344 along the extension path of the guide groove 134. The first abutment position 1343 provides a pressure limit when the smart ring 300 is pressed down. During the user's pressing process, feedback can be felt when the movable end 41 abuts against the first abutment position 1343, making the user clear that the pressure has been reached, improving the user experience and preventing the user from being unsure of how much pressure to apply. The second locking position 1342 is used when, after the functional module 340 has been supported on the support plate 133, the slider 131 rises under the push of the second elastic reset member 12 to engage with the movable end 41 at the second locking position 1342, thereby making the height of the functional module 340 supported on the support plate 133 lower and accommodated in the receiving groove. Within 211, to prevent damage or detachment of the functional module 340 due to exposure; the second abutment position 1344 is used to provide a pressure limit when the user presses down on the support plate 133 corresponding to the empty assembly slot 310 to install the functional module 340 into the assembly slot 310. During the user's pressing process, feedback can be felt when the movable end 41 abuts against the second abutment position 1344, so that the user knows that it has been pressed down in place, improving the user experience; the first locking position 1341 is used to limit the reset connecting rod 40 after the functional module 340 on the support plate 133 has been installed in the assembly slot 310, preventing the connecting rod 40 from moving in the guide slot 134. When the smart ring 300 pushes the slide table 13 to slide, the connecting rod 40 can switch positions inside the guide slot 134 according to a preset path, thereby providing clear and concise guidance for the entire disassembly and installation process of the functional module 340.

[0040] In one embodiment, the guide groove 134 is heart-shaped and includes a first guide segment 1345, a second guide segment 1346, a third guide segment 1347, and a fourth guide segment 1348 connected end-to-end. The first guide segment 1345 and the fourth guide segment 1348 are connected to the bottom of the guide groove 134, and the extension directions of the first guide segment 1345 and the fourth guide segment 1348 are different, so that their connection forms a first snap-fit ​​position 1341. The first guide segment 1345 and the second guide segment 1346 are connected to the top of the guide groove 134, and the extension directions of the first guide segment 1345 and the second guide segment 1346 are different, so that their connection forms a first abutment position 134. 3; The second guide segment 1346 and the third guide segment 1347 are connected to the top of the guide groove 134. The second guide segment 1346 and the third guide segment 1347 extend in different directions so that their connection forms a second snap-fit ​​position 1342; The third guide segment 1347 and the fourth guide segment 1348 are connected to the top of the guide groove 134. The third guide segment 1347 and the fourth guide segment 1348 extend in different directions so that their connection forms a second abutment position 1344. The second snap-fit ​​position 1342 is lower than the first abutment position 1343 and the second abutment position 1344, and is located horizontally between the first abutment position 1343 and the second abutment position 1344.

[0041] The first guide segment 1345, the second guide segment 1346, the third guide segment 1347, and the fourth guide segment 1348 are connected end to end to form a closed heart-shaped structure. Because the heart-shaped structure has four distinct bends, it is perfectly suited to the design of the two abutment positions and two locking positions of this application. Furthermore, the connecting points of the first guide segment 1345, the second guide segment 1346, the third guide segment 1347, and the fourth guide segment 1348 extend in different directions, forming an angle that limits the movement of the movable end 41, ensuring that the movable end 41 can be locked into the clamp. At the corner, the second locking position 1342 is lower than the first abutting position 1343 and the second abutting position 1344, and is located between the first abutting position 1343 and the second abutting position 1344 in the horizontal direction, so that a smooth transition is formed between the first abutting position 1343, the second locking position 1342 and the second abutting position 1344. When the smart ring 300 is pressed down, it enters the abutting position, and when the smart ring 300 moves away, it enters the locking position, and the transition is sequential, realizing the cycle of disassembly of the sliding table 13 pressing down bearing function module 340 and the reset cooperating pry bar structure 30.

