A microcomputer line number printer
By setting up a heating and cleaning mechanism in the line printer, the problem of impurities affecting the printing effect during the heating of the line tube is solved, and efficient heating and cleaning of the line tube is achieved, ensuring stable printer performance.
Patent Information
- Application Number
- CN202510224575.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-26
- Publication Date
- 2025-09-30
- Estimated Expiration
- 2045-02-26
AI Technical Summary
When existing wire gauge printers heat and soften the wire tube, impurities are easily separated from the wire tube and affect the printing effect, and the accumulation of impurities may damage the performance of the printer.
A microcomputer wire number printer is designed, which is equipped with a heating mechanism and a cleaning mechanism. The heating mechanism softens the wire tube, and the cleaning mechanism scrapes away impurities on the surface of the wire tube. The cleaning ring and the guide slide are used to cooperate to effectively remove and collect impurities.
While heating and softening the wire tube, impurities on the surface of the wire tube are removed to prevent impurities from affecting the printing effect and accumulation, maintaining printer performance, achieving efficient cleaning and preventing impurity accumulation.
Smart Images

Figure CN119928434B_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of line number printers, and specifically to a microcomputer line number printer. Background Art
[0002] A cable number printer, also known as a cable number printer or a numbering machine, is a device that can print characters on materials such as PVC tubing, heat shrink tubing, and self-adhesive labels. It generally uses thermal transfer printing technology, sending the data to be printed to the thermal transfer print head via the processing chip on the circuit board, thereby completing the printing on the material.
[0003] The line number printer is mainly used for marking secondary lines of electric control and distribution equipment. It is a special device for marking the wiring of electric control and distribution equipment and integrated wiring projects. It can meet the needs of power plants, electrical equipment factories, substations, and the power industry for distinguishing wires and markings. It is widely used in the marking fields of switches, locomotives, machine tools, electric power, telecommunications, medicine, steel and other industries.
[0004] During the printing process, existing wire gauge printers need to flatten the curved wire gauge tube before printing. However, the existing wire tube is relatively hard and difficult to be flattened by the roller, so the wire tube needs to be pre-processed.
[0005] For example, patent publication number CN 217415275U specifically discloses a feed and discharge device for a wire number printer. This patent disposes a heating unit at the input end of the wire number printer. The heating unit is located in a heating chamber and can generate hot air to soften the wire tube. The heat source does not directly interact with the wire tube, which can prevent the wire tube from overheating and deformation. The softened wire tube is easy to flatten, and the printing on the wire tube is clearer.
[0006] However, during the implementation of the above patent, impurities attached to the wire tube are more easily separated from the wire tube after heating, making the wire tube more susceptible to the influence of impurities during printing, thereby affecting the printing effect. Moreover, if the impurities fall off during printing, they will accumulate in the printer, which may affect the performance of the printer. Therefore, it is necessary to provide a microcomputer wire number printer to solve the above problem.
[0007] It should be noted that the above information disclosed in this Background section is only for understanding the background technology of the present application concept, and therefore, it may contain information that does not constitute prior art. Summary of the Invention
[0008] Based on the above problems existing in the prior art, the problem to be solved by this application is: to provide a microcomputer wire number printer that can remove impurities on the surface of the wire tube while heating and softening the wire tube.
[0009] The technical solution adopted by the present application to solve its technical problems is: a microcomputer wire number printer, including a wire number machine, wherein the two ends of the wire number machine are respectively provided with an inlet and an outlet for wire pipes to enter and exit; a heating mechanism, which is arranged at the inlet and is used to heat the input wire pipe, and the heating mechanism has a heating box; a cleaning mechanism, which is arranged on the outer ring of the wire pipe and is used to scrape impurities on the surface of the wire pipe, and the cleaning mechanism includes: two groups of cleaning rings sleeved on the outer ring of the wire pipe, and the inner ring of the cleaning ring is provided with an elastic cleaning part; a third spring installed between the two groups of cleaning rings; a first spring arranged between the cleaning ring and the heating box; contact balls arranged on both sides of the cleaning ring; and a guide slide cooperated with the contact ball to limit the vertical position of the two groups of cleaning rings; wherein the contact ball is suitable for moving in the guide slide to drive the two groups of cleaning rings to fit tightly in the initial position, and separate from each other when away from the initial position, and rely on the cleaning part to clean the wire pipe.
