Boring tool boring auxiliary equipment for deep machining of aluminum profile

By covering the belt of the boring auxiliary equipment with cleaning glue and using the transmission wheel and magnet to clean the debris, the problem of difficult debris during deep hole boring during boring is solved, and the boring accuracy and flatness of the hole inner wall are improved.

CN120206295APending Publication Date: 2025-06-27PINGJIANG TIANZHENG ALUMINUM TECH CO LTD
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Patent Information

Application Number
CN202510520206.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-24
Publication Date
2025-06-27

AI Technical Summary

Technical Problem

During the boring process of aluminum profiles, debris in the holes are difficult to clean in time during deep hole boring, which affects the boring accuracy.

Method used

Design a boring tool boring auxiliary equipment, which uses cleaning glue covered on the belt to contact the inner wall of the aluminum profile tube hole during the boring process, adsorb and clean up debris. The device drives the belt to rotate through the transmission wheel, and uses magnets and push plates to achieve even replenishment and distribution of cleaning glue.

Benefits of technology

It effectively avoids the problem of untimely debris handling during boring, improves the boring accuracy and flatness of the inner wall of the hole, and ensures high-precision assembly after boring.

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Abstract

The invention relates to the technical field of aluminum profile punching, and discloses boring tool boring auxiliary equipment for deep machining of an aluminum profile. The boring cutter boring auxiliary equipment for deep machining of the aluminum profile comprises a machine body, the top of the machine body is fixedly connected with two guide rods through a frame body, a clamp B is slidably connected between the two guide rods, a motor B is clamped on the clamp B, and the output end of the motor B is fixedly connected with a mounting base; a mounting pipe is fixedly connected to the side, close to the aluminum profile pipe, of the mounting base through a support, a communication opening is formed in the side, close to the inner wall of the aluminum profile pipe, of the mounting pipe, a driving roller is rotationally connected into the mounting pipe, a transmission roller is rotationally connected to the side, close to the communication opening, of the mounting pipe, and a belt is arranged between the driving roller and the transmission roller in a sleeving mode; according to the boring cutter boring auxiliary equipment for aluminum profile deep machining, the problem that when a traditional device bores a deep hole, chippings in the hole cannot be treated in time, and the boring precision is affected can be solved.
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Description

Technical Field

[0001] The present invention relates to the technical field of aluminum profile drilling, and specifically to a boring tool boring auxiliary device for deep processing of aluminum profiles. Background Art

[0002] Aluminum profiles are aluminum tubes with different cross-sectional shapes obtained by melting and extruding aluminum rods. Aluminum profiles are mainly divided into building aluminum profiles (divided into doors, windows and curtain walls), radiator aluminum profiles, industrial aluminum profiles, aluminum alloy profiles for railway vehicle structures, and mounting aluminum profiles, etc. During the use of aluminum profiles, it is usually necessary to drill holes in them for subsequent use. However, the drilling operation often has relatively low precision and large surface roughness, making it difficult to meet the requirements of high-precision assembly. Therefore, after drilling the aluminum profiles, boring is often required to improve the hole diameter precision, reduce the surface roughness, and correct the deviation of the hole axis to ensure the precise assembly of the installation parts and the stability of the overall structure.

[0003] In the boring work of aluminum profiles, a boring machine is used. A boring machine is a special machine for boring holes. It is equipped with a boring tool that can rotate along the inner wall of the hole diameter. Using the rotating boring tool, the boring work is completed. It is convenient to use and has a fast boring efficiency, and is the most common in boring work.

[0004] During the boring process, there will be a lot of debris on the inner wall of the holes of the aluminum profiles. In traditional operations, these debris are generally cleaned with cleaning glue or a high-pressure water gun after boring. However, this is usually an operation after boring is completed. This is because the holes of the aluminum profiles are relatively shallow and the boring time is short, so the influence of the debris on the boring precision is small. However, if the holes of the aluminum profiles are deep and the single boring time is long, these debris are likely to affect the boring precision. For this reason, we propose a boring tool boring auxiliary device for deep processing of aluminum profiles. Summary of the Invention

[0005] The purpose of the present invention is to provide a boring tool boring auxiliary device for deep processing of aluminum profiles to solve the problems raised in the above background art.

