Wire cutting device for connecting wire processing
Through the design of the guide and limiting mechanism, the problems of uneven wire shaking and winding in the connecting wire cutting device are solved, and the effect of stable cutting and efficient winding is achieved.
Patent Information
- Application Number
- CN202422328778.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-24
- Publication Date
- 2025-07-22
- Estimated Expiration
- 2034-09-24
AI Technical Summary
When cutting connecting wires, existing cutting devices can easily cause unstable shaking of wires, affecting cutting efficiency, and easily accumulate when winding after cutting, affecting working efficiency.
A wire cutting device including a wire mechanism, a receiving limit mechanism, a cutting mechanism and a winding mechanism is designed. Through the coordinated work of components such as guide blocks, guide columns, electric cylinders, cutting knifes and winding rollers, stable guidance and limit cutting of the connecting wire is realized, and uniformly wound during winding.
The stability and cutting efficiency of the connecting wire during the cutting process are improved, which prevents shaking and offset, and improves uniformity during winding, saves the time of cutting and improves the overall working efficiency.
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Figure CN223129217U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of cutting devices, and in particular relates to a wire cutting device used for connecting wire processing. Background Art
[0002] In power construction, connecting wires are usually needed frequently. Cutting is a very important step in the processing of connecting wires. Before production, in order to facilitate users to purchase, the connecting wires must be cut and a cutting device must be used. However, the existing cutting device is not convenient for fixing and clamping the connecting wires during cutting, which can easily cause the connecting wires to shake and become unstable during cutting, and they are prone to accumulation when reeling after cutting, affecting the cutting efficiency. Therefore, a wire cutting device for connecting wire processing that can solve the above technical problems is proposed herein. Utility Model Content
[0003] In view of the problems raised by the above background technology, the purpose of the utility model is to provide a wire cutting device for connecting wire processing.
[0004] In order to achieve the above technical purpose, the technical solution adopted by the utility model is as follows:
[0005] A wire cutting device for connecting wire processing comprises a processing bottom plate, wherein the processing bottom plate is sequentially connected with a wire guide mechanism, a receiving and limiting mechanism, a cutting mechanism and a winding mechanism from a feeding end to a discharging end;
[0006] The guide wire mechanism also includes a guide block connected to the processing base plate, the guide block is provided with a guide circular groove, and one side of the guide block is connected to a guide cylinder;
[0007] The receiving and limiting mechanism also includes a first bracket connected to the processing base plate, the first bracket is rotatably connected to a first guide column, an electric cylinder is connected to the first guide column, an output end of the electric cylinder is connected to a rectangular frame, the other side of the rectangular frame is movably connected to a guide rod, both sides of the rectangular frame are rotatably connected to second guide columns, the outer walls of the first guide column and the second guide column shaft body are provided with guiding inner grooves, the processing base plate is connected to a cutting and placing plate, a limiting groove group is provided on the surface of the cutting and placing plate, and the height position of the first guide column is lower than the height position of the wire mechanism;
[0008] The cutting mechanism also includes an L-shaped mounting frame connected to one side of the processing base plate, and the L-shaped mounting frame is connected to a cutting knife structure;
[0009] The gears on one side are connected to the output end of the second motor, and one side of the gears is detachably connected to the output end of the second motor, and a transfer mounting block is detachably connected to the transfer mounting block on the upper side of the transfer mounting block, and the processing base plate is provided with a sliding groove adapted to enable the limit wire seat to slide. The limit wire seat comprises a limit base and an upper limit block, and a fixing bolt is connected between the limit base and the upper limit block, and an arc groove is provided on one side of the limit base and the upper limit block.
[0010] It is further defined that U-shaped mounting blocks are connected to two diagonal portions of the inner wall of the rectangular frame, one side of the U-shaped mounting block is fixedly connected to the end of the electric cylinder, and the other side of the U-shaped mounting block is slidably connected to the outer wall of the guide rod. Such a structural design can increase the stability of the rectangular frame during movement and facilitate the installation and disassembly of the rectangular frame.
[0011] It is further defined that the limiting groove group includes a first limiting groove arranged transversely and a cutting groove arranged longitudinally. Such a structural design can meet the requirements of limiting and cutting at the same time during the cutting process.
[0012] It is further defined that the limit anti-slip disk includes a fixed mounting disk fixedly connected to the outer wall of the shaft body at the end of the winding roller, the fixed mounting disk is clamped with a movable disk, and a first bolt is connected between the movable disk and the fixed mounting disk. Such a structural design can facilitate the replacement of movable disks of different diameters according to the required amount of winding, thereby changing the diameter size of the limit anti-slip disk.
