Automatic assembling and bonding all-in-one machine for filaments and gold ornaments

By designing an automatic placement component with a CCD camera and an ornament fixing component with adjustable angle, the problem of fast and accurate placement of filigree decorations on the surface of special-shaped ornaments is solved, and the unified reliability and efficient production of filigree decorations are achieved.

CN223447398UActive Publication Date: 2025-10-17LAOFENGXIANG DONGGUAN JEWELRY CO LTD
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Patent Information

Application Number
CN202423089899.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-13
Publication Date
2025-10-17
Estimated Expiration
2034-12-13

AI Technical Summary

Technical Problem

Existing automatic placement equipment is difficult to quickly and accurately place filigree decorations on the surface of special-shaped jewelry, and the quality of the filigree decorations is inconsistent.

Method used

Design an automatic placement component with a CCD camera and an angle-adjustable jewelry fixing component, combined with an automatic forming component, to achieve rapid forming and precise placement of filigree.

Benefits of technology

It achieves fast and accurate placement on the surface of special-shaped ornaments, ensures the quality of filigree ornaments is uniform and reliable, and improves the operation efficiency and effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

An automatic assembling and bonding all-in-one machine for filigree gold ornaments comprises a processing table, a filigree forming assembly, a filigree bearing assembly, an ornament fixing assembly, an automatic surface mounting assembly and an intelligent control system, and the filigree forming assembly, the filigree bearing assembly, the ornament fixing assembly and the automatic surface mounting assembly are all arranged on the processing table. The intelligent control system is in signal connection with the filament forming assembly, the ornament fixing assembly and the automatic surface mounting assembly. And the automatic mounting assembly comprises a transverse sliding frame, a longitudinal sliding frame, a lifting sliding frame, a mounting clamping jaw, a transverse driving motor, a longitudinal driving motor, a lifting driving motor and a CCD (Charge Coupled Device) camera. According to the utility model, the automatic mounting assembly with the CCD camera is designed and is matched with the angle-adjustable ornament fixing assembly, so that filaments can be quickly and accurately mounted on the surfaces of the special-shaped ornaments; a filament forming assembly capable of automatically forming is designed, and a large number of filament ornaments can be rapidly formed; the utility model has the advantages of strong practicability and strong popularization significance.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a jewelry processing equipment especially a flower silk gold jewelry automatic assembly and adhesive integrated machine. BACKGROUND

[0002] The flower silk is a kind of decoration that metal material silk line is bent into a certain shape pattern and is pasted on the surface of jewelry in large quantities to greatly improve the appearance effect. Since the flower silk decoration is very small and the number of pasting is often more, the manual pasting method is not only difficult to operate, but also low in efficiency, and the pasting effect is uneven. Now there is also a method of using automatic pasting equipment to automatically paste flower silk decoration on jewelry, but the conventional automatic pasting equipment is mostly a simple automatic mechanical arm that repeatedly pastes, which can only paste flower silk on flat jewelry, and cannot paste on some special-shaped jewelry. SUMMARY

[0003] Therefore, it is necessary to provide a flower silk gold jewelry automatic assembly and adhesive integrated machine to solve the above problems.

[0004] A flower silk gold jewelry automatic assembly and adhesive integrated machine, comprising a processing table, a flower silk forming assembly, a flower silk bearing assembly, a jewelry fixing assembly, an automatic pasting assembly and an intelligent control system, the flower silk forming assembly, the flower silk bearing assembly, the jewelry fixing assembly and the automatic pasting assembly are all installed on the processing table, and the intelligent control system is signal connected with the flower silk forming assembly, the jewelry fixing assembly and the automatic pasting assembly respectively. The automatic pasting assembly comprises a horizontal slide, a vertical slide, a lifting slide, a pasting clamp jaw, a horizontal drive motor, a vertical drive motor, a lifting drive motor and a CCD camera. The horizontal slide stands on the processing table, the vertical slide is hingedly installed on the upper end of the horizontal slide and can slide left and right, the lifting slide is hingedly installed on one side of the vertical slide and can slide back and forth, the pasting clamp jaw is hingedly installed on one side of the lifting slide and can move up and down, the horizontal drive motor, the vertical drive motor and the lifting drive motor are installed on the horizontal slide, the vertical slide and the lifting slide respectively, and the horizontal drive motor, the vertical drive motor and the lifting drive motor are power connected with the vertical slide, the lifting slide and the pasting clamp jaw respectively, and the CCD camera is vertically downwardly installed on one side of the pasting clamp jaw, and the CCD camera is also signal connected with the intelligent control system.

