Wire core tinning and wire taking mechanism

By designing a wire core tin-plated wire extraction mechanism including a discharge clamp lifting cylinder, a central clamping cylinder and an outer clamping cylinder, the problems of high labor intensity and low material extraction efficiency caused by manual hand grip of wire are solved, and efficient and safe removal of the wire is achieved.

CN222892808UActive Publication Date: 2025-05-23FOSHAN SHUNDE TIANJU ELECTRIC APPLIANCE IND CO LTD
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Patent Information

Application Number
CN202421682566.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-16
Publication Date
2025-05-23
Estimated Expiration
2034-07-16

AI Technical Summary

Technical Problem

In intelligent plug assembly equipment, manually hold the front and rear ends of the wire to prevent scratching of the wire from being pulled when taken out, resulting in high labor intensity and low material removal efficiency.

Method used

A wire core tin-plated wire extraction mechanism is designed, including a discharge frame, a discharge linear module and a discharge clamp assembly. Through the coordinated action of the discharge clamp lifting cylinder, the central clamping cylinder and the outer clamping cylinder, the two ends of the wire are clamped and fixed, and the conductor is taken out through the coordination action of the discharge linear module and the discharge clamp lifting cylinder.

Benefits of technology

By clamping both ends of the wire, the end of the wire is avoided from being dragged on the equipment during material removal, preventing the wire from scratching, and reducing the labor intensity of the wire removal, improving the material removal efficiency.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model relates to the technical field of wire rod processing, in particular to a wire core tinning and wire taking mechanism, which is characterized in that the other end of a discharging wire clamping lifting cylinder is fixed on a discharging wire clamping lifting plate; the discharging wire clamping lifting plate is connected with a central seat; first discharging clamping blocks are fixed to the two clamping toes of the center clamping air cylinder correspondingly. A discharging connecting rod is fixed to a cylinder body of the center clamping air cylinder. An outer clamping air cylinder is fixed to the discharging connecting rod. Second discharging clamping blocks are fixed to the two clamping toes of the outer clamping air cylinder correspondingly. When the wire taking device is used, the two ends of the wire are clamped, so that the tail end of the wire is prevented from being dragged on the device during material taking, the wire is prevented from being scratched in the material taking process, the labor intensity of taking the wire is reduced, and the material taking efficiency is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of wire material processing, in particular to a wire core tinning wire taking mechanism. Background Art

[0002] In the intelligent plug assembly equipment, it is a kind of equipment that can cut the wire coil into set lengths, strip the wire ends, and finally apply tin liquid before assembling the terminals.

[0003] After the wire is assembled on the equipment, it is taken out from the material taking station of the equipment and then placed into the hopper.

[0004] Since the total length of the wire is long, it is necessary to hold the front and back ends of the wire manually to prevent the wire from being scratched by pulling when it is taken out. This method of taking out the wire requires the cooperation of both hands to take the wire out of the fixture. The manual method of taking out the wire is labor-intensive. Utility Model Content

[0005] The utility model aims to provide a wire core tinning wire taking mechanism in view of the defects and shortcomings of the prior art.

[0006] In order to achieve the above purpose, the technical solution adopted by the utility model is:

[0007] The utility model discloses a wire core tinning wire taking mechanism, which comprises a discharging frame, a discharging linear module connected to the discharging frame, and a discharging wire clamping assembly connected to the discharging linear module;

[0008] The discharging clamp assembly includes a discharging clamp lifting plate and a discharging clamp lifting cylinder with one end connected to the discharging linear module; the other end of the discharging clamp lifting cylinder is fixed to the discharging clamp lifting plate; the discharging clamp lifting plate is connected to a center seat; the center seat is connected to a center clamping cylinder; the first discharging clamping block is fixed to both clamping toes of the center clamping cylinder; a discharging connecting rod is fixed to the cylinder body of the center clamping cylinder; an outer clamping cylinder is fixed to the discharging connecting rod; and the second discharging clamping block is fixed to both clamping toes of the outer clamping cylinder;

[0009] The discharge linear module drives the discharge clamp lifting plate on the discharge clamp lifting cylinder to move, so that the center clamping cylinder and the outer clamping cylinder move in translation. The discharge clamp lifting cylinder is used to drive the center clamping cylinder and the outer clamping cylinder to move up and down. Before grabbing the wire, the discharge clamp opening cylinder opens the wire clamp first.

[0010] The central clamping cylinder and the outer clamping cylinder at both ends of the discharge connecting rod respectively drive the first discharge clamp block and the second discharge clamp block to clamp and fix the two ends of the wire, and then the discharge linear module and the discharge clamp wire lifting cylinder cooperate to take out the wire; by clamping the two ends of the wire, the end of the wire is prevented from being dragged on the equipment during material taking, and the wire is prevented from being scratched during the material taking process, and the labor intensity of taking the wire is reduced, thereby improving the material taking efficiency.

