Wire feeding device for automatic welding of water-cooled wall boiler tube
By designing a wire feeding device for automatic welding of water-cooled wall boiler pipes, the problems of large structural volume of existing devices and low replacement efficiency of welding wire rolls are solved, and the rapid disassembly and replacement of welding wire rolls are achieved, improving the efficiency of welding operations and the consistency of welding process.
Patent Information
- Application Number
- CN202510607534.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-13
- Publication Date
- 2025-06-10
- Estimated Expiration
- 2045-05-13
AI Technical Summary
The existing automatic welding wire feeding device has a large structure, which is inconvenient for installation and use, and the welding wire roll replacement efficiency is low, resulting in a reduced operating efficiency.
A wire feeding device for automatic welding of water-cooled wall boiler pipes is designed, including a mounting mechanism, an inner support mechanism, a welding wire roll, a wire feeding mechanism and a wire guide mechanism. The inner support mechanism drives the inner support pipe, the linkage rod and the clamping assembly cooperate to realize the rapid disassembly and replacement of the welding wire roll.
Through the design of this device, rapid replacement of welding wire rolls is achieved, replacement time is shortened, the efficiency of welding operations is improved, and the consistency of the welding process is ensured, and the fluctuations in welding quality are avoided.
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Figure CN120115786A_ABST
Abstract
Description
Technical Field
[0001] Embodiments of the present disclosure belong to the technical field of welding, and particularly relate to a wire feeding device for automatic welding of water-cooled wall boiler tubes. Background Art
[0002] During the welding process of water-cooled wall boiler tubes, the performance of the wire feeding device directly affects the welding quality and efficiency. With the continuous expansion of the demand for automated welding and the increasing quality requirements for welded products, in order to meet the needs of high-quality welding, the application of robotic welding systems with wire drawing and wire feeding functions is becoming more and more widespread.
[0003] In the prior art, such as the "wire feeding device for welding" with the patent application number: CN201710869747.4, it includes a lower electrode fixing seat, an upper electrode fixing seat, a rotating shaft, a lower pushing cylinder, a wire fixing cylinder, a wire clamping cylinder, and a wire rear moving cylinder. This wire feeding device for welding can feed the wire forward as the welding progresses and can also disconnect the wire during the welding process. This device can enable automatic welding, reduce the labor intensity of workers, and improve work efficiency. In addition, this wire feeding device for welding has a reasonable structural design and is convenient to use, and is suitable for popularization and use.
[0004] Although the existing automatic welding wire feeding devices can provide the function of wire feeding, they have a large structural volume, are not convenient to install and use according to the welding equipment, and the wire spool is not convenient for quick replacement operation, which further causes the problem of reduced operation efficiency. In view of the above problems, a wire feeding device for automatic welding of water-cooled wall boiler tubes is proposed. Summary of the Invention
[0005] Embodiments of the present disclosure aim to at least solve one of the technical problems existing in the prior art, and provide a wire feeding device for automatic welding of water-cooled wall boiler tubes.
[0006] Embodiments of the present disclosure provide a wire feeding device for automatic welding of water-cooled wall boiler tubes, including: An installation mechanism; An inner support mechanism, the inner support mechanism includes: a driving motor, an inner support tube, a linkage rod, and a clamping assembly. The driving motor is fixedly arranged on the installation mechanism, the driving motor is drivingly connected to the inner support tube, the linkage rod is movably disposed through the inner support tube, and the inner support tube and the linkage rod are respectively connected to the clamping assembly; A wire spool, the wire spool is sleeved on the inner support tube, and the clamping assembly is arranged inside the wire spool; A wire feeding mechanism, the wire feeding mechanism is arranged at one end of the wire spool; A wire guiding mechanism, the wire guiding mechanism is arranged close to the wire feeding mechanism; The clamping component has an extended state and a contracted state. When the clamping component is in the extended state, the inner support mechanism is clamped to the wire reel; when the clamping component is in the contracted state, the inner support mechanism and the wire reel can move relative to each other.
[0007] In some embodiments of the present disclosure, the clamping component includes: At least two elastic pieces, at least two of the elastic pieces are arranged at intervals along the circumferential direction of the inner support tube. The elastic piece has a first end and a second end arranged oppositely. The first end of the elastic piece is fixedly connected to the outer wall of the inner support tube, and the second end of the elastic piece extends in the direction of the wire reel; At least two elastic rods, at least two of the elastic rods are arranged in one-to-one correspondence with at least two of the elastic pieces. The elastic rod penetrates through the inner support tube in the radial direction of the inner support tube, and both ends of the elastic rod are respectively connected to the linkage rod and the second end of the elastic piece; When the clamping component is in the extended state, the elastic piece abuts against the wire reel; when the clamping component is in the contracted state, the elastic piece and the wire reel can move relative to each other.
