Manufacturing apparatus of smart ring and corresponding manufacturing method of apparatus

By combining shaping molds and plastic molds, the problems of adhesive adhesion and cleaning difficulties in the manufacturing of smart rings have been solved, realizing a smart ring manufacturing equipment with high-efficiency production and convenient testing, thus improving production efficiency and finished product quality.

CN119952986BActive Publication Date: 2025-12-09JUNSON SHENZHEN CHUANJINDAIYIN TECH CO LTD
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Patent Information

Application Number
CN202510374231.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-03-27
Publication Date
2025-12-09
Estimated Expiration
2045-03-27

AI Technical Summary

Technical Problem

In the manufacturing of smart rings using existing technology, adhesive material tends to adhere to the outer surface of the ring, making subsequent cleaning difficult, especially when the ring body is made of precious metal. Furthermore, once the movement is fixed, it is inconvenient to inspect and remove, which affects production efficiency.

Method used

The raw material movement is shaped into a ring movement using a molding die, and then the molded cavity is filled with adhesive to form a cured finished movement. The use of an elastic adhesive mold facilitates operation and observation, and prevents the adhesive from adhering to the outer surface of the ring. The combination of positioning grooves and core posts improves accuracy and operational efficiency.

Benefits of technology

This design prevents adhesive from easily adhering to the outer surface of the ring, simplifies the cleaning process, improves production efficiency, and ensures convenient inspection and assembly of the movement, thereby enhancing both production efficiency and finished product quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application provides a manufacturing equipment of a smart ring and a corresponding equipment manufacturing method. The smart ring comprises a ring body and a core. The manufacturing equipment of the smart ring comprises a shaping die and a glue die. The shaping die comprises a die base and a die core, and a concave step is formed between the die core and the die base. A raw core is arranged around the outer periphery of the die core and positioned in the concave step. A shaping material is used to shape the raw core into a ring-shaped core. The glue die comprises an outer ring die body and an inner ring die body positioned inside the outer ring die body. A cavity for arranging the ring-shaped core is formed between the outer ring die body and the inner ring die body. The manufacturing equipment of the smart ring of the application shapes the raw core into the ring-shaped core through the shaping die first, then places the ring-shaped core into the cavity of the glue die, and forms a finished core with solidified glue by injecting glue into the cavity. The finished core can be conveniently assembled to the inner side of the ring body later, and the outer surface of the ring body is not easy to be contaminated, thereby saving the cleaning work of the ring body and improving the production efficiency.
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Description

TECHNICAL FIELD

[0001] The present application relates to the field of ring manufacturing equipment, in particular to a smart ring manufacturing equipment and a corresponding equipment manufacturing method. BACKGROUND

[0002] With the development of technology, more and more smart devices have gradually integrated into our daily life, from smart phones to smart watches, to the now much-anticipated smart rings. Smart rings are a kind of wearable devices that can integrate micro electronic components, sensors and wireless communication technology. It is small in size and powerful in function. A smart ring generally includes an external ring body and a movement assembled inside the ring body.

[0003] In the prior art, when manufacturing a smart ring, the movement is first assembled into the ring body, and then the ring body with the assembled movement is placed in the corresponding glue injection mold, and then glue is injected into the inside of the ring body. After the glue solidifies, the movement can be fixed in the ring body. However, this method is prone to glue overflow and can easily stick glue to the outer surface of the ring, making it difficult to clean up later, especially when the ring body is made of precious metal. It is not convenient to use friction and other cleaning methods to clean the glue adhered to the outer surface of the ring body, which is very troublesome.

[0004] Therefore, it is necessary to provide a smart ring manufacturing equipment to solve the above technical problems. SUMMARY

[0005] The present application provides a smart ring manufacturing equipment to solve the problem that the existing technology is prone to sticking glue to the outer surface of the ring when manufacturing a smart ring, making it difficult to clean up later.

[0006] To solve the above technical problems, the technical scheme of the present application is as follows: a smart ring manufacturing equipment, wherein the smart ring includes a ring body and a movement assembled inside the ring body, the movement before the smart ring is manufactured is a raw material movement, the raw material movement includes a flexible circuit board in the shape of a long strip and electronic components arranged on one side of the flexible circuit board, and the smart ring manufacturing equipment includes a shaping mold and a glue mold.

