Numerical control drilling machining device for intelligent anti-theft doors and windows
By designing a CNC drilling processing device for intelligent anti-theft doors and windows, automatic positioning and fixing, and recycling oil and blowing functions are realized, the problems of manual positioning and debris cleaning in the existing technology are solved, and processing efficiency and environmental cleanliness are improved.
Patent Information
- Application Number
- CN202510184251.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-19
- Publication Date
- 2025-05-09
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
When processing doors and windows using CNC drilling devices, it is necessary to manually locate and fix the materials, and debris are easily accumulated on the surface of the materials during processing, affecting processing efficiency.
A CNC drilling processing device for intelligent anti-theft doors and windows is designed, including a chassis and placement components. By automatically positioning and adjusting the ply plate, the stable fixation of the material is achieved, and the oil and debris on the surface of the material is removed by recycling the oil and blowing function.
Automatic positioning and fixing when placing materials is achieved, avoiding drilling failure caused by material position deviation, and through the recycling of oil and blowing functions, the drilling is ensured smoothly and the processing environment is kept clean.
Smart Images

Figure CN119952104A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of drilling processing devices, and in particular to a numerically controlled drilling processing device for intelligent anti-theft doors and windows. Background Art
[0002] CNC drilling machines are mainly used for drilling, expanding, reaming and tapping. They are digitally controlled hole processing machines for the purpose of drilling. During the production process of smart anti-theft doors and windows, a CNC drilling device will be needed to perform drilling operations.
[0003] When using a CNC drilling device to process doors and windows, the material needs to be placed on the device, manually positioned and then fixed. During the processing, debris may accumulate on the surface of the material, and the material still needs to be cleaned up later.
[0004] Therefore, in view of this, the existing structure and defects are studied and improved, and a CNC drilling processing device for intelligent anti-theft doors and windows is proposed. Summary of the invention
[0005] The purpose of the present invention is to provide a CNC drilling device for intelligent anti-theft doors and windows to solve the problems raised in the above-mentioned background technology.
[0006] To achieve the above-mentioned purpose, the present invention provides the following technical scheme: a CNC drilling processing device for intelligent anti-theft doors and windows, comprising a chassis and a placement component, the chassis is provided with a placement component, the placement component comprises a chassis, a material placing trough, a card slot, a through hole, a slide bar, a material receiving plate, a supporting spring, a rack, a driving wheel, a transmission wheel, a gear rod, a top plate, an adjusting rod and a clamping plate, the chassis is provided with a chassis, and a material placing trough is opened in the center of the chassis, the side walls of the material placing trough are symmetrically provided with card slots, the lower wall of the material placing trough is symmetrically provided with through holes, and a slide bar is slidably connected in the through hole, the top end of the slide bar is connected with the material receiving plate, and a supporting spring is provided on the outside of the slide bar, a rack is connected on one side of the material receiving plate, and a driving wheel is provided on one side of the rack, the driving wheel is symmetrically connected with the transmission wheels on both sides, and a gear rod is provided on one side of the transmission wheel, one end of the gear rod is connected with the top plate, and the adjusting rods are threadedly connected on both sides of the top plate, and one end of the adjusting rod is rotatably connected with the clamping plate.
[0007] Furthermore, the two ends of the support spring are respectively connected to the receiving plate and the chassis, and the receiving plate is elastically connected to the chassis through the support spring, the rack and the gear rod are respectively engaged with the driving wheel and the transmission wheel, and the gear rod is slidably connected to the chassis through a slot.
[0008] Furthermore, slide rails are symmetrically provided on both sides of the inner wall of the chassis, and a door is rotatably connected to the front side of the chassis. Slide grooves are provided on the door and both sides of the chassis, and an observation window is provided in the middle of the door. Openings are provided on the rear wall of the chassis and the door.
[0009] Furthermore, pulleys are symmetrically arranged on both sides of the chassis, and rollers are symmetrically connected to the lower wall of the chassis. The pulleys are engaged with the chassis through slide rails, and the chassis is slidably connected to the chassis and the door through rollers and slide grooves.