[0008] In some embodiments of the present disclosure, the inner support mechanism further includes: A fixing ring, the fixing ring is fixedly sleeved on the inner support tube, and the first end of the elastic piece is fixedly connected to the fixing ring; A connecting seat, the connecting seat is fixedly sleeved on the linkage rod, and the end of the elastic rod far from the wire reel is connected to the connecting seat; At least two guiding rings, at least two of the guiding rings are arranged in one-to-one correspondence with at least two of the elastic rods. The guiding ring penetrates through the inner support tube in the radial direction of the inner support tube, and the elastic rod penetrates through the guiding ring.
[0009] In some embodiments of the present disclosure, the inner support mechanism further includes: Two positioning disks, the two positioning disks are respectively arranged at both ends of the inner support tube, and both ends of the wire reel are respectively in contact with the two positioning disks.
[0010] In some embodiments of the present disclosure, the wire reel includes: A cylinder body, the cylinder body is sleeved on the inner support tube; A limiting ring, the limiting ring is internally connected to the cylinder body; When the clamping component is in the extended state, the clamping component abuts against the limiting ring; when the clamping component is in the contracted state, the clamping component and the limiting ring can move relative to each other.
[0011] In some embodiments of the present disclosure, the installation mechanism includes: Mounting bracket, the drive motor is fixedly connected to the mounting bracket; At least one fixing seat, the fixing seat is connected to the mounting bracket, and the fixing seat is provided with a mounting groove; At least one fixing bolt, the fixing bolts are arranged in one-to-one correspondence with the fixing seats, and the fixing bolts pass through the mounting grooves.
[0012] In some embodiments of the present disclosure, the wire feeding device for automatic welding of water wall boiler tubes further includes: a limiting mechanism, and the limiting mechanism includes: Fixed limiting rod, the fixed limiting rod is fixedly connected to the mounting mechanism, and the fixed limiting rod is arranged at one end of the inner support tube away from the drive motor; Movable limiting rod, the movable limiting rod is rotatably connected to the mounting mechanism, the movable limiting rod is arranged opposite to the fixed limiting rod, and the inner support tube is arranged between the fixed limiting rod and the movable limiting rod in a manner rotatable relative to the fixed limiting rod.
[0013] In some embodiments of the present disclosure, the wire feeding mechanism includes: Movable wire feeding roller, the movable wire feeding roller is arranged on the mounting mechanism in a manner movable relative to the mounting mechanism; Fixed wire feeding roller, the fixed wire feeding roller is fixedly connected to the mounting mechanism, and the fixed wire feeding roller is arranged opposite to the movable wire feeding roller; Wire feeding motor, the wire feeding motor is drivingly connected to the fixed wire feeding roller.
[0014] In some embodiments of the present disclosure, the wire guiding mechanism includes: First wire guiding member, the first wire guiding member is arranged close to the wire feeding mechanism; Sliding member, the sliding member is connected to the first wire guiding member; Adjusting cylinder, the adjusting cylinder is arranged on the sliding member, and the extending direction of the adjusting cylinder is the same as the extending direction of the first wire guiding member; Second wire guiding member, the second wire guiding member is slidably connected to the sliding member, and the adjusting cylinder is drivingly connected to the second wire guiding member.
[0015] In some embodiments of the present disclosure, the wire feeding device for automatic welding of water wall boiler tubes further includes a wire guiding tube, one end of the wire guiding tube is arranged close to the wire reel, and the other end of the wire guiding tube is arranged close to the wire feeding mechanism.
[0016] The wire feeding device for automatic welding of water wall boiler tubes in the embodiments of the present disclosure includes an installation mechanism, an inner support mechanism, a wire reel, a wire feeding mechanism, and a wire guiding mechanism. The inner support mechanism is installed on the installation mechanism, the inner support mechanism is drivingly connected to the wire reel, the wire feeding mechanism and the wire guiding mechanism are arranged in sequence along the transmission direction of the wire. The inner support mechanism drives the wire reel to rotate to convey the wire on the wire reel to the wire feeding mechanism, and the wire feeding mechanism conveys the wire to the wire guiding mechanism, thereby realizing the conveyance of the wire. Specifically, the driving motor of the inner support structure is drivingly connected to the inner support tube, the inner support tube is sleeved on the linkage rod, and the linkage rod can move relative to the inner support rod along the extension direction of the inner support tube. The wire reel is sleeved on the inner support tube, the clamping assembly is respectively connected to the inner support tube and the linkage rod, and the clamping assembly is arranged inside the wire reel. When the clamping assembly is in the extended state, the clamping assembly abuts against the wire reel, that is, the linkage rod and the inner support tube are connected to the wire reel through the clamping assembly, thereby realizing the connection between the inner support mechanism and the wire reel; when the clamping assembly is in the contracted state, the clamping assembly can move relative to the wire reel, that is, the clamping assembly does not abut against the wire reel, that is, the linkage rod and the inner support tube are not connected to the wire reel. By moving the wire reel, the separation between the wire reel and the inner support structure can be realized. By providing a detachable inner support mechanism and wire reel, the rapid disassembly of the inner support mechanism and the wire reel can be realized, the replacement time of the wire reel can be shortened, thereby improving the replacement rate of the wire reel. At the same time, the downtime for replacing the wire reel is reduced, and the efficiency of the overall welding operation is improved. In addition, in continuous welding tasks, improving the efficiency of switching the wire reel can ensure the coherence of the welding process and avoid causing fluctuations in welding quality. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 is a perspective view of a wire feeding device for automatic welding of water wall boiler tubes according to an embodiment of the present disclosure; Figure 2 is the present disclosure Figure 1 the enlarged schematic view of part A therein; Figure 3 is another perspective view of a wire feeding device for automatic welding of water wall boiler tubes according to an embodiment of the present disclosure; Figure 4 is a cross-sectional view of a wire feeding device for automatic welding of water wall boiler tubes according to an embodiment of the present disclosure; Figure 5 is the present disclosure Figure 4 the enlarged schematic view of part B therein; Figure 6 is a partial structural view of a wire feeding device for automatic welding of water wall boiler tubes according to an embodiment of the present disclosure; Figure 7 is another partial perspective view of a wire feeding device for automatic welding of water wall boiler tubes according to an embodiment of the present disclosure.
