A connector stamping device with a positioning structure

By introducing a positioning structure, including a conveyor belt and stamping components, into the connector stamping equipment, the problem of connector position shift during transmission is solved, achieving higher stamping and assembly accuracy and improving production efficiency.

CN224273022UActive Publication Date: 2026-05-26SUZHOU XINCHENYU PRECISION ELECTRONIC TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SUZHOU XINCHENYU PRECISION ELECTRONIC TECH CO LTD
Filing Date
2025-06-17
Publication Date
2026-05-26

AI Technical Summary

Technical Problem

Existing connector stamping equipment lacks a positioning mechanism during movement and transmission, resulting in positional deviation and affecting stamping accuracy and subsequent assembly accuracy.

Method used

A connector stamping device with a positioning structure was designed, including a first conveyor belt, a positioning stamping mechanism and a second conveyor belt. The raw material is limited and fixed by components such as a support frame, stamping components, clamping plates and pressing components to ensure the positional stability during the transmission process, and the upper die base and punch are driven by a cylinder to perform stamping.

Benefits of technology

This effectively prevents the displacement and warping of raw materials during the transmission process, improves stamping accuracy and subsequent assembly accuracy, and enhances production efficiency and product yield.

✦ Generated by Eureka AI based on patent content.

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Abstract

This utility model relates to the field of connector stamping technology, and in particular to a connector stamping device with a positioning structure. It includes a first conveyor belt, a positioning stamping mechanism, and a second conveyor belt. The positioning stamping mechanism includes a support frame, a stamping assembly, a lower die base, two mounting plates, two first adjusting bolts, two clamping plates, and two pressing assemblies. The raw material is placed between the two clamping plates. Rotating the two first adjusting bolts causes the two clamping plates to move relative to each other, fixing the raw material and preventing displacement during transport. Adjusting the two pressing assemblies further limits the position of the raw material, preventing it from warping and causing errors during stamping. The first and second conveyor belts cooperate to transport the raw material, driving the stamping assembly to stamp it. Scrap material is discharged through a scrap outlet, and the connector is discharged through a discharge outlet. This invention solves the problem that connectors lack a positioning mechanism during transport, leading to easy positional shifts, stamping errors, and affecting subsequent assembly accuracy.
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Description

Technical Field

[0001] This utility model relates to the field of connector stamping technology, and in particular to a connector stamping device with a positioning structure. Background Technology

[0002] During the production of connectors, they need to be stamped. Existing stamping equipment has a complex structure and low degree of automation when stamping connectors.

[0003] The push rod structure of the connector pressing equipment disclosed in prior art CN204333574U includes a plastic part feeding slide rail and a metal part feeding slide rail. A plastic part slides in the plastic part feeding slide rail, and a horizontal push cylinder for the plastic part is provided on one side of the plastic part feeding slide rail. A vertical push cylinder for the plastic part is provided between the plastic part feeding slide rail and the metal part feeding slide rail. A metal part slides in the metal part feeding slide rail, and a horizontal push cylinder for the metal part is provided on one side of the metal part feeding slide rail. A stamping cylinder is provided above the plastic part and the metal part. This utility model, through two pressing processes, achieves a high product yield. The entire pressing process is automated, improving production efficiency and pass rate, and is suitable for application in connector production.

[0004] However, in the above structure, the connector lacks a positioning mechanism during the movement and transmission process, and its position is prone to deviation. It is also prone to warping during stamping, resulting in stamping errors and affecting the subsequent assembly accuracy. Utility Model Content

[0005] The purpose of this invention is to provide a connector stamping device with a positioning structure, which solves the problem that the lack of a positioning mechanism during the movement and transmission of connectors makes their position prone to shift, resulting in stamping errors and affecting the accuracy of subsequent assembly.

