Novel intelligent welding rod heat preservation barrel
The problem of insufficient adaptability of welding rod channels is solved through the adjustment device and correction assembly, the smooth conveying and correction of welding rods is achieved, and the welding efficiency is improved.
Patent Information
- Application Number
- CN202510730587.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-03
- Publication Date
- 2025-07-11
AI Technical Summary
The existing welding rod insulation barrels cannot adjust the size of the welding rod channel according to the size of the welding rod, resulting in the welding rod blockage or the bending welding rod cannot pass smoothly, affecting the welding work efficiency.
Adjustment devices and correction components are designed, including moving baffles, guide plates, correction plates and pushing devices. The size of the welding rod channel is adjusted through electric drives and the curved welding rods are corrected to ensure the smooth delivery of the welding rods.
It realizes automatic adjustment of the channel size according to the size of the electrode, prevents blockage and corrects the curved electrode, and improves the smoothness of welding rod acquisition and welding efficiency.
Smart Images

Figure CN120288366A_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of electrode heat preservation barrels, and particularly relates to a new type of intelligent electrode heat preservation barrel. Background Art
[0002] An intelligent electrode heat preservation barrel is a tool for storing and heating electrodes, especially suitable for being powered by the secondary voltage of an arc welding machine and having a temperature control function. The main functions of the intelligent electrode heat preservation barrel include drying and heat preservation. It mainly includes a heat preservation barrel body, a cover body, a heating device, a wireless charging coil, a storage battery, an insulating isolation board, a gravity sensing device, a temperature controller and a wireless transmitting device. It can dry the welding electrodes before welding, reducing welding problems caused by damp electrode coatings. In addition, the heat preservation barrel can also maintain a constant temperature of the electrodes, ensuring the stability and quality of the welding process. The intelligent electrode heat preservation barrel is usually connected to the secondary voltage terminal of the welding machine. By intelligently controlling the temperature, the maximum working temperature can reach 500 °C, and the temperature uniformity is controlled within ±10 °C. This design enables the electrodes to maintain the best working state during construction, improving the welding efficiency and quality.
[0003] In the prior art, the structure of the electrode heat preservation barrel enables the welder not to open the lid of the electrode heat preservation barrel during use. The electrode can be automatically sent out through the electrode channel by an electric control device, making it more convenient to take the electrode and improving production efficiency.
[0004] However, during its use, it cannot adjust the size of the electrode channel according to the size of the electrodes. Different heat preservation barrels are required to store electrodes of different sizes respectively, and the applicability is not high. At the same time, when some electrodes are slightly bent due to external force extrusion during storage, when they enter the electrode channel, they cannot pass smoothly, thus affecting the entire process of taking out the electrodes, resulting in inconvenient use and delaying the welding work. Summary of the Invention
[0005] In view of the problems in the prior art, the present invention proposes the following technical solutions: a new type of intelligent electrode heat preservation barrel, including:
[0006] A heat preservation barrel body, connected to a base for installing the heat preservation barrel body;
[0007] A pushing device, arranged inside the base for pushing the electrodes to move out of the heat preservation barrel body;
[0008] An electrode channel, opened on the heat preservation barrel body and the base;
[0009] An adjusting device, arranged inside the electrode channel for adjusting the size of the electrode channel;
[0010] The adjusting device includes:
[0011] A moving baffle, arranged inside the electrode channel;
[0012] A first driving member, connected to one side of the movable baffle, for pushing the movable baffle to move;
[0013] Two second driving members, arranged inside the base;
[0014] A guide plate, connected to one side of the second driving member, for guiding the welding rod.
[0015] As a preference of the above technical solution, the welding rod channel includes:
[0016] A channel inlet, opened at the bottom of the heat preservation barrel body;
[0017] A groove, opened inside the base, the channel inlet is communicated with the groove, for conveying the welding rod.