[0018] The reference numerals in the drawings are defined as follows: 1. Mounting mechanism; 101. Mounting frame; 102. Fixed seat; 103. Fixed bolt; 2. Inner support mechanism; 201. Driving motor; 202. Inner support tube; 203. Positioning disk; 204. Pressing handle; 205. Fixed ring; 206. Elastic piece; 207. Elastic rod; 208. Guide ring; 209. Connecting seat; 210. Linking rod; 211. Side cover plate; 3. Welding wire reel; 301. Cylinder body; 302. Limit ring; 4. Limiting mechanism; 401. Fixed limiting rod; 402. Movable limiting rod; 403. Spring; 404. Rotating seat; 5. Wire feeding mechanism; 501. Movable wire feeding roller; 502. Lifting cylinder; 503. Guide post; 504. Fixed wire feeding roller; 505. Wire feeding motor; 6. Wire guiding mechanism; 601. First wire guiding member; 602. Sliding member; 603. Adjusting cylinder; 604. Second wire guiding member; 7. Wire guiding tube. Detailed implementation manners The exemplary embodiments of the present disclosure will be described in more detail below with reference to the drawings. Although the exemplary embodiments of the present disclosure are shown in the drawings, it should be understood that the present disclosure can be implemented in various forms and should not be limited by the embodiments set forth herein. On the contrary, these embodiments are provided so that the present disclosure can be more thoroughly understood and the scope of the present disclosure can be completely conveyed to those skilled in the art.
[0019] It should be understood that the terms used herein are for the purpose of describing specific example embodiments only and are not intended to be limiting. Unless otherwise clearly specified in the context, the singular forms "a", "an" and "the" as used herein may also include the plural forms. The terms "include", "comprise", "contain" and "have" are inclusive and thus specify the presence of the stated features, steps, operations, elements and / or components, but do not preclude the presence or addition of one or more other features, steps, operations, elements, components, and / or combinations thereof. The control method steps, processes, and operations described herein are not to be construed as necessarily requiring them to be performed in the particular order described or illustrated, unless the execution order is explicitly stated. It should also be understood that additional or alternative steps may be used.
[0020] Although terms such as first, second, and third may be used herein to describe multiple elements, components, regions, layers, and / or sections, these elements, components, regions, layers, and / or sections should not be limited by these terms. These terms may be used only to distinguish one element, component, region, layer, or section from another. Unless the context clearly indicates otherwise, terms such as "first" and "second" and other numerical terms do not imply an order or sequence when used herein. Thus, the first element, component, region, layer, or section discussed below may be referred to as the second element, component, region, layer, or section without departing from the teachings of the exemplary embodiments.
[0021] For ease of description, spatial relative relationship terms may be used herein to describe the relationship of one element or feature shown in the figures to another element or feature, such as "inner", "outer", "inside", "outside", "below", "beneath", "above", "over", etc. Such spatial relative relationship terms are intended to include different orientations of the device in use or operation in addition to the orientation depicted in the figures. For example, if the device in the figures is flipped, an element described as "below" or "beneath" another element or feature will then be oriented "above" or "over" the other element or feature. Thus, the exemplary term "below" can include both an upper and a lower orientation. The device may be otherwise oriented (rotated 90 degrees or in other directions) and the spatial relative relationship descriptors used herein are to be interpreted accordingly.
