Drilling scrap collecting device
By designing a cleaning, dust suction, and dust suppression mechanism for the drilling debris collection device, the problems of dust diffusion and debris accumulation during drilling were solved, achieving safe and efficient debris collection and equipment maintenance.
Patent Information
- Application Number
- CN202423044522.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-10
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2034-12-10
AI Technical Summary
Existing debris collection devices lack mechanisms to control and suppress debris and dust generated during drilling in a timely manner, leading to abnormal equipment operation. Furthermore, the lack of effective mechanisms for collecting drilling debris causes dust accumulation, affecting processing operations.
A drilling debris collection device was designed, comprising a cleaning mechanism, a dust suction mechanism, a clamping mechanism, and a dust suppression mechanism. The device automatically cleans wet dust debris from the top of the base through a motor-driven screw and belt. The dust suction mechanism captures airborne dust debris using a dust suction hood and an air pump. The dust suppression mechanism sprays water mist to reduce dust concentration.
It effectively reduces dust dispersion, protects operators and the environment, improves operational safety, extends equipment life, simplifies cleaning processes, and improves operational efficiency and equipment cleanliness.
Smart Images

Figure CN223519798U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to carbon fiber rod processing technical field, concretely is a kind of drilling debris collection device. BACKGROUND
[0002] Carbon fiber rod is a long strip structure made of carbon fiber material, carbon fiber rod has very high strength and rigidity, especially in the tensile direction. Carbon fiber density is low, so carbon fiber rod is light in weight. Carbon fiber rod is corrosion-resistant, and can resist the erosion of various chemicals. It has a very high elastic modulus, that is, it deforms little when under stress, and still maintains good mechanical properties at high temperatures. It can withstand long-term repeated stress without easily fatiguing.
[0003] Debris collection device is a device used to collect and dispose of debris and dust generated during various manufacturing and processing processes. It can reduce dust and debris in the work area, improve the working environment of operators. At the same time, it reduces the wear and potential damage to processing equipment, and reduces the time of production interruption due to cleaning debris, and improves overall production efficiency. And debris collection device can also reduce dust emission, comply with environmental regulations, and contribute to the sustainable development of production.
[0004] The inventor found that the prior art has the following problems in the process of implementing the utility model: 1. The existing debris collection device lacks a mechanism that can timely control and suppress the debris dust generated during punching, thereby easily affecting the normal operation of the equipment; 2. The existing debris collection device lacks a mechanism that can effectively collect drilling dust, thereby easily causing dust accumulation in the work area, affecting processing operation. UTILITY MODEL CONTENT
[0005] The utility model aims to provide a drilling debris collection device to solve the problem of the existing debris collection device lacking a mechanism that can timely control and suppress the debris dust generated during punching, thereby easily affecting the normal operation of the equipment, and the existing debris collection device lacking a mechanism that can effectively collect drilling dust, thereby easily causing dust accumulation in the work area, affecting processing operation. To achieve the above purpose, the utility model provides the following technical scheme: a drilling debris collection device, comprising a base, a first sliding groove is formed on the top of the base, a cleaning brush mechanism is rotatably connected to the inner wall of the left and right sides of the first sliding groove, a protective cover is rotatably connected to one end of the cleaning brush mechanism, a second sliding groove is formed in the middle of the top wall of the protective cover, a moving mechanism is rotatably connected to the inner wall of the left and right sides of the second sliding groove, a drilling machine is provided on the top wall of the moving mechanism, a dust collection mechanism is sleeved on the outer wall of the drilling machine, a clamping mechanism is screwed on the inner wall of the left and right sides of the protective cover, and a dust falling mechanism is transversely screwed on the inner wall above the clamping mechanism.
[0006] Further preferably, the cleaning mechanism comprises a sliding brush plate, a bidirectional screw rod, a first motor, a transmission main wheel, a transmission slave wheel and a belt, the left and right ends of the bidirectional screw rod are rotationally connected to the left and right inner walls of a first sliding groove, the sliding brush plate is screwed to the outer wall of the bidirectional screw rod, the output end of the first motor is inserted into the end of one of the bidirectional screw rods, the transmission main wheel is sleeved to the outer wall of the end of the bidirectional screw rod to which the first motor is inserted, the transmission slave wheel is sleeved to the outer wall of the end of the other bidirectional screw rod, and the belt is sleeved to the outer walls of the transmission main wheel and the transmission slave wheel.