[0007] The shaping mold includes shaping material, a mold base, and a mold core arranged on one side of the mold base, the outer diameter of the mold core is smaller than the outer diameter of the mold base, so that a concave step is formed between the mold core and the mold base, the raw material movement is positioned in the concave step, and the raw material movement surrounds the outer periphery of the mold core, the side of the raw material movement where the electronic components are arranged faces the mold core, and the shaping material shapes the raw material movement into a ring-shaped movement.

[0008] The glue mold comprises an outer ring mold body and an inner ring mold body inside the outer ring mold body, a cavity for arranging the ring-shaped movement is formed between the outer ring mold body and the inner ring mold body, the inner ring mold body is provided with glue injection holes communicating with the cavity for injecting glue and exhaust holes communicating with the cavity for exhausting.

[0009] In the present application, the glue mold is made of elastic glue material, the outer ring mold body and the inner ring mold body are arranged through in the same direction, the first end edge of the outer periphery of the inner ring mold body is connected with the edge of one end of the inner side of the outer ring mold body as an integral structure, and the inner ring mold body can be flipped from the inner side of the outer ring mold body to the outside of the outer ring mold body.

[0010] Among them, the second end of the outer periphery of the inner ring mold body is provided with a convex ring part, the inner wall of the outer ring mold body, the outer wall of the inner ring mold body and the convex ring part form the cavity, and the glue injection hole and the exhaust hole are arranged on the convex ring part.

[0011] Further, the outer periphery of the convex ring part is provided with an outer conical section, the inner side wall of the outer ring mold body is provided with an inner conical section corresponding to the outer conical section, and the smaller inner diameter end of the inner conical section is connected with the cavity.

[0012] In addition, the glue mold further comprises a core column, the core column is arranged in the inner ring mold body, and the outer diameter of the core column is equal to the inner diameter of the inner ring mold body.

[0013] In the present application, the positioning groove for positioning the electronic elements on the raw material movement is arranged on the peripheral side surface of the mold core, and the positioning groove penetrates the end surface of the mold core away from the mold base.

[0014] In the present application, the setting material is glue, and the glue is adhered to the two end portions of the raw material movement.

[0015] In the present application, the setting material is a rubber band or a rubber ring, and the rubber band or the rubber ring is wrapped around the outer side surface of the raw material movement.

[0016] The present application also comprises a manufacturing method of an intelligent ring manufacturing equipment, which uses a forming mold to manufacture the glue mold of the intelligent ring manufacturing equipment, and the forming mold comprises a mold main body, a standard female ring body and a positioning column.

[0017] One side of the mold body is provided with a containing groove, a core is arranged in the containing groove, a plurality of positioning columns are arranged in the containing groove, the plurality of positioning columns are distributed on the circumferential side of the core and are arranged at a distance from the core, the axial extension direction of the positioning column is parallel to the axial extension direction of the core, the axial end face of the standard female circle body is provided with a positioning hole corresponding to the positioning column, and the inner diameter of the standard female circle body is greater than the outer diameter of the core.

[0018] The manufacturing method of the intelligent ring manufacturing equipment comprises the following steps:

[0019] Step S11: The standard female circle body is placed into the containing groove, the standard female circle body is sleeved on the outer periphery of the core, and the positioning hole of the standard female circle body is positioned and matched with the positioning column, and the standard female circle body is arranged at a distance from the outer side surface of the core and from the inner side surface and inner bottom surface of the containing groove.

[0020] Step S12: A mold cavity is formed between the standard female circle body and the inner wall of the containing groove and the side wall of the core, and glue is injected into the mold cavity.

[0021] Step S13: After the glue in the mold cavity is cured, a glue mold is formed, the glue mold is taken out of the containing groove and is separated from the positioning column, and the positioning column forms the glue injection hole or the exhaust hole on the glue mold.

[0022] Step S14: The glue mold is cut open on the side where the glue injection hole is located, and the standard female circle body is taken out.

[0023] In the present application, the mold body comprises a barrel member and a bottom plate, the core is arranged on one side of the bottom plate, one side of the bottom plate where the core is arranged is provided with a boss portion, one end of the barrel member is sleeved on the outer periphery of the boss portion, and the containing groove is formed between the inner cavity of the barrel member and the bottom plate.

