A follow-up cutting device and process for processing metal row coated wire

By adopting follow-up cutting devices and processes in the metal row cladding line processing, and using automated conveying and positioning cutting technology, the problems of low cutting efficiency and poor accuracy in the prior art are solved, and an efficient and accurate cutting process is achieved.

CN119260063BActive Publication Date: 2025-06-17SUZHOU GEFAN HARDWARE & PLASTIC IND CO LTD
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Patent Information

Application Number
CN202411813228.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-12-11
Publication Date
2025-06-17
Estimated Expiration
2044-12-11

AI Technical Summary

Technical Problem

The existing metal row cladding wire cutting technology mostly adopts fixed cutting methods, resulting in low production efficiency and high operation difficulty, and easy to cause bending and excessive straightness after cutting.

Method used

Using follow-up cutting device and process, automatic cutting is achieved through the conveying device and guide conveying mechanism, length is detected and cut is performed using the distance measuring box, and the positioning and cutting device and telescopic positioning assembly are combined to ensure cutting accuracy and stability.

Benefits of technology

It realizes efficient and automated cutting of metal-rowed line body, solves the problems of bending and linearity exceeding the limit, and improves production efficiency and product quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a follow-up cutting device and a process for processing a metal bar coated wire body, which relate to the technical field of metal processing, and include: a workbench, which is placed in an isolation room; a conveying device, which is fixed on the workbench; a guiding conveying mechanism, which is arranged at the input end of the conveying device and fixed on the workbench; a distance measuring box, which is arranged at the output end of the conveying device and fixed on an end of the workbench away from the guiding conveying mechanism; two mobile reset devices, which are symmetrically distributed front and back, are fixed on the workbench and are located on the front and rear sides of the conveying device; and a positioning cutting device, which is slidably arranged on the mobile reset devices on both sides. Compared with the prior art, the invention realizes automated cutting work, cuts the metal bar coated wire body while conveying, and effectively solves the problems of product bending and out-of-tolerance straightness after cutting.
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Description

Technical Field

[0001] The present invention relates to the technical field of metal processing, and more specifically to a follow-up cutting device and process for processing a metal row coated wire body. Background Art

[0002] Metal busbar coated wire is a material widely used in industrial production. Its processing requires high precision and high efficiency. In the processing, cutting is a key step, which directly affects the quality of the product and production efficiency. At present, the cutting of metal busbar coated wire mostly adopts a fixed cutting method, which usually takes a lot of time and manpower, not only increasing the production cost, but also reducing the production efficiency, and the operation is difficult. In order to ensure the safety of the staff, the operator is required to have high professional skills and experience, which increases the difficulty and complexity of the operation. Moreover, when a fixed cutting method is adopted, bending and straightness deviation will be caused during the product transportation process, which will affect the subsequent process operations, easily cause errors, and affect the overall quality of the product. Therefore, it is necessary to provide a follow-up cutting device and process for metal busbar coated wire processing to solve the problems raised in the above background technology. Summary of the invention

[0003] To achieve the above-mentioned purpose, the present invention provides the following technical solution: a follow-up cutting device and process for processing a metal bar coated wire, comprising:

[0004] The workbench is placed in the isolation room;

[0005] A conveying device, fixed on the workbench;

[0006] A guiding conveying mechanism is arranged at the input end of the conveying device and fixed on the workbench;

[0007] The distance measuring box is arranged at the output end of the conveying device and fixed on the end of the workbench away from the guiding conveying mechanism;

[0008] The mobile reset device is symmetrically arranged in two at the front and rear sides, fixed on the workbench and located at the front and rear sides of the conveying device;

[0009] The positioning cutting device is slidably arranged on the movable resetting devices on both sides.

[0010] Preferably, the conveying device comprises:

[0011] There are two conveyor chains symmetrically distributed front and back, set between the workbenches;

[0012] The driving sprockets are symmetrically distributed in two groups, each group is symmetrically distributed in two groups, and are respectively connected to the conveyor chain. The center of the driving sprocket is rotatably connected to the workbench through a shaft.

[0013] A driving motor is fixed on the workbench, and a driving shaft of the driving motor is fixedly connected to the shaft body of one of the driving sprockets;

[0014] The support rails are provided with two groups symmetrically distributed front and back, and each group is provided with two symmetrically distributed up and down, fixed on the workbench, and each group of the support rails corresponds to the same conveyor chain;

[0015] A plurality of brackets are distributed along the conveyor chains and fixed on the two conveyor chains;

[0016] A plurality of conveying assemblies are arranged at intervals along the conveying chain and are respectively fixed on the brackets;

[0017] The limit adjustment platform is fixed between the upper support rails and is located below the upper bracket. The limit adjustment platform is trapezoidal, and limit slideways are provided on the top and left and right side planes. The top plane of the limit adjustment platform is a lifting structure.