[0007] Further preferably, the moving mechanism comprises a rotating screw rod, a second motor and a moving screw block, the left and right ends of the rotating screw rod are rotationally connected to the left and right inner walls of a second sliding groove, the second motor is inserted into one end of the rotating screw rod, and the moving screw block is screwed to the outer wall of the rotating screw rod.
[0008] Further preferably, the top of the base is provided with a plurality of through grooves, and the inside of the base is slidably connected with a collecting box.
[0009] Further preferably, the dust suction mechanism comprises a dust suction cover, a dust suction pipe, a dust collecting disc, a suction pump and a conveying hose, the top end of the dust suction cover is screwed to the bottom of the drilling machine, the bottom end of the dust suction pipe is inserted into the inside of the dust suction cover, the top end of the dust suction pipe is inserted with the dust collecting disc, the rear side of the dust collecting disc is inserted with one end of the conveying hose, and the tail end of the conveying hose is inserted into the inside of the base.
[0010] Further preferably, the clamping mechanism comprises an electric telescopic rod, a stop disc, a compression spring piece and a clamping ring, the tail end of the electric telescopic rod is screwed to the left and right inner walls of the protective cover, the stop disc is arranged at the driving end of the electric telescopic rod, and the compression spring piece is welded between the inner wall of the stop disc and the clamping ring.
[0011] Further preferably, the dust falling mechanism comprises a spray head, a water conveying pipe, a water pump, a water suction pipe and a water tank, the spray head is arranged at the bottom of the water conveying pipe, one end of the water conveying pipe is inserted with the water pump, the other end of the water pump is inserted with the water suction pipe, and the water suction pipe is arranged in the inside of the water tank.
[0012] Compared with the prior art, the dust falling mechanism has the advantages that:
[0013] In the utility model, the cleaning mechanism can clean the wet dust debris on the top of the base after the drilling is completed, the time required for cleaning work is reduced, the debris is prevented from drying or accumulating, the cleaning state of the equipment is maintained, the through grooves allow the remaining wet dust debris to directly fall into the collecting box under the action of gravity, the debris can be effectively collected when the cleaning mechanism works, and the sliding design facilitates the centralized cleaning of the operator.
[0014] In this invention, the dust collection mechanism effectively captures and concentrates dust particles flying during drilling, thereby reducing the spread of dust in the working environment. This helps protect operators and the surrounding environment from dust pollution, improves operational safety, and maintains the cleanliness of the drilling area, facilitating drilling. The dust suppression mechanism sprays clean water into fine mist, which combines with the airborne dust particles, causing them to settle. This effectively reduces the concentration of dust in the air, thereby reducing dust pollution and accumulation in the operating area. Furthermore, the wear and tear on the equipment from moist dust particles is far less than that from dry dust, helping to extend the service life and normal operation of the equipment. Attached Figure Description
[0015] Figure 1 This is a three-dimensional structural diagram of the present invention;
[0016] Figure 2 This is a side view sectional structural diagram of the present invention;
[0017] Figure 3 This is a schematic diagram of the cleaning mechanism of this utility model;
[0018] Figure 4 This is a schematic diagram of the dust collection mechanism of this utility model;
[0019] Figure 5 This is a schematic diagram of the dust suppression mechanism of this utility model;
[0020] Figure 6 This is a schematic diagram of the clamping mechanism of this utility model.