[0006] To achieve the above object, the present invention provides the following technical solution: A boring tool boring hole auxiliary device for deep processing of aluminum profiles, including a machine body. At the top of the machine body, two guide rods are fixedly connected through a frame. Between the two ends of the guide rods away from the machine body, a clamp A is fixedly connected. An aluminum profile tube is clamped on the clamp A. A clamp B is slidably connected between the two guide rods. A motor B is clamped on the clamp B. The output end of the motor B is fixedly connected with a mounting seat. On the side of the mounting seat close to the aluminum profile tube, a boring tool is fixedly connected. On the side of the mounting seat close to the aluminum profile tube, a mounting tube is fixedly connected through a bracket. A communication port is opened on the side of the mounting tube close to the inner wall of the aluminum profile tube. A driving roller is rotatably connected in the mounting tube. A transmission roller is rotatably connected on the side of the mounting tube close to the communication port. A belt is sleeved between the driving roller and the transmission roller. A number of uniformly distributed limiting strips are arranged on the outer surface of the belt. A cleaning rubber is laid and wrapped on the outer surface of the belt. A transmission wheel is rotatably connected on the side of the mounting tube away from the mounting seat. The transmission wheel is fixedly butted with the rotating shaft of the driving roller.

[0007] Preferably, one side of the inner wall of the mounting tube is fixedly connected with a mounting box. A storage chamber is opened in the mounting box. The storage chamber is filled with cleaning rubber. A push plate is slidably connected in the mounting box. An outlet is opened on the side of the mounting box close to the storage chamber. A number of uniformly distributed magnet A are fixedly connected to the side of the push plate away from the storage chamber.

[0008] Preferably, a mounting frame is slidably connected in the mounting box. A number of uniformly distributed magnet B are fixedly connected to the side of the mounting frame close to the push plate. One side of the mounting frame is rotatably connected with a screw rod. The end of the screw rod away from the mounting frame is fixedly connected with a mounting rod. A threaded sleeve is fixedly connected in the mounting box. The threaded sleeve is sleeved on the screw rod and is threadedly connected with it.

[0009] Preferably, the end of the mounting rod away from the screw rod is fixedly connected with an eccentric wheel. A limiting rod is fixedly connected to the side of the eccentric wheel away from the mounting rod.

[0010] Preferably, a limiting ring is rotatably connected on the side of the mounting box close to the eccentric wheel. The limiting ring is sleeved on the mounting rod and is slidably connected with it. A torsion spring is fixedly connected between the limiting ring and the mounting box.

[0011] Preferably, a detection wheel is rotatably connected on the inner wall of the mounting tube on the side close to the eccentric wheel. A number of annularly and uniformly distributed limiting plates are fixedly connected to the side of the detection wheel close to the eccentric wheel.

[0012] Preferably, a fixing seat is fixedly connected to the inner wall of the side of the mounting pipe away from the mounting box. A collecting box is slidably connected to the fixing seat. An installation plate is fixedly connected to the inner wall of the side of the mounting pipe close to the collecting box. The installation plate is located above the collecting box. A plurality of uniformly distributed hooks are fixedly connected to the side of the installation plate close to the belt. An arc-shaped guiding surface is arranged at the bottom of the hook.

[0013] Preferably, an upper pressing roller and a lower pressing roller are respectively rotatably connected to the side of the mounting pipe close to the mounting box. The upper pressing roller and the lower pressing roller are respectively located above and below the mounting box.

[0014] Preferably, the number of magnet B and magnet A is the same, and the magnetic poles of each magnet B and the magnet A at its corresponding position facing each other are the same.

[0015] Preferably, a lead screw is rotatably connected between the top side of the machine body and the clamp A through a frame body. The clamp B is threadedly connected to the lead screw. A motor A is fixedly connected to the top side of the machine body. The output end of the motor A is fixedly docked with one end of the lead screw.

[0016] Compared with the prior art, the beneficial effects of the present invention are as follows:

[0017] 1. In the present invention, the cleaning glue is covered on the belt. During the boring process, since the driving wheel contacts the inner wall of the hole of the aluminum profile tube, at this time, the driving wheel can rotate along the inner wall of the hole of the aluminum profile tube, and the driving roller and the driven roller are used to drive the belt to rotate. At this time, the belt drives the cleaning glue covered on its surface to move along. During this process, the cleaning glue can continuously expose from the communication port and adsorb and clean the debris on the inner wall of the hole of the aluminum profile tube, avoiding the problem that the debris in the hole is not processed in time when the traditional device bores a deeper hole, which affects the boring accuracy.

