Surface treatment hanging tool of precision connector combined design structure

By designing a surface treatment hanger with a combined design structure, the problem that existing hangers are difficult to meet the suspension requirements of electronic components of different sizes is solved, and flexible adjustment of the hanger body and multiple splicing and combination of the hanger crossbar are realized, meeting different usage needs.

CN222975332UActive Publication Date: 2025-06-13SUZHOU PLATER ELECTRONICS CO LTD
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Patent Information

Application Number
CN202422193840.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-09
Publication Date
2025-06-13
Estimated Expiration
2034-09-09

AI Technical Summary

Technical Problem

The fixed size of the hanging tools in the electroplating process of existing electronic components is difficult to meet the suspension needs of electronic components of different sizes.

Method used

A surface treatment hanger with a precision connector combination design structure is designed, and adopts a combined structure of a hanger bracket, a hanger crossbar, a hanger body, a splicing plug rod and a splicing socket. Through the coordination of the guide slide chute, spring beads and positioning arc grooves, flexible adjustment of the left and right spacing and number of the hanger body, as well as the combination of multiple splicings of the hanger crossbars.

Benefits of technology

It realizes flexible adjustment of the hanging tool body to meet the suspension needs of electronic components of different sizes. Compared with fixed size hanging tools, it is more flexible and convenient.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a precision connector combined design structure's surface treatment hanger, including hanger support, hanger cross bar, hanger body, splice insert link and splice jack, hanger cross bar all is provided on one side of hanger support, and the outer wall of hanger cross bar is provided with guide chute, hanger body all is provided inside guide chute, splice insert link and splice jack. One side of the hanger body extends to the outside of the guide sliding groove and is provided with a hook, the splicing insertion rods are fixed to one end of the hanger cross rod, spring clamping beads are installed at one ends of the splicing insertion rods, the splicing insertion holes are formed in the other end of the hanger cross rod, and positioning arc grooves are formed in the inner walls of the splicing insertion holes; the splicing insertion holes and the positioning arc grooves are matched with the splicing insertion rods and the positioning arc grooves correspondingly. The electronic component hanging tool can be combined and spliced, the hanging number is not limited, the up-down distance and the left-right distance of the hanging tool can be flexibly adjusted, and the hanging requirements of electronic components of different sizes can be met.
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Description

Technical Field

[0001] The utility model relates to the technical field of electroplating of electronic components, in particular to a surface treatment fixture with a combined design structure for a precision connector. Background Art

[0002] Electronic components are an indispensable and important part of the electronics industry, and electroplating treatment is often required for them. Electroplating treatment can improve the electrical conductivity and corrosion resistance of electronic components, and at the same time, make the electronic components have better shape and general performance.

[0003] When electroplating electronic components, fixtures are often needed to hang the electronic components. However, the fixtures generally have fixed dimensions, the number of components that can be hung is limited, and the spacing of the hooks is not easy to adjust, making it difficult to meet the hanging requirements of electronic components of different sizes. Therefore, we propose a surface treatment fixture with a combined design structure for a precision connector. Summary of the Utility Model

[0004] The purpose of the utility model is to provide a surface treatment fixture with a combined design structure for a precision connector to solve the problems raised in the above background art.

[0005] To achieve the above purpose, the utility model provides the following technical solution: A surface treatment fixture with a combined design structure for a precision connector, including a fixture bracket, fixture crossbars, fixture bodies, splicing insertion rods, and splicing insertion holes. The fixture crossbars are all arranged on one side of the fixture bracket, and a guiding sliding groove is provided on the outer wall of the fixture crossbars. The fixture bodies are all arranged inside the guiding sliding groove, and one side of the fixture bodies extends outside the guiding sliding groove and is equipped with hooks. The splicing insertion rods are all fixed at one end of the fixture crossbars, and a spring bead is installed at one end of the splicing insertion rods. The splicing insertion holes are all arranged at the other end of the fixture crossbars, and positioning arc grooves are provided on the inner walls of the splicing insertion holes. The splicing insertion holes and the positioning arc grooves cooperate with the splicing insertion rods and the spring beads respectively.

[0006] Preferably, hanging ears are fixed at the top of the fixture bracket to facilitate hanging and placing the fixture bracket.

