Charging pile metal support cutting machine

By using positioning and heating components in the charging pile metal bracket cutting machine, and utilizing paraffin filling and inert gas heating technology, the deformation problem of the metal bracket during the cutting process was solved, achieving higher cutting accuracy and stability.

CN120885758AActive Publication Date: 2025-11-04江苏明茂新能源科技有限公司
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Patent Information

Application Number
CN202511414738.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-09-30
Publication Date
2025-11-04
Estimated Expiration
2045-09-30

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Abstract

The invention discloses a charging pile metal support cutting machine, and relates to the technical field of cutting machines, the charging pile metal support cutting machine comprises a saw frame, a cutting assembly is arranged on the top of the saw frame close to the edge of one side, and a positioning assembly is arranged on the top of the saw frame close to the edge of the other side. According to the charging pile metal support cutting machining machine, after a metal pipe is fixed through a positioning assembly, a first sealing block and a second sealing block are inserted into the metal pipe through a translation limiting mechanism, and the second sealing block and the first sealing block are arranged on the two sides of a saw blade body correspondingly; liquefied paraffin is conveyed to the position between the outer surface of the first sealing block and the outer surface of the second sealing block to fill the metal pipe, so that the effect of enhancing the rigidity of the metal pipe is achieved, stress on the metal pipe is more uniform, deformation caused by too large local stress is reduced, and the service life of the metal pipe is prolonged. The problem that in the prior art, a hollow metal pipe with the hollow-square-shaped cross section in a charging pile metal support is prone to slight deformation in the sawing machine cutting process is solved.
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Description

Technical Field

[0001] The present invention relates to the technical field of cutting machines, and particularly to a cutting machine for charging pile metal brackets. Background Art

[0002] The charging pile metal bracket is a metal structural member that supports and fixes the charging pile. It is the core basic component for the installation and deployment of the charging pile. It not only needs to bear the overall weight of the charging pile, but also needs to adapt to different installation scenarios, and at the same time provide anti-wind, anti-seismic and anti-corrosion protection capabilities to ensure the long-term stable operation of the charging pile. The cutting machine for charging pile metal brackets is a device used to cut the materials of the charging pile metal brackets. As a type of cutting machine, the sawing machine mainly cuts the charging pile metal brackets through the mechanical cutting movement of the saw blade. By the friction and cutting of the saw teeth and the metal bracket materials, the materials are cut off. The sawing machine is suitable for cutting the raw materials of metal brackets of various shapes and has certain advantages in cutting medium and thick plates and bars. The equipment cost is relatively low and the maintenance is also relatively convenient.

[0003] Currently, since most of the metal brackets of the charging piles are strip-shaped metal pipes with a cross-section in the shape of a square frame, during the cutting process of the charging pile metal brackets using a sawing machine, local high temperature will be generated during the high-speed cutting of the saw blade, causing the metal pipe in the cutting area of the bracket to expand due to heat. However, due to the fast heat dissipation of the thin-wall part of the square-frame metal pipe and the slow heat dissipation of the thick-wall part, the metal after expansion contracts inconsistently when cooling, thereby forming an internal stress difference inside the material, and finally showing slight deformation. Most of the existing sawing machines do not have the function of automatically correcting deformation. As a result, during the later use of the metal pipe as a charging pile metal bracket, the deformed part of the bracket becomes a weak point in force. The originally evenly distributed weight will concentrate on this part. After long-term use, cracks are likely to appear here due to fatigue stress, resulting in a reduction in the stability of the charging pile.

[0004] Therefore, we propose a cutting machine for charging pile metal brackets to solve the problems raised above. Summary of the Invention

[0005] The purpose of the present invention is to provide a cutting machine for charging pile metal brackets to solve the problem that the hollow metal pipe with a cross-section in the shape of a square frame in the charging pile metal bracket is prone to slight deformation during the cutting process using a sawing machine as described in the above background art.

[0006] In order to achieve the above object, the present application provides the following technical scheme: a charging pile metal support cutting processing machine, comprising a saw frame, a cutting assembly is arranged at the top of the saw frame near one side edge, a positioning assembly is arranged at the top of the saw frame near the other side edge, a protection assembly for supporting the metal support is arranged at the top of the saw frame, the protection assembly comprises a first sealing block and a second sealing block, four output pipes are fixedly embedded in the inner wall of the first sealing block, a tooth ring is movably embedded in the inner wall of the first sealing block near the center, the outer surface of the tooth ring is engagedly connected with four gears, a limiting rod is fixedly embedded in the inner wall of each of the four gears, a multi-stage electric telescopic rod is fixedly installed at one end of each of the four limiting rods, a positioning plug is arranged at one end of each of the four multi-stage electric telescopic rods, a heating assembly for heating solid wax is arranged on the outer surface of the saw frame, the heating assembly comprises a sealed tank, a heating wire is arranged in the interlayer of the sealed tank, and a high-temperature chamber for storing inert gas is fixedly connected to the outer surface of the sealed tank.