[0018] As a preference of the above technical solution, movable slots are opened on both sides of the bottom of the heat preservation barrel body, the first driving member is connected inside the movable slot, the movable baffle is located inside the channel inlet, and the guide plate includes:
[0019] A movable plate, movably arranged inside the channel inlet;
[0020] An arc-shaped plate, connected to the movable plate, the arc-shaped plate is located inside the groove, and both the movable plate and the arc-shaped plate are located at the bottom of the movable baffle.
[0021] As a preference of the above technical solution, the adjusting device further includes two correction components, the two correction components are symmetrically arranged with the center of the base as the center, and the correction component includes:
[0022] A moving block, connected to the second driving member, the moving block is located on one side of the movable plate and the arc-shaped plate;
[0023] A third driving member, connected to one side of the moving block, the third driving member is connected with a mounting plate;
[0024] A correction plate, connected to the mounting plate through a first telescopic rod, for correcting the bent welding rod;
[0025] A guide member, arranged on the correction plate and the guide plate.
[0026] As a preference of the above technical solution, one side of the correction plate is arc-shaped, an elastic rubber layer is arranged on the arc surface, there are three groups of the third driving member, the correction plate and the guide member, and they are linearly arranged in an array between the movable plate and the arc-shaped plate.
[0027] As a preference of the above technical solution, the guide member includes:
[0028] An adjustable telescopic plate, hinged between the movable plate and the correction plate arranged on;
[0029] A plurality of second telescopic rods are arranged between the adjustable telescopic plate and the movable plate, and are used for supporting the adjustable telescopic plate to move.
[0030] As a preferred embodiment of the above technical solution, the telescopic plate is adjusted to be inclined, and the correction plate is arranged at the connection between the movable plate and the arc plate.
[0031] As a preferred embodiment of the above technical solution, a replacement component is provided at the bottom of the base, and the replacement component includes:
[0032] A collection box, disposed on the base, for collecting debris;
[0033] A rotating baffle is arranged between the collection box and the base;
[0034] The fourth driving member is connected to the collecting box and is connected to the rotating baffle through a rotating shaft, so as to drive the rotating baffle to rotate.
[0035] As a preferred embodiment of the above technical solution, a mounting opening is provided at the bottom of the base for installing a collection box, and limiting pieces are provided in the mounting opening and on one side of the base for fixing the collection box to the bottom of the base.
[0036] As a preferred embodiment of the above technical solution, the limiting elements include:
[0037] A movable block, movably connected to one side of the base;
[0038] The limiting block is connected to the movable block, the movable block is movably arranged in the installation opening, limiting grooves are provided on both sides of the collection box, and the limiting block is plugged into the limiting grooves.
[0039] The beneficial effects of the present invention are:
[0040] The present invention works by moving the first driving member and the moving baffle, and the adjusting device can adjust the size of the welding rod channel according to the size of the welding rod, so that the welding rod will not be accumulated and blocked in the welding rod channel, affecting the smoothness of the welding rod transportation. At the same time, the bent welding rod is corrected by the correction component to prevent the bent welding rod from being unable to pass through the welding rod channel smoothly, thereby affecting the entire process of automatic removal of the welding rod, resulting in inconvenience in removal and delaying the welding work. BRIEF DESCRIPTION OF THE DRAWINGS
[0041] Figure 1 What is shown is a schematic diagram of the overall structure of the embodiment;
[0042] Figure 2 The figure shows a cross-sectional view of the heat preservation barrel body, the base and the adjustment device of the embodiment;
[0043] Figure 3 Shown is a cross-sectional view of the heat preservation barrel body of the embodiment;
[0044] Figure 4The cross-sectional view of the heat preservation barrel body and the base of the embodiment is shown;
[0045] Figure 5 The structural diagram of the base of the embodiment is shown;
[0046] Figure 6 Shown is Figure 2 the enlarged view of part A of
[0047] Figure 7 The structural diagram of the adjusting device of the embodiment is shown;
[0048] Figure 8 The structural diagram of the guiding member of the embodiment is shown;
[0049] Figure 9 The structural diagram of the replacement component of the embodiment is shown.