[0018] 2. During the rotation of the belt, the cleaning rubber on its surface drives the detection wheel to rotate. The limit plate and the limit rod cooperate to drive the screw rod and the mounting rod to rotate. Through the cooperation of the screw rod and the threaded sleeve, the mounting frame is driven to move, causing magnet B to be misaligned with magnet A. When the cleaning rubber on the belt is worn out, the cleaning rubber will separate from the detection wheel. At this time, the driving force received by the detection wheel disappears. Using the resilience of the torsion spring, the mounting rod and the screw rod are driven to rotate back to their original positions. Through the cooperation of the screw rod and the threaded sleeve, the mounting frame returns to its original position. At this time, using the principle of like poles repelling each other between magnet B and magnet A, the cleaning rubber in the storage chamber is extruded by the push plate to complete the replenishment work of the cleaning rubber on the belt. After replenishment, the cleaning rubber on the belt can contact the detection wheel again, thereby driving the screw rod and the mounting rod to continue rotating, causing the mounting frame to shift, making magnet B and magnet A misaligned. At this time, the extrusion work of the cleaning rubber in the storage chamber can be stopped, avoiding the problem that after the cleaning rubber on the belt is worn out due to use and cannot contact the debris in the holes of the aluminum profile tube, resulting in the inability to complete the debris cleaning work, effectively improving the auxiliary function of the device for debris treatment during the boring process;

[0019] 3. During the rotation of the belt, the debris attached to the belt can be cleaned through the hook. At the same time, through the arc-shaped guiding surface of the hook, when the hook catches the debris, it can cooperate with the movement of the belt to guide the debris in the cleaning rubber to make it more smoothly collected into the collection box. At the same time, when the cleaning rubber on the belt passes through the hook, the hook will damage the flatness of its surface. Then, after being extruded by the upper pressure roller, the cleaning rubber is flattened again. During this process, the internal cleaning rubber can be turned out to avoid the problem that the adsorption effect on debris decreases due to more dust adsorbed on the surface of the cleaning rubber. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 is a schematic diagram of the overall structure of the present invention;

[0021] Figure 2 is a schematic diagram of the structure of the mounting seat of the present invention;

[0022] Figure 3 is a schematic diagram of the bottom structure of the mounting tube of the present invention;

[0023] Figure 4 is a schematic sectional view of the mounting tube of the present invention;

[0024] Figure 5 is a schematic diagram of the structure of the collection box of the present invention;

[0025] Figure 6 is a schematic diagram of the structure of the mounting box of the present invention;

[0026] Figure 7 is a schematic diagram of the structure of the eccentric wheel and its transmission components of the present invention;

[0027] Figure 8 Schematic diagram of the detection wheel structure of the present invention;

[0028] Figure 9 Schematic diagram of the sectional structure of the installation box of the present invention;

[0029] Figure 10 Schematic diagram of the side transmission structure of the eccentric wheel and the detection wheel of the present invention;

[0030] Figure 11 For the present invention Figure 5 Schematic diagram of the enlarged structure of area A shown;

[0031] Figure 12 For the present invention Figure 9 Schematic diagram of the enlarged structure of area B shown.

[0032] In the figure: 1, body; 11, guide rod; 12, clamp A; 13, aluminum profile tube; 14, lead screw; 15, motor A; 2, clamp B; 21, motor B; 22, mounting seat; 23, boring tool; 3, mounting tube; 31, communication port; 32, upper pressure roller; 33, lower pressure roller; 4, driving roller; 41, driving roller; 42, belt; 43, transmission wheel; 5, fixed seat; 51, collection box; 52, mounting plate; 53, hook; 6, installation box; 61, storage chamber; 62, push plate; 63, discharge port; 64, magnet A; 7, mounting frame; 71, magnet B; 72, screw; 73, mounting rod; 74, threaded sleeve; 8, limit ring; 81, torsion spring; 82, eccentric wheel; 83, limit rod; 9, detection wheel; 91, limit plate. Detailed implementation manners