[0024] The step S13 further comprises: after the glue in the mold cavity is cured, the barrel member is separated from the bottom plate, and then the glue mold is separated from the core, so that the glue mold is taken out.

[0025] Compared with the prior art, the intelligent ring manufacturing equipment of the present application first shapes the raw material core into a ring-shaped core through a shaping mold, then places the ring-shaped core into the cavity of the glue mold, forms a finished core with cured glue by injecting glue into the cavity, and subsequently conveniently assembles the finished core into the inner side of the ring body, so that the outer surface of the ring body is not easily contaminated, the cleaning work of the ring body is saved, and the production is more efficient. Attached Figure Description

[0026] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the drawings used in the embodiments are briefly introduced below. The drawings described below are only the corresponding drawings of some embodiments of the present invention.

[0027] Figure 1 This is a schematic diagram of the molding die of the manufacturing equipment for the smart ring of the present invention.

[0028] Figure 2 This is a schematic diagram of the structure of the plastic mold used in the manufacturing equipment for the smart ring of the present invention.

[0029] Figure 3 This is a cross-sectional view of the plastic mold used in the manufacturing equipment for the smart ring of the present invention.

[0030] Figure 4 for Figure 3 A cross-sectional view of the inner ring mold body of the plastic mold when it is turned out to the outside of the outer ring mold body.

[0031] Figure 5 This is a schematic diagram of the molding die in the manufacturing method of the smart ring manufacturing equipment of the present invention.

[0032] Figure 6 for Figure 5 An exploded view of the molding die.

[0033] Figure 7 This is a flowchart of the manufacturing method of the smart ring manufacturing equipment of the present invention. Detailed Implementation

[0034] 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 some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0035] The directional terms mentioned in this invention, such as "up", "down", "front", "back", "left", "right", "inner", "outer", "side", "top" and "bottom", are only for reference to the orientation of the accompanying drawings. The directional terms used are for the purpose of explaining and understanding this invention, and are not intended to limit this invention.

[0036] In the present application, unless specifically defined and limited otherwise, the terms "mounting", "connecting", "connecting", "fixing" and the like should be broadly interpreted, for example, the connection can be detachable connection, or integral structure connection; can be mechanical connection, or electrical connection; can be directly connected, or indirectly connected through an intermediate medium, can be the internal communication of two elements or the interaction relationship of two elements. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.

[0037] In the prior art, when manufacturing the intelligent ring, the movement is first assembled into the ring body, and then the ring body with the assembled movement is placed in the corresponding glue injection mold, and then the glue is injected into the ring body. After the glue solidifies, the movement can be fixed in the ring body. However, this method is prone to glue overflow and glue adhesion on the outer surface of the ring, which is difficult to clean subsequently, especially when the ring body is made of precious metal. It is not convenient to use friction and other cleaning methods to clean the glue adhered to the outer surface of the ring body, which is very troublesome.

[0038] On the other hand, after the movement is fixed in the ring body, the function of the movement needs to be detected to determine whether it is qualified. The unqualified products detected need to be taken out from the ring body, which is very difficult to operate, wastes working hours and has low production efficiency.

[0039] The following is a preferred embodiment of an intelligent ring manufacturing equipment provided by the present application which can solve the above technical problems.

[0040] Please refer to Figures 1-3 In the drawings, similar elements are denoted by the same reference numerals.

[0041] The present embodiment provides an intelligent ring manufacturing equipment.

[0042] The intelligent ring includes a ring body and a movement assembled inside the ring body. The movement before the intelligent ring is manufactured is a raw material movement, which includes a long strip-shaped flexible circuit board and electronic components arranged on one side of the flexible circuit board. The electronic components on the flexible circuit board can include a battery, a chip, a sensor and the like.

[0043] The intelligent ring manufacturing equipment of the present embodiment includes a shaping mold 1 and a glue mold 3. The shaping mold 1 is used to shape the movement into a ring-shaped movement 21. The glue mold 3 is used to carry the ring-shaped movement 21 and to inject glue around the ring-shaped movement 21 to form a finished movement with solidified glue.

