CN223507957U - A wire marking machine - Google Patents

A wire marking machine

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Publication number
CN223507957U
CN223507957U CN202423252842.4U CN202423252842U CN223507957U CN 223507957 U CN223507957 U CN 223507957U CN 202423252842 U CN202423252842 U CN 202423252842U CN 223507957 U CN223507957 U CN 223507957U
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CN
China
Prior art keywords
marking machine
pulling
chopping block
anvil
chopping
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Active
Application number
CN202423252842.4U
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Chinese (zh)
Inventor
周杰
李明猛
贾超
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Wuhan Jingchen Wisdom Logo Technology Co ltd
Original Assignee
Wuhan Jingchen Wisdom Logo Technology Co ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Application filed by Wuhan Jingchen Wisdom Logo Technology Co ltd filed Critical Wuhan Jingchen Wisdom Logo Technology Co ltd
Priority to CN202423252842.4U priority Critical patent/CN223507957U/en
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Publication of CN223507957U publication Critical patent/CN223507957U/en
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Abstract

The utility model discloses a line marking machine, which comprises a plate body and a chopping block module, wherein the chopping block module comprises a mounting assembly, a chopping block assembly and a cover, the chopping block assembly is detachably connected with the mounting assembly, the chopping block assembly is mounted on the plate body, the cover is arranged above the chopping block module, and the detachable direction of the chopping block assembly is the direction in which the cover is opened to open a line groove of the line marking machine. The utility model solves the technical problem that the wire marking machine in the prior art is inconvenient for replacing the chopping board.