[0022] As Figures 1 to 7 As shown, an embodiment of the present disclosure provides a wire feeding device for automatic welding of water wall boiler tubes, including: a mounting mechanism 1, an inner support mechanism 2, a wire spool 3, a wire feeding mechanism 5, and a wire guiding mechanism 6. Specifically, the inner support mechanism 2 includes: a driving motor 201, an inner support tube 202, a linkage rod 210, and a clamping assembly. The driving motor 201 is fixedly provided on the mounting mechanism 1, the driving motor 201 is drivingly connected to the inner support tube 202, the linkage rod 210 is movably disposed through the inner support tube 202, the inner support tube 202 and the linkage rod 210 are respectively connected to the clamping assembly, the wire spool 3 is sleeved on the inner support tube 202, the clamping assembly is disposed inside the wire spool 3, the clamping assembly has an extended state and a contracted state. When the clamping assembly is in the extended state, the inner support mechanism 2 is clamped to the wire spool 3; when the clamping assembly is in the contracted state, the inner support mechanism 2 and the wire spool 3 can move relative to each other. The wire feeding mechanism 5 is disposed at one end of the wire spool 3, and the wire guiding mechanism 6 is disposed close to the wire feeding mechanism 5.
[0023] The wire feeding device for automatic welding of water wall boiler tubes according to the embodiments of the present disclosure includes a mounting mechanism 1, an inner support mechanism 2, a wire spool 3, a wire feeding mechanism 5, and a wire guiding mechanism 6. The inner support mechanism 2 is installed on the mounting mechanism 1, and the inner support mechanism 2 is drivingly connected to the wire spool 3. The wire feeding mechanism 5 and the wire guiding mechanism 6 are arranged in sequence along the transmission direction of the wire. The inner support mechanism 2 drives the wire spool 3 to rotate to convey the wire on the wire spool 3 to the feeding mechanism, and the wire feeding mechanism 5 conveys the wire to the wire guiding mechanism 6, thereby realizing the conveyance of the wire. Specifically, the driving motor 201 of the inner support structure is drivingly connected to the inner support tube 202. The inner support tube 202 is sleeved on the linkage rod 210, and the linkage rod 210 can move relative to the inner support rod along the extension direction of the inner support tube 202. The wire spool 3 is sleeved on the inner support tube 202. The clamping assembly is respectively connected to the inner support tube 202 and the linkage rod 210, and the clamping assembly is arranged inside the wire spool 3. When the clamping assembly is in the extended state, the clamping assembly abuts against the wire spool 3, that is, the linkage rod 210 and the inner support tube 202 are connected to the wire spool 3 through the clamping assembly, thereby realizing the connection between the inner support mechanism 2 and the wire spool 3; when the clamping assembly is in the contracted state, the clamping assembly can move relative to the wire spool 3, that is, the clamping assembly does not abut against the wire spool 3, that is, the linkage rod 210 and the inner support tube 202 are not connected to the wire spool 3. By moving the wire spool 3, the separation between the wire spool 3 and the inner support structure can be realized. By providing a detachable inner support mechanism 2 and wire spool 3, the quick disassembly of the inner support mechanism 2 and the wire spool 3 can be realized, the replacement time of the wire spool 3 can be shortened, thereby improving the replacement rate of the wire spool 3. At the same time, the downtime for replacing the wire spool 3 is reduced, and the efficiency of the overall welding operation is improved. In addition, in continuous welding tasks, improving the efficiency of switching the wire spool 3 can ensure the coherence of the welding process and avoid causing fluctuations in welding quality.
[0024] As Figure 5 shown, in some embodiments of the present disclosure, the clamping assembly includes: at least two elastic pieces 206 and at least two elastic rods 207. Specifically, the number of elastic pieces 206 is the same as the number of elastic rods 207, and the elastic pieces 206 and the elastic rods 207 are arranged in one-to-one correspondence. Among them, at least two elastic pieces 206 are arranged at equal intervals along the circumferential direction of the inner support tube 202, and at least two elastic rods 207 are arranged at equal intervals along the circumferential direction of the inner support tube 202. Specifically, the elastic piece 206 has a first end and a second end arranged oppositely. The first end of the elastic piece 206 is fixedly connected to the outer wall of the inner support tube 202, and the second end of the elastic piece 206 extends towards the direction of the wire spool 3. Both ends of the elastic rod 207 are respectively connected to the linkage rod 210 and the second end of the elastic piece 206, and the elastic rod 207 penetrates through the inner support tube 202 along the radial direction of the inner support tube 202.