[0010] Furthermore, a drain port is provided in the middle of the chassis, and a sieve cylinder is snap-connected in the drain port. A plug interface is symmetrically provided at the rear of the chassis, and an air suction port is provided on one side of the plug interface. The end of the air suction port away from the plug interface is located on the lower wall of the chassis.
[0011] Furthermore, air outlets are symmetrically provided on both sides of the chassis, and a diverter slot is provided on one side of the air outlet, an air inlet slot is provided on one side of the diverter slot, and an insertion port is provided on one side of the air inlet slot.
[0012] Furthermore, an oil collecting tank is provided in the center of the lower part of the chassis, and a surrounding plate is provided on the outside of the oil collecting tank. An oil extraction pipe is provided on one side of the oil collecting tank, and an oil pump is connected to the other end of the oil extraction pipe. The top surface of the surrounding plate is in contact with the bottom surface of the chassis.
[0013] Furthermore, air outlet pipes are symmetrically arranged on both sides of the rear wall of the chassis, and a baffle is connected to the inner rear wall of the chassis, an air pump is connected between the air outlet pipes, and air inlet pipes are symmetrically arranged below the air pump.
[0014] Furthermore, the ends of the air inlet pipe and the air outlet pipe away from the air pump penetrate the rear wall of the chassis and enter the inner side of the chassis, and the air inlet pipe and the air outlet pipe are connected with the air extraction port and the air inlet slot respectively through the plug interface and the insertion port.
[0015] Furthermore, the upper inner wall of the chassis is symmetrically connected with lifting rods, and a moving mechanism is arranged below the lifting rods, a drilling rig is arranged below the moving mechanism, and a nozzle is connected to one side of the moving mechanism, and the nozzle is connected to the oil pump through a hose.
[0016] The present invention provides a CNC drilling processing device for intelligent anti-theft doors and windows, which has the following beneficial effects: when in use, the material can be automatically positioned when the material is placed, and can be adjusted according to the size of the door and window to ensure the stability of the clamping, and during the processing, the oil can be circulated to cool the drill and the material to ensure smooth drilling, and in the process of flushing the material, the material can be blown with air to assist in cooling, and at the same time, the oil attached to the surface of the material and the debris generated by the processing can be blown away.
[0017] 1. When the present invention is used, the adjusting rod is first rotated on the clamping plate according to the size of the door and window, so that the adjusting rod drives the clamping plate to move through the threaded connection with the top plate, and then the door and window are placed in the material placement groove, the material receiving plate receives the door and window and descends in the material placement groove, and at the same time, the supporting spring is compressed, and the bottom plate can limit the sliding rod through the through hole to ensure the balance of the material receiving plate. During the descent process, the material receiving plate can drive the rack to descend synchronously, so that the rack drives the transmission wheel to rotate through the driving wheel, and then drives the gear rod to slide in the slot, so that the top plate drives the clamping plate to approach the edge of the door and window through the adjusting rod. When the clamping plate is pressed tightly against the side of the door and window After that, the receiving plate can no longer descend, thereby completing the fixation of the doors and windows, and under the synchronous movement and balanced force of the splint, the doors and windows can be automatically positioned in the center of the material placing trough, avoiding the deviation of the drilling position due to the offset of the door and window position during processing, and then causing the drilling failure. The through opening can prevent the gear rod from colliding with the chassis or the door. In summary, when in use, the material can be automatically positioned when placing the material, and can be adjusted according to the size of the doors and windows, so as to ensure the stability of the clamping, and avoiding the deviation of the drilling position due to the offset of the door and window position during processing, and then causing the drilling failure.