Description

Wire marking machine
Technical Field
The utility model relates to the technical field of wire marking machine equipment, in particular to a wire marking machine.
Background
The line number printer is also called a line number printer for short, a marking machine for marking a whole cable, is also called a line number printer for short, and is also called a marking machine for marking a number, the printing precision can reach 300dpi by adopting a thermal transfer printing technology, characters can be printed on materials such as PVC (polyvinyl chloride) sleeves, heat shrinkage tubes, self-adhesive labels and the like, the marking machine is generally used for secondary line identification of electric control and distribution equipment, is special equipment for electric control and distribution equipment and comprehensive wiring engineering wiring identification, and can meet the requirements of wire distinguishing mark identification of power plants, electric equipment factories, transformer substations and power industries; the printer is widely applied to printers in the field of identification of industries such as switches, locomotives, machine tools, electric power, telecommunications, medicines, steel and the like, and can easily realize the identification of various cables, pipelines, components and cabinets.
Among the related art, chopping block fixed mounting for carrying out tangent line is in the plate body, when the chopping block damaged, inconvenient change, moreover to the wire gauge pipe of different thickness, because the chopping block can't be changed, consequently need adopt different wire gauge machine to realize half cutting or cutting entirely, the adaptability of wire gauge machine is not strong, has increased user's use cost moreover.
Disclosure of utility model
The utility model aims to overcome the technical defects, and provides a wire marking machine which solves the technical problem that the wire marking machine in the prior art is inconvenient to replace a cutting board.
In order to achieve the technical purpose, the utility model adopts the following technical scheme:
The utility model provides a wire marking machine, comprising:
A plate body;
the chopping block module comprises a mounting assembly and a chopping block assembly, wherein the chopping block assembly is detachably connected with the mounting assembly, the chopping block assembly is mounted on the plate body, and
The cover is opened, the cover is arranged above the chopping block module, and the detachable direction of the chopping block module is the direction in which the cover is opened to open the pipeline groove of the line number machine.
In some embodiments, the mounting assembly comprises a mounting bracket and a chopping block barrel, the mounting bracket is connected with the plate body, the chopping block assembly is detachably connected with the chopping block barrel, and the chopping block barrel is rotationally connected with the mounting bracket so as to realize the conversion between full cutting and half cutting of the wire gauge tube.
In some embodiments, the anvil assembly includes an anvil mounted on a barrel surface of the anvil barrel and having two panels thereon, and a spacer mounted to the anvil and partially shielding one of the panels such that one of the panels is a half cut panel and the other is a full cut panel.
In some embodiments, the anvil has a hand-held position formed thereon.
In some embodiments, the anvil has a first notch formed therein that exposes a portion of the anvil cylinder.
In some embodiments, the anvil cylinder has a second indentation formed therein for mounting the spacer.
In some embodiments, the wire marking machine further comprises a switching mechanism, the switching mechanism comprises a driving device, a first pulling device and a second pulling device, the driving device is connected with the chopping board barrel through the first pulling device, one end of the second pulling device is connected to the chopping board barrel, the other end of the second pulling device is connected to the board body, the driving device can be located at a first position or a second position, when the driving device is located at the first position, the chopping board barrel is in a half-cutting state, and when the driving device is located at the second position, the chopping board barrel is in a full-cutting state.
In some embodiments, a pull plate is arranged at the lower end of the chopping block cylinder, a first pull hole and a second pull hole are respectively formed in the pull plate, the first pull hole is internally connected with the first pulling device, and the second pull hole is internally connected with the second pulling device.
In some embodiments, the driving device comprises a shaft body, a swing arm and a connecting rod, the shaft body is rotationally connected to the plate body, the swing arm is connected to the shaft body, the connecting rod is arranged at one end of the swing arm, which is far away from the shaft body, the connecting rod is provided with a connecting hole, and the connecting hole is connected with the first pulling device.
In some embodiments, the plate body is provided with a limiting chute matched with the swing arm.
In some embodiments, the first pulling device includes a first pulling spring, one end of the first pulling spring is disposed in the connection hole, and the other end of the first pulling spring is connected in the first pulling hole of the pulling plate.
In some embodiments, the second pulling device comprises a second pulling spring, one end of the second pulling spring is connected to the plate body, and the other end of the second pulling spring is connected to the second pulling hole of the pulling plate.
In some embodiments, the thread marking machine further comprises a cutter module, the cutter module comprises a pushing wheel, a transverse rod and a cutter, a transmission cam is arranged on the pushing wheel, the transverse rod is axially fixed on the mounting bracket, the cutter is slidably connected to the transverse rod, and the transmission cam is used for pushing the cutter to axially move on the transverse rod.
In some embodiments, a return spring is sleeved on the transverse rod, one end of the return spring is connected to the mounting bracket, and the other end of the return spring is abutted to the cutter.
Compared with the prior art, the chopping board module comprising the mounting assembly and the chopping board assembly is arranged on the board body, and the chopping board module and the mounting assembly are detachably connected, so that the chopping board assemblies with different sizes can be replaced for the wire-number tubes with different sizes, the wire-number machine can be further adapted to the wire-number tubes with various types, and the use cost of a user is reduced.
