Auxiliary monitoring type animal husbandry metal handrail cutting machine
By combining support components, monitoring components, and cutting components, the problem of existing railing cutting machines being unable to support and detect dents is solved, achieving high precision and efficiency in railing cutting, and enhancing noise monitoring and cleaning effects.
Patent Information
- Application Number
- CN202512025721.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-12-30
- Publication Date
- 2026-02-03
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
Existing livestock metal fence cutting machines cannot provide internal support for the fence during the cutting process, nor can they determine whether there are dents inside the fence, resulting in poor cutting results.
An auxiliary monitoring type livestock metal fence cutting machine is used. Through the combined use of support components, monitoring components and cutting components, the machine can support the fence and detect internal dents. It also monitors cutting errors using a noise sensor and cleans and protects the inner wall using a ring plate and pressure sensor.
It improves the precision and efficiency of railing cutting, avoids dents and oxidation problems, enhances noise monitoring, and ensures the stability and precision of the cutting process.
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Figure CN121447480A_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the field of metal fence cutting technology, and specifically relates to an auxiliary monitoring type livestock metal fence cutting machine. Background Technology
[0002] Livestock metal fence cutting machines are used for the manufacture and processing of metal fences in livestock farms. Their main purpose is to improve the efficiency and precision of metal fence production. Livestock metal fence cutting machines are crucial for improving the efficiency of farm construction and maintenance.
[0003] A search revealed that Chinese Patent Publication No. CN222470873U, published on February 14, 2025, discloses a livestock metal fence cutting machine, including a workbench, a moving device, and a cutting machine body. This embodiment, by incorporating an air pump, connecting pipe, and extraction mechanism, allows the operator to activate the air pump to generate suction when the cutting machine body is cutting. This suction is then transmitted through the connecting pipe to the extraction mechanism, which extracts and cleans the metal shavings generated during cutting. This improves the convenience of cleaning metal shavings for the operator, ensures the operator's health, and solves the problem of large amounts of metal shavings and dust being generated when the cutting blade contacts the fence. Previously, this equipment lacked a cleaning structure for these metal shavings, making it easy for the operator to inhale them during processing, affecting their health. Furthermore, the lack of a cleaning structure meant that the operator still needed to clean the machine after processing, reducing work efficiency.
[0004] However, the device still has the following drawbacks: it cannot provide internal support for the railing during the cutting process, and it cannot technically determine whether there are any dents inside the railing, thus reducing the cutting effect of the metal railing. Summary of the Invention
[0005] To address the aforementioned problems, this invention provides an auxiliary monitoring type livestock metal fence cutting machine. It includes a workbench assembly, on which two sets of monitoring components are symmetrically mounted at the top edge. Each set of monitoring components has a set of auxiliary components mounted on it. A cutting component is mounted on one side wall of the workbench assembly.
[0006] The workbench assembly includes a workbench, and a cutting groove is provided at the top center of the workbench. Two sets of noise sensors for noise collection and cutting emergency stop adjustment are symmetrically installed in the cutting groove.
[0007] The cutting assembly includes a cutting wheel structure for cutting metal railings. The auxiliary assembly includes a mounting plate and an annular plate that moves inside the railing. A set of dust suppression sprayers is installed on one side wall of each set of annular plates. Two sets of tension springs for buffer protection are symmetrically installed at one end of one side wall edge of the mounting plate. The other end of each set of tension springs is installed on the annular plate. Two sets of pressure sensors for monitoring dents inside the railing are symmetrically installed on one side wall of each set of mounting plates.
[0008] Furthermore, two sets of support components are symmetrically installed on the workbench assembly, two sets of wrapping components are symmetrically installed on the top of the workbench assembly, and two sets of mounting cavities are symmetrically opened on the top of the workbench.
[0009] Furthermore, the support assembly includes a first electric push rod, each set of the first electric push rods is installed in one of the mounting cavities, and a set of support rings is installed on the output end of each set of the first electric push rods.
