Cutting device for processing handle part of wire stripper rod

By introducing heating box and induction heating technology into the cutting device for the cutting device of the wire stripper handle, the problem of inability to heat during the cutting process in the prior art is solved, and processing efficiency and practical performance are improved.

CN222986406UActive Publication Date: 2025-06-17CHANGZHOU HAOTUO ELECTROMECHANICAL TECH CO LTD
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Patent Information

Application Number
CN202422094734.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-28
Publication Date
2025-06-17
Estimated Expiration
2034-08-28

AI Technical Summary

Technical Problem

The existing wire stripper handle machining and cutting device cannot heat the material during the cutting process, resulting in low processing efficiency and cannot meet the need to improve efficiency.

Method used

A cutting device including a heating box and a bar heating and handling mechanism is designed, which can heat the bar after cutting, and improve heating efficiency through induction heating technology.

Benefits of technology

Direct heating of the cut bar is achieved, processing efficiency is improved, and the practical performance and efficiency of processing is improved by precisely controlling the cutting length.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a cutting device for processing a handle part of a wire stripping clamp rod, which is characterized by comprising a bottom plate, an upper supporting plate, a cutting mechanism, a guide lower seat body, a conveying lower seat body, a first translation seat body, a second translation seat body, a limiting plug, a limiting electric cylinder, a bar conveying mechanism and a heating box body, the guiding lower base body is arranged left and right and fixed to the right end of the bottom plate, the heating box body is fixed to the portion, on the left side of the guiding lower base body, of the bottom plate, the portion, between the heating box body and the guiding lower base body, of the bottom plate is provided with a cutting-off station and a heating feeding station, the cutting-off station is located on the front side of the heating feeding station, and the heating feeding station is located on the front side of the heating feeding station. A limiting electric cylinder is installed on the left side of the cutting station, the shaft outlet end of the limiting electric cylinder is connected with a limiting plug, and the limiting plug is driven by the limiting electric cylinder to stretch into the second translation base body from the left end of the second translation base body. The design has the advantages of simple structure, convenience in use, practicability and high efficiency.
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Description

Technical Field

[0001] The utility model relates to the technical field of processing parts of wire stripping pliers, and particularly relates to a cutting device for processing the rod handle part of a wire stripping pliers. Background Art

[0002] The rod handle part of the wire stripping pliers was originally often formed by turning and milling. This processing method has relatively low processing efficiency and will cause great material waste. Therefore, in order to improve the processing efficiency, turning and milling is changed to stamping. Before stamping, the raw material of the cylindrical bar needs to be cut, and then the cut material is sent into a heating furnace for heating, and finally stamping is carried out in cooperation with a mold. However, the existing cutting device has too single function and cannot heat the material during the cutting and conveying process. It needs to be heated together after unified cutting. This method will greatly affect the processing efficiency and has great limitations and cannot meet the requirements. Therefore, it is particularly important to design a cutting device for processing the rod handle part of a wire stripping pliers to solve the above problems. Summary of the Invention

[0003] The utility model designs a cutting device for processing the rod handle part of a wire stripping pliers to solve the above problems. Through the cooperation of a heating box body and a bar heating and conveying mechanism, the cut bar can be directly heated, which plays a role in increasing the practical performance. And this design heats by induction, greatly improving the heating efficiency.

[0004] To solve the above technical problems, the utility model provides a cutting device for processing the rod handle part of a wire stripping pliers, which is characterized in that: it includes a bottom plate, an upper support plate, a cutting mechanism, a guiding lower seat body, a conveying lower seat body, a first translation seat body, a second translation seat body, a limiting plug, a limiting electric cylinder, a bar conveying mechanism and a heating box body. The guiding lower seat body is placed horizontally and fixed on the right end of the bottom plate. The bar conveying mechanism is located on the right side of the guiding lower seat body and is connected to the bottom plate. The heating box body is fixed on the bottom plate on the left side of the guiding lower seat body. There are a cutting station and a heating feeding station arranged on the bottom plate between the heating box body and the guiding lower seat body. The cutting station is located on the front side of the heating feeding station. A limiting electric cylinder is installed on the left side of the cutting station. The output shaft end of the limiting electric cylinder is connected to the limiting plug. The limiting plug extends into the inside of the second translation seat body from the left end under the drive of the limiting electric cylinder. There are a heating discharging station and a material taking station arranged on the bottom plate on the left side of the heating box body. The material taking station is located on the front side of the heating discharging station. The first translation seat body and the second translation seat body are each connected to the bottom plate through a translation mechanism and slide back and forth. The first translation seat body reciprocates between the material taking station and the heating discharging station under the drive of the translation mechanism. The second translation seat body reciprocates between the cutting station and the heating feeding station under the drive of the translation mechanism. Arc grooves for conveying bars are opened at the tops of the guiding lower seat body, the first translation seat body and the second translation seat body. The upper support plate is fixed directly above the cutting station through columns. The cutting mechanism is installed at the bottom of the upper support plate.