Drawings
FIG. 1 is an overall schematic diagram of a full-cut or half-cut state switching structure of a wire marking machine provided by an embodiment of the present utility model;
Fig. 2 is a schematic diagram of a part of a cutting board module with a full-cut or half-cut state switching structure of a wire marking machine according to an embodiment of the present utility model.
The reference numerals are 1, a plate body, 11, a limiting chute, 2, a cutting board module, 21, a mounting bracket, 22, a cutting board cylinder, 22a, a second notch, 221, a gasket, 222, a half-cut panel, 223, a full-cut panel, 225a, a holding position, 225b, a first notch, 224, a pull plate, 2241, a first pull hole, 2242, a second pull hole, 3, a switching structure, 31, a driving device, 311, a shaft body, 312, a swing arm, 3121, a connecting rod, 3122, a connecting hole, 32, a first pulling device, 321, a first pulling spring, 33, a second pulling device, 331, a second pulling spring, 4, a cutter module, 41, a pushing wheel, 411, a transmission cam, 42, a transverse rod, 421, a return spring, 43 and a cutter.
Detailed Description
The present utility model will be described in further detail with reference to the drawings and examples, in order to make the objects, technical solutions and advantages of the present utility model more apparent. It should be understood that the specific embodiments described herein are for purposes of illustration only and are not intended to limit the scope of the utility model.
In order to solve the technical problem that a wire marking machine in the prior art cannot be adapted to a plurality of wire marking pipes with different thicknesses, the utility model provides the wire marking machine, and the cutting board can be replaced according to the sizes of the wire marking pipes, so that the wire marking machine is adapted to wire marking pipes with different types.
Referring to fig. 1, fig. 1 is a schematic structural diagram of a line marking machine according to an embodiment of the present utility model, the line marking machine includes a board body 1, a chopping board module 2 and a cover (not shown in the drawings), the chopping board module 2 includes a mounting assembly and a chopping board assembly, the chopping board assembly is detachably connected with the mounting assembly, the chopping board assembly is mounted on the board body 1, the cover is disposed above the chopping board module 2, and the detachable direction of the chopping board assembly is a direction in which the cover is opened to open a line groove of the line marking machine.
In this embodiment, through set up chopping block module 2 including installation component and chopping block subassembly on plate body 1 to make chopping block module 2 and installation component dismantle the connection, consequently, to not unidimensional wire number pipe, removable unidimensional chopping block subassembly, and then make wire number machine adaptation various model's wire number pipe, reduce user's use cost.
In one possible embodiment, the mounting assembly comprises a mounting bracket 21 and a chopping board barrel 22, wherein the mounting bracket 21 is connected with the board body 1, the chopping board assembly is detachably connected with the chopping board barrel 22, and the chopping board barrel 22 is rotatably connected with the mounting bracket 21 so as to realize the conversion of full cutting and half cutting of the wire-number tube.
In this embodiment, through installing the chopping block subassembly on chopping block section of thick bamboo 22, can drive the position change of chopping block subassembly through the rotation of chopping block section of thick bamboo 22, and then the conversion of convenient sight line number pipe all cut and half cut, moreover, through making the chopping block subassembly detachable connect in chopping block section of thick bamboo 22, to the line number pipe of different models, the change of chopping block subassembly that carries out that can be convenient, and then the line number pipe of different models of adaptation.
In one possible embodiment, the anvil assembly includes an anvil 225 and a spacer 221, the anvil 225 is mounted on the surface of the anvil cylinder 22, the anvil 225 has two panels thereon, and the spacer is mounted on the anvil 225 and partially shields one of the panels so that the other panel is a half-cut panel 224 and the other panel is a full-cut panel 223, and the size of the panels can be changed by setting the spacer 221, so that the anvil 225 is provided with the full-cut panel 223 and the half-cut panel 224, thereby realizing the full-cut and half-cut functions of the line-size tube.
In one possible embodiment, the anvil 225 has a hand-held portion 225a formed thereon to facilitate hand-held replacement of the anvil 225 by a user.
In one possible embodiment, the anvil 225 has a first notch 225b formed therein to partially expose the anvil cylinder 22, thereby facilitating the user's removal of the anvil 225 from the anvil cylinder 22 and providing convenience to the user.
In one possible embodiment, the anvil cylinder 22 is formed with a second notch 22a for mounting the spacer 221, which facilitates the mounting and dismounting of the spacer 221 by a user.
In one possible embodiment, to improve the working efficiency of the anvil cylinder 22, the cross section of the anvil cylinder 22 is hexagonal, and a spacer 221 is provided on either side of the anvil cylinder 22, the spacer 221 forms a half-cut panel 222 on the cylinder surface of the anvil cylinder 22, and a full-cut panel 223 is provided on the anvil cylinder 22 adjacent to the half-cut panel 222.
In one possible embodiment, the wire marking machine further comprises a switching mechanism 3, the switching mechanism 3 comprises a driving device 31, a first pulling device 32 and a second pulling device 33, the driving device 31 is connected with the chopping board barrel 22 through the first pulling device 32, one end of the second pulling device 33 is connected to the chopping board barrel 22, the other end is connected to the board body 1, the driving device 31 can be located at a first position or a second position, when the driving device 31 is located at the first position, the chopping board barrel 22 is in a half-cut state, and when the driving device 31 is located at the second position, the chopping board barrel 22 is in a full-cut state.