[0025] When the clamping component is in the extended state, the second end of the elastic piece 206 abuts against the inner side of the wire spool 3; when the clamping component is in the contracted state, the second end of the elastic piece 206 can move relative to the wire spool 3. Process of the clamping component switching from the extended state to the contracted state: The second end of the elastic piece 206 abuts against the inner side of the wire spool 3, move the linkage rod 210 along the extending direction of the inner support tube 202 to make the linkage rod 210 move forward relative to the inner support tube 202. When the linkage rod 210 moves, the linkage rod 210 drives the first end of the elastic rod 207 to move forward, and the second end of the elastic rod 207 moves in the direction away from the wire spool 3, so that the second end of the elastic piece 206 connected to the second end of the elastic rod 207 is separated from the wire spool 3. At this time, the clamping component switches from the extended state to the contracted state, and this process is also the disassembly process of the inner support mechanism 2 and the wire spool 3. Process of the clamping component switching from the contracted state to the extended state: The second end of the elastic piece 206 does not abut against the inner side of the wire spool 3, move the linkage rod 210 along the extending direction of the inner support tube 202 to make the linkage rod 210 move backward relative to the inner support tube 202. When the linkage rod 210 moves, the linkage rod 210 drives the first end of the elastic rod 207 to move backward, and the second end of the elastic rod 207 moves in the direction towards the wire spool 3, so that the second end of the elastic piece 206 connected to the second end of the elastic rod 207 abuts against the wire spool 3. At this time, the clamping component switches from the contracted state to the extended state, and this process is also the installation process of the inner support mechanism 2 and the wire spool 3. In this embodiment, since the extending direction from the first end to the second end of the elastic piece 206 includes the radial extension from the inner support tube 202 to the wire spool 3 and the extension from the direction away from the driving motor 201 to the direction close to the driving motor 201, the forward movement of the linkage rod 210 refers to the movement in the direction towards the driving motor 201, and the backward movement of the linkage rod 210 refers to the movement in the direction away from the driving motor 201.
[0026] As Figure 4 and Figure 5 shown, in some embodiments of the present disclosure, the inner support mechanism 2 further includes: a fixing ring 205, a connecting seat 209 and at least two guiding rings 208. Among them, the fixing ring 205 is fixedly sleeved on the inner support tube 202, the first end of the elastic piece 206 is fixedly connected to the fixing ring 205, and the second end of the elastic piece 206 extends towards the wire spool 3. The connecting seat 209 is fixedly sleeved on the linkage rod 210, the first end of the elastic rod 207 far from the wire spool 3 is connected to the connecting seat 209, and the second end of the elastic rod 207 close to the wire spool 3 is connected to the second end of the elastic piece 206. The guiding ring 208 is penetrated through the inner support tube 202 along the radial direction of the inner support tube 202, and the elastic rod 207 is penetrated through the guiding ring 208 to guide the elastic rod 207 through the guiding ring 208.
[0027] Specifically, the number of guiding rings 208 is the same as that of elastic rods 207, and the guiding rings 208 and the elastic rods 207 are arranged in one-to-one correspondence. In this embodiment, the number of elastic pieces 206, elastic rods 207, and guiding rings 208 is the same, and the number can be two. The two elastic pieces 206 are oppositely arranged inside the wire reel 3, enabling the connection between the wire reel 3 and the linkage rod 210. The number of elastic pieces 206 can also be more than two. The two or more elastic pieces 206 are spaced and evenly distributed along the circumferential direction of the inner support rod, which can further improve the firmness of the connection between the wire reel 3 and the linkage rod 210. On the basis of ensuring the connection reliability between the wire reel 3 and the linkage rod 210, in order to simplify the manufacturing process of the device, four elastic pieces 206, four elastic rods 207, and four guiding rings 208 are preferred in this embodiment.
[0028] Furthermore, the elastic rod 207 is a thin steel wire. The thin steel wire has a certain elasticity and can generate elastic deformation for movement. At the same time, the thin steel wire has a certain rigidity and is not easily damaged.
[0029] As Figure 4 shown, in some embodiments of the present disclosure, the inner support mechanism 2 further includes: two positioning disks 203. The two positioning disks 203 are respectively arranged at both ends of the inner support tube 202. Both ends of the wire reel 3 are respectively in contact with the two positioning disks 203, and the two positioning disks 203 limit the wire reel 3. Specifically, the first positioning disk 203 is arranged at the end of the inner support tube 202 where the driving motor 201 is provided. One side of the first positioning disk 203 is in contact with the wire reel 3, and the other side of the first positioning disk 203 is in contact with one side of the short board of the L-shaped mounting bracket 101. The other side of the short board of the L-shaped mounting bracket 101 is fixedly connected to the driving connection. The second positioning disk 203 is arranged at the end of the inner support tube 202 far from the driving motor 201. One side of the second positioning disk 203 is in contact with the wire reel 3, and the other side of the second positioning disk 203 is in contact with the limiting mechanism 4. The two positioning disks 203 and the wire reel 3 are both arranged between the limiting mechanism 4 and the short board of the L-shaped mounting bracket 101, that is, the limiting mechanism 4 and the L-shaped mounting bracket 101 limit the two positioning disks 203 and the wire reel 3.