[0018] Preferably, the conveying assembly comprises:

[0019] Connect the panels and fix them on the brackets;

[0020] Auxiliary conveying platform, fixed on the connection panel;

[0021] An adjustment mechanism is arranged in the auxiliary conveying platform, and the bottom of the adjustment mechanism passes through the connecting panel and the bracket and corresponds to the limit adjustment platform;

[0022] Two clamping conveying plates are symmetrically distributed front and back and are slidably arranged on the auxiliary conveying platform, and the bottom of the clamping conveying plate is fixedly connected to the adjusting mechanism.

[0023] Preferably, the adjustment mechanism comprises:

[0024] A limiter, fixed at the inner center of the auxiliary conveying platform;

[0025] A central gear, rotatably arranged at the center of the limiting member;

[0026] Two movable racks are symmetrically distributed about the center of the central gear, and are slidably arranged on the limiter. The movable racks are respectively meshed with the central gear, and the movable racks are respectively fixedly connected to the bottom of the clamping conveying plates on both sides;

[0027] A rotating shaft body is fixed below the central gear, and the rotating shaft body passes through the connecting panel and is rotatably connected to the top surface of the bracket;

[0028] The control shaft body is slidably connected to the bottom of the bracket and is connected to the rotating shaft body through a thread. The bottom of the control shaft body is provided with a clamping block corresponding to the limit slideway on the limit adjustment platform.

[0029] Preferably, a plurality of conveying rollers distributed in a straight line are provided on the inner side of the clamping conveying plate, and the conveying rollers are fixed in the clamping conveying plate by elastic members.

[0030] Preferably, the guiding and conveying mechanism comprises:

[0031] A guide box, fixed on the workbench, is located at the input end of the conveying device;

[0032] The telescopic adjustment components are symmetrically arranged in two groups and fixed in the guide box, located on both sides of the metal row coated wire body;

[0033] A moving surface is fixed on the telescopic adjustment component, and the moving surface is located between the metal row coated wire body and the telescopic adjustment component;

[0034] A plurality of conveying rollers are arranged in a straight line and are rollingly arranged on a moving surface to fit with the metal row coated wire body.

[0035] Preferably, the mobile resetting device comprises:

[0036] There are two slide rails symmetrically distributed front and back, fixed on the workbench;

[0037] A cylinder is fixed on the workbench and is located above the slide rail, and the cylinder is located at the output end of the conveying device;

[0038] The sliding shaft body has one end slidably arranged in the cylinder and the other end fixedly connected to the side of the positioning and cutting device.

[0039] Preferably, the positioning and cutting device comprises:

[0040] The sliders are symmetrically arranged in two groups, each group is linearly arranged with a plurality of sliders, and are slidably arranged on the slide rails;

[0041] Two movable platforms are symmetrically distributed front and back and are fixed on each set of sliders respectively, and the sides of the movable platforms are fixedly connected to the sliding shafts;

[0042] A telescopic positioning component is arranged corresponding to the moving platform and fixed on the moving platform;

[0043] The cutting assembly is fixed on the top of the telescopic positioning assemblies on both sides and is located above the conveying device.

[0044] Preferably, the telescopic positioning assembly comprises:

[0045] A telescopic mechanism is fixed on the moving platform;

[0046] A positioning plate is fixed to a side of the telescopic mechanism adjacent to the conveying device, and the positioning plate corresponds to the bracket;

[0047] The lower cutting opening is arranged on a side of the positioning plate close to the conveying device.

[0048] Preferably, the cutting assembly comprises:

[0049] The cutting platform is fixed on the top of the telescopic positioning components on both sides;

[0050] A fixed block, fixed on the cutting platform;

[0051] A moving mechanism, which is movably arranged on a fixed block;

[0052] A cutting machine, fixedly connected to the moving mechanism;

[0053] The upper cutting opening is arranged in the middle of the cutting platform, corresponding to the lower cutting opening, and the upper cutting opening corresponds to the cutting machine.