[0018] 2. After placing the doors and windows, the present invention only needs to push the chassis into the chassis through the rollers along the slide grooves, and turn the door to close it, so that the doors and windows can be placed in a closed space to prevent the debris generated during processing from splashing out. When sliding the chassis, the pulleys can restrict the chassis through the slide rails, and the chassis can be further restricted by the restrictions of the slide grooves on the rollers to prevent the chassis from deflecting or changing in height during movement. It can also prevent the chassis from moving left and right in the chassis due to vibration during processing, causing the doors and windows to deflect. When the door is turned, the door can also The chassis is pressed against the baffle to ensure that the chassis will not move back and forth in the chassis due to vibration during processing, causing the doors and windows to shift. At the same time, when the chassis is pressed against the baffle, the air inlet pipe and the air outlet pipe can also be inserted into the plug interface and the insertion port to connect them with the exhaust port and the air inlet slot respectively. During the processing, the processing progress can also be observed through the observation window. In summary, when in use, the flying debris can be shielded, and the displacement of the chassis due to vibration, which causes the doors and windows to shift, can be avoided, and the docking of the chassis and the pipeline can be completed.
[0019] 3. During the processing of the present invention, the lifting rod can cooperate with the moving mechanism to move the drilling machine, so as to perform drilling processing on the doors and windows as needed, and the oil pump can extract the oil in the oil collecting tank through the oil extraction pipe, and send it to the nozzle through the hose to spray it onto the surface of the drilling machine and the doors and windows, so as to flush the drill bit and the doors and windows, so that the oil can cool the doors and windows and the drill bit, and flush out the debris adhering to the drill bit and the drilling hole, so as to ensure the normal progress of the drilling work. At the same time, when the air pump is started, the air above the oil collecting tank can be drawn into the air intake pipe from the air extraction port through the plug interface, and because the enclosure is fitted with the chassis, a negative pressure can be formed between the chassis and the oil collecting tank, so that the oil in the material tank is accelerated to flow out of the chassis from the discharge port and then flow back to the oil collecting tank. In the trough, the screen drum can filter out the debris in the oil to ensure the cleanliness of the oil in the oil collecting tank. The air in the air inlet pipe is sent from the air outlet pipe into the air inlet slot through the air pump, and then blown out from the air outlet to the doors, windows and drilling rigs through the diverter slot. While assisting in heat dissipation, the oil attached to the surface of the material and the debris generated by processing can be blown away and fall into the material storage trough, accelerating the circulation of the oil and completing the cleaning of the doors, windows and drilling rigs. In summary, during the processing, the oil can be recycled to cool the drilling rig and materials to ensure smooth drilling. In the process of flushing the material, the material can be blown with air to assist in cooling the material and blow away the oil attached to the surface of the material and the debris generated by processing. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 A schematic diagram of a half-cut three-dimensional structure of a chassis of a CNC drilling processing device for intelligent anti-theft doors and windows of the present invention;
[0021] Figure 2 A schematic diagram of a three-dimensional exploded structure of a chassis of a CNC drilling processing device for intelligent anti-theft doors and windows of the present invention;
[0022] Figure 3 A schematic diagram of the three-dimensional structure of the chassis of a CNC drilling processing device for intelligent anti-theft doors and windows of the present invention;
[0023] Figure 4 This is a schematic diagram of the top view of the chassis structure of a CNC drilling processing device for intelligent anti-theft doors and windows of the present invention;
[0024] Figure 5 It is a schematic diagram of the overall three-dimensional structure of a CNC drilling processing device for intelligent anti-theft doors and windows of the present invention;
[0025] Figure 6 It is a schematic diagram of a half-sectioned three-dimensional exploded structure of a chassis of a CNC drilling processing device for intelligent anti-theft doors and windows of the present invention.