[0007] Preferably, the protection assembly further comprises a stepping motor, a connecting shaft is fixedly connected to the output end of the stepping motor, a positioning frame is fixedly sleeved on the outer surface of the connecting shaft near one end, a corrugated pipe is fixedly communicated with one end of each of the four output pipes, a jack rod is fixedly installed at one end of each of the four multi-stage electric telescopic rods, a clamping groove is formed in the outer surface of one side of the second sealing block near the four edges, an iron plate is fixedly embedded in the outer surface of one side of the second sealing block near the center, a pressure sensor is arranged on the other outer surface of the second sealing block near the center, and an electromagnet is arranged on the outer surface of the first sealing block near the center.

[0008] Preferably, the heating assembly further comprises a bidirectional pump, a drainage pipe is fixedly communicated with the input end of the bidirectional pump, a multi-way pipe is fixedly communicated with the output end of the bidirectional pump, a gas pipe is fixedly communicated with the top of the high-temperature chamber, and a one-way valve is arranged on the outer surface of the gas pipe.

[0009] Preferably, the outer surface of each of the four gears is rotationally connected with the inner wall of the first sealing block, the outer surface of the tooth ring is rotationally connected with the inner wall of the first sealing block, and the outer surface of the stepping motor is fixedly connected with the outer surface of the first sealing block through screws.

[0010] Preferably, the outer surface of the positioning frame is fixedly connected with the outer surface of the tooth ring, one end of each of the four corrugated pipes is fixedly communicated with one end of the multi-way pipe, one end of each of the four output pipes is fixedly penetrated to the outside of the first sealing block, and one end of each of the four limiting rods is movably penetrated to the outside of the first sealing block.

[0011] Preferably, one end of each of the four insertion rods is fixedly connected to the outer surface of the four positioning plugs, the four positioning plugs correspond to the four slots respectively, the top of the saw frame is coupled with a translation limiting mechanism, and the opposite outer surfaces of the first sealing block are coupled with the inner wall of the translation limiting mechanism.

[0012] Preferably, the bottom of the sealed container is fixedly connected to the outer surface of the saw frame via an auxiliary frame, the outer surface of the bidirectional pump is fixedly connected to the outer surface of the saw frame via an auxiliary frame, one end of the drainage pipe is fixedly inserted into the interior of the sealed container, and the bottom end of the air pipe is fixedly inserted into the interior of the multi-port pipe.

[0013] Preferably, the cutting assembly includes a moving mechanism, the outer surface of which is fixedly connected to the top of the saw frame by screws, a rotating mechanism is coupled to the outer surface of the moving mechanism, a protective cover is fixedly fitted on the outer surface of the rotating mechanism, and a drive motor is fixedly installed on the outer surface of the protective cover by screws.

[0014] Preferably, the output end of the drive motor is fixedly connected to a drive shaft, and the two ends of the drive shaft respectively extend through to the opposite sides of the protective cover. A saw blade body is fixedly sleeved on the outer surface of the drive shaft, and the saw blade body is disposed inside the protective cover.

[0015] Preferably, the positioning component includes a support frame, the bottom of which is fixedly connected to the top of the saw frame. A servo motor is fixedly mounted on the outer surface of the support frame by screws. A rotating shaft is fixedly connected to the output end of the servo motor. The two ends of the rotating shaft extend movably to opposite sides of the support frame. Two clamps are fixedly sleeved on the outer surface of the rotating shaft. A cylinder is provided on the outer surface of each of the two clamps. A positioning plate is fixedly mounted on one end of each of the two cylinders.

[0016] Compared with the prior art, the beneficial effects of the present invention are: 1. After the metal tube is fixed by the positioning component, the first sealing block and the second sealing block are inserted into the metal tube by the translation limiting mechanism. The second sealing block and the first sealing block are respectively set on both sides of the saw blade body. The liquefied paraffin is delivered to the outer surface between the first sealing block and the second sealing block to fill the metal tube, thereby enhancing the rigidity of the metal tube, making the metal tube more evenly stressed, and reducing the deformation caused by excessive local stress. This solves the problem that the hollow metal tube with a U-shaped cross section in the charging pile metal bracket is prone to slight deformation during the cutting process of the saw.

[0017] 2、When the parts of the metal support of the charging pile with a cross-section in the shape of a Chinese character need to be cut, the metal pipe is placed between the two strip-shaped rods in the translation limiting mechanism, the two positioning plates are driven to rotate to a position completely parallel to the top of the strip-shaped hollow metal pipe through the two clamps, the metal pipe is fixed on the top of the saw frame by starting the two cylinders, and the positioning of the metal pipe by the two positioning plates through the multiple elastic components keeps the metal pipe stable during the subsequent cutting process and also plays a protective role.