[0054] A follow-up cutting process for processing a metal bar coated wire body comprises the following steps:

[0055] Step 1: First, the metal bar coated wire body is transported to the conveying device through the guide conveying mechanism. The metal bar coated wire body passes through the conveying device under the drive of the guide conveying mechanism and is output after passing through the distance measuring box. At this time, the top plane of the limit adjustment table in the conveying device is in a downward state;

[0056] Step 2: When the distance measuring box detects the predetermined length and needs to be cut, the conveying mechanism is guided to stop working. At this time, the telescopic positioning component is extended to make the positioning plate clamped between the connecting panels on both sides. The lower cutting opening corresponds to the point to be cut. At the same time, the top plane of the limit adjustment table in the conveying device moves upward, and the clamping conveying plate is driven by the adjustment mechanism to clamp the metal row coated wire body;

[0057] Step 3: Then start the driving motor to drive the conveyor chain to rotate, and at the same time, the clamping conveyor plate drives the metal row coated wire body to be conveyed, and drives the positioning and cutting device to follow and move on the slide rail. During the movement, the cutting work is completed by the cutting assembly;

[0058] Step 4: After the cutting is completed, the conveying device stops rotating, and then the telescopic positioning assembly is retracted to separate the positioning plate from the connecting panels on both sides. Then the top plane of the limit adjustment table in the conveying device moves downward, and the metal row coated wire body is conveyed by the guiding conveying mechanism, and then the mobile reset device drives the positioning and cutting device to reset.

[0059] Compared with the prior art, the present invention has the following beneficial effects:

[0060] The present invention realizes automated cutting work through the arrangement of a conveying device and a guiding conveying mechanism. The metal bar coated wire body is continuously conveyed by the conveying device, and the length of the metal bar coated wire body is measured by a distance measuring box. When cutting, the conveying device drives the moving conveying and drives the positioning cutting device to move synchronously. The metal bar coated wire body is cut while being conveyed, effectively solving the problems of product bending and out-of-tolerance straightness after cutting. BRIEF DESCRIPTION OF THE DRAWINGS

[0061] Figure 1 It is a schematic diagram of the overall structure of a follow-up cutting device for processing metal row coated wire;

[0062] Figure 2 It is a schematic diagram of the structure of a conveying device in a follow-up cutting device for processing a metal row coated wire body;

[0063] Figure 3 It is a structural schematic diagram of a conveying component in a follow-up cutting device for processing a metal row coated wire body;

[0064] Figure 4 It is a structural schematic diagram of a telescopic adjustment component and a clamping conveying plate in a follow-up cutting device for processing metal bar coated wire;

[0065] Figure 5 It is a structural schematic diagram of a guiding and conveying mechanism in a follow-up cutting device for processing metal bar coated wire bodies;

[0066] Figure 6 It is a structural schematic diagram of a moving resetting device and a positioning cutting device in a follow-up cutting device for processing a metal bar coated wire body;

[0067] Figure 7 It is a structural schematic diagram of a telescopic positioning component in a follow-up cutting device for processing a metal row coated wire body;

[0068] Figure 8 It is a schematic structural diagram of a cutting assembly in a follow-up cutting device for processing a metal bar coated wire body;

[0069] In the figure: 1, workbench; 2, conveying device; 3, guiding conveying mechanism; 4, distance measuring box; 5, mobile reset device; 6, positioning cutting device; 21, conveying chain; 22, driving sprocket; 23, driving motor; 24, supporting guide rail; 25, bracket; 26, conveying assembly; 27, limit adjustment table; 31, guiding box; 32, telescopic adjustment assembly; 33, moving surface; 34, conveying roller; 51, slide rail; 52, cylinder; 53, sliding shaft; 61, slider; 62, moving table; 63, telescopic positioning assembly; 64 , cutting assembly; 261, connecting panel; 262, auxiliary conveying platform; 263, adjusting mechanism; 264, clamping conveying plate; 631, telescopic mechanism; 632, positioning plate; 633, lower cutting opening; 641, cutting platform; 642, fixing block; 643, moving mechanism; 644, cutting machine; 645, upper cutting opening; 2631, limiting member; 2632, center gear; 2633, moving rack; 2634, rotating shaft; 2635, control shaft; 2641, conveying roller; 2642, elastic member. DETAILED DESCRIPTION

[0070] See also Figures 1 to 8 In an embodiment of the present invention, a follow-up cutting device and process for processing a metal bar coated wire body include:

[0071] Workbench 1, placed in the isolation room;

[0072] A conveying device 2 is fixed on the workbench 1;

[0073] The guide conveying mechanism 3 is arranged at the input end of the conveying device 2 and fixed on the workbench 1;

[0074] The distance measuring box 4 is arranged at the output end of the conveying device 2 and fixed on the end of the workbench 1 away from the guiding conveying mechanism 3;

[0075] The movable reset device 5 is provided with two symmetrically distributed front and rear, fixed on the workbench 1, and located at the front and rear sides of the conveying device 2;

[0076] The positioning and cutting device 6 is slidably arranged on the moving and resetting devices 5 on both sides.