[0026] In the figure: 1, chassis; 2, placement components; 201, chassis; 202, material trough; 203, card slot; 204, through hole; 205, slide bar; 206, receiving plate; 207, support spring; 208, rack; 209, driving wheel; 210, transmission wheel; 211, gear rod; 212, top plate; 213, adjustment rod; 214, clamping plate; 3, slide rail; 4, box door; 5, slide slot; 6, observation window; 7, through hole ; 8. Pulley; 9. Roller; 10. Drain port; 11. Screen drum; 12. Plug port; 13. Air suction port; 14. Air outlet; 15. Diverter slot; 16. Air inlet slot; 17. Insert port; 18. Oil collecting tank; 19. Enclosure; 20. Oil extraction pipe; 21. Oil pump; 22. Air outlet pipe; 23. Baffle; 24. Air pump; 25. Air inlet pipe; 26. Lifting rod; 27. Moving mechanism; 28. Drilling rig; 29. Nozzle. DETAILED DESCRIPTION
[0027] See also Figures 1 to 6 The present invention provides a technical solution: a CNC drilling processing device for intelligent anti-theft doors and windows, including a chassis 1 and a placement component 2, the chassis 1 is provided with the placement component 2, the placement component 2 includes a chassis 201, a material placement groove 202, a card slot 203, a through hole 204, a slide bar 205, a material receiving plate 206, a support spring 207, a rack 208, a driving wheel 209, a transmission wheel 210, a gear rod 211, a top plate 212, an adjustment rod 213 and a clamping plate 214, the chassis 1 is provided with a chassis 201, and a material placement groove 202 is opened in the center of the chassis 201, and card slots 203 are symmetrically arranged around the side walls of the material placement groove 202 , through holes 204 are symmetrically arranged around the lower wall of the material placing trough 202, and a slide bar 205 is slidably connected in the through hole 204, a material receiving plate 206 is connected to the top of the slide bar 205, and a supporting spring 207 is arranged on the outside of the slide bar 205, a rack 208 is connected to one side of the material receiving plate 206, and a driving wheel 209 is arranged on one side of the rack 208, and transmission wheels 210 are symmetrically connected on both sides of the driving wheel 209, and a gear rod 211 is arranged on one side of the transmission wheel 210, one end of the gear rod 211 is connected to a top plate 212, and adjusting rods 213 are threadedly connected on both sides of the top plate 212, and one end of the adjusting rod 213 is rotatably connected to a clamping plate 214.
[0028] See also Figures 1 to 4 , the two ends of the support spring 207 are respectively connected to the receiving plate 206 and the chassis 201, and the receiving plate 206 is elastically connected to the chassis 201 through the support spring 207, the rack 208 and the gear rod 211 are respectively engaged with the driving wheel 209 and the transmission wheel 210, and the gear rod 211 is slidably connected to the chassis 201 through the card slot 203, the inner side walls of the chassis 1 are symmetrically provided with slide rails 3, and the front side of the chassis 1 is rotatably connected with a box door 4, the box door 4 and both sides of the chassis 1 are provided with slide grooves 5, and the middle part of the box door 4 is provided with an observation window 6, and the rear wall of the chassis 1 and the box door 4 are provided with through openings 7;
[0029] The specific operation is as follows. When in use, first rotate the adjusting rod 213 on the clamping plate 214 according to the size of the door and window, so that the adjusting rod 213 drives the clamping plate 214 to move through the threaded connection with the top plate 212, and then put the door and window into the material trough 202, the receiving plate 206 receives the door and window and descends in the material trough 202, and at the same time compresses the supporting spring 207, and the bottom plate 201 can limit the sliding rod 205 through the through hole 204, so as to ensure the balance of the receiving plate 206. During the descent process, the receiving plate 206 can drive the rack 208 to descend synchronously, so that the rack 208 drives the transmission wheel 210 to rotate through the driving wheel 209, and then drives the gear rod 211 to slide in the slot 203, so that the top plate 212 passes through the adjusting rod 213 drives the clamping plate 214 to be close to the edge of the door and window. When the clamping plate 214 is pressed against the side of the door and window, the receiving plate 206 cannot continue to descend, thereby completing the fixation of the door and window, and under the synchronous movement and balanced force of the clamping plate 214, the door and window can be automatically positioned in the center of the material placing groove 202, avoiding the deviation of the drilling position due to the offset of the door and window position during processing, and then causing the consequence of drilling failure. The through hole 7 can prevent the tooth rod 211 from colliding with the chassis 1 or the door 4. In summary, when in use, the material can be automatically positioned when placing the material, and can be adjusted according to the size of the door and window, so as to ensure the stability of the clamping, avoiding the deviation of the drilling position due to the offset of the door and window position during processing, and then causing the consequence of drilling failure.