[0007] Preferably, equally spaced mounting holes are provided on the outer wall of the fixture bracket to facilitate mounting the fixture crossbars at different positions on the fixture bracket.

[0008] Preferably, mounting screws are installed on the outer walls of the fixture crossbars for the installation work of the fixture crossbars.

[0009] Preferably, one end of the mounting screw penetrates through the mounting hole and is threadedly connected to a nut sleeve, and a gasket is installed on the surface of the nut sleeve to facilitate fixing the fixture crossbar.

[0010] Preferably, a friction plate is adhered to the outer wall of the top of the hanger cross bar, which is convenient for positioning the lock plate.

[0011] Preferably, a lock plate is installed on the outer wall of the top of the hanger body through a torsion spring seat, and the top end of the lock plate is in close contact with the friction plate, which is convenient for locking the hanger body.

[0012] Preferably, the limiting sliders at the top and bottom ends of the hanger body are slidably connected to the limiting chutes on the inner walls of the top and bottom of the guiding chute.

[0013] Compared with the prior art, the beneficial effects of the present utility model are as follows:

[0014] By pressing the bottom of the lock plate to rotate it around the torsion spring seat, the top of the lock plate is separated from the friction plate, unlocking the hanger body. Then, the hanger body is pushed horizontally to slide along the guiding chute. When adjusted to an appropriate distance, the lock plate is released to closely adhere to the friction plate under the elastic action of the torsion spring seat, and the hanger body is locked by the frictional resistance between the lock plate and the friction plate, so that the left and right distances of the hanger body can be adjusted, and the number of hanger bodies can also be freely increased or decreased; Pass the mounting screw on one side of the hanger cross bar through the mounting hole and rotate the nut sleeve so that the gasket abuts against the hanger bracket, then the hanger cross bar can be fixed. This hanger can flexibly adjust the up and down, left and right distances of the hanger body, and can meet the hanging requirements of electronic components of different sizes;

[0015] Since the two ends of the hanger cross bar are respectively provided with a splicing plug and a splicing socket, the hanger cross bars can be spliced and combined for use. Specifically, the hanger cross bars are spliced together in pairs, and the splicing plug at one end of one hanger cross bar is inserted into the splicing socket at one end of the adjacent hanger cross bar. The spring catch at one end of the splicing plug is snapped into the positioning arc groove on the inner wall of the splicing socket, then the hanger cross bars can be combined and fixed. The combined number of hanger cross bars can be adjusted according to requirements. More hanger cross bars mean a longer length, and thus more electronic components can be suspended. This hanger adopts a combined design structure and can be combined and spliced during use. Compared with hangers of fixed sizes, it is more flexible and convenient and can meet different usage requirements. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 is the front view structural schematic diagram of the present utility model;

[0017] Figure 2 is the enlarged structural schematic diagram of the hanger cross bar of the present utility model;

[0018] Figure 3 is the sectional structural schematic diagram of the hanger cross bar of the present utility model;

[0019] Figure 4Schematic side view enlarged structure of the crossbar of the hanger of the present utility model;

[0020] Figure 5 Of the present utility model Figure 4 Schematic enlarged structure at position A in

[0021] In the figure: 1. Hanger bracket; 101. Mounting hole; 2. Hanging ear; 3. Hanger crossbar; 301. Guide chute; 4. Hanger body; 401. Hook; 5. Splicing plug; 501. Spring catch; 6. Friction plate; 7. Locking plate; 8. Torsion spring seat; 9. Splicing socket; 901. Positioning arc groove; 10. Mounting screw; 11. Nut sleeve; 12. Gasket; 13. Limit chute; 14. Limit slider. Specific embodiments

[0022] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Based on the embodiments in the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.

