Foreign matter collecting mechanism for cutting of wire marking machine
By designing a foreign object collection mechanism in the online marking machine, the problem of broken tubes entering the machine during cutting is solved, making the collection and cleaning of broken tubes convenient and avoiding gear jamming and printing failures.
Patent Information
- Application Number
- CN202423252851.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-27
- Publication Date
- 2025-11-25
- Estimated Expiration
- 2034-12-27
AI Technical Summary
The existing wire marking machine does not have a protective blade holder when cutting wire tubes, which makes it easy for broken tubes to flow into the machine's mainboard, causing gear jamming and printing failures.
Design a foreign object collection mechanism for wire marking machine cutting, including a plate, an anvil module and a cutting blade module. A cutting gap is formed between the blocking component and the cutting blade, and a groove is provided in the cutting blade bracket to collect the fragments. With the help of a switching structure, it can realize half-cutting and full-cutting functions, which is convenient for cleaning and maintenance.
It effectively collects the pipe fragments generated during the cutting process, preventing them from entering the machine and avoiding gear jamming, thus ensuring normal machine operation and convenient maintenance.
Smart Images

Figure CN223589563U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a line number machine technical field, concretely relates to a line number machine cutting foreign matter collection mechanism. BACKGROUND
[0002] Line number printer is also called line number printing machine, and is short for line number machine and marking machine, and is full name cable marking printer, and is also called line number printing machine and marking machine, adopts heat transfer printing technology, and printing precision can reach 300dpi, and can print characters on PVC sleeve, heat shrink tube, adhesive label and other materials, and is generally used for electric control and power distribution equipment secondary line identification, and is special equipment for electric control, power distribution equipment and comprehensive wiring engineering wiring identification, and can meet the needs of power plant, electric equipment factory, substation and power industry wire identification, and is widely used in switch, locomotive, machine tool, electric power, telecommunication, medicine, steel and other industry identification field printer, and easily realizes the identification of various cables, pipelines, components and cabinet.
[0003] At present, the line number machine on the market is easy to produce broken pipe when cutting the line number pipe, the cutting knife support of the line number machine is not protected, the broken pipe cannot be collected, the broken pipe is easy to flow into the mainboard of the machine, the gear is easy to be clamped, the printing fault is caused, and the gear is broken and the machine is damaged in serious cases. UTILITY MODEL CONTENTS
[0004] The utility model aims at overcoming the above technical insufficient, provides a kind of line number machine cutting foreign matter collection mechanism, solve the cutting knife support of line number machine in prior art is not protected, broken pipe is easy to flow into the mainboard of the machine when cutting pipe, gear is easy to be clamped, the problem of printing fault.
[0005] To achieve the above technical purpose, the utility model takes the following technical scheme:
[0006] The utility model provides a kind of line number machine cutting foreign matter collection mechanism, it includes:
[0007] Plate body;
[0008] Anvil module, it includes mounting bracket and blocking piece, the mounting bracket is connected with plate body, the blocking piece is connected with the mounting bracket;
[0009] Cutting knife module, the cutting knife module includes cutting knife support and cutting knife part, the cutting knife support is connected with plate body, the cutting knife part is slidably connected with cutting knife support, and the cutting knife part is oppositely arranged with the blocking piece, cutting gap is formed between the cutting knife part and the blocking piece, recess with top open is arranged below the cutting gap in the cutting knife support, and the recess is used to collect broken pipe falling from the cutting gap.
[0010] In some embodiments, the blocking piece comprises an anvil cylinder and a gasket, the anvil cylinder is rotationally connected with the mounting bracket, one side of the anvil cylinder is provided with a gasket, the gasket forms a half-cut panel on the anvil cylinder, and a full-cut panel is further provided on the anvil cylinder.
[0011] In some embodiments, a gasket is provided on any side of the anvil cylinder, the gasket forms a half-cut panel on the cylinder surface of the anvil cylinder, and a full-cut panel is further provided on the anvil cylinder close to the half-cut panel.
[0012] In some embodiments, a switching structure is further included, the switching structure comprises a driving end, a first pulling end and a second pulling end, the driving end is connected with the anvil cylinder through the first pulling end, one end of the second pulling end is connected with the anvil cylinder, and the other end is connected with the plate body, the driving end can be located at a first position or a second position, when the driving end is located at the first position, the anvil cylinder is in a half-cut state, and when the driving end is located at the second position, the anvil cylinder is in a full-cut state.
[0013] In some embodiments, the driving end comprises a shaft body, a swing arm and a connecting rod, the shaft body is rotationally connected with the plate body, the swing arm is fixedly connected with the shaft body, one end of the swing arm away from the shaft body is provided with the connecting rod, and the connecting rod is connected with the first pulling end.