[0030] As Figure 4 shown, the inner support mechanism 2 further includes: a side cover plate 211. The side cover plate 211 is sleeved on the linkage rod 210 and the side cover plate 211 is arranged at the end of the inner support tube 202 far from the driving motor 201. The side cover plate 211 and the second positioning disk 203 are respectively located on opposite sides of the limiting mechanism 4, and the side cover plate 211 and the second positioning disk 203 are respectively in contact with the limiting mechanism 4 to limit the inner support tube 202 through the side cover plate 211.
[0031] As Figure 3 and Figure 4As shown, the inner support mechanism 2 further includes: a pressing handle 204, which is arranged at one end of the linkage rod 210 away from the driving connection, so as to realize the relative movement of the linkage rod 210 and the inner support tube 202 by moving the pressing handle 204, thereby realizing the installation and disassembly of the wire reel 3 and the inner support mechanism 2.
[0032] In some embodiments of the present disclosure, the wire reel 3 includes: a cylinder body 301 and a limiting ring 302. The cylinder body 301 is sleeved on the inner support tube 202, and both ends of the cylinder body 301 are respectively in contact with the two positioning disks 203 to limit the cylinder body 301 through the two positioning disks 203. The limiting ring 302 is internally connected to the cylinder body 301, that is, the circumferential outer wall of the limiting ring 302 is connected to the circumferential inner wall of the cylinder body 301, and the disassembly of the wire reel 3 and the inner support mechanism 2 is realized through the cooperation of the limiting ring 302 and the clamping assembly. Specifically, when the clamping assembly is in the extended state, the second end of the elastic piece 206 of the clamping assembly abuts against the limiting ring 302; when the clamping assembly is in the contracted state, the second end of the elastic piece 206 of the clamping assembly can move relative to the limiting ring 302. In the process of installing the wire reel 3 on the inner support tube 202, the wire reel 3 is moved from the end of the inner support tube 202 away from the driving motor 201 towards the driving motor 201. The cylinder body 301 of the wire reel 3 contacts the second end of the elastic piece 206. As the wire reel 3 moves, the limiting ring 302 of the wire reel 3 abuts against the second end of the elastic piece 206, thereby realizing the connection between the wire reel 3 and the inner support mechanism 2.
[0033] In some embodiments of the present disclosure, the installation mechanism 1 includes: an installation frame 101, a fixed seat 102 and a fixing bolt 103. Specifically, the installation frame 101 is an L-shaped structure, and the driving motor 201 is fixedly connected to the short board of the L-shaped structure, and the driving motor 201 and the first positioning disk 203 are respectively located on opposite sides of the short board of the L-shaped structure. The long board of the L-shaped structure is connected to the fixed seat 102, and the fixed seat 102 is provided with an installation groove. The fixing bolt 103 passes through the installation groove and is connected to other fixed settings through the fixing bolt 103.
[0034] Specifically, the number of the fixed seats 102 is the same as that of the fixing bolts 103, and the fixing bolts 103 and the fixed seats 102 are arranged in one-to-one correspondence, and at least one fixed seat 102 is provided. In this embodiment, the number of the fixed seats 102 is four, two of the fixed seats 102 are arranged on the upper side of the long board of the L-shaped structure, and the remaining two fixed seats 102 are arranged on the lower side of the long board of the L-shaped structure. The cooperation of the four fixed seats 102 and the four fixing bolts 103 ensures the installation firmness of the installation mechanism 1.
[0035] As Figure 2 and Figure 4As shown, in some embodiments of the present disclosure, the wire feeding device for automatic welding of water wall boiler tubes further includes: a limiting mechanism 4, the limiting mechanism 4 is connected to the long plate of the L-shaped structure, and the limiting mechanism 4 and the short plate of the L-shaped structure are respectively arranged at opposite ends of the long plate of the L-shaped structure. The limiting mechanism 4 includes: a fixed limiting rod 401, a movable limiting rod 402, a spring 403 and a rotating seat 404. Specifically, the fixed limiting rod 401 is fixedly connected to the long plate of the mounting mechanism 1, and the fixed limiting rod 401 is arranged at one end of the inner support tube 202 away from the driving motor 201. The movable limiting rod 402 is rotatably connected to the long plate of the mounting mechanism 1 through the rotating seat 404. The movable limiting rod 402 is arranged opposite to the fixed limiting rod 401. The inner support tube 202 is arranged between the fixed limiting rod 401 and the movable limiting rod 402 in a manner that can rotate relative to the fixed limiting rod 401. Specifically, limiting grooves are respectively arranged on the fixed limiting rod 401 and the movable limiting rod 402. The two limiting grooves are arranged opposite to each other. The installation space formed by the two limiting grooves is adapted to the inner support tube 202. The inner support tube 202 is rotatably installed in the two limiting grooves. The movable limiting rod 402 is also connected to the long plate of the mounting mechanism 1 through the spring 403. Through the cooperation of the spring 403 and the rotating seat 404, the movable limiting rod 402 abuts against the fixed limiting rod 401, thereby ensuring the reliability and stability of the cooperation between the movable limiting rod 402 and the fixed limiting rod 401, and realizing a stable installation and limiting function.
