Dual-band composite laser welding equipment for gold ornaments

By designing a dual-band composite laser welding equipment and utilizing the synergistic effect of multiple components, precise positioning and stable support of gold chain ornaments were achieved. This solved the problems of inconsistent positioning and insufficient support in non-welded parts in traditional welding devices, thus improving welding accuracy and efficiency.

CN121972802APending Publication Date: 2026-05-05SHENZHEN JINBAI JEWELRY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
SHENZHEN JINBAI JEWELRY CO LTD
Filing Date
2026-03-03
Publication Date
2026-05-05

AI Technical Summary

Technical Problem

In the traditional gold chain jewelry welding process, the positioning and support devices are difficult to adapt to the precision requirements, the positioning benchmarks are not uniform and are prone to deviation, and there is a lack of a dedicated storage structure for non-welded parts, resulting in low welding accuracy and unstable positioning.

Method used

Design a dual-band composite laser welding device, comprising components such as a welding frame, a supporting base frame, a supporting plate, a ventilated frame, a supporting base, and a supporting frame. Through the cooperation of the supporting base and the supporting column, stable support and movement adjustment are achieved. The synergistic action of the sliding base block and the sliding side block is used for precise movement and positioning. Through the limiting support of the positioning side column and the threaded pressure block, and the matching installation of the mounting block and the mounting top groove, the welding column is fixed at equal intervals to ensure a unified welding reference. At the same time, the supporting frame provides foldable positioning support for non-welded parts.

Benefits of technology

It improves welding accuracy and positioning stability, ensures uniform welding reference, avoids displacement and entanglement of decorative parts, enhances welding quality and processing efficiency, and reduces the difficulty of manual operation.

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Abstract

The invention provides double-waveband composite laser welding equipment for gold ornaments, and relates to the technical field of gold ornament processing, the double-waveband composite laser welding equipment comprises a welding carrier frame, a bearing bottom frame, a bearing support plate, a ventilation carrier frame, a bearing support and a bearing support frame; a mounting carrying groove is formed in the top of the welding carrying frame; the bearing bottom frame is mounted at the bottom of the welding carrying frame; the bearing supporting plate is arranged on the top of the welding carrying frame. The ventilation carrying frame is mounted on the inner side of the mounting side groove; the bearing support is installed on the inner side of the welding carrying frame. The bearing support frame is arranged at the top of the bearing frame; the gold chain ornament needing to be welded is positioned and supported through the welding supporting column, the bearing supporting frame is matched with the storage supporting column to conduct storage positioning and supporting on the remaining part of the gold chain ornament, and the bearing base bears the welding device through moving and telescopic supporting to conduct stable welding on the gold chain ornament. The problem that in the welding machining process of a traditional gold chain ornament, positioning and supporting of the gold chain ornament mostly adopt a simple clamp or a manual auxiliary positioning mode is solved.
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Description

Technical Field

[0001] This invention relates to the technical field of gold jewelry processing, and in particular to a dual-band composite laser welding device for gold jewelry. Background Technology

[0002] Gold is a soft, golden-yellow precious metal with good ductility and corrosion resistance. It is a core category in jewelry making and precious metal investment, and also has important applications in industry, aerospace and other fields. As an important category of precious metal jewelry, the precision and stability of the welding process of gold chain ornaments directly determine the product's appearance and structural strength.

[0003] Based on the above, the current traditional welding process for gold chain ornaments has many technical defects in the positioning and support devices used for welding gold chain ornaments. These devices are difficult to adapt to the precision welding requirements of gold chain ornaments. The positioning and support of gold chain ornaments mostly adopt simple clamps or manual assisted positioning methods. The positioning benchmarks for the welding parts of gold chain ornaments are not uniform, which can easily lead to positioning offsets, resulting in weld deviations and reduced welding accuracy. On the other hand, there is a lack of a dedicated storage and positioning structure for the non-welded parts of gold chain ornaments. The remaining parts of the gold chain ornaments are prone to displacement and entanglement, which further affects the positioning stability during the welding process. Summary of the Invention

[0004] In view of this, the present invention provides a dual-band composite laser welding device for gold jewelry, which has a welding frame, a supporting base frame, a supporting plate, a ventilated frame, a supporting base, and a supporting frame. This solves the problem that traditional positioning and support devices for gold chain jewelry welding have many technical defects and are difficult to adapt to the fine welding requirements of gold chain jewelry. The positioning and support of gold chain jewelry often adopt simple clamps or manual assisted positioning methods, which result in inconsistent positioning benchmarks for the welding parts of the gold chain jewelry. This can easily lead to positioning offset, resulting in weld deviation and reduced welding accuracy. On the other hand, there is a lack of a dedicated storage and positioning structure for the non-welded parts of the gold chain jewelry. The remaining parts of the gold chain jewelry are prone to displacement and entanglement, which further affects the positioning stability during the welding process.