[0013] It is further defined that the adapter mounting block is U-shaped and clamped on one side of the transmission belt, and a second bolt is connected between the adapter mounting block and the transmission belt. Such a structural design facilitates the installation and disassembly of the adapter mounting block and its connecting components.
[0014] The beneficial effects of the utility model are:
[0015] 1. The utility model includes related components such as a processing base plate, a guide block, a guide cylinder, a first bracket, a first guide column, an electric cylinder, a rectangular frame, a second guide column, a guide rod, a cutting plate, an L-shaped mounting frame and a cutting knife structure. The connecting wire to be cut is wound from the feed end through various components to the winding roller at the discharge end. Before cutting, the electric cylinder is used as a power end to drive the second guide column 304 to slightly press the connecting wire into the first limiting groove 3061, and then the cutting knife structure is controlled to descend in the direction of the cutting groove 3062 and cut the connecting wire. It can be convenient to automatically guide and limit the connecting wire and cut it, so as to prevent the connecting wire from shaking and deviating from the position during cutting, affecting the cutting efficiency;
[0016] 2. The discharge end of the processing base plate is connected with related components such as the side plate, winding motor, winding roller, second motor, gears, transmission belt, adapter mounting block, second bolt and limit wire seat. During the winding process, the components cooperate with each other. The second motor as the power end drives the connecting wire through the connecting component to reciprocate from left to right around the outer wall of the winding roller during the winding process, thereby improving the uniformity of winding and preventing extra time spent on sorting during later unloading, thereby saving unloading time and improving work efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] The present invention can be further described by the non-limiting embodiments given in the accompanying drawings;
[0018] Figure 1 It is a schematic top view of the overall structure of an embodiment of a wire cutting device for connecting wire processing of the utility model;
[0019] Figure 2 It is a schematic cross-sectional view of the overall structure of an embodiment of a wire cutting device for connecting wire processing of the utility model;
[0020] Figure 3 It is a schematic structural cross-sectional diagram of a rectangular frame and related components in an embodiment of a wire cutting device for connecting wire processing of the utility model;
[0021] Figure 4 The utility model is a schematic structural cross-sectional view of a wire cutting device for connecting wire processing in an embodiment of the present invention, which relates to gears, a transmission belt and a connecting component thereof.
[0022] The main component symbols are described as follows:
[0023] Processing bottom plate 1 and chute 101;
[0024] Guide block 2, guide circular groove 201, guide cylinder 202;
[0025] The first bracket 3, the first guide column 301, the electric cylinder 302, the rectangular frame 303, the U-shaped mounting block 3031, the second guide column 304, the guide rod 305, the cutting and placing plate 306, the first limiting groove 3061, and the cutting groove 3062;
[0026] L-shaped mounting bracket 4;
[0027] Side panel 5, winding motor 501, winding roller 502, limit anti-slip disk 503, fixed mounting disk 5031, movable disk 5032, first bolt 5033, second motor 505, gear 506, transmission belt 507, adapter mounting block 508, second bolt 5081, limit wire seat 509, limit base 5091, upper limit block 5092, fixing bolt 5093, arc groove 5094. DETAILED DESCRIPTION
[0028] In order to enable those skilled in the art to better understand the present invention, the technical solution of the present invention is further described below in conjunction with the accompanying drawings and embodiments.
[0029] like Figures 1-4 As shown, the utility model is a wire cutting device for connecting wire processing, comprising a processing base plate 1, the processing base plate 1 is sequentially connected with a wire guide mechanism, a receiving and limiting mechanism, a cutting mechanism and a winding mechanism from a feeding end to a discharging end;
[0030] The guide mechanism also includes a guide block 2 connected to the processing base plate 1, the guide block 2 is provided with a guide circular groove 201, and a guide cylinder 202 is connected to one side of the guide block 2;
[0031] The receiving and limiting mechanism also includes a first bracket 3 connected to the processing base plate 1, the first bracket 3 is rotatably connected to the first guide column 301, the first guide column 301 is connected to an electric cylinder 302, the output end of the electric cylinder 302 is connected to a rectangular frame 303, the other side of the rectangular frame 303 is movably connected to a guide rod 305, both sides of the rectangular frame 303 are rotatably connected to second guide columns 304, the outer walls of the shaft bodies of the first guide column 301 and the second guide column 304 are both provided with guiding inner grooves, the processing base plate 1 is connected to a cutting and placing plate 306, the surface of the cutting and placing plate 306 is provided with a limiting groove group, and the height position of the first guide column 301 is lower than the height position of the wire mechanism;
[0032] The cutting mechanism also includes an L-shaped mounting frame 4 connected to one side of the processing base plate 1, and the L-shaped mounting frame 4 is connected to a cutting knife structure;
[0033] The rewinding mechanism further includes a side plate 5 connected to one side of the processing base plate 1. The side plate 5 is connected with a rewinding motor 501. The output end of the rewinding motor 501 is connected with a rewinding roller 502. The end of the rewinding roller 502 is detachably connected with a limit anti - detachment disk 503. On one side of the rewinding roller 502 of the processing base plate 1, there is an installation cavity. One side of the installation cavity is connected with a second motor 505. Both ends inside the installation cavity are rotatably connected with gears 506. A transmission belt 507 is connected between the two gears 506. One side gear 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 limit wire seat 509. The processing base plate 1 is provided with a chute 101 adapted to the sliding of the limit wire seat 509. The limit wire seat 509 includes a limit base 5091 and an upper limit block 5092. A fixing bolt 5093 is connected between the limit base 5091 and the upper limit block 5092. Arc - shaped grooves 5094 are provided on one side of both the limit base 5091 and the upper limit block 5092.