[0021] In the diagram: 1. Base; 101. Through groove; 102. Collection box; 2. First sliding groove; 3. Cleaning mechanism; 301. Sliding brush plate; 302. Bidirectional screw; 303. First motor; 304. Transmission main wheel; 305. Transmission driven wheel; 306. Belt; 4. Protective cover; 5. Second sliding groove; 6. Moving mechanism; 601. Rotating screw; 602. Second motor; 603. Moving screw block; 7. Drill hole 8. Vacuuming mechanism; 801. Vacuum hood; 802. Vacuum hose; 803. Dust collection tray; 804. Air pump; 805. Delivery hose; 9. Clamping mechanism; 901. Electric telescopic rod; 902. Support plate; 903. Compression spring; 904. Clamping ring; 10. Dust suppression mechanism; 1001. Nozzle; 1002. Water pipe; 1003. Water pump; 1004. Water extraction pipe; 1005. Water tank. Detailed Implementation
[0022] Clearly and completely, the technical scheme in the embodiments of the utility model will be described in combination with the drawings in the embodiments of the utility model, apparently, the described embodiments are only a part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by the ordinary technical personnel in the field without making creative labor are within the protection scope of the utility model.
[0023] Please refer to Figures 1 to 6 The utility model provides a kind of technical scheme: a kind of drilling debris collection device, including base 1, the top of base 1 is equipped with first runner 2 in front and back two sides, the inner wall of first runner 2 is rotatably connected with cleaning brush mechanism 3 in left and right sides, one end of cleaning brush mechanism 3 is rotatably connected with protective cover 4, the top wall of protective cover 4 is equipped with second runner 5 in middle part, the inner wall of second runner 5 is rotatably connected with moving mechanism 6 in left and right sides, the top wall of moving mechanism 6 is equipped with drilling machine 7, the outer wall of drilling machine 7 is sleeved with dust collection mechanism 8, the inner wall of protective cover 4 is screwed with clamping mechanism 9 in left and right sides, protective cover 4 is located in the upper wall of clamping mechanism 9 and is screwed with dust-settling mechanism 10 that is transversely penetrated.
[0024] In the embodiment, as Figure 2 And Figure 3As shown, the cleaning mechanism 3 comprises a sliding brush plate 301, a bidirectional screw 302, a first motor 303, a transmission main wheel 304, a transmission slave wheel 305 and a belt 306, the left and right ends of the bidirectional screw 302 are rotationally connected to the inner walls on the left and right sides of the first sliding groove 2, the sliding brush plate 301 is screwed to the outer wall of the bidirectional screw 302, the output end of the first motor 303 is inserted into the end of one of the bidirectional screws 302, the transmission main wheel 304 is sleeved on the outer wall of the end of the bidirectional screw 302 inserted with the first motor 303, the transmission slave wheel 305 is sleeved on the outer wall of the end of the other bidirectional screw 302, and the belt 306 is sleeved on the outer walls of the transmission main wheel 304 and the transmission slave wheel 305; It should be noted that during the punching, the operator uses the dust reduction mechanism 10 to spray water mist to reduce dust flying, so the dust mixed with mist droplets will adhere to the top of the base 1, and after completing the punching operation of the carbon fiber rod, the operator can start the first motor 303 to drive the bidirectional screw 302 inserted thereinto and the transmission main wheel 304 sleeved on the outer wall of the end of the bidirectional screw 302 to rotate, at the same time, the belt 306 sleeved on the outer wall of the transmission main wheel 304 rotates synchronously with the transmission slave wheel 305 on the other side and the bidirectional screw 302 sleeved thereon, so that the sliding brush plate 301 screwed to the outer walls of the bidirectional screws 302 on the left and right sides is transversely moved in close contact with the top of the base 1, thereby wiping the wet dust debris adhered to the top of the base 1 clean, and in actual use, the cleaning mechanism 3 can quickly clean the wet dust debris on the top of the base 1 after the punching is completed, thereby reducing the time required for cleaning work and improving the overall work efficiency, wherein the bidirectional screw 302 is driven to rotate by the first motor 303, and the transmission main wheel 304 and the transmission slave wheel 305 are used to realize synchronous rotation of the bidirectional screws 302 on the left and right sides through the cooperation of the belt 306, thereby driving the sliding brush plate 301 to move, achieving an automatic cleaning process without manual intervention, significantly improving the work efficiency, and the sliding brush plate 301 quickly removes the wet dust debris on the top of the base 1, which can avoid the dust debris from drying and accumulating, helps to maintain the cleanliness of the equipment, reduces equipment failures caused by dust debris, prolongs the service life of the equipment, and at the same time, the cleaning mechanism 3 also avoids the long-term erosion of the wet dust debris to the equipment, thereby reducing the maintenance cost caused by equipment wear and tear.