[0030] See also Figure 1 to Figure 2 and Figure 5 to Figure 6, pulleys 8 are symmetrically arranged on both sides of the chassis 201, and rollers 9 are symmetrically connected to the lower wall of the chassis 201, the pulleys 8 are snap-connected with the chassis 1 through the slide rails 3, and the chassis 201 is slidably connected with the chassis 1 and the door 4 through the rollers 9 and the slide grooves 5, a drain port 10 is provided in the middle of the chassis 201, and a screen cylinder 11 is snap-connected in the drain port 10, a plug interface 12 is symmetrically provided at the rear of the chassis 201, and an air extraction port 13 is provided on one side of the plug interface 12, and the end of the air extraction port 13 away from the plug interface 12 is located on the lower wall of the chassis 201, air outlets 14 are symmetrically arranged on both sides of the chassis 201, and a diverter slot 15 is provided on one side of the air outlet 14, an air inlet slot 16 is provided on one side of the diverter slot 15, and an insertion port 17 is provided on one side of the air inlet slot 16, an oil collecting tank 18 is provided in the center of the lower part of the chassis 1, and a panel 19 is provided on the outer side of the oil collecting tank 18, and the oil collecting tank 18 is provided with a surrounding plate 19. An oil extraction pipe 20 is provided on one side of the groove 18, and an oil pump 21 is connected to the other end of the oil extraction pipe 20, the top surface of the enclosure 19 is fitted with the bottom surface of the chassis 201, air outlet pipes 22 are symmetrically provided on both sides of the rear wall of the chassis 1, and a baffle 23 is connected to the inner rear wall of the chassis 1, an air pump 24 is connected between the air outlet pipes 22, and an air inlet pipe 25 is symmetrically provided below the air pump 24, the air inlet pipe 25 and the air outlet pipe 22 at one end away from the air pump 24 penetrate the rear wall of the chassis 1 and enter the inner side of the chassis 1, the air inlet pipe 25 and the air outlet pipe 22 are connected with the air extraction port 13 and the air inlet slot 16 through the plug interface 12 and the insertion port 17 respectively, the lifting rod 26 is symmetrically connected to the upper inner wall of the chassis 1, and a moving mechanism 27 is provided below the lifting rod 26, a drilling rig 28 is provided below the moving mechanism 27, and a nozzle 29 is connected to one side of the moving mechanism 27, and the nozzle 29 is connected to the oil pump 21 through a hose;
[0031] The specific operation is as follows. After placing the doors and windows, the chassis 201 only needs to be pushed into the chassis 1 through the roller 9 along the slide groove 5, and the door 4 is turned to close it, so that the doors and windows are in a confined space to prevent the debris generated during processing from splashing out. When sliding the chassis 201, the pulley 8 can restrict the chassis 201 through the slide rail 3, and cooperate with the restriction of the slide groove 5 on the roller 9 to further restrict the chassis 201, so as to prevent the chassis 201 from deflecting or changing in height during the movement, and also prevent the chassis 201 from moving left and right in the chassis 1 due to vibration during the processing, causing the doors and windows to deflect. When the door 4 is turned, the door 4 can also be The chassis 201 is pressed against the baffle 23 to ensure that the chassis 201 will not move forward and backward in the chassis 1 due to vibration during the processing, causing the doors and windows to shift. At the same time, when the chassis 201 is pressed against the baffle 23, the air inlet pipe 25 and the air outlet pipe 22 can also be inserted into the plug interface 12 and the insertion port 17 to connect them to the air exhaust port 13 and the air inlet slot 16 respectively. During the processing, the processing progress can also be observed through the observation window 6. In summary, when in use, the flying debris can be shielded, and the chassis 201 can be prevented from being displaced due to vibration, causing the doors and windows to shift, and the chassis 201 can be connected to the pipeline.