[0005] This invention provides a dual-band composite laser welding device for gold ornaments, the structure of which includes the following main components: welding frame, bearing base frame, bearing support plate, ventilated frame, bearing support base and bearing support frame; The welding frame has an installation groove at the top, installation side grooves on both sides, and a positioning side groove on the side. Storage side frames are installed on both sides of the welding frame, and storage side frames have storage grooves on their sides. A bearing bottom frame is installed at the bottom of the welding frame, and a positioning side block is provided on its side. A bearing support plate is located at the top of the welding frame, and an installation support is provided at the bottom of the bearing support plate, with a movable support at the bottom of the installation support. A ventilated frame is installed inside the installation side grooves, and a ventilated slot is provided on its side. Assemble the loading groove; the load-bearing support is installed inside the welded frame, the top of the load-bearing support has a sliding support groove, the top of the load-bearing support has a load-bearing column, the bottom of the load-bearing column has a sliding bottom block, the side of the load-bearing column has a sliding side groove, and the top of the load-bearing column has a load-bearing frame; the load-bearing frame is set on the top of the load-bearing frame, the bottom of the load-bearing frame has a mounting bolt, the top of the load-bearing frame has a welded frame, the top of the welded frame has an installation groove, the side of the installation groove has a limit side groove, and the inner side of the installation groove has an installation block.

[0006] Furthermore, the side of the storage tray is also provided with: a guide support groove, a shielding side plate, and a guide block; the guide support groove is opened inside the storage tray, the shielding side plate is set inside the storage tray, and the guide block is installed at both ends of the shielding side plate.

[0007] Furthermore, the side of the positioning block is also provided with: a bearing side frame, an assembly slot and a control panel; the bearing side frame is rotatably mounted on the side of the positioning block, the assembly slot is installed on the side of the bearing side frame, and the control panel is installed inside the assembly slot.

[0008] Furthermore, the movable support is also provided with a bearing base and a welding device on its side; the bearing base is slidably disposed at the bottom of the movable support, and the welding device is installed at the bottom of the bearing base.

[0009] Furthermore, the side of the ventilation frame is also provided with a collection frame and a ventilation connector; the collection frame is installed inside the assembly slot, and the ventilation connector is located on the side of the ventilation frame.

[0010] Furthermore, the side of the load-bearing frame is also provided with: a mounting opening and a sliding side block; the mounting opening is opened at the top of the load-bearing frame, and the sliding side block is installed on the side of the load-bearing frame.

[0011] Furthermore, the side of the load-bearing support frame is also provided with an assembly side groove and a storage support column; the assembly side groove is opened on the side of the load-bearing support frame, and the storage support column is installed on the side of the assembly side groove.

[0012] Furthermore, the side of the mounting block is also provided with: a positioning side post, a threaded pressure block, a mounting top groove, and a welding support column; the positioning side post is provided on the side of the mounting block, the threaded pressure block is sleeved on the outside of the positioning side post, the mounting top groove is opened on the top of the mounting block, and the welding support column is installed on the inside of the mounting top groove.