[0077] In this embodiment, the conveying device 2 includes:

[0078] Conveyor chains 21, two of which are symmetrically distributed front and back, are arranged between the workbenches 1;

[0079] The driving sprocket 22 is symmetrically distributed in two groups, and each group is symmetrically distributed in two groups, which are respectively connected to the conveying chain 21, and the center of the driving sprocket 22 is rotatably connected to the workbench 1 through a shaft;

[0080] A driving motor 23 is fixed on the workbench 1, and a driving shaft of the driving motor 23 is fixedly connected to the shaft of one of the driving sprockets 22;

[0081] The support rails 24 are provided with two groups symmetrically distributed front and back, and each group is provided with two symmetrically distributed up and down, fixed on the workbench 1, and each group of the support rails 24 corresponds to the same conveyor chain 21;

[0082] A plurality of brackets 25 are distributed along the conveyor chains 21 and fixed on the two conveyor chains 21;

[0083] A plurality of conveying components 26 are arranged at intervals along the conveying chain 21 and are respectively fixed on the bracket 25;

[0084] The limit adjustment platform 27 is fixed between the upper support rails 24 and is located below the upper bracket 25. The limit adjustment platform 27 is trapezoidal, and limit slideways are provided on the top and left and right side planes. The top plane of the limit adjustment platform 27 is a lifting structure.

[0085] That is to say, when the guiding conveying mechanism 3 conveys the metal row coated wire, the top plane of the limit adjustment platform 27 moves down, and the conveying component 26 assists the metal row coated wire to move on the conveying device 2, and the metal row coated wire passes through the conveying device 2 and is output after passing through the distance measuring box 4; when the metal row coated wire needs to be cut, the guiding conveying mechanism 3 stops working, and the conveying device 2 drives the metal row coated wire to be conveyed. At this time, the top plane of the limit adjustment platform 27 moves up, driving the conveying component 26 to clamp and fix the metal row coated wire, and then Start the driving motor 23, drive the conveying chain 21 to rotate through the driving sprocket 22, and then drive the conveying assembly 26 to move through the bracket 25. While the conveying assembly 26 drives the metal row coated wire to move, the conveying assembly 26 drives the positioning and cutting device 6 to move synchronously to cut the metal row coated wire. After the cutting is completed, the positioning and cutting device 6 moves and resets, and the driving motor 23 stops working, and the top plane of the limit adjustment platform 27 moves down and resets, loosening the metal row coated wire, and then the metal row coated wire is transported by the guiding conveying mechanism 3.

[0086] In this embodiment, the conveying assembly 26 includes:

[0087] A connecting panel 261 is fixed on the bracket 25;

[0088] Auxiliary conveying platform 262, fixed on the connecting panel 261;

[0089] The adjusting mechanism 263 is arranged in the auxiliary conveying platform 262, and the bottom of the adjusting mechanism 263 passes through the connecting panel 261 and the bracket 25, corresponding to the limit adjustment platform 27;

[0090] Two clamping conveying plates 264 are symmetrically distributed in the front and rear, and are slidably arranged on the auxiliary conveying platform 262 . The bottom of the clamping conveying plate 264 is fixedly connected to the adjustment mechanism 263 .

[0091] That is to say, when the guiding conveying mechanism 3 is conveying the metal bar coated wire body, the top plane of the limit adjustment platform 27 moves downward, and the adjustment mechanism 263 is adjusted through the limit slide, so that the clamping conveying plate 264 only assists in moving the metal bar coated wire body; when the metal bar coated wire body needs to be cut, the guiding conveying mechanism 3 stops working, and the conveying device 2 drives the metal bar coated wire body to be conveyed. At this time, the top plane of the limit adjustment platform 27 moves upward, and the adjustment mechanism 263 is adjusted through the limit slide, so that the clamping conveying plate 264 clamps and fixes the metal bar coated wire body, and then the driving motor 23 is started, and the conveying chain 21 is driven to move by the driving sprocket 22 to convey the metal bar coated wire body, and under the action of the connecting panel 261 and the auxiliary conveying platform 262, the metal bar coated wire body is suspended on the bracket 25 between the two conveying components 26, so as to facilitate the positioning and cutting device 6 to locate the cutting point and perform cutting.

[0092] In this embodiment, the adjustment mechanism 263 includes:

[0093] A stopper 2631 is fixed at the inner center of the auxiliary conveying platform 262;

[0094] A central gear 2632 is rotatably disposed at the center of the limiting member 2631;

[0095] The movable racks 2633 are symmetrically arranged with two pieces about the center of the central gear 2632, and are slidably arranged on the stopper 2631. The movable racks 2633 are respectively meshed with the central gear 2632, and the movable racks 2633 are respectively fixedly connected to the bottom of the clamping conveying plates 264 on both sides;

[0096] The rotating shaft 2634 is fixed below the central gear 2632, and the rotating shaft 2634 passes through the connecting panel 261 and is rotatably connected to the top surface of the bracket 25;

[0097] The control shaft 2635 is slidably connected to the bottom of the bracket 25 and is connected to the rotating shaft 2634 via a thread. A block corresponding to the limit slideway on the limit adjustment platform 27 is provided at the bottom of the control shaft 2635 .