[0014] In some embodiments, a limiting sliding groove is formed in the plate body and matched with the swing arm.
[0015] In some embodiments, the cutter module further comprises a guide rod and an elastic piece, one end of the guide rod is fixed with the mounting bracket, the other end of the guide rod is fixed with the cutter bracket, the guide rod is arranged in the groove, the bottom of the cutter part is provided with a pipe body, the pipe body is slidably sleeved with the guide rod and one end of the pipe body extends out of the groove, the elastic piece is sleeved on the guide rod, one end of the elastic piece abuts against the mounting bracket, and the other end of the elastic piece abuts against the pipe body.
[0016] In some embodiments, two protrusions are arranged on the pipe body along the axial direction, and the two protrusions are respectively in sliding contact with the opposite two side walls of the groove.
[0017] In some embodiments, the cutter module further comprises an eccentric cam, the eccentric cam is rotationally arranged on the plate body and abuts against the cutter part, and the eccentric cam can drive the cutter part to slide along the axial direction of the guide rod.
[0018] In some embodiments, a cutter body is detachably connected in the cutter part.
[0019] Compared with the prior art, the foreign matter collecting mechanism for the wire number machine cutting has the advantages that the cutting knife bracket is connected with the plate body, the cutting knife part is slidably connected with the cutting knife bracket, the cutting knife part and the blocking piece are oppositely arranged, the cutting gap is formed between the cutting knife part and the blocking piece, the groove with the open top is arranged below the cutting gap in the cutting knife bracket, the pipe fragments generated by the cutting of the cutting knife part can fall into the groove for collection, only the machine needs to be inverted, the small foreign matters in the groove can be poured out, and cleaning and maintenance are facilitated. BRIEF DESCRIPTION OF DRAWINGS
[0020] Figure 1 is a structure schematic view of the foreign matter collecting mechanism for the wire number machine cutting provided by the utility model embodiment;
[0021] Figure 2 is a structure schematic view of the anvil plate module and the cutting knife module provided by the utility model embodiment;
[0022] Figure 3 is a structure schematic view of the cutting knife bracket provided by the utility model embodiment;
[0023] Figure 4 is a structure schematic view of the pipe body arranged in the cutting knife bracket provided by the utility model embodiment;
[0024] Figure 5 is a structure schematic view of the cutting knife part provided by the utility model embodiment. DETAILED DESCRIPTION
[0025] In order to make the purpose, technical scheme and advantages of the utility model more clearly, the utility model is further described in detail below by combining with the drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the utility model, and are not used to limit the utility model.
[0026] In order to solve the technical problem that the cutting knife bracket of the wire number machine is not protected, the pipe fragments are easy to flow into the main board of the machine when cutting the pipe, and the gear is easy to be clamped, and the printing failure is caused in the prior art, the utility model provides a foreign matter collecting mechanism for wire number machine cutting, which can realize the collection of the pipe fragments generated when cutting the pipe.
[0027] Please refer to Figures 1-5 , Figures 1-5The utility model discloses a kind of foreign matter collection mechanisms for cutting of line number machine in an embodiment of the utility model, including plate body 1, cutting board module 2 and cutter module 3, cutting board module 2 includes mounting bracket 21 and blocking piece 22, the mounting bracket 21 is connected with plate body 1, the blocking piece 22 is connected with the mounting bracket 21;The cutter module 3 includes cutter bracket 31 and cutter part 32, the cutter bracket 31 is connected with plate body 1, the cutter part 32 is slidably connected with cutter bracket 31, and the cutter part 32 is oppositely arranged with the blocking piece 22, cutting gap is formed between the cutter part 32 and the blocking piece 22, recess 311 with top opening is equipped in the cutter bracket 31 below the cutting gap, and the recess 311 is used to collect broken pipe falling from the cutting gap.
[0028] In the embodiment, in order to realize switching between full cutting and half cutting of the line number pipe, specifically, the blocking piece 22 includes anvil cylinder 221 and gasket 222, the anvil cylinder 221 is rotationally connected with the mounting bracket 21, one side of the anvil cylinder 221 is provided with the gasket 222, the gasket 222 forms half cutting panel 2211 on the anvil cylinder 221, and full cutting panel 2212 is also provided on the anvil cylinder 221.
[0029] When the line number pipe is arranged in the cutting gap, the line number pipe can be half cut by the cutter part 32 abutting against the half cutting panel 2211, that is, an opening is cut on the line number pipe, and the line number pipe will not be broken; the line number pipe can be cut off by the cutter part 32 abutting against the full cutting panel 2212.
