Glue filling device for titanium alloy intelligent ring
By designing the glue filling device for rotating components and adjustment components, the problem of uneven temperature during the glue filling process of titanium alloy smart ring is solved, uniform curing of glue is achieved, and structural stability and waterproof and dustproof performance are improved.
Patent Information
- Application Number
- CN202510549913.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-29
- Publication Date
- 2025-07-11
AI Technical Summary
During the curing process, the existing titanium alloy smart ring glue filling device leads to uneven temperatures on the upper and lower surfaces, resulting in uneven stress distribution within the glue, which may cause cracking, deformation or decreased adhesion, affecting structural stability and waterproof and dustproof performance.
A glue filling device including a rotating assembly and an adjustment assembly is designed. The rack and gear drive the rotation shaft and support frame to flip through an electric telescopic rod, and a micro-air flow field is formed in combination with the fan blades to ensure that the hot air evenly covers the surface of the ring and promotes uniform curing of the glue.
实现了上下表面胶水固化速度的一致性,减少温差,避免了开裂和变形,提升了结构稳定性和防水防尘性能。
Smart Images

Figure CN120286295A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of intelligent ring potting, and more specifically, it relates to a potting device for titanium alloy intelligent rings. Background Art
[0002] An intelligent ring is a wearable device integrating microelectronic components, sensors, and wireless communication technology, usually worn on the finger. It collects, processes, and transmits user data through built-in sensors and software algorithms. This data can include health indicators (such as heart rate, blood oxygen saturation, sleep quality), exercise data (such as steps, calorie consumption), and daily activity information, etc.
[0003] Currently, most intelligent rings on the market adopt a structural design of combining an outer titanium alloy with an internal epoxy resin filling. However, there are problems such as insufficient structural strength, poor durability, and low wearing comfort in the structural design of the internal epoxy resin filling. Therefore, the traditional epoxy resin inner ring will be abandoned, and an inner ring integrally formed of titanium alloy material will be adopted to ensure the consistency of the inner and outer ring materials and avoid deformation problems caused by differences in thermal expansion coefficients. After combining the titanium alloy inner ring and the outer ring through a precision mold, a highly adhesive colloid (such as modified silica gel) is injected, and a seamless connection is formed after high-temperature curing. The existing method for potting titanium alloy intelligent rings is as follows: First, the titanium alloy intelligent ring is pre-treated, then the titanium alloy intelligent ring is positioned and fixed, the next step is to prepare and defoam the glue, then the titanium alloy intelligent ring is quantitatively potted, the next step is to defoam, then gradient curing is carried out, and finally, the potted titanium alloy intelligent ring is processed and detected.
[0004] When the potting device for intelligent rings cures the glue, it usually achieves efficient and uniform curing through an oven or a heating plate. The oven raises the temperature, significantly accelerating the molecular movement and the chemical reaction rate, thereby shortening the curing time. The oven heats through hot air convection, but the hot air usually enters from the bottom or the side, resulting in a higher temperature in the area near the air inlet, while the upper surface (the area far from the air inlet) is insufficiently heated. At the same time, after potting, the glue flows downward under the action of gravity, resulting in a thicker glue layer on the lower surface, which requires longer time and higher heat to be completely dried during curing. The glue layer on the upper surface is thinner and will be prematurely cured due to excessive heating, and even surface hardening may occur but the inside is not completely cured. When the curing speeds of the upper and lower surfaces are different, it will cause uneven stress distribution inside the glue, leading to cracking, deformation, or a decrease in adhesion, directly affecting the structural stability and waterproof and dustproof performance of the intelligent ring.
[0005] Therefore, in order to solve the above technical problems, the present application proposes a potting device for titanium alloy intelligent rings. Summary of the Invention
[0006] Aiming at the deficiencies of the existing technology, the purpose of the present invention is to provide a glue filling device for a titanium alloy smart ring.