[0033] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0034] Please refer to Figures 1-12, the present invention provides a technical solution: a boring auxiliary device for deep processing of aluminum profiles, including a machine body 1. At the top of the machine body 1, two guide rods 11 are fixedly connected through a frame. Between the ends of the two guide rods 11 away from the machine body 1, a clamp A 12 is fixedly connected. An aluminum profile tube 13 is clamped on the clamp A 12. A hole is provided on the aluminum profile tube 13. A clamp B 2 is slidably connected between the two guide rods 11. A motor B 21 is clamped on the clamp B 2. The output end of the motor B 21 is fixedly connected with a mounting seat 22. On the side of the mounting seat 22 close to the aluminum profile tube 13, a boring tool 23 is fixedly connected. The boring tool 23 is located in the hole of the aluminum profile tube 13. On one side of the top of the machine body 1, a lead screw 14 is rotatably connected between the frame and the clamp A 12 through a frame. The clamp B 2 is threadedly connected with the lead screw 14. On one side of the top of the machine body 1, a motor A 15 is fixedly connected. The output end of the motor A 15 is fixedly butted with one end of the lead screw 14.

[0035] Further, first, the aluminum profile tube 13 is drilled. After the drilling of the aluminum profile tube 13 is completed, the aluminum profile tube 13 is clamped and fixed by the clamp A 12. Then, according to the inner diameter of the hole on the aluminum profile tube 13, the position of the boring tool 23 is determined and installed. After that, the motor B 21 is started to drive the mounting seat 22 to rotate, and the mounting seat 22 drives the boring tool 23 to rotate to perform the boring operation. At this time, the motor A 15 is started again to drive the lead screw 14 to rotate, and the lead screw 14 is used to complete the transmission work of the clamp B 2, so that the motor B 21 drives the boring tool 23 to penetrate along the hole of the aluminum profile tube 13 to complete the boring work on the deep part of the hole of the aluminum profile tube 13.

[0036] Combined with attached Figure 2 、 Figure 3 and Figure 4 As shown, on the side of the mounting seat 22 close to the aluminum profile tube 13, a mounting tube 3 is fixedly connected through a bracket. On the side of the mounting tube 3 close to the inner wall of the aluminum profile tube 13, a communication port 31 is provided. A driving roller 4 is rotatably connected in the mounting tube 3. A driving roller 41 is rotatably connected on the side of the mounting tube 3 close to the communication port 31. A belt 42 is sleeved between the driving roller 4 and the driving roller 41. A number of uniformly distributed limiting strips are provided on the outer surface of the belt 42. A cleaning rubber is laid and wrapped on the outer surface of the belt 42. By setting the limiting strips, the cleaning rubber can be more stably attached to the surface of the belt 42, avoiding the problem that the cleaning rubber on the surface of the belt 42 is easily detached during the rotation of the belt 42. On the side of the mounting tube 3 away from the mounting seat 22, a transmission wheel 43 is rotatably connected. The transmission wheel 43 is fixedly butted with the rotating shaft of the driving roller 4. The transmission wheel 43 is in contact with the inner wall of the hole of the aluminum profile tube 13.

[0037] Further, before boring the hole, disassemble the installation pipe 3, then lay an appropriate amount of cleaning glue on the belt 42, and then install the installation pipe 3. Determine the position of the installation pipe 3 according to the inner diameter of the hole in the aluminum profile pipe 13, and install it on the mounting seat 22 to ensure that the cleaning glue on the belt 42 can fit the inner wall of the hole in the aluminum profile pipe 13. During the boring process, the driving wheel 43 rubs against the inner wall of the hole in the aluminum profile pipe 13, causing the driving wheel 43 to rotate. At this time, during the rotation of the driving wheel 43, it can drive the driving roller 4 connected to it to rotate. When the driving roller 4 rotates, it can cooperate with the driving roller 41 to drive the belt 42 to rotate. At this time, the cleaning glue moving with the belt 42 can be used to adsorb the debris generated after boring, completing the cleaning work of the debris on the inner wall of the hole in the aluminum profile pipe 13.