[0050] In the figure: 1. Heat preservation barrel body; 2. Pushing device; 3. Base; 4. Moving baffle; 5. First driving member; 6. Second driving member; 7. Guide plate; 8. Channel entrance; 9. Groove; 10. Movable plate; 11. Arc-shaped plate; 12. Moving block; 13. Third driving member; 14. Mounting plate; 15. Correction plate; 16. First telescopic rod; 17. Guiding member; 18. Adjusting telescopic plate; 19. Second telescopic rod; 20. Collection box; 21. Rotating baffle; 22. Fourth driving member; 23. Movable block; 24. Limiting block. Specific embodiments
[0051] To make the objectives, technical solutions, and advantages of the embodiments of the present invention clearer, the technical solutions of the present invention will be clearly and completely described below in conjunction with the embodiments.
[0052] The present invention provides a new type of intelligent electrode heat preservation barrel, as Figures 1 to 6As shown in the figure, it includes a heat preservation barrel body 1, a base 3, a pushing device 2, a welding rod channel and an adjusting device. The bottom of the heat preservation barrel body 1 is fixedly connected to the base 3 for installing the heat preservation barrel body 1. The bottom of the base 3 is fixedly installed with rollers to facilitate the movement of the heat preservation barrel body 1. A display screen is provided on the outer wall of the heat preservation barrel body 1 to display the temperature inside the heat preservation barrel body 1 and monitor the internal temperature in real time. When the temperature exceeds the standard range, it will automatically alarm. The pushing device 2 is arranged inside the base 3 to push the welding rod out of the heat preservation barrel body 1. The welding rod channel is opened on the heat preservation barrel body 1 and the base 3. The pushing device 2 is located on one side of the welding rod channel. An outlet is opened on one side of the base 3, and the outlet is communicated with the welding rod channel, so that the welding rod can move from the outlet to the outside of the heat preservation barrel body 1 and the base 3 through the welding rod channel for use. In order to adapt to welding rods of different sizes and enable welding rods of different sizes to be taken out smoothly, an adjusting device is arranged in the welding rod channel to adjust the size of the welding rod channel. The adjusting device includes a moving baffle 4, a first driving member 5, two second driving members 6 and a guiding plate 7. The moving baffle 4 is arranged in the welding rod channel. The first driving member 5 is fixedly connected to one side of the moving baffle 4 to push the moving baffle 4 to move. Through the movement of the moving baffle 4, the welding rods can enter the welding rod channel one by one, preventing multiple welding rods from entering the inside of the welding rod channel and causing blockage, which affects the taking-out effect of the welding rods. The two second driving members 6 are arranged inside the base 3. The guiding plate 7 is fixedly connected to one side of the second driving member 6 to guide the welding rod. The moving baffle 4 is located on the top of the second driving member 6 and the guiding plate 7. The number of the second driving members 6 and the guiding plates 7 is two each, and they are symmetrically arranged with the center of the welding rod channel, which is convenient for improving the stability when guiding the welding rod.
[0053] In this embodiment, the first driving member 5 and the second driving member 6 can be electric push rods. When it is necessary to take out the welding rod, according to the size of the welding rod inside the heat preservation barrel body 1, start the first driving member 5 to drive the moving baffle 4 to move, and at the same time start the second driving member 6 to drive the guiding plate 7 to move, so that the distance between the two guiding plates 7 and the distance between the moving baffles 4 can adapt to the size of the welding rod. When the welding rod moves through the space between the moving baffles 4 into the inside of the welding rod channel, then start the first driving member 5 to drive the moving baffle 4 to move back to its original position to block the welding rod inside the heat preservation barrel body 1, and guide the welding rod through the guiding plate 7 inside the welding rod channel, so that the welding rods can fall into the inside of the welding rod channel one by one. Then start the pushing device 2 to push the welding rod in the welding rod channel to move from the outlet to the outside of the base 3 and the heat preservation barrel body 1, thereby improving the effect of taking out the welding rod, improving the applicability of the heat preservation barrel body 1, and being convenient for use.