[0011] Furthermore, the discharging linear module includes a driven pulley rotatably connected to the discharging frame and a discharging motor fixed at one end to the discharging frame; a driving pulley is fixed to the other end of the discharging motor; a synchronous belt is tensioned between the driving pulley and the driven pulley; a synchronous belt clamp is fixed on the belt body of the synchronous belt; a discharging slide is fixed on the synchronous belt clamp; the discharging slide is slidably connected to the discharging frame; the cylinder body of the discharging clamp lifting cylinder is fixed on the discharging slide;

[0012] After the discharging motor is started, it drives the synchronous belt to move, so that the discharging wire clamping assembly connected to the discharging slide table slides.

[0013] Furthermore, a gear is rotatably connected to the center seat; a rack sliding groove is provided on the center seat; a rack meshing with the gear is slidably connected in the rack sliding groove; a rack-pushing cylinder is fixed on the discharge clamp line lifting plate; the piston rod end of the rack-pushing cylinder is fixed on the rack; the gear is fixed on the cylinder body of the center clamping cylinder;

[0014] After the push rack cylinder is started, it drives the center clamping cylinder to rotate. At the same time, during the rotation of the center clamping cylinder, the discharge connecting rod swings around the center clamping cylinder, so that the outer clamping cylinder performs a circular motion, thereby realizing the swing of the processed wire during discharge, which can improve the wire picking efficiency.

[0015] After adopting the above structure, the beneficial effects of the utility model are as follows: the wire core tinning wire taking-up mechanism described in the utility model, when using the utility model, the central clamping cylinder and the outer clamping cylinder at both ends of the discharge connecting rod respectively drive the first discharge clamp block and the second discharge clamp block to clamp and fix the two ends of the wire, and then the discharge linear module and the discharge wire clamp lifting cylinder cooperate to take out the wire; by clamping the two ends of the wire, the end of the wire is prevented from being dragged on the equipment during the material taking, and the wire is prevented from being scratched during the material taking process, and the labor intensity of taking the wire is reduced, thereby improving the material taking efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 It is a structural schematic diagram of the utility model;

[0017] Figure 2 It is a structural schematic diagram of the discharge clamping assembly;

[0018] Figure 3 This is the structural diagram of the discharge clamp assembly after the discharge clamp lifting cylinder and the discharge clamp lifting plate are removed;

[0019] Figure 4 This is the structural diagram of the discharge linear module;

[0020] Description of reference numerals:

[0021] G1, discharge clamp assembly; G101, discharge clamp lifting cylinder; G102, discharge clamp lifting plate; G103, rack push cylinder; G104, rack; G105, center clamp cylinder; G106, first discharge clamp block; G107, second discharge clamp block; G108, outer clamp cylinder; G109, gear; G1010, center seat; G1010a, rack sliding groove; G1011, discharge connecting rod; G2, discharge clamp opening cylinder; G3, discharge linear module; G301, driven pulley; G302, synchronous belt; G303, synchronous belt clamp block; G304, discharge slide; G305, driving pulley; G306, discharge motor; G4, discharge frame. DETAILED DESCRIPTION

[0022] The utility model is further described below in conjunction with the accompanying drawings.

[0023] like Figures 1 to 4 As shown, the wire core tinning wire taking mechanism described in the utility model comprises a discharging frame G4, a discharging linear module G3 connected to the discharging frame G4, and a discharging wire clamping assembly G1 connected to the discharging linear module G3;

[0024] The discharging clamping wire assembly G1 includes a discharging clamping wire lifting plate G102 and a discharging clamping wire lifting cylinder G101 whose one end is connected to the discharging linear module G3; the other end of the discharging clamping wire lifting cylinder G101 is fixed to the discharging clamping wire lifting plate G102; the discharging clamping wire lifting plate G102 is connected to a center seat G1010; the center seat G1010 is connected to a center clamping cylinder G105; the first discharging clamping block G106 is fixed to both clamping toes of the center clamping cylinder G105; the discharging connecting rod G1011 is fixed to the cylinder body of the center clamping cylinder G105; the discharging connecting rod G1011 is fixed to an external clamping cylinder G108; the second discharging clamping block G107 is fixed to both clamping toes of the external clamping cylinder G108;

[0025] The discharge linear module G3 drives the discharge clamp lifting plate G102 on the discharge clamp lifting cylinder G101 to move, so that the center clamping cylinder G105 and the outer clamping cylinder G108 move in translation. The discharge clamp lifting cylinder G101 is used to drive the center clamping cylinder G105 and the outer clamping cylinder G108 to move up and down. Before grabbing the wire, the discharge clamp opening cylinder G2 opens the wire clamp first.