[0025] In this embodiment, as Figure 4As shown, the moving mechanism 6 includes a rotating screw 601, a second motor 602 and a moving screw block 603, the left and right ends of the rotating screw 601 are rotationally connected to the inner walls of the left and right sides of the second sliding groove 5, the second motor 602 is inserted into one end of the rotating screw 601, and the moving screw block 603 is screwed onto the outer wall of the rotating screw 601; it should be noted that after the operator clamps and fixes the carbon fiber rod through the clamping mechanism 9, the operator can first start the second motor 602, drive the rotating screw 601 inserted with it, and thus enable the moving screw block 603 screwed onto the outer wall of the rotating screw 601 to move along the thread direction and synchronously move the drilling machine 7 provided at the bottom thereof, thereby controlling and adjusting the horizontal position of the drilling machine 7 on the surface of the carbon fiber rod, facilitating subsequent punching operation. In actual use, the rotation of the rotating screw 601 and the movement of the moving screw block 603 can be automatically controlled through the start of the second motor 602, reducing the need for manual adjustment, improving the convenience and efficiency of operation, and also reducing human operation errors, ensuring the accuracy and repeatability of the punching position. The threaded cooperation between the rotating screw 601 and the moving screw block 603 allows precise linear movement, thereby achieving fine adjustment of the horizontal position of the drilling machine 7 on the surface of the carbon fiber rod, so that the drilling machine 7 can be quickly positioned to the desired position, simplifying the preparation work before drilling.
[0026] In this embodiment, as shown in Figure 1 and Figure 2 As shown, the top of the base 1 is provided with a plurality of through grooves 101, and the inside of the base 1 is slidably connected with a collection box 102; it should be noted that during the operation of the operator using the drilling machine 7 to rotate and punch the carbon fiber rod, a large amount of dust and debris will be generated, most of which will be sucked and transported by the dust suction mechanism 8 into the collection box 102, and the remaining small part will fall downward together with the water mist sprayed by the dust falling mechanism 10 to the top of the base 1. When the operator starts the cleaning brush mechanism 3 to wipe the top of the base 1, the wet dust and debris will directly fall into the inside of the collection box 102 through the through grooves 101, completing the dust and debris collection operation. In actual use, the through grooves 101 allow the remaining wet dust and debris to fall directly into the collection box 102 under the action of gravity, and when the cleaning brush mechanism 3 is working, the debris can be effectively collected. Since the debris directly falls into the collection box 102, the cleaning workload and frequency are reduced, and the maintenance process is simplified. The design of the through grooves 101 and the collection box 102 helps to prevent the accumulation of wet dust and debris in the base 1 and the working area, thereby maintaining the cleanliness of the working environment. At the same time, the collection box 102 is designed for debris to pass through the centralized collection area, and the sliding design facilitates the operator to clean up.
[0027] In this embodiment, as shown in Figure 4As shown, the dust collection mechanism 8 comprises a dust collection cover 801, a dust collection pipe 802, a dust collection disc 803, a suction pump 804 and a conveying hose 805, the top end of the dust collection cover 801 is screwed to the bottom of the drill 7, the bottom end of the dust collection pipe 802 is inserted into the inside of the dust collection cover 801, the top end of the dust collection pipe 802 is inserted with the dust collection disc 803, the rear side of the dust collection disc 803 is inserted with one end of the conveying hose 805, and the tail end of the conveying hose 805 is inserted into the inside of the base 1; it is to be noted that when the operator uses the drill 7 to rotate and punch the carbon fiber rod, the dust collection cover 801 connected therewith will cover the punching area, and a large amount of dust and debris generated during the operation will be concentrated and diffused in the inside of the dust collection cover 801, at the same time, the operator can start the suction pump 804 to generate suction force, and through the dust collection pipe 802 inserted with the dust collection cover 801, the dust and debris flying in the inside of the dust collection cover 801 can be sucked into the dust collection disc 803, and then through the dust collection disc 803, the dust and debris can be continuously sucked into the conveying hose 805, and then the dust and debris can be pushed to the inside of the collecting box 102 inserted with the conveying hose 805, so as to complete the dust collection operation; in actual use, the use of the dust collection mechanism 8 can reduce the diffusion of dust in the working environment, help to protect the operator and the surrounding environment from dust pollution, improve the operation safety, maintain the cleanliness of the punching area, facilitate the drilling of the drill 7, the dust collection cover 801 covers the punching area, can effectively capture and concentrate the dust and debris flying during the punching, and in turn through the dust collection pipe 802, the dust collection disc 803 and the conveying hose 805, the dust and debris can be directly conveyed to the collecting box 102, and the conveying hose 805 can move correspondingly with the lateral movement of the drill 7 due to its softness, and will not affect the dust collection effect.
