Copper wire lamp lightening detection jig

By designing a copper wire lamp lighting detection fixture, using the electrode to contact the copper wire and controlling the power-on position through a conductive slider, the problem of inconvenient operation in the existing technology is solved, and the copper wire lamp detection is simplified and the efficiency is improved.

CN223413444UActive Publication Date: 2025-10-03JIANGXI DENGCHUAN LIGHTING CO LTD
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Patent Information

Application Number
CN202422485486.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-14
Publication Date
2025-10-03
Estimated Expiration
2034-10-14

AI Technical Summary

Technical Problem

The existing copper wire lamp lighting detection process is labor-intensive and inconvenient to operate.

Method used

A copper wire lamp lighting detection fixture was designed, which included a fixture body, a pole piece, a contact wire and a conductive slider. The pole piece was in contact with the copper wire, and the conductive slider was used to control the power-on position to realize the lighting detection of the lamp bead.

Benefits of technology

The lighting detection operation of the copper wire lamp is simplified, the labor intensity is reduced, and the detection efficiency is improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a copper wire lamp lightening detection tool comprising a tool body which is provided with a detection platform for holding a grinding bar; the pole pieces are vertically and elastically mounted on the detection platform, and a plurality of pole pieces are arranged at intervals corresponding to the copper wires on the grinding bar; the contact wires are mounted on the jig body, the middle parts of the contact wires are disconnected at intervals to form a plurality of conductors, and the pole pieces are in one-to-one corresponding conductive connection with the conductors; and a conductive slide block. The grinding strip is placed on the detection platform, the pole pieces on the detection platform make contact with the copper wire at the bottom of the grinding strip, the adjacent pole pieces are powered on and then matched with the copper wire and the lamp beads between the two pole pieces to form a loop for lighting work, and the lamp beads on the copper wire can be lighted through the arrangement of the pole pieces; by moving the two conductive sliding blocks, any section distance detected by the copper wire lamp can be controlled, so that lamp beads on the copper wire lamp can be lightened at any stage more conveniently, and the operation is simpler.
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Description

Technical Field

[0001] The utility model relates to the technical field of copper wire lamps, and more particularly to a copper wire lamp lighting detection jig. Background Art

[0002] Copper wire lamps are a type of lighting that combines functionality with decoration, using copper wire as one of the main design elements. These lamps not only provide necessary lighting but also become a highlight in interior design.

[0003] During the copper wire lamp production process, the copper wire is first wound around a grinding bar. Laser insulation removal, soldering, lamp beads attachment, and soldering are then performed to complete the lamp. After production, the lamps must be tested for lighting. Conventional methods typically involve manually placing two contacts against the copper wire on the grinding bar and then moving the contacts to change their contact position. This process is cumbersome and labor-intensive. Utility Model Content

[0004] In view of the problems existing in the prior art, the purpose of the present utility model is to provide a jig for lighting and testing the copper wire lamp on the grinding bar which is simple and convenient to operate.

[0005] To solve the above problems, the present invention adopts the following technical solutions: A copper wire lamp lighting detection fixture, comprising:

[0006] A fixture body having a testing platform for holding grinding strips;

[0007] The pole piece is vertically and elastically mounted on the detection platform, and is provided with a plurality of pole pieces corresponding to the copper wire intervals on the grinding bar;

[0008] The contact wire is installed on the fixture body and is separated in the middle to form a plurality of conductors. The pole pieces are electrically connected to the conductors in a one-to-one correspondence;

[0009] Two conductive sliders are provided and are slidably mounted on the fixture body. The bottoms of the two conductive sliders abut against the contact wires and are respectively connected to the positive and negative poles of the power supply.

[0010] Preferably, the fixture body further comprises a protrusion mounted on one side of the top of the detection platform, and the conductive slider is slidably mounted on the top of the protrusion.

[0011] Preferably, the top of the protrusion is sunken to form a groove, and the contact wire is horizontally installed in the groove; and an abutment member that abuts against the contact wire is elastically installed at the bottom of the conductive slider.

[0012] Preferably, the abutting member comprises a roller abutting against the contact wire, and elastic telescopic rods connected to the conductive slider are mounted at both ends of the roller.

[0013] Preferably, the detection platform is provided with a plurality of guide holes, a spring is vertically installed in the guide hole, the pole piece is installed on the top of the spring, and in a free state, the top surface of the pole piece exceeds the top surface of the detection platform.

[0014] Preferably, the detection platform is provided with two positioning blocks which are arranged opposite to each other and used for clamping the grinding bars.

[0015] Preferably, a rotating arm is installed on the detection platform, and a driver with an output end facing downwards to press the grinding bars downwards is installed on the rotating arm.