[0042] Specifically, a first guide slope 135 is formed near the connection between the third guide segment 1347 and the second guide segment 1346. The inclination angle of the first guide slope 135 is smaller than that of the second guide segment 1346, thereby allowing the movable end 41 to slide stably from the second locking position 1342 to the second abutment position 1344 during the downward pressing of the slider 131. Similarly, a second guide slope 136 is formed near the connection between the first guide segment 1345 and the fourth guide segment 1348. The inclination angle of the second guide slope 136 is smaller than that of the fourth guide segment 1348, thereby allowing the movable end 41 to slide stably from the first locking position 1341 to the first abutment position 1343 during the downward pressing of the slider 131.

[0043] In one embodiment, each assembly slot 310 is provided with two fixing brackets 320 on both sides of the smart ring 300 circumferentially. Each disassembly tool 100 includes two opposing pry bar structures 30, each pry bar structure 30 corresponding to one of the two fixing brackets 320. The number of first elastic reset members 20 is the same as the number of pry bar structures 30 and they are arranged in a one-to-one correspondence. Each pry bar structure 30 includes an abutting end 321 and a rotating end 331. The rotating end 331 is hinged to the side wall of the receiving slot 211, and the abutting end 321 is used to abut against the fixing bracket 320. During the process of the smart ring 300 pushing the slide table 13 towards the bottom wall of the receiving slot 211, each abutting end 321 abuts against the fixing bracket 320 and swings away from the other abutting end 321 to push the fixing bracket 320 from the snap-fit ​​position to the release position. The first elastic reset member 20 is used to drive the abutting end 321 to swing towards the other abutting end 321 to reset the pry bar structure 30.

[0044] The two pry bar structures 30 correspond to the two fixing brackets 320 respectively. When the smart ring 300 pushes the slide table 13 to slide, each abutting end 321 abuts against the corresponding fixing bracket 320 and swings away from the other abutting end 321, pushing the two fixing brackets 320 simultaneously from the snap-fit ​​position to the release position. The two fixing brackets 320 provide a more secure fixation for the functional module 340, while the force applied from both sides can solve the problems of tilting, jamming, and uneven pressure of the functional module 340 caused by disassembly from one side, making the disengagement of the functional module 340 smoother and reducing the risk of wear on the fixing brackets 320.

[0045] In one embodiment, each pry bar structure 30 extends from its rotating end 331 away from the other pry bar structure 30 to form a pulling part 31. The two pulling parts 31 are connected by a connecting rope 50, and each pulling part 31 is connected to the side wall of the receiving groove 211 by a first elastic reset member 20. A stop post 137 is provided on the side of the slider 131 facing the pulling part 31. The stop post 137 is used to pull down the connecting rope 50 when the connecting rod 40 is engaged with the second locking position 1342, and to pull the two pulling parts 31 towards each other through the connecting rope 50, so that the two pry bar structures 30 move away from each other to move away from the functional module 340 supported on the support plate 133.

[0046] When the connecting rod 40 engages with the second locking position 1342, the abutment post 137 on the slider 131 pulls down the connecting rope 50, causing the two pulling parts 31 to pull in opposite directions. This drives the two pry bar structures 30 to move synchronously in opposite directions, moving each pry bar structure 30 away from the functional module 340 supported on the support plate 133. This prevents the pry bar structure 30 from contacting or colliding with the functional module 340, which could damage the functional module 340 or cause uneven stress on the functional module 340, thus improving the stability of the functional module 340.