[0032] 3. During the processing of the present invention, the lifting rod 26 can cooperate with the moving mechanism 27 to move the drilling machine 28, so that the doors and windows can be drilled as needed, and the oil pump 21 can extract the oil in the oil collecting tank 18 through the oil extraction pipe 20, and send it to the nozzle 29 through the hose to spray it onto the drilling machine 28 and the surface of the doors and windows, flush the drill bit and the doors and windows, so that the oil cools the doors and windows and the drill bit, and flushes away the debris adhering to the drill bit and the drilling hole, so as to ensure the normal drilling work. At the same time, when the air pump 24 is started, the air above the oil collecting tank 18 can be drawn into the air intake pipe 25 from the air extraction port 13 through the plug interface 12. Because the enclosure 19 is in contact with the chassis 201, a negative pressure can be formed between the chassis 201 and the oil collecting tank 18, so that the oil in the material tank 202 is accelerated to flow out of the chassis 20 from the discharge port 10. 1, and then flows back to the oil collecting tank 18. The screen drum 11 can filter out the debris in the oil to ensure the cleanliness of the oil in the oil collecting tank 18. The air in the air inlet pipe 25 is sent into the air inlet slot 16 from the air outlet pipe 22 through the air pump 24, and then blown out from the air outlet 14 to the doors, windows and drilling rigs 28 through the diverter slot 15. While assisting in heat dissipation, the oil attached to the surface of the material and the debris generated by the processing can be blown away and made to fall into the material placing tank 202, thereby accelerating the circulation of the oil and completing the cleaning of the doors, windows and drilling rigs 28. In summary, during the processing, the oil can be recycled to cool the drilling rig 28 and the material to ensure smooth drilling. In the process of flushing the material, the material can be blown to assist in cooling the material and blow away the oil attached to the surface of the material and the debris generated by the processing.
[0033] In summary, when using the CNC drilling processing device for intelligent anti-theft doors and windows, firstly, the adjusting rod 213 is rotated on the clamping plate 214 according to the size of the doors and windows, so that the adjusting rod 213 drives the clamping plate 214 to move through the threaded connection with the top plate 212, and then the doors and windows are placed in the material trough 202, and the receiving plate 206 receives the doors and windows and descends in the material trough 202, and at the same time, the supporting spring 207 is compressed, and the chassis 201 can limit the sliding rod 205 through the through hole 204, so as to ensure the balance of the receiving plate 206, and the receiving plate 206 can drive the rack 208 to descend synchronously during the descent process, so that the rack 208 drives the transmission wheel 210 to rotate through the driving wheel 209, and then drives the gear rod 211 to slide in the slot 203. The top plate 212 drives the clamping plate 214 to approach the edge of the door and window through the adjusting rod 213. When the clamping plate 214 is pressed against the side of the door and window, the material receiving plate 206 cannot continue to descend, thereby completing the fixing of the door and window, and under the synchronous movement and balanced force of the clamping plate 214, the door and window can be automatically positioned in the center of the material placing groove 202, avoiding the deviation of the drilling position due to the displacement of the door and window position during processing, thereby causing the consequence of drilling failure. The through hole 7 can prevent the tooth rod 211 from colliding with the chassis 1 or the box door 4. After the door and window are placed, it is only necessary to push the chassis 201 into the chassis 1 through the roller 9 along the slide groove 5, and turn the box door 4 to close it, so that the door and window are in a closed space, avoiding the splashing of debris generated during processing, and when sliding the chassis 201, the sliding The wheel 8 can limit the chassis 201 through the slide rail 3, and cooperate with the slide groove 5 to limit the roller 9 to further limit the chassis 201, so as to prevent the chassis 201 from deflecting or changing in height during movement, and also prevent the chassis 201 from moving left and right in the chassis 1 due to vibration during processing, causing the doors and windows to deflect. When the box door 4 is rotated, the box door 4 can also press the chassis 201 against the baffle 23 to