[0028] In this embodiment, as Figure 6As shown, the clamping mechanism 9 includes an electric telescopic rod 901, a stop disc 902, a compression spring 903 and a clamping ring 904, the tail end of the electric telescopic rod 901 is screwed to the inner wall of the left and right sides of the protective cover 4, the driving end of the electric telescopic rod 901 is provided with the stop disc 902, and the compression spring 903 is welded between the inner wall of the stop disc 902 and the clamping ring 904; it should be noted that the operator needs to start the left and right electric telescopic rods 901 at the same time through the external controller, so that the driving end starts to elongate and pushes the stop disc 902 connected thereto to move towards the middle carbon fiber rod until the stop disc 902 can abut against the end of the carbon fiber rod, at this time the clamping ring 904 will contact the outer wall of the carbon fiber rod and be pushed outward, so that the compression spring 903 is squeezed and shortened, thereby expanding the gap of the opposite clamping ring 904, so that it can completely accommodate the entire end of the carbon fiber rod, at the same time, the compression spring 903 will push the clamping ring 904 tightly against the outer wall of the end of the carbon fiber rod, thereby completing the clamping and fixing, in actual use, the electric telescopic rod 901 is started through the external controller, realizing the automatic clamping of the carbon fiber rod, thereby improving the operation efficiency and accuracy, and through the abutment of the clamping mechanism 9 and the end of the carbon fiber rod, the stability of clamping is ensured, and the movement or damage of the carbon fiber rod during clamping is reduced, wherein the compression spring 903 provides elastic force during clamping, so that the clamping ring 904 can adapt to carbon fiber rods of different diameters, realizing flexible clamping, at the same time, the clamping ring 904 tightly adheres to the outer wall of the carbon fiber rod under the counteracting force of the compression spring 903, realizing rapid clamping, and when the electric telescopic rod 901 is retracted, the clamping ring 904 can also be quickly loosened, facilitating quick replacement of the carbon fiber rod.
[0029] In this embodiment, as Figure 5As shown, the dust falling mechanism 10 comprises a spray head 1001, a water delivery pipe 1002, a water pump 1003, a water suction pipe 1004 and a water tank 1005, the spray head 1001 is arranged at the bottom of the water delivery pipe 1002, one end of the water delivery pipe 1002 is inserted with the water pump 1003, the other end of the water pump 1003 is inserted with the water suction pipe 1004, and the water suction pipe 1004 is arranged in the inside of the water tank 1005; it should be noted that during the period when the remaining drilling machine 7 of the operator rotates and punches the carbon fiber rod, a large amount of dust will be generated, most of which will be sucked by the dust collection mechanism 8, and a small part of fine particles will overflow from the gap into the protective cover 4, therefore, the operator can start the water pump 1003 during this period to generate suction force, and through the water suction pipe 1004 inserted therewith, the clean water in the water tank 1005 is sucked and delivered into the water delivery pipe 1002, when the clean water flows in the water delivery pipe 1002 to the spray head 1001, it will enter the spray head 1001 and be sprayed out from the spray hole opened at the bottom, and combine with the dust in the air, thereby realizing the dust falling operation, in actual use, the spray head 1001 sprays the clean water in the water tank 1005 into fine water mist, which combines with the dust particles flying in the air, can increase the mass of the dust particles, so that the dust particles can be settled, thereby effectively reducing the dust concentration in the air, reducing the dust pollution and accumulation in the operation area, reducing the frequency and cost of regular cleaning and maintenance, and reducing the labor intensity, at the same time, the wet dust particles have much smaller wear on the equipment than the dry dust, which helps to prolong the service life and normal use of the equipment.