In this embodiment, the driving device 31, the first pulling device 32 and the second pulling device 33 can cooperate to drive the chopping board barrel 22 to rotate differently, specifically, when the chopping board barrel 22 needs to be rotated, the driving device 31 is located at the first position, the chopping board barrel 22 is driven to rotate on the mounting bracket 21 by the cooperation of the driving device 31 and the first pulling device 32, at this time, the full cutting panel 223 of the chopping board barrel 22 is in a working state, the internal equipment of the wire marking machine can perform full cutting operation, when the driving device 31 is located at the second position, the first pulling device 32 does not pull the chopping board barrel 22 any more, the second pulling device 33 pulls the chopping board barrel 22 to reset, at this time, the half cutting panel 222 of the chopping board barrel 22 is in a working state, and the internal equipment of the wire marking machine can perform half cutting operation.
In one possible embodiment, the lower end of the chopping block cylinder 22 is provided with a pulling plate 224, a first pulling hole 2241 and a second pulling hole 2242 are respectively formed on the pulling plate 224, the first pulling hole 2241 is connected with the first pulling device 32, the second pulling hole 2242 is connected with the second pulling device 33, and the movement of the chopping block cylinder 22 is realized through the cooperation of the pulling devices and the pulling holes.
In one possible embodiment, the driving device 31 includes a shaft body 311, a swing arm 312 and a connecting rod 3121, the shaft body 311 is rotatably connected to the plate body 1, the shaft body 311 is connected with the swing arm 312, one end of the swing arm 312 far away from the shaft body 311 is provided with the connecting rod 3121, the connecting rod 3121 is provided with a connecting hole 3122, the connecting hole 3122 is internally connected with the first pulling device 32, the plate body 1 is provided with a limit chute 11 matched with the swing arm 312, the first pulling device 32 includes a first pulling spring 321, one end of the first pulling spring 321 is disposed in the connecting hole 3122, the other end is connected in the first pulling hole 2241 of the pulling plate 224, the second pulling device 33 includes a second pulling spring 331, one end of the second pulling spring 331 is connected to the plate body 1, and the other end is connected in the second pulling hole 2242 of the pulling plate 224.
In this embodiment, the chopping board barrel 22 is hexagonal, a spacer 221 is disposed on one surface of the chopping board barrel 22, the spacer 221 forms a half-cut panel 222 on the chopping board barrel 22, a full-cut panel 223 is disposed on one surface close to the half-cut panel 222, a pull plate 224 is disposed at the lower end of the chopping board barrel 22, a first pull hole 2241 and a second pull hole 2242 are disposed on the pull plate 224, a first pull spring 321 is disposed in the first pull hole 2241, the end of the first pull spring 321 is connected to a connecting rod 3121 of the swing arm 312, when the external motor drives the shaft 311 to operate, the shaft 311 drives the swing arm 312 to rotate, the swing arm 312 slides in a limit chute 11 of the plate body 1, and the first pull spring 321 drives the chopping board barrel 22 to rotate circumferentially on the mounting bracket 21, so that the chopping board barrel 22 is converted from the half-cut panel 222 to the full-cut panel 223, when the chopping board barrel 22 needs to be converted to the half-cut panel 222, the external motor drives the shaft 311 to rotate reversely, so that the first pull spring 321 does not provide a pull force to the barrel 22 to pull the second swing arm 22, and the swing arm 22 is driven reversely, thereby the chopping board barrel 22 is driven to rotate reversely.
In one embodiment, referring to fig. 1-2, in order to improve the moving effect of the cutter module 4, the plate 1 is further provided with the cutter module 4, the cutter module 4 includes a pushing wheel 41, a transverse rod 42 and a cutter 43, the pushing wheel 41 is provided with a transmission cam 411, the transverse rod 42 is axially fixed on the mounting bracket 21, the cutter 43 is slidably connected to the transverse rod 42, the transmission cam 411 is used for pushing the cutter 43 to axially move on the transverse rod 42, a return spring 421 is sleeved on the transverse rod 42, one end of the return spring 421 is connected to the mounting bracket 21, the other end of the return spring is abutted to the cutter 43, and the cutter 43 is detachably connected with a cutter body.
In this embodiment, a transverse rod 42 is disposed at the lower end of the mounting bracket 21, and a cutter 43 is slidingly connected to the transverse rod 42, where a return spring 421 is wound on the transverse rod 42 to push the cutter 43 to return, and the cutting board barrel 22 and the cutter 43 are in the same horizontal line, in an initial state, a half-cutting panel 222 on the cutting board barrel 22 faces the cutter 43, and the driving cam 411 is driven by the driving wheel 41 to operate, and the driving cam 411 pushes the cutter 43 to axially move on the transverse rod 42 and cut a line tube between the cutting board barrel 22 and the cutter 43, and when full cutting is required, the cutting board barrel 22 axially rotates, so that the full-cutting panel 223 faces the cutter 43.
In order to better understand the utility model, the technical scheme of the utility model is described in detail below with reference to fig. 1-2, wherein in the initial state, a half-cutting panel 222 on a chopping board barrel 22 faces a cutter module 4, when half-cutting is required, a push wheel 41 is started, the push wheel 41 drives a transmission cam 411 to operate, the transmission cam 411 pushes a cutter 43 to horizontally move on a transverse rod 42, so that the cutter 43 cuts a wire tube, a gasket 221 is arranged on the half-cutting panel 222, the wire tube can be half-cut, when full-cutting is required, an external motor is started, the external motor drives a shaft 311 to operate, the shaft 311 drives a swing arm 312 to move in a limiting chute 11 on the floor, the swing arm 312 is driven to move in the limiting chute 11 on the floor, and the first pull spring 321 is used for pulling the chopping board barrel 22 to rotate, so that the full-cutting panel 223 faces the cutter module 4, and the cutter 43 is pushed to horizontally move on a transverse rod 42 by the transmission cam 411, so that the wire tube is cut, and after the cutting is finished, the shaft 311 drives the swing arm 312 to reset, and the second pull spring 331 is used for pulling the swing arm 22 clockwise, so that the cutter module 222 starts to rotate clockwise.
The above-described embodiments of the present utility model do not limit the scope of the present utility model. Any other corresponding changes and modifications made in accordance with the technical idea of the present utility model shall be included in the scope of the claims of the present utility model.