[0030] In the embodiment, the gasket 222 is provided on any one side of the anvil cylinder 221, the gasket 222 is in a whole C shape, the gasket 222 forms the half cutting panel 2211 on the cylinder surface of the anvil cylinder 221, and the full cutting panel 2212 is also provided on the anvil cylinder 221 close to the half cutting panel 2211.
[0031] On the basis of the above scheme, in order to facilitate switching of the half cutting panel 2211 and the full cutting panel 2212, specifically, the switching structure 4 is further included, the switching structure 4 includes driving end 41, first pulling end 42 and second pulling end 43, the driving end 41 is connected with the anvil cylinder 221 through the first pulling end 42, one end of the second pulling end 43 is connected to the anvil cylinder 221, and the other end is connected to the plate body 1, the driving end 41 can be located at a first position or a second position, when the driving end 41 is located at the first position, the anvil cylinder 221 is in a half cutting state, when the driving end 41 is located at the second position, the anvil cylinder 221 is in a full cutting state.
[0032] It should be noted that when the anvil cylinder 221 is in the half-cut state, the gasket 222 will block the cutter body of the cutter module 3, so that the cutter body cannot contact the anvil cylinder 221, and the cutter module 3 cannot cut off the cable tube; when the anvil cylinder 221 is in the full-cut state, the cutter body can contact the anvil cylinder 221 to cut off the cable tube.
[0033] Specifically, when the anvil cylinder 221 needs to be rotated, the driving end 41 is located at the first position, and through the cooperation of the driving end 41 and the first pulling end 42, the anvil cylinder 221 is driven to rotate on the mounting bracket 21, at this time, the full-cut panel 2212 of the anvil cylinder 221 is in a working state, and the internal equipment of the cable marker can perform full-cut work; when the driving end 41 is located at the second position, the first pulling end 42 no longer pulls the anvil cylinder 221, and the second pulling end 43 pulls the anvil cylinder 221 to reset, at this time, the half-cut panel 2211 of the anvil cylinder 221 is in a working state, and the internal equipment of the cable marker can perform half-cut work; in this specific embodiment, the first pulling end 42 and the second pulling end 43 are both return springs.
[0034] In this specific embodiment, the driving end 41 includes a shaft body 411, a swing arm 412 and a connecting rod 413, the shaft body 411 is rotationally connected to the plate body 1, the swing arm 412 is fixedly connected to the shaft body 411, the connecting rod 413 is arranged at an end of the swing arm 412 away from the shaft body 411, the connecting rod 413 is connected with the first pulling end 42, and in addition, the plate body 1 is provided with a limiting sliding groove 10 matched with the swing arm 412.
[0035] It should be noted that when the external motor drives the shaft body 411 to rotate, the shaft body 411 drives the swing arm 412 to rotate,
[0036] The swing arm 412 slides in the limiting sliding groove 10 of the plate body 1, and drives the first pulling end 42 to drive the anvil cylinder 221 to rotate circumferentially on the mounting bracket 21, and drives the anvil cylinder 221 to switch from the half-cut panel 2211 to the full-cut panel 2212; when the anvil cylinder 221 needs to be switched to the half-cut panel 2211, the external motor drives the shaft body 411 to rotate reversely, drives the swing arm 412 to reset, and the first pulling end 42 no longer provides pulling force to the anvil cylinder 221, and under the elastic force of the second pulling end 43, drives the anvil cylinder 221 to rotate reversely, so that the anvil cylinder 221 is in the half-cut panel 2211 state.
[0037] On the basis of the above scheme, the cutter module 3 further comprises a guide rod 33 and an elastic member 34, one end of the guide rod 33 is fixed with the mounting bracket 21, the other end of the guide rod 33 is fixed with the cutter bracket 31, and the guide rod 33 is arranged in the groove 311, the bottom of the cutter part 32 is provided with a pipe body 321, and the pipe body 321 is slidably connected with the guide rod 33 and one end of the pipe body 321 extends out of the groove 311, the elastic member 34 is sleeved on the guide rod 33, one end of the elastic member 34 abuts against the mounting bracket 21, and the other end of the elastic member 34 abuts against the pipe body 321.
[0038] In addition, the cutter module 3 further comprises an eccentric cam 35, the eccentric cam 35 is rotatably arranged on the plate body 1, and the eccentric cam 35 abuts against the cutter part 32, the eccentric cam 35 is rotatable to drive the cutter part 32 to slide along the axis direction of the guide rod 33, wherein the cutter part 32 is detachably connected with a cutter body.