[0006] To achieve the above objectives, this utility model provides a connector stamping device with a positioning structure, including a first conveyor belt, a positioning stamping mechanism, and a second conveyor belt. The positioning stamping mechanism is disposed between the first and second conveyor belts. The positioning stamping mechanism includes a support frame, a stamping assembly, a lower die base, two mounting plates, two first adjusting bolts, two clamping plates, and two pressing assemblies. The support frame is disposed between the first and second conveyor belts and has a scrap port and a discharge port. The stamping assembly is disposed above the support frame. The lower die base is fixedly connected to the support frame and is located above the support frame. The two mounting plates are respectively disposed opposite each other above the lower die base. The two first adjusting bolts are threadedly connected to the two mounting plates and pass through the two mounting plates. The two clamping plates are respectively installed at the through ends of the two first adjusting bolts. The two pressing assemblies are respectively disposed above the two mounting plates.

[0007] The stamping assembly includes a mounting bracket, a cylinder, an upper die holder, and multiple punches. The mounting bracket is fixedly connected to the support bracket and is located above the support bracket. The cylinder is mounted above the mounting bracket, and the output end of the cylinder passes through the mounting bracket. The upper die holder is fixedly connected to the output end of the cylinder and is located below the mounting bracket. The multiple punches are respectively fixedly connected to the upper die holder and are respectively located below the upper die holder.

[0008] The clamping assembly includes a fixed plate, a second adjusting bolt, and a pressure plate. The fixed plate is installed above the mounting plate. The second adjusting bolt is threaded to the fixed plate and passes through the fixed plate. The pressure plate is fixedly connected to the second adjusting bolt and is located below the fixed plate.

[0009] The connector stamping equipment with positioning structure also includes a collection mechanism, which is located below the lower die base.

[0010] The collection mechanism includes a fixed frame, a waste bin, and a collection box. The fixed frame is fixedly connected to the support frame and is located below the support frame. The waste bin is slidably connected to the fixed frame and is located below the waste outlet. The collection box is slidably connected to the fixed frame and is located below the discharge outlet.

[0011] This utility model discloses a connector stamping device with a positioning structure. The raw material is placed between two clamping plates. Rotating the two first adjusting bolts causes the two clamping plates to move relative to each other, limiting and fixing the raw material to prevent displacement during subsequent transport and thus affecting stamping accuracy. Simultaneously, adjusting the two clamping components further limits the raw material, preventing excessive stamping force that could cause it to warp and produce errors. The first and second conveyor belts work together to transport the raw material, driving the stamping components to operate and stamp it. Waste material generated during stamping is discharged through the waste outlet, and the stamped connector is discharged through the unloading outlet. This invention solves the problem of connectors lacking a positioning mechanism during transport, leading to easy positional shifts, stamping errors, and affecting subsequent assembly accuracy. Attached Figure Description

[0012] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the accompanying drawings used in the description of the embodiments or the prior art will be briefly introduced below.

[0013] Figure 1 This is a schematic diagram of the overall structure of the first embodiment of the present invention.

[0014] Figure 2 This is a bottom view of the overall structure of the first embodiment of this utility model.

[0015] Figure 3 This is a schematic diagram of the structure of the mounting plate, the first adjusting bolt, the clamping plate, the fixing plate, the second adjusting bolt, and the pressure plate in the first embodiment of this utility model.

[0016] Figure 4 This is a schematic diagram of the internal structure of the fixing frame according to the second embodiment of the present invention.

[0017] 101-First conveyor belt, 102-Second conveyor belt, 103-Support frame, 104-Lower die base, 105-Mounting plate, 106-First adjusting bolt, 107-Clamping plate, 108-Mounting frame, 109-Cylinder, 110-Upper die base, 111-Punch, 112-Fixing plate, 113-Second adjusting bolt, 114-Pressure plate, 115-Scrap outlet, 116-Discharge outlet, 201-Fixing frame, 202-Scrap bin, 203-Collection bin. Detailed Implementation

[0018] The embodiments of the present invention are described in detail below. Examples of the embodiments are shown in the accompanying drawings. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain the present invention, but should not be construed as limiting the present invention.

[0019] First Embodiment

[0020] Please see Figures 1-3 , Figure 1 This is a schematic diagram of the overall structure of the first embodiment of the present invention. Figure 2 This is a bottom view of the overall structure of the first embodiment of this utility model. Figure 3 This is a schematic diagram of the structure of the mounting plate, the first adjusting bolt, the clamping plate, the fixing plate, the second adjusting bolt, and the pressure plate in the first embodiment of this utility model.