[0010] Furthermore, bosses are provided on both sides of the cleaning ring, a second countersunk hole is provided on the outer side of the boss, a second spring is fixedly installed inside the second countersunk hole, and the second spring is fixedly installed with the contact ball.
[0011] Furthermore, the guide slide includes a horizontally arranged first slide, a second slide inclined upward is arranged at the right end of the first slide, the bottom position of the second slide is lower than the bottom position of the first slide, and a first stationary point is arranged at the right end of the second slide; the end of the second slide is connected to a third slide inclined upward, and a second stationary point is arranged at the highest point of the third slide.
[0012] Furthermore, a horizontal fourth slide is provided at the end of the third slide, a downwardly inclined fifth slide is provided at the end of the fourth slide, the end of the fifth slide is connected to the first slide, and a slope is provided on the fifth slide. The bottom position of the slope gradually rises along a position close to the first slide, and a step is formed at the connection between the fifth slide and the first slide.
[0013] Furthermore, a vertical slide rail is provided on one side of the boss, a slider is slidably provided on the slide rail, and the slider is fixedly installed with the first spring.
[0014] Furthermore, the above-mentioned heating mechanism includes a second connecting part connected to the pipe inlet, the second connecting part is connected to the heating box at one end away from the wire number machine, the heating box is connected to the first connecting part at one end away from the second connecting part, and the first connecting part is threadedly connected to a limiting cylinder; the limiting cylinder is provided with a threaded part at one end close to the first connecting part, and the first connecting part is provided with an internal thread.
[0015] Furthermore, a sealing ring is provided at the other end of the limiting cylinder.
[0016] Furthermore, an air inlet cylinder is provided at the upper end of the heating box, and a heating wire is provided inside the air inlet cylinder; a pump body is fixedly installed on the side of the heating box, and the input end of the pump body is connected to the bottom of the heating box.
[0017] Furthermore, a tee is provided on the communicating pipe between the pump body and the heating box, and a filter is provided at the position where the tee is connected to the pump body.
[0018] Furthermore, a collecting assembly is provided at the bottom of the tee, and the collecting assembly includes a waste hopper connected to the tee, and a hopper cover is provided at the bottom of the waste hopper.
[0019] The present application provides a microcomputer line number printer, which has the following beneficial effects:
[0020] 1. By providing a heating mechanism and a cleaning mechanism, the impurities on the surface of the wire tube can be removed while the wire tube is heated and softened, thereby preventing the impurities from falling off during printing and accumulating in the line number machine, thereby affecting the performance of the printer.
[0021] 2. By providing a collection component, the fallen impurities can be collected to prevent the impurities from accumulating in the heating box.
[0022] 3. By setting the limiting cylinder and the sealing ring, it can not only be adjusted according to the diameter of the wire tube, but also one end of the heating box can be sealed to prevent heat loss.
[0023] In addition to the above-described purposes, features and advantages, the present application also has other purposes, features and advantages. The present application will be further described in detail below with reference to the drawings. BRIEF DESCRIPTION OF THE DRAWINGS
[0024] The drawings in the specification, which constitute a part of this application, are used to provide further understanding of this application. The illustrative embodiments of this application and their descriptions are used to explain this application and do not constitute improper limitations on this application.