[0036] As Figure 4 , Figure 6 and Figure 7As shown, in some embodiments of the present disclosure, the wire feeding mechanism 5 includes: a movable wire feeding roller 501, a fixed wire feeding roller 504, and a wire feeding motor 505. Among them, a through groove is formed on the short board of the L-shaped mounting bracket 101. The fixed wire feeding roller 504 is fixedly arranged at the bottom of the through groove. The movable wire feeding roller 501 is arranged at the top of the through groove of the mounting mechanism 1 in a manner movable relative to the mounting mechanism 1, and the fixed wire feeding roller 504 and the movable wire feeding roller 501 are arranged opposite to each other. Specifically, the movable wire feeding roller 501 is driven by a lifting cylinder 502 to move in a direction towards or away from the fixed wire feeding roller 504. The wire feeding mechanism 5 further includes a guide post 503. The guide post 503 is arranged on the short board of the L-shaped mounting bracket 101, and a guide hole adapted to the guide post 503 is provided on the mounting bracket 101. The direction of the guide hole is the same as the driving direction of the driving motor 201. The wire feeding mechanism 5 further includes a wire feeding motor 505. The wire feeding motor 505 is drivingly connected to the fixed wire feeding roller 504. By driving the driving motor 201 to rotate the fixed wire feeding roller 504, the wire between the fixed wire feeding roller 504 and the movable wire feeding roller 501 is driven to move, and the wire drives the movable wire feeding roller 501 to rotate, thereby realizing the wire feeding function. By providing the lifting cylinder 502, the distance between the movable wire feeding roller 501 and the fixed wire feeding roller 504 can be adjusted to adapt to the feeding of wires with different diameters.
[0037] As Figure 3 , Figure 4 , Figure 6 and Figure 7 As shown, in some embodiments of the present disclosure, the wire guiding mechanism 6 includes: a first wire guiding member 601, a second wire guiding member 604, a sliding member 602, and an adjusting cylinder 603. The first wire guiding member 601 is arranged close to the wire feeding mechanism 5. The second wire guiding member 604 is arranged along the wire transfer direction at one end of the second wire guiding member 604 away from the wire feeding mechanism. A sliding member 602 is arranged between the first wire guiding member 601 and the second wire guiding member 604. One end of the sliding member 602 is fixedly connected to the first wire guiding member 601, and the other end of the sliding member 602 is slidably connected to the second wire guiding member 604. Specifically, an adjusting cylinder 603 is arranged on the sliding member 602. The extending direction of the adjusting cylinder 603 is the same as the extending direction of the first wire guiding member 601. The output end of the adjusting cylinder 603 is connected to the second wire guiding member 604. The relative distance between the second wire guiding member 604 and the first wire guiding member 601 is adjusted by the adjusting cylinder 603. Specifically, both the first wire guiding member 601 and the second wire guiding member 604 are arc-shaped wire guiding members, which are convenient for guiding the automatic bending of the wire and are beneficial to realizing the high-efficiency automatic wire feeding work.
[0038] As Figure 6As shown, in some embodiments of the present disclosure, the wire feeding device for the automatic welding of water wall boiler tubes further includes a wire guiding tube 7. One end of the wire guiding tube 7 is arranged close to the wire reel 3, and the other end of the wire guiding tube 7 is arranged close to the wire feeding mechanism 5. The wire of the wire reel 3 is transmitted to the feeding mechanism through the wire guiding tube 7, improving the accuracy and stability of wire feeding. It can be understood that the above embodiments are merely exemplary embodiments adopted to illustrate the principle of the present disclosure. However, the present disclosure is not limited thereto. For those of ordinary skill in the art, various modifications and improvements can be made without departing from the spirit and essence of the present disclosure, and these modifications and improvements are also regarded as the protection scope of the present disclosure.
Claims
1. A wire feeding device for automatic welding of water-cooled wall boiler tubes, characterized in that: include: Installation mechanism; An inner support mechanism, the inner support mechanism comprises: a driving motor, an inner support tube, a linkage rod and a clamping assembly, the driving motor is fixedly arranged on the mounting mechanism, the driving motor is drivingly connected to the inner support tube, the linkage rod is movably passed through the inner support tube, and the inner support tube and the linkage rod are respectively connected to the clamping assembly; A welding wire drum, wherein the welding wire drum is sleeved on the inner support tube, and the clamping assembly is arranged inside the welding wire drum; A wire feeding mechanism, the wire feeding mechanism being arranged at one end of the welding wire drum; A wire guiding mechanism, wherein the wire guiding mechanism is arranged close to the wire feeding mechanism; The clamping assembly has an extended state and a contracted state. When the clamping assembly is in the extended state, the inner support mechanism is clamped with the welding wire drum; when the clamping assembly is in the contracted state, the inner support mechanism and the welding wire drum can move relative to each other.