ensure that the chassis 201 will not move back and forth in the chassis 1 due to vibration during processing, causing the doors and windows to deflect. At the same time, when the chassis 201 is pressed against the baffle 23, the air inlet pipe 25 and the air outlet pipe 22 can also be inserted into the plug interface 12 and the insertion port 17, so that they are connected to the air extraction port 13 and the air inlet slot 16 respectively. The processing progress can be observed through the observation window 6. During processing, the lifting rod 26 can cooperate with the moving mechanism 27 to move the drilling machine 28, so as to perform drilling processing on the doors and windows as needed, and the oil pump 21 can extract the oil in the oil collecting tank 18 through the oil extraction pipe 20, and send it to the nozzle 29 through the hose to spray it onto the drilling machine 28 and the surface of the doors and windows, so as to flush the drill bit and the doors and windows, so that the oil can cool the doors and windows and the drill bit, and flush out the debris adhering to the drill bit and the drilling hole, so as to ensure the normal progress of the drilling work. At the same time, when the air pump 24 is started, the air above the oil collecting tank 18 can be sucked into the air intake pipe 25 from the air extraction port 13 through the plug interface 12. Because the enclosure 19 is in contact with the chassis 201, a negative pressure can be formed between the chassis 201 and the oil collecting tank 18.Thus, the oil in the material tank 202 is accelerated to flow out of the chassis 201 from the drain port 10, and then flow back to the oil collecting tank 18. The screen drum 11 can filter out the debris in the oil to ensure the cleanliness of the oil in the oil collecting tank 18. The air in the air inlet pipe 25 is sent to the air inlet slot 16 from the air outlet pipe 22 through the air pump 24, and then blown out from the air outlet 14 to the doors, windows and drilling rigs 28 through the diverter slot 15. While assisting in heat dissipation, the oil attached to the surface of the material and the debris generated by the processing can be blown off and fall into the material tank 202, accelerating the circulation of the oil and completing the cleaning of the doors, windows and drilling rigs 28.
[0034] The embodiments of the present invention are given for the purpose of illustration and description, and are not intended to be exhaustive or to limit the invention to the disclosed forms. Many modifications and variations will be apparent to those of ordinary skill in the art. The embodiments are selected and described in order to better illustrate the principles and practical applications of the present invention and to enable those of ordinary skill in the art to understand the present invention and thereby design various embodiments with various modifications suitable for specific uses.
Claims
1. A CNC drilling device for intelligent anti-theft doors and windows, characterized in that: The invention comprises a chassis (1) and a placement component (2), wherein the chassis (1) is provided with the placement component (2), and the placement component (2) comprises a chassis (201), a material placement trough (202), a clamping slot (203), a through hole (204), a sliding rod (205), a material receiving plate (206), a supporting spring (207), a rack (208), a driving wheel (209), a transmission wheel (210), a gear rod (211), a top plate (212), an adjustment rod (213) and a clamping plate (214), wherein the chassis (1) is provided with a chassis (201), and a material placement trough (202) is provided in the center of the chassis (201), the clamping slots (203) are symmetrically provided around the side walls of the material placement trough (202), and the lower wall of the material placement trough (202) is provided with a plurality of clamping slots (203). A through hole (204) is symmetrically arranged around the circumference, and a slide bar (205) is slidably connected in the through hole (204), the top of the slide bar (205) is connected to a material receiving plate (206), and a support spring (207) is arranged on the outside of the slide bar (205), one side of the material receiving plate (206) is connected to a rack (208), and one side of the rack (208) is provided with a driving wheel (209), both sides of the driving wheel (209) are symmetrically connected to a transmission wheel (210), and one side of the transmission wheel (210) is provided with a gear rod (211), one end of the gear rod (211) is connected to a top plate (212), and both sides of the top plate (212) are threadedly connected to an adjusting rod (213), and one end of the adjusting rod (213) is rotatably connected to a clamping plate (214).