[0010] Furthermore, the packaging assembly includes a fixing plate, the bottom of each set of fixing plates is mounted on the top of the workbench, a set of sliding grooves is provided on the top of each set of fixing plates, a set of limiting rings is slidably connected in each set of sliding grooves, a set of filling bag structures is installed on the inner wall of each set of limiting rings, and a set of air pumps is installed on the outer wall of each set of limiting rings, with the output end of each set of air pumps connected to the input end of the filling bag structure.
[0011] Furthermore, the cutting assembly also includes a support frame, one end of which is mounted on a side wall of the worktable. A first electric slide is mounted on the side wall of the support frame. A second electric push rod is driven to the output end of the first electric slide. A first motor is mounted on the output end of the second electric push rod. The cutting wheel structure is driven to the output end of the first motor.
[0012] Furthermore, the monitoring component includes a second electric slide, the bottom of each set of second electric slides is mounted on the top of the workbench, a set of support plates is driven to the output end of each set of second electric slides, a set of third electric push rods is mounted on the top of each set of support plates, and a set of monitoring structures is mounted on the output end of each set of third electric push rods.
[0013] Furthermore, the auxiliary component also includes a fourth electric actuator. Each set of the fourth electric actuators is mounted on one side wall of the support plate. A second motor is mounted on the output end of each set of the fourth electric actuators. A transmission plate is driven to the output end of each set of the second motors. A transmission ring is mounted on the outer wall of each set of the transmission plate. Several sets of fifth electric actuators are mounted at equal intervals on the outer wall of each set of the transmission rings.
[0014] Furthermore, each set of mounting plates is installed on the output end of one set of fifth electric push rods, and two sets of sleeve pipes are symmetrically installed on one side wall of each set of mounting plates. A set of sliding tubes is slidably connected to the inner wall of each set of sleeve pipes, and the annular plate is connected between the two sets of sliding tubes.
[0015] Furthermore, a liquid storage tube is installed on the annular plate, and an extrusion head structure is connected to the output end of the liquid storage tube. Two sets of cavities are symmetrically opened on the outer wall of the annular plate. One end of two sets of compression springs is symmetrically installed on the bottom inner wall of each set of cavities. A scraper is connected between the other ends of the two sets of compression springs. Each set of scrapers is slidably connected in the cavity. A set of pushing tubes is installed on the side wall of each mounting plate near the annular plate. The outer wall of each set of pushing tubes is slidably connected to the inner wall of the liquid storage tube.
[0016] Furthermore, two sets of mounting blocks are symmetrically installed on the side wall of each mounting plate near the pressure sensor. A set of sixth electric push rods is installed on the side wall of each set of mounting blocks. A set of movable tubes is installed on the output end of each set of sixth electric push rods. A set of rotating wheels is rotatably connected to the outer wall of each set of movable tubes. A set of wear-resistant layers is sleeved on the outer wall of each set of rotating wheels.
[0017] The beneficial effects of this invention are:
[0018] 1. By compressing two sets of tension springs, the annular plates begin to compress the pressure sensors. Subsequently, the fourth electric push rod, in conjunction with the second motor, pushes several sets of annular plates to move inside the railing. During the movement, a scraper removes impurities and applies a cleaning solution to the inner wall. The compression springs provide cushioning and protection, and the passive support prevents the railing from denting during the cutting process. When faced with concave interiors, the values transmitted by the various pressure sensors differ, improving both the precision screening effect and the cutting efficiency of the railing.
[0019] 2. Activating the fifth electric push rod moves the annular plate closer to the inner wall of the railing, and then continuously squeezes, causing the push tube to squeeze the cleaning solution into the storage tube. This allows the cleaning solution to be applied to the inner wall of the railing through the extrusion head structure, improving the cleaning effect of the inner wall of the railing while avoiding the problem of oxidation of the railing during storage. Activating the sixth electric push rod pushes the rotating wheel to move below the railing cutting point. During normal cutting, one side of the cutting wheel structure will be in contact with one side of the rotating wheel. When the cutting is offset, the output end of the cutting wheel structure will act on the wear-resistant layer on the rotating wheel. The rotating wheel rotates in the same direction to buffer the impact, improving the accuracy of the cutting work.