[0025] In the attached figure:
[0026] Figure 1 This is a schematic diagram of a microcomputer line number printer in this application. Figure 1 ;
[0027] Figure 2 This is a schematic diagram of a microcomputer line number printer in this application. Figure 2 ;
[0028] Figure 3 for Figure 1Schematic diagram of the local explosion structure;
[0029] Figure 4 for Figure 2 Schematic diagram of the local structure at point A;
[0030] Figure 5 for Figure 3 Schematic diagram of the local structure at B in the middle;
[0031] Figure 6 for Figure 5 Schematic diagram of the local structure at point C in the middle;
[0032] Figure 7 for Figure 5 Schematic diagram of the local structure at D in the middle;
[0033] Figure 8 for Figure 7 Schematic diagram of the cleaning mechanism;
[0034] Figure 9 for Figure 8 Schematic diagram of the local structure at E in the middle;
[0035] Figure 10 for Figure 7 Schematic diagram of the internal structure of the heating box;
[0036] Figure 11 for Figure 10 Structural diagram of the middle guide slide;
[0037] Among them, the reference numerals in the figures are:
[0038] 1. Wire number machine; 11. Base; 12. Pipe outlet; 13. Operation panel; 14. Screen;
[0039] 2. Heating mechanism; 21. Heating box; 22. Air inlet; 23. Heating wire; 24. Pump body; 26. First connecting portion; 27. Second connecting portion; 28. Limiting cylinder; 281. Threaded portion; 29. Sealing ring;
[0040] 3. Collection assembly; 31. Tee; 32. Waste hopper; 33. Hopper cover;
[0041] 4. Wire tube;
[0042] 5. Cleaning mechanism; 51. Cleaning ring; 511. First countersunk hole; 52. Boss; 521. Second countersunk hole; 53. First spring; 54. Slider; 55. Cleaning unit; 56. Slide rail; 57. Contact ball; 58. Second spring; 59. Third spring;
[0043] 6. Guide slide; 61. First slide; 62. Second slide; 63. First stationary point; 64. Third slide; 65. Fourth slide; 66. Fifth slide; 67. Slope; 68. Second stationary point. DETAILED DESCRIPTION
[0044] It should be noted that, in the absence of conflict, the embodiments and features of the embodiments in this application can be combined with each other. The present application will be described in detail below with reference to the accompanying drawings and in combination with the embodiments.
[0045] In order to enable those skilled in the art to better understand the present invention, the following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments in the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts should fall within the scope of protection of this application.
[0046] Example 1:
[0047] This embodiment mainly describes the structure and working principle of the line number printer, specifically:
[0048] like Figure 1-Figure 3 As shown, the present application provides a microcomputer line number printer, including a line number machine 1, the line number machine 1 having a base 11, the base 11 as the main body of the line number machine 1, which can be placed on the table in the working area, and a printing component (not shown in the figure) is arranged inside the base 11. The printing component has a high-precision print head and can adapt to high-precision printing operations;
[0049] At the same time, an operation panel 13 for input is provided on the base 11. The operation panel 13 is provided with buttons. The operation panel 13 is designed to be tilted, so that the user can easily operate the buttons in a standing or sitting state. The operation panel 13 is equipped with an independent numeric keypad and combination function keys, which is simple and convenient to operate. The user can directly input text, numbers and symbols through the keyboard;
[0050] A screen 14 is provided on the base 11. The screen 14 is a color high-definition LCD display screen, so that the screen 14 displays clearly and intuitively, and can display printing content, parameter settings, error messages, and print quantity. It also supports multiple language selections, and users can switch the display language of the screen 14 according to their needs.
[0051] At both ends of the base 11 are provided a pipe inlet (not shown) and a pipe outlet 12. The pipe inlet is used to introduce the wire tube 4 so as to facilitate the printing operation on the wire tube 4. At the same time, the printed wire tube 4 is discharged through the pipe outlet 12 for subsequent use.
[0052] In summary, when the wire tube 4 needs to be printed, the wire tube 4 is introduced from the tube inlet, and then the printing parameter setting interface is entered on the operation panel 13;
[0053] In the print parameter setting interface, users can adjust various print parameters according to actual needs. For example: select the print mode (high speed / low speed), set the font, text height, text style (bold, italic, underline), character spacing and line spacing, print direction (horizontal / vertical), print density, number of copies, etc. The line number machine supports a variety of text heights, text widths (standard, condensed, expanded), character spacing (standard, condensed, widened) and line spacing adjustments; it has the function of selecting the printing direction (vertical, horizontal); the paragraph length can be automatically adjusted according to the content, or it can be fixed. If it exceeds the set value, an error message will be prompted; it has a continuous printing function, and the number of continuous prints can be set to improve printing efficiency; it can also set special effects such as underlining, framing, and continuous numbers at the bottom of the paragraph; it has a preview function, and users can check and confirm the print content before printing to avoid wasting consumables; selection of print mode (high speed / low speed);
[0054] At the same time, during the parameter adjustment process, the display screen previews the printing effect in real time, and the user can intuitively see the impact of parameter changes on the printing effect, making it easier to make adjustments;
[0055] In terms of printing mode selection, you can choose from the following three modes:
[0056] 1. Edit directly on the line number machine 1. Use the letters, numbers, and symbols on the operation panel 13 to directly input the content to be printed. You can also use function key combinations (such as delete, insert, copy and paste). During the editing process, you can call the built-in symbol library at any time to quickly insert common symbols (such as electrical symbols, arrows, lines, etc.). It also supports Chinese pinyin and spelling, and English uppercase and lowercase switching.
