High-efficiency high-speed engraving and milling machine

By combining sensors and thermal expansion and contraction rings on a high-speed engraving and milling machine, along with a water spray head cooling component, the problem of loose engraving and milling machine was solved. This enabled real-time monitoring and adjustment of the engraving and milling machine, improving processing stability and precision.

CN223477102UActive Publication Date: 2025-10-28DONGGUAN LINTAI CNC MASCH CO LTD
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Patent Information

Application Number
CN202423062400.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-12
Publication Date
2025-10-28
Estimated Expiration
2034-12-12

AI Technical Summary

Technical Problem

Existing high-speed CNC engraving machines cannot monitor the installation stability of the CNC engraving tool in real time, which leads to the CNC engraving tool becoming loose and affecting processing accuracy and efficiency.

Method used

The anti-loosening mechanism, consisting of sensors, springs, baffles, and contact heads, combined with thermal expansion and contraction rings and cooling components, monitors the installation status of the engraving and milling machine in real time and reminds the staff to make adjustments through the controller. It also uses water spray heads for cooling and protection.

Benefits of technology

It enables real-time monitoring and adjustment of the engraving and milling machine, avoiding engraving and milling errors and improving the stability and accuracy of processing.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223477102U_ABST
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Abstract

The utility model relates to the technical field of high-speed engraving and milling machines, and discloses a high-efficiency high-speed engraving and milling machine which comprises a machining table, an adjusting support, a replacement assembly, a containing groove, an inductor, a spring, a baffle and a contact head, and the top of the machining table is fixedly provided with the adjusting support. The cooling assembly can cool the engraving and milling position, heat misfire generated by friction in the engraving and milling process is prevented, the protection effect is achieved, an inductor, a spring, a baffle and a contact head are arranged, the baffle drives the contact head to be adjusted, when the contact head makes contact with the inductor, the inductor transmits a signal to a worker, and the worker is protected. The engraving and milling machine has the advantages that mounting looseness of the engraving and milling machine can be known by workers at the first time, engraving and milling errors caused by the fact that the engraving and milling machine is loosened and cannot be adjusted at the first time are prevented, machining of the engraving and milling machine is more stable, machining errors are avoided, and the machining effect of the high-efficiency high-speed engraving and milling machine is improved.
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Description

Technical Field

[0001] This utility model relates to the field of high-speed engraving and milling machine technology, and in particular to a high-efficiency high-speed engraving and milling machine. Background Technology

[0002] High-speed engraving and milling machines have high precision and high efficiency processing capabilities, and can process materials of various hardness, including metals, plastics, and wood. The processing effect is excellent, with high processing accuracy and surface finish. It can process quickly, thus improving production efficiency.

[0003] Chinese patent CN213351602U discloses a high-speed engraving and milling machine, including a worktable. A support plate is fixedly connected to the upper end of the worktable. A fan is fixedly connected to the left end of the support plate. A housing is bolted to the left end of the support plate. A pipe is slidably connected to the lower end of the housing. A positioning groove is provided at the right end of the pipe. A support rod is fixedly connected to the lower end of the housing. The support rod has a sliding groove, and a positioning rod is slidably connected within the sliding groove. The left end of the positioning rod engages with the positioning groove. Square blocks are symmetrically connected to the upper end of the worktable. A circular groove is provided at the left end of each square block, and a second spring is slidably connected within the circular groove. This high-speed engraving and milling machine, through the restoring action of the second spring, can securely clamp the processed material. It is easy to install and saves a significant amount of time. The machine is equipped with a dust collection box, allowing for timely cleaning of waste generated during engraving and milling. It is simple to operate and convenient for users.

[0004] However, the above solution cannot monitor the installation stability of the engraving and milling machine in real time, which means that the staff cannot know and adjust the machine in time if it becomes loose. Loose engraving and milling machine can easily cause errors in engraving and milling, which will affect the processing effect and reduce the processing accuracy of high-efficiency high-speed engraving and milling machine. Utility Model Content

[0005] The purpose of this invention is to provide a high-efficiency, high-speed engraving and milling machine to solve the problems mentioned in the background art.