[0005] Further: The cutting mechanism includes a cutting motor, a cutting tool and a cutting electric cylinder. The cutting electric cylinder is installed on the upper support plate. The output shaft end of the cutting electric cylinder passes through the upper support plate and is connected to the cutting motor. The cutting tool is connected to the cutting motor and rotates under its drive. The cutting tool extends between the second translation seat body and the guiding lower seat body under the action of the cutting electric cylinder.

[0006] Still further: A first arc-shaped pressing plate is arranged directly above the cutting station. The first arc-shaped pressing plate is connected to a first pressing electric cylinder arranged at the bottom of the upper support plate. The first arc-shaped pressing plate presses the bar tightly in the second translation seat body under the action of the first pressing electric cylinder. A second arc-shaped pressing plate is arranged directly above the left end of the guiding lower seat body. The second arc-shaped pressing plate is connected to a second pressing electric cylinder arranged at the bottom of the upper support plate. The second arc-shaped pressing plate presses the bar tightly in the guiding lower seat body under the drive of the second pressing electric cylinder.

[0007] Furthermore: The translation mechanism includes a slide rail, a slide block, and a translation driving electric cylinder. The slide rail is arranged front and back. Two slide rails are provided between the cutting station and the heating and loading station, and between the heating and unloading station and the picking station respectively. A slide block is fixed to the bottom of each of the first translation seat body and the second translation seat body. The slide block is connected to the slide rail through a chute provided at the bottom. A translation driving electric cylinder is fixed in each of the cutting station and the heating and unloading station. The output shaft end of the translation driving electric cylinder is connected to the slide block through a connecting member. The slide block is slidably connected to the slide rail by the driving of the translation driving electric cylinder.

[0008] Furthermore: The bar conveying mechanism includes lower conveying rollers, upper conveying rollers, a guide frame, an adjusting plate, an adjusting bolt, a lower support plate, and support columns. The lower conveying rollers are located on the right side of the lower guide seat body and are installed at the right end of the bottom plate through a first roller bracket. The upper conveying rollers are located directly above the lower conveying rollers. The upper conveying rollers are connected in the guide frame through a second roller bracket. The guide frame is fixed to the bottom of the lower support plate. The lower support plate is fixed directly above the right end of the bottom plate through support columns. The adjusting plate is slidably connected up and down in the guide frame. The second roller bracket is connected to the adjusting plate through a spring. A threaded through hole is provided on the lower support plate directly above the guide frame. The adjusting bolt is connected in the threaded through hole. Its lower end passes through the lower support plate and extends into the guide frame to be connected to the adjusting plate. The adjusting bolt is movably connected to the guide frame and the adjusting plate.

[0009] Furthermore: A heating channel is provided between the left and right ends of the heating box body. An induction heating coil is arranged in the heating channel. Bar heating and handling mechanisms are arranged on the left and right sides of the heating box body. The cut bar at the heating and loading station is extended into the induction heating coil under the action of the bar heating and handling mechanism and then transported to the heating and unloading station.

[0010] Furthermore: The bar heating and handling mechanism includes a first handling electric cylinder fixed to the bottom plate on the left side of the heating and unloading station and a second handling electric cylinder fixed to the bottom plate on the right side of the heating and loading station. The output shaft ends of the first handling electric cylinder and the second handling electric cylinder are each connected to a ceramic pressing end.

[0011] After adopting the above structure, the beneficial effects of the present utility model are as follows:

[0012] 1. The present utility model can directly heat the cut bar through the cooperation of the heating box body and the bar heating and handling mechanism, which plays a role in increasing the practical performance. And this design heats by induction, greatly improving the heating efficiency.