[0039] It should be noted that the eccentric cam 35 is rotatable to drive the cutter part 32 to slide along the axis direction of the guide rod 33 in the cutter bracket 31, so that the cutter part 32 can abut against the half-cut surface plate 2211 or the full-cut surface plate 2212 of the anvil cylinder 221 to cut the number tube, under the elastic force of the elastic member 34, the cutter part 32 can be separated from the anvil cylinder 221 and slide along the axis direction of the guide rod 33 to reset.
[0040] On the basis of the above scheme, since there is a gap between the pipe body 321 and the opposite two side walls of the groove, in order to avoid that the broken pipe is stuck in the gap, specifically, the pipe body 321 is provided with two protrusions 322 along the axis direction, and the two protrusions 322 are respectively in sliding contact with the opposite two side walls of the groove 311.
[0041] The specific implementation of the above-mentioned utility model does not constitute a limitation on the protection scope of the utility model. Any various other corresponding changes and modifications made according to the technical concept of the utility model should be included in the protection scope of the utility model claim.
Claims
1. A foreign matter collection mechanism for wire marking machine cutting, characterized in that, The utility model relates to a cutting board, which comprises a board body, an anvil plate module and a cutter module. The anvil plate module comprises a mounting bracket and a blocking piece, the mounting bracket is connected with the board body, and the blocking piece is connected with the mounting bracket. The cutter module comprises a cutter bracket and a cutter part, the cutter bracket is connected with the board body, the cutter part is in sliding connection with the cutter bracket, the cutter part is arranged opposite to the blocking piece, a cutting gap is formed between the cutter part and the blocking piece, a groove with an open top is arranged below the cutting gap in the cutter bracket, and the groove is used for collecting broken tubes falling from the cutting gap. The blocking piece comprises an anvil plate cylinder and a gasket, the anvil plate cylinder is in rotary connection with the mounting bracket, one side of the anvil plate cylinder is provided with the gasket, the gasket forms a half-cutting panel on the anvil plate cylinder, and a full-cutting panel is further arranged on the anvil plate cylinder.
2. The foreign matter collecting mechanism for a yarn gauge cutting according to claim 1, wherein Any side of the anvil plate cylinder is provided with a gasket, the gasket forms a half-cutting panel on the cylinder surface of the anvil plate cylinder, and a full-cutting panel is further arranged close to the half-cutting panel on the anvil plate cylinder.
3. The foreign matter collecting mechanism for a cutting machine of a thread gauge according to claim 2, wherein The utility model further comprises a switching structure, the switching structure comprises a driving end, a first pulling end and a second pulling end, the driving end is connected with the anvil plate cylinder through the first pulling end, one end of the second pulling end is connected to the anvil plate cylinder, and the other end is connected to the board body, the driving end can be located at a first position or a second position, when the driving end is located at the first position, the anvil plate cylinder is in a half-cutting state, and when the driving end is located at the second position, the anvil plate cylinder is in a full-cutting state.
4. The foreign matter collecting mechanism for a cutting machine of a thread gauge according to claim 2, wherein The driving end comprises a shaft body, a swing arm and a connecting rod, the shaft body is in rotary connection with the board body, the swing arm is fixedly connected to the shaft body, one end of the swing arm away from the shaft body is provided with the connecting rod, and the connecting rod is connected with the first pulling end.
5. The foreign object collection mechanism for a yarn cutter according to claim 4, wherein A limiting sliding groove matched with the swing arm is arranged on the board body.
6. A foreign matter collecting mechanism for a yarn gauge cutting device according to claim 5, wherein The cutter module further comprises a guide rod and an elastic piece, one end of the guide rod is fixed with the mounting bracket, the other end of the guide rod is fixed with the cutter bracket, the guide rod penetrates through the groove, the bottom of the cutter part is provided with a tube body, the tube body is in sliding sleeve connection with the guide rod and extends out of the groove at one end, the elastic piece is sleeved on the guide rod, one end of the elastic piece abuts against the mounting bracket, and the other end of the elastic piece abuts against the tube body.
7. The foreign object collection mechanism for a yarn cutter according to claim 1, wherein Two protrusions are arranged on the tube body along the axial direction, and the two protrusions are in sliding contact with the opposite two side walls of the groove, respectively.
8. The foreign matter collecting mechanism for a yarn gauge cutting according to claim 7, wherein The cutter module further comprises an eccentric cam, the eccentric cam is arranged in rotation on the board body and abuts against the cutter part, and the eccentric cam is arranged in rotation and can drive the cutter part to slide along the axial direction of the guide rod.
9. The foreign object collection mechanism for a yarn cutter according to claim 7, wherein A cutter body is detachably connected in the cutter part.
10. The foreign object collection mechanism for a yarn cutter according to claim 1, wherein