[0006] To address the above problems, this utility model provides a technical solution:

[0007] A high-efficiency, high-speed engraving and milling machine includes a processing table, an adjusting bracket, a replacement component, a storage slot, a sensor, a spring, a baffle, and a contact head. The adjusting bracket is fixedly installed on the top of the processing table, and the replacement component is provided at the bottom of the adjusting bracket. The top of the replacement component has a storage slot, and the sensor is fixedly installed inside the storage slot. Multiple springs are fixedly installed inside the storage slot, and a baffle is fixedly installed on the top of each spring. A contact head is fixedly installed on the bottom of each baffle.

[0008] As a preferred embodiment of this utility model, a controller is fixedly installed on one side of the processing table, a cooling component is provided on one side of the replacement component, and a heat dissipation grid is fixedly installed on the other side of the processing table. The controller is electrically connected to the adjustment bracket, the sensor and the cooling component, and the heat dissipation grid can dissipate heat from the inside of the high-speed engraving and milling machine.

[0009] In a preferred embodiment of this utility model, the replacement component includes a connecting block, which is fixedly installed at the bottom of the adjusting bracket. A thermal expansion and contraction ring is fixedly installed inside the connecting block, and an insertion block is movably connected inside the thermal expansion and contraction ring. The insertion block and the connecting block are sized to match, and the internal space of the thermal expansion and contraction ring can be adjusted according to the temperature, which facilitates installation and disassembly.

[0010] As a preferred embodiment of this utility model, a reinforcing groove is provided at the outer end of the insertion block, and a milling tool is fixedly installed at the bottom of the insertion block. The reinforcing groove and the thermal expansion and contraction ring are movably connected, and the reinforcing groove plays a reinforcing role, making the installation more secure.

[0011] As a preferred embodiment of this utility model, the cooling component includes a support plate, which is fixedly installed on one side of the adjusting bracket. A universal seat is fixedly installed at the bottom of the support plate, and a universal ball is movably connected inside the universal seat. The universal ball can rotate 360 ​​degrees inside the universal seat to adjust the position of the water spray.

[0012] As a preferred embodiment of this utility model, a booster pump is fixedly installed at the bottom of the omnidirectional ball, a spray head is fixedly installed at the output end of the booster pump, and a transmission water pipe is fixedly installed at the input end of the booster pump. The booster pump serves to increase the pressure and can increase the spraying area.

[0013] The beneficial effects of this utility model are as follows: By setting a cooling component, the cooling component can cool the milling position and prevent the heat generated by friction during the milling process from causing fire, thus playing a protective role. By setting a sensor, spring, baffle and contact head, the baffle drives the contact head to adjust. When the contact head contacts the sensor, the sensor transmits a signal to the operator, so that the operator can know immediately if the milling machine is loose. This prevents the milling machine from being loose and not being adjusted in time, which would cause milling errors. This makes the milling machine processing more stable, avoids processing errors, and improves the processing effect of the high-efficiency high-speed milling machine. Attached Figure Description

[0014] For ease of explanation, this utility model is described in detail below with reference to the specific embodiments and accompanying drawings.

[0015] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0016] Figure 2 This is a schematic diagram of the replacement component structure of this utility model;

[0017] Figure 3 This is a schematic diagram of the anti-loosening mechanism of this utility model;

[0018] Figure 4 This is a schematic diagram of the cooling component structure of this utility model.