[0023] Please refer to Figures 1-5 , an embodiment provided by the present utility model: A surface treatment hanger for a precision connector combined design structure, including a hanger bracket 1, a hanger crossbar 3, a hanger body 4, a splicing plug 5 and a splicing socket 9. The hanger crossbars 3 are all arranged on one side of the hanger bracket 1, and a guide chute 301 is provided on the outer wall of the hanger crossbar 3;

[0024] The hanger bodies 4 are all arranged inside the guide chute 301, and one side of the hanger body 4 extends to the outside of the guide chute 301 and is provided with a hook 401;

[0025] The splicing plugs 5 are all fixed at one end of the hanger crossbar 3, and a spring catch 501 is installed at one end of the splicing plug 5;

[0026] The splicing sockets 9 are all arranged at the other end of the hanger crossbar 3, and positioning arc grooves 901 are provided on the inner walls of the splicing sockets 9. The splicing sockets 9 and the positioning arc grooves 901 cooperate with the splicing plugs 5 and the positioning arc grooves 901 respectively;

[0027] Specifically, the fixture crossbars 3 are spliced together in pairs, and the splicing insertion rod 5 at one end of one fixture crossbar 3 is inserted into the splicing insertion hole 9 at one end of the adjacent fixture crossbar 3. The spring catch bead 501 at one end of the splicing insertion rod 5 is snapped into the positioning arc groove 901 on the inner wall of the splicing insertion hole 9, so that the fixture crossbars 3 can be combined and fixed. The combined quantity of the fixture crossbars 3 can be adjusted according to requirements. The more the quantity, the longer the length of the fixture crossbars 3, and thus the more electronic components can be suspended. This fixture adopts a combined design structure and can be combined and spliced during use. Compared with fixtures of fixed sizes, it is more flexible and convenient and can meet different usage requirements;

[0028] Hanging ears 2 are fixed at the tops of the fixture brackets 1;

[0029] Equidistant mounting holes 101 are provided on the outer walls of the fixture brackets 1;

[0030] Mounting screws 10 are installed on the outer walls of the fixture crossbars 3;

[0031] One end of the mounting screw 10 passes through the mounting hole 101 and is threadedly connected with a nut sleeve 11, and a gasket 12 is installed on the surface of the nut sleeve 11;

[0032] Friction sheets 6 are adhered to the outer walls at the tops of the fixture crossbars 3;

[0033] A lock plate 7 is installed on the outer wall at the top of the fixture body 4 through a torsion spring seat 8, and the top end of the lock plate 7 is in close contact with the friction sheet 6;

[0034] The limit sliders 14 at the top and bottom of the fixture body 4 are both slidably connected with the limit sliding grooves 13 on the inner walls at the top and bottom of the guide sliding groove 301;

[0035] Specifically, press the bottom of the lock plate 7 to make it rotate around the torsion spring seat 8, so that the top of the lock plate 7 is separated from the friction sheet 6 to unlock the fixture body 4. Then, push the fixture body 4 horizontally to make it slide along the guide sliding groove 301. When adjusted to the appropriate spacing, release the lock plate 7 to make it closely adhere to the friction sheet 6 under the elastic action of the torsion spring seat 8, and lock the fixture body 4 through the frictional resistance between the lock plate 7 and the friction sheet 6, so that the left and right spacing of the fixture body 4 can be adjusted, and the quantity of the fixture bodies 4 can also be freely increased or decreased;

[0036] Furthermore, by installing the fixture crossbars 3 at the mounting holes 101 at different positions, the spacing of the fixture crossbars 3 can be adjusted, and thus the up and down spacing of the fixture body 4 can be adjusted. Specifically, pass the mounting screw 10 on one side of the fixture crossbar 3 through the mounting hole 101 and rotate the nut sleeve 11 so that the gasket 12 abuts against the fixture bracket 1, and the fixture crossbar 3 can be fixed. This fixture can flexibly adjust the up and down and left and right spacing of the fixture body 4 and can meet the suspension requirements of electronic components of different sizes.