[0038] Combined with the attached Figure 6 、 Figure 7 、 Figure 8 、 Figure 9 、 Figure 10 and Figure 12 As shown, on one side of the inner wall of the installation pipe 3, there is a fixed connection with an installation box 6. Inside the installation box 6, there is a storage chamber 61. The storage chamber 61 is filled with cleaning glue. A push plate 62 is slidably connected inside the installation box 6. On one side of the installation box 6 close to the storage chamber 61, there is a discharge port 63. On the side of the push plate 62 away from the storage chamber 61, there are fixedly connected a number of evenly distributed magnets A64. An installation frame 7 is slidably connected inside the installation box 6. On the side of the installation frame 7 close to the push plate 62, there are fixedly connected a number of evenly distributed magnets B71. The number of magnets B71 is the same as that of magnets A64. The magnetic poles of each magnet B71 and the magnet A64 at its corresponding position facing each other are the same. Before using this device, it is necessary to ensure that the magnets B71 and the magnets A64 are in a misaligned distribution state to avoid the problem that the push plate 62 squeezes out the cleaning glue in the storage chamber 61 during the installation process. One side of the installation frame 7 is rotatably connected with a screw rod 72. The end of the screw rod 72 away from the installation frame 7 is fixedly connected with an installation rod 73. Inside the installation box 6, there is a fixedly connected threaded sleeve 74. The threaded sleeve 74 is sleeved on the screw rod 72 and is threadedly connected to it. The end of the installation rod 73 away from the screw rod 72 is fixedly connected with an eccentric wheel 82. On the side of the eccentric wheel 82 away from the installation rod 73, there is a fixedly connected limit rod 83. On one side of the installation box 6 close to the eccentric wheel 82, there is a rotatably connected limit ring 8. The limit ring 8 is sleeved on the installation rod 73 and is slidably connected to it. A torsion spring 81 is fixedly connected between the limit ring 8 and the installation box 6. On the inner wall of the installation pipe 3 close to the eccentric wheel 82, there is a rotatably connected detection wheel 9. On the side of the detection wheel 9 close to the eccentric wheel 82, there are fixedly connected a number of annularly evenly distributed limit plates 91.

[0039] Further, before using the device, open the installation box 6, put an appropriate amount of cleaning glue into the storage chamber 61. When using the device, when there is enough cleaning glue on the belt 42, the cleaning glue will contact the detection wheel 9 and drive the detection wheel 9 to rotate with the running effect of the belt 42. At this time, the detection wheel 9 drives the limiting plate 91 connected to it to rotate synchronously. During the rotation of the limiting plate 91, the limiting plate 91 adjacent to the limiting rod 83 on the eccentric wheel 82 will contact it, and cooperate with the limiting rod 83 to drive the eccentric wheel 82 to rotate with the rotation of the detection wheel 9. At this time, the eccentric wheel 82 can drive the mounting rod 73 and the screw rod 72 to rotate. During the rotation of the screw rod 72, it can move along the threaded sleeve 74, thereby driving the mounting frame 7 to move. At this time, the mounting frame 7 drives the magnet B71 to move. At this time, the magnet B71 and the magnet A64 are misaligned. During the rotation of the mounting rod 73, it can drive the limiting ring 8 to rotate and tighten the torsion spring 81. Due to the position of the rotating shaft of the eccentric wheel 82, when the eccentric wheel 82 rotates, it does not rotate around its center. Therefore, after the eccentric wheel 82 rotates a certain angle, the distance between the limiting rod 83 and the center of the detection wheel 9 increases, and at this time, it will separate from the limiting plate 91. Since the extrusion force of the limiting rod 83 by the limiting plate 91 disappears at this time, the torsion spring 81 starts to rebound, drives the limiting ring 8 to rotate back, and drives the mounting rod 73 and the screw rod 72 to rotate in the reverse direction by using the limiting ring 8. During the reverse rotation of the screw rod 72, it will move along the threaded sleeve 74 into the installation box 6 and drive the mounting frame 7 to move back to the original position. At this time, since the cleaning glue on the belt 42 still contacts the detection wheel 9, the detection wheel 9 can continue to rotate. During the process of the eccentric wheel 82 rotating back with the mounting rod 73, the distance between the limiting rod 83 and the center of the detection wheel 9 will become closer. At this time, the limiting plate 91 can be reattached to the limiting rod 83 and continue to drive the eccentric wheel 82 to rotate. At this time, it can ensure that the mounting frame 7 is always moving back and forth at a relatively small distance. Within this distance, the magnet B71 and the magnet A64 are always misaligned. When a part of the cleaning glue on the belt 42 is consumed, at this time, the cleaning glue on the belt 42 will separate from the detection wheel 9. After the detection wheel 9 loses the driving force, it starts to stop moving. At this time, the torsion spring 81 starts to rebound and drives the eccentric wheel 82 to rotate back. Using the force generated by the rebound of the torsion spring 81, the limiting rod 83 pushes the limiting plate 91 to rotate, thereby driving the detection wheel 9 to rotate in the reverse direction. At this time, since the limiting force of the limiting plate 91 disappears, the torsion spring 81 can completely rebound to the initial state, drive the screw rod 72 and the mounting rod 73 to rotate back, and drive the mounting frame 7 to completely return to the original position by using the cooperation of the screw rod 72 and the threaded sleeve 74. At this time, based on the principle of like poles repelling each other between the magnet B71 and the magnet A64, the push plate 62 extrudes the cleaning glue in the storage chamber 61 from the discharge port 63, and the extruded cleaning glue is mixed with the cleaning glue on the belt 42 to supplement the cleaning glue on the belt 42. When the cleaning glue on the belt 42 is supplemented,It can also come into contact with the detection wheel 9 and continue to drive the detection wheel 9 to rotate. At this time, through the re-rotated detection wheel 9, the limit plate 91 is continuously driven to rotate, and the limit plate 91 is used in cooperation with the limit rod 83 to drive the eccentric wheel 82 to rotate, thereby driving the mounting rod 73 and the screw rod 72 to rotate. At this time, the screw rod 72 will move out of the mounting box 6 along the threaded sleeve 74 and drive the mounting frame 7 to move. At this time, the magnet B 71 and the magnet A 64 are again misaligned, and the extrusion of the cleaning glue in the storage chamber 61 by the push plate 62 can be stopped.