[0047] Understandably, when the movable end 41 engages with the second locking position 1342, the slider 131 overcomes the elastic restoring force of the second elastic reset member 12 due to the engagement, causing the slider 131 to be positioned lower. At this time, the abutment post 137 can pull down the connecting rope 50. As mentioned earlier, when the movable end 41 engages with the second locking position 1342, it corresponds to the functional module 340 being removed from the assembly slot 310 and supported on the support plate 133. At this time, the connecting rope 50 pulls the two pulling parts 31 to move towards each other, and overcomes the elastic restoring force of the first elastic reset member 20 on each pulling part 31, causing the pry bar structure 30 to move away from the functional module 340. When the movable end 41 engages with the first latching position 1341, the functional module 340 is inserted into the assembly slot 310 and detached from the support plate 133. At this time, the slider 131 is not restricted by the second latching position 1342 and rises under the elastic restoring force of the second elastic reset member 12. The abutment post 137 does not contact the connecting rope 50, and the connecting rope 50 does not affect the elastic restoring force of the first elastic reset member 20. The first elastic reset member 20 pulls the pulling part 31, thereby driving the pry bar structure 30 to reset to a position that can be directly opposite the fixing frame 320, thereby achieving complete reset without affecting the next disassembly of the functional module 340. Specifically, the length of the connecting rope 50 is set such that when the two pulling parts 31 are pulled to the position directly opposite the fixed frame 320 by the two first elastic reset members 20, the distance between the two pulling parts 31 is equal, thereby balancing the tension of the connecting rope 50 with the elastic force of the first elastic reset member 20, and keeping the pry bar structure 30 directly opposite the fixed frame 320, thus preventing the first elastic reset member 20 from excessively pulling the pry bar structure 30 and causing it to lose its alignment with the fixed frame 320.

[0048] In one embodiment, two pry bar structures 30 are arranged opposite each other along a first horizontal direction. Each pry bar structure 30 includes a connecting rod 32 and two swing rods 33 located at both ends of the connecting rod 32. The two swing rods 33 are located on both sides of the slider 131 along a second horizontal direction. The first horizontal direction is perpendicular to the second horizontal direction. The end of each swing rod 33 away from the connecting rod 32 forms a rotating end 331, and the connecting rod 32 forms an abutting end 321. The two pulling parts 31 arranged on the same side are connected by a connector. The number of abutting posts 137 and connectors are the same and correspond one-to-one.

[0049] Two pry bar structures 30 are arranged opposite each other along the first horizontal direction, and two swing rods 33 are located on both sides of the slider 131 along the second horizontal direction, forming a symmetrical structure. This makes the force on the pry bar structure 30 more uniform, avoids deviation or damage due to uneven force, extends the service life of the pry bar structure 30, and improves the accuracy of the pry bar structure 30. The two pulling parts 31 arranged on the same side are connected by a connector, so that the pry bar and pulling part 31 on both sides can achieve the aforementioned balance effect.

[0050] In one embodiment, the functional module 340 is provided with a snap-fit ​​hole 350, and the fixing frame 320 is provided with a first snap-fit ​​block 330 for engaging with the snap-fit ​​hole 350 when the fixing frame 320 is in the snap-fit ​​position. When the fixing frame 320 is in the snap-fit ​​position, a gap 360 is formed between the snap-fit ​​hole 350 and the first snap-fit ​​block 330. The pry bar structure 30 is provided with a second snap-fit ​​block 34 corresponding to the position of the first snap-fit ​​hole 350. The second snap-fit ​​block 34 is used to extend into the gap 360 and abut against the first snap-fit ​​block 330 during the process of the smart ring 300 moving toward the support platform 10, so as to push the fixing frame 320 from the snap-fit ​​position to the release position.

[0051] The 360° gap design allows the second latching block 34 to precisely position the first latching block 330, providing guidance for the second latching block 34. This results in a larger contact area between the first latching block 330 and the second latching block 34, making it easier to push the fixing frame 320 through the contact of the first latching block 330 and the second latching block 34. When the pry bar structure 30 is in other states and is not directly opposite the support block, the pry bar structure 30 will not contact the fixing frame 320, preventing accidental removal of the functional module 340 due to user misoperation.