[0054] As Figures 2 to 6As shown, in order to take out the welding rods one by one from the inside of the heat preservation barrel body 1, improve the fluency and the taking-out efficiency, the welding rod channel includes a channel entrance 8 and a groove 9. The welding rod channel is opened at the bottom of the heat preservation barrel body 1, and the groove 9 is opened inside the base 3. The channel entrance 8 communicates with the groove 9, and the channel entrance 8 and the groove 9 are in a flared shape, which is convenient for the movement of the welding rods. Through the channel entrance 8 and the groove 9, it is convenient to install an adjusting device for conveying the welding rods, adjusting the size of the welding rod channel to adapt to welding rods of different sizes. Both sides of the bottom of the heat preservation barrel body 1 are provided with movable grooves, which are located on both sides of the channel entrance 8. The first driving member 5 is fixedly connected in the movable groove. The movable baffle 4 is located in the channel entrance 8. The second driving member 6 is fixedly installed on the inner wall of the groove 9. The guiding plate 7 includes a movable plate 10 and an arc plate 11. The movable plate 10 is movably arranged in the channel entrance 8, and the arc plate 11 is fixedly connected to the bottom of the movable plate 10. The arc plate 11 is located in the groove 9. Both the movable plate 10 and the arc plate 11 are located under the movable baffle 4, and the top of the movable plate 10 is slidably connected to the inner wall of the channel entrance 8.
[0055] The first driving member 5 is installed through the movable groove, so that the first driving member 5 can drive the movable baffle 4 to move, and then control the distance between the two movable baffles 4 according to the size of the welding rod, so that the welding rod can move from between the two movable baffles 4 into the channel entrance 8. Then, the second driving member 6 drives the movable plate 10 and the arc plate 11 to move to adjust the size, preventing the distance between the movable plate 10 and the arc plate 11 from causing the welding rod to get stuck and affecting the conveyance of the welding rod. Through the action of the movable plate 10, the welding rod moves to the arc plate 11 in the groove 9, and the position of the welding rod is limited by the arc plate 11, so that the welding rod can correspond to the pushing device 2, and then the pushing device 2 can push the welding rod to move, so that the welding rod moves out of the outside of the base 3, which is convenient for taking out.
[0056] As Figure 2 、 Figure 5 、 Figure 6 、 Figure 7 and Figure 8As shown in the figure, in order to adjust the bent welding rod and prevent the welding rod from getting stuck at the connection between the movable plate 10 and the arc-shaped plate 11, affecting the automatic extraction effect of the welding rod, the adjusting device further includes two correction components. The two correction components are symmetrically arranged with the center of the base 3 as the center. The correction component includes a moving block 12, a third driving member 13, a mounting plate 14, a correction plate 15, a first telescopic rod 16 and a guiding member 17. The moving block 12 is fixedly connected to the second driving member 6. The moving block 12 is located on one side of the movable plate 10 and the arc-shaped plate 11. The third driving member 13 is fixedly connected to one side of the moving block 12. The third driving member 13 passes through the movable plate 10 and is fixedly connected to the mounting plate 14. A plurality of first telescopic rods 16 are fixedly installed on one side of the mounting plate 14. The correction plate 15 is connected to the mounting plate 14 through the first telescopic rod 16 and is used to correct the bent welding rod. The guiding member 17 is arranged on the correction plate 15 and the guiding plate 7 to guide the welding rod to move between the correction plates 15 for correction. One side of the correction plate 15 is arc-shaped, and an elastic rubber layer is arranged on the arc surface. There are three groups of the third driving member 13, the correction plate 15 and the guiding member 17, and they are linearly arranged between the movable plate 10 and the arc-shaped plate 11.