[0016] Compared with the prior art, the present invention has the following beneficial effects:

[0017] The grinding bar is placed on the detection platform, and several electrodes on the detection platform are respectively in contact with the copper wire at the bottom of the grinding bar. After the adjacent electrodes are energized, they form a circuit with the copper wire and the lamp beads between the two electrodes to light up. In this way, the setting of multiple electrodes can light up the lamp beads on the copper wire; by moving the two conductive sliders, any distance of the copper wire lamp detection can be controlled, and then the lamp beads on the copper wire lamp can be lit more conveniently at any stage, and the operation is simpler. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 This is a schematic diagram of the three-dimensional structure of the utility model;

[0019] Figure 2 It is a front sectional view of the utility model;

[0020] Figure 3 This is a schematic diagram of the electrical connection of the utility model;

[0021] Figure 4 for Figure 3 Enlarged view of point A.

[0022] Description of the numbers in the figure:

[0023] 1. Fixture body; 11. Testing platform; 12. Protrusion; 2. Pole piece; 21. Guide hole; 22. Spring; 3. Contact wire; 31. Conductor; 4. Conductive slider; 5. Groove; 6. Abutment; 61. Roller; 62. Telescopic rod; 7. Grinding strip; 71. Copper wire; 72. Lamp bead; 8. Positioning block; 9. Rotating arm; 91. Driver. DETAILED DESCRIPTION

[0024] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0025] refer to Figure 1 and Figure 3 A copper wire 71 lamp lighting detection jig includes: a jig body 1, the jig body 1 having a detection platform 11 for holding a grinding bar 7; a pole piece 2, vertically and elastically mounted on the detection platform 11, and having a plurality of pole pieces 2 arranged at intervals corresponding to the copper wire 71 on the grinding bar 7; a contact wire 3, mounted on the jig body 1, and separated in the middle to form a plurality of conductors 31, the pole pieces 2 and the conductors 31 being conductively connected in a one-to-one correspondence; two conductive sliders 4, provided and slidably mounted on the jig body 1, the bottoms of the two conductive sliders 4 abutting against the contact wire 3 and respectively connected to the positive and negative poles of a power supply.

[0026] It is understandable that the detection platform 11 is a component for holding the grinding bar 7, for example, it can be a platform with a flat top or a groove, etc., but it is not limited to this. The pole piece 2 is a component for conductive contact with the copper wire 71, for example, it can be a metal spring or a thimble, etc., but it is not limited to this. The contact wire 3 is a component for conductive connection with the pole piece 2, for example, it can be formed by disconnecting a copper wire 71, or it can be formed by combining multiple copper rods, etc. Of course, the conductors 31 can be either disconnected structures or connected by insulating materials, but it is not limited to this. Reference Figure 3 The number of conductors 31 is the same as the number of pole pieces 2, and one conductor 31 is connected to one pole piece 2. The movement of the conductive slider 4 is to control the connection components with different conductors 31, and its sliding installation can adopt slide rail sliding or rolling, etc., but is not limited thereto.

[0027] With this setup, the grinding bar 7 is placed on the testing platform 11. Due to its weight, the grinding bar 7 can press against the elastic pole piece 2 and contact the copper wire 71. When the two conductive sliders 4 are powered, they act as positive and negative contacts. By moving the two conductive sliders 4 and changing the contact position with the contact wire 3, the power supply to different pole pieces 2 is controlled, and the position of the lamp bead 72 on the copper wire 71 that is lit for testing is controlled, making operation simpler and easier.

[0028] In some embodiments, the fixture body 1 further includes a protrusion 12 mounted on one side of the top of the detection platform 11, and the conductive slider 4 is slidably mounted on top of the protrusion 12. Furthermore, the top of the protrusion 12 is recessed to form a groove 5, and the contact wire 3 is horizontally mounted in the groove 5; the bottom of the conductive slider 4 is elastically mounted with an abutment 6 that abuts against the contact wire 3.

[0029] It can be understood that the protrusion 12 is provided as a component for mounting the conductive slider 4 and the contact wire 3, and may be, for example, a rectangular parallelepiped or a long strip with an arc-shaped top, but is not limited thereto. The groove 5 is a structure for accommodating the contact wire 3 and providing space for the movement of the abutment 6, and may be, for example, a long square groove 5 or a cylindrical groove 5, but is not limited thereto. The abutment 6 is a component for elastically abutting against the contact wire 3, and may be, for example, a spring, a roller 61 or a ball, but is not limited thereto. Specifically, refer to Figure 4 The contact member 6 includes a roller 61 that contacts the contact wire 3. Both ends of the roller 61 are provided with elastic telescopic rods 62 connected to the conductive slider 4. The elastic telescopic rods 62 can elastically press the roller 61 downward onto the contact wire 3, ensuring that the contact member 6 can contact the contact wire 3 during movement.

[0030] In this configuration, the protrusion 12 raises the conductive slider 4, making it easier for inspectors to operate. The groove 5 accommodates the contact wire 3 and the abutment 6, improving the overall structure's compactness and protectiveness. The abutment 6 utilizes a roller 61 structure, which reduces friction with the contact wire 3, reducing wear and tear, thereby ensuring conductive contact stability and improving the smoothness of the conductive slider 4's movement.