[0030] The use method and advantages of the drilling debris collecting device are as follows:
[0031] For example Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 and Figure 6As shown, first, the operator needs to start the left and right electric telescopic rods 901 through the external controller at the same time, so that the driving end starts to extend and push the abutting disc 902 connected thereto to approach the middle carbon fiber rod until the abutting disc 902 can abut the end of the carbon fiber rod. At this time, the clamping ring 904 will contact the outer wall of the carbon fiber rod and be pushed outward by it, so that the compression spring member 903 is squeezed and shortened, thereby expanding the gap of the relative side clamping ring 904, so that it can completely accommodate the entire end of the carbon fiber rod. At the same time, the compression spring member 903 will push the clamping ring 904 tightly against the outer wall of the end of the carbon fiber rod, thereby completing clamping and fixing. First, start the second motor 602 and the drill 7 at the same time, wherein the second motor 602 drives the rotating screw rod 601 inserted thereinto, so that the moving block 603 screwed to the outer wall of the rotating screw rod 601 can move along the thread direction, and the drill 7 located at the bottom thereof moves synchronously, thereby controlling and adjusting the horizontal position of the drill 7 on the surface of the carbon fiber rod. When the drill 7 descends to avoid contact with the carbon fiber rod, it starts to operate and rotates to punch holes. During this period, the dust cover 801 connected to the bottom of the drill 7 covers the punching area, and a large amount of dust and debris generated during this period is concentrated and diffused in the inside of the dust cover 801. At the same time, the operator can start the air pump 804 to generate suction, and through the dust suction pipe 802 inserted into the dust cover 801, the dust and debris flying in the inside of the dust cover 801 are extracted into the dust collection tray 803, and then continue to be pumped into the conveying hose 805, and then the dust and debris are conveyed along the conveying hose 805 to the inside of the collection box 102. At the same time, the operator can start the water pump 1003 to generate suction, and through the water suction pipe 1004 inserted thereinto, the clean water in the water tank 1005 is pumped into the water conveying pipe 1002. When the clean water flows to the nozzle 1001 in the water conveying pipe 1002, it enters the nozzle 1001 and sprays out from the bottom of the nozzle 1001. The clean water is combined with the dust in the air and adheres to the top of the base 1. After the punching operation of the carbon fiber rod is completed, the operator can start the first motor 303 to drive the bidirectional screw rod 302 and the transmission main wheel 304 sleeved to the end of the bidirectional screw rod 302 to rotate at the same time. At the same time, the belt 306 sleeved to the outer wall of the transmission main wheel 304 rotates synchronously with the transmission from wheel 305 on the other side and the bidirectional screw rod 302 sleeved thereto, so that the sliding brush plate 301 screwed to the outer wall of the bidirectional screw rod 302 moves horizontally along the top of the base 1, thereby wiping the wet dust and debris adhered to the top of the base 1, so that they fall into the collection box 102 through the through slot 101 for centralized cleaning later.
[0032] The basic principle, main features and advantages of the present application are shown and described above. The technical personnel in the industry should understand that the present application is not limited by the above examples, and the above examples and descriptions in the specification are only preferred examples of the present application and are not intended to limit the present application. Without departing from the spirit and scope of the present application, various changes and improvements can be made to the present application, and these changes and improvements all fall within the scope of the claimed present application. The scope of protection of the present application is defined by the appended claims and their equivalents.
Claims
1. A borehole debris collection device comprising a base (1) characterised in that: The top of the base (1) is provided with a first sliding groove (2) on both sides, the left and right inner walls of the first sliding groove (2) are rotatably connected with a cleaning brush mechanism (3), one end of the cleaning brush mechanism (3) is rotatably connected with a protective cover (4), the top wall of the protective cover (4) is provided with a second sliding groove (5) in the middle, the left and right inner walls of the second sliding groove (5) are rotatably connected with a moving mechanism (6), the top wall of the moving mechanism (6) is provided with a drilling machine (7), the outer wall of the drilling machine (7) is sleeved with a dust suction mechanism (8), the left and right inner walls of the protective cover (4) are screw-connected with a clamping mechanism (9), the protective cover (4) is above the inner wall of the clamping mechanism (9) and is screw-connected with a dust falling mechanism (10) which penetrates transversely.