[0019] In the diagram: 1. Processing table; 2. Adjustable bracket; 3. Replacement component; 31. Connecting block; 32. Thermal expansion and contraction ring; 33. Insertion block; 34. Reinforcing groove; 35. Milling tool; 4. Storage groove; 5. Sensor; 6. Spring; 7. Baffle; 8. Contact head; 9. Controller; 10. Cooling component; 101. Support plate; 102. Universal base; 103. Universal ball; 104. Booster pump; 105. Water spray head; 106. Water transmission pipe; 11. Heat dissipation mesh. Detailed Implementation

[0020] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention. Example 1

[0021] Please see Figure 1-4 This utility model provides a technical solution: a high-efficiency high-speed engraving and milling machine, including a processing table 1, an adjusting bracket 2, a replacement component 3, a storage slot 4, a sensor 5, a spring 6, a baffle 7, and a contact head 8. The adjusting bracket 2 is fixedly installed on the top of the processing table 1, and the replacement component 3 is provided at the bottom of the adjusting bracket 2. The storage slot 4 is opened on the top of the replacement component 3. The sensor 5 is fixedly installed inside the storage slot 4. Multiple springs 6 are fixedly installed inside the storage slot 4. The multiple springs 6 play a reset function. The baffle 7 is fixedly installed on the top of each spring 6. The contact head 8 is fixedly installed at the bottom of the baffle 7. A controller 9 is fixedly installed on one side of the processing table 1. The controller 9 facilitates the control of the operation of the equipment. A cooling component 10 is provided on one side of the replacement component 3. A heat dissipation mesh 11 is fixedly installed on the other side of the processing table 1. The controller 9 is electrically connected to the adjusting bracket 2, the sensor 5, and the cooling component 10.

[0022] When loosening occurs, the insert block 33 drives the baffle 7 to adjust, and the baffle 7 drives the contact head 8 to adjust. When the contact head 8 cannot contact the sensor 5, the sensor 5 transmits a signal to the controller 9, and the controller 9 transmits a signal to the staff to remind them to handle the situation. Example 2

[0023] Replacement component 3 includes a connecting block 31, which is fixedly installed at the bottom of the adjusting bracket 2. A thermal expansion and contraction ring 32 is fixedly installed inside the connecting block 31. An insertion block 33 is movably connected inside the thermal expansion and contraction ring 32. The insertion block 33 and the connecting block 31 are size-matched. A reinforcing groove 34 is provided at the outer end of the insertion block 33. A milling tool 35 is fixedly installed at the bottom of the insertion block 33. The reinforcing groove 34 and the thermal expansion and contraction ring 32 are movably connected. The thermal expansion and contraction ring 32 can adjust the size of its internal space according to the temperature, making it easy to install and disassemble.

[0024] The worker inserts the insert block 33 into the inside of the connecting block 31. The baffle 7 is stored inside the reinforcing groove 34 with the help of the spring 6. The contact head 8 contacts the inside of the sensor 5, reminding the worker to install it firmly. The thermal expansion and contraction ring 32 is cooled down, causing the internal space of the thermal expansion and contraction ring 32 to shrink into the inside of the reinforcing groove 34. The engraving and milling tool 35 is then fixedly installed. Example 3

[0025] The cooling component 10 includes a support plate 101, which is fixedly installed on one side of the adjusting bracket 2. A universal base 102 is fixedly installed at the bottom of the support plate 101. A universal ball 103 is movably connected inside the universal base 102. A booster pump 104 is fixedly installed at the bottom of the universal ball 103. The booster pump 104 is usually composed of a large-area piston and a small-area piston. When a very low pressure is applied to the large-area piston, a higher pressure is generated on the small-area piston. A water spray head 105 is fixedly installed at the output end of the booster pump 104, and a transmission water pipe 106 is fixedly installed at the input end of the booster pump 104.

[0026] An external power generator supplies electricity to the universal base 102 and the booster pump 104, starting the universal base 102. The universal base 102 drives the universal ball 103 for adjustment, which in turn drives the booster pump 104 for adjustment. The booster pump 104 then drives the water spray head 105 for adjustment. Once the water spray head 105 is adjusted to the required angle, the booster pump 104 is started. The booster pump 104 then transmits water through the transmission pipe 106 to the inside of the water spray head 105 to cool and protect the milling parts.

