CN223129217U - Wire cutting device for connecting wire processing - Google Patents
Wire cutting device for connecting wire processingInfo
- Publication number
- CN223129217U CN223129217U CN202422328778.7U CN202422328778U CN223129217U CN 223129217 U CN223129217 U CN 223129217U CN 202422328778 U CN202422328778 U CN 202422328778U CN 223129217 U CN223129217 U CN 223129217U
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- guide
- wire
- cutting
- block
- winding
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Abstract
The utility model discloses a wire cutting device for connecting wire machining, which comprises a machining bottom plate, wherein the machining bottom plate is sequentially connected with a wire guide mechanism, a bearing limiting mechanism, a cutting mechanism and a winding mechanism from a feeding end to a discharging end, the wire guide mechanism further comprises a guide block connected to the machining bottom plate, the guide block is provided with a guide circular groove, one side of the guide block is connected with a guide cylinder, a first support is rotationally connected with a first guide column, an electric cylinder is connected beside the first guide column, the output end of the electric cylinder is connected with a rectangular frame, two sides of the rectangular frame are rotationally connected with a second guide column, the machining bottom plate is connected with a cutting bearing plate, an L-shaped mounting frame is connected with a cutting knife structure, a side plate is connected with a winding motor, the output end of the winding motor is connected with a winding roller, one side of a mounting cavity is connected with a second motor, two ends inside the mounting cavity are rotationally connected with gears, a transmission belt is connected between the two gears, one side of the guide cylinder is connected to the output end of the second motor, and the upper side of the switching mounting block is connected with a limiting wire seat.
Description
Technical Field
The utility model belongs to the technical field of cutting devices, and particularly relates to a wire cutting device for processing connecting wires.
Background
In the power construction, the connecting wire is required to be frequently used, cutting is an important step in the process of processing the connecting wire, before a production factory, in order to facilitate purchase of a user, the connecting wire is cut, and a cutting device is required to be used, but the conventional cutting device is inconvenient to fix and clamp the connecting wire in the process of cutting in the use process, so that the connecting wire is easy to shake and unstable in the process of cutting, and the cutting efficiency is easy to be accumulated and influenced when the winding is completed, and therefore, the wire cutting device for processing the connecting wire is provided.
Disclosure of utility model
The utility model aims to solve the problems in the prior art and aims to provide a wire cutting device for processing connecting wires.
In order to achieve the technical purpose, the utility model adopts the following technical scheme:
The wire cutting device for processing the connecting wire comprises a processing bottom plate, wherein the processing bottom plate is sequentially connected with a wire guide mechanism, a bearing limit mechanism, a cutting mechanism and a winding mechanism from a feeding end to a discharging end;
The wire guide mechanism further comprises a guide block connected to the machining bottom plate, the guide block is provided with a guide circular groove, and one side of the guide block is connected with a guide cylinder;
The bearing limiting mechanism further comprises a first support connected to the machining bottom plate, the first support is rotationally connected with a first guide post, an electric cylinder is connected beside the first guide post, the output end of the electric cylinder is connected with a rectangular frame, the other side of the rectangular frame is movably connected with a guide rod, two sides of the rectangular frame are rotationally connected with second guide posts, guide inner grooves are formed in the outer walls of shaft bodies of the first guide post and the second guide post, the machining bottom plate is connected with a cutting bearing plate, a limiting groove group is formed in the surface of the cutting bearing plate, and the height position of the first guide post is lower than that of the wire guide mechanism;
The cutting mechanism further comprises an L-shaped mounting frame connected to one side of the machining bottom plate, and the L-shaped mounting frame is connected with a cutting knife structure;
The winding mechanism is characterized in that the winding mechanism further comprises a side plate connected to one side of a processing bottom plate, the side plate is connected with a winding motor, the output end of the winding motor is connected with a winding roller, the end part of the winding roller is detachably connected with a limiting anti-drop disc, the processing bottom plate is provided with a mounting cavity on one side of the winding roller, one side of the mounting cavity is connected with a second motor, two ends inside the mounting cavity are respectively rotationally connected with gears, a transmission belt is connected between the gears, one side of the transmission belt is connected with the output end of the second motor, one side of the transmission belt is detachably connected with a switching mounting block, the upper side of the switching mounting block is connected with a limiting wire seat, the processing bottom plate is provided with a sliding chute adapted with the limiting wire seat, the limiting wire seat comprises a limiting base and an upper limiting block, fixing bolts are connected between the limiting base and the upper limiting block, and one side of the limiting base and the upper limiting block is provided with arc grooves.