[0018] 3、When the metal pipe is filled, the saw blade body can be moved to the specified position, the driving rod drives the saw blade body to rotate and turn downward through the cooperation between the rotating mechanism and the driving motor, and the metal pipe is cut, and when the cutting is completed, the first sealing block and the second sealing block are inside the complete metal pipe through the cooperation between the electromagnet and the translation limiting mechanism, the solid paraffin is liquefied by conveying high-temperature gas in the solid paraffin, and the liquefied paraffin is recycled into the sealed tank, and the recycling of the paraffin is realized. BRIEF DESCRIPTION OF DRAWINGS

[0019] Figure 1 It is a front view of the charging pile metal support cutting machine of the application; Figure 2 It is a side view of the charging pile metal support cutting machine of the application; Figure 3 It is a cutting assembly part of the charging pile metal support cutting machine of the application; Figure 4 It is a positioning assembly part of the charging pile metal support cutting machine of the application; Figure 5 It is a heating assembly part of the charging pile metal support cutting machine of the application; Figure 6 It is a sealed tank part of the charging pile metal support cutting machine of the application; Figure 7 It is a protection assembly part of the charging pile metal support cutting machine of the application; Figure 8 It is a first sealing block part structure of the charging pile metal support cutting machine of the application.

[0020] In the figure: 1. Saw frame; 2. Cutting assembly; 201. Moving mechanism; 202. Rotating mechanism; 203. Protective cover; 204. Drive motor; 205. Drive shaft; 206. Saw blade body; 3. Positioning assembly; 301. Support frame; 302. Servo motor; 303. Rotating shaft; 304. Clamp; 305. Cylinder; 306. Positioning plate; 4. Translation limit mechanism; 5. Heating assembly; 501. Sealed tank; 502. Heating wire; 503. High-temperature chamber; 504. Two-way pump; 505. Drainage pipe; 506. Multi-port pipe; 507. Air pipe; 508. One-way valve; 6. Protective component; 601. First sealing block; 602. Gear; 603. Gear ring; 604. Stepper motor; 605. Connecting shaft; 606. Positioning frame; 607. Bellows; 608. Output pipe; 609. Limiting rod; 610. Multi-stage electric telescopic rod; 611. Insert rod; 612. Positioning plug; 613. Second sealing block; 614. Slot; 615. Iron plate; 616. Electromagnet; 617. Pressure sensor. Detailed Implementation

[0021] 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, and 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.

[0022] Please see Figures 1-4 The present invention provides a technical solution: a charging pile metal bracket cutting and processing machine, wherein the positioning component 3 includes a support frame 301, the bottom of the support frame 301 is fixedly connected to the top of the saw frame 1, a servo motor 302 is fixedly installed on the outer surface of the support frame 301 by screws, the output end of the servo motor 302 is fixedly connected to a rotating shaft 303, the two ends of the rotating shaft 303 respectively movably pass through to the opposite outside of the support frame 301, two clamps 304 are fixedly sleeved on the outer surface of the rotating shaft 303, and cylinders 305 are provided on the outer surface of the two clamps 304, and a positioning plate 306 is fixedly installed on one end of each of the two cylinders 305.

[0023] In this embodiment, when it is necessary to cut the components of the charging pile metal bracket with a U-shaped cross-section, the first step is to use methods such as... Figure 2The metal part is placed between the two bars in the translation limiting mechanism 4 in the shown manner, and the part to be cut is aligned with the saw blade body 206. After the position of the saw blade body 206 is fixed, the servo motor 302 is started to drive the rotating shaft 303 to rotate, and then drive the two clamps 304 to rotate, thereby driving the two positioning plates 306 to rotate. When the two positioning plates 306 are rotated to be completely parallel to the top of the hollow metal pipe, the servo motor 302 is closed, and the two air cylinders 305 are started to extend, thereby driving the two positioning plates 306 to move downward, thereby fixing the metal pipe at the top of the saw frame 1. As shown in the figure, the surface of the positioning plate 306 in contact with the metal pipe is provided with a plurality of elastic convex parts, which is to ensure stable clamping of the metal pipe, and because the metal pipe is a hollow structure with a thin wall, the elastic convex parts can disperse the clamping force by slight deformation, convert the concentrated pressure into multiple-point uniform flexible pressure, ensure sufficient clamping force, and avoid deformation of the metal pipe wall. By using two positioning plates 306 to position the metal pipe through a plurality of elastic parts, the metal pipe is kept stable during the subsequent cutting process and is also protected. Figure 4