[0098] That is to say, the top plane of the limit adjustment platform 27 moves downward, and under the action of the limit slide, the control shaft 2635 is driven downward by the card block, and then under the restriction of the bracket 25, the rotating shaft 2634 drives the central gear 2632 to rotate counterclockwise, and then drives the clamping conveying plates 264 on both sides to move outward through the moving rack 2633, so that the clamping conveying plates 264 can only assist the metal row coated wire body to move; when the top plane of the limit adjustment platform 27 moves upward, under the action of the limit slide, the control shaft 2635 is driven upward by the card block, and then under the restriction of the bracket 25, the rotating shaft 2634 drives the central gear 2632 to rotate clockwise, and then drives the two sides through the moving rack 2633. The clamping conveying plate 264 moves toward the center, so that the clamping conveying plate 264 clamps the metal row coated wire body, and under the drive of the driving motor 23, the metal row coated wire body is driven to be conveyed through the conveying chain 21. At this time, when the conveying assembly 26 passes through the limit adjustment platform 27 in turn, the control shaft 2635 first moves up to control the clamping conveying plate 264 to clamp the metal row coated wire body, and at the top plane of the limit adjustment platform 27, the metal row coated wire body is kept clamped, and then the control shaft 2635 moves down again to control the clamping conveying plate 264 to release the metal row coated wire body. While the metal row coated wire body is kept clamped, the metal row coated wire body is driven to move continuously to complete the conveying of the metal row coated wire body.

[0099] In this embodiment, a plurality of conveying rollers 2641 distributed in a straight line are disposed on the inner side of the clamping conveying plate 264 , and the conveying rollers 2641 are fixed in the clamping conveying plate 264 via elastic members 2642 .

[0100] That is to say, when the top plane of the limit adjustment platform 27 moves downward, the adjustment mechanism 263 is adjusted through the limit slide, so that the clamping conveying plate 264 moves to both sides, and then the metal row coated wire body is assisted to move by the conveying roller 2641; when the top plane of the limit adjustment platform 27 moves upward, the adjustment mechanism 263 is adjusted through the limit slide, so that the clamping conveying plate 264 moves toward the center, and then under the extrusion of the metal row coated wire body, the elastic member 2642 is compressed, so that the conveying roller 2641 is retracted into the clamping conveying plate 264, and then the metal row coated wire body is clamped and fixed by the side wall of the clamping conveying plate 264, so as to facilitate the conveying of the metal row coated wire body by the conveying device 2.

[0101] In this embodiment, the guiding and conveying mechanism 3 includes:

[0102] The guide box 31 is fixed on the workbench 1 and is located at the input end of the conveying device 2;

[0103] The telescopic adjustment components 32 are symmetrically arranged in two groups and fixed in the guide box 31, and are located on both sides of the metal row coated wire body;

[0104] The moving surface 33 is fixed on the telescopic adjustment component 32, and the moving surface 33 is located between the metal bar coated wire body and the telescopic adjustment component 32;

[0105] A plurality of conveying rollers 34 are linearly distributed and rollingly arranged on the moving surface 33 to fit the metal row coated wire body.

[0106] That is to say, when the metal row coated wire body passes through the guide box 31, under the action of the telescopic adjustment components 32 on both sides, the conveying rollers 34 are pushed to fit the two sides of the metal row coated wire body through the movable surface 33, and under the continuous rolling of the conveying rollers 34, the metal row coated wire body is driven to move toward the conveying device 2.

[0107] In this embodiment, the mobile reset device 5 includes:

[0108] Two slide rails 51 are symmetrically arranged front and rear and fixed on the workbench 1;

[0109] The cylinder 52 is fixed on the workbench 1 and is located above the slide rail 51, and the cylinder 52 is located at the output end of the conveying device 2;

[0110] The sliding shaft 53 has one end slidably disposed in the cylinder 52 and the other end fixedly connected to the side of the positioning and cutting device 6 .

[0111] That is to say, when the conveying device 2 drives the positioning and cutting device 6 to move on the slide rail 51 and cuts the metal bar coated wire body, the positioning and cutting device 6 pushes the sliding shaft 53 to move toward the inside of the cylinder 52. After the cutting is completed, the sliding shaft 53 is pushed out by the cylinder 52, and then the sliding shaft 53 pushes the positioning and cutting device 6 to move and reset on the slide rail 51.