[0013] 2. Through the setting of the limit plug and the limit electric cylinder, the cutting length of the bar can be accurately controlled in this design, which has the advantages of simple structure, convenient use, practicality and high efficiency. Brief Description of the Drawings

[0014] The present utility model will be further described in detail below in conjunction with the drawings and specific embodiments.

[0015] Figure 1 It is a structural schematic diagram of the present utility model.

[0016] Figure 2 It is a structural diagram of the bar conveying mechanism.

[0017] Figure 3 It is an internal structural diagram of the heating box. Specific Embodiments

[0018] Such as Figure 1A cutting device for processing the handle part of a wire stripping pliers rod, comprising a bottom plate 1, an upper support plate 9, a cutting mechanism, a guiding lower seat body 4, a conveying lower seat body, a first translation seat body 2, a second translation seat body 3, a limit plug 16, a limit electric cylinder 6, a rod conveying mechanism and a heating box body 5. The guiding lower seat body is placed horizontally and fixed on the right end of the bottom plate. The rod conveying mechanism is located on the right side of the guiding lower seat body and is connected to the bottom plate. The heating box body is fixed on the bottom plate on the left side of the guiding lower seat body. A cutting station and a heating loading station are arranged on the bottom plate between the heating box body and the guiding lower seat body. The cutting station is located in front of the heating loading station. A limit electric cylinder is installed on the left side of the cutting station. The output shaft end of the limit electric cylinder is connected to the limit plug. The limit plug extends into the second translation seat body from its left end under the drive of the limit electric cylinder. A heating unloading station and a material taking station are arranged on the bottom plate on the left side of the heating box body. The material taking station is located in front of the heating unloading station. The first translation seat body and the second translation seat body are each connected to the bottom plate through a translation mechanism and slide back and forth. The first translation seat body reciprocates between the material taking station and the heating unloading station under the drive of the translation mechanism. The second translation seat body reciprocates between the cutting station and the heating loading station under the drive of the translation mechanism. Arc-shaped grooves for conveying the rod are opened at the tops of the guiding lower seat body, the first translation seat body and the second translation seat body. The upper support plate is fixed directly above the cutting station through columns. The cutting mechanism is installed at the bottom of the upper support plate. During operation, the rod is transported to the second translation seat body on the right under the action of the rod conveying mechanism. At this time, the length of the inserted rod is controlled through the cooperation of the limit plug and the limit electric cylinder. Then, the cutting mechanism is started to cut the rod. The cut rod is transported from the cutting station to the heating loading station through the second translation seat body. The rod then enters the heating box body for heating and is transported to the heating unloading station. Finally, the heated rod is transported from the heating unloading station to the material taking station through the first translation seat body. This design can accurately control the cutting length of the rod through the setting of the limit plug and the limit electric cylinder, and has the advantages of simple structure, convenient use and high practical efficiency.

[0019] As Figure 1 The cutting mechanism shown in the figure includes a cutting motor, a cutting tool 13 and a cutting electric cylinder 12. The cutting electric cylinder is installed on the upper support plate. The output shaft end of the cutting electric cylinder passes through the upper support plate and is connected to the cutting motor. The cutting tool is connected to the cutting motor and rotates under its drive. The cutting tool extends between the second translation seat body and the guiding lower seat body under the action of the cutting electric cylinder.

[0020] As Figure 1A first arc-shaped pressing plate 14 is arranged directly above the shown cutting station. The first arc-shaped pressing plate is connected to a first pressing cylinder 10 arranged at the bottom of the upper support plate. Under the action of the first pressing cylinder, the first arc-shaped pressing plate presses the bar stock tightly within the second translation seat body. A second arc-shaped pressing plate 15 is arranged directly above the left end of the guiding lower seat body. The second arc-shaped pressing plate is connected to a second pressing cylinder 11 arranged at the bottom of the upper support plate. Under the drive of the second pressing cylinder, the second arc-shaped pressing plate presses the bar stock tightly within the guiding lower seat body.