[0005] Further, the flower filament forming assembly comprises a mounting base, a feeding device, a cutting device and a forming device. The mounting base is arranged on the processing table and located at the left front side of the automatic mounting assembly. The feeding device, the cutting device and the forming device are sequentially arranged horizontally on one side of the mounting base. The forming device comprises a forming die holder, a clamping rod, a clamping needle, a first push plate, a second push plate and a forming shaft. The forming die holder is fixedly arranged on one side of the mounting base. The clamping rod and the clamping needle are arranged on the forming die holder and can be telescopically moved. The first push plate and the second push plate are clamped on the forming die holder and can be pushed to slide. The first push plate is located at the right side of the clamping rod and the clamping needle. The second push plate is located at the left lower side of the clamping rod and the clamping needle. The forming shaft is oppositely arranged at the front side of the clamping rod and the clamping needle and can be telescopically moved and rotated. The forming device further comprises a plurality of forming cylinders and forming motors. The plurality of forming cylinders and forming motors respectively drive the clamping rod, the clamping needle, the first push plate, the second push plate and the forming shaft to slide, telescopically move or rotate.

[0006] Further, the feeding device comprises a feeding rack, a feeding clamp, a clamping cylinder and a feeding cylinder. The feeding rack is fixedly arranged on the mounting base and located at the left side of the cutting device. The feeding rack is further provided with a feeding slide rail. The feeding clamp is clamped on the feeding slide rail. The clamping cylinder is arranged on the feeding clamp and can drive the feeding clamp to be opened and closed. The feeding cylinder is arranged on the feeding rack and can drive the feeding clamp to slide leftward and rightward along the feeding slide rail.

[0007] Further, the cutting device comprises a cutting rack, an anvil, a cutter and a pressing cylinder. The cutting rack is fixedly arranged on the feeding rack and located between the feeding device and the forming device. The anvil is arranged at the right side of the cutting rack. The cutter is clamped on the cutting rack and located above the anvil. The pressing cylinder is fixedly arranged at the upper end of the cutting rack and can drive the cutter to be raised and lowered.

[0008] Further, the flower filament bearing assembly comprises a bearing base, a flower filament bearing disc and a discharging slide. The bearing base is fixedly arranged on the processing table. The flower filament bearing disc is fixedly arranged at the upper end of the bearing base. The discharging slide is arranged obliquely on one side of the flower filament bearing disc. The other end of the discharging slide is connected with the flower filament forming assembly. The flower filament bearing assembly further comprises a glue bearing disc. The glue bearing disc is arranged on the processing table and located between the flower filament bearing disc and the ornament fixing assembly.

[0009] Further, the ornament fixing assembly comprises a fixing base, an adjusting base, an adjusting motor, a fixing clamp and a clamping cylinder.

[0010] To sum up, the automatic assembling and bonding integrated machine for flower silk gold ornament has the advantages that the automatic pasting assembly with a CCD camera and the ornament fixing assembly with adjustable angle can quickly and accurately paste the flower silk on the surface of the special-shaped ornament; the flower silk forming assembly can quickly form a large number of flower silk decorations, and the quality of the flower silk decorations is more uniform and reliable; and the automatic assembling and bonding integrated machine for flower silk gold ornament has strong practicability and strong popularization significance. BRIEF DESCRIPTION OF DRAWINGS

[0011] Figure 1 Fig. 1 is a structural schematic view of the automatic assembling and bonding integrated machine for flower silk gold ornament;