2. A drill chip collection device according to claim 1, characterised in that: The cleaning brush mechanism (3) comprises a sliding brush plate (301), a bidirectional screw rod (302), a first motor (303), a transmission main wheel (304), a transmission from wheel (305) and a belt (306), the left and right ends of the bidirectional screw rod (302) are rotatably connected to the left and right inner walls of the first sliding groove (2), the sliding brush plate (301) is screw-connected to the outer wall of the bidirectional screw rod (302), the output end of the first motor (303) is inserted into the end of one of the bidirectional screw rods (302), the transmission main wheel (304) is sleeved with the outer wall of the end of the bidirectional screw rod (302) to which the first motor (303) is inserted, the transmission from wheel (305) is sleeved with the outer wall of the end of the other bidirectional screw rod (302), and the belt (306) is sleeved with the outer walls of the transmission main wheel (304) and the transmission from wheel (305).
3. A drill chip collection device according to claim 1, wherein: The moving mechanism (6) comprises a rotating screw rod (601), a second motor (602) and a moving screw block (603), the left and right ends of the rotating screw rod (601) are rotatably connected to the left and right inner walls of the second sliding groove (5), the second motor (602) is inserted into one end of the rotating screw rod (601), and the moving screw block (603) is screw-connected to the outer wall of the rotating screw rod (601).
4. A drill chip collection device according to claim 1, characterized in that: The top of the base (1) is provided with a first sliding groove (2) on both sides, the left and right inner walls of the first sliding groove (2) are rotatably connected with a cleaning brush mechanism (3), one end of the cleaning brush mechanism (3) is rotatably connected with a protective cover (4), the top wall of the protective cover (4) is provided with a second sliding groove (5) in the middle, the left and right inner walls of the second sliding groove (5) are rotatably connected with a moving mechanism (6), the top wall of the moving mechanism (6) is provided with a drilling machine (7), the outer wall of the drilling machine (7) is sleeved with a dust suction mechanism (8), the left and right inner walls of the protective cover (4) are screw-connected with a clamping mechanism (9), the protective cover (4) is above the inner wall of the clamping mechanism (9) and is screw-connected with a dust falling mechanism (10) which penetrates transversely.
5. A drill chip collection device according to claim 1, characterized in that: The dust suction mechanism (8) comprises a dust suction cover (801), a dust suction pipe (802), a dust collecting disc (803), a suction pump (804) and a conveying hose (805), the top end of the dust suction cover (801) is screw-connected to the bottom of the drilling machine (7), the bottom end of the dust suction pipe (802) is inserted into the inside of the dust suction cover (801), the top end of the dust suction pipe (802) is inserted with the dust collecting disc (803), the rear side of the dust collecting disc (803) is inserted with one end of the conveying hose (805), and the tail end of the conveying hose (805) is inserted into the inside of the base (1).
6. A drill chip collection device according to claim 1, characterized in that: The clamping mechanism (9) comprises an electric telescopic rod (901), a stop disc (902), a compression spring (903) and a clamping ring (904), the tail end of the electric telescopic rod (901) is screwed to the inner walls on the left and right sides of the protective cover (4), the stop disc (902) is arranged at the driving end of the electric telescopic rod (901), and the compression spring (903) is welded between the inner wall of the stop disc (902) and the clamping ring (904).
7. A drill chip collection device according to claim 1, wherein: The dust falling mechanism (10) comprises a spray head (1001), a water delivery pipe (1002), a water pump (1003), a water suction pipe (1004) and a water tank (1005), the spray head (1001) is arranged at the bottom of the water delivery pipe (1002), one end of the water delivery pipe (1002) is connected with the water pump (1003) in a plug-in manner, the other end of the water pump (1003) is connected with the water suction pipe (1004) in a plug-in manner, and the water suction pipe (1004) is arranged in the water tank (1005).