[0024] As shown in the figure, the surface of the positioning plate 306 in contact with the metal pipe is provided with a plurality of elastic convex parts, which is to ensure stable clamping of the metal pipe, and because the metal pipe is a hollow structure with a thin wall, the elastic convex parts can disperse the clamping force by slight deformation, convert the concentrated pressure into multiple-point uniform flexible pressure, ensure sufficient clamping force, and avoid deformation of the metal pipe wall. By using two positioning plates 306 to position the metal pipe through a plurality of elastic parts, the metal pipe is kept stable during the subsequent cutting process and is also protected. Figures 1-2 and Figures 7-8 ​As shown, a charging pile metal support cutting processing machine, including saw frame 1, the top of saw frame 1 is close to the side edge and is provided with cutting assembly 2, the top of saw frame 1 is close to the other side edge and is provided with positioning assembly 3, the top of saw frame 1 is provided with protection assembly 6 for supporting metal support, protection assembly 6 includes first sealing block 601 and second sealing block 613, the inner wall of first sealing block 601 is fixedly embedded with four output pipes 608, the inner wall of first sealing block 601 is movably embedded with gear ring 603 near the center, the outer surface of gear ring 603 is engagedly connected with four gears 602, the inner wall of four gears 602 is fixedly embedded with limiting rods 609, one end of four limiting rods 609 is fixedly installed with multi-stage electric telescopic rod 610, one end of four multi-stage electric telescopic rods 610 is provided with positioning plug 612, the outer surface of saw frame 1 is provided with heating assembly 5 for heating solid wax, heating assembly 5 includes sealed tank 501, heating wire 502 is arranged at the interlayer of sealed tank 501, high-temperature chamber 503 for storing inert gas is fixedly connected to the outer surface of sealed tank 501, protection assembly 6 further includes stepping motor 604, the output end of stepping motor 604 is fixed with connecting shaft 605, the outer surface of connecting shaft 605 is fixedly sleeved with positioning frame 606 near one end, one end of four output pipes 608 is fixedly communicated with corrugated pipe 607, one end of four multi-stage electric telescopic rods 610 is fixedly installed with jack rod 611, the outer surface of one side of second sealing block 613 is close to four edges and is provided with clamping groove 614, the outer surface of one side of second sealing block 613 is fixedly embedded with iron plate 615 near the center, the other side of second sealing block 613 is provided with pressure sensor 617 near the center, the outer surface of first sealing block 601 is close to the center and is provided with electromagnet 616, the outer surface of four gears 602 is rotatably connected with the inner wall of first sealing block 601, the outer surface of gear ring 603 is rotatably connected with the inner wall of first sealing block 601, the outer surface of stepping motor 604 is fixedly connected with the outer surface of first sealing block 601 through screws, the outer surface of positioning frame 606 is fixedly connected with the outer surface of gear ring 603, one end of four corrugated pipes 607 is fixedly communicated with four ends of multi-way pipe 506 respectively, one end of four output pipes 608 is fixedly penetrated to the outside of first sealing block 601, one end of four limiting rods 609 is movably penetrated to the outside of first sealing block 601, one end of four jack rods 611 is fixedly connected with the outer surface of four positioning plugs 612 respectively, four positioning plugs 612 correspond to four clamping grooves 614 respectively, the top of saw frame 1 is coupled with translation limiting mechanism 4, the opposite outer surfaces of first sealing block 601 are coupled with the inner wall of translation limiting mechanism 4.

[0025] In the embodiment, after the metal pipe is fixed by the positioning assembly 3, the translation limiting mechanism 4 is started, wherein, as shown in the figure, Figure 2As shown, the translation limiting mechanism 4 is composed of two bar-shaped mounting rods, a lead screw, a limiting tube and a driving device, which aims to limit the metal pipe left and right and drive the movement of the protection assembly 6. The first sealing block 601 is driven forward by the translation limiting mechanism 4, thereby driving the four multi-stage electric telescopic rods 610 to move forward. During the movement of the first sealing block 601, the four bellows 607 are stretched by being pulled. The movement of the multi-stage electric telescopic rods 610 drives the second sealing block 613 at the front end to move forward and insert into the inside of the metal pipe. The outer diameters of the first sealing block 601 and the second sealing block 613 match the inner diameter of the metal pipe. When the outer surface of the first sealing block 601 is inserted into the inside of the metal pipe, the four multi-stage electric telescopic rods 610 are stretched, the jack rod 611 is driven to move forward, thereby driving the four positioning inserts 612 to move forward, and then driving the second sealing block 613 to move forward, until the second sealing block 613 and the first sealing block 601 are arranged on both sides of the saw blade body 206. At this time, the sealing of the cutting part of the metal pipe is completed.