[0021] This utility model provides a connector stamping device with a positioning structure, including a first conveyor belt 101, a positioning stamping mechanism, and a second conveyor belt 102. The positioning stamping mechanism includes a support frame 103, a stamping assembly, a lower die base 104, two mounting plates 105, two first adjusting bolts 106, two clamping plates 107, and two pressing assemblies. The stamping assembly includes a mounting frame 108, a cylinder 109, an upper die base 110, and multiple punches 111. The pressing assemblies include a fixing plate 112, a second adjusting bolt 113, and a pressure plate 114.

[0022] In a specific embodiment, the positioning and stamping mechanism is disposed between the first conveyor belt 101 and the second conveyor belt 102, the support frame 103 is disposed between the first conveyor belt 101 and the second conveyor belt 102, and the support frame 103 is provided with a scrap port 115 and a discharge port 116. The stamping assembly is disposed above the support frame 103. The lower die base 104 is fixedly connected to the support frame 103 and is located above the support frame 103. Two mounting plates 105 are respectively disposed opposite each other above the lower die base 104. Two first adjusting bolts 106 are respectively threadedly connected to the two mounting plates 105, and the two first adjusting bolts 106 respectively penetrate the two mounting plates 105. Two clamping plates 107 are respectively installed on the through ends of the two first adjusting bolts 106. Two clamping assemblies are respectively disposed on the upper parts of the two mounting plates 105. In this design, the user can add the first adjusting bolt 106 according to the length of the clamping plate 107, place the raw material between the two clamping plates 107, rotate the two first adjusting bolts 106, and the two clamping plates 107 move relative to each other to limit and fix the raw material, preventing displacement of the raw material during subsequent transmission and affecting the stamping accuracy. At the same time, adjust the two clamping components to further limit the raw material, preventing excessive stamping force from causing the raw material to warp and produce errors. Drive the first conveyor belt 101 and the second conveyor belt 102 to cooperate in transmitting the raw material, drive the stamping components to operate, and stamp the raw material. The waste generated during stamping is discharged through the waste port 115, and the stamped connector is discharged through the unloading port 116. This solves the problem that the connector lacks a positioning mechanism during movement and transmission, which can easily cause positional deviation, resulting in stamping errors and affecting the subsequent assembly accuracy.

[0023] The mounting bracket 108 is fixedly connected to the support bracket 103 and is located above the support bracket 103. The cylinder 109 is mounted above the mounting bracket 108, and the output end of the cylinder 109 passes through the mounting bracket 108. The upper die base 110 is fixedly connected to the output end of the cylinder 109 and is located below the mounting bracket 108. Multiple punches 111 are fixedly connected to the upper die base 110 and are located below the upper die base 110. The mounting bracket 108 is used to support the cylinder 109. During stamping, the cylinder 109 operates, driving the upper die base 110 to move vertically downward. The multiple punches 111 stamp the raw material, and the waste generated after stamping is discharged through the waste outlet 115.

[0024] The fixing plate 112 is installed above the mounting plate 105. The second adjusting bolt 113 is threadedly connected to the fixing plate 112 and passes through the fixing plate 112. The pressure plate 114 is fixedly connected to the second adjusting bolt 113 and is located below the fixing plate 112. The fixing plate 112 is used to install the second adjusting bolt 113. When using the pressure plate 114, the user can add the second adjusting bolt 113 according to the length of the pressure plate 114. When using the pressure plate 114, the pressure plate 114 can be moved vertically downward by rotating the second adjusting bolt 113. The pressure plate 114 further fixes the raw material to prevent it from warping during the stamping process, causing stamping errors and affecting the subsequent assembly accuracy.

