A copper wire square pressing device

Through the automated copper wire pressing equipment, the first pressing cylinder and the second pressing cylinder are used to drive the first pressing head, the second pressing head and the main settling block, the problems of large tolerances and low efficiency caused by manual pressing are solved, and high-precision and efficient copper wire pressing treatment are achieved.

CN115799944BActive Publication Date: 2025-07-04SHANGHAI WING TECH CO LTD
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Patent Information

Application Number
CN202211440485.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-11-17
Publication Date
2025-07-04
Estimated Expiration
2042-11-17

AI Technical Summary

Technical Problem

Existing copper wire square pressing equipment relies on manual operation, resulting in large processing tolerances, low efficiency and high cost.

Method used

The automatic copper wire square pressing equipment is adopted, and the first supercharger cylinder and the second supercharger cylinder are used as the square processing power. Combined with the first, second supercharger head and the main shaping block, automatic square pressing is realized, improving accuracy and efficiency.

Benefits of technology

The automation of copper wire pressure square is realized, which improves processing accuracy and efficiency, reduces tolerances and reduces costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a copper wire square pressing device, which includes a first mounting plate, a feeding mechanism, a second mounting plate and a third mounting plate. Among them, the feeding mechanism is mounted on the first mounting plate, and its conveying frame is located between the second mounting plate and the third mounting plate; a first slide rail is provided on the second mounting plate, on which a first sliding seat is mounted. The first sliding seat is connected to a first cylinder through a first mounting seat mounted on its top end. The telescopic rod of the first cylinder is connected to a second sliding seat. Among them, the second sliding seat is mounted on the top end of the first cylinder. Through the first pressing head, the second pressing head and the main shaping block, the present invention realizes automatic square pressing. Compared with manually pressing the copper wire into a square, the efficiency is higher. Moreover, since the first boosting cylinder and the second boosting cylinder are used as the power for square pressing treatment, stable control can be achieved, the precision of square pressing treatment is improved, and the tolerance is reduced; the efficiency of square pressing processing is improved.
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Description

Technical Field

[0001] The present invention relates to a copper wire processing device, in particular to a copper wire square pressing device, belonging to the technical field of electronic connector processing equipment. Background Art

[0002] Electronic connectors are also often referred to as circuit connectors or electrical connectors, which bridge two conductors on a circuit loop so that current or signals can flow from one conductor to another. An electronic connector is an electromechanical system that provides a separable interface to connect two auxiliary electronic systems. Simply put, the component used to complete the electrical connection between circuits or electronic machines is called a connector, that is, the bridge between the two.

[0003] When processing electronic connectors, it is often necessary to process metal parts, especially copper wires, for square pressing treatment to make them into electronic connectors or components of electronic connectors; most of the existing square pressing devices rely on manual square pressing treatment, which cannot well control the processing tolerance, and the efficiency is low. Correspondingly, the processing cost is also very high. Summary of the Invention

[0004] The technical problem to be solved by the present invention is: to provide a copper wire square pressing device, which solves the problems such as large tolerance and low efficiency caused by the existing manual square pressing treatment.

[0005] The technical problem to be solved by the present invention is achieved by the following technical solutions:

[0006] The present invention provides a copper wire square pressing device, including a first mounting plate, a feeding mechanism, a second mounting plate and a third mounting plate, wherein,

[0007] The feeding mechanism is installed on the first mounting plate, and its conveying frame is located between the second mounting plate and the third mounting plate;

[0008] It further includes,

[0009] A first slide rail is arranged on the second mounting plate, and a first sliding seat is installed thereon. The first sliding seat is connected to a first cylinder through a first mounting seat installed at its top end. The telescopic rod of the first cylinder is connected to a second sliding seat, wherein,

[0010] The second sliding seat is installed at the top end of the first cylinder;

[0011] The second sliding seat has its top connected to a second mounting seat, wherein,

[0012] The second mounting seat is connected to a third cylinder, and the top end of the third cylinder is connected to a fourth cylinder;

[0013] The third mounting plate is provided with a first boosting cylinder and a second boosting cylinder for square forming.

[0014] As a preferred technical solution of the present invention, a third mounting seat is further provided on the second mounting plate. A second cylinder is mounted on the third mounting seat. The second cylinder is connected to a fourth mounting seat through a connecting buckle. Among them,

[0015] One end of the fourth mounting seat is connected to the first sliding seat.