[0112] In this embodiment, the positioning and cutting device 6 includes:

[0113] Slide blocks 61 are provided in two groups symmetrically distributed front and back, each group is provided with a plurality of slide blocks distributed linearly, and are slidably arranged on the slide rail 51;

[0114] Two movable platforms 62 are symmetrically arranged in the front and rear directions and are fixed on each set of sliders 61 respectively, and the side of the movable platform 62 is fixedly connected to the sliding shaft 53;

[0115] The telescopic positioning assembly 63 is arranged corresponding to the moving platform 62 and fixed on the moving platform 62;

[0116] The cutting assembly 64 is fixed on the top of the telescopic positioning assemblies 63 on both sides and is located above the conveying device 2 .

[0117] That is to say, when the distance measuring box 4 detects the predetermined length of the metal row coated wire body and the metal row coated wire body needs to be cut, after the cutting point of the metal row coated wire body moves to the position corresponding to the cutting component 64 in the positioning and cutting device 6, the telescopic adjustment component 32 in the guide box 31 drives the conveying roller 34 away from the two sides of the metal row coated wire body through the moving surface 33, and the metal row coated wire body stops moving. Then, the telescopic positioning component 63 is extended and moved to the bottom of the metal row coated wire body, and the telescopic positioning component 63 is located between the conveying components 26 on both sides, and then the adjustment mechanism 263 is controlled by the limit adjustment platform 27 to adjust the metal row coated wire body. The metal row coated wire body is clamped and fixed, and then the metal row coated wire body is driven to be conveyed by the conveying chain 21. During the movement of the metal row coated wire body, the telescopic positioning component 63 is restricted by the conveying component 26 and drives the cutting component 64 to move with the conveying chain 21. Then, when the metal row coated wire body moves to the output end of the conveying device 2, the cutting component 64 cuts the metal row coated wire body, and then the telescopic positioning component 63 is retracted and reset, and the positioning and cutting device 6 is pushed to reset by the moving reset device 5, the conveying device 2 stops rotating, the limit adjustment table 27 is reset, and the metal row coated wire body is conveyed by the guiding conveying mechanism 3.

[0118] In this embodiment, the telescopic positioning assembly 63 includes:

[0119] The telescopic mechanism 631 is fixed on the moving platform 62;

[0120] A positioning plate 632 is fixed to a side of the telescopic mechanism 631 adjacent to the conveying device 2, and the positioning plate 632 corresponds to the bracket 25;

[0121] The lower cutting opening 633 is disposed on a side of the positioning plate 632 close to the conveying device 2 .

[0122] That is to say, driven by the telescopic mechanism 631, the positioning plate 632 is pushed to the bottom of the metal row coated wire body, and under the restriction of the conveying components 26 on both sides, the lower cutting port 633 corresponds to the cutting point on the metal row coated wire body to cooperate with the cutting component 64 to cut the metal row coated wire body.

[0123] In this embodiment, the cutting assembly 64 includes:

[0124] The cutting platform 641 is fixed on the top of the telescopic positioning components 63 on both sides;

[0125] A fixing block 642, fixed on the cutting platform 641;

[0126] A moving mechanism 643, movably arranged on the fixed block 642;

[0127] The cutting machine 644 is fixedly connected to the moving mechanism 643;

[0128] The upper cutting opening 645 is disposed in the middle of the cutting platform 641 , corresponding to the lower cutting opening 633 , and the upper cutting opening 645 corresponds to the cutting machine 644 .

[0129] That is to say, when the telescopic mechanism 631 in the telescopic positioning assembly 63 pushes the positioning plate 632 to be stuck between the conveying assemblies 26 on both sides, the conveying device 2 drives the metal row coated wire body and the positioning and cutting device 6 to move synchronously, and then during the movement, the cutting machine 644 is driven by the moving mechanism 643 to move on the cutting platform 641, and cuts downward along the upper cutting opening 645 to the lower cutting opening 633, and completely cuts the metal row coated wire body, which not only ensures that the metal row coated wire body remains fixed during the cutting process, but also effectively prevents problems such as bending and straightness deviation caused by transportation after cutting.

[0130] In this embodiment, a follow-up cutting process for processing a metal bar coated wire body includes the following steps:

[0131] Step 1: First, the metal row coated wire is conveyed to the conveying device 2 through the guiding conveying mechanism 3. The metal row coated wire passes through the conveying device 2 under the drive of the conveying roller 34 and is output after passing through the distance measuring box 4. At this time, the top plane of the limit adjustment platform 27 in the conveying device 2 is in a downward movement state. Under the action of the limit slide, the control shaft 2635 is driven to move downward through the card block, and then under the restriction of the bracket 25, the rotating shaft 2634 drives the central gear 2632 to rotate counterclockwise, and then drives the clamping conveying plates 264 on both sides to move outward through the moving rack 2633, so that the clamping conveying plates 264 can only move the metal row coated wire through the conveying roller 2641 to assist;