[0040] Combined with the attached Figure 5 and Figure 11 As shown, a fixed seat 5 is fixedly connected to the inner wall of the side of the mounting pipe 3 away from the mounting box 6. A collection box 51 is slidably connected to the fixed seat 5. An installation plate 52 is fixedly connected to the inner wall of the mounting pipe 3 close to the collection box 51. The installation plate 52 is located above the collection box 51. A plurality of evenly distributed hooks 53 are fixedly connected to the side of the installation plate 52 close to the belt 42. The bottom of the hook 53 is provided with an arc-shaped guiding surface. The bottom of the hook 53 is an arc-shaped structure and has a guiding function. After the debris contacts the hook 53, the arc-shaped structure will guide the debris so that the debris can better fall into the collection box 51.

[0041] Furthermore, during the rotation of the belt 42, the cleaning glue covering its surface will adsorb the debris. When this part of the cleaning glue passes through the installation plate 52, the hook 53 will penetrate into the cleaning glue and cooperate with the moving cleaning glue with the bottom of its arc-shaped structure to export the debris in the cleaning glue and make the debris fall into the collection box 51 for subsequent centralized treatment. Through this, the debris in the cleaning glue can be cleaned, so that the cleaning glue on the belt 42 can continuously and repeatedly clean the debris in the aluminum profile tube 13.

[0042] Combined with the attached Figure 4 and Figure 6 As shown, a upper pressure roller 32 and a lower pressure roller 33 are respectively rotatably connected to the side of the mounting pipe 3 close to the mounting box 6. The upper pressure roller 32 and the lower pressure roller 33 are respectively located above and below the mounting box 6.

[0043] Furthermore, the upper pressure roller 32 can flatten the cleaning glue on the belt 42 whose surface flatness has been damaged by the hook 53 to avoid affecting the detection effect on the detection wheel 9 due to the uneven surface of the cleaning glue. The lower pressure roller 33 can flatten and even out the cleaning glue in the storage chamber 61 after it is mixed with the cleaning glue on the belt 42, so that after the cleaning glue in the storage chamber 61 is extruded, it can quickly be mixed with the cleaning glue on the belt 42 and ensure that the surface of the cleaning glue on the belt 42 is in a relatively flat state, avoiding the problem that after the cleaning glue in the storage chamber 61 is extruded, the cleaning glue on the belt 42 is unevenly distributed, affecting the detection effect of the detection wheel 9 and the normal cleaning effect of the cleaning glue.