[0057] In this embodiment, the third driving member 13 can be an electric telescopic rod. It is convenient to install the third driving member 13 and the mounting plate 14 through the moving block 12. When the welding rod falls into the channel entrance 8, through the guiding action of the guiding member 17, it smoothly moves between the correction plates 15. When the welding rod is bent, the bent part presses against the correction plate 15, causing the correction plate 15 to drive the first telescopic rod 16 to contract. Through the arc-shaped correction plate 15, it is convenient to fit the outer side of the welding rod and improve the correction effect. Through the elasticity of the elastic rubber layer, when the third driving member 13 drives the mounting plate 14 and the first telescopic rod 16 to move, the correction plate 15 moves towards the center of the groove 9, causing the correction plate 15 to contact and press the welding rod. The elastic rubber layer can undergo corresponding deformation. For slightly bent welding rods, this elastic deformation can provide a certain buffer space for the welding rod, help the welding rod adjust its posture, and push the welding rod for correction, facilitating its use after extraction. After the correction is completed, the third driving member 13 drives the mounting plate 14, the first telescopic rod 16 and the correction plate 15 to move back to their original positions, causing the welding rod to fall into the groove 9 and be pushed out by the pushing device 2.
[0058] Such as Figure 2 , Figure 6 , Figure 7 and Figure 8As shown, in order to enable the welding rod to accurately move between the correction plates 15, correct the bent part, and improve the efficiency of removing the welding rod, the guiding member 17 includes an adjustable telescopic plate 18 and a second telescopic rod 19. The adjustable telescopic plate 18 is hingedly arranged between the movable plate 10 and the correction plate 15. One end of the adjustable telescopic plate 18 is hinged to the movable plate 10, and the other end is hinged to the top of the correction plate 15. A plurality of second telescopic rods 19 are arranged between the adjustable telescopic plate 18 and the movable plate 10. One end of the second telescopic rod 19 is fixedly connected to the movable plate 10, and the other end is slidably connected to the adjustable telescopic plate 18, and is used to support the adjustable telescopic plate 18 to move. The adjustable telescopic plate 18 is inclined. The correction plate 15 is arranged at the connection of the movable plate 10 and the arc-shaped plate 11.
[0059] When the third driving member 13 drives the mounting plate 14 to move, the first telescopic rod 16 drives the correction plate 15 to move. Since both ends of the adjustable telescopic plate 18 are hinged to the movable plate 10 and the correction plate 15 respectively, the adjustable telescopic plate 18 is driven to extend and deflect at the same time, and the connected second telescopic rod 19 extends. The second telescopic rod 19 supports and limits the deflected adjustable telescopic plate 18 to improve the stability of the deflected adjustable telescopic plate 18. When the correction plate 15 moves to adapt to the size of the welding rod, the adjustable telescopic plate 18 can also be deflected to guide the welding rod. When the welding rod moves between the correction plates 15 and the bent part presses the correction plate 15, the correction plate 15 drives the first telescopic rod 16 to contract, and the magnets 20 move relative to each other. As a result, the elastic rubber layer on the arc-shaped side of the correction plate 15 fits the bent part. By driving the mounting plate 14 and the first telescopic rod 16 to move by the third driving member 13 and pressing the correction plate 15, the elastic rubber layer deforms, facilitating the continuous adjustment of the bent welding rod so that the welding rod can smoothly move to the outside of the base 3 and the heat preservation barrel body 1.
[0060] As Figure 2 、 Figure 9As shown in the figure, in order to collect and clean the debris that falls off when the welding electrode moves, and prevent the debris from accumulating inside the groove 9, thereby affecting the moving efficiency of the welding electrode, a replacement component is provided at the bottom of the base 3. The replacement component includes a collection box 20, a rotating baffle 21 and a fourth driving member 22. The collection box 20 is arranged on the base 3 for collecting debris. The rotating baffle 21 is arranged between the collection box 20 and the base 3. The fourth driving member 22 is connected inside the collection box 20. The fourth driving member 22 is connected to the rotating baffle 21 through a rotating shaft and is used to drive the rotating baffle 21 to rotate. An installation opening is formed at the bottom of the base 3 for installing the collection box 20. A limiting member is provided inside the installation opening and on one side of the base 3 for fixing the collection box 20 to the bottom of the base 3. The limiting member includes a movable block 23 and a limiting block 24. The movable block 23 is movably connected to one side of the base 3 close to the outlet. The limiting block 24 is fixedly connected to one side of the movable block 23. The movable block 23 is movably connected to the inner wall of the installation opening. Limiting grooves are formed on both sides of the collection box 20. The limiting block 24 is inserted into the limiting groove.
