CN221019683U - Full-automatic drilling, tapping and edge-covering all-in-one machine - Google Patents

Full-automatic drilling, tapping and edge-covering all-in-one machine Download PDF

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Publication number
CN221019683U
CN221019683U CN202322528015.2U CN202322528015U CN221019683U CN 221019683 U CN221019683 U CN 221019683U CN 202322528015 U CN202322528015 U CN 202322528015U CN 221019683 U CN221019683 U CN 221019683U
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China
Prior art keywords
tapping
drilling
edge
discharging
material moving
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CN202322528015.2U
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Chinese (zh)
Inventor
徐热闹
杨彩
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Zhongshan Kaitong Plastic Hardware Co ltd
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Zhongshan Kaitong Plastic Hardware Co ltd
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Abstract

The utility model relates to the technical field of workpiece processing, and discloses a full-automatic drilling, tapping and edge covering all-in-one machine, which comprises a machine body, wherein an electric control cabinet is arranged below the machine body, a feeding box is arranged on the side of the machine body, a working chamber is arranged in the machine body, a discharging table is arranged in the working chamber, a material moving assembly is arranged on one side of the discharging table, a first drilling mechanism, a edge covering removing mechanism, a second drilling mechanism, a tapping mechanism and a central punching mechanism are sequentially arranged on the other side of the discharging table side by side, the discharging end of the feeding box is connected with the material moving assembly, a controller is arranged in the electric control cabinet and is respectively electrically connected with the first drilling device, the edge covering removing mechanism, the second drilling mechanism, the tapping mechanism and the central punching mechanism, and the workpiece output by the discharging end is sequentially transported to the first drilling mechanism, the second drilling mechanism, the tapping mechanism and the central punching mechanism by the material moving assembly to be automatically processed.