[0016] As a preferred technical solution of the present invention, the first boosting cylinder includes a first acting arm connected thereto, and the second boosting cylinder includes a second acting arm connected thereto. Among them,

[0017] Both the first acting arm and the second acting arm are disposed within the third mounting plate;

[0018] The end of the first acting arm is a first pressing head, and the end of the second acting arm is a second pressing head. Among them,

[0019] A notch portion is provided on the second pressing head.

[0020] As a preferred technical solution of the present invention, a main shaping block is provided at the bottom of the third mounting plate.

[0021] As a preferred technical solution of the present invention, the cross-section of the notch portion includes a rectangle.

[0022] As a preferred technical solution of the present invention, a first discharge port is provided on the second mounting plate, and a second discharge port is provided on the first mounting plate. Among them, the first discharge port and the second discharge port are vertically corresponding. After the square pressing treatment of the copper wire is completed, the fourth cylinder can release the copper wire part, and the part falls into the material box through the first discharge port and the second discharge port to complete the processing.

[0023] Preferably, the third cylinder is a lifting cylinder, and the fourth cylinder is a clamping jaw cylinder.

[0024] Further preferably, the second mounting seat is L-shaped, one end of which is connected to the second sliding seat, and the other end is connected to the third cylinder.

[0025] The beneficial effects of the present invention are as follows: The present invention realizes automatic square pressing through the first pressing head, the second pressing head and the main shaping block. Compared with manually performing square pressing on copper wires, the efficiency is higher. Moreover, since the first boosting cylinder and the second boosting cylinder are used as the power for square pressing treatment, stable control can be achieved, the accuracy of square pressing treatment is improved, and the tolerance is reduced; the efficiency of square pressing processing is improved. Description of the Drawings

[0026] Figure 1 One of the structural schematic diagrams of the present invention;

[0027] Figure 2 Another structural schematic diagram of the present invention;

[0028] Figure 3 Another structural schematic diagram of the present invention;

[0029] Figure 4 Another structural schematic diagram of the present invention;

[0030] Figure 5 Another structural schematic diagram of the present invention;

[0031] Figure 6 Another structural schematic diagram of the present invention;

[0032] Figure 7 Another structural schematic diagram of the present invention;

[0033] Figure 8 Another structural schematic diagram of the present invention;

[0034] Figure 9 Another structural schematic diagram of the present invention;

[0035] In the figure: 100, the first mounting plate; 101, the second discharge port; 200, the feeding mechanism; 201, the conveying frame; 300, the second mounting plate; 301, the first discharge port; 400, the third mounting plate; 401, the main shaping block; 500, the first slide rail; 501, the first sliding seat; 502, the first mounting seat; 503, the first cylinder; 504, the second sliding seat; 505, the second mounting seat; 600, the third mounting seat; 601, the second cylinder; 602, the connecting buckle; 603, the fourth mounting seat; 700, the third cylinder; 800, the fourth cylinder; 900, the first booster cylinder; 901, the first acting arm; 902, the first pressing head; 1000, the second booster cylinder; 1001, the second acting arm; 1002, the second pressing head; 10021, the notch part. Detailed implementation manners

[0036] The preferred embodiments of the present invention are described below with reference to the accompanying drawings. It should be understood that the preferred embodiments described herein are only for the purpose of illustrating and explaining the present invention, and are not used to limit the present invention.

[0037] Embodiment 1

[0038] As Figures 1 to 9As shown in the figure, this embodiment provides a copper wire square pressing device, which includes a first mounting plate 100, a feeding mechanism 200, a second mounting plate 300, and a third mounting plate 400. Among them, the feeding mechanism 200 is installed on the first mounting plate 100, and its conveying rack 201 is located between the second mounting plate 300 and the third mounting plate 400. The parts to be processed (copper wire parts or other metal wire parts) enter the conveying rack 201 through the feeding mechanism 200 and are conveyed one by one to the lower part of the fourth cylinder 800 so that the fourth cylinder 800 can clamp the parts to be processed.

[0039] In this embodiment, the feeding mechanism 200 and the conveying rack 201 together constitute a vibrating feeding tray device to achieve feeding.