[0026] As shown in Figures 1-2 and Figures 5-8 A charging pile metal support cutting machine, which comprises a saw frame 1, a cutting assembly 2 arranged on the top of the saw frame 1 near one side edge, a positioning assembly 3 arranged on the top of the saw frame 1 near the other side edge, a protection assembly 6 arranged on the top of the saw frame 1 for supporting the metal support, the protection assembly 6 comprising a first sealing block 601 and a second sealing block 613, four output pipes 608 fixedly embedded in the inner wall of the first sealing block 601, a tooth ring 603 movably embedded in the inner wall of the first sealing block 601 near the center, four gears 602 meshingly connected to the outer surface of the tooth ring 603, four limiting rods 609 fixedly embedded in the inner wall of each of the four gears 602, multi-stage electric telescopic rods 610 fixedly installed at one end of each of the four limiting rods 609, positioning inserts 612 arranged at one end of each of the four multi-stage electric telescopic rods 610, a heating assembly 5 arranged on the outer surface of the saw frame 1 for heating solid wax, the heating assembly 5 comprising a sealed tank 501, heating wires 502 arranged in the interlayer of the sealed tank 501, and a high-temperature chamber 503 fixedly connected to the outer surface of the sealed tank 501 for storing inert gas.

[0027] In this embodiment, when the metal pipe cutting part sealing is completed, the heating wire 502 can be electrically connected with the external power supply to release heat outward. The heating wire 502 is a mature technology and will not be described here. After the paraffin liquid in the sealing tank 501 is heated and liquefied, the paraffin is a mixture of various alkanes, and the melting point is between 50-70℃. Below 50℃, the paraffin will gradually harden. After the paraffin is liquefied, the bidirectional pump 504 is started to drive the drainage pipe 505 to extract the liquid paraffin from the inside of the sealing tank 501, so that the paraffin enters the inside of the four corrugated pipes 607 through the multi-way pipe 506, and then flows into the inside of the output pipe 608, and finally is introduced between the outer surfaces of the first sealing block 601 and the second sealing block 613 to fill the metal pipe. Until the pressure sensor 617 detects that the liquid paraffin has completely filled the inner wall of the metal pipe, the working principle of the pressure sensor 617 is a mature technology and will not be described here. Due to the physical properties of paraffin and the high heat conduction capacity of the metal pipe, a closed loop of spontaneous heat dissipation and phase change solidification is formed, which can quickly conduct the heat of the paraffin to the environment to achieve rapid solidification of the paraffin. In addition, the stepping motor 604 can be started during the solidification of the paraffin to drive the connecting shaft 605 to rotate, thereby driving the positioning frame 606 to rotate, so that the gear ring 603 rotates to drive the four gears 602 to rotate, thereby driving the four limiting rods 609 to rotate, and finally driving the four positioning inserts 612 to rotate, until the four positioning inserts 612 are respectively rotated to positions corresponding to the maximum diameters of the four clamping grooves 614. The maximum diameter position of the clamping groove 614 matches the maximum outer diameter of the positioning insert 612. Then the four multi-stage electric telescopic rods 610 can be started again to shorten the length, thereby driving the four jack rods 611 to move in the direction of the first sealing block 601, so that the four positioning inserts 612 are respectively moved out of the inside of the four clamping grooves 614 and moved back to positions away from the saw blade body 206, that is, the filling of the inside of the metal pipe cutting position is realized. During the cutting of the metal pipe by the sawing machine, the saw blade body 206 contacts the metal pipe to generate a cutting force. If the hollow part of the metal pipe is not rigid enough, especially the thin-walled metal pipe, it is easy to deform under the action of the cutting force. The filling of the solidified paraffin can enhance the rigidity of the metal pipe. The solidified paraffin is tightly attached to the inner wall of the metal pipe to form a whole. During the cutting process, the filling material can share part of the cutting force, so that the metal pipe is more evenly stressed, the deformation caused by excessive local stress is reduced, and the problem of slight deformation of the hollow metal pipe with a cross-section in the shape of a Chinese character in the existing technology during the cutting process by the sawing machine is solved.

[0028] As Figures 1-8As shown, a charging pile metal support cutting processing machine, including saw frame 1, the top of saw frame 1 is close to one side edge set cutting assembly 2, the top of saw frame 1 is close to the other side edge set positioning assembly 3, the top of saw frame 1 is set for supporting the metal support protection assembly 6, protection assembly 6 includes first sealing block 601 and second sealing block 613, the inner wall of first sealing block 601 is fixedly embedded with four output pipes 608, the inner wall of first sealing block 601 is movably embedded with a tooth ring 603 near the center, the outer surface of tooth ring 603 is engagedly connected with four gears 602, the inner wall of four gears 602 is fixedly embedded with a limiting rod 609, one end of four limiting rods 609 is fixedly installed with a multi-stage electric telescopic rod 610, one end of four multi-stage electric telescopic rods 610 is provided with a positioning plug-in 612, the outer surface of saw frame 1 is provided with a heating assembly 5 for heating solid wax, heating assembly 5 includes a sealed tank 501, the interlayer of sealed tank 501 is provided with a heating wire 502, the outer surface of sealed tank 501 is fixedly connected with a high temperature chamber 503 for storing inert gas, cutting assembly 2 includes a moving mechanism 201, the outer surface of moving mechanism 201 is fixedly connected with the top of saw frame 1 through screws, the outer surface of moving mechanism 201 is coupled with a rotating mechanism 202, the outer surface of rotating mechanism 202 is fixedly sleeved with a protective cover 203, the outer surface of protective cover 203 is fixedly installed with a driving motor 204 through screws, the output end of driving motor 204 is fixedly connected with a driving shaft 205, both ends of driving shaft 205 are movably penetrated to the opposite outer parts of protective cover 203, the outer surface of driving shaft 205 is fixedly sleeved with a saw blade body 206, the saw blade body 206 is arranged in the interior of protective cover 203.