[0007] To achieve the above object, the present invention provides the following technical solutions: A glue filling device for a titanium alloy smart ring, including a drying oven, and an opening and closing component for heat preservation and heat insulation inside the drying oven is arranged on the drying oven; Among them, a rotating component for flipping the upper and lower surfaces of the smart ring is arranged on the drying oven; The rotating component includes a rotating shaft, a support frame, a gear, an electric telescopic rod, a rack and a slide rail; An adjusting component for covering hot air on the upper and lower surfaces of the smart ring is arranged on the rotating component; The adjusting component includes a connecting frame and a fan blade.
[0008] Preferably, the opening and closing component includes a support plate and a box door; Two support plates are vertically symmetrically installed at the inlet and outlet ends of the drying oven. A box door is rotatably installed between the two support plates. The box door can completely cover the inlet and outlet of the drying oven. A handle is installed on the box door to prevent the high-temperature hot air in the oven from leaking out and maintain the temperature uniformity in the box.
[0009] Preferably, a plurality of fans are installed at the bottom end inside the drying oven, and an exhaust pipe communicating with the drying oven is installed at the upper end of the drying oven to facilitate the discharge of moisture in the drying oven.
[0010] Preferably, a plurality of rotating shafts are vertically equidistantly installed on the drying oven. Each rotating shaft penetrates through the drying oven and can rotate on the drying oven. A support frame is installed at one end of each rotating shaft inside the drying oven, and a gear is installed at one end of each rotating shaft outside the drying oven; An electric telescopic rod is installed on one side of each gear outside the drying oven. A rack is installed at the telescopic end of the electric telescopic rod. The rack meshes with each gear. A vertical slide rail is opened on one side of the rack outside the drying oven. The rack can slide vertically in the slide rail to facilitate reciprocating flipping of the smart ring.
[0011] Preferably, connecting frames are obliquely symmetrically installed on each support frame, and fan blades are installed on each connecting frame to facilitate the airflow to more evenly cover the curved surface and edge area of the smart ring and promote uniform curing of the glue.
[0012] Preferably, a clamping assembly is installed in each of the support frames. Each clamping assembly includes a hydraulic telescopic rod, a stabilizing plate, a clamping plate and an anti-slip pad. Hydraulic telescopic rods are connected to both symmetric sides of each support frame. The telescopic end of each hydraulic telescopic rod is connected to a stabilizing plate. A plurality of clamping plates are installed on each stabilizing plate, and an anti-slip pad is installed on each clamping plate, facilitating the clamping of the smart ring.
[0013] Compared with the prior art, the present invention has the following beneficial effects: 1. In the present invention, through the rotation assembly provided on the drying oven, the electric telescopic rod will be started. When the electric telescopic rod is started, it will drive the connected rack to perform vertical reset movement in the slide rail. When the rack performs vertical reciprocating movement, it will drive each gear meshed with it to perform reciprocating rotation. When each gear performs reciprocating rotation, it will drive the connected rotating shaft to perform reciprocating rotation. When the rotating shaft performs reciprocating rotation, it will drive the connected support frame to perform reciprocating rotation. When the support frame performs reciprocating rotation, it will drive the connected clamping assembly to perform reciprocating rotation together. At the same time, the smart ring clamped by the clamping assembly will perform reciprocating rotation together. Through dynamic heat exchange and gravity-assisted flow, the effect of uniform curing of the glue on the upper and lower surfaces is improved, thus solving the problem in the background technology that when the curing speeds of the upper and lower surfaces are different, it will lead to uneven stress distribution inside the glue, which will cause cracking, deformation or a decrease in adhesion, directly affecting the structural stability and waterproof and dustproof performance of the smart ring.