[0040] Specifically, the copper wire square pressing device in this embodiment further includes a first slide rail 500, which is arranged on the second mounting plate 300. A first sliding seat 501 is installed thereon. The first sliding seat 501 is connected to a first cylinder 503 through a first mounting seat 502 installed at its top end. The telescopic rod of the first cylinder 503 is connected to a second sliding seat 504. The end of the second sliding seat 504 is connected to the telescopic rod of the first cylinder 503. When the first cylinder 503 drives the second sliding seat 504 to move, the second sliding seat 504 can drive the second mounting seat 505 and the components installed on the second mounting seat 505 to move. At the same time, the first cylinder 503 is installed on the first sliding seat 501 through the first mounting seat 502 and can also move along with the movement of the first sliding seat 501 on the first slide rail 500. The second mounting seat 505 is L-shaped, with one end connected to the second sliding seat 504 and the other end connected to the third cylinder 700.

[0041] More specifically, the second sliding seat 504 is installed at the top end of the first cylinder 503. The second sliding seat 504 has a second mounting seat 505 connected to its top. Among them, the second mounting seat 505 is connected to a third cylinder 700, and the top end of the third cylinder 700 is connected to a fourth cylinder 800. In this embodiment, the third cylinder 700 is a lifting cylinder, and the fourth cylinder 800 is a clamping jaw cylinder. The third cylinder 700 can drive the lifting of the fourth cylinder 800, and the fourth cylinder 800 realizes the clamping of the copper wire parts to be processed so as to transfer them to the lower part of the third mounting plate 400, and the first boosting cylinder 900, the second boosting cylinder 1000 and their components perform square pressing treatment on the copper wire.

[0042] A third mounting seat 600 is further provided on the second mounting plate 300. A second cylinder 601 is mounted on the third mounting seat 600. The second cylinder 601 is connected to a fourth mounting seat 603 through a connecting buckle 602. One end of the fourth mounting seat 603 is connected to the first sliding seat 501. The second cylinder 601 can expand and contract. The first sliding seat 501 is successively connected to its telescopic rod. When the second cylinder 601 expands and contracts, it can drive the first sliding seat 501 and the components connected to the first sliding seat 501 to move along the first slide rail 500.

[0043] Regarding the components for square pressing, a first boosting cylinder 900 and a second boosting cylinder 1000 for square pressing are provided on the third mounting plate 400.

[0044] Specifically, the first boosting cylinder 900 includes a first acting arm 901 connected thereto, and the second boosting cylinder 1000 includes a second acting arm 1001 connected thereto. The first acting arm 901 and the second acting arm 1001 are both disposed within the third mounting plate 400. Preferably, limiting plates are mounted on the third mounting plate 400 to limit the first acting arm 901 and the second acting arm 1001. Preferably, the first acting arm 901 and / or the second acting arm 1001 can transmit pressure through a transmission shaft. For example, Figure 3 the first boosting cylinder 900 connected to the first acting arm 901 is disposed on the third mounting plate 400. The direction of the telescopic rod of the first boosting cylinder 900 is opposite to the traveling direction of the first acting arm 901. Correspondingly, a transmission shaft with a fulcrum (rotation point) is disposed on the side of the third mounting plate 400 to achieve the transmission of direction and force, which can save occupied space. During the installation of specific equipment, it can be set according to actual conditions. Correspondingly, the second boosting cylinder 1000 can also use the same setting according to needs;

[0045] The end of the first acting arm 901 is a first pressing head 902, and the end of the second acting arm 1001 is a second pressing head 1002. A notch 10021 is provided on the second pressing head 1002. In this embodiment, the cross-section of the notch 10021 is preferably a rectangle or a multi-sided rectangle to achieve the square pressing treatment of the copper wire or to make the copper wire have multiple planes to meet the processing requirements.

[0046] A main shaping block 401 is provided at the bottom of the third mounting plate 400 to play a role in resisting the copper wire. Then, the first pressing head 902 and the second pressing head 1002 perform square pressing on the copper wire.

[0047] A first discharge port 301 is provided on the second mounting plate 300, and a second discharge port 101 is provided on the first mounting plate 100. Among them, the first discharge port 301 and the second discharge port 101 are vertically corresponding positions. After the copper wire is processed, after the second cylinder 800 finishes clamping, it falls into the material box through the first discharge port 301 and the second discharge port 101 to complete the processing.