Description

Full-automatic drilling, tapping and edge-covering all-in-one machine
Technical Field
The utility model relates to the technical field of workpiece processing, in particular to a full-automatic drilling, tapping and edge covering integrated machine.
Background
In industrial production, it is often necessary to drill holes in workpieces, particularly in some workpieces, and also tapping, drilling and tapping being the two operations most commonly used in machining, particularly in the machining of hardware. Drilling refers to the process of leaving a hole in a workpiece through rotary cutting; tapping refers to cutting threads, screws or buttons on the surface, end surface or inner surface of a hole in a workpiece. Part of the workpieces still need operations such as deburring and edging on the basis of drilling and tapping, drilling and tapping operations need to be performed by using a drilling machine firstly, then tapping is performed by using a tapping machine, therefore, the workpieces need to be circulated in a plurality of processing programs, workpiece transfer operations need to be performed, the drilling and tapping operations of the workpieces are time-consuming, the efficiency is low, and therefore, a full-automatic drilling, tapping and edging all-in-one machine is provided at present, the workpiece transfer operations do not need to be directly performed on the workpieces, and full-automatic production is realized.
Disclosure of utility model
The utility model aims to solve the technical problem of overcoming the defects of the prior art and providing a full-automatic drilling, tapping and edge covering integrated machine which is convenient to use and improves the efficiency.
The technical scheme of the utility model is as follows: the utility model provides a full-automatic brill is attacked and is draped over one's shoulders limit all-in-one, includes the organism, the organism below is provided with automatically controlled cabinet, the organism side is provided with the feed box, be equipped with confined machine storehouse on the organism, the level is provided with the blowing platform in the machine storehouse, blowing platform one side is provided with moves the material subassembly, and the opposite side has set gradually first drilling mechanism side by side, removes and drapes over one's shoulders a sword mechanism, second drilling mechanism, tapping mechanism and central punching mechanism, the discharge end of feed box with move the material subassembly and be connected, be provided with the controller in the automatically controlled cabinet, the controller respectively with first drilling mechanism, remove and drape one's shoulders a sword mechanism, second drilling mechanism, tapping mechanism and central punching mechanism electric connection, move the material subassembly will work piece that the discharge end output transports to first drilling mechanism, second drilling mechanism, tapping mechanism and central punching mechanism in proper order and carries out automatic linear processing.
According to the technical scheme, the feeding box is used for continuously feeding, the discharging table is used for placing a workpiece to be processed, the material moving assembly is used for realizing that the workpiece is sequentially processed after being output from the discharging hole and then is shifted to the next station for processing, the first drilling mechanism, the second drilling mechanism and the central punching mechanism are used for drilling the upper surface of the workpiece, the tapping mechanism is used for tapping the drilling position of the second drilling mechanism, and the deburring mechanism is used for deburring the side of the workpiece.
The feeding box is internally provided with a vibration feeding disc and a discharging track arranged at the output end of the vibration feeding disc, the end part of the discharging track is connected with a discharging table, the discharging track is provided with a sensor at the lateral side of the discharging end, and the vibration feeding disc and the sensor are electrically connected with the controller. Therefore, the vibration feeding disc is used for vibration feeding, the discharging rail is used for sequentially discharging workpieces, and the sensor is used for sensing the workpieces discharged by the feeding box and then positioning the workpieces.
The material moving assembly comprises a material moving cylinder and a material moving table arranged at the output end of the material moving cylinder, a sliding rail is fixed at the front side of the material placing table, the material moving table is in sliding fit with the sliding rail, the material moving table is arranged in parallel with the material placing table, a plurality of clamping blocks are arranged on the material moving table towards the material placing table in parallel, and clamping grooves matched with the shape of the workpiece are formed in the clamping blocks. Therefore, the material moving cylinder is used for driving the material moving table to move, the sliding rail is used for supporting and assisting the material moving table to move, the material moving table moves more stably and smoothly, and the clamping block is used for clamping a workpiece through the clamping groove, so that the workpiece machined at the last station is clamped and sent to the next station.
The first drilling mechanism and the second drilling mechanism comprise supporting seats, driving motor boxes are arranged on the supporting seats, the output ends of the driving motor boxes are connected with two groups of drill bit spindles, and the bottoms of the drill bit spindles are vertically downwards detachably connected with drill bits. It follows that the first and second drilling mechanisms perform drilling operations via the drive motor box.
The tapping mechanism comprises a tapping mounting seat, a tapping motor is arranged on the tapping mounting seat, the output end of the tapping motor is connected with a tapping spindle, the bottom of the tapping spindle is vertically downwards detachably connected with taps, and the taps are arranged in two groups in parallel. It follows that the tapping motor is used to drive the tap to tap a through hole in the surface of a workpiece.
The edge removing mechanism comprises an edge removing cylinder, a sliding seat and an edge removing motor, wherein the edge removing cylinder is connected between the first drilling mechanism and the second drilling mechanism, the output end of the edge removing cylinder is movably connected with the sliding seat, the edge removing motor is connected to the sliding seat, the output end of the edge removing motor is connected with an edge removing rotating rod, and the edge removing rotating rod is aligned with the setting of the discharging table from the side. It can be seen that the flash removing mechanism removes the flash through the flash removing rotary rod.
The center punching mechanism comprises a fixing seat, a punching cylinder arranged on the fixing seat and a punch connected with the output end of the punching cylinder, and the punch is vertically and downwards connected with the bottom of the punching cylinder. It can be seen that the punching cylinder drives the punch to punch burrs around the central through hole of the workpiece.
The front side of the machine base is provided with a sliding door, an operation display screen and an operation button are arranged on the side of the sliding door, and the operation display screen is electrically connected with the controller. It follows that the operating display screen is used for operating and controlling the processing in the machine cabin.
Drawings
FIG. 1 is a schematic diagram of the structure of the present utility model;
FIG. 2 is a schematic diagram of the structure of the present utility model;
