Efficient boring machine with rapid cutter

By designing protective side plates and a servo motor-driven bidirectional lead screw system on the boring machine, the problem of chip splashing on the boring machine was solved, achieving safety protection and automatic chip cleaning, and improving production efficiency.

CN223917408UActive Publication Date: 2026-02-17TAICANG XURAN MACHINERY
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Patent Information

Application Number
CN202520313417.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-26
Publication Date
2026-02-17
Estimated Expiration
2035-02-26

AI Technical Summary

Technical Problem

Traditional boring machines cause safety threats and cleaning difficulties due to the flying debris during high-speed cutting, and existing protective structures affect cleaning efficiency.

Method used

A high-efficiency boring machine with a fast cutting tool was designed. It adopts a protective side plate and a two-way ball screw system driven by a servo motor. The protective side plate prevents debris from splashing when not in use and automatically collects debris into the collection trough when in use.

Benefits of technology

It effectively prevents debris from flying, ensuring safety, and speeds up the cleaning process by automatically removing debris, thereby improving production efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an efficient boring machine with a rapid cutter, and relates to the technical field of boring machines, the efficient boring machine comprises a bottom plate, a boring machine body and a boring cutter, the top surface of the bottom plate is fixedly provided with a first mounting column and a second mounting column, the first mounting column is internally provided with a limiting notch, and the limiting notch is internally provided with a slidable limiting block; according to the boring cutter, the protective side plate is arranged, the side face of the bottom end of the protective side plate can be connected with the rotatable connecting rod, finally, the top end of the protective side plate is fixedly connected with the connecting block, and the connecting block is hinged to the interior of the connecting piece, so that chippings generated in the using process of the boring cutter can be prevented from splashing when the protective side plate is not used; and in the using process, chippings can be collected and concentrated into the material collecting groove, so that the device can automatically complete chipping cleaning, the cleaning speed is increased, the chippings are prevented from influencing work of the device, and the overall working speed is increased.
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Description

Technical Field

[0001] This utility model relates to the field of boring machine technology, specifically to a high-efficiency boring machine with a fast cutting tool. Background Technology

[0002] With the widespread demand for modern machining, boring machines, as important metal cutting equipment, are receiving increasing attention for their performance and safety. Traditional boring machines often produce flying debris during high-speed cutting, which not only pollutes the working environment but, more importantly, poses a direct safety threat to operators. Furthermore, the scattered debris increases the difficulty of subsequent cleanup, impacting production efficiency.

[0003] Existing boring machines with protective structures often use simple protective nets or plates to prevent debris from flying. While this can effectively prevent debris from flying, it hinders the cleaning of debris, reduces cleaning efficiency, and affects the normal use of the equipment.

[0004] Therefore, a high-efficiency boring machine with a fast cutting tool is provided to overcome the above-mentioned defects. Utility Model Content

[0005] The purpose of this invention is to provide a high-efficiency boring machine with a fast cutting tool to solve the problems mentioned in the background art.

[0006] To solve the above-mentioned technical problems, this utility model provides a high-efficiency boring machine with a fast cutting tool, including a base plate, a boring machine body, and a boring tool. A first mounting column and a second mounting column are fixedly installed on the top surface of the base plate. A limit slot is formed inside the first mounting column, and a slidable limit block is installed inside the limit slot. A connecting piece is fixedly installed on the side wall of the limit block, and a connecting block is hinged to the inner wall of the connecting piece. A protective side plate is fixedly connected to the bottom end of the connecting block. A servo motor is fixedly installed on the outer wall of the first mounting column. A bidirectional lead screw is driven to one side of the servo motor. A moving block is threaded to the outer wall of the bidirectional lead screw. A connecting rod is fixedly connected to one side of the moving block, and the other end of the connecting rod is rotatably connected to the protective side plate.

[0007] Furthermore, a material collection groove is provided on the top surface of the base plate, and a rubber scraper is fixedly connected to the bottom of the protective side plate.

[0008] Furthermore, the specific shape of the limiting slot and the limiting block is "convex".

[0009] Furthermore, the number of the movable block and the protective side plate is two, and the two movable blocks are initially set on both sides of the outer wall of the bidirectional lead screw.

[0010] Furthermore, the rubber scraper fixedly connected to the bottom of the protective side plate is tightly attached to the top surface of the base plate in the initial state.

[0011] Furthermore, the sum of the heights of the two protective side panels is less than the specific width of the base plate.

[0012] Compared with the prior art, the beneficial effects of this utility model are:

[0013] By setting up a protective side plate, and having a rotatable connecting rod connected to the bottom side of the protective side plate, and finally setting a connecting block fixedly connected to the top of the protective side plate and hinged inside the connecting piece, the protective side plate can prevent the debris generated by the boring tool during use from flying when not in use, ensuring the safety of relevant personnel. When in use, the debris can be collected and concentrated inside the collection trough, allowing the device to automatically complete the debris cleaning, speeding up the cleaning process, preventing debris from affecting the operation of the device, and accelerating the overall working speed. Attached Figure Description

[0014] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0015] Figure 2 This is a three-dimensional structural diagram of the rear side of this utility model;

[0016] Figure 3 This is a top view of the structure of this utility model;

[0017] Figure 4 for Figure 3 A schematic diagram of the cross-sectional structure at point BB.