[0037] When the embodiment of the present application is in use: First, the electronic components are hung on the hooks 401 of the hanger body 4, and the hanger bracket 1 is hung and placed through the hanging ears 2. Secondly, according to the size of the electronic components, the distance between the hanger bodies 4 is adjusted. Specifically, press the bottom of the lock plate 7 to make it rotate around the torsion spring seat 8, so that the top of the lock plate 7 is separated from the friction plate 6, unlock the hanger body 4, and then push the hanger body 4 horizontally to make it slide along the guide chute 301. When adjusted to the appropriate distance, release the lock plate 7 so that it closely adheres to the friction plate 6 under the elastic action of the torsion spring seat 8, and lock the hanger body 4 through the frictional resistance between the lock plate 7 and the friction plate 6, so that the left and right distances of the hanger body 4 can be adjusted, and the number of the hanger bodies 4 can also be freely increased or decreased. Further, install the hanger cross bar 3 at the mounting holes 101 at different positions, and the distance of the hanger cross bar 3 can be adjusted, and then the up and down distance of the hanger body 4 can be adjusted. Specifically, insert the mounting screw 10 on one side of the hanger cross bar 3 through the mounting hole 101 and rotate the nut sleeve 11 so that the gasket 12 abuts against the hanger bracket 1, and the hanger cross bar 3 can be fixed. This hanger can flexibly adjust the up and down and left and right distances of the hanger body 4, and can meet the hanging requirements of electronic components of different sizes. Then, since the splicing plug rods 5 and splicing jacks 9 are respectively provided at both ends of the hanger cross bar 3, the hanger cross bar 3 can be spliced and combined for multiple uses. Specifically, splice two hanger cross bars 3 together, and insert the splicing plug rod 5 at one end of one hanger cross bar 3 into the splicing jack 9 at one end of the adjacent hanger cross bar 3. The spring bead 501 at one end of the splicing plug rod 5 is snapped into the positioning arc groove 901 on the inner wall of the splicing jack 9, and the hanger cross bar 3 can be combined and fixed. Adjust the combined number of the hanger cross bars 3 according to the needs. The more the number, the longer the length of the hanger cross bar 3, and thus the more the number of the hanging electronic components. This hanger adopts a combined design structure and can be combined and spliced during use. Compared with a hanger of a fixed size, it is more flexible and convenient and can meet different use requirements.

Claims

1. A surface treatment hanger of a precision connector combined design structure, characterized in that: The invention comprises a hanger bracket (1), a hanger cross bar (3), a hanger body (4), a splicing plug rod (5) and a splicing plug hole (9), wherein the hanger cross bar (3) is arranged on one side of the hanger bracket (1), and a guide slide groove (301) is arranged on the outer wall of the hanger cross bar (3), and the hanger body (4) is arranged inside the guide slide groove (301), and one side of the hanger body (4) extends to the outside of the guide slide groove (301) and is equipped with a hanger The hook (401) is provided, the splicing plug rod (5) is fixed at one end of the hanger cross bar (3), and a spring bead (501) is installed at one end of the splicing plug rod (5), the splicing socket (9) is arranged at the other end of the hanger cross bar (3), and a positioning arc groove (901) is arranged on the inner wall of the splicing socket (9), and the splicing socket (9) and the positioning arc groove (901) respectively cooperate with the splicing plug rod (5) and the positioning arc groove (901).

2. The surface treatment hanger of the precision connector combined design structure according to claim 1, characterized in that: The top of the hanger bracket (1) is fixed with a hanging ear (2).

3. The surface treatment hanger of the precision connector combined design structure according to claim 1, characterized in that: The outer wall of the hanger bracket (1) is provided with mounting holes (101) at equal intervals.

4. The surface treatment hanger of the precision connector combined design structure according to claim 1, characterized in that: The outer wall of the hanger cross bar (3) is equipped with a mounting screw (10).

5. The surface treatment hanger of the precision connector combined design structure according to claim 4, characterized in that: One end of the mounting screw rod (10) passes through the mounting hole (101) and is threadedly connected to a nut sleeve (11), and a gasket (12) is installed on the surface of the nut sleeve (11).

6. The surface treatment hanger of the precision connector combined design structure according to claim 1, characterized in that: A friction plate (6) is adhered to the outer wall of the top of the hanger crossbar (3).

7. The surface treatment hanger of the precision connector combined design structure according to claim 1, characterized in that: A lock plate (7) is installed on the outer wall of the top of the hanger body (4) via a torsion spring seat (8), and the top end of the lock plate (7) is tightly fitted with the friction plate (6).

8. The surface treatment hanger of the precision connector combined design structure according to claim 1, characterized in that: The limiting sliding blocks (14) at the top and bottom ends of the hanger body (4) are both slidably connected to the limiting sliding grooves (13) on the top and bottom inner walls of the guide sliding groove (301).