[0013] The dual-band composite laser welding equipment for gold jewelry provided by this invention has the following beneficial effects. The present invention discloses a dual-band composite laser welding device for gold ornaments, the structure of which includes multiple components such as a welding frame, a supporting base frame, a supporting plate, a ventilated frame, a supporting base, and a supporting frame, achieving the following innovative effects: By cooperating with the load-bearing supports and columns, stable support and adjustable movement of the load-bearing frame are achieved. The coordinated action of the sliding bottom block and sliding side block enables precise positioning of the load-bearing columns and the load-bearing frame. This allows the load-bearing frame to be fitted onto the outside of the welded frame, ensuring the overall structure's movement and positioning accuracy. With the limiting support of the positioning side columns and threaded pressure blocks, and the matching installation of the mounting blocks and mounting top grooves, the welded columns are evenly spaced and fixedly arranged inside the welded frame. This allows for precise positioning and support of the welded parts of the gold chain ornaments, effectively ensuring uniform welding standards. Simultaneously, the load-bearing frame, combined with the storage column, provides storage and positioning support for the non-welded remaining parts of the gold chain ornaments, preventing displacement and entanglement, further enhancing positioning stability. The combination of the base and the support frame allows for precise support of the gold chain ornaments within the welding frame, ensuring accurate operating space and positioning for welding operations. The device utilizes the guiding and conveying of air through ventilation slots and the ventilation frame to achieve precise supply of welding gas. The fixed fit between the support plate and the mounting bracket stabilizes the movable support within the welding frame. Combined with the positioning side block and the support side frame providing positioning support for the control panel, convenient and precise operation and control of the movable support and welding device are achieved. The movable support, in conjunction with the support base, drives the welding device to move flexibly. Furthermore, the support base can be adjusted for movement and extension, enabling multi-directional, adaptive support of the welding device, ensuring stable and high-precision welding of the gold chain ornaments. This effectively improves the welding quality and processing efficiency of the gold chain ornaments while reducing the difficulty of manual operation.

[0014] To more clearly illustrate the technical solutions of the embodiments of the present invention, the accompanying drawings of the embodiments will be briefly described below.

[0015] The accompanying drawings described below are only related to some embodiments of the invention and are not intended to limit the invention.

[0016] In the attached diagram: Figure 1 A schematic diagram of the overall component assembly and storage arrangement of a welding equipment according to an embodiment of the present invention is shown; Figure 2 A schematic diagram of the overall component assembly and unfolding arrangement of a welding equipment according to an embodiment of the present invention is shown; Figure 3A schematic diagram of the assembly and disassembly of the integral component of the welding frame according to an embodiment of the present invention is shown; Figure 4 This diagram illustrates the assembly and disassembly of the load-bearing base frame as an integral component according to an embodiment of the present invention. Figure 5 This diagram illustrates the structural configuration of the integral component of the load-bearing support plate according to an embodiment of the present invention, showing its assembly and disassembly. Figure 6 A schematic diagram of the assembly and disassembly of the ventilated carrier frame integral component according to an embodiment of the present invention is shown; Figure 7 This diagram illustrates the structural configuration of the integral component of the bearing support according to an embodiment of the present invention, showing its assembly and disassembly. Figure 8 A schematic diagram of the assembly and disassembly of the load-bearing support frame as an integral component according to an embodiment of the present invention is shown.

[0017] List of reference numerals 1. Welding the carrier frame; 101. Install the carrier slot; 102. Install the side slot; 103. Position the side slot; 104. Store the side frame; 105. Store the carrier slot; 106. Guide support slot; 107. Block the side plate; 108. Guide support block; 2. Supporting base frame; 201. Positioning side block; 202. Bearing side frame; 203. Assembly slot; 204. Control panel; 3. Load-bearing support plate; 301. Mounting support; 302. Movable support; 303. Bearing base; 304. Welding device; 4. Ventilated carrier frame; 401. Ventilation slot; 402. Assembly slot; 403. Collection frame; 404. Ventilation connector; 5. Bearing supports; 501. Sliding support groove; 502. Bearing support column; 503. Sliding bottom block; 504. Sliding side groove; 505. Load-bearing frame; 506. Mounting opening; 507. Sliding side block; 6. Load-bearing support frame; 601. Install bolts; 602. Assemble side grooves; 603. Store support columns; 604. Weld support frames; 605. Install sliding grooves; 606. Limit side grooves; 607. Install support blocks; 6071. Position side columns; 6072. Threaded pressure blocks; 6073. Install top grooves; 6074. Weld support columns. Detailed Implementation