[0020] 3. The first electric slide is activated to drive the cutting wheel structure for distance adjustment. Then, the second electric push rod is activated to drive the cutting wheel structure to descend and cut the railing. The angle of the cutting wheel structure can be adjusted by the first motor. During the cutting process in the cutting groove, the third electric push rod is activated to drive the monitoring structure for height adjustment and monitoring. When the cutting wheel structure cuts the wear-resistant layer on the rotating wheel, it will generate a lot of noise. Noise sensors can be used to collect noise and adjust the cutting emergency stop. The cutting error can be judged in time, which improves the auxiliary monitoring effect and the noise monitoring effect.
[0021] 4. Place the railing inside the two sets of limiting rings. During placement, the limiting rings can slide and adjust within the groove. Then, start the air pump to fill the filling bag structure, causing the filling bag structure to expand and wrap around and limit the railing. If the limiting rings are not adjusted, the first electric push rod can be activated to push the support ring to support and limit the outer wall of the railing, thereby assisting the limiting rings in limiting stability and improving the wrapping and limiting effect on the railing.
[0022] Other features and advantages of the invention will be set forth in the description which follows, and will be apparent in part from the description, or may be learned by practicing the invention. The objects and other advantages of the invention may be realized and obtained by means of the structures pointed out in the description, claims and drawings. Attached Figure Description
[0023] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0024] Figure 1 A schematic diagram of a railing cutting machine according to an embodiment of the present invention is shown;
[0025] Figure 2 A schematic diagram of the workbench assembly structure according to an embodiment of the present invention is shown;
[0026] Figure 3 A schematic diagram of the support component structure according to an embodiment of the present invention is shown;
[0027] Figure 4 A schematic diagram of the packaging component structure according to an embodiment of the present invention is shown;
[0028] Figure 5 A schematic diagram of the cutting component structure according to an embodiment of the present invention is shown;
[0029] Figure 6 A schematic diagram of the monitoring component structure according to an embodiment of the present invention is shown;
[0030] Figure 7 A schematic diagram of the auxiliary component structure according to an embodiment of the present invention is shown;
[0031] Figure 8 A schematic diagram of the mounting plate structure according to an embodiment of the present invention is shown;
[0032] Figure 9 A schematic diagram of the mounting block structure according to an embodiment of the present invention is shown.
[0033] In the diagram: 1. Workbench assembly; 101. Workbench; 102. Mounting cavity; 103. Cutting groove; 104. Noise sensor; 2. Support assembly; 201. First electric push rod; 202. Support ring; 3. Wrapping assembly; 301. Fixing plate; 302. Slide groove; 303. Limiting ring; 304. Filling bag structure; 305. Air pump; 4. Cutting assembly; 401. Support frame; 402. First electric slide; 403. Second electric push rod; 404. First motor; 405. Cutting wheel structure; 5. Monitoring assembly; 501. Second electric slide; 502. Support plate; 503. Third electric push rod; 50 4. Monitoring structure; 6. Auxiliary components; 601. Fourth electric push rod; 602. Second motor; 603. Transmission plate; 604. Transmission ring; 605. Fifth electric push rod; 606. Mounting plate; 607. Sleeve tube; 608. Sliding tube; 609. Annular plate; 610. Liquid storage tube; 611. Extrusion head structure; 612. Cavity; 613. Compression spring; 614. Scraper; 615. Push tube; 616. Dust suppression sprayer; 617. Tension spring; 618. Pressure sensor; 619. Mounting block; 620. Sixth electric push rod; 621. Movable tube; 622. Rotating wheel; 623. Wear-resistant layer. Detailed Implementation
[0034] To make the objectives, technical solutions, and advantages of the embodiments of the present invention clearer, the technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0035] This invention provides an auxiliary monitoring type metal fence cutting machine for livestock farming. It includes a workbench assembly 1, exemplarily, such as... Figure 1As shown, two sets of support components 2 are symmetrically installed on the workbench assembly 1, two sets of wrapping components 3 are symmetrically installed on the top of the workbench assembly 1, and two sets of monitoring components 5 are symmetrically installed on the top edge. Each set of monitoring components 5 is equipped with an auxiliary component 6, and a cutting component 4 is installed on one side wall of the workbench assembly 1.