[0057] 2. Edit with computer software and then transfer for printing. Install line number identification editing software (specially developed supporting software) that is compatible with line number machine 1 on the computer; open the software, select the model corresponding to line number machine 1, and connect the computer to line number machine 1 via the USB interface; edit the line number identification content in the software. The software also has a database function and can be directly imported into Excel spreadsheets, which is convenient and fast; after editing is completed, send the designed content to line number machine 1 for printing. After the printer receives the data, it prints according to the pre-set printing parameters.
[0058] 3. Print via USB flash drive. Save the edited data on the computer to the USB flash drive. Insert the USB flash drive into the USB interface on the line number machine 1 to read the print data. The line number machine 1 automatically detects the compatibility and files of the device. The user selects the corresponding template on the operation panel 13 to print. At the same time, the user can also copy the template to the USB flash drive directly on the line number machine 1.
[0059] After the mode selection is completed, the printing function can be started and the wire tube 4 can be printed. The printed wire tube 4 can be exported from the pipe outlet 12 for subsequent use.
[0060] During the printing process of the wire number machine 1, the curved wire number embryo tube needs to be flattened before printing. However, the existing wire tube 4 is relatively hard and difficult to be flattened by the roller, so the wire tube 4 needs to be pre-processed.
[0061] To solve this problem, Figure 3-Figure 5 As shown, a heating mechanism 2 is provided at the pipe inlet of the line number machine 1, and the heating mechanism 2 includes a second connecting part 27 connected to the pipe inlet, and the end of the second connecting part 27 away from the line number machine 1 is connected to the heating box 21, and the end of the heating box 21 away from the second connecting part 27 is connected to the first connecting part 26, and the first connecting part 26 is threadedly connected to the limiting cylinder 28. It should be noted that a threaded part 281 is provided at the end of the limiting cylinder 28 close to the first connecting part 26, and an internal thread (not shown in the figure) is provided on the first connecting part 26, so that the limiting cylinder 28 can be installed on the first connecting part 26 through the threaded part 281, so that when the wire tube 4 enters the heating box 21 through the limiting cylinder 28, it can be heated, so that the wire tube 4 is softened for subsequent flattening printing, and a sealing ring 29 is provided at the other end of the limiting cylinder 28, and the inner diameter of the sealing ring 29 matches the outer diameter of the wire tube 4, so as to seal one end of the heating box 21;
[0062] In this embodiment, because the limiting cylinder 28 is detachable, different sizes of limiting cylinders 28 can be selected according to the diameter of the wire tube 4, thereby adapting to the printing of wire tubes 4 with different diameters;
[0063] The second connecting portion 27 is detachably mounted at the pipe inlet of the line marking machine 1, so that the heating mechanism 2 can be disassembled when not in use and placed separately from the line marking machine 1;
[0064] Continue to refer Figure 3-Figure 4 The upper end of the heating box 21 is connected to an air inlet cylinder 22, and a heating wire 23 is provided inside the air inlet cylinder 22. When the heating wire 23 is energized, the air flow entering the heating box 21 through the air inlet cylinder 22 can be heated, thereby softening the wire tube 4.
[0065] At the same time, a pump body 24 is fixedly installed on the side of the heating box 21. The input end of the pump body 24 is connected to the bottom of the heating box 21. When the pump body 24 is working, the air flow can pass through the air inlet cylinder 22 for heating, then enter the heating box 21, and then be discharged from the heating box 21. During the movement of the air flow, the heating box 21 can be filled to heat the wire tube 4 in all directions.
[0066] Furthermore, because the heating box 21 is non-sealedly connected to the wire number machine 1, the heat generated by the wire number machine 1 during operation can also enter the heating box 21. On the one hand, the wire number machine 1 can be heat-dissipated, and on the other hand, the heat emitted by the wire number machine 1 can also enter the wire number machine 1, thereby doubly heating the wire tube 4 to increase the heating effect of the wire tube 4.