[0014] 2. In the present invention, through the adjustment assembly provided on each support frame, when each support frame performs reciprocating rotation, it will drive the connected connecting frame to perform reciprocating rotation. When each connecting frame rotates, it will drive the fan blades connected in their respective connecting frames to perform reciprocating rotation. When each fan blade performs reciprocating rotation, a micro-airflow field will be formed around each smart ring, continuously "brushing" the hot air in the oven over the surface of the smart ring, reducing the temperature difference between the upper and lower surfaces, and effectively enabling the airflow to more evenly cover the curved surface and edge area of the smart ring, promoting uniform curing of the glue. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] The drawings described herein are used to provide a further understanding of the present invention, form a part of this application, and the schematic embodiments of the present invention and their descriptions are used to explain the present invention, and do not constitute an improper limitation to the present invention. In the drawings: Figure 1 is a schematic structural diagram of the whole of the present invention; Figure 2 is a schematic structural diagram of the drying oven in the present invention; Figure 3 is a schematic structural diagram of the support frame in the present invention; Figure 4 is a schematic structural diagram of the rack in the present invention; Figure 5 This is a schematic structural diagram of the hydraulic telescopic rod in the present invention.
[0016] 1. Drying box; 2. Opening and closing assembly; 201. Support plate; 202. Box door; 203. Handle; 3. Fan; 4. Exhaust pipe; 5. Rotating assembly; 501. Rotating shaft; 502. Support frame; 503. Gear; 504. Electric telescopic rod; 505. Rack; 506. Slide rail; 6. Adjusting assembly; 601. Connecting frame; 602. Fan blade; 7. Clamping assembly; 701. Hydraulic telescopic rod; 702. Stabilizing plate; 703. Clamping plate; 704. Anti-slip pad. Specific embodiments
[0017] As Figures 1-5 shown, the present invention provides a glue filling device for a titanium alloy smart ring, including a drying box 1, and an opening and closing assembly 2 for heat preservation and heat insulation inside the drying box 1. It is used to achieve that the operator holds the handle 203 and then rotates the box door 202 between the two support plates 201 until the box door 202 closes the drying box 1, so as to prevent the high-temperature hot air inside the oven from leaking out and maintain the temperature uniformity inside the box; The opening and closing assembly 2 includes a support plate 201 and a box door 202. Two support plates 201 are vertically symmetrically installed at the inlet and outlet ends of the drying box 1, which is used to ensure the stable rotation of the box door 202. The box door 202 is rotatably installed between the two support plates 201, which is used to open and close the drying box 1. The box door 202 can completely cover the inlet and outlet of the drying box 1. A handle 203 is installed on the box door 202, which is used to facilitate the operator's hand-holding.
[0018] Among them, a rotating assembly 5 for flipping the upper and lower surfaces of the smart ring is provided on the drying box 1. It is used to achieve that the electric telescopic rod 504 makes the rack 505 slide vertically in the slide rail 506. When the rack 505 slides vertically, each gear 503 will reciprocally rotate. When each gear 503 reciprocally rotates, the legs of each connected rotating shaft 501 will reciprocally rotate. When each rotating shaft 501 rotates, the legs of the connected support frame 502 will reciprocally rotate. When each support frame 502 reciprocally rotates, the smart ring clamped by the clamping assembly 7 will reciprocally flip, so as to ensure the uniform distribution of internal stress in the glue of the smart ring and effectively make the curing speeds of the upper and lower surfaces of the smart ring consistent; The rotating assembly 5 includes a rotating shaft 501, a support frame 502, a gear 503, an electric telescopic rod 504, a rack 505 and a slide rail 506. A plurality of rotating shafts 501 are vertically and equidistantly installed on the drying oven 1, which are used to drive the connected support frame 502 to rotate synchronously through the rotation of the rotating shaft 501. Each rotating shaft 501 is installed through the drying oven 1 and can rotate on the drying oven 1. One end of each rotating shaft 501 inside the drying oven 1 is installed with a support frame 502, which is used to drive the clamping assembly 7, and one end of each rotating shaft 501 outside the drying oven 1 is installed with a gear 503, which is used to drive the connected rotating shaft 501 to rotate synchronously through the rotation of the gear 503; On one side of each gear 503 outside the drying oven 1, an electric telescopic rod 504 is installed, which is used to control the vertical reciprocating movement of the rack 505. The telescopic end of the electric telescopic rod 504 is installed with a rack 505, which is used to control the reciprocating rotation of each gear 503. The rack 505 meshes with each gear 503. On one side of the rack 505 outside the drying oven 1, a vertical slide rail 506 is provided, which is used to ensure the stability of the rack 505 during vertical reciprocating sliding. The rack 505 can slide vertically in the slide rail 506.