[0018] Example: Please refer to Figures 1 to 8 : This invention proposes a dual-band composite laser welding device for gold ornaments, comprising: a welding frame 1, a supporting bottom frame 2, a supporting plate 3, a ventilated frame 4, a supporting base 5, and a supporting frame 6. The welding frame 1 has an installation groove 101 on its top, installation side grooves 102 on both sides, a positioning side groove 103 on its side, and storage side frames 104 on both sides, with storage grooves 105 on their sides. A bearing bottom frame 2 is installed at the bottom of the welding frame 1, and a positioning side block 201 is provided on its side. A bearing support plate 3 is located at the top of the welding frame 1, and an installation support 301 is provided at the bottom of the bearing support plate 3, with a movable support 302 at the bottom of the installation support 301. A ventilated frame 4 is installed inside the installation side grooves 102, and a ventilated slot 401 and an assembly groove 402 are provided on its side. The support 5 is installed inside the welded frame 1. The top of the support 5 has a sliding groove 501. The top of the support 5 has a support column 502. The bottom of the support column 502 has a sliding block 503. The side of the support column 502 has a sliding side groove 504. The top of the support column 502 has a load-bearing frame 505. The support frame 6 is installed on the top of the load-bearing frame 505. The bottom of the support frame 6 has a mounting bolt 601. The top of the support frame 6 has a welded support frame 604. The top of the welded support frame 604 has an installation groove 605. The side of the installation groove 605 has a limit side groove 606. The inside of the installation groove 605 has an installation block 607.

[0019] Example 1: As Figures 3 to 8 As shown, the load-bearing frame 505 also has the following features on its side: a mounting opening 506 and a sliding side block 507; the mounting opening 506 is located at the top of the load-bearing frame 505, and the sliding side block 507 is mounted on the side of the load-bearing frame 505; the load-bearing support frame 6 also has the following features on its side: an assembly side groove 602 and a storage support column 603; the assembly side groove 602 is located on the side of the load-bearing support frame 6, and the storage support column 603 is mounted on the side of the assembly side groove 602; the mounting block 607 also has the following features on its side: a positioning side post 6071, a threaded pressure block 6072, and an installation... The mounting top groove 6073 and the welding support column 6074 are provided; the positioning side column 6071 is provided on the side of the mounting block 607, the threaded pressure block 6072 is sleeved on the outside of the positioning side column 6071, the mounting top groove 6073 is opened on the top of the mounting block 607, and the welding support column 6074 is installed on the inside of the mounting top groove 6073; the positioning side column 6071 and the threaded pressure block 6072 can provide limiting support for the mounting block 607, and the mounting top groove 6073 bearing the welding support column 6074 can provide positioning support for the gold chain to be welded.

[0020] Example 2: Based on Example 1, as follows Figures 2 to 8As shown, the side of the storage slot 105 is also provided with: a guide support slot 106, a shielding side plate 107, and a guide block 108; the guide support slot 106 is opened inside the storage slot 105, the shielding side plate 107 is disposed inside the storage slot 105, and the guide block 108 is installed at both ends of the shielding side plate 107; the side of the positioning side block 201 is also provided with: a bearing side frame 202, an assembly slot 203, and a control panel 204; the bearing side frame 202 is rotatably disposed on the side of the positioning side block 201, the assembly slot 203 is installed on the side of the bearing side frame 202, and the control panel 204 is installed on the side of the positioning side block 201. Inside the assembly slot 203; on the side of the movable support 302, there are also: a bearing base 303 and a welding device 304; the bearing base 303 is slidably disposed at the bottom of the movable support 302, and the welding device 304 is installed at the bottom of the bearing base 303; on the side of the ventilated frame 4, there are also: a collection frame 403 and a ventilated connecting frame 404; the collection frame 403 is installed inside the assembly slot 402, and the ventilated connecting frame 404 is disposed on the side of the ventilated frame 4; the gold chain is positioned and welded by the movable support 302 cooperating with the bearing base 303 to support the moving welding device 304.

[0021] The specific usage and function of this embodiment: In this invention, during use, the load-bearing support 5, in conjunction with the load-bearing column 502, supports the movement of the load-bearing frame 505, so that the load-bearing frame 505 supports the load-bearing support frame 6 located outside the welded frame 1. The positioning side column 6071, in conjunction with the threaded pressure block 6072, provides limiting support for the mounting block 607. The mounting block 607, in conjunction with the mounting top groove 6073, installs the welded column 6074, so that the welded column 6074 is fixedly spaced inside the welded frame 604. 4. Position and support the gold chain ornaments that need to be welded. The support frame 6, together with the storage pillar 603, positions and supports the remaining part of the gold chain ornaments. The support base 5, together with the support frame 6, supports the gold chain ornaments and places them inside the welding frame 1. The support plate 3, together with the mounting base 301, places the movable support 302 inside the welding frame 1. The movable support 302, together with the support base 302, supports the movement of the welding device 304. The support base 302 supports the welding device 304 to perform stable welding of the gold chain ornaments by moving and extending.