[0027] In summary, the working principle of this technical solution is as follows: the operator inserts the insertion block 33 into the connecting block 31, the baffle 7 is housed inside the reinforcing groove 34 by means of the spring 6, the contact head 8 contacts the inside of the sensor 5, reminding the operator to install it securely, the thermal expansion and contraction ring 32 is cooled, causing the internal space of the thermal expansion and contraction ring 32 to shrink into the inside of the reinforcing groove 34, the engraving and milling machine 35 is fixedly installed, and the universal base 102 and the booster pump 104 are powered by an external power generator, starting the universal base 102, which drives the universal ball 103 for adjustment. The universal ball 103 drives the booster pump 104 for adjustment, which in turn drives the water spray head 105 for adjustment. The water spray head 105 is adjusted to the required angle, and the booster pump 104 is started. The booster pump 104 transmits water to the inside of the water spray head 105 through the transmission water pipe 106 to cool and protect the milling part. When the milling tool 35 becomes loose, the insert block 33 drives the baffle 7 for adjustment, which in turn drives the contact head 8 for adjustment. When the contact head 8 cannot contact the sensor 5, the sensor 5 transmits a signal to the controller 9, which then transmits a signal to the operator to remind them to handle the situation.

[0028] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A high-efficiency, high-speed engraving and milling machine, characterized in that, The assembly includes a processing table (1), an adjusting bracket (2), a replacement component (3), a storage slot (4), a sensor (5), a spring (6), a baffle (7), and a contact head (8). The adjusting bracket (2) is fixedly installed on the top of the processing table (1), and the replacement component (3) is provided at the bottom of the adjusting bracket (2). The storage slot (4) is opened on the top of the replacement component (3). The sensor (5) is fixedly installed inside the storage slot (4). Multiple springs (6) are fixedly installed inside the storage slot (4), and a baffle (7) is fixedly installed on the top of each spring (6). A contact head (8) is fixedly installed on the bottom of the baffle (7).

2. The high-efficiency high-speed engraving and milling machine according to claim 1, characterized in that, A controller (9) is fixedly installed on one side of the processing table (1), a cooling component (10) is provided on one side of the replacement component (3), and a heat dissipation mesh (11) is fixedly installed on the other side of the processing table (1). The controller (9) is electrically connected to the adjustment bracket (2), the sensor (5) and the cooling component (10).

3. The high-efficiency high-speed engraving and milling machine according to claim 1, characterized in that, The replacement component (3) includes a connecting block (31), which is fixedly installed at the bottom of the adjusting bracket (2). A thermal expansion and contraction ring (32) is fixedly installed inside the connecting block (31), and an insertion block (33) is movably connected inside the thermal expansion and contraction ring (32). The insertion block (33) and the connecting block (31) are size-matched.

4. The high-efficiency high-speed engraving and milling machine according to claim 3, characterized in that, The outer end of the insertion block (33) is provided with a reinforcing groove (34), and a milling tool (35) is fixedly installed at the bottom of the insertion block (33). The reinforcing groove (34) and the thermal expansion and contraction ring (32) are movably connected.

5. A high-efficiency high-speed engraving and milling machine according to claim 2, characterized in that, The cooling component (10) includes a support plate (101), which is fixedly installed on one side of the adjusting bracket (2). A universal seat (102) is fixedly installed at the bottom of the support plate (101), and a universal ball (103) is movably connected inside the universal seat (102).

6. A high-efficiency high-speed engraving and milling machine according to claim 5, characterized in that, A booster pump (104) is fixedly installed at the bottom of the omnidirectional ball (103), a water nozzle (105) is fixedly installed at the output end of the booster pump (104), and a water transmission pipe (106) is fixedly installed at the input end of the booster pump (104).

Citation Information

Patent Citations

  • High-speed engraving and milling machine

    CN213351602U