[0019] An adjusting assembly 6 for covering hot air on the upper and lower surfaces of the smart ring is provided on the rotating assembly 5. When each support frame 502 reciprocates, it will drive the connecting frame 601 connected to it to reciprocate. When each connecting frame 601 rotates, it will drive the fan blades 602 connected in their respective connecting frames 601 to reciprocate. When each fan blade 602 reciprocates, a micro air flow field will be formed around each smart ring, continuously "brushing" the hot air in the oven over the surface of the smart ring, reducing the temperature difference between the upper and lower surfaces, and effectively enabling the air flow to cover the curved surface and edge area of the smart ring more evenly, promoting uniform curing of the glue; The adjusting assembly 6 includes a connecting frame 601 and fan blades 602. The connecting frame 601 is obliquely and symmetrically installed on each support frame 502, which is used to ensure the stability of the fan blades 602. Each connecting frame 601 is installed with fan blades 602, which are used to drive the fan blades 602 to reciprocate following the support frame 502, so as to form a micro air flow field around each smart ring, effectively promoting uniform curing of the glue.
[0020] A plurality of fans 3 are installed at the bottom end inside the drying oven 1, which are used to optimize the temperature uniformity, humidity control and curing efficiency in the oven through forced convection and air flow circulation. An exhaust pipe 4 communicating with the drying oven 1 is installed at the upper end of the drying oven 1, which is used to discharge volatile gases and moisture.
[0021] A clamping assembly 7 is installed in each support frame 502, which is used to clamp the smart ring. Each clamping assembly 7 includes a hydraulic telescopic rod 701, a stabilizing plate 702, a clamping plate 703, and an anti-slip pad 704. Hydraulic telescopic rods 701 are connected to both symmetric sides of each support frame 502, which are used to control the lateral movement of the stabilizing plate 702. The telescopic end of each hydraulic telescopic rod 701 is connected to a stabilizing plate 702, which is used to ensure the stability of the clamping plate 703. A plurality of clamping plates 703 are installed on each stabilizing plate 702, which are used to clamp the smart ring. An anti-slip pad 704 is installed on each clamping plate 703, which is used to improve the anti-slip performance when clamping the smart ring.
[0022] Working principle: When it is necessary to dry and cure the smart ring after glue injection, first place the smart ring between each pair of clamping plates 703. Next, start the hydraulic telescopic rod 701. When the hydraulic telescopic rod 701 starts, it will drive the connected cross plates to move closer to each other. When each stabilizing plate 702 moves closer to each other, it will also drive each connected clamping plate 703 to move together. When each clamping plate 703 moves, it will drive the anti-slip pad 704 connected to each clamping plate 703 to move together until two corresponding clamping plates 703 clamp the smart ring. Next, hold the handle 203 and then rotate the door 202 between the two support plates 201 until the door 202 closes the drying oven 1. Next, start the drying oven 1 and the fan 3 inside the drying oven 1. At this time, the glue in each smart ring clamped by the clamping assembly 7 will be cured by the baking of the drying oven 1. When starting the drying oven 1, the electric telescopic rod 504 will be started at the same time. When the electric telescopic rod 504 starts, it will drive the connected rack 505 to perform a vertical reset movement in the slide rail 506. When the rack 505 performs a vertical reciprocating movement, it will drive each gear 503 meshed with it to perform a reciprocating rotation. When each gear 503 performs a reciprocating rotation, it will drive the connected rotating shaft 501 to perform a reciprocating rotation. When the reciprocating rotation of the rotating shaft 501 will drive the connected support frame 502 to perform a reciprocating rotation. When the support frame 502 performs a reciprocating rotation, it will drive the connected clamping assembly 7 to perform a reciprocating rotation together. At the same time, the smart rings clamped by the clamping assembly 7 will perform a reciprocating rotation together. Through dynamic heat exchange and gravity-assisted flow, the effect of uniform curing of the glue on the upper and lower surfaces is improved. When each support frame 502 rotates reciprocally, it will drive the connecting frame 601 connected thereto to rotate reciprocally. When each connecting frame 601 rotates, it will drive the fan blades 602 connected in their respective connecting frames 601 to rotate reciprocally. When each fan blade 602 rotates reciprocally, a micro airflow field will be formed around each smart ring, continuously "brushing" the hot air in the oven over the surface of the smart ring, reducing the temperature difference between the upper and lower surfaces, so as to achieve a more uniform coverage of the curved surface and edge area of the smart ring by the airflow and promote uniform curing of the glue.