[0052] Below, I will explain in detail the entire disassembly and assembly process of the disassembly and assembly tool 100 with reference to the attached diagram: Please combine Figure 2 and Figure 3 , Figure 2 and Figure 3 These are two different perspectives of the smart ring 300 just as it moves to contact the support plate 133. At this time, the connecting rod 40 is engaged in the first engagement position 1341, the first elastic reset member 20 is balanced with the connecting rope 50, the pry bar structure 30 is in the position directly opposite the fixing frame 320 and extends into the gap 360 so that the first engagement block 330 and the second engagement block 34 abut against each other, the fixing frame 320 is in the locked position, the slider 131 is in the initial position, and the second elastic reset member 12 has not deformed. Please combine Figure 4 and Figure 5 , Figure 4 and Figure 5 The diagram shows two different perspectives of the smart ring 300 pressing down toward the support plate 133. The slider 131 slides down, and the connecting rod 40 slides from the first latching position 1341 to the first abutting position 1343, thereby stopping the slider 131 and preventing the smart ring 300 from pressing down further. At this time, the abutting post 137 on the slider 131 pulls down the connecting rope 50. The tension of the connecting rope 50 is greater than the elastic restoring force of the first elastic reset member 20. The connecting rope 50 pulls the two pulling parts 31 to move towards each other, thereby causing the pry bar structure 30 to move away from each other and push the fixing frame 320 to move to the relaxed position, thereby removing the functional module 340. Please see Figure 6 , Figure 6 When the functional module 340 is removed and the smart ring 300 is away from the support platform 10, the disassembly tool 100 is in this state. At this time, the slider 131 is not under downward pressure. Therefore, under the push of the second elastic reset member 12, the slider 131 rises to the point where the connecting rod 40 engages with the second locking position 1342. At this time, the abutment post 137 on the slider 131 pulls down the connecting rope 50. The tension of the connecting rope 50 is greater than the elastic restoring force of the first elastic reset member 20. The connecting rope 50 pulls the two pulling parts 31 to move towards each other, thereby causing the pry bar structure 30 to move away from each other. This makes the pry bar structure 30 and the functional module 340 spaced apart, avoiding damage caused by the pry bar structure 30 contacting the functional module 340. Please see Figure 7 , Figure 7 When installing the function module 340 into the smart ring 300, the function module 340 is pressed into the assembly slot 310, the connecting rod 40 abuts against the second abutment position 1344, and due to the pry bar structure 30 in... Figure 6 When in the unfolded state, the pry bar structure 30 and the fixing frame 320 are misaligned, so that the pry bar structure 30 will not push the fixing frame 320, thereby allowing the functional module 340 to be stably installed into the assembly slot 310. Please see Figure 8 , Figure 8 After the smart ring 300 moves away from the support platform 10, it loses the downward pressure and the engagement of the second locking position 1342. The second elastic reset member 12 pushes the slider 131 to the highest point. At this time, the connecting rod 40 engages with the first locking position 1341, and the second elastic reset member 12 and the connecting rope 50 return to the balanced position, so that the pry bar structure 30 can face the fixing frame 320, which facilitates the subsequent disassembly of the functional module 340.

[0053] The present invention also provides a charging case 200 for a smart ring 300, including a case body 210, a charging slot 212, and a plurality of the aforementioned disassembly and assembly tools 100. The case body 210 has a plurality of receiving slots 211 spaced apart. The number of disassembly and assembly tools 100 is the same as the number of receiving slots 211 and is arranged in a one-to-one correspondence. At least a portion of the support platform 10 of the disassembly and assembly tools 100 carries a functional module 340, and at least a portion of the support platform 10 of the disassembly and assembly tools 100 does not carry a functional module 340. The charging slot 212 is formed in the case body 210 and is spaced apart from the receiving slots 211. The charging slot 212 is an annular groove adapted to the shape of the smart ring 300, and a wireless charging module for charging the smart ring 300 is provided in the charging slot 212.

[0054] The charging case 200, using the aforementioned disassembly and assembly tool 100, allows users to quickly disassemble and assemble the functional modules 340. Furthermore, the design of multiple storage slots 211 allows it to accommodate multiple different functional modules 340, enabling users to replace modules of the smart ring 300 according to different scenarios, thus improving the user experience. When the user does not need to wear the smart ring 300, it can be placed in the charging slot 212 to prevent loss and simultaneously charge the smart ring 300.

[0055] In one embodiment, the charging case 200 further includes a cover 220, which is hinged to one side of the case 210 and can rotate relative to the housing to block the charging slot 212 and the receiving slot 211 or to open the charging slot 212 and the receiving slot 211.