[0021] As Figure 1 The translation mechanism shown in the figure includes slide rails 18, slide seats 17 and a translation drive cylinder 19. The slide rails are arranged front and back. Two slide rails are arranged respectively between the cutting station and the heating and loading station, and between the heating and unloading station and the picking station. A slide seat is fixed at the bottom of each of the first translation seat body and the second translation seat body. The slide seat is connected to the slide rail through a chute opened at the bottom. A translation drive cylinder is fixed in each of the cutting station and the heating and unloading station. The output shaft end of the translation drive cylinder is connected to the slide seat through a connecting piece. The slide seat is slidably connected to the slide rail under the drive of the translation drive cylinder.

[0022] As Figure 2 The bar stock conveying mechanism shown in the figure includes lower conveying rollers 25, upper conveying rollers 24, a guiding frame 21, an adjusting plate 23, adjusting bolts 22, a lower support plate 20 and support columns. The lower conveying rollers are located on the right side of the guiding lower seat body and are installed at the right end of the bottom plate through a first roller bracket. The upper conveying rollers are located directly above the lower conveying rollers. The upper conveying rollers are connected within the guiding frame through a second roller bracket. The guiding frame is fixed at the bottom of the lower support plate. The lower support plate is fixed directly above the right end of the bottom plate through support columns. The adjusting plate is slidably connected up and down within the guiding frame. The second roller bracket is connected to the adjusting plate through a spring. A threaded through hole is opened on the lower support plate directly above the guiding frame. The adjusting bolt is connected within the threaded through hole. Its lower end passes through the lower support plate and extends into the guiding frame to be connected to the adjusting plate. The adjusting bolt is movably connected to the guiding frame and the adjusting plate.

[0023] As Figure 1 and Figure 3A heating channel is provided between the left and right ends of the shown heating box body. An induction heating coil 26 is arranged in the heating channel. Bar heating and handling mechanisms are arranged on the left and right sides of the heating box body. The cut bar at the heating loading station extends into the induction heating coil under the action of the bar heating and handling mechanism and is then transported to the heating unloading station. The bar heating and handling mechanism includes a first handling electric cylinder 7 fixed on the bottom plate on the left side of the heating unloading station and a second handling electric cylinder 8 fixed on the bottom plate on the right side of the heating loading station. The output shaft ends of the first handling electric cylinder and the second handling electric cylinder are each connected to a ceramic pressing end 27. Through the cooperation of the heating box body and the bar heating and handling mechanism, the present utility model can directly heat the cut bar, playing a role in increasing the practical performance. Moreover, this design uses induction heating, greatly improving the heating efficiency.

[0024] The above is only the preferred embodiment of the present utility model. The protection scope of the present utility model is not limited to the above embodiments. All technical solutions falling within the idea of the present utility model belong to the protection scope of the present utility model. It should be noted that for those of ordinary skill in the art in this technical field, several improvements and refinements made without departing from the principle of the present utility model should be regarded as within the protection scope of the present utility model.

Claims

1. A cutting device for processing the handle of a wire stripper, characterized in that: The invention comprises a bottom plate (1), an upper support plate (9), a cutting mechanism, a guide lower seat body (4), a conveying lower seat body, a first translation seat body (2), a second translation seat body (3), a limit plug (16), a limit electric cylinder (6), a rod conveying mechanism and a heating box body (5), wherein the guide lower seat body is placed left and right and fixed on the right end of the bottom plate, the rod conveying mechanism is located on the right side of the guide lower seat body and connected to the bottom plate, the heating box body is fixed on the bottom plate on the left side of the guide lower seat body, a cutting station and a heating loading station are arranged on the bottom plate between the heating box body and the guide lower seat body, the cutting station is located in front of the heating loading station, a limit electric cylinder is installed on the left side of the cutting station, the output shaft end of the limit electric cylinder is connected to the limit plug, and the limit plug is driven from the first end to the second end to the second end to the second end to the second end to the second end to the second end to the second end to the second end to the second end to the second end to the second end to the second end to the second end to the second end The left ends of the two translation seats extend into the interior of the heating box body, and a heating unloading station and a picking station are arranged on the bottom plate on the left side of the heating box body, and the picking station is located at the front side of the heating unloading station. The first translation seat body and the second translation seat body are each connected to the bottom plate in a front-rear sliding connection through a translation mechanism, and the first translation seat body reciprocates between the picking station and the heating unloading station under the drive of the translation mechanism, and the second translation seat body reciprocates between the cutting station and the heating loading station under the drive of the translation mechanism, and the tops of the guide lower seat body, the first translation seat body and the second translation seat body are all provided with arc grooves for conveying rods, and the upper support plate is fixed directly above the cutting station through a column, and the cutting mechanism is installed at the bottom of the upper support plate.