[0044] The shaping mold 1 comprises shaping material, a mold base 11, and a mold core 12 arranged on one side of the mold base 11. The mold core 12 has an outer diameter smaller than that of the mold base 11, so that a concave step 13 is formed between the mold core 12 and the mold base 11. The raw material movement is positioned in the concave step 13, and the raw material movement surrounds the outer periphery of the mold core 12. The side of the raw material movement provided with electronic components faces the mold core 12. Then, the raw material movement can be shaped into an annular movement 21 by using the shaping material, so that the annular movement 21 can maintain an annular structure by the shaping material.

[0045] The glue mold 3 comprises an outer ring mold body 31 and an inner ring mold body 32 arranged on the inner side of the outer ring mold body 31. The outer ring mold body 31 and the inner ring mold body 32 form a cavity 34 for arranging the annular movement 21 therebetween. The inner ring mold body 32 is provided with glue injection holes 35 communicating with the cavity 34 for injecting glue, and exhaust holes 36 communicating with the cavity 34 for exhausting air. A plurality of exhaust holes 36 can be arranged.

[0046] It should be noted that after the glue is injected into the cavity 34, the glue mold 3 can be placed in a pressurized and heated container to comprehensively exhaust and fix the glue in the cavity 34. Subsequently, burr inspection and cleaning work can be performed on the cured finished movement, repair work can be performed on the missing holes, and the function of the movement can be detected to determine whether it is qualified.

[0047] Among them, a charging interface corresponding to the battery can be arranged. Before the annular movement 21 is arranged in the cavity 34 for glue injection, an isolation sheet can be attached to the charging interface. After the glue is injected and cured, the charging interface can be exposed by tearing off the isolation sheet.

[0048] In addition, before the annular movement 21 is arranged in the cavity 34, the annular movement 21 can be immersed in glue, and then taken out and arranged in the cavity 34. In this way, it can be further ensured that the outer periphery of the annular movement 21 is wrapped with cured glue.

[0049] Please refer to Figure 3 and Figure 4 In the embodiment, the glue mold 3 is made of elastic glue material. The outer ring mold body 31 and the inner ring mold body 32 are arranged through in the same direction. The first end edge of the outer periphery of the inner ring mold body 32 is connected to the edge of one end of the inner side of the outer ring mold body 31 as an integral structure. The inner ring mold body 32 can be flipped out from the inner side of the outer ring mold body 31 to the outside of the outer ring mold body 31.

[0050] Before the ring-shaped movement 21 is loaded into the cavity 34, the inner ring-shaped mold body 32 can be pressed to deform and turn out to the outside of the outer ring-shaped mold body 31, so that the cavity 34 is completely open, and the ring-shaped movement 21 can be loaded into the cavity 34 conveniently, and the operation efficiency is high. When the ring-shaped movement 21 is loaded into the cavity 34, the second end of the inner ring-shaped mold body 32 is pinched to deform, and then the inner ring-shaped mold body 32 is pushed into the inner ring-shaped mold body 31, and the inner ring-shaped mold body 32 is automatically combined with the outer ring-shaped mold body 31 under the action of the elastic force of the inner ring-shaped mold body 32.

[0051] The glue mold 3 in the embodiment is transparent, so that the injection of glue into the cavity 34 can be observed, such as the fullness of the glue filled into the cavity 34 and the bubble situation of the glue in the cavity 34. At the same time, when the glue is injected into the cavity 34, the situation in the cavity 34 can be observed, and the needle tube can be conveniently inserted into the cavity 34 to expel the bubbles.

[0052] In the embodiment, the second end of the outer periphery of the inner ring-shaped mold body 32 is provided with a convex ring part 321, the inner wall of the outer ring-shaped mold body 31, the outer wall of the inner ring-shaped mold body 32 and the convex ring part 321 form the cavity 34, and the glue injection hole 35 and the exhaust hole 36 are arranged on the convex ring part 321.

[0053] Further, the outer periphery of the convex ring part 321 is provided with an outer conical section 3211, the inner side wall of the outer ring-shaped mold body 31 is provided with an inner conical section 341 corresponding to the outer conical section 3211, and the smaller inner diameter end of the inner conical section 341 is connected to the cavity 34. The inner conical section 341 facilitates the loading of the ring-shaped movement 21 into the cavity 34, and the cooperation of the outer conical section 3211 and the inner conical section 341 also makes the sealing effect better.