[0056] The present invention also provides a smart ring 300 kit, including the charging case 200 and the smart ring 300 described above. The smart ring 300 is housed in the charging slot 212. The smart ring 300 has an assembly slot 310. The functional module 340 can be installed in the assembly slot 310 by means of a fixing bracket 320. The fixing bracket 320 can move between a snap-fit ​​position and a release position to correspondingly snap the functional module 340 into or out of the assembly slot 310.

[0057] The specific structure of the charging case 200 is as described in the above embodiments. Since this smart ring 300 kit adopts all the technical solutions of all the above embodiments, it has at least all the beneficial effects brought about by the technical solutions of the above embodiments, which will not be described in detail here.

[0058] The above are merely optional embodiments of the present invention and do not limit the patent scope of the present invention. All equivalent structural transformations made under the concept of the present invention using the contents of the specification and drawings of the present invention, or direct / indirect applications in other related technical fields, are included within the patent protection scope of the present invention.

Claims

1. A disassembly and assembly tool for assisting in the disassembly and assembly of a smart ring's functional module, characterized in that, The smart ring has an assembly slot, and the functional module can be installed in the assembly slot by a fixing bracket. The fixing bracket can move between a snap-fit ​​position and a release position to correspondingly snap the functional module into the assembly slot or release it from the assembly slot. The disassembly and assembly tool is used to be placed in a receiving groove. The disassembly and assembly tool includes a support platform, a first elastic reset member and a pry bar structure. The support platform is installed on the bottom wall of the receiving groove, the pry bar structure is hinged to the side wall of the receiving groove, and the first elastic reset member is connected to the pry bar structure and the side wall of the receiving groove respectively. As the smart ring moves toward the support platform, the pry bar structure abuts against the fixing frame and pushes the fixing frame from the snap-fit ​​position to the release position, so that the functional module is disengaged from the assembly slot and supported on the support platform; the first elastic reset member is used to undergo elastic deformation during the movement of the smart ring toward the support platform, and is used to reset the pry bar structure by elastic restoring force when the smart ring moves away from the support platform.

2. The disassembly and assembly tool as described in claim 1, characterized in that, The support platform includes a bracket, a second elastic reset member, and a slide. The bracket is installed on the bottom wall of the receiving groove, and the slide is slidably installed on the bracket. The second elastic reset member is connected to the bracket and the slide respectively. During the process of the smart ring moving towards the support platform to abut against the slide and pushing the slide towards the bottom wall of the receiving groove, the pry bar structure can abut against the fixing frame and push the fixing frame from the snap-fit ​​position to the release position, so that the functional module is disengaged from the assembly groove and supported on the support platform; the second elastic reset member is used to undergo elastic deformation during the sliding of the slide towards the bottom wall of the receiving groove, and is used to reset the slide by elastic restoring force when the smart ring moves away from the support platform.

3. The disassembly and assembly tool as described in claim 2, characterized in that, The slide includes a slider, a support rod, and a support plate. The bracket forms a sliding space that extends vertically. The slider is slidably disposed within the sliding space. The second elastic reset member is disposed at the bottom of the slider and connected to the bracket. The bottom of the support rod is connected to the slider. The support rod extends upward through the bracket, and the top of the support rod is connected to the support plate. The support plate is used to support the functional module.

4. The disassembly and assembly tool as described in claim 3, characterized in that, The slider has a closed annular guide groove on its side wall. The disassembly and assembly tool also includes a connecting rod. The top and bottom ends of the connecting rod are a movable end and a hinged end, respectively. The hinged end is hinged to the bottom of the bracket. The movable end extends into the guide groove. The extension path of the guide groove has a first locking position and a second locking position that engage with the movable end, as well as a first abutting position and a second abutting position that abut with the movable end. The extension path of the guide groove, except for the first locking position, the second locking position, the first abutting position, and the second abutting position, slides with the movable end. The movable end of the connecting rod can slide from the first engaging position to abut against the first abutting position during the process of the smart ring pushing the slide table towards the bottom wall of the receiving groove, and slide to engage with the second engaging position under the push of the second elastic reset member when the smart ring moves away from the support platform; the movable end of the connecting rod can also slide from the second engaging position to abut against the second abutting position during the process of the smart ring pushing the slide table towards the bottom wall of the receiving groove, and slide to engage with the first engaging position under the push of the second elastic reset member when the smart ring moves away from the support platform.