FIG. 3 is a top view of the present utility model;
FIG. 4 is a schematic view of a partial structure of the present utility model;
Fig. 5 is a schematic view of the structure of the work piece.
Detailed Description
The technical solutions in the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present utility model.
As shown in fig. 1 to 5, the utility model relates to a full-automatic drilling, tapping and edge covering integrated machine, which comprises a machine body 1, an electric control cabinet 11 is arranged below the machine body 1, a feeding box 2 is arranged on the side of the machine body 1, a closed machine bin is arranged on the machine body 1, a discharging table 3 is horizontally arranged in the machine bin, a material moving assembly 4 is arranged on one side of the discharging table 3, a first drilling mechanism 5, a edge covering removing mechanism 6, a second drilling mechanism 7, a tapping mechanism 8 and a central punching mechanism 9 are sequentially arranged on the other side of the discharging table 3 side by side, the discharging end of the feeding box 2 is connected with the material moving assembly 4, a controller is arranged in the electric control cabinet 11 and is respectively electrically connected with the first drilling mechanism 5, the edge covering removing mechanism 6, the second drilling mechanism 7, the tapping mechanism 8 and the central punching mechanism 9, and the material moving assembly 4 sequentially conveys workpieces output by the discharging end to the first drilling mechanism 5, the second drilling mechanism 7, the tapping mechanism 8 and the central punching mechanism 9 for automatic machining.
In this embodiment, the first drilling mechanism 5, the second drilling mechanism 7 and the tapping mechanism 8 are two-axis output processing devices, two output shafts of the two-axis output device are respectively provided with a corresponding processing cutter, the discharging table 3 is provided with a guide slot hole plate, a guide slot hole 31 adapted to the processing cutter is arranged on the guide slot hole plate, the reference number of the part is 100, the upper surface of the part 100 is symmetrically provided with a first through hole 110, a second through hole 120 and a central hole 130, the part 100 is provided with a rectangular groove 140, the machine body 1 is provided with a waste groove at the bottom of the discharging table 3, the machine body 1 is provided with a plurality of air blowing pipes, and the air blowing pipes are aligned to the discharging table 3. The air blowing pipe blows the waste generated by processing into a waste tank, and the waste tank is used for containing the waste generated when drilling and tapping the parts.
The feeding box 2 is internally provided with a vibration feeding disc 21 and a discharging track 22 arranged at the output end of the vibration feeding disc 21, the end part of the discharging track 22 is connected with the discharging table 3, the discharging track 22 is provided with a sensor 10 at the lateral side of the discharging end, and the vibration feeding disc 21 is electrically connected with the controller.
The material moving assembly 4 comprises a material moving cylinder 41 and a material moving table 42 arranged at the output end of the material moving cylinder 41, the machine body 1 is fixed with a slide rail 12 at the front side of the material placing table 3, the material moving table 42 is in sliding fit with the slide rail 12, a plurality of clamping blocks 43 are arranged on the material moving table 42 in parallel towards the material placing table 3, and clamping grooves 431 matched with the shape of the workpiece are formed in the clamping blocks 43.
The first drilling mechanism 5 and the second drilling mechanism 7 comprise supporting seats 51, a driving motor box 52 is arranged on the supporting seats 51, two groups of drill bit spindles 53 are connected to the output end of the driving motor box 52, and drill bits 54 are vertically and downwards detachably connected to the bottoms of the drill bit spindles 53. In this embodiment, there is a set angle difference between the drill bit at the output end of the first drilling mechanism 5 and the drill bit at the output end of the second drilling mechanism 7.
The flash removing mechanism 6 comprises a flash removing cylinder 61, a sliding seat 62 and a flash removing motor 63, the flash removing cylinder 61 is obliquely and horizontally arranged between the first drilling mechanism 5 and the second drilling mechanism 7, the output end of the flash removing cylinder 61 is movably connected with the sliding seat 62, the flash removing motor 63 is connected with the sliding seat 62, the output end of the flash removing motor 63 is connected with a flash removing rotating rod 64, and the flash removing rotating rod 64 is aligned with the discharging table 3 from the side.
The tapping mechanism 8 comprises a tapping installation seat 81, a tapping motor 82 is arranged on the tapping installation seat 81, the output end of the tapping motor 82 is connected with a tapping spindle 83, the bottom of the tapping spindle 83 is vertically downwards detachably connected with taps 84, and the taps 84 are arranged in parallel in two groups.
The center punching mechanism 9 comprises a fixing seat 91, a punching cylinder 92 arranged on the fixing seat 91 and a punch 93 connected to the output end of the punching cylinder 92, wherein the punch 93 is vertically and downwardly connected to the bottom of the punching cylinder 92.
The machine body 1 is provided with a sliding door 13 at the front side of the machine cabin, the sliding door 13 is provided with an operation display screen 14 and operation buttons, and the operation display screen 14 is electrically connected with the controller. In this embodiment, the upper portion of the sliding door 13 is made of transparent material, so that a worker can observe the internal operation of the cabin from the outside.
The working flow of the utility model is as follows: the workpiece is placed into the feeding box 2 manually, the feeding tray 21 is vibrated to realize automatic sorting of the workpieces 100, the workpieces are output to the discharging track 22 from the feeding end, the workpieces 100 are sequentially output, after the sensor 10 senses the parts, the clamping grooves 431 on the clamping blocks 43 hold the workpieces 100, the moving cylinder 41 drives the workpieces to move to the corresponding lower parts of the first drilling mechanisms 5, the drill bit 54 at the output end of the first drilling mechanisms 5 drills the end faces of the workpieces through guide slots, the through holes are the first through holes 110, the deburring cylinder 61 drives the deburring motor 63 to slide on the sliding seat 62 close to the discharging table 3 while drilling, the deburring motor 63 drives the deburring rotary rod 64 to rotate on the side faces of the workpieces, after deburring and deburring of the workpieces, the moving cylinder 61 drives the workpieces to move to the corresponding lower parts of the second through holes 120 of the second drilling mechanisms 7, the tapping mechanisms 8 drive the taps 84 to drill the inner walls of the second through the guide slots 120, the center punching mechanism 9 of the punched holes on the workpieces is smooth, and the machining efficiency of the punched center holes 130 of the workpieces is improved.
Finally, it should be emphasized that the above description is not intended to limit the utility model, but rather that various changes and modifications can be made by those skilled in the art without departing from the spirit and principles of the utility model, and any modifications, equivalents, improvements, etc. are intended to be included within the scope of the present utility model.