[0012] Figure 2 Fig. 2 is an exploded structural schematic view of the flower silk forming assembly in Fig. 1; Figure 1

[0013] Figure 3 Fig. 3 is a structural schematic view of the feeding device in Fig. 1; Figure 2

[0014] Figure 4 Fig. 4 is an exploded structural schematic view of the cutting device in Fig. 1; Figure 2

[0015] Figure 5 Fig. 5 is an exploded structural schematic view of the forming device in Fig. 1; Figure 2

[0016] Figure 6 Fig. 6 is a structural schematic view of the flower silk bearing assembly in Fig. 1; Figure 1

[0017] Figure 7 Fig. 7 is an exploded structural schematic view of the ornament fixing assembly in Fig. 1; Figure 1

[0018] Figure 8 Fig. 8 is a structural schematic view of the automatic pasting assembly in Fig. 1. Figure 1 DETAILED DESCRIPTION

[0019] ​​​​​​​In order to make the utility model purposes, technical solutions and advantages more clearly, the utility model is further described in detail below in combination with the drawings and examples. It should be understood that the specific examples described herein are only used to explain the utility model and not to limit the utility model.

[0020] As shown in Figures 1 to 8 The utility model provides a flower silk gold ornament automatic assembly bonding integrated machine 100, it includes processing platform 10, flower silk forming assembly 20, flower silk bearing assembly 30, ornament fixing assembly 40, automatic pasting assembly 50 and intelligent control system 60, flower silk forming assembly 20, flower silk bearing assembly 30, ornament fixing assembly 40 and automatic pasting assembly 50 are all installed on processing platform 10, and intelligent control system 60 is connected with flower silk forming assembly 20, ornament fixing assembly 40 and automatic pasting assembly 50 signal respectively. It can be understood that the utility model also includes a plurality of power, gas source and sensor structure, since it is all the conventional technical content of the technical field, therefore, will not repeat.

[0021] The flower silk forming assembly 20 includes mounting seat 21, feeding device 22, cutting device 23 and forming device 24. The mounting seat 21 is installed on the processing platform 10 and located at the left front side of the automatic pasting assembly 50, the feeding device 22, cutting device 23 and forming device 24 are sequentially horizontally installed on one side of the mounting seat 21.

[0022] The feeding device 22 includes feeding rack 221, feeding clamp 222, clamping cylinder 223 and feeding cylinder 224. The feeding rack 221 is fixedly installed on the mounting seat 21 and located at the left side of the cutting device 23, and a feeding slide rail 221a is further arranged on the feeding rack 221, the feeding clamp 222 is clamped and installed on the feeding slide rail 221a, the clamping cylinder 223 is installed on the feeding clamp 222 and can drive the feeding clamp 222 to open and close, and the feeding cylinder 224 is installed on the feeding rack 221 and can drive the feeding clamp 222 to slide left and right along the feeding slide rail 221a. When feeding, only need to pass the metal wire into the feeding clamp 222, the clamping cylinder 223 and the feeding cylinder 224 will cooperate to drive the wire to forward transmission, automatic feeding is not only efficient and reliable, but also more secure than manual feeding.

[0023] The cutting device 23 comprises a cutting frame 231, an anvil plate 232, a cutting knife 233 and a cutting cylinder 234. The cutting frame 231 is fixedly installed on the feeding frame 221 and located between the feeding device 22 and the forming device 24. The anvil plate 232 is installed on the right side of the cutting frame 231. The cutting knife 233 is hingedly installed on the cutting frame 231 and located above the anvil plate 232. The cutting cylinder 234 is fixedly installed on the upper end of the cutting frame 231 and can drive the cutting knife 233 to move up and down. The cutting device 23 can cut the metal wire into the same length more accurately, so that the shape and size of the formed flower decoration are more uniform.