[0029] In this embodiment, when the metal pipe inner wall is filled, first, the saw blade body 206 is moved to the specified position through the moving mechanism 201, wherein, for example, Figure 1As shown, the moving mechanism 201 consists of a threaded rod, a driving device, and a limiting structure. This is a mature existing technology and will not be described in detail here. Then, through the cooperation between the rotating mechanism 202 and the driving motor 204, the driving rod saw blade body 206 rotates and moves downwards to cut the metal tube. After cutting, the electromagnet 616 is electrically connected to an external power source to generate a magnetic field that attracts the iron plate 615. Since solid paraffin does not possess magnetic shielding capabilities, it cannot prevent the magnetic field generated by the electromagnet 616 from passing through itself. Therefore, even with solid paraffin separating the electromagnet 616 and the iron plate 615, they can still generate attraction normally. Simultaneously, the translation limiting mechanism 4 is activated again, causing the first sealing block 601 and the second sealing block 613 to continue moving forward, so that the first sealing block 601 and the second sealing block 613 are inside the complete metal tube, thus allowing the solid paraffin to continue to be stored in the sealed space. Since the heating wire 502 heats both the sealed container 501 and the inert argon gas in the high-temperature chamber 503, at this time… Then, the one-way valve 508 can be opened, allowing the hot gas in the high-temperature chamber 503 to enter the interior of the multi-port pipe 506 through the gas pipe 507. Finally, it enters the space between the first sealing block 601 and the second sealing block 613 through the four output pipes 608, heating and liquefying the solidified paraffin. At the same time, the bidirectional pump 504 is restarted to draw liquid between the first sealing block 601 and the second sealing block 613, allowing the liquid paraffin to enter the interior of the multi-port pipe 506 through the four output pipes 608, and finally flow back through the drainage pipe 505 to... The internal components of the sealed tank 501 are recycled. When there is no more paraffin between the first sealing block 601 and the second sealing block 613, the bidirectional pump 504 can be turned off and the servo motor 302 can be started in reverse, so that both positioning plates 306 are rotated to a position away from the metal tube, thus realizing the recycling of paraffin. The bidirectional pump 504 is a pump that can deliver liquid in both directions and has forward and reverse functions. By changing the rotation direction of the drive shaft 205, the bidirectional flow of liquid can be realized, that is, the position of the suction port and the discharge port can be changed according to the needs.