Further limited, two opposite angles departments of rectangle frame inner wall all are connected with the U-shaped installation piece, one side U-shaped installation piece fixed connection is in the tip of electronic jar, opposite side U-shaped installation piece sliding connection is at the outer wall of guide bar, and such structural design can increase the stability when rectangle frame removes, the rectangle frame is dismantled in easy to assemble.
Further defined, the spacing groove group includes the first spacing groove of horizontal setting and the cutting groove of vertical setting, such structural design for can adapt to spacing and the demand of cutting simultaneously in cutting process.
Further limited, spacing anticreep dish includes fixed mounting dish of fixed connection at wind-up roll end shaft outer wall, fixed mounting dish joint has the movable dish, be connected with first bolt between movable dish and the fixed mounting dish, such structural design can conveniently change the movable dish of different diameter sizes according to the volume of rolling as required, changes the diameter size of spacing anticreep dish.
Further limited, the switching installation piece is U-shaped setting, and joint in driving belt one side, be connected with the second bolt between switching installation piece and the driving belt, such structural design, convenient installation dismantles switching installation piece and coupling assembling thereof.
The beneficial effects of the utility model are as follows:
1. The utility model comprises a processing bottom plate, a guide block, a guide cylinder, a first bracket, a first guide post, an electric cylinder, a rectangular frame, a second guide post, a guide rod, a cutting bearing plate, an L-shaped mounting frame, a cutting knife structure and other related components, wherein a connecting wire to be cut is wound on a winding roller of a discharging end from a feeding end through each component, the electric cylinder is used as a power end to drive the second guide post 304 to slightly force the connecting wire to press down in a first limit groove 3061 before cutting, and then the cutting knife structure is controlled to descend towards a cutting groove 3062 to cut the connecting wire, so that the connecting wire can be conveniently and automatically guided, limited and cut, and the influence on cutting efficiency caused by shaking offset positions of the connecting wire during cutting is prevented;
2. The discharging end of processing bottom plate is connected with curb plate, rolling motor, wind-up roll, second motor, gear, driving belt, switching installation piece, second bolt and relevant subassembly such as spacing wire seat, at the rolling in-process, each subassembly cooperation, the second motor is as the power end through coupling assembling drive connecting wire from left to right reciprocating type winding at the wind-up roll outer wall at the rolling in-process, and then promotes the even degree when the rolling, and the time arrangement that spends more when preventing later stage unloading, and then practice thrift the unloading time and promote work efficiency.
Drawings
The utility model can be further illustrated by means of non-limiting examples given in the accompanying drawings;
FIG. 1 is a schematic top view of an embodiment of a wire cutting apparatus for wire bonding in accordance with the present utility model;
FIG. 2 is a schematic cross-sectional view of the overall structure of an embodiment of a wire cutting apparatus for wire bonding in accordance with the present utility model;
FIG. 3 is a schematic cross-sectional view of a wire cutting apparatus for wire cutting in accordance with an embodiment of the present utility model with respect to a rectangular frame and related components;
Fig. 4 is a schematic cross-sectional view of a wire cutting apparatus for wire cutting in accordance with an embodiment of the present utility model, with respect to gears and drive belts and their connection assemblies.