[0024] The forming device 24 comprises a forming die seat 241, a clamping rod 242, a clamping needle 243, a first push plate 244, a second push plate 245 and a forming shaft 246. The forming die seat 241 is fixedly installed on one side of the mounting seat 21. The clamping rod 242 and the clamping needle 243 are both installed on the forming die seat 241 and can move up and down. The first push plate 244 and the second push plate 245 are both hingedly installed on the forming die seat 241 and can be pushed to slide. The first push plate 244 is located on the right side of the clamping rod 242 and the clamping needle 243. The second push plate 245 is located on the lower left side of the clamping rod 242 and the clamping needle 243. The forming shaft 246 is oppositely arranged on the front side of the clamping rod 242 and the clamping needle 243 and can move up and down and rotate. The forming device 24 further comprises a plurality of forming cylinders 247 and a forming motor 248. The plurality of forming cylinders 247 and the forming motor 248 respectively drive the clamping rod 242, the clamping needle 243, the first push plate 244, the second push plate 245 and the forming shaft 246 to slide, extend or rotate.

[0025] When the metal wire enters the forming device 24, the clamping rod 242 and the clamping needle 243 first clamp one side of the wire, and the wire is preliminarily bent by the pushing of the first push plate 244 and the second push plate 245. Then the forming shaft 246 approaches one end of the clamping rod 242 and the clamping needle 243 and starts to rotate in one direction. Under the action of the forming shaft 246 at one end, the wire is further spirally bent into a flower decoration. Finally, the clamping rod 242 and the clamping needle 243 release the clamping of the flower decoration, and the flower decoration falls under the action of its own gravity.

[0026] The flower filament bearing assembly 30 comprises a bearing seat 31, a flower filament bearing disc 32 and a discharging chute 33. The bearing seat 31 is fixedly arranged on the processing table 10. The flower filament bearing disc 32 is fixedly arranged on the upper end of the bearing seat 31. The discharging chute 33 is arranged on one side of the flower filament bearing disc 32 in an inclined manner. The other end of the discharging chute 33 is connected with the flower filament forming assembly 20. The flower filament bearing assembly 30 further comprises a glue bearing disc 34. The glue bearing disc 34 is arranged on the processing table 10 and located between the flower filament bearing disc 32 and the ornament fixing assembly 40. The flower filament decorations falling after forming will fall on the discharging chute 33 arranged in an inclined manner. Under the guidance of the discharging chute 33, the flower filament decorations will finally fall into the flower filament bearing disc 32 so as to be taken by the subsequent automatic attaching assembly 50.

[0027] The ornament fixing assembly 40 comprises a fixing seat 41, an adjusting seat 42, an adjusting motor 43, a fixing clamp 44 and a clamping cylinder 45. The fixing seat 41 is fixedly arranged on the processing table 10. The adjusting seat 42 is shaft-connected to the fixing seat 41 and can be rotatably moved. The adjusting motor 43 is arranged on one side of the fixing seat 41 and is power-connected with the adjusting seat 42. The fixing clamp 44 comprises a first clamp body 441 and a second clamp body 442. The first clamp body 441 is fixedly arranged on the adjusting seat 42. The second clamp body 442 is slidingly arranged on the adjusting seat 42 and is arranged opposite to the first clamp body 441. The clamping cylinder 45 is arranged on one side of the adjusting seat 42 and is power-connected with the second clamp body 442. The second clamp body 442 is further provided with a rotating motor 442a.

[0028] When fixing the special-shaped ornament, the ornament is only needed to be placed between the first clamp body 441 and the second clamp body 442. The clamping cylinder 45 will automatically push the second clamp body 442 to cooperate with the first clamp body 441 to clamp and fix the ornament. When attaching the flower filament, the angle of the area to be attached on the surface of the ornament can be adjusted under the cooperation of the adjusting seat 42 and the adjusting motor 43, so that the area to be attached is kept vertically corresponding with the automatic attaching assembly 50. Meanwhile, the rotating motor 442a on the second clamp body 442 can also drive the ornament to rotate, so that the flower filament decorations can be attached and processed around the surface of the ornament.