[0054] In the embodiment, the glue mold 3 further comprises a core column 33 arranged in the inner ring-shaped mold body 32, and the outer diameter of the core column 33 is equal to the inner diameter of the inner ring-shaped mold body 32. The core column 33 can support the inner ring-shaped mold body 32, so that the size precision of the finished movement formed after the glue injection is higher and the quality is better.

[0055] Preferably, the axial length of the core column 33 is greater than the axial length of the inner ring-shaped mold body 32, which facilitates disassembly and assembly.

[0056] In the embodiment, the peripheral side surface of the mold core 12 is provided with a positioning groove 14 for positioning the electronic element on the raw material movement, and the positioning groove 14 penetrates through the end surface of the mold core 12 away from the mold base 11, so that the electronic element can slide out of the positioning groove 14.

[0057] Optionally, the glue in the present application can be glue, which is used to connect the two end portions of the raw material movement, and the glue solidifies to keep the ring-shaped movement 21 in a ring-shaped structure.

[0058] Optionally, the shaping material can be a tape or a ring, the tape is wrapped around the outer side of the raw core, and the tape makes the ring core 21 maintain the ring structure through adhesion. The ring can be elastically reduced or expanded, and the ring is wrapped around the outer side of the raw core to make the ring core 21 maintain the ring structure.

[0059] The working principle of the manufacturing equipment of the smart ring in the embodiment is as follows: the raw core is positioned in the concave step 13 and wrapped around the outer periphery of the mold core 12. It is noted that the side of the raw core provided with the electronic elements faces the mold core 12, and each electronic element needs to correspond to a respective positioning groove. Then, the shaping material is used to shape the raw core into the ring core 21.

[0060] After the ring core 21 is shaped, the ring core 21 is taken off the shaping mold 1, the isolation sheet can be attached at the charging interface, and then the ring core 21 is immersed in the glue material.

[0061] On the other hand, the inner ring mold body 32 is deformed and flipped out to the outside of the outer ring mold body 31, so that the cavity 34 is completely opened, and then the ring core 21 immersed in the glue material is loaded into the cavity 34. Then, the second end of the inner ring mold body 32 is deformed, and then the inner ring mold body 32 is pushed into the inner side of the outer ring mold body 31, and the inner ring mold body 32 is automatically combined with the outer ring mold body 31 under the elastic force of the inner ring mold body 32. Then, the core column 33 is inserted into the inner ring mold body 32.

[0062] Then, the glue is injected into the cavity 34 through the glue injection hole 35, and the exhaust hole 36 is used for exhaust. After the glue material is injected into the cavity 34, the glue mold 3 can be placed in a pressurized and heated container to comprehensively exhaust and fix and shape the glue material in the cavity 34. After the glue material is solidified, the finished core is formed, the inner ring mold body 32 is flipped out from the inner side of the outer ring mold body 31 to the outside of the outer ring mold body 31, the finished core is taken out from the glue mold 3, and then the isolation sheet is torn off to expose the charging interface.

[0063] Finally, burr inspection and cleaning work are performed on the finished core after solidification, repair work is performed on the missing holes, and whether the function of the core is qualified or not is detected.

[0064] In this way, the process of manufacturing the finished core of the smart ring manufacturing equipment in the embodiment is completed.

[0065] Please refer to Figure 5 and Figure 6 The application also includes a manufacturing method of a smart ring manufacturing equipment, which uses a forming mold 4 to manufacture the glue mold 3 of the smart ring manufacturing equipment, and the forming mold 4 includes a mold main body 41, a standard female ring body 42, and a positioning column 43.

[0066] One side of the mold body 41 is provided with a containing groove 414, a core 413 is arranged in the containing groove 414, a plurality of positioning columns 43 are arranged in the containing groove 414, the positioning columns 43 are distributed on the circumferential side of the core 413 and are arranged at a distance from the core 413, the axial extension direction of the positioning column 43 is parallel to the axial extension direction of the core 413, the axial end face of the standard female circle body 42 is provided with a positioning hole corresponding to the positioning column 43, and the inner diameter of the standard female circle body 42 is greater than the outer diameter of the core 413.