[0030] The usage and working principle of this device: When it is necessary to cut components of a charging pile metal bracket with a U-shaped cross-section, firstly by... Figure 2The metal part is placed between the two bars in the translation limiting mechanism 4 in the shown manner, and the part to be cut is aligned with the saw blade body 206. After the position of the saw blade body 206 is fixed, the servo motor 302 is started to drive the rotating shaft 303 to rotate, thereby driving the two clamps 304 to rotate, and thereby driving the two positioning plates 306 to rotate. When the two positioning plates 306 are rotated to be completely parallel to the top of the hollow metal pipe, the servo motor 302 is turned off, and the two air cylinders 305 are started to extend, thereby driving the two positioning plates 306 to move downward, thereby fixing the metal pipe at the top of the saw frame 1. Then the translation limiting mechanism 4 is started to drive the first sealing block 601 to move forward, thereby driving the four multi-stage electric telescopic rods 610 to move forward. During the movement of the first sealing block 601, the four bellows 607 are stretched by being pulled, and the movement of the multi-stage electric telescopic rods 610 drives the second sealing block 613 arranged at the front end to move forward and insert into the inside of the metal pipe. The outer diameters of the first sealing block 601 and the second sealing block 613 match the inner diameter of the metal pipe. When the outer surface of the first sealing block 601 is inserted into the inside of the metal pipe, the four multi-stage electric telescopic rods 610 are started to extend, driving the jack rod 611 to move forward, thereby driving the four positioning inserts 612 to move forward, thereby driving the second sealing block 613 to move forward, until the second sealing block 613 and the first sealing block 601 are arranged on the two sides of the saw blade body 206. At this time, the sealing of the part to be cut of the metal pipe is completed. After the sealing of the cut part of the metal pipe is completed, the heating wire 502 is electrically connected with the external power supply to release heat outward. After the paraffin in the sealing tank 501 is heated and liquefied by the heating wire 502, the bidirectional pump 504 is started to drive the drainage pipe 505 to extract the liquid paraffin from the inside of the sealing tank 501, so that the paraffin enters the inside of the four bellows 607 through the multi-way pipe 506, and then flows into the inside of the output pipe 608, and finally enters between the outer surfaces of the first sealing block 601 and the second sealing block 613 to fill the inside of the metal pipe. Until the liquid paraffin completely fills the inner wall of the metal pipe at this section is detected by the pressure sensor 617. Due to the physical properties of the paraffin and the high heat conduction capacity of the metal pipe, a closed loop of spontaneous heat dissipation and phase change solidification is formed, which can quickly conduct the heat of the paraffin to the environment to realize the rapid solidification of the paraffin. In addition, the stepper motor 604 is started to drive the connecting shaft 605 to rotate, thereby driving the positioning frame 606 to rotate, thereby driving the gear ring 603 to rotate, thereby driving the four gears 602 to rotate, thereby driving the four limiting rods 609 to rotate, and finally driving the four positioning inserts 612 to rotate, until the four positioning inserts 612 are rotated to positions corresponding to the maximum diameters of the four clamping grooves 614. Then the four multi-stage electric telescopic rods 610 are started again to shorten,Thus drive four jack plug rod 611 to the direction of the first sealing block 601 respectively move, thus four positioning plug 612 respectively remove four card slot 614 inside, and move back to the position away from the saw blade body 206, realize the filling of the metal pipe cutting position inside, when the metal pipe inner wall filling is completed, first through the moving mechanism 201 the saw blade body 206 is moved to the specified position, then it can be through the cooperation between rotating mechanism 202 and drive motor 204, drive rod saw blade body 206 rotates and turns down, cut the metal pipe, when cutting is completed, the electromagnet 616 is electrically connected with external power supply, makes it produce magnetic field, adsorbs iron plate 615, at the same time, start the translation limiting mechanism 4 again, drive the first sealing block 601 and the second sealing block 613 continue to move forward, make the first sealing block 601 and the second sealing block 613 in the complete metal pipe, so that solid paraffin continues to be stored in the sealed space, since the heating wire 502 heats the inert gas argon in the high-temperature chamber 503 while heating the sealed tank 501, at this time, the one-way valve 508 can be opened, the hot gas in the high-temperature chamber 503 passes through the air pipe 507 and enters the inside of the multi-way pipe 506, finally through four output pipes 608 enters the inside between the first sealing block 601 and the second sealing block 613, heats and liquefies the solidified paraffin, at the same time, start the bidirectional pump 504 again, make it extract liquid between the first sealing block 601 and the second sealing block 613, make the liquid paraffin enter the inside of the multi-way pipe 506 through four output pipes 608, finally backflow to the inside of the sealed tank 501 through the drainage pipe 505 and be recycled, when there is no paraffin between the first sealing block 601 and the second sealing block 613, bidirectional pump 504 can be closed, reverse start servo motor 302, make two positioning plates 306 all rotate to the position away from the metal pipe, that is, the paraffin recycling is completed.

[0031] The wiring diagram of the moving mechanism 201, the rotating mechanism 202, the drive motor 204, the servo motor 302, the air cylinder 305, the heating wire 502, the bidirectional pump 504, the one-way valve 508, the stepping motor 604, the multi-stage electric telescopic rod 610, the electromagnet 616 and the pressure sensor 617 in the application belong to the common knowledge in the field, and the working principle is a known technology, and the model is selected according to actual use, so the control mode and wiring arrangement of the moving mechanism 201, the rotating mechanism 202, the drive motor 204, the servo motor 302, the air cylinder 305, the heating wire 502, the bidirectional pump 504, the one-way valve 508, the stepping motor 604, the multi-stage electric telescopic rod 610, the electromagnet 616 and the pressure sensor 617 will not be explained in detail.

[0032] Although the present application has been described in detail with reference to the foregoing embodiments, the technical solutions recorded in the foregoing embodiments can be modified, or some of the technical features can be replaced by equivalent features, by those skilled in the art, any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.

Claims

1. A metal bracket cutting and processing machine for charging piles, comprising a saw frame (1), wherein a cutting component (2) is disposed on the top of the saw frame (1) near one side edge, and a positioning component (3) is disposed on the top of the saw frame (1) near the other side edge, characterized in that: The top of the saw frame (1) is provided with a protective component (6) for supporting the metal bracket. The protective component (6) includes a first sealing block (601) and a second sealing block (613). The inner wall of the first sealing block (601) is fixedly embedded with four output pipes (608). The inner wall of the first sealing block (601) is movably embedded with a toothed ring (603) near the center. The outer surface of the toothed ring (603) is meshed with four gears (602). The inner walls of the four gears (602) are fixedly embedded with limiting rods (609). One end of each of the four limiting rods (609) is fixedly installed with a multi-stage electric telescopic rod (610). One end of each of the four multi-stage electric telescopic rods (610) is provided with a positioning plug (612). The outer surface of the saw frame (1) is provided with a heating component (5) for heating solid wax. The heating component (5) includes a sealed canister (501). A heating wire (502) is provided in the interlayer of the sealed canister (501). A high-temperature chamber (503) for storing inert gas is fixedly connected to the outer surface of the sealed canister (501).