Claims (14)

1. A wire marking machine, comprising:
A plate body;
the chopping block module comprises a mounting assembly and a chopping block assembly, wherein the chopping block assembly is detachably connected with the mounting assembly, the chopping block assembly is mounted on the plate body, and
The cover is opened, the cover is arranged above the chopping block module, and the detachable direction of the chopping block module is the direction in which the cover is opened to open the pipeline groove of the line number machine.
2. The wire marking machine of claim 1, wherein the mounting assembly comprises a mounting bracket and a cutting board barrel, the mounting bracket is connected with the board body, the cutting board assembly is detachably connected with the cutting board barrel, and the cutting board barrel is rotatably connected with the mounting bracket so as to realize the conversion of full cutting and half cutting of the wire marking pipe.
3. The line marking machine of claim 2, wherein the anvil assembly includes an anvil mounted to the face of the anvil cylinder and having two panels thereon and a spacer mounted to the anvil and partially shielding one of the panels so that one of the panels is a half-cut panel and the other is a full-cut panel.
4. A marking machine as claimed in claim 3, wherein the anvil is formed with a hand-held location.
5. A marking machine as claimed in claim 3, wherein the anvil is formed with a first recess exposing a portion of the anvil cylinder.
6. A marking machine as claimed in claim 3, wherein the anvil cylinder is formed with a second recess for mounting the shim.
7. The marking machine of claim 2, further comprising a switching mechanism, wherein the switching mechanism comprises a driving device, a first pulling device and a second pulling device, the driving device is connected with the chopping board barrel through the first pulling device, one end of the second pulling device is connected with the chopping board barrel, the other end of the second pulling device is connected with the board body, the driving device can be located at a first position or a second position, when the driving device is located at the first position, the chopping board barrel is in a half-cut state, and when the driving device is located at the second position, the chopping board barrel is in a full-cut state.
8. The marking machine according to claim 7, wherein a pull plate is arranged at the lower end of the chopping block cylinder, a first pull hole and a second pull hole are respectively formed in the pull plate, the first pull hole is connected with the first pulling device, and the second pull hole is connected with the second pulling device.
9. The marking machine of claim 8, wherein the driving device comprises a shaft body, a swing arm and a connecting rod, the shaft body is rotatably connected to the plate body, the swing arm is connected to the shaft body, the connecting rod is arranged at one end of the swing arm away from the shaft body, a connecting hole is formed in the connecting rod, and the first pulling device is connected to the connecting hole.
10. The marking machine of claim 9, wherein the plate body is provided with a limit chute matched with the swing arm.
11. The thread marking machine of claim 9, wherein the first pulling means comprises a first pulling spring having one end disposed in the attachment hole and the other end attached to the pulling plate in the first pulling hole.
12. The marking machine of claim 8, wherein the second pulling means includes a second pulling spring having one end connected to the plate and the other end connected to the pulling plate in a second pulling hole.
13. The marking machine of claim 1, further comprising a cutter module, wherein the cutter module comprises a push wheel, a transverse rod and a cutter, a transmission cam is arranged on the push wheel, the transverse rod is axially fixed on the mounting bracket, the cutter is slidably connected to the transverse rod, and the transmission cam is used for pushing the cutter to axially move on the transverse rod.
14. The marking machine of claim 13, wherein a return spring is sleeved on the transverse rod, one end of the return spring is connected to the mounting bracket, and the other end of the return spring is abutted to the cutter.
CN202423252842.4U 2024-12-27 2024-12-27 A wire marking machine Active CN223507957U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202423252842.4U CN223507957U (en) 2024-12-27 2024-12-27 A wire marking machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202423252842.4U CN223507957U (en) 2024-12-27 2024-12-27 A wire marking machine

Publications (1)

Publication Number Publication Date
CN223507957U true CN223507957U (en) 2025-11-04

Family

ID=97508718

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202423252842.4U Active CN223507957U (en) 2024-12-27 2024-12-27 A wire marking machine

Country Status (1)

Country Link
CN (1) CN223507957U (en)

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