2. A cutting device for processing the handle of a wire stripper rod according to claim 1, characterized in that: The cutting mechanism comprises a cutting motor, a cutting tool (13) and a cutting electric cylinder (12), wherein the cutting electric cylinder is mounted on an upper support plate, the output shaft end of the cutting electric cylinder passes through the upper support plate and is connected to the cutting motor, the cutting tool is connected to the cutting motor and is driven to rotate by the cutting motor, and the cutting tool extends between the second translation seat and the guide lower seat under the action of the cutting electric cylinder.

3. A cutting device for processing the handle of a wire stripper rod according to claim 2, characterized in that: A first arc-shaped pressure plate (14) is arranged directly above the cutting station, and the first arc-shaped pressure plate is connected to a first clamping electric cylinder (10) arranged at the bottom of the upper support plate. The first arc-shaped pressure plate presses the rod into the second translation seat body under the action of the first clamping electric cylinder. A second arc-shaped pressure plate (15) is arranged directly above the left end of the guide lower seat body, and the second arc-shaped pressure plate is connected to a second clamping electric cylinder (11) arranged at the bottom of the upper support plate. The second arc-shaped pressure plate presses the rod into the guide lower seat body under the drive of the second clamping electric cylinder.

4. A cutting device for processing the handle of a wire stripper rod according to claim 1, characterized in that: The translation mechanism comprises a slide rail (18), a slide seat (17) and a translation drive electric cylinder (19), wherein the slide rails are arranged front to back, and two slide rails are respectively arranged between the cutting station and the heating loading station and between the heating unloading station and the material taking station. A slide seat is fixed at the bottom of each of the first translation seat body and the second translation seat body, and the slide seat is connected to the slide rail via a slide groove provided at the bottom. A translation drive electric cylinder is fixed in each of the cutting station and the heating unloading station, and the output shaft end of the translation drive electric cylinder is connected to the slide seat via a connecting piece, and the slide seat is connected to the slide rail via the driving sliding of the translation drive electric cylinder.

5. The cutting device for processing the handle of a wire stripper rod according to claim 1, characterized in that: The bar conveying mechanism comprises a lower conveying roller (25), an upper conveying roller (24), a guide frame (21), an adjustment plate (23), an adjustment bolt (22), a lower support plate (20) and a support column, wherein the lower conveying roller is located on the right side of the guide lower seat body and is installed on the right end of the base plate through a first roller bracket, the upper conveying roller is located directly above the lower conveying roller, the upper conveying roller is connected to the guide frame through a second roller bracket, the guide frame is fixed to the bottom of the lower support plate, the lower support plate is fixed directly above the right end of the base plate through a support column, the adjustment plate is slidably connected to the guide frame up and down, the second roller bracket is connected to the adjustment plate through a spring, a threaded through hole is provided on the lower support plate directly above the guide frame, the adjustment bolt is connected to the threaded through hole, the lower end of the adjustment bolt passes through the lower support plate and extends into the guide frame to be connected to the adjustment plate, and the adjustment bolt is movably connected to the guide frame and the adjustment plate.

6. A cutting device for processing the handle of a wire stripper rod according to claim 1, characterized in that: A heating channel is provided between the left and right ends of the heating box, and an induction heating coil (26) is arranged in the heating channel. Rod heating and conveying mechanisms are arranged on the left and right sides of the heating box. The rods cut at the heating loading station are extended into the induction heating coil under the action of the rod heating and conveying mechanisms, and then transported to the heating unloading station.

7. A cutting device for processing the handle of a wire stripper rod according to claim 6, characterized in that: The rod heating and handling mechanism comprises a first handling electric cylinder (7) fixed on the left bottom plate of the heating unloading station and a second handling electric cylinder (8) fixed on the right bottom plate of the heating loading station. The shaft ends of the first handling electric cylinder and the second handling electric cylinder are respectively connected to a ceramic tightening end (27).