[0034] In the embodiment of this case, the staff passes the ends of the connecting wires to be cut through the guiding circular groove 201 and the guiding cylinder 202 of the guiding block 2 in sequence, and then winds from the upper side of the first guiding column 301 to the lower sides of the two second guiding columns 304. At this time, the connecting wires are attached to the guiding inner grooves on the upper side of the first guiding column 301 and the lower sides of the second guiding columns 304 to achieve the guiding effect. Then, pass the ends of the connecting wires through the limit wire seat 509 and wind them around the outer wall of the rewinding roller 502, so as to achieve the effect of automatic guiding during cutting.
[0035] After loading the connecting wires to be cut, start the rewinding motor 501 through the central controller. The rewinding motor 501 drives the rewinding roller 502 to rotate to wind the connecting wires. When the place where the connecting wires need to be cut moves to the cutting support plate 306, the rewinding motor 501 stops running, and the central controller controls the electric cylinder 302 to drive the rectangular frame 303 at the output end to move downward along the guiding rod 305 until the second guiding column 304 slightly presses the connecting wires downward into the first limiting groove 3061, and controls the cutting knife structure to descend towards the cutting groove 3062 to cut the connecting wires. Such a structural design can facilitate the automatic guiding, limiting and cutting of the connecting wires, and can prevent the connecting wires from shaking and shifting during cutting, which affects the cutting efficiency.
[0036] In addition, during the process of the winding motor 501 driving the winding roller 502 to wind the connecting wire, the second motor 505 drives the gear 506 to rotate slowly and evenly. When the gear 506 rotates, it drives the transmission belt 507 to rotate. When the transmission belt 507 rotates, it drives the adapter mounting block 508 to move slowly and evenly therewith. When the adapter mounting block 508 moves, it drives the limit wire seat 509 and its connecting components to move slowly and evenly. The limit wire seat 509 drives the connecting wire to wind around the outer wall of the winding roller 502 in a reciprocating manner from left to right during the winding process, thereby improving the uniformity during winding, preventing the need to spend extra time sorting during later material unloading, and thus saving the material unloading time and improving work efficiency.
[0037] Preferably, U-shaped mounting blocks 3031 are connected to both diagonal corners of the inner wall of the rectangular frame 303. One side of the U-shaped mounting block 3031 is fixedly connected to the end of the electric cylinder 302, and the other side of the U-shaped mounting block 3031 is slidably connected to the outer wall of the guide rod 305. With such a structural design, the stability of the rectangular frame 303 during movement can be increased, facilitating the installation and disassembly of the rectangular frame 303. In fact, other structural shapes that can increase the movement stability of the rectangular frame 303 can also be specifically considered according to the specific situation.
[0038] Preferably, the limit groove group includes a horizontally arranged first limit groove 3061 and a longitudinally arranged cutting groove 3062. With such a structural design, the requirements for both limiting and cutting can be met simultaneously during the cutting process. In fact, other structural shapes that are convenient for limiting the connecting wire and convenient for cutting can also be specifically considered according to the specific situation.
[0039] Preferably, the limit anti-disengagement disk 503 includes a fixed mounting disk 5031 fixedly connected to the outer wall of the shaft body at the end of the winding roller 502. The fixed mounting disk 5031 is snap-fitted with a movable disk 5032, and a first bolt 5033 is connected between the movable disk 5032 and the fixed mounting disk 5031. With such a structural design, it is convenient to replace the movable disk 5032 with different diameter sizes according to the amount to be wound, and change the diameter size of the limit anti-disengagement disk 503. In fact, other structural shapes that are convenient for installing, disassembling, and replacing the limit anti-disengagement disk 503 can also be specifically considered according to the specific situation.