2. According to claim 1, a CNC drilling device for intelligent anti-theft doors and windows is characterized in that: The two ends of the support spring (207) are respectively connected to the receiving plate (206) and the chassis (201), and the receiving plate (206) is elastically connected to the chassis (201) through the support spring (207); the rack (208) and the gear rod (211) are respectively engaged with the driving wheel (209) and the transmission wheel (210), and the gear rod (211) is engaged and slidably connected with the chassis (201) through the engagement groove (203).
3. The CNC drilling device for intelligent anti-theft doors and windows according to claim 1 is characterized in that: Slide rails (3) are symmetrically provided on both sides of the inner wall of the chassis (1), and a cabinet door (4) is rotatably connected to the front side of the chassis (1). Slide grooves (5) are provided on both sides of the cabinet door (4) and the chassis (1), and an observation window (6) is provided in the middle of the cabinet door (4). Through openings (7) are provided on the rear wall of the chassis (1) and the cabinet door (4).
4. The CNC drilling device for intelligent anti-theft doors and windows according to claim 3 is characterized in that: Pulleys (8) are symmetrically arranged on both sides of the chassis (201), and rollers (9) are symmetrically connected to the lower wall of the chassis (201); the pulleys (8) are snap-connected to the chassis (1) via slide rails (3), and the chassis (201) is slidably connected to the chassis (1) and the cabinet door (4) via the rollers (9) and the slide grooves (5).
5. The CNC drilling device for intelligent anti-theft doors and windows according to claim 1 is characterized in that: A liquid discharge port (10) is provided in the middle of the chassis (201), and a screen drum (11) is snap-connected inside the liquid discharge port (10); a plug-in port (12) is symmetrically provided at the rear of the chassis (201), and an air suction port (13) is provided on one side of the plug-in port (12); an end of the air suction port (13) away from the plug-in port (12) is located on the lower wall of the chassis (201).
6. The CNC drilling device for intelligent anti-theft doors and windows according to claim 5, characterized in that: The chassis (201) is symmetrically provided with air outlets (14) on both sides, and a diversion groove (15) is provided on one side of the air outlet (14), an air inlet groove (16) is provided on one side of the diversion groove (15), and an insertion port (17) is provided on one side of the air inlet groove (16).
7. The CNC drilling device for intelligent anti-theft doors and windows according to claim 1 is characterized in that: An oil collecting tank (18) is arranged at the center of the lower part of the chassis (1), and a surrounding plate (19) is arranged outside the oil collecting tank (18). An oil extraction pipe (20) is arranged on one side of the oil collecting tank (18), and an oil pump (21) is connected to the other end of the oil extraction pipe (20). The top surface of the surrounding plate (19) is in contact with the bottom surface of the chassis (201).
8. The CNC drilling device for intelligent anti-theft doors and windows according to claim 6, characterized in that: Air outlet pipes (22) are symmetrically arranged on both sides of the rear wall of the chassis (1), and a baffle (23) is connected to the inner rear wall of the chassis (1). An air pump (24) is connected between the air outlet pipes (22), and an air inlet pipe (25) is symmetrically arranged below the air pump (24).
9. The CNC drilling device for intelligent anti-theft doors and windows according to claim 8, characterized in that: The ends of the air inlet pipe (25) and the air outlet pipe (22) away from the air pump (24) penetrate the rear wall of the chassis (1) and enter the inner side of the chassis (1); the air inlet pipe (25) and the air outlet pipe (22) are respectively connected to the air extraction port (13) and the air inlet slot (16) through the plug interface (12) and the insertion port (17).
10. The CNC drilling device for intelligent anti-theft doors and windows according to claim 7, characterized in that: The upper inner wall of the chassis (1) is symmetrically connected with a lifting rod (26), and a moving mechanism (27) is arranged below the lifting rod (26). A drilling machine (28) is arranged below the moving mechanism (27), and a nozzle (29) is connected to one side of the moving mechanism (27). The nozzle (29) is connected to the oil pump (21) through a hose.