[0036] For example, such as Figure 2 As shown, the workbench assembly 1 includes a workbench 101. Two sets of mounting cavities 102 are symmetrically opened on the top of the workbench 101. A cutting groove 103 is opened at the center of the top of the workbench 101. Two sets of noise sensors 104 are symmetrically installed in the cutting groove 103.
[0037] For example, such as Figure 3 As shown, the support assembly 2 includes a first electric push rod 201. Each set of the first electric push rods 201 is installed in one of the mounting cavities 102. Each set of the first electric push rods 201 has a support ring 202 installed on its output end.
[0038] For example, such as Figure 4 As shown, the packaging assembly 3 includes a fixing plate 301. The bottom of each set of fixing plates 301 is mounted on the top of the workbench 101. Each set of fixing plates 301 has a set of sliding grooves 302 on its top. Each set of sliding grooves 302 has a set of limiting rings 303 slidably connected in it. Each set of limiting rings 303 has a set of filling bag structures 304 installed on its inner wall. Each set of limiting rings 303 has a set of air pumps 305 installed on its outer wall. The output end of each set of air pumps 305 is connected to the input end of the filling bag structure 304.
[0039] Before cutting the railing, the railing is placed inside the two sets of limiting rings 303. During placement, the limiting rings 303 can slide and adjust within the sliding groove 302. Then, the air pump 305 is started to fill the filling bag structure 304, causing the filling bag structure 304 to expand and wrap around and limit the railing. If the limiting rings are not adjusted, the first electric push rod 201 can be started to push the support ring 202 to support and limit the outer wall of the railing, thereby assisting the limiting stability of the limiting rings 303 and improving the wrapping and limiting effect on the railing.
[0040] For example, such as Figure 5As shown, the cutting assembly 4 includes a support frame 401. One end of the support frame 401 is mounted on a side wall of the worktable 101. A first electric slide 402 is mounted on the side wall of the support frame 401. A second electric push rod 403 is drivenly connected to the output end of the first electric slide 402. A first motor 404 is mounted on the output end of the second electric push rod 403. A cutting wheel structure 405 is drivenly connected to the output end of the first motor 404.
[0041] The first electric slide 402 is activated to drive the cutting wheel structure 405 for distance adjustment. Then, the second electric push rod 403 is activated to drive the cutting wheel structure 405 to descend and cut the railing. The angle of the cutting wheel structure 405 can be adjusted by the first motor 404. During the cutting process in the cutting groove 103, the third electric push rod 503 is activated to drive the monitoring structure 504 for height adjustment and monitoring. When the cutting wheel structure 405 cuts the wear-resistant layer 623 on the rotating wheel 622, it will generate a lot of noise. The noise sensor 104 can collect the noise and adjust the cutting emergency stop. It can judge the cutting error in time, improve the auxiliary monitoring effect and the noise monitoring effect.
[0042] For example, such as Figure 6 As shown, the monitoring component 5 includes a second electric slide 501. The bottom of each set of second electric slides 501 is mounted on the top of the workbench 101. A set of support plates 502 are connected to the output end of each set of second electric slides 501. A set of third electric push rods 503 are mounted on the top of each set of support plates 502. A set of monitoring structures 504 are mounted on the output end of each set of third electric push rods 503.
