Ignition coil contact processing device

By designing an ignition coil contact processing device that includes a dyeing tank, an electric heating element, and an electrostatic adsorption plate, the problems of uneven rust prevention and debris removal in the existing technology have been solved, achieving efficient rust prevention and cleaning effects.

CN223946011UActive Publication Date: 2026-02-27GEERS (CHONGQING) ELECTRONIC TECH CO LTD
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Patent Information

Application Number
CN202520403747.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-10
Publication Date
2026-02-27
Estimated Expiration
2035-03-10

AI Technical Summary

Technical Problem

Existing ignition coil contact processing devices lack rust prevention functions, resulting in low processing efficiency, uneven oil immersion, and difficulty in effectively cleaning debris during the bending process.

Method used

An ignition coil contact processing device was designed, comprising an immersion tank, an electric heating component, and a material feeding shaft. It can immerse the contact in rust-preventive oil and raise the temperature by electric heating, and then clean the contact surface by electrostatic adsorption plate, thereby achieving automated rust prevention and dust removal.

Benefits of technology

It improves the rust prevention effect and surface quality of the contact, enhances processing efficiency, and achieves efficient cleaning and uniform oil wetting of the contact.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of integrated ignition coils, in particular to an ignition coil contact piece machining device which comprises a machining pedestal, a dip dyeing tank is fixedly installed in the center of the end face of the machining pedestal, a dip dyeing groove is formed in the dip dyeing tank and filled with anti-rust oil, and the anti-rust oil is arranged in the dip dyeing tank. Material net cages are arranged at the two ends of the interior of the dip dyeing tank body, an electric heating assembly is arranged in the center of the outer wall of the dip dyeing tank body, and a dip dyeing processing assembly is arranged in the center of the interior of the dip dyeing tank body; the ignition coil contact processing device is simple in overall structure and small in size; during use, a large number of contact structures can be placed at a time, and the machining efficiency is improved. In addition, the surface of the contact piece can be conveniently dedusted and cleaned, and the surface quality of the contact piece is effectively improved; and moreover, the contact piece can be subjected to oil infiltration in a proper temperature environment, so that the oil infiltration quality of the contact piece is effectively enhanced, and the antirust effect of the contact piece is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of integrated ignition coil, especially relates to an ignition coil contact piece processing device. BACKGROUND

[0002] Ignition coil is the device that the low voltage power supply on car is converted into high voltage electricity to ignite engine, and the ignition coil is provided with the contact piece for connecting the wire, in order to meet the installation demand, after the ignition coil contact piece bending treatment is completed, the contact piece needs to be rustproof treated, simultaneously, the scrap produced in the bending treatment process needs to be cleaned up;

[0003] The processing device in prior art does not have the rustproof treatment function when processing the contact piece, and usually needs to be manually immersed in oil for rustproof, and the efficiency is slow, and the oil immersion is also uneven, therefore, the ignition coil contact piece processing device is provided for the above problems. UTILITY MODEL CONTENTS

[0004] The utility model solves the problem in providing a kind of ignition coil contact piece processing device, overall structure is simple, and small in size;When using, a large number of contact piece structures can be placed at one time, and the processing efficiency is improved;And, the surface of contact piece can be conveniently dusted and cleaned, effectively improve the surface quality of contact piece;And, contact piece can also be immersed in oil under suitable temperature environment, effectively strengthen contact piece oil immersion quality, improve the rustproof effect of contact piece.

[0005] In order to realize the above purpose, the utility model adopts the following technical scheme:

[0006] A kind of ignition coil contact piece processing device, including processing pedestal, the end face central fixed mounting of the processing pedestal is provided with dip vat, the inside of the dip vat is opened with dip groove, and dip groove is filled with rustproof oil liquid in the inside, the inside of the dip vat is provided with material net cage in both ends, the central of the outer wall of the dip vat is provided with electric heating component, the inside central of the dip vat is provided with dip processing component, and material net cage is located at the outside of dip processing component, the outer wall bottom of the dip vat is opened with discharge chute in one side, and discharge chute is fixedly installed with sealing tank cover in the inside;

[0007] The dip dyeing processing assembly comprises a motor support fixedly installed at the bottom of the outer wall of the dip dyeing tank body, a stirring motor fixedly installed at the top of the inner side of the motor support, a stirring shaft fixedly installed at the top end of the motor shaft of the stirring motor, the stirring shaft being insertedly installed at the inside center of the dip dyeing tank, a plurality of stirring blades fixedly installed at the bottom side of the outer wall of the stirring shaft, the included angle between the stirring blades being 90°, a reinforcing support installed at the bottom side of the inner wall of the dip dyeing tank, the material mesh cage being located above the top of the reinforcing support, a protective casing fixedly installed at the top side of the outer wall of the stirring shaft, and a plurality of electrostatic adsorption plates installed around the end face of the protective casing, the electrostatic adsorption plates being located between the material mesh cages.