The main reference numerals are as follows:
Processing a bottom plate 1 and a chute 101;
a guide block 2, a guide circular groove 201 and a guide cylinder 202;
the cutting support comprises a first bracket 3, a first guide post 301, an electric cylinder 302, a rectangular frame 303, a U-shaped mounting block 3031, a second guide post 304, a guide rod 305, a cutting support plate 306, a first limit groove 3061 and a cutting groove 3062;
an L-shaped mounting frame 4;
Side plate 5, winding motor 501, winding roller 502, spacing anticreep dish 503, fixed mounting plate 5031, movable plate 5032, first bolt 5033, second motor 505, gear 506, driving belt 507, switching installation piece 508, second bolt 5081, spacing wire seat 509, spacing base 5091, upside limit piece 5092, fixing bolt 5093, arc recess 5094.
Detailed Description
In order that those skilled in the art will better understand the present utility model, the following technical scheme of the present utility model will be further described with reference to the accompanying drawings and examples.
As shown in fig. 1-4, the wire cutting device for processing connecting wires comprises a processing bottom plate 1, wherein the processing bottom plate 1 is sequentially connected with a wire guide mechanism, a bearing limit mechanism, a cutting mechanism and a winding mechanism from a feeding end to a discharging end;
The wire guide mechanism further comprises a guide block 2 connected to the machining bottom plate 1, the guide block 2 is provided with a guide circular groove 201, and one side of the guide block 2 is connected with a guide cylinder 202;
The bearing limit mechanism further comprises a first bracket 3 connected to the machining bottom plate 1, the first bracket 3 is rotationally connected with a first guide post 301, an electric cylinder 302 is connected beside the first guide post 301, the output end of the electric cylinder 302 is connected with a rectangular frame 303, the other side of the rectangular frame 303 is movably connected with a guide rod 305, two sides of the rectangular frame 303 are rotationally connected with a second guide post 304, the outer walls of the shaft bodies of the first guide post 301 and the second guide post 304 are respectively provided with a guide inner groove, the machining bottom plate 1 is connected with a cutting bearing plate 306, the surface of the cutting bearing plate 306 is provided with a limit groove group, and the height position of the first guide post 301 is lower than that of the wire guide mechanism;
the cutting mechanism further comprises an L-shaped mounting frame 4 connected to one side of the machining bottom plate 1, and the L-shaped mounting frame 4 is connected with a cutting knife structure;
The winding mechanism further comprises a side plate 5 connected to one side of the processing bottom plate 1, the side plate 5 is connected with a winding motor 501, the output end of the winding motor 501 is connected with a winding roller 502, the end part of the winding roller 502 is detachably connected with a limiting anti-drop disc 503, the processing bottom plate 1 is provided with an installation cavity on one side of the winding roller 502, one side of the installation cavity is connected with a second motor 505, both ends inside the installation cavity are rotationally connected with gears 506, a transmission belt 507 is connected between the two gears 506, one side of the transmission belt 506 is connected to the output end of the second motor 505, one side of the transmission belt 507 is detachably connected with a transfer installation block 508, the upper side of the transfer installation block 508 is connected with a limiting wire seat 509, the processing bottom plate 1 is provided with a sliding chute 101 adapting to the limiting wire seat 509, the limiting wire seat 509 comprises a limiting base 5091 and an upper limiting block 5092, a fixing bolt 5093 is connected between the limiting base 5091 and the upper limiting block 5092, and an arc-shaped groove 5094 is arranged on one side of the limiting base 5091 and the upper limiting block 5092.