[0043] For example, such as Figure 7 , Figure 8 and Figure 9As shown, the auxiliary component 6 includes a fourth electric actuator 601. Each set of fourth electric actuators 601 is mounted on one side wall of the support plate 502. A second motor 602 is mounted on the output end of each set of fourth electric actuators 601. A transmission plate 603 is drivenly connected to the output end of each set of second motors 602. A transmission ring 604 is mounted on the outer wall of each set of transmission plates 603. Several sets of fifth electric actuators 605 are equally spaced on the outer wall of each set of transmission rings 604. A set of fifth electric actuators 605 is mounted on the output end of each set of fifth electric actuators 605. There is a set of mounting plates 606. Two sets of sleeve pipes 607 are symmetrically mounted on one side wall of each set of mounting plates 606. A set of sliding tubes 608 is slidably connected to the inner wall of each set of sleeve pipes 607. An annular plate 609 connects the two sets of sliding tubes 608. A liquid storage tube 610 is mounted on the annular plate 609. An extrusion head structure 611 is connected to the output end of the liquid storage tube 610. Two sets of cavities 612 are symmetrically opened on the outer wall of the annular plate 609. One end of two sets of compression springs 613 is symmetrically mounted on the bottom inner wall of each set of cavities 612. The other ends of the compression springs 613 are connected to scrapers 614. Each set of scrapers 614 is slidably connected within the cavity 612. Each set of mounting plates 606 has a set of push tubes 615 installed on one side wall near the annular plate 609. The outer wall of each set of push tubes 615 is slidably connected to the inner wall of the liquid storage tube 610. Each set of annular plates 609 has a set of dust suppression sprayers 616 installed on one side wall. Two sets of tension springs 617 are symmetrically installed at one end on the edge of one side wall of the mounting plate 606. The other end of each set of tension springs 617 is installed on the annular plate 609. On the mounting plate 609, two sets of pressure sensors 618 are symmetrically installed on one side wall of each set of mounting plates 606. Two sets of mounting blocks 619 are symmetrically installed on the side wall of each set of mounting plates 606 near the pressure sensors 618. A set of sixth electric push rods 620 is installed on one side wall of each set of mounting blocks 619. A set of movable tubes 621 is installed on the output end of each set of sixth electric push rods 620. A set of rotating wheels 622 is rotatably connected to the outer wall of each set of movable tubes 621. A set of wear-resistant layers 623 is sleeved on the outer wall of each set of rotating wheels 622.
[0044] Before cutting the railing, the fifth electric push rod 605 is activated to move the mounting plate 606 closer to the transmission ring 604. Then, the fourth electric push rod 601 pushes the transmission ring 604 deeper into the railing. Next, the fifth electric push rod 605 moves the annular plate 609 closer to the inner wall of the railing. Continuous compression causes the push tube 615 to squeeze the cleaning solution into the storage tube 610, allowing the cleaning solution to be applied to the inner wall of the railing through the extrusion head structure 611. This improves the cleaning effect of the inner wall while preventing oxidation during storage. During the compression process, two sets of tension springs 617 are compressed, causing the annular plate 609 to begin compressing the pressure sensor 618. Subsequently, the fourth electric push rod 601, in conjunction with the second motor 602, moves several sets of annular plates 609 within the railing. During the movement, the scraper 614 removes impurities and applies cleaning solution to the inner wall, while the compression spring 613 provides cushioning and protection. Passive support prevents dents in the railing during cutting. When the railing is internally concave, the pressure sensors 618 transmit different values, improving the railing's precision screening. After moving to the designated position, the sixth electric push rod 620 pushes the rotating wheel 622 below the railing cutting point. During normal cutting, one side of the cutting wheel structure 405 contacts the other side of the rotating wheel 622. When cutting off, the output end of the cutting wheel structure 405 acts on the wear-resistant layer 623 on the rotating wheel 622, causing the rotating wheel 622 to rotate smoothly for cushioning, thus improving the cutting precision.