[0048] Specifically, during processing, the copper wire waits for the processing part to advance successively through the feeding mechanism 200 and the conveying frame 201, and enters below the fourth cylinder 800. At this time, the first cylinder 503 moves to drive the fourth cylinder 800 (i.e., the clamping cylinder) to move so that it can clamp the part to be processed. Then the third cylinder 700 (i.e., the lifting cylinder) rises, and then the second cylinder 601 moves to drive the clamped copper wire part into the space formed by the first pressing head 902, the second pressing head 1002 and the main shaping block 401; since the second pressing head 1002 has a notch 10021, the copper wire is not pressed square at this time. After that, the second boosting cylinder 1000 is pushed out to drive the second actuating arm 1001 and the second pressing head 1002 to move forward. At this time, one side of the main shaping block 401 and one side of the notch 10021 opposite to this side flatten the opposite two sides of the copper wire; then, the first boosting cylinder 900 is pushed out to drive the first actuating arm 901 and the first pressing head 901 to move forward. At this time, the other side of the notch 10021 and one side of the first pressing head 901 opposite to this side continue to squeeze the copper wire to form a square. After that, the fourth cylinder 800 releases, and the squared part falls into the material box to complete the processing; then the first cylinder 503, the second cylinder 601, the third cylinder 700 and the fourth cylinder 800 return to their original positions respectively to process the next workpiece.

[0049] The present invention realizes automatic square pressing through the first pressing head, the second pressing head and the main shaping block. Compared with manually pressing the copper wire into a square, the efficiency is higher. Moreover, since the first boosting cylinder and the second boosting cylinder are used as the power for square pressing treatment, it can be stably controlled, improving the accuracy of square pressing treatment and reducing the tolerance; improving the efficiency of square pressing processing.

[0050] The above shows and describes the basic principles, main features and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited by the above embodiments. Without departing from the spirit and scope of the present invention, the present invention will have various changes and improvements, and these changes and improvements all fall within the scope of protection required by the present invention. The scope of protection required by the present invention is defined by the appended claims and their equivalents.

Claims

1. A copper wire square pressing device, characterized in that, It includes a first mounting plate (100), a feeding mechanism (200), a second mounting plate (300), and a third mounting plate (400). Among them, The feeding mechanism (200) is mounted on the first mounting plate (100), and its conveying frame (201) is located between the second mounting plate (300) and the third mounting plate (400); It also includes, A first slide rail (500) is provided on the second mounting plate (300), and a first sliding seat (501) is mounted thereon. The first sliding seat (501) is connected to a first cylinder (503) through a first mounting seat (502) mounted at its top end. The telescopic rod of the first cylinder (503) is connected to a second sliding seat (504). Among them, The second sliding seat (504) is mounted at the top end of the first cylinder (503); The second sliding seat (504) has a second mounting seat (505) connected to its top. Among them, The second mounting seat (505) is connected to a third cylinder (700), and the top end of the third cylinder (700) is connected to a fourth cylinder (800); A first boosting cylinder (900) and a second boosting cylinder (1000) for square pressing and forming are provided on the third mounting plate (400); A third mounting seat (600) is further provided on the second mounting plate (300), and a second cylinder (601) is mounted on the third mounting seat (600). The second cylinder (601) is connected to a fourth mounting seat (603) through a connecting buckle (602). Among them, One end of the fourth mounting seat (603) is connected to the first sliding seat (501); The first boosting cylinder (900) includes a first action arm (901) connected thereto, and the second boosting cylinder (1000) includes a second action arm (1001) connected thereto. Among them, Both the first action arm (901) and the second action arm (1001) are provided inside the third mounting plate (400); The end of the first action arm (901) is a first pressing head (902), and the end of the second action arm (1001) is a second pressing head (1002). Among them, A notch portion (10021) is provided on the second pressing head (1002); A main shaping block (401) is provided at the bottom of the third mounting plate (400).

2. The copper wire square pressing device according to claim 1, wherein, The cross-section of the notch portion (10021) includes a rectangle.

3. The copper wire square pressing device according to claim 1, characterized in that, A first discharge port (301) is provided on the second mounting plate (300), and a second discharge port (101) is provided on the first mounting plate (100). Among them, The first discharge port (301) and the second discharge port (101) are vertically corresponding.

4. The copper wire square pressing device according to claim 1, characterized in that, The third cylinder (700) is a lifting cylinder, and the fourth cylinder (800) is a clamping jaw cylinder.

5. A copper wire square pressing device according to claim 1, characterized in that, The second mounting seat (505) is L-shaped, with one end connected to the second sliding seat (504) and the other end connected to the third cylinder (700).

Citation Information

Patent Citations

  • Squaring device

    CN106532406A

  • Automatic assembling machine for tightening ring and sealing plug of connector

    CN212626476U