[0023] The above is only a preferred embodiment of the present invention and does not impose any form of limitation on the present invention. Any ordinary technician in the industry can smoothly implement the present invention as shown in the accompanying drawings of the specification and described above. However, any equivalent changes such as slight modifications, refinements, and evolutions made by those skilled in the art within the scope of the technical solution of the present invention using the technical content disclosed above are equivalent embodiments of the present invention. At the same time, any equivalent changes, modifications, and evolutions made to the above embodiments based on the essential technology of the present invention still fall within the protection scope of the technical solution of the present invention.
Claims
1. A glue filling device for a titanium alloy intelligent ring, comprising a drying box (1), characterized in that: An opening and closing component (2) for heat preservation and heat insulation inside the drying box (1) is provided on the drying box (1); Among them, a rotating component (5) for flipping the upper and lower surfaces of the smart ring is provided on the drying box (1); The rotating component (5) includes a rotating shaft (501), a support frame (502), a gear (503), an electric telescopic rod (504), a rack (505) and a slide rail (506); An adjusting component (6) for covering the upper and lower surfaces of the smart ring with hot air is provided on the rotating component (5); The adjusting component (6) includes a connecting frame (601) and a fan blade (602).
2. The potting device for a titanium alloy smart ring according to claim 1, characterized in that: The opening and closing component (2) includes a support plate (201) and a box door (202); Two support plates (201) are vertically symmetrically installed at the inlet and outlet ends of the drying box (1). A box door (202) is rotatably installed between the two support plates (201). The box door (202) can completely cover the inlet and outlet of the drying box (1). A handle (203) is installed on the box door (202).
3. The potting device for a titanium alloy smart ring according to claim 1, characterized in that: A plurality of fans (3) are installed at the bottom end inside the drying box (1), and an exhaust pipe (4) communicated with the drying box (1) is installed at the upper end of the drying box (1).
4. The potting device for a titanium alloy smart ring according to claim 1, characterized in that: A plurality of rotating shafts (501) are vertically and equidistantly installed on the drying box (1). Each rotating shaft (501) is installed through the drying box (1) and can rotate on the drying box (1). A support frame (502) is installed at one end of each rotating shaft (501) inside the drying box (1), and a gear (503) is installed at one end of each rotating shaft (501) outside the drying box (1); An electric telescopic rod (504) is installed on one side of each gear (503) outside the drying box (1). A rack (505) is installed at the telescopic end of the electric telescopic rod (504). The rack (505) meshes with each gear (503). A vertical slide rail (506) is opened on one side of the rack (505) outside the drying box (1). The rack (505) can slide vertically in the slide rail (506).
5. The potting device for a titanium alloy smart ring according to claim 4, characterized in that: A connecting frame (601) is obliquely symmetrically installed on each support frame (502), and a fan blade (602) is installed on each connecting frame (601).
6. The potting device for a titanium alloy smart ring according to claim 4, wherein: A clamping component (7) is installed in each support frame (502). Each clamping component (7) includes a hydraulic telescopic rod (701), a stabilizing plate (702), a clamping plate (703) and an anti-slip pad (704). Hydraulic telescopic rods (701) are connected to both symmetric sides of each support frame (502). The telescopic end of each hydraulic telescopic rod (701) is connected to a stabilizing plate (702). A plurality of clamping plates (703) are installed on each stabilizing plate (702). An anti-slip pad (704) is installed on each clamping plate (703).