[0044] Working principle: First, drill holes in the aluminum profile tube 13. After the drilling of the aluminum profile tube 13 is completed, place the machine body 1 at the designated working position and power it on. Then, use the clamp A12 to clamp and fix the aluminum profile tube 13. After that, determine and install the position of the boring tool 23 according to the inner diameter of the holes on the aluminum profile tube 13. Then, disassemble the installation tube 3, open the installation box 6, put an appropriate amount of cleaning glue in the storage chamber 61, and then lay an appropriate amount of cleaning glue on the belt 42. Then, install the installation tube 3 and determine the position of the installation tube 3 according to the size of the inner diameter of the holes in the aluminum profile tube 13, and install it on the installation seat 22 to ensure that the cleaning glue on the belt 42 can fit with the inner wall of the holes in the aluminum profile tube 13;

[0045] Then start the motor B21 to drive the installation seat 22 to rotate, use the installation seat 22 to drive the boring tool 23 to rotate, and perform the boring operation. At this time, start the motor A15 to drive the lead screw 14 to rotate, use the lead screw 14 to complete the transmission work of the clamp B2, and make the motor B21 drive the boring tool 23 to penetrate along the holes in the aluminum profile tube 13 to complete the boring work on the deep part of the holes in the aluminum profile tube 13;

[0046] During the boring process, the driving wheel 43 rubs against the inner wall of the holes in the aluminum profile tube 13, causing the driving wheel 43 to rotate. At this time, during the rotation of the driving wheel 43, it can drive the driving roller 4 connected to it to rotate. When the driving roller 4 rotates, it can cooperate with the transmission roller 41 to drive the belt 42 to rotate. At this time, the cleaning glue moving with the belt 42 can be used to adsorb the debris generated after boring, and complete the cleaning work of the debris on the inner wall of the holes in the aluminum profile tube 13;

[0047] When the cleaning glue mixed with debris passes through the mounting plate 52, the debris in the cleaning glue can be hooked out through the hook 53, and the debris falls into the collection box 51 for convenient subsequent centralized treatment. Through this, the debris in the cleaning glue can be cleaned. Then, as the belt 42 continues to rotate, the upper pressure roller 32 can flatten the cleaning glue on the belt 42 whose surface flatness has been damaged by the hook 53;

[0048] During this process, the surface of the cleaning rubber is detected by the detection wheel 9. When the cleaning rubber is consumed, the surface of the cleaning rubber will separate from the detection wheel 9. At this time, since the detection wheel 9 loses the power provided by the cleaning rubber during movement, the detection wheel 9 stops rotating. At this time, the torsion spring 81 starts to rebound and drives the eccentric wheel 82 to rotate back. At this time, since the force limiting the position of the limiting plate 91 disappears, the torsion spring 81 can completely rebound to its initial state, driving the screw rod 72 and the mounting rod 73 to rotate back. By using the cooperation between the screw rod 72 and the threaded sleeve 74, the mounting bracket 7 is completely returned to its original position. At this time, the magnet B71 and the magnet A64 are aligned with each other. Since the magnet B71 and the magnet A64 face the same sex, according to the principle of like poles repelling each other, the push plate 62 can be pushed to move, so as to extrude the cleaning rubber in the storage chamber 61 from the discharge port 63 to supplement the cleaning rubber on the belt 42. As the belt 42 moves, the pressing roller 33 presses and levels the mixture of the cleaning rubber in the storage chamber 61 and the cleaning rubber on the belt 42, and then the chips generated during the boring process can be continuously collected.

[0049] It should be noted that in this article, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the term "comprises", "comprising" or any other variation thereof is intended to cover a non-exclusive inclusion, such that a process, method, article or device comprising a series of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article or device.

[0050] Although the embodiments of the present invention have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A boring tool and hole-boring auxiliary equipment for deep processing of aluminum profiles, comprising a body (1), the top of the body (1) is fixedly connected to two guide rods (11) through a frame, a clamp A (12) is fixedly connected between the ends of the two guide rods (11) away from the body (1), an aluminum profile tube (13) is clamped on the clamp A (12), a clamp B (2) is slidably connected between the two guide rods (11), a motor B (21) is clamped on the clamp B (2), an output end of the motor B (21) is fixedly connected to a mounting seat (22), and a boring tool (23) is fixedly connected to the side of the mounting seat (22) close to the aluminum profile tube (13), characterized in that: The side of the mounting seat (22) close to the aluminum profile tube (13) is fixedly connected to the mounting tube (3) through a bracket, the side of the mounting tube (3) close to the inner wall of the aluminum profile tube (13) is provided with a communication port (31), the inside of the mounting tube (3) is rotatably connected to a driving roller (4), the side of the mounting tube (3) close to the communication port (31) is rotatably connected to a transmission roller (41), a belt (42) is sleeved between the driving roller (4) and the transmission roller (41), the outer surface of the belt (42) is provided with a plurality of evenly distributed limit strips, the outer surface of the belt (42) is paved and wrapped with cleaning glue, the side of the mounting tube (3) away from the mounting seat (22) is rotatably connected to a transmission wheel (43), and the transmission wheel (43) is fixedly connected to the rotating shaft of the driving roller (4).