[0026] The center clamping cylinder G105 and the outer clamping cylinder G108 at both ends of the discharge connecting rod G1011 respectively drive the first discharge clamping block G106 and the second discharge clamping block G107 to clamp and fix the two ends of the wire, and then the discharge linear module G3 and the discharge wire clamping lifting cylinder G101 cooperate to take out the wire; by clamping the two ends of the wire, the end of the wire is prevented from being dragged on the equipment during material removal, which prevents the wire from being scratched during the material removal process, reduces the labor intensity of wire removal, and improves the material removal efficiency.

[0027] As a preferred embodiment of the utility model, the discharging linear module G3 includes a driven pulley G301 rotatably connected to the discharging frame G4 and a discharging motor G306 with one end fixed to the discharging frame G4; a driving pulley G305 is fixed to the other end of the discharging motor G306; a synchronous belt G302 is tensioned between the driving pulley G305 and the driven pulley G301; a synchronous belt clamp G303 is fixed to the belt body of the synchronous belt G302; a discharging slide G304 is fixed to the synchronous belt clamp G303; the discharging slide G304 is slidably connected to the discharging frame G4; the cylinder body of the discharging clamp lifting cylinder G101 is fixed to the discharging slide G304;

[0028] After the discharge motor G306 is started, it drives the synchronous belt G302 to move, causing the discharge wire clamping assembly G1 connected to the discharge slide G304 to slide.

[0029] As a preferred embodiment of the utility model, the center seat G1010 is rotatably connected with a gear G109; the center seat G1010 is provided with a rack sliding groove G1010a; a rack G104 meshing with the gear G109 is slidably connected in the rack sliding groove G1010a; a rack pushing cylinder G103 is fixed on the discharge clamping line lifting plate G102; the piston rod end of the rack pushing cylinder G103 is fixed on the rack G104; the gear G109 is fixed on the cylinder body of the center clamping cylinder G105;

[0030] After the push rack cylinder G103 is started, it drives the center clamping cylinder G105 to rotate. At the same time, during the rotation of the center clamping cylinder G105, the discharge connecting rod G1011 swings around the center clamping cylinder G105, so that the outer clamping cylinder G108 performs a circular motion, thereby realizing the swing of the processed wire during discharge, which can improve the wire picking efficiency.

[0031] The above description is only a preferred embodiment of the present utility model, so all equivalent changes or modifications made according to the structure, features and principles described in the scope of the present utility model patent application are included in the scope of the present utility model patent application.

Claims

1. A wire core tinning wire taking mechanism, characterized in that: It includes a discharging frame (G4), a discharging linear module (G3) connected to the discharging frame (G4), and a discharging clamping assembly (G1) connected to the discharging linear module (G3); The discharge clamping wire assembly (G1) comprises a discharge clamping wire lifting plate (G102) and a discharge clamping wire lifting cylinder (G101) connected to a discharge linear module (G3) at one end; the other end of the discharge clamping wire lifting cylinder (G101) is fixed to the discharge clamping wire lifting plate (G102); the discharge clamping wire lifting plate (G102) is connected to a center seat (G1010); the center seat (G1010) is connected to a center A clamping cylinder (G105); a first discharge clamping block (G106) is fixed on both clamping toes of the central clamping cylinder (G105); a discharge connecting rod (G1011) is fixed on the cylinder body of the central clamping cylinder (G105); an outer clamping cylinder (G108) is fixed on the discharge connecting rod (G1011); and a second discharge clamping block (G107) is fixed on both clamping toes of the outer clamping cylinder (G108).

2. A wire core tinning wire taking-up mechanism according to claim 1, characterized in that: The discharging linear module (G3) includes a driven pulley (G301) rotatably connected to a discharging frame (G4) and a discharging motor (G306) with one end fixed to the discharging frame (G4); a driving pulley (G305) is fixed to the other end of the discharging motor (G306); a synchronous belt (G302) is tensioned between the driving pulley (G305) and the driven pulley (G301); a synchronous belt clamp (G303) is fixed on the belt body of the synchronous belt (G302); a discharging slide (G304) is fixed on the synchronous belt clamp (G303); the discharging slide (G304) is slidably connected to the discharging frame (G4); and the cylinder body of the discharging clamp lifting cylinder (G101) is fixed on the discharging slide (G304).

3. A wire core tinning wire taking mechanism according to claim 1, characterized in that: The center seat (G1010) is rotatably connected to a gear (G109); the center seat (G1010) is provided with a rack sliding groove (G1010a); a rack (G104) meshing with the gear (G109) is slidably connected in the rack sliding groove (G1010a); a rack-pushing cylinder (G103) is fixed on the discharge clamping line lifting plate (G102); the piston rod end of the rack-pushing cylinder (G103) is fixed on the rack (G104); and the gear (G109) is fixed on the cylinder body of the center clamping cylinder (G105).