[0040] Preferably, the adapter mounting block 508 is U-shaped and is snap-fitted on one side of the transmission belt 507. A second bolt 5081 is connected between the adapter mounting block 508 and the transmission belt 507. With such a structural design, it is convenient to install and disassemble the adapter mounting block 508 and its connecting components. In fact, other structural shapes that are convenient for installing and disassembling the adapter mounting block 508 can also be specifically considered according to the specific situation.
[0041] The above embodiments are only illustrative of the principles and effects of the present utility model, and are not intended to limit the present utility model. Any person familiar with this technology can modify or change the above embodiments without departing from the spirit and scope of the present utility model. Therefore, all equivalent modifications or changes completed by those with ordinary knowledge in the technical field without departing from the spirit and technical idea disclosed by the present utility model should still be covered by the claims of the present utility model.
Claims
1. A wire cutting device for connecting wire processing, including a processing bottom plate (1), characterized in that: The processing bottom plate (1) is sequentially connected with a guide wire mechanism, a receiving and limiting mechanism, a cutting mechanism and a winding mechanism from the feeding end to the discharging end; The guide wire mechanism also includes a guide block (2) connected to the processing base plate (1), the guide block (2) being provided with a guide circular groove (201), and one side of the guide block (2) being connected to a guide cylinder (202); The receiving and limiting mechanism also includes a first bracket (3) connected to the processing base plate (1), the first bracket (3) is rotatably connected to a first guide column (301), an electric cylinder (302) is connected next to the first guide column (301), an output end of the electric cylinder (302) is connected to a rectangular frame (303), the other side of the rectangular frame (303) is movably connected to a guide rod (305), both sides of the rectangular frame (303) are rotatably connected to second guide columns (304), the outer walls of the shaft bodies of the first guide column (301) and the second guide column (304) are provided with guiding inner grooves, the processing base plate (1) is connected to a cutting and placing plate (306), a surface of the cutting and placing plate (306) is provided with a limiting groove group, and the height position of the first guide column (301) is lower than the height position of the wire guide mechanism; The cutting mechanism further comprises an L-shaped mounting frame (4) connected to one side of the processing base plate (1), and the L-shaped mounting frame (4) is connected to a cutting knife structure; The winding mechanism further comprises a side plate (5) connected to one side of the processing base plate (1), the side plate (5) being connected to a winding motor (501), the output end of the winding motor (501) being connected to a winding roller (502), the end of the winding roller (502) being detachably connected to a limited anti-slip disk (503), the processing base plate (1) being provided with a mounting cavity on one side of the winding roller (502), one side of the mounting cavity being connected to a second motor (505), both ends of the mounting cavity being rotatably connected to gears (506), a transmission belt (507) being connected between the two gears (506), one side of the gear (506) being connected to the second motor ( 505), one side of the transmission belt (507) is detachably connected to a transfer mounting block (508), the upper side of the transfer mounting block (508) is connected to a limit wire seat (509), the processing base plate (1) is provided with a slide groove (101) adapted to slide the limit wire seat (509), the limit wire seat (509) comprises a limit base (5091) and an upper limit block (5092), a fixing bolt (5093) is connected between the limit base (5091) and the upper limit block (5092), and one side of the limit base (5091) and the upper limit block (5092) are both provided with an arc groove (5094).
2. The wire cutting device for connecting wire processing according to claim 1, wherein: U-shaped mounting blocks (3031) are connected to two diagonal positions of the inner wall of the rectangular frame (303), one side of the U-shaped mounting block (3031) is fixedly connected to the end of the electric cylinder (302), and the other side of the U-shaped mounting block (3031) is slidably connected to the outer wall of the guide rod (305).
3. A wire cutting device for connecting wire processing according to claim 2, characterized in that: The limiting groove group comprises a first limiting groove (3061) arranged transversely and a cutting groove (3062) arranged longitudinally.
4. A wire cutting device for connecting wire processing according to claim 3, characterized in that: The position-limiting anti-slip disk (503) comprises a fixed mounting disk (5031) fixedly connected to the outer wall of the shaft body at the end of the winding roller (502); the fixed mounting disk (5031) is clamped with a movable disk (5032); and a first bolt (5033) is connected between the movable disk (5032) and the fixed mounting disk (5031).
5. A wire cutting device for connecting wire processing according to claim 4, characterized in that: The adapter installation block (508) is arranged in a U shape and is clamped on one side of the transmission belt (507). A second bolt (5081) is connected between the adapter installation block (508) and the transmission belt (507).