[0045] By compressing two sets of tension springs 617, the annular plate 609 begins to compress the pressure sensor 618. Subsequently, the fourth electric push rod 601, in conjunction with the second motor 602, pushes several sets of annular plates 609 to move inside the railing. During the movement, the scraper 614 removes impurities and applies cleaning solution to the inner wall. The compression spring 613 provides buffering and protection, and the passive support prevents the railing from denting during the cutting process. When the railing is concave inside, the values transmitted by the several sets of pressure sensors 618 are different, which improves the railing's precision screening effect and cutting effect.
[0046] The fifth electric push rod 605 is activated, driving the annular plate 609 to move closer to the inner wall of the railing. Continuous compression causes the push tube 615 to squeeze the cleaning solution into the storage tube 610, allowing the cleaning solution to be applied to the inner wall of the railing through the extrusion head structure 611. This improves the cleaning effect of the inner wall of the railing while preventing oxidation during storage. The sixth electric push rod 620 is activated, pushing the rotating wheel 622 to below the railing cutting point. During normal cutting, one side of the cutting wheel structure 405 will be in contact with one side of the rotating wheel 622. When the cutting deviates, the output end of the cutting wheel structure 405 will act on the wear-resistant layer 623 on the rotating wheel 622. The rotating wheel 622 rotates smoothly to buffer the movement, improving the accuracy of the cutting operation.
[0047] The first electric slide 402 is activated to drive the cutting wheel structure 405 for distance adjustment. Then, the second electric push rod 403 is activated to drive the cutting wheel structure 405 to descend and cut the railing. The angle of the cutting wheel structure 405 can be adjusted by the first motor 404. During the cutting process in the cutting groove 103, the third electric push rod 503 is activated to drive the monitoring structure 504 for height adjustment and monitoring. When the cutting wheel structure 405 cuts the wear-resistant layer 623 on the rotating wheel 622, it will generate a lot of noise. The noise sensor 104 can collect the noise and adjust the cutting emergency stop. It can judge the cutting error in time, improve the auxiliary monitoring effect and the noise monitoring effect.
[0048] The railing is placed within two sets of limiting rings 303. During placement, the limiting rings 303 can slide and adjust within the sliding groove 302. Then, the air pump 305 is activated to fill the filling bag structure 304, causing the filling bag structure 304 to expand and wrap around and limit the railing. If the limiting rings are not adjusted, the first electric push rod 201 can be activated to push the support ring 202 to support and limit the outer wall of the railing, thereby assisting the limiting stability of the limiting rings 303 and improving the wrapping and limiting effect on the railing.
[0049] Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features; and these modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of the present invention.
Claims
1. An auxiliary monitoring type livestock metal fence cutting machine, comprising a workbench assembly, characterized in that: Two sets of monitoring components are symmetrically installed on the top edge of the workbench assembly. Each set of monitoring components is equipped with a set of auxiliary components. A cutting component is installed on one side wall of the workbench assembly. The workbench assembly includes a workbench, and a cutting groove is provided at the top center of the workbench. Two sets of noise sensors for noise collection and cutting emergency stop adjustment are symmetrically installed in the cutting groove. The cutting assembly includes a cutting wheel structure for cutting metal railings. The auxiliary assembly includes a mounting plate and an annular plate that moves inside the railing. A set of dust suppression sprayers is installed on one side wall of each set of annular plates. Two sets of tension springs for buffer protection are symmetrically installed at one end of one side wall edge of the mounting plate. The other end of each set of tension springs is installed on the annular plate. Two sets of pressure sensors for monitoring dents inside the railing are symmetrically installed on one side wall of each set of mounting plates.