[0067] The manufacturing method of the intelligent ring manufacturing equipment comprises the following steps:

[0068] Step S11: Place the standard female circle body 42 into the containing groove 414, the standard female circle body 42 is sleeved on the outer periphery of the core 413, and the positioning hole of the standard female circle body 42 is positioned and matched with the positioning column 43, and the standard female circle body 42 is arranged at a distance from the outer side surface of the core 413 and from the inner side surface and inner bottom surface of the containing groove 414.

[0069] Wherein, before the standard female circle body 42, the surface of the standard female circle body 42 can be polished, so that the inner wall of the cavity formed by the subsequent glue mold 3 is smoother, and the quality of the finished product movement manufactured is better, and the finished product movement is convenient for assembling into the ring body.

[0070] Step S12: The standard female circle body 42 and the inner wall of the containing groove 414 and the side wall of the core 413 form a mold cavity, and the glue is injected into the mold cavity.

[0071] Wherein, before the glue is injected into the mold cavity, a defoaming operation can be performed. After the glue is injected into the mold cavity, the glue can be horizontally stationary and wait for the glue to solidify.

[0072] Step S13: The glue in the mold cavity is solidified to form a glue mold 3, the glue mold 3 is taken out from the containing groove 414 and separated from the positioning column 43, and the positioning column 43 forms a glue injection hole 35 or an exhaust hole 36 on the glue mold 3.

[0073] Step S14: On the side of the glue injection hole on the glue mold 3, the glue mold 3 is cut open corresponding to the position of the standard female circle body 42, and the standard female circle body 42 is taken out. Then the manufactured glue mold 3 is checked in detail, and if it is qualified, it can be used to manufacture the finished product movement.

[0074] Wherein, the cut plane is in a conical shape, and the end with a smaller inner diameter of the plane is in butt joint with the outer diameter position of the standard female circle body 42. The cut plane forms an outer conical section 3211 and an inner conical section 341.

[0075] Please refer to Figure 6Further, the mold body 41 in the embodiment further comprises a barrel member 411 and a bottom plate 412. The core 413 is arranged on one side of the bottom plate 412, and the side of the bottom plate 412 on which the core 413 is arranged is provided with a boss portion 4121, one end of the barrel member 411 is sleeved on the outer periphery of the boss portion 4121, and a containing groove 414 is formed between the inner cavity of the barrel member 411 and the bottom plate 412.

[0076] The step S13 can further comprise: after the glue in the mold cavity is cured, separating the barrel member 411 from the bottom plate 412, and then separating the glue mold 3 from the core 413, so as to take out the glue mold 3, and the operation is more convenient.

[0077] The manufacturing equipment of the smart ring of the preferred embodiment first shapes the raw material movement core into a ring-shaped movement core through the shaping mold, then places the ring-shaped movement core into the mold cavity of the glue mold, forms the finished movement core with cured glue by injecting glue into the mold cavity, and then conveniently assembles the finished movement core into the inside of the ring body, so that the outer surface of the ring body is not easy to be contaminated, the cleaning work of the ring body is saved, and the production is more efficient.

[0078] In conclusion, although the present application has been disclosed as above with the preferred embodiments, the above preferred embodiments are not used to limit the present application, and those skilled in the art can make various changes and decorations without departing from the spirit and scope of the present application, therefore the protection scope of the present application is subject to the scope defined by the claims.

Claims

1. A manufacturing apparatus of a smart ring, characterized by, The intelligent ring comprises a ring body and a core assembled inside the ring body, the core before manufacturing the intelligent ring is a raw core, the raw core comprises a long strip-shaped flexible circuit board and electronic components arranged on one side of the flexible circuit board, the manufacturing equipment of the intelligent ring comprises a shaping mold and a glue mold; The shaping mold comprises shaping material, a mold base and a mold core arranged on one side of the mold base, the outer diameter of the mold core is smaller than the outer diameter of the mold base, so that a concave step is formed between the mold core and the mold base, the raw core is positioned in the concave step and surrounds the outer periphery of the mold core, the side of the raw core provided with the electronic components faces the mold core, and the shaping material shapes the raw core into a ring-shaped core; The glue mold comprises an outer ring mold body and an inner ring mold body inside the outer ring mold body, a cavity for arranging the ring-shaped core is formed between the outer ring mold body and the inner ring mold body, the inner ring mold body is provided with glue injection holes communicating with the cavity for injecting glue material and exhaust holes communicating with the cavity for exhausting air; The glue mold is made of elastic glue material, the outer ring mold body and the inner ring mold body are arranged through in the same direction, the first end edge of the outer periphery of the inner ring mold body is connected with the edge of one side of the inner side of the outer ring mold body as an integral structure, and the inner ring mold body can be flipped from the inner side of the outer ring mold body to the outside of the outer ring mold body.