[0008] Further, the bottom center of the dip dyeing tank body, the end face center of the reinforcing support and the top center of the dip dyeing tank body are all provided with a transmission groove, the first transmission seat, the second transmission seat and the third transmission seat are fixedly installed in the transmission groove from bottom to top, the stirring shaft is insertedly installed in the first transmission seat, the second transmission seat and the third transmission seat, the stirring blades are located between the first transmission seat and the second transmission seat, and the protective casing and the electrostatic adsorption plates are located between the second transmission seat and the third transmission seat; when the stirring shaft rotates in the first transmission seat, the second transmission seat and the third transmission seat, good transmission stability can be achieved, and the shaking of the whole dip dyeing tank body can be effectively reduced.

[0009] Further, the electric heating assembly comprises an electric heating groove and an electric heating plate, the electric heating groove is provided at the center of the outer wall of the dip dyeing tank body, the electric heating plate is fixedly installed at the inner side of the electric heating groove, the heat conduction plate is attached to the inner side end face of the electric heating plate and located in the dip dyeing tank, and a plurality of heat preservation plates are attached to the outer side end face of the electric heating plate; the electric heating assembly can be used to electrically heat the inside of the dip dyeing tank body, thereby increasing the temperature of the contact patch in contact with the rust-proof oil, and improving the dip dyeing quality and efficiency.

[0010] Further, a plurality of anti-collision rubber seats are attached to the outer side end face of the heat preservation plate; the anti-collision effect is improved, and the impact on the electric heating plate and the heat preservation plate is reduced.

[0011] Further, a plurality of mounting blocks are fixedly installed at the top of the material mesh cage, and the top end face of the mounting block is attached to the top end face of the dip dyeing tank body; the material mesh cage can be supported in the dip dyeing tank by the mounting blocks, and the convenience of taking the material mesh cage is improved.

[0012] Further, load-bearing legs are fixedly installed at three sides of the bottom of the outer wall of the dip dyeing tank body by welding, and anti-skid bases are fixedly installed at the bottom end face of the load-bearing legs; the anti-skid effect of the load-bearing legs is improved by the anti-skid bases, so that the load-bearing legs can stably and firmly support the dip dyeing tank body.

[0013] The ignition coil contact piece processing device has the advantages that the overall structure is simple, the volume is small, a large number of contact piece structures can be placed at one time during use, the processing efficiency is improved, the contact piece surface can be conveniently cleaned and dusted through the setting of the dip dye processing assembly and the electric heating assembly, the surface quality of the contact piece is effectively improved, the contact piece can be immersed in oil under a suitable temperature environment, the oil immersion quality of the contact piece is effectively improved, the rustproof effect of the contact piece is improved, the transmission effect of the material stirring shaft is more stable through the multiple reinforcement of the material stirring shaft, and the shaking of the dip dye tank body is effectively reduced. BRIEF DESCRIPTION OF DRAWINGS

[0014] Figure 1 It is a first overall structure schematic view of the utility model;

[0015] Figure 2 It is a second overall structure schematic view of the utility model;

[0016] Figure 3 It is an overall front view of the utility model;

[0017] Figure 4 It is Figure 3 It is a sectional view of A-A;

[0018] Figure 5 It is Figure 3 It is a sectional view of B-B;

[0019] Figure 6 It is an overall top view of the utility model.

[0020] LEGEND:

[0021] 1, processing pedestal; 2, dip dye tank body; 3, dip dye groove; 4, material net cage; 5, installation supporting block; 6, electric heating assembly; 7, dip dye processing assembly; 8, sealing tank cover; 9, bearing supporting leg; 61, electric heating groove; 62, electric heating plate; 63, heat conduction plate; 64, heat preservation plate; 71, motor support; 72, material stirring motor; 73, material stirring shaft; 74, first transmission seat; 75, reinforcing support; 76, second transmission seat; 77, material stirring blade; 78, third transmission seat; 79, protective casing; 710, electrostatic adsorption plate. DETAILED DESCRIPTION

[0022] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.

[0023] The following specific embodiments are given.