[0018] In the diagram: 1. Base plate; 2. Boring machine body; 3. Boring tool; 4. First mounting column; 5. Protective side plate; 6. Second mounting column; 7. Material collection trough; 8. Two-way lead screw; 9. Moving block; 10. Servo motor; 11. Connecting piece; 12. Connecting block; 13. Limiting slot; 14. Limiting block; 15. Connecting rod. Detailed Implementation

[0019] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0020] Example 1

[0021] See Figure 1-4A high-efficiency boring machine with a fast cutting tool includes a base plate 1, a boring machine body 2, and a boring tool 3. A first mounting post 4 and a second mounting post 6 are fixedly installed on the top surface of the base plate 1. A limit slot 13 is opened inside the first mounting post 4. A slidable limit block 14 is installed inside the limit slot 13. A connecting piece 11 is fixedly installed on the side wall of the limit block 14. A connecting block 12 is hinged to the inner wall of the connecting piece 11. A protective side plate 5 is fixedly connected to the bottom end of the connecting block 12. A servo motor 10 is fixedly installed on the outer wall of the first mounting post 4. A bidirectional lead screw 8 is driven and connected to one side of the servo motor 10. A moving block 9 is threadedly connected to the outer wall of the bidirectional lead screw 8. A connecting rod 15 is fixedly connected to one side of the moving block 9. The other end of the connecting rod 15 is rotatably connected to the protective side plate 5.

[0022] Furthermore, a material collection groove 7 is provided on the top surface of the base plate 1, and a rubber scraper is fixedly connected to the bottom of the protective side plate 5. The rubber scraper fixedly connected to the bottom of the protective side plate 5 is tightly attached to the top surface of the base plate 1 in the initial state. By setting the rubber scraper fixedly connected to the bottom of the protective side plate 5 and setting the rubber scraper to be tightly attached to the top surface of the base plate 1 in the initial state, the bottom of the protective side plate 5 can sweep away the debris through the rubber scraper attached to the top surface of the base plate 1 during the movement.

[0023] Furthermore, the limiting slot 13 and the limiting block 14 are specifically convex in shape. By setting the limiting slot 13 and the limiting block 14 to be convex in shape, and setting the outer side of the limiting block 14 to be fixedly connected to the connecting piece 11, and the inner wall of the connecting piece 11 to be hinged to the connecting block 12 fixedly connected to the top surface of the protective side plate 5, the bottom of the protective side plate 5 is limited and guided during the driving process, and can only move along the trajectory of the limiting slot 13.

[0024] In addition, there are two movable blocks 9 and two protective side plates 5. In the initial state, the two movable blocks 9 are set on both sides of the outer wall of the bidirectional lead screw 8. By setting the specific number of movable blocks 9 to two and setting the two movable blocks 9 on both sides of the outer wall of the bidirectional lead screw 8 in the initial state, the two movable blocks 9 can move synchronously towards the middle position of the bidirectional lead screw 8 after the bidirectional lead screw 8 is rotated.

[0025] It should be noted that the sum of the heights of the two protective side plates 5 is lower than the specific width of the base plate 1. By setting the sum of the heights of the two protective side plates 5 to be lower than the specific width of the base plate 1, the two protective side plates 5 will not interfere with each other when they are moved to a horizontal state by the moving block 9.

[0026] In practice, during the normal operation of the boring machine body 2 and the boring tool 3, it is not necessary to start other parts of the device. During the operation of the boring tool 3, the chips generated by cutting the parts are directly blocked by two symmetrically arranged blocks during the splashing process, preventing the splashing chips from directly affecting the safety of relevant personnel.

[0027] After machining some parts, when it is necessary to clean the debris on the top surface of the base plate 1, the user can directly start the servo motor 10. After the servo motor 10 starts, it will drive the bidirectional lead screw 8 to rotate. After the bidirectional lead screw 8 rotates, the two moving blocks 9 threaded to the outer wall of the bidirectional lead screw 8 will be driven to move towards the middle position of the bidirectional lead screw 8. One side of the moving block 9 is fixedly connected to the connecting rod 15, and the other end of the connecting rod 15 is rotatably connected to the protective side plate 5. Therefore, during the movement of the moving block 9, the bottom end of the protective side plate 5 will be moved by the moving block 9. As the protective side plate 5 moves, it tilts first, and the rubber scraper connected to its bottom continuously collects debris from the top surface of the base plate 1 during the movement of the bottom of the protective side plate 5. As the bottom of the protective side plate 5 continues to move, the top of the protective side plate 5 will descend along the trajectory of the limiting groove 13. The tilt angle of the protective side plate 5 will change during the movement until the protective side plate 5 moves to a horizontal state. The rubber scraper connected to the bottom of the protective side plate 5 will then concentrate the debris into the collection trough 7 opened between the two protective side plates 5.