2. The charging pile metal bracket cutting and processing machine according to claim 1, characterized in that: The protective component (6) also includes a stepper motor (604), the output end of which is fixed with a connecting shaft (605). A positioning frame (606) is fixedly fitted on the outer surface of the connecting shaft (605) near one end. One end of each of the four output tubes (608) is fixedly connected with a corrugated pipe (607). One end of each of the four multi-stage electric telescopic rods (610) is fixedly installed with a plug rod (611). A slot (614) is opened on one side of the outer surface of the second sealing block (613) near the four edges. An iron plate (615) is fixedly embedded on one side of the outer surface of the second sealing block (613) near the center. A pressure sensor (617) is set on the other side of the outer surface of the second sealing block (613) near the center. An electromagnet (616) is set on the outer surface of the first sealing block (601) near the center.

3. The charging pile metal bracket cutting and processing machine according to claim 2, characterized in that: The heating assembly (5) also includes a bidirectional pump (504), the input end of which is fixedly connected to a drainage pipe (505), the output end of which is fixedly connected to a multi-port pipe (506), the top of the high-temperature chamber (503) is fixedly connected to a gas pipe (507), and a one-way valve (508) is provided on the outer surface of the gas pipe (507).

4. The charging pile metal bracket cutting and processing machine according to claim 3, characterized in that: The outer surfaces of the four gears (602) are rotatably connected to the inner wall of the first sealing block (601), the outer surface of the gear ring (603) is rotatably connected to the inner wall of the first sealing block (601), and the outer surface of the stepper motor (604) is fixedly connected to the outer surface of the first sealing block (601) by screws.

5. The charging pile metal bracket cutting and processing machine according to claim 4, characterized in that: The outer surface of the positioning frame (606) is fixedly connected to the outer surface of the toothed ring (603), one end of each of the four bellows (607) is fixedly connected to the four ends of the multi-port pipe (506), one end of each of the four output pipes (608) is fixedly extended to the outside of the first sealing block (601), and one end of each of the four limiting rods (609) is movably extended to the outside of the first sealing block (601).

6. The charging pile metal bracket cutting and processing machine according to claim 5, characterized in that: One end of each of the four insertion rods (611) is fixedly connected to the outer surface of the four positioning plugs (612), and the four positioning plugs (612) correspond to the four slots (614). The top of the saw frame (1) is coupled to a translation limiting mechanism (4), and the opposite outer surfaces of the first sealing block (601) are coupled to the inner wall of the translation limiting mechanism (4).

7. The charging pile metal bracket cutting and processing machine according to claim 6, characterized in that: The bottom of the sealed tank (501) is fixedly connected to the outer surface of the saw frame (1) through an auxiliary frame. The outer surface of the bidirectional pump (504) is fixedly connected to the outer surface of the saw frame (1) through an auxiliary frame. One end of the drainage pipe (505) is fixedly inserted into the interior of the sealed tank (501). The bottom end of the air pipe (507) is fixedly inserted into the interior of the multi-port pipe (506).

8. The charging pile metal bracket cutting and processing machine according to claim 7, characterized in that: The cutting assembly (2) includes a moving mechanism (201), the outer surface of which is fixedly connected to the top of the saw frame (1) by screws, and a rotating mechanism (202) is coupled to the outer surface of the moving mechanism (201). A protective cover (203) is fixedly fitted on the outer surface of the rotating mechanism (202), and a drive motor (204) is fixedly installed on the outer surface of the protective cover (203) by screws.

9. The charging pile metal bracket cutting and processing machine according to claim 8, characterized in that: The output end of the drive motor (204) is fixedly connected to the drive shaft (205). The two ends of the drive shaft (205) respectively extend through to the opposite sides of the protective cover (203). The outer surface of the drive shaft (205) is fixedly fitted with a saw blade body (206), and the saw blade body (206) is located inside the protective cover (203).

10. The charging pile metal bracket cutting and processing machine according to claim 9, characterized in that: The positioning component (3) includes a support frame (301), the bottom of which is fixedly connected to the top of the saw frame (1). A servo motor (302) is fixedly installed on the outer surface of the support frame (301) by screws. A rotating shaft (303) is fixedly connected to the output end of the servo motor (302). The two ends of the rotating shaft (303) respectively extend through to the opposite sides of the support frame (301). Two clamps (304) are fixedly sleeved on the outer surface of the rotating shaft (303). A cylinder (305) is provided on the outer surface of both clamps (304). A positioning plate (306) is fixedly installed on one end of each of the two cylinders (305).

Citation Information

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