[0067] Example 2:
[0068] During the heating process of the wire tube 4, impurities attached to the wire tube 4 are more easily separated from the wire tube 4 after heating, making the wire tube 4 more susceptible to the influence of the impurities during printing, thereby affecting the printing effect. Moreover, if the impurities fall off during printing, they will accumulate in the wire numbering machine 1, which may affect the performance of the wire numbering machine 1.
[0069] In order to solve the above problems, Figure 7-Figure 9 As shown, a cleaning mechanism 5 is provided inside the heating box 21 for scraping off impurities attached to the wire tube 4. The cleaning mechanism 5 includes a cleaning ring 51 sleeved on the outer ring of the wire tube 4. The cleaning ring 51 is a half-ring arrangement, so that two sets of cleaning rings 51 are combined into a full ring to wrap the wire tube 4.
[0070] At the same time, a first countersunk hole 511 is provided on the end surfaces of the cleaning rings 51 that are close to each other. A third spring 59 is fixedly installed in the first countersunk hole 511, so that the two sets of cleaning rings 51 are connected to each other through the third spring 59. Due to the action of the third spring 59, in the initial state, the two sets of cleaning rings 51 are close to each other and tightly attached to the bobbin 4. The two sets of cleaning rings 51 are suitable for separating from each other under the action of an external force.
[0071] Bosses 52 are provided on both sides of the cleaning ring 51. A vertical slide rail 56 is provided on one side of the boss 52 close to the first connecting portion 26. A slider 54 is slidably provided on the slide rail 56. A first spring 53 is fixedly installed on the slider 54 and the interior of the heating box 21. Therefore, in the initial state, the cleaning ring 51 is located on the wire tube 4 close to the first connecting portion 26 under the action of the first spring 53. For the convenience of explanation, the position of the cleaning ring 51 at this time is defined as the first position.
[0072] Continue to refer Figure 7-Figure 9, multiple groups of cleaning parts 55 are provided in the inner ring of the cleaning ring 51. The cleaning parts 55 are elastically arranged. Therefore, when the two groups of cleaning rings 51 are in close contact with the wire tube 4, the multiple groups of cleaning parts 55 are squeezed and in close contact with the wire tube 4, thereby increasing the friction between the cleaning rings 51 and the wire tube 4. At this time, if the wire tube 4 is pushed toward the printing position of the wire marking machine 1 under the action of external force, the cleaning ring 51 will be pushed forward synchronously with the wire tube 4;
[0073] When the cleaning rings 51 arrive at a position away from the first position along with the wire tube 4 (for ease of explanation, this position may be defined as the second position), the two sets of cleaning rings 51 separate from each other by a fixed distance (the reason for the separation will be described below), causing the cleaning portion 55 to return to its original position and contact the wire tube 4, while the inner ring of the cleaning ring 51 is separated from the wire tube 4. At this time, due to the reduction in friction and the restoring force of the first spring 53, the cleaning ring 51 returns from the second position to the first position. During the process of returning the cleaning ring 51, the cleaning portion 55 cleans the surface of the wire tube 4 to remove impurities attached to the surface of the wire tube 4.
[0074] Furthermore, due to the cooperation between the slide rail 56 and the slider 54 , the first spring 53 is always in a horizontal state during the process of stretching and resetting.
[0075] In order to achieve the separation of the two groups of cleaning rings 51 to a certain distance at the second position, as shown in FIG. Figures 9-11 As shown, a second countersunk hole 521 is provided on the outer side of the boss 52, a second spring 58 is fixedly mounted inside the second countersunk hole 521, and a contact ball 57 is fixedly mounted on the second spring 58, and the contact ball 57 can slide inside the second countersunk hole 521;
[0076] At the same time, two sets of guide slides 6 are symmetrically provided on the inner wall of the heating box 21. The guide slides 6 are suitable for cooperating with the contact balls 57 to limit the vertical positions of the two sets of cleaning rings 51, and make the two sets of cleaning rings 51 close to each other in the first position and move away from each other in the second position. Specifically:
[0077] like Figure 11 As shown, the guide slide 6 includes a horizontally arranged first slide 61, the left end of the first slide 61 corresponds to the first position, and in the initial state, the contact ball 57 is located at the left end of the first slide 61, so that when the cleaning ring 51 moves synchronously to the right with the wire tube 4, the contact ball 57 slides in the first slide 61;
[0078] At the same time, a second slide 62 is provided at the right end of the first slide 61, which is inclined upward. The bottom of the second slide 62 is lower than the bottom of the first slide 61, so that the contact ball 57 is suitable for entering the second slide 62 from the first slide 61, but cannot return to the first slide 61 from the second slide 62. When the contact ball 57 reaches the right end of the first slide 61 and enters the second slide 62, the two groups of cleaning rings 51 will separate from each other, and a first stationary point 63 is provided at the right end of the second slide 62. The first stationary point 63 is the separation point of the two groups of cleaning rings 51. When the cleaning ring 51 reaches the separation point, only the cleaning portion 55 is in contact with the wire tube 4, so that the friction force is reduced. Under the action of the first spring 53, the two groups of cleaning rings 51 tend to reset.