5. The disassembly and assembly tool as described in claim 4, characterized in that, Each of the assembly slots is provided with two fixing frames on both sides of the circumference of the smart ring. Each of the disassembly and assembly tools includes two opposing pry bar structures. The two pry bar structures correspond one-to-one with the two fixing frames. The number of the first elastic reset members is the same as the number of the pry bar structures and they are arranged in a one-to-one correspondence. Each pry bar structure includes an abutting end and a rotating end. The rotating end is hinged to the side wall of the receiving slot, and the abutting end is used to abut against the fixing frame. As the smart ring pushes the slide towards the bottom wall of the receiving groove, each of the abutting ends abuts against the fixing frame and swings away from the other abutting end to push the fixing frame from the snap-fit ​​position to the release position. The first elastic reset member is used to drive the abutting end to swing towards the other abutting end to reset the pry bar structure.

6. The disassembly and assembly tool as described in claim 5, characterized in that, Each of the pry bar structures extends from the rotating end in a direction away from the other pry bar structure to form a pulling part. The two pulling parts are connected by a connecting rope, and each pulling part is connected to the side wall of the receiving groove through a first elastic reset member. The slider has an abutment post on the side facing the pulling part. The abutment post is used to pull down the connecting rope when the connecting rod is engaged with the second locking position, and to pull the two pulling parts towards each other through the connecting rope, so that the two pry bar structures move away from each other and away from the functional module supported on the support plate.

7. The disassembly and assembly tool as described in claim 6, characterized in that, The two pry bar structures are arranged opposite each other along a first horizontal direction. Each pry bar structure includes a connecting rod and two swing rods respectively located at both ends of the connecting rod. The two swing rods are respectively located on both sides of the slider along a second horizontal direction. The first horizontal direction is perpendicular to the second horizontal direction. The end of each swing rod away from the connecting rod forms the rotating end, and the connecting rod forms the abutting end. The two pull parts arranged on the same side are connected by a connector, and the number of abutting posts and the connector are the same and correspond one-to-one.

8. The disassembly and assembly tool as described in any one of claims 1 to 7, characterized in that, The functional module is provided with a snap-fit ​​hole, and the fixing frame is provided with a first snap-fit ​​block for snapping into the snap-fit ​​hole when the fixing frame is in the snap-fit ​​position, and when the fixing frame is in the snap-fit ​​position, a gap is formed between the snap-fit ​​hole and the first snap-fit ​​block; The pry bar structure is provided with a second locking block at the position corresponding to the first locking hole. The second locking block is used to extend into the gap and abut against the first locking block during the movement of the smart ring toward the support platform, so as to push the fixing frame from the locking position to the releasing position.

9. A charging case for a smart ring, characterized in that, include: The box body has multiple receiving slots spaced apart inside; Multiple disassembly and assembly tools as described in any one of claims 1 to 8, wherein the number of disassembly and assembly tools is consistent with the number of receiving slots and is arranged in a one-to-one correspondence, at least a portion of the disassembly and assembly tools have the functional module supported on their support platforms, and at least a portion of the disassembly and assembly tools do not have the functional module supported on their support platforms; A charging slot is provided in the housing and is spaced apart from the receiving slot. The charging slot is an annular groove adapted to the shape of the smart ring, and a wireless charging module for charging the smart ring is provided inside the charging slot.

10. A smart ring kit, characterized in that, include: The charging case as described in claim 9; A smart ring is housed in the charging slot. The smart ring has an assembly slot. The functional module can be installed in the assembly slot by a fixing bracket. The fixing bracket can move between a snap-fit ​​position and a release position to correspondingly snap the functional module into or out of the assembly slot.