[0024] Referring to Figures 1-6 A kind of ignition coil contact patch processing device, including processing pedestal 1, by processing pedestal 1 it is convenient to install and fix the top of dip tank 2;The end face of the processing pedestal 1 is fixedly installed with dip tank 2, it is convenient to carry out rust dip processing to contact patch by dip tank 2;Dip tank 2 is internally provided with dip tank 3, and dip tank 3 is filled with rustproof oil, so that the contact patch is contacted with the rustproof oil, so that the contact patch surface is coated with a layer of rustproof oil, and the effect of contact patch rust prevention is achieved;The inside of dip tank 2 is provided with material net cage 4 at both ends, and the contact patch is stored by material net cage 4;Electric heating assembly 6 is arranged on the outer wall of dip tank 2, and the temperature of rustproof oil in dip tank 2 is adjusted by electric heating assembly 6, so that the soaking effect of rustproof oil and contact patch is improved;Dip processing assembly 7 is arranged in the center of dip tank 2, and material net cage 4 is located outside dip processing assembly 7, so that the contact patch is fully contacted with the rustproof oil, and the impurities on the surface of the contact patch can be easily adsorbed and cleaned, so that the surface quality and rust prevention effect of the contact patch are improved;Discharge groove is formed in one side of the bottom of the outer wall of dip tank 2, and sealing tank cover 8 is fixedly installed in the discharge groove, so that the inside of dip tank 2 can be easily cleaned and oil discharged subsequently;

[0025] The dip dye processing assembly 7 comprises a motor support 71 fixedly installed at the bottom of the outer wall of the dip dye tank body 2, and a stirring motor 72 is fixedly installed at the top of the inner side of the motor support 71, the top end of the motor shaft of the stirring motor 72 is fixedly installed with a stirring shaft 73, the stirring shaft 73 is insertedly installed in the inner center of the dip dye tank 3, a plurality of stirring blades 77 are fixedly installed at the bottom side of the outer wall of the stirring shaft 73, and the included angle between the stirring blades 77 is 90°, a reinforcing support 75 is installed at the bottom side of the inner wall of the dip dye tank 3, and the material mesh cage 4 is located above the top of the reinforcing support 75, a protective casing 79 is fixedly installed at the top side of the outer wall of the stirring shaft 73, and an electrostatic adsorption plate 710 is installed around the end face of the protective casing 79, and the electrostatic adsorption plate 710 is located between the material mesh cages 4; in use, the stirring motor 72 on one side of the motor support 71 works, the stirring shaft 73 is driven to rotate through the motor shaft, so that the plurality of stirring blades 77 rotate at the bottom side of the reinforcing support 75, thereby accelerating the flow speed of the rust-proof oil liquid, so that the rust-proof oil liquid washes and infiltrates the surface of the contact piece, at the same time, the protective casing 79 can be driven to rotate at the top of the reinforcing support 75, so that the electrostatic adsorption plate 710 in the protective casing 79 can electrostatically adsorb the dust washed off the surface of the contact piece when working, so that the surface of the contact piece is coated with a layer of rust-proof oil liquid as the contact piece is continuously infiltrated by the rust-proof oil liquid and dusted, thereby effectively improving the rust-proof effect and surface quality of the contact piece.

[0026] The bottom end center of the dip dye tank body 2, the end face center of the reinforcing support 75 and the top end center of the dip dye tank body 2 are all provided with a transmission groove, the first transmission seat 74, the second transmission seat 76 and the third transmission seat 78 are fixedly installed in the transmission groove from bottom to top, the stirring shaft 73 is insertedly installed in the first transmission seat 74, the second transmission seat 76 and the third transmission seat 78, the stirring blades 77 are located between the first transmission seat 74 and the second transmission seat 76, and the protective casing 79 and the electrostatic adsorption plate 710 are located between the second transmission seat 76 and the third transmission seat 78; when the stirring shaft 73 rotates in the first transmission seat 74, the second transmission seat 76 and the third transmission seat 78, good transmission stability can be achieved, and the shaking of the whole dip dye tank body 2 can be effectively reduced.

[0027] The electric heating assembly 6 comprises an electric heating groove 61, an electric heating plate 62, the electric heating groove 61 is arranged in the central part of the outer wall of the dip tank body 2, and the inner side of the electric heating groove 61 is fixedly provided with the electric heating plate 62, the inner side end surface of the electric heating plate 62 is attached with a heat conduction plate 63, and the heat conduction plate 63 is located in the inside of the dip tank 3, and the outer side end surface of the electric heating plate 62 is attached with a plurality of heat preservation plates 64; the electric heating assembly 6 can be used for electric heating of the inside of the dip tank body 2, so that the temperature of the contact piece contacting with the rust-proof oil is improved, and the dip quality and efficiency are improved; when the electric heating plate 62 in the electric heating groove 61 works, heat is transmitted to the inside of the dip tank 3 through the heat conduction plate 63, so that the rust-proof oil can be heated and warmed, and the heat preservation effect of the dip tank body 2 can be effectively improved through the heat preservation plate 64.

[0028] The outer side end surface of the heat preservation plate 64 is attached with a plurality of anti-collision rubber seats; the anti-collision effect is improved, and the impact on the electric heating plate 62 and the heat preservation plate 64 is reduced.