[0079] The end of the second slide 62 is connected to a third slide 64 inclined upward. The highest point of the third slide 64 is provided with a second stationary point 68, so that during the resetting process of the two groups of cleaning rings 51, they can continue to move away from each other, so as to further reduce the friction between the cleaning portion 55 and the wire tube 4, thereby making the resetting of the two groups of cleaning rings 51 smooth. The second stationary point 68 corresponds to the second position, so that when the contact ball 57 reaches the second position, the distance between the two groups of cleaning rings 51 reaches a fixed distance, so that the cleaning rings 51 can be reset and cleaned under the action of a smaller friction force.
[0080] In this embodiment, the third slide 64 can also be eliminated, so that the second slide 62 is directly connected to the fourth slide 65, and the second stationary point 68 coincides with the first stationary point 63, so that when the contact ball 57 slides from the starting section of the second slide 62 to the first stationary point 63 (or the second stationary point 68), the two groups of cleaning rings 51 can also be separated.
[0081] Continue to refer Figure 11 A horizontal fourth slide 65 is provided at the end of the third slide 64. The fourth slide 65 is provided so that the two sets of cleaning rings 51 always maintain a fixed distance during the resetting process, so as to better clean the wire tube 4;
[0082] A fifth slide 66 is provided at the end of the fourth slide 65, which is inclined downward. The end of the fifth slide 66 is connected to the first slide 61, and a slope 67 is provided on the fifth slide 66. The bottom surface of the slope 67 gradually rises near the first slide 61, and a step is formed at the connection between the fifth slide 66 and the first slide 61, so that the contact ball 57 is suitable for entering the first slide 61 from the fifth slide 66, but cannot enter the fifth slide 66 from the first slide 61.
[0083] Therefore, when the contact ball 57 enters the first slideway 61 from the fifth slideway 66, the two groups of cleaning rings 51 are close to each other and in close contact, so as to facilitate the next cleaning of the wire tube 4.
[0084] More preferably, the position where the pump body 24 is connected to the heating box 21 is at the bottom of the first position, so that when the two sets of cleaning rings 51 are cleaned and returned to the initial position, impurities will accumulate on the outer wall of the cleaning part 55 and the wire tube 4. At this time, due to the buffering of the fifth slide 66 and the effect of the airflow, the impurities are sucked into the connecting pipe between the pump body 24 and the heating box 21, thereby preventing impurities from accumulating in the heating box 21.
[0085] like Figure 5-Figure 6 In the embodiment, a tee 31 is provided on the communicating pipe between the pump body 24 and the heating box 21, and a filter (not shown in the figure) is provided at the position where the tee 31 communicates with the pump body 24 to prevent impurities from entering the pump body 24;
[0086] At the same time, a collecting component 3 is provided at the bottom of the tee 31, and the collecting component 3 includes a waste hopper 32 connected to the tee 31, and the waste hopper 32 is used to collect impurities, and a hopper cover 33 is provided at the bottom of the waste hopper 32, and the hopper cover 33 is used to close the waste hopper 32 to prevent the external cold air flow from being sucked in when the pump body 24 is working, and when the pump body 24 is closed, the hopper cover 33 is opened to clean the waste hopper 32.
[0087] The above description is merely a preferred embodiment of the present application and is not intended to limit the present application. Various modifications and variations are possible for those skilled in the art. Any modifications, equivalent substitutions, or improvements made within the spirit and principles of the present application shall be included within the scope of protection of the present application.