[0061] When there is residual debris on the rotating baffle 21, start the fourth driving member 22 to drive the rotating shaft and the rotating baffle 21 to rotate. The fourth driving member 22 can be a motor, so that the rotating baffle 21 rotates into the interior of the collection box 20. The debris on the rotating baffle 21 slides along the rotating baffle 21 and falls into the collection box 20 for collection. Then, drive the rotating shaft and the rotating baffle 21 to move back to the original position through the fourth driving member 22, so that the rotating baffle 21 remains clean and is convenient for the movement of the welding electrode. When it is necessary to replace the collection box 20, move the movable block 23 in the direction away from the installation opening, so that the movable block 23 drives the limiting block 24 away from the limiting groove, so that both sides of the collection box 20 are no longer limited. Then, clean the debris inside the collection box 20. After the cleaning is completed, place the collection box 20 in the installation opening. By moving the movable block 23 and the limiting block 24, the limiting block 24 is inserted into the limiting groove to limit the collection box 20 and fix it to the bottom of the base 3, which is convenient for reuse and improves the effect of automatically taking out the welding electrode.
[0062] Working principle: When in use, when it is necessary to take out the welding electrode, according to the size of the welding electrode inside the heat preservation barrel body 1, the first driving member 5 is started to drive the movable baffle 4 to move, and at the same time, the second driving member 6 is used to drive the guide plate 7 to move, so that the distance between the two guide plates 7 can be adapted to the size of the welding electrode. When the welding electrode moves from between the rotating baffle 21 to the channel entrance 8 and into the groove 9, the first driving member 5 is started to drive the rotating baffle 21 to move back to its original position, blocking the welding electrode inside the heat preservation barrel body 1, and guiding the welding electrode through the adjustment of the telescopic plate 18, so that the welding electrode can fall between the correction plates 15. The bent part of the welding electrode presses against the correction plates 15, causing the correction plates 15 to drive the first telescopic rod 16 to contract. The correction plates 15 and the adjustment telescopic plate 18 move relative to each other through the magnetic block 20. Furthermore, the elastic rubber layer on the arc-shaped side of the correction plate 15 fits against the bent part. The third driving member 13 drives the mounting plate 14 and the first telescopic rod 16 to move, pressing the correction plates 15, causing the elastic rubber layer to deform, adjusting the bent welding electrode, and pushing the welding electrode for correction. After the correction is completed, the third driving member 13 drives the mounting plate 14, the first telescopic rod 16 and the correction plates 15 to move away from each other, so that the welding electrode falls between the arc-shaped plates 11 in the groove 9. Then, the pushing device 2 is started to push the welding electrode to move from the outlet to the outside of the base 3 and the heat preservation barrel body 1.
[0063] When there is welding electrode debris remaining on the rotating baffle 21, the fourth driving member 22 is started to drive the rotating shaft and the rotating baffle 21 to rotate, so that the rotating baffle 21 rotates into the inside of the collection box 20. The debris on the rotating baffle 21 slides along the rotating baffle 21 into the collection box 20 for collection. Then, the fourth driving member 22 drives the rotating shaft and the rotating baffle 21 to move back to their original positions, so that the rotating baffle 21 can continue to be at the bottom of the groove 9, facilitating the movement of the welding electrode. When it is necessary to replace the collection box 20, the movable block 23 is moved in the direction away from the installation opening, so that the movable block 23 drives the limiting block 24 away from the limiting groove, so that the side of the collection box 20 is no longer limited. Then, the debris inside the collection box 20 is cleaned. After the cleaning is completed, the collection box 20 is placed in the installation opening. By moving the movable block 23 and the limiting block 24, the limiting block 24 is inserted into the limiting groove to limit the collection box 20 and fix it at the bottom of the base 3, facilitating reuse and improving the efficiency of taking out the welding electrode.
[0064] The above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit it.