[0029] The top part of the material net cage 4 is fixedly provided with a plurality of mounting blocks 5, and the top end surface of the mounting block 5 is attached with the top end surface of the dip tank body 2; the material net cage 4 can be supported in the inside of the dip tank 3 through the mounting block 5, and the convenience of taking the material net cage 4 is improved.

[0030] The bottom part of the outer wall of the dip tank body 2 is fixedly provided with a bearing leg 9 through welding on three sides, and the bottom end surface of the bearing leg 9 is fixedly provided with an anti-skid base; the anti-skid effect of the bearing leg 9 is improved through the anti-skid base, so that the bearing leg 9 can stably and firmly support the dip tank body 2.

[0031] The above is only a preferred specific embodiment of the present application, but the protection scope of the present application is not limited to this, any skilled person in the art can make equivalent replacement or change according to the technical scheme and the inventive concept of the present application within the technical range disclosed by the present application, which should be covered in the protection scope of the present application.

Claims

1. A device for processing ignition coil contact pieces, characterized in that, Include: Processing pedestal (1), the end face of the processing pedestal (1) is fixedly installed with dip dyeing tank body (2), the inside of the dip dyeing tank body (2) is provided with dip dyeing groove (3), and the inside of the dip dyeing groove (3) is filled with rust-proof oil, both ends of the inside of the dip dyeing tank body (2) are provided with material net cage (4), the outer wall of the dip dyeing tank body (2) is provided with electric heating assembly (6) in the center, the inside of the dip dyeing tank body (2) is provided with dip dyeing processing assembly (7) in the center, and the material net cage (4) is located outside the dip dyeing processing assembly (7), the outer wall bottom of the dip dyeing tank body (2) is provided with discharge groove on one side, and the inside of the discharge groove is fixedly installed with sealing tank cover (8); The dip dyeing processing assembly (7) includes motor support (71), the motor support (71) is fixedly installed on the outer wall bottom of the dip dyeing tank body (2), and the inside top of the motor support (71) is fixedly installed with material stirring motor (72), the motor shaft top of the material stirring motor (72) is fixedly installed with material stirring shaft (73), and the material stirring shaft (73) is insertedly installed in the inside center of the dip dyeing groove (3), a plurality of material stirring blades (77) are fixedly installed on the outer wall bottom side of the material stirring shaft (73), and the included angle between the material stirring blades (77) is 90°, the inside bottom side of the dip dyeing groove (3) is installed with reinforcing support (75), and the material net cage (4) is located above the top of the reinforcing support (75), the outer wall top side of the material stirring shaft (73) is fixedly installed with protective machine shell (79), and the end face of the protective machine shell (79) is installed with electrostatic adsorption plate (710) around, and the electrostatic adsorption plate (710) is located between the material net cage (4).

2. The device for processing the contact of the ignition coil according to claim 1, characterized in that, The bottom center of the dip dyeing tank body (2), the end face center of the reinforcing support (75) and the top center of the dip dyeing tank body (2) are provided with transmission grooves, the inside of the transmission grooves is respectively fixed with first transmission seat (74), second transmission seat (76) and third transmission seat (78) from bottom to top, and the material stirring shaft (73) is insertedly installed in the inside of the first transmission seat (74), the second transmission seat (76) and the third transmission seat (78), the material stirring blades (77) are located between the first transmission seat (74) and the second transmission seat (76), and the protective machine shell (79) and the electrostatic adsorption plate (710) are located between the second transmission seat (76) and the third transmission seat (78).

3. The device for processing the contact of the ignition coil according to claim 2, characterized in that, The electric heating assembly (6) includes electric heating groove (61), electric heating plate (62), the electric heating groove (61) is provided in the outer wall center of the dip dyeing tank body (2), the inside of the electric heating groove (61) is fixedly installed with electric heating plate (62), the inside end face of the electric heating plate (62) is attachedly installed with heat conduction plate (63), and the heat conduction plate (63) is located in the inside of the dip dyeing groove (3), the outside end face of the electric heating plate (62) is attachedly installed with a plurality of heat preservation plates (64).

4. The device for processing the contact of the ignition coil according to claim 3, characterized in that, The outside end face of the heat preservation plate (64) is attachedly installed with a plurality of anti-collision rubber seats.

5. An ignition coil lug machining apparatus according to claim 4, characterized by The top outside of the material net cage (4) is fixedly installed with a plurality of installation supporting blocks (5), and the top end face of the installation supporting block (5) is attachedly connected with the top end face of the dip dyeing tank body (2).

6. An ignition coil lug machining apparatus according to claim 5, wherein The outer wall bottom of the dipper body (2) is fixedly installed with load-bearing legs (9) through welding on three sides, and the bottom end face of the load-bearing leg (9) is fixedly installed with an anti-skid base.