[0031] In some embodiments, reference Figure 2 The detection platform 11 is provided with a plurality of guide holes 21, in which a spring 22 is vertically installed. The pole piece 2 is installed on top of the spring 22, and in a free state, the top surface of the pole piece 2 exceeds the top surface of the detection platform 11. It can be understood that the guide hole 21 is a component for accommodating and guiding the pole piece 2, and the shape of the guide hole 21 is determined according to the shape of the pole piece 2. For example, if the pole piece 2 is cylindrical, the guide hole 21 is a circular hole; if the pole piece 2 is square, the guide hole 21 is a square hole. In this way, when the grinding bar 7 is placed on the detection platform 11, since the pole piece 2 exceeds the detection platform 11, the copper wire 71 on the grinding bar 7 will first contact the pole piece 2, and under the influence of the dead weight of the grinding bar 7, the pole piece 2 will elastically press against the copper wire 71.

[0032] In some embodiments, reference Figure 1-2Mounted on the inspection platform 11 are two opposing positioning blocks 8 for securing the grinding bars 7. As will be appreciated, the positioning blocks 8 are components used to position the ends of the grinding bars 7. For example, they can be in the form of two parallel straight bars or opposing C-shaped retaining structures, but are not limited thereto. This allows the grinding bars 7 to be placed directly between the two positioning blocks 8, ensuring that the copper wires 71 on the grinding bars 7 contact the electrode sheets 2 in a one-to-one relationship without requiring excessive movement.

[0033] In some embodiments, a rotating arm 9 is mounted on the detection platform 11, and a driver 91 is mounted on the rotating arm 9, with the output end facing downward, thereby pressing the grinding bar 7 downward. It is understood that the rotating arm 9 is a component that can drive the driver 91 to rotate horizontally, and for example, a manual shaft-hole matching structure or an automatic motor rotation structure can be used, but is not limited to these. The downward-pressing driver 91 is a component that presses the grinding bar 7 downward, and for example, an electric push rod or a cylinder can be used, but is not limited to these. In this way, after the grinding bar 7 is clamped between the two positioning blocks 8, the rotating arm 9 drives the driver 91 to rotate above the grinding bar 7, and the driver 91 works to press the grinding bar 7 downward, so that the grinding bar 7 is in full contact with the pole piece 2.

[0034] The above description is merely a preferred embodiment of the present invention; however, the scope of protection of the present invention is not limited thereto. Any person skilled in the art who, within the technical scope disclosed in the present invention, makes equivalent substitutions or modifications based on the technical solutions and improved concepts of the present invention shall be covered by the scope of protection of the present invention.

Claims

1. A copper wire lamp lighting detection fixture, characterized in that: include: A jig body (1), the jig body (1) having a detection platform (11) for holding a grinding bar (7); The pole piece (2) is vertically and elastically mounted on the detection platform (11), and a plurality of pole pieces (2) are arranged at intervals corresponding to the copper wires (71) on the grinding bar (7); A contact wire (3) is mounted on the fixture body (1) and is separated in the middle to form a plurality of conductors (31), and the pole pieces (2) are electrically connected to the conductors (31) in a one-to-one correspondence; Two conductive sliders (4) are provided and are slidably mounted on the fixture body (1); the bottoms of the two conductive sliders (4) abut against the contact wires (3) and are respectively connected to the positive and negative poles of the power supply.

2. The copper wire lamp lighting detection fixture according to claim 1, characterized in that: The fixture body (1) further comprises a protrusion (12) mounted on one side of the top of the detection platform (11), and the conductive slider (4) is slidably mounted on the top of the protrusion (12).

3. The copper wire lamp lighting detection fixture according to claim 2, characterized in that: The top of the protrusion (12) is indented to form a groove (5), and the contact wire (3) is horizontally installed in the groove (5); the bottom of the conductive slider (4) is elastically installed with an abutment piece (6) that abuts against the contact wire (3).

4. The copper wire lamp lighting detection fixture according to claim 3, characterized in that: The abutting member (6) comprises a roller (61) abutting against the contact wire (3), and elastic telescopic rods (62) connected to the conductive slider (4) are installed at both ends of the roller (61).

5. The copper wire lamp lighting detection fixture according to claim 1, characterized in that: The detection platform (11) is provided with a plurality of guide holes (21), a spring (22) is vertically installed in the guide hole (21), the pole piece (2) is installed on the top of the spring (22), and in a free state, the top surface of the pole piece (2) exceeds the top surface of the detection platform (11).

6. The copper wire lamp lighting detection fixture according to claim 1, characterized in that: Two positioning blocks (8) arranged opposite to each other and used for clamping the grinding bars (7) are installed on the detection platform (11).

7. The copper wire lamp lighting detection fixture according to claim 1, characterized in that: A rotating arm (9) is mounted on the detection platform (11), and a driver (91) with an output end facing downwards is mounted on the rotating arm (9) to press the grinding bar (7) downwards.