Claims
1. A new type of intelligent electrode insulation barrel, characterized in that, Comprising: A heat preservation barrel body (1), connected with a base (3) for installing the heat preservation barrel body (1); A pushing device (2), arranged inside the base (3) for pushing the welding rod out of the heat preservation barrel body (1); A welding rod channel, opened on the heat preservation barrel body (1) and the base (3); An adjusting device, arranged in the welding rod channel for adjusting the size of the welding rod channel; The adjusting device includes: A moving baffle (4), arranged in the welding rod channel; A first driving member (5), connected to one side of the moving baffle (4) for pushing the moving baffle (4) to move; Two second driving members (6), arranged inside the base (3); A guiding plate (7), connected to one side of the second driving member (6) for guiding the welding rod.
2. The novel intelligent electrode insulating bucket according to claim 1, characterized in that The welding rod channel includes: A channel entrance (8), opened at the bottom of the heat preservation barrel body (1); A groove (9), opened inside the base (3), and the channel entrance (8) is communicated with the groove (9) for conveying the welding rod.
3. The novel intelligent electrode insulation barrel according to claim 2, characterized in that, Both sides of the bottom of the heat preservation barrel body (1) are provided with movable grooves, the first driving member (5) is connected in the movable grooves, the moving baffle (4) is located in the channel entrance (8), and the guiding plate (7) includes: A movable plate (10), movably arranged in the channel entrance (8); An arc-shaped plate (11), connected to the movable plate (10), the arc-shaped plate (11) is located in the groove (9), and both the movable plate (10) and the arc-shaped plate (11) are located at the bottom of the moving baffle (4).
4. The novel intelligent electrode insulation barrel according to claim 3, characterized in that, The adjusting device further includes two correction components, and the two correction components are symmetrically arranged with the center of the base (3) as the center. The correction component includes: A moving block (12), connected to the second driving member (6), and the moving block (12) is located on one side of the movable plate (10) and the arc-shaped plate (11); A third driving member (13), connected to one side of the moving block (12), and the third driving member (13) is connected with a mounting plate (14); A correction plate (15), connected to the mounting plate (14) through a first telescopic rod (16) for correcting the bent welding rod; A guiding member (17), arranged on the correction plate (15) and the guiding plate (7).
5. The novel intelligent electrode insulation barrel according to claim 4, wherein, One side of the correction plate (15) is arc-shaped, and an elastic rubber layer is arranged on the arc surface. There are three groups of the third driving member (13), the correction plate (15) and the guiding member (17), and they are linearly arranged in an array between the movable plate (10) and the arc-shaped plate (11).
6. The novel intelligent electrode insulating barrel according to claim 5, characterized in that, The guiding member (17) includes: An adjusting telescopic plate (18), hinged between the movable plate (10) and the correction plate (15); A plurality of second telescopic rods (19), arranged between the adjusting telescopic plate (18) and the movable plate (10) for supporting the adjusting telescopic plate (18) to move.
7. The novel intelligent electrode insulation bucket according to claim 6, characterized in that, The adjusting telescopic plate (18) is inclined, and the correction plate (15) is arranged at the connection of the movable plate (10) and the arc-shaped plate (11).
8. The novel intelligent electrode insulation bucket according to claim 7, characterized in that, A replacement component is provided at the bottom of the base (3), and the replacement component includes: A collection box (20) is provided on the base (3) for collecting debris; A rotating baffle (21) is provided between the collection box (20) and the base (3); A fourth driving member (22) is connected inside the collection box (20), and the fourth driving member (22) is connected to the rotating baffle (21) through a rotating shaft for driving the rotating baffle (21) to rotate.
9. The novel intelligent electrode insulating barrel according to claim 8, characterized in that, An installation opening is formed at the bottom of the base (3) for installing the collection box (20), and a limiting member is provided inside the installation opening and on one side of the base (3) for fixing the collection box (20) to the bottom of the base (3).
10. The novel intelligent electrode insulation barrel according to claim 9, characterized in that, The limiting member includes: A movable block (23) is movably connected to one side of the base (3); A limiting block (24) is connected to the movable block (23), the movable block (23) is movably arranged in the installation opening, limiting grooves are formed on both sides of the collection box (20), and the limiting block (24) is inserted into the limiting grooves.