[0029] The automatic mounting assembly 50 comprises a transverse slide 51, a longitudinal slide 52, a lifting slide 53, a mounting clamp jaw 54, a transverse drive motor 55, a longitudinal drive motor 56, a lifting drive motor 57 and a CCD camera 58. The transverse slide 51 is vertically arranged on the processing table 10, the longitudinal slide 52 is clamped and arranged on the upper end of the transverse slide 51 and can slide left and right, the lifting slide 53 is clamped and arranged on one side of the longitudinal slide 52 and can slide forward and backward, the mounting clamp jaw 54 is clamped and arranged on one side of the lifting slide 53 and can move up and down, the transverse drive motor 55, the longitudinal drive motor 56 and the lifting drive motor 57 are arranged on the transverse slide 51, the longitudinal slide 52 and the lifting slide 53 respectively, and the transverse drive motor 55, the longitudinal drive motor 56 and the lifting drive motor 57 are power-connected with the longitudinal slide 52, the lifting slide 53 and the mounting clamp jaw 54 respectively, and the CCD camera 58 is vertically arranged on one side of the mounting clamp jaw 54 and is signal-connected with the intelligent control system 60.

[0030] When the flower wire is automatically mounted, the mounting clamp jaw 54 is first moved along the slide direction under the drive of the drive motor and positioned at the flower wire bearing disc 32, the flower wire decoration is accurately clamped under the assistance of the CCD camera 58, and then the flower wire decoration is dipped in glue in the glue bearing disc 34. Then the mounting clamp jaw 54 moves the flower wire decoration to above the fixed assembly and the fixed jewelry, the CCD camera 58 is started again to judge the up-down alignment of the flower wire decoration and the surface of the jewelry to be mounted, and when the alignment is best, the flower wire decoration dipped in glue is accurately adhered to the surface of the jewelry. Under the assistance of the alignment of the CCD camera 58 and the accurate adjustment and mounting operation of the automatic mounting assembly 50 and the jewelry fixing assembly 40, the equipment can completely complete the fast and reliable mounting processing of the flower wire decoration on the surface of the special-shaped jewelry.

[0031] In summary, the flower wire gold jewelry automatic assembly and adhesion integrated machine 100 has the advantages that the automatic mounting assembly 50 with the CCD camera 58 and the jewelry fixing assembly 40 with adjustable angle can realize the fast and accurate mounting of the flower wire on the surface of the special-shaped jewelry, the automatic flower wire forming assembly 20 can quickly form a large number of flower wire decorations, and the quality of the flower wire decoration is more uniform and reliable, and the flower wire gold jewelry automatic assembly and adhesion integrated machine 100 has strong practicability and strong popularization significance.

[0032] The above-described embodiment only expresses one implementation of the utility model, and the description is more specific and detailed, but it cannot be understood as the limitation of the utility model patent range. It should be pointed out that for ordinary skilled persons in the art, some modifications and improvements can be made without departing from the concept of the utility model, and these all belong to the protection range of the utility model. Therefore, the protection range of the utility model patent should be subject to the appended claims.

Claims

1. An automatic assembly and gluing machine for filigree gold ornaments, characterized by: The invention comprises a processing table, a filigree forming component, a filigree bearing component, an ornament fixing component, an automatic mounting component and an intelligent control system. The filigree forming component, the filigree bearing component, the ornament fixing component and the automatic mounting component are all installed on the processing table. The intelligent control system is respectively connected to the filigree forming component, the ornament fixing component and the automatic mounting component by signal; the automatic mounting component comprises a horizontal slide, a vertical slide, a lifting slide, a mounting clamp, a horizontal drive motor, a vertical drive motor, a lifting drive motor and a CCD camera; the horizontal slide stands on the processing table, and the vertical slide is engaged with the mounting clamp. It is located at the upper end of the transverse slide and can slide left and right. The lifting slide is mounted on one side of the longitudinal slide and can slide back and forth. The mounting clamp is mounted on one side of the lifting slide and can be moved up and down. The transverse drive motor, longitudinal drive motor and lifting drive motor are respectively mounted on the transverse slide, longitudinal slide and lifting slide, and the transverse drive motor, longitudinal drive motor and lifting drive motor are respectively connected to the longitudinal slide, lifting slide and mounting clamp. The CCD camera is mounted vertically downward on one side of the mounting clamp, and the CCD camera is also connected to the intelligent control system signal.