[0132] Step 2, when the distance measuring box 4 detects the predetermined length and needs to be cut, the guiding conveying mechanism 3 stops working, at this time, the telescopic positioning assembly 63 extends, and the telescopic mechanism 631 pushes the positioning plate 632 to be stuck between the connecting panels 261 on both sides, and the lower cutting opening 633 corresponds to the point to be cut. At the same time, the top plane of the limit adjustment platform 27 in the conveying device 2 moves up, and under the action of the limit slide, the control shaft 2635 is driven to move up through the card block, and then under the restriction of the bracket 25, the rotating shaft 2634 drives the central gear 2632 to rotate clockwise, and then drives the clamping conveying plates 264 on both sides to move toward the center through the moving rack 2633. Under the extrusion of the metal row coating body, the elastic member 2642 is compressed, driving the conveying roller 2641 to retract into the clamping conveying plate 264, so that the clamping conveying plate 264 clamps the metal row coated wire body, and then driven by the driving motor 23, the metal row coated wire body is driven to be conveyed through the conveying chain 21;

[0133] Step 3, then start the driving motor 23, drive the conveying chain 21 to rotate, drive the conveying assembly 26 to pass through the limit adjustment platform 27 in sequence, so that the control shaft 2635 first moves up to control the clamping conveying plate 264 to clamp the metal row coated wire body, and then drives the metal row coated wire body to be transported in sequence, and then moves down to release the metal row coated body for continuous transportation, and at the same time drives the positioning cutting device 6 to follow and move on the slide rail 51. During the movement, the cutting work is completed by the cutting assembly 64;

[0134] Step 4. After the cutting is completed, the conveying device 2 stops rotating, and then the telescopic positioning assembly 63 is retracted to disengage the positioning plate 632 from the connecting panels 261 on both sides. Then the top plane of the limit adjustment platform 27 in the conveying device 2 moves downward, and the clamping conveying plate 264 is controlled by the adjustment mechanism 263 to loosen the metal row coated wire body, and the metal row coated wire body is conveyed by the guiding conveying mechanism 3, and then the moving reset device 5 drives the positioning and cutting device 6 to reset.

[0135] What is described above is only a preferred specific implementation manner of the present invention, but the protection scope of the present invention is not limited thereto. Any technician familiar with the technical field can make equivalent replacements or changes according to the technical scheme and inventive concept of the present invention within the technical scope disclosed by the present invention, which should be covered by the protection scope of the present invention.

Claims

1. A follow-up cutting device for processing metal bar coated wire, characterized in that: include: The workbench is placed in the isolation room; A conveying device, fixed on the workbench; A guide conveying mechanism is arranged at the input end of the conveying device and fixed on the workbench; A distance measuring box is arranged at the output end of the conveying device and fixed on an end of the workbench away from the guiding conveying mechanism; Two mobile resetting devices are symmetrically arranged in front and back, fixed on the workbench and located at the front and back sides of the conveying device; A positioning cutting device is slidably arranged on the movable resetting devices on both sides; The conveying device includes: There are two conveyor chains symmetrically distributed front and back, set between the workbenches; The driving sprockets are symmetrically distributed in two groups on the left and right, and each group is symmetrically distributed in two groups on the front and back, respectively connected to the conveyor chain, and the center of the driving sprocket is rotatably connected to the workbench through the shaft; A driving motor is fixed on the workbench, and a driving shaft of the driving motor is fixedly connected to a shaft body of one of the driving sprockets; There are two groups of support rails symmetrically distributed front and back, and each group has two symmetrically distributed up and down, fixed on the workbench, and each group of support rails corresponds to the same conveyor chain; A plurality of brackets are distributed along the conveyor chains and fixed on the two conveyor chains; A plurality of conveying assemblies are arranged at intervals along the conveying chain and are respectively fixed on the brackets; The limit adjustment platform is fixed between the upper support rails and located below the upper bracket. The limit adjustment platform is trapezoidal, and limit slideways are provided on the top and left and right side planes. The top plane of the limit adjustment platform is a lifting structure; The mobile reset device includes: There are two slide rails symmetrically distributed front and back, fixed on the workbench; The cylinder is fixed on the workbench and located above the slide rail, and the cylinder is located at the output end of the conveying device; A sliding shaft body, one end of which is slidably arranged in the cylinder and the other end of which is fixedly connected to the side of the positioning and cutting device; The positioning and cutting device comprises: The sliders are symmetrically arranged in two groups, each group is linearly arranged with a plurality of sliders, and are slidably arranged on the slide rails; Two movable platforms are symmetrically arranged in the front and rear, and are fixed on each set of sliders respectively, and the side of the movable platform is fixedly connected to the sliding shaft body; A telescopic positioning component is arranged corresponding to the moving platform and fixed on the moving platform; A cutting assembly is fixed on the top of the telescopic positioning assemblies on both sides and is located above the conveying device; The guiding and conveying mechanism includes: A guide box, fixed on the workbench, is located at the input end of the conveying device; The telescopic adjustment components are symmetrically arranged in two groups and fixed in the guide box, located on both sides of the metal row coated wire body; The moving surface is fixed on the telescopic adjustment component, and the moving surface is located between the metal row coated wire body and the telescopic adjustment component; A plurality of conveying rollers are arranged in a straight line and are rollingly arranged on a moving surface to fit with the metal row coated wire body.