2. The boring tool and hole-boring auxiliary equipment for deep processing of aluminum profiles according to claim 1, characterized in that: A mounting box (6) is fixedly connected to one side of the inner wall of the mounting tube (3), a storage chamber (61) is provided in the mounting box (6), cleaning glue is contained in the storage chamber (61), a push plate (62) is slidably connected to the mounting box (6), a discharge port (63) is provided on a side of the mounting box (6) close to the storage chamber (61), and a plurality of uniformly distributed magnets A (64) are fixedly connected to a side of the push plate (62) away from the storage chamber (61).

3. The boring tool and hole-boring auxiliary equipment for deep processing of aluminum profiles according to claim 2, characterized in that: A mounting frame (7) is slidably connected inside the mounting box (6); a side of the mounting frame (7) close to the push plate (62) is fixedly connected to a plurality of evenly distributed magnets B (71); one side of the mounting frame (7) is rotatably connected to a screw rod (72); an end of the screw rod (72) away from the mounting frame (7) is fixedly connected to a mounting rod (73); a threaded sleeve (74) is fixedly connected inside the mounting box (6); the threaded sleeve (74) is sleeved on the screw rod (72) and is threadedly connected thereto.

4. The boring tool and hole-boring auxiliary equipment for deep processing of aluminum profiles according to claim 3 is characterized in that: An end of the installation rod (73) away from the screw rod (72) is fixedly connected to an eccentric wheel (82), and a side of the eccentric wheel (82) away from the installation rod (73) is fixedly connected to a limiting rod (83).

5. The boring tool and hole-boring auxiliary equipment for deep processing of aluminum profiles according to claim 4, characterized in that: The side of the installation box (6) close to the eccentric wheel (82) is rotatably connected to a limit ring (8), the limit ring (8) is sleeved on the installation rod (73) and slidably connected thereto, and a torsion spring (81) is fixedly connected between the limit ring (8) and the installation box (6).

6. The boring tool and hole-boring auxiliary equipment for deep processing of aluminum profiles according to claim 5, characterized in that: The inner wall of the mounting tube (3) close to the eccentric wheel (82) is rotatably connected to a detection wheel (9), and the detection wheel (9) close to the eccentric wheel (82) is fixedly connected to a plurality of evenly distributed limiting plates (91) in an annular shape.

7. The boring tool and hole-boring auxiliary equipment for deep processing of aluminum profiles according to claim 2, characterized in that: A fixing seat (5) is fixedly connected to the inner wall of the mounting tube (3) at a side away from the mounting box (6); a collecting box (51) is slidably connected to the fixing seat (5); a mounting plate (52) is fixedly connected to the inner wall of the mounting tube (3) at a side close to the collecting box (51); the mounting plate (52) is located above the collecting box (51); a plurality of evenly distributed hooks (53) are fixedly connected to the side of the mounting plate (52) close to the belt (42); and an arc-shaped guide surface is provided at the bottom of each hook (53).

8. The boring tool and hole-boring auxiliary equipment for deep processing of aluminum profiles according to claim 2, characterized in that: An upper pressing roller (32) and a lower pressing roller (33) are rotatably connected to one side of the installation tube (3) close to the installation box (6); the upper pressing roller (32) and the lower pressing roller (33) are respectively located above and below the installation box (6).

9. The boring tool and hole-boring auxiliary equipment for deep processing of aluminum profiles according to claim 3, characterized in that: The number of the magnets B (71) and the number of the magnets A (64) are the same, and the magnetic poles of each magnet B (71) and the magnet A (64) at the corresponding position thereof are the same.

10. The boring tool and hole-boring auxiliary equipment for deep processing of aluminum profiles according to claim 1, characterized in that: A screw rod (14) is rotatably connected to one side of the top of the machine body (1) through a frame and a clamp A (12); the clamp B (2) is threadedly connected to the screw rod (14); a motor A (15) is fixedly connected to one side of the top of the machine body (1); and an output end of the motor A (15) is fixedly connected to one end of the screw rod (14).