2. The automatic assembly and bonding machine for filigree gold ornaments according to claim 1, characterized in that: The filament forming assembly includes a mounting seat, a feeding device, a cutting device and a forming device; the mounting seat is mounted on the processing table and is located on the left front side of the automatic mounting assembly, and the feeding device, cutting device and forming device are horizontally mounted on one side of the mounting seat in sequence; the forming device includes a forming die seat, a clamping rod, a clamping needle, a first push plate, a second push plate and a forming rotating shaft, the forming die seat is fixedly mounted on one side of the mounting seat, the clamping rod and the clamping needle are both mounted on the forming die seat and are movable and retractable, the first push plate and the second push plate are both snap-fitted and mounted on the forming die seat and can be pushed and slid, wherein the first push plate is located on the right side of the clamping rod and the clamping needle, and the second push plate is located on the lower left side of the clamping rod and the clamping needle, and the forming rotating shaft is relatively arranged on the front side of the clamping rod and the clamping needle and can be movably extended, retracted and rotated; the forming device also includes a plurality of forming cylinders and forming motors, and the plurality of forming cylinders and forming motors respectively drive the clamping rod, the clamping needle, the first push plate, the second push plate and the forming rotating shaft to slide, retract or rotate.

3. The automatic assembly and bonding machine for filigree gold ornaments according to claim 2, characterized in that: The feeding device includes a feeding rack, a feeding clamp, a clamping cylinder and a feeding cylinder; the feeding rack is fixedly mounted on the mounting seat and is located on the left side of the cutting device, and the feeding rack is also provided with a feeding slide rail, the feeding clamp is clamped and mounted on the feeding slide rail, the clamping cylinder is mounted on the feeding clamp and can drive the feeding clamp to open and close, and the feeding cylinder is mounted on the feeding rack and can drive the feeding clamp to slide left and right along the feeding slide rail.

4. The automatic assembly and bonding machine for filigree gold ornaments according to claim 2, characterized in that: The cutting device includes a cutting frame, an anvil, a cutter and a pressure-cutting cylinder; the cutting frame is fixedly mounted on the feeding frame and is located between the feeding device and the forming device, the anvil is mounted on the right side of the cutting frame, the cutter is clamped and mounted on the cutting frame and is located above the anvil, and the pressure-cutting cylinder is fixedly mounted on the upper end of the cutting frame and can drive the cutter to move up and down.

5. The automatic assembly and bonding machine for filigree gold ornaments according to claim 1, characterized in that: The filigree bearing assembly includes a bearing seat, a filigree bearing plate and a discharge chute. The bearing seat is fixedly mounted on the processing table, the filigree bearing plate is fixedly mounted on the upper end of the bearing seat, the discharge chute is obliquely mounted on one side of the filigree bearing plate, and the other end of the discharge chute is connected to the filigree forming assembly; the filigree bearing assembly also includes a glue bearing plate, which is mounted on the processing table and is located between the filigree bearing plate and the jewelry fixing assembly.

6. The automatic assembly and gluing machine for filigree gold ornaments according to claim 1, characterized in that: The jewelry fixing assembly includes a fixing seat, an adjusting seat, an adjusting motor, a fixing clamp and a clamping cylinder; the fixing seat is fixedly mounted on the processing table, the adjusting seat is axially connected to the fixing seat and can rotate movably, the adjusting motor is mounted on one side of the fixing seat and is dynamically connected to the adjusting seat; the fixing clamp includes a first clamping body and a second clamping body, the first clamping body is fixedly mounted on the adjusting seat, the second clamping body is slidably mounted on the adjusting seat and is arranged opposite to the first clamping body, the clamping cylinder is mounted on one side of the adjusting seat and is dynamically connected to the second clamping body, and the second clamping body is also provided with a rotating motor.