[0028] By setting a protective side plate 5, and setting a rotatable connecting rod 15 that can be connected to the bottom side of the protective side plate 5, and finally setting a connecting block 12 that is fixedly connected to the top of the protective side plate 5 and hinged to the inside of the connecting piece 11, the protective side plate 5 can prevent the debris generated by the boring tool 3 from flying during use when it is not in use, thus ensuring the safety of relevant personnel. When in use, the debris can be collected and concentrated in the inside of the collection trough 7, so that the device can automatically complete the debris cleaning, speed up the cleaning speed, prevent the debris from affecting the operation of the device, and speed up the overall working speed.

[0029] Working principle: During the normal operation of the boring machine body 2 and the boring tool 3, there is no need to start other parts of the device. When the boring tool 3 is cutting the workpiece, the chips generated are blocked by two symmetrically set blocks during the splashing process, preventing the splashing chips from directly affecting the safety of relevant personnel.

[0030] After machining some parts, when it is necessary to clean the debris on the top surface of the base plate 1, the user can directly start the servo motor 10. After the servo motor 10 starts, it will drive the bidirectional lead screw 8 to rotate. After the bidirectional lead screw 8 rotates, the two moving blocks 9 threaded to the outer wall of the bidirectional lead screw 8 will be driven to move towards the middle position of the bidirectional lead screw 8. One side of the moving block 9 is fixedly connected to the connecting rod 15, and the other end of the connecting rod 15 is rotatably connected to the protective side plate 5. Therefore, during the movement of the moving block 9, the bottom end of the protective side plate 5 will be moved by the moving block 9. As the protective side plate 5 moves, it tilts first, and the rubber scraper connected to its bottom continuously collects debris from the top surface of the base plate 1 during the movement of the bottom of the protective side plate 5. As the bottom of the protective side plate 5 continues to move, the top of the protective side plate 5 will descend along the trajectory of the limiting groove 13. The tilt angle of the protective side plate 5 will change during the movement until the protective side plate 5 moves to a horizontal state. The rubber scraper connected to the bottom of the protective side plate 5 will then concentrate the debris into the collection trough 7 opened between the two protective side plates 5.

[0031] By setting a protective side plate 5, and setting a rotatable connecting rod 15 that can be connected to the bottom side of the protective side plate 5, and finally setting a connecting block 12 that is fixedly connected to the top of the protective side plate 5 and hinged to the inside of the connecting piece 11, the protective side plate 5 can prevent the debris generated by the boring tool 3 from flying during use when it is not in use, thus ensuring the safety of relevant personnel. When in use, the debris can be collected and concentrated in the inside of the collection trough 7, so that the device can automatically complete the debris cleaning, speed up the cleaning speed, prevent the debris from affecting the operation of the device, and speed up the overall working speed.

Claims

1. A high efficiency boring machine for quick cutting knives comprising a base plate (1), a boring machine body (2) and a boring tool (3), characterized in that, The top surface of the bottom plate (1) is fixedly provided with a first mounting column (4) and a second mounting column (6), the inside of the first mounting column (4) is provided with a limiting notch (13), the inside of the limiting notch (13) is slidably provided with a limiting block (14), the side wall of the limiting block (14) is fixedly provided with a connecting sheet (11), the inner wall of the connecting sheet (11) is hingedly provided with a connecting block (12), the bottom end of the connecting block (12) is fixedly connected with a protective side plate (5), the outer wall of the first mounting column (4) is fixedly provided with a servo motor (10), one side of the servo motor (10) is drivingly connected with a bidirectional screw rod (8), the outer wall of the bidirectional screw rod (8) is threadedly connected with a moving block (9), one side of the moving block (9) is fixedly connected with a connecting rod (15), the other end of the connecting rod (15) is rotatably connected with the protective side plate (5).

2. A high speed boring machine for quick cutting knives as claimed in claim 1 wherein: The top surface of the bottom plate (1) is provided with a material collecting groove (7), the bottom of the protective side plate (5) is fixedly connected with a rubber scraping sheet.

3. A high speed boring machine for quick cutting knives as claimed in claim 2 wherein: The specific shape of the limiting notch (13) and the limiting block (14) is "convex".

4. A high speed boring machine for quick cutting knives as claimed in claim 3 wherein: The specific number of the moving block (9) and the protective side plate (5) is two, and the two moving blocks (9) are arranged on the two sides of the outer wall of the bidirectional screw rod (8) in the initial state.

5. The high speed boring machine for quick cutting knives as claimed in claim 2 wherein: The rubber scraping sheet fixedly connected with the bottom of the protective side plate (5) is closely attached to the top surface of the bottom plate (1) in the initial state.

6. A high speed boring machine for quick cutting knives as claimed in claim 4 wherein: The height sum of the two protective side plates (5) is lower than the specific width of the bottom plate (1).