In the embodiment, a worker sequentially passes through the guide circular groove 201 and the guide cylinder 202 of the guide block 2, winds the ends of the connecting wires from the upper side of the first guide post 301 to the lower sides of the two second guide posts 304, and then the connecting wires are attached to the upper side of the first guide post 301 and the lower side of the second guide post 304 in the guide inner grooves so as to achieve the guide effect, and then passes through the limit wire seat 509 to be wound on the outer wall of the winding roller 502 so as to achieve the automatic guide effect during cutting;
After the connecting wire to be cut is fed well, a winding motor 501 is started through a central controller, the winding motor 501 drives a winding roller 502 to rotate to wind the connecting wire, when a place where the connecting wire needs to be cut moves onto a cutting bearing plate 306, the winding motor 501 stops running, an electric cylinder 302 is controlled by the central controller to drive a rectangular frame 303 at an output end to move downwards along a guide rod 305 until a second guide post 304 slightly applies force to press the connecting wire into a first limit groove 3061, and a cutting knife structure is controlled to descend towards a cutting groove 3062 and cut the connecting wire;
In addition, in the process that the winding motor 501 drives the wind-up roller 502 to wind up the connecting wire, the second motor 505 drives the gear 506 to rotate slowly at a constant speed, the gear 506 drives the driving belt 507 to rotate when rotating, the driving belt 507 drives the switching installation block 508 to slowly move at a constant speed along with the gear, the switching installation block 508 drives the spacing wire seat 509 and the connecting component thereof to slowly move at a constant speed when moving, the spacing wire seat 509 drives the connecting wire to reciprocally wind from left to right at the wind-up roller 502 outer wall in the winding process, and then the uniformity degree in winding is improved, the time arrangement is avoided during later blanking, and then the blanking time is saved, and the work efficiency is improved.
Preferably, two opposite angles of the inner wall of the rectangular frame 303 are connected with U-shaped mounting blocks 3031, one side of the U-shaped mounting blocks 3031 is fixedly connected to the end part of the electric cylinder 302, the other side of the U-shaped mounting blocks 3031 is slidably connected to the outer wall of the guide rod 305, and the structural design can improve the stability of the rectangular frame 303 during moving and is convenient for mounting and dismounting the rectangular frame 303. In practice, other structural shapes that can increase the stability of the movement of the rectangular frame 303 may be specifically considered according to the specific circumstances.
Preferably, the limiting groove group comprises a first limiting groove 3061 arranged transversely and a cutting groove 3062 arranged longitudinally, and the limiting groove group is designed in such a structure that the requirements of limiting and cutting can be met simultaneously in the cutting process. In fact, other structure shapes which are convenient for limiting the connecting line and convenient for cutting can be specifically considered according to specific conditions.
Preferably, the limiting anti-drop disc 503 comprises a fixed mounting disc 5031 fixedly connected to the outer wall of the shaft body at the end part of the winding roller 502, the fixed mounting disc 5031 is clamped with a movable disc 5032, a first bolt 5033 is connected between the movable disc 5032 and the fixed mounting disc 5031, and by means of the structural design, the movable disc 5032 with different diameter sizes can be conveniently replaced according to the winding quantity required, and the diameter size of the limiting anti-drop disc 503 is changed. In practice, other structural shapes that facilitate the assembly, disassembly and replacement of the spacing anti-slip disc 503 may be specifically considered according to the specific circumstances.
Preferably, the switching installation piece 508 is U-shaped setting and joint in driving belt 507 one side, is connected with second bolt 5081 between switching installation piece 508 and the driving belt 507, and this kind of structural design, easy to assemble dismantles switching installation piece 508 and coupling assembling thereof. In practice, other configurations of the adapter 508 that facilitate assembly and disassembly may be specifically contemplated as appropriate.
The above embodiments are merely illustrative of the principles of the present utility model and its effectiveness, and are not intended to limit the utility model. Modifications and variations may be made to the above-described embodiments by those skilled in the art without departing from the spirit and scope of the utility model. Accordingly, it is intended that all equivalent modifications and variations of the utility model be covered by the claims of this utility model, which are within the skill of those skilled in the art, can be made without departing from the spirit and scope of the utility model disclosed herein.
Claims (5)
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202422328778.7U CN223129217U (en) | 2024-09-24 | 2024-09-24 | Wire cutting device for connecting wire processing |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202422328778.7U CN223129217U (en) | 2024-09-24 | 2024-09-24 | Wire cutting device for connecting wire processing |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN223129217U true CN223129217U (en) | 2025-07-22 |
Family
ID=96421974
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN202422328778.7U Active CN223129217U (en) | 2024-09-24 | 2024-09-24 | Wire cutting device for connecting wire processing |
Country Status (1)
| Country | Link |
|---|---|
| CN (1) | CN223129217U (en) |
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2024
- 2024-09-24 CN CN202422328778.7U patent/CN223129217U/en active Active
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