Claims

1. A dual-band composite laser welding device for gold ornaments, comprising the following main components: welding frame (1), bearing base frame (2), bearing support plate (3), ventilation frame (4), bearing support (5) and bearing support frame (6); The welding frame (1) has an installation groove (101) on its top, installation side grooves (102) on both sides, a positioning side groove (103) on its side, and storage side frames (104) installed on both sides of the welding frame (1). The storage side frames (104) have storage grooves (105) on their sides. The characteristic feature is that… The supporting bottom frame (2) is installed at the bottom of the welding frame (1), and a positioning side block (201) is provided on the side of the supporting bottom frame (2); the supporting support plate (3) is provided at the top of the welding frame (1), and an installation support (301) is provided at the bottom of the supporting support plate (3), and a movable support (302) is provided at the bottom of the installation support (301); the ventilated frame (4) is installed inside the installation side groove (102), and a ventilated slot (401) and an assembly slot (402) are provided on the side of the ventilated frame (4); the supporting support (5) is installed inside the welding frame (1), and a sliding support groove (501) is provided at the top of the supporting support (5), and a positioning side block (201) is provided at the top of the supporting support (5). There is a support column (502), a sliding block (503) is provided at the bottom of the support column (502), a sliding side groove (504) is provided on the side of the support column (502), and a load-bearing frame (505) is provided at the top of the support column (502); the load-bearing frame (6) is provided at the top of the load-bearing frame (505), a mounting bolt (601) is provided at the bottom of the load-bearing frame (6), a welded frame (604) is provided at the top of the load-bearing frame (604), an installation groove (605) is provided at the top of the welded frame (604), a limit side groove (606) is provided on the side of the installation groove (605), and an installation block (607) is provided inside the installation groove (605).

2. The dual-band composite laser welding equipment for gold jewelry according to claim 1, characterized in that: The side of the storage slot (105) is also provided with: a guide support slot (106), a shielding side plate (107) and a guide block (108); the guide support slot (106) is opened inside the storage slot (105), the shielding side plate (107) is set inside the storage slot (105), and the guide block (108) is installed at both ends of the shielding side plate (107).

3. The dual-band composite laser welding equipment for gold ornaments according to claim 1, characterized in that: The side of the positioning block (201) is also provided with: a bearing side frame (202), an assembly slot (203) and a control panel (204); the bearing side frame (202) is rotatably mounted on the side of the positioning block (201), the assembly slot (203) is installed on the side of the bearing side frame (202), and the control panel (204) is installed inside the assembly slot (203).

4. The dual-band composite laser welding equipment for gold ornaments according to claim 1, characterized in that: The movable support (302) is also provided with a bearing base (303) and a welding device (304) on its side; the bearing base (303) is slidably disposed at the bottom of the movable support (302), and the welding device (304) is installed at the bottom of the bearing base (303).

5. The dual-band composite laser welding equipment for gold ornaments according to claim 1, characterized in that: The ventilation frame (4) is also provided with a collection frame (403) and a ventilation connector (404) on its side; the collection frame (403) is installed inside the assembly slot (402), and the ventilation connector (404) is provided on the side of the ventilation frame (4).

6. The dual-band composite laser welding equipment for gold ornaments according to claim 1, characterized in that: The load-bearing frame (505) is also provided with: a mounting opening (506) and a sliding side block (507); the mounting opening (506) is opened at the top of the load-bearing frame (505), and the sliding side block (507) is installed on the side of the load-bearing frame (505).

7. The dual-band composite laser welding equipment for gold ornaments according to claim 1, characterized in that: The side of the load-bearing support frame (6) is also provided with: an assembly side groove (602) and a storage support column (603); the assembly side groove (602) is opened on the side of the load-bearing support frame (6), and the storage support column (603) is installed on the side of the assembly side groove (602).

8. The dual-band composite laser welding equipment for gold ornaments according to claim 1, characterized in that: The mounting block (607) is also provided with the following on its side: a positioning side post (6071), a threaded pressure block (6072), a mounting top groove (6073), and a welded support column (6074); the positioning side post (6071) is provided on the side of the mounting block (607), the threaded pressure block (6072) is sleeved on the outside of the positioning side post (6071), the mounting top groove (6073) is opened on the top of the mounting block (607), and the welded support column (6074) is installed on the inside of the mounting top groove (6073).