2. A follow-up cutting device for processing metal bar coated wire according to claim 1, characterized in that: The conveyor assembly includes: Connect the panels and fix them on the brackets; Auxiliary conveying platform, fixed on the connection panel; The adjusting mechanism is arranged in the auxiliary conveying platform, and the bottom of the adjusting mechanism passes through the connecting panel and the bracket, and corresponds to the limit adjusting platform; Two clamping conveying plates are symmetrically distributed front and back and are slidably arranged on the auxiliary conveying platform, and the bottom of the clamping conveying plate is fixedly connected to the adjusting mechanism.

3. A follow-up cutting device for processing metal bar coated wire according to claim 2, characterized in that: The regulatory agencies include: A limiter, fixed at the inner center of the auxiliary conveying platform; A central gear, rotatably disposed at the center of the limiting member; The movable racks are symmetrically arranged with two of them about the center of the central gear, and are slidably arranged on the limiter, and the movable racks are respectively meshed with the central gear, and the movable racks are respectively fixedly connected with the bottom of the clamping conveying plates on both sides; The rotating shaft is fixed below the central gear, and the rotating shaft passes through the connecting panel and is rotatably connected to the top surface of the bracket; The control shaft body is slidably connected to the bottom of the bracket and is connected to the rotating shaft body through a thread. A clamping block corresponding to the limit slideway on the limit adjustment platform is provided at the bottom of the control shaft body.

4. A follow-up cutting device for processing metal bar coated wire according to claim 3, characterized in that: A plurality of conveying rollers distributed in a straight line are arranged on the inner side of the clamping conveying plate, and the conveying rollers are fixed in the clamping conveying plate through elastic members.

5. The follow-up cutting device for processing metal bar coated wire according to claim 3, characterized in that: The telescopic positioning assembly includes: A telescopic mechanism is fixed on the moving platform; A positioning plate is fixed on a side of the telescopic mechanism adjacent to the conveying device, and the positioning plate corresponds to the bracket; The lower cutting opening is arranged on a side of the positioning plate close to the conveying device.

6. A follow-up cutting device for processing metal bar coated wire according to claim 5, characterized in that: The cutting kit includes: The cutting platform is fixed on the top of the telescopic positioning components on both sides; A fixed block, fixed on the cutting platform; A moving mechanism, which is movably arranged on a fixed block; A cutting machine, fixedly connected to the moving mechanism; The upper cutting opening is arranged in the middle of the cutting platform and corresponds to the lower cutting opening, and the upper cutting opening corresponds to the cutting machine.

7. A follow-up cutting process for processing a metal bar coated wire, which uses a follow-up cutting device for processing a metal bar coated wire as claimed in claim 5, characterized in that: The steps include: Step 1: First, the metal bar coated wire body is transported to the conveying device through the guide conveying mechanism. The metal bar coated wire body passes through the conveying device under the drive of the guide conveying mechanism and is output after passing through the distance measuring box. At this time, the top plane of the limit adjustment table in the conveying device is in a downward state; Step 2: When the distance measuring box detects the predetermined length and needs to be cut, the conveying mechanism is guided to stop working. At this time, the telescopic positioning component is extended to make the positioning plate clamped between the connecting panels on both sides. The lower cutting opening corresponds to the point to be cut. At the same time, the top plane of the limit adjustment table in the conveying device moves upward, and the clamping conveying plate is driven by the adjustment mechanism to clamp the metal row coated wire body; Step 3: Then start the driving motor to drive the conveyor chain to rotate, and at the same time, the clamping conveyor plate drives the metal row coated wire body to be conveyed, and drives the positioning and cutting device to follow and move on the slide rail. During the movement, the cutting work is completed by the cutting assembly; Step 4: After the cutting is completed, the conveying device stops rotating, and then the telescopic positioning assembly is retracted to separate the positioning plate from the connecting panels on both sides. Then the top plane of the limit adjustment table in the conveying device moves downward, and the metal row coated wire body is conveyed by the guiding conveying mechanism, and then the mobile reset device drives the positioning and cutting device to reset.

Citation Information

Patent Citations

  • Construction wood-cutting machine with adjustable angle

    CN112140241A

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    CN112846356A