2. The manufacturing apparatus of the smart ring according to claim 1, wherein, The second end of the outer periphery of the inner ring mold body is provided with a convex ring part, the inner wall of the outer ring mold body, the outer wall of the inner ring mold body and the convex ring part form the cavity, and the glue injection holes and the exhaust holes are arranged on the convex ring part.

3. The apparatus for manufacturing a smart ring according to claim 2, wherein, The outer periphery of the convex ring part is provided with an outer conical section, the inner side wall of the outer ring mold body is provided with an inner conical section corresponding to the outer conical section, and the smaller inner diameter end of the inner conical section is connected with the cavity.

4. The manufacturing apparatus of the smart ring according to claim 1, wherein, The glue mold further comprises a core column, the core column is arranged in the inner ring mold body, and the outer diameter of the core column is equal to the inner diameter of the inner ring mold body.

5. The apparatus for manufacturing a smart ring according to claim 1, wherein, The side surface of the mold core is provided with a positioning groove for positioning the electronic components on the raw core, and the positioning groove penetrates the end surface of the mold core away from the mold base.

6. The apparatus for manufacturing a smart ring according to claim 1, wherein The shaping material is glue, and the glue connects the two end parts of the raw core.

7. The apparatus for manufacturing a smart ring according to claim 1, wherein The shaping material is a rubber band or a rubber ring, and the rubber band or the rubber ring is wrapped around the outer side surface of the raw core.

8. A manufacturing method of an intelligent ring manufacturing apparatus, characterized by, The glue mold of the intelligent ring manufacturing equipment of any one of claims 1-7 is manufactured by using a forming mold, and the forming mold comprises a mold main body, a standard female ring body and positioning columns; One side of the mold main body is provided with a containing groove, a core body is arranged in the containing groove, a plurality of positioning columns are arranged in the containing groove, the plurality of positioning columns are distributed on the periphery of the core body and are away from the core body by a certain distance, the axial extension direction of the positioning columns is parallel to the axial extension direction of the core body, the axial end surface of the standard female ring body is provided with positioning holes corresponding to the positioning columns, and the inner diameter of the standard female ring body is greater than the outer diameter of the core body; The manufacturing method of the intelligent ring manufacturing equipment comprises the following steps: Step S11: placing the standard female ring body into the accommodating groove, the standard female ring body being sleeved on the outer periphery of the core body, and the positioning hole of the standard female ring body being positioned and matched with the positioning column, the standard female ring body being away from the outer side surface of the core body, and the inner side surface and the inner bottom surface of the accommodating groove by a set distance; Step S12: forming a mold cavity between the standard female ring body and the inner wall of the accommodating groove and the side wall of the core body, and injecting rubber material into the mold cavity; Step S13: forming a rubber mold after the rubber material in the mold cavity is cured, taking out the rubber mold from the accommodating groove, and separating the rubber mold from the positioning column, the positioning column forming the injection hole or the exhaust hole on the rubber mold; Step S14: cutting the rubber mold on the side where the injection hole of the rubber mold is located, and taking out the standard female ring body corresponding to the position of the standard female ring body.

9. The manufacturing method of the smart ring manufacturing apparatus according to claim 8, wherein, The mold body comprises a barrel member and a bottom plate, the core body is arranged on one side of the bottom plate, and the side of the bottom plate where the core body is arranged is provided with a boss portion, one end of the barrel member is sleeved on the outer periphery of the boss portion, and the inner cavity of the barrel member and the bottom plate form the accommodating groove; The step S13 further comprises: after the rubber material in the mold cavity is cured, separating the barrel member from the bottom plate, and then separating the rubber mold from the core body, so as to take out the rubber mold.

Citation Information

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