2. The auxiliary monitoring type livestock metal fence cutting machine according to claim 1, characterized in that: Two sets of support components are symmetrically installed on the workbench assembly, two sets of wrapping components are symmetrically installed on the top of the workbench assembly, and two sets of mounting cavities are symmetrically opened on the top of the workbench.
3. The auxiliary monitoring type livestock metal fence cutting machine according to claim 2, characterized in that: The support assembly includes a first electric push rod, each set of the first electric push rods is installed in one of the mounting cavities, and a set of support rings is installed on the output end of each set of the first electric push rods.
4. The auxiliary monitoring type livestock metal fence cutting machine according to claim 2, characterized in that: The packaging assembly includes a fixing plate. The bottom of each set of fixing plates is mounted on the top of the workbench. A set of sliding grooves is opened on the top of each set of fixing plates. A set of limiting rings is slidably connected in each set of sliding grooves. A set of filling bag structures is installed on the inner wall of each set of limiting rings. A set of air pumps is installed on the outer wall of each set of limiting rings. The output end of each set of air pumps is connected to the input end of the filling bag structure.
5. The auxiliary monitoring type livestock metal fence cutting machine according to claim 4, characterized in that: The cutting assembly also includes a support frame, one end of which is mounted on a side wall of the workbench. A first electric slide is mounted on the side wall of the support frame. A second electric push rod is driven to the output end of the first electric slide. A first motor is mounted on the output end of the second electric push rod. The cutting wheel structure is driven to the output end of the first motor.
6. The auxiliary monitoring type livestock metal fence cutting machine according to claim 5, characterized in that: The monitoring component includes a second electric slide, the bottom of each set of second electric slides is mounted on the top of the workbench, a set of support plates is driven to the output end of each set of second electric slides, a set of third electric push rods is mounted on the top of each set of support plates, and a set of monitoring structures is mounted on the output end of each set of third electric push rods.
7. The auxiliary monitoring type livestock metal fence cutting machine according to claim 6, characterized in that: The auxiliary components also include a fourth electric push rod. Each set of the fourth electric push rods is installed on one side wall of the support plate. Each set of the fourth electric push rods has a second motor installed at its output end. Each set of the second motors has a transmission plate connected to its output end. Each set of the transmission plate has a transmission ring installed on its outer wall. Each set of the transmission rings has several sets of fifth electric push rods installed at equal intervals on its outer wall.
8. The auxiliary monitoring type livestock metal fence cutting machine according to claim 1, characterized in that: Each set of mounting plates is installed on the output end of one of the fifth electric push rods. Two sets of sleeve pipes are symmetrically installed on one side wall of each set of mounting plates. A set of sliding tubes is slidably connected to the inner wall of each set of sleeve pipes. The annular plate is connected between the two sets of sliding tubes.
9. The auxiliary monitoring type livestock metal fence cutting machine according to claim 8, characterized in that: A liquid storage tube is installed on the annular plate, and an extrusion head structure is connected to the output end of the liquid storage tube. Two sets of cavities are symmetrically opened on the outer wall of the annular plate. One end of two sets of compression springs is symmetrically installed on the bottom inner wall of each set of cavities. A scraper is connected between the other ends of the two sets of compression springs. Each set of scrapers is slidably connected in the cavity. A set of pushing tubes is installed on the side wall of each mounting plate near the annular plate. The outer wall of each set of pushing tubes is slidably connected to the inner wall of the liquid storage tube.
10. The auxiliary monitoring type livestock metal fence cutting machine according to claim 9, characterized in that: Two sets of mounting blocks are symmetrically installed on the side wall of each mounting plate near the pressure sensor. A set of sixth electric push rods is installed on the side wall of each set of mounting blocks. A set of movable tubes is installed on the output end of each set of sixth electric push rods. A set of rotating wheels is rotatably connected to the outer wall of each set of movable tubes. A set of wear-resistant layers is sleeved on the outer wall of each set of rotating wheels.
Citation Information
Patent Citations
Metal handrail cutting machine for animal husbandry
CN222470873U