Claims
1. A microcomputer line number printer, characterized by: include: A wire marking machine (1), wherein both ends of the wire marking machine (1) are respectively provided with a pipe inlet and a pipe outlet (12) for the wire pipe to enter and exit; A heating mechanism (2), the heating mechanism (2) being arranged at the pipe inlet and used for heating the input wire pipe, the heating mechanism (2) having a heating box (21); A cleaning mechanism (5) is provided on the outer ring of the wire tube and is used to scrape off impurities on the surface of the wire tube. The cleaning mechanism (5) comprises: Two sets of cleaning rings (51) are sleeved on the outer ring of the line tube, and the inner rings of the cleaning rings (51) are provided with elastic cleaning parts (55); a third spring (59) mounted between the two sets of cleaning rings (51); a first spring (53) disposed between the cleaning ring (51) and the heating box (21); Contact balls (57) disposed on both sides of the cleaning ring (51); and A guide slideway (6) cooperates with the contact ball (57) and is used to limit the vertical position of the two groups of cleaning rings (51); The guide slide (6) includes a first slide (61) arranged horizontally, a second slide (62) inclined upward is arranged at the right end of the first slide (61), the bottom surface of the second slide (62) is lower than the bottom surface of the first slide (61), and a first stationary point (63) is arranged at the right end of the second slide (62); The end of the second slideway (62) is connected to a third slideway (64) inclined upward, and a second stationary point (68) is provided at the highest point of the third slideway (64); A horizontal fourth slide (65) is provided at the end of the third slide (64), a downwardly inclined fifth slide (66) is provided at the end of the fourth slide (65), the end of the fifth slide (66) is connected to the first slide (61), and a slope (67) is provided on the fifth slide (66), and the bottom surface of the slope (67) gradually rises along a position close to the first slide (61), and a step is formed at the connection between the fifth slide (66) and the first slide (61); The contact ball (57) is adapted to move in the guide slideway (6) to drive the two groups of cleaning rings (51) to fit tightly together at an initial position and to separate from each other when moving away from the initial position, and to clean the wire tube by relying on the cleaning portion (55).
2. A microcomputer line number printer according to claim 1, characterized in that: Bosses (52) are provided on both sides of the cleaning ring (51), a second countersunk hole (521) is provided on the outside of the bosses (52), a second spring (58) is fixedly installed inside the second countersunk hole (521), and the second spring (58) is fixedly installed with the contact ball (57).
3. A microcomputer line number printer according to claim 2, characterized in that: A vertical slide rail (56) is provided on one side of the boss (52), a slider (54) is slidably provided on the slide rail (56), and the slider (54) is fixedly mounted to the first spring (53).
4. A microcomputer line number printer according to claim 3, characterized in that: The heating mechanism (2) includes a second connecting portion (27) connected to the pipe inlet, the second connecting portion (27) is connected to the heating box (21) at one end away from the wire marking machine (1), the heating box (21) is connected to a first connecting portion (26) at one end away from the second connecting portion (27), and a limiting cylinder (28) is threadedly connected to the first connecting portion (26); A threaded portion (281) is provided at one end of the limiting cylinder (28) close to the first connecting portion (26), and an internal thread is provided on the first connecting portion (26).
5. A microcomputer line number printer according to claim 4, characterized in that: The other end of the limiting cylinder (28) is provided with a sealing ring (29).
6. A microcomputer line number printer according to claim 5, characterized in that: The upper end of the heating box (21) is connected to an air intake cylinder (22), and a heating wire (23) is provided inside the air intake cylinder (22); A pump body (24) is fixedly mounted on the side of the heating box (21), and an input end of the pump body (24) is communicated with the bottom of the heating box (21).
7. A microcomputer line number printer according to claim 6, characterized in that: A tee (31) is provided on the communication pipe between the pump body (24) and the heating box (21), and a filter is provided at the position where the tee (31) communicates with the pump body (24).
8. A microcomputer line number printer according to claim 7, characterized in that: A collecting assembly (3) is provided at the bottom of the tee (31), and the collecting assembly (3) comprises a waste hopper (32) connected to the tee (31), and a hopper cover (33) is provided at the bottom of the waste hopper (32).