2. The wire feeding device for automatic welding of water-cooled wall boiler tubes according to claim 1, characterized in that: The clamping assembly comprises: At least two spring sheets, at least two of which are spaced apart along the circumference of the inner support tube, the spring sheet having a first end and a second end which are oppositely arranged, the first end of the spring sheet being fixedly connected to the outer wall of the inner support tube, and the second end of the spring sheet extending toward the direction of the welding wire reel; At least two elastic rods, at least two of the elastic rods are arranged in one-to-one correspondence with at least two of the elastic sheets, the elastic rods are arranged in the radial direction of the inner support tube, and the two ends of the elastic rods are respectively connected to the linkage rod and the second end of the elastic sheet; When the clamping assembly is in an extended state, the spring sheet abuts against the welding wire drum; when the clamping assembly is in a contracted state, the spring sheet and the welding wire drum can move relative to each other.
3. The wire feeding device for automatic welding of water-cooled wall boiler tubes according to claim 2, characterized in that: The inner support mechanism also includes: A fixing ring, the fixing ring is fixedly sleeved on the inner support tube, and the first end of the spring piece is fixedly connected to the fixing ring; A connecting seat, the connecting seat is fixedly sleeved on the linkage rod, and one end of the elastic rod away from the welding wire drum is connected to the connecting seat; At least two guide rings are arranged in one-to-one correspondence with at least two elastic rods, the guide rings are penetrated in the inner support tube along the radial direction of the inner support tube, and the elastic rods are penetrated in the guide rings.
4. The wire feeding device for automatic welding of water-cooled wall boiler tubes according to claim 1, characterized in that: The inner support mechanism also includes: Two positioning plates are respectively arranged at two ends of the inner support tube, and two ends of the welding wire reel are respectively in contact with the two positioning plates.
5. The wire feeding device for automatic welding of water-cooled wall boiler tubes according to claim 1, characterized in that: The welding wire reel comprises: A cylinder body, wherein the cylinder body is sleeved on the inner support tube; A limiting ring, the limiting ring is inscribed in the cylinder; When the clamping assembly is in an extended state, the clamping assembly abuts against the limiting ring; when the clamping assembly is in a contracted state, the clamping assembly and the limiting ring can move relative to each other.
6. The wire feeding device for automatic welding of water-cooled wall boiler tubes according to claim 1, characterized in that: The mounting mechanism comprises: A mounting frame, the driving motor is fixedly connected to the mounting frame; At least one fixing seat, the fixing seat is connected to the mounting frame, and the fixing seat is provided with a mounting groove; At least one fixing bolt is arranged in one-to-one correspondence with the fixing seat, and the fixing bolt passes through the installation groove.
7. The wire feeding device for automatic welding of water-cooled wall boiler tubes according to claim 1, characterized in that: The wire feeding device for automatic welding of water-cooled wall boiler tubes further comprises: a limiting mechanism, wherein the limiting mechanism comprises: A fixed limiting rod, the fixed limiting rod is fixedly connected to the mounting mechanism, and the fixed limiting rod is arranged at one end of the inner support tube away from the driving motor; A movable limiting rod, the movable limiting rod is rotatably connected to the mounting mechanism, the movable limiting rod is arranged opposite to the fixed limiting rod, and the inner support tube is rotatably arranged between the fixed limiting rod and the movable limiting rod relative to the fixed limiting rod.
8. The wire feeding device for automatic welding of water-cooled wall boiler tubes according to claim 1, characterized in that: The wire feeding mechanism comprises: A movable wire feeding roller, wherein the movable wire feeding roller is disposed on the mounting mechanism in a movable manner relative to the mounting mechanism; A fixed wire feeding roller, the fixed wire feeding roller is fixedly connected to the mounting mechanism, and the fixed wire feeding roller is arranged opposite to the movable wire feeding roller; A wire feeding motor is drivingly connected to the fixed wire feeding roller.
9. The wire feeding device for automatic welding of water-cooled wall boiler tubes according to claim 1, characterized in that: The guide wire mechanism comprises: A first wire guide, which is arranged close to the wire feeding mechanism; A sliding member connected to the first wire guide member; An adjusting cylinder, wherein the adjusting cylinder is arranged on the sliding member, and an extending direction of the adjusting cylinder is the same as an extending direction of the first wire guide member; A second wire guide member is slidably connected to the sliding member, and the regulating cylinder is drivingly connected to the second wire guide member.
10. The wire feeding device for automatic welding of water-cooled wall boiler tubes according to claim 1, characterized in that: The wire feeding device for automatic welding of water-cooled wall boiler tubes also includes a wire guide tube, one end of which is arranged close to the welding wire drum, and the other end of which is arranged close to the wire feeding mechanism.
Citation Information
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