[0025] In the connector stamping equipment with a positioning structure of this utility model, the raw material is placed between two clamping plates 107. Rotating the two first adjusting bolts 106 causes the two clamping plates 107 to move relative to each other, limiting and fixing the raw material to prevent displacement during subsequent transport and thus affecting stamping accuracy. Simultaneously, rotating the second adjusting bolt 113 causes the pressure plate 114 to move vertically downwards, further fixing the raw material and preventing it from warping during stamping. The first conveyor belt 101 and the second conveyor belt 102 cooperate to transport the raw material, driving the cylinder 109 to operate and causing the upper die base 110 to move vertically downwards. Multiple punches 111 stamp the raw material, and the waste generated after stamping is discharged through the waste outlet 115. This solves the problem that connectors lack a positioning mechanism during transport, leading to easy positional shifts, stamping errors, and affecting subsequent assembly accuracy.

[0026] Second Embodiment

[0027] Please see Figure 4 , Figure 4 This is a schematic diagram of the internal structure of the fixing frame according to the second embodiment of the present invention.

[0028] Based on the first embodiment, the connector stamping equipment with positioning structure of this utility model also includes a collection mechanism, which includes a fixing frame 201, a waste bin 202 and a collection box 203.

[0029] In a specific implementation, the collection mechanism is located below the lower die base 104, and the collection mechanism is used to collect the waste material and finished product after stamping.

[0030] The fixed frame 201 is fixedly connected to the support frame 103 and located below the support frame 103. The waste bin 202 is slidably connected to the fixed frame 201 and located below the waste outlet 115. The collection bin 203 is slidably connected to the fixed frame 201 and located below the discharge outlet 116. The fixed frame 201 is used to fix the waste bin 202 and the collection bin 203. Waste generated during the stamping process falls into the waste bin 202 through the waste outlet 115. After the finished product is stamped, it falls into the collection bin 203 through the discharge outlet 116.

[0031] The above-disclosed embodiments are merely one or more preferred embodiments of this application and should not be construed as limiting the scope of this application. Those skilled in the art can understand that all or part of the processes for implementing the above embodiments and equivalent changes made in accordance with the claims of this application still fall within the scope of this application.

Claims

1. A connector stamping device with a positioning structure, characterized in that, The system includes a first conveyor belt, a positioning and stamping mechanism, and a second conveyor belt. The positioning and stamping mechanism is disposed between the first and second conveyor belts. The positioning and stamping mechanism includes a support frame, a stamping assembly, a lower die base, two mounting plates, two first adjusting bolts, two clamping plates, and two pressing assemblies. The support frame is disposed between the first and second conveyor belts and has a scrap outlet and a discharge outlet. The stamping assembly is disposed above the support frame. The lower die base is fixedly connected to the support frame and is located above the support frame. The two mounting plates are respectively disposed opposite each other above the lower die base. The two first adjusting bolts are respectively threaded to the two mounting plates and pass through the two mounting plates. The two clamping plates are respectively installed at the through ends of the two first adjusting bolts. The two pressing assemblies are respectively disposed above the two mounting plates.

2. The connector stamping equipment with a positioning structure as described in claim 1, characterized in that, The stamping assembly includes a mounting bracket, a cylinder, an upper die holder, and multiple punches. The mounting bracket is fixedly connected to the support bracket and is located above the support bracket. The cylinder is mounted above the mounting bracket, and the output end of the cylinder passes through the mounting bracket. The upper die holder is fixedly connected to the output end of the cylinder and is located below the mounting bracket. The multiple punches are respectively fixedly connected to the upper die holder and are respectively located below the upper die holder.

3. The connector stamping equipment with a positioning structure as described in claim 1, characterized in that, The clamping assembly includes a fixed plate, a second adjusting bolt, and a pressure plate. The fixed plate is installed above the mounting plate. The second adjusting bolt is threadedly connected to the fixed plate and passes through the fixed plate. The pressure plate is fixedly connected to the second adjusting bolt and is located below the fixed plate.

4. The connector stamping equipment with a positioning structure as described in claim 1, characterized in that, The connector stamping equipment with positioning structure also includes a collection mechanism, which is located below the lower die base.

5. A connector stamping device with a positioning structure as described in claim 4, characterized in that, The collection mechanism includes a fixed frame, a waste bin, and a collection box. The fixed frame is fixedly connected to the support frame and is located below the support frame. The waste bin is slidably connected to the fixed frame and is located below the waste outlet. The collection box is slidably connected to the fixed frame and is located below the discharge outlet.