Claims (8)

1. The utility model provides a full-automatic brill attacks all-in-one of removing on one side, includes organism (1), organism (1) below is provided with automatically controlled cabinet (11), organism (1) side is provided with material loading case (2), be equipped with confined cabin, its characterized in that on organism (1): the automatic feeding machine is characterized in that a discharging table (3) is horizontally arranged in the machine bin, a material moving assembly (4) is arranged on one side of the discharging table (3), a first drilling mechanism (5), a burr removing mechanism (6), a second drilling mechanism (7), a tapping mechanism (8) and a central punching mechanism (9) are sequentially arranged on the other side of the discharging table side by side, a discharging end of the feeding box (2) is connected with the material moving assembly (4), a controller is arranged in the electric control cabinet (11), the controller is respectively connected with the first drilling mechanism (5), the burr removing mechanism (6), the second drilling mechanism (7), the tapping mechanism (8) and the central punching mechanism (9), and products output by the discharging end are sequentially conveyed to the first drilling mechanism (5), the second drilling mechanism (7), the tapping mechanism (8) and the central punching mechanism (9) by the material moving assembly (4) to be automatically processed linearly.
2. The full-automatic drilling, tapping and edge-covering all-in-one machine according to claim 1, wherein: the feeding box (2) is internally provided with a vibration feeding disc (21) and a discharging track (22) arranged at the output end of the vibration feeding disc (21), the end part of the discharging track (22) is connected with the discharging table (3), the discharging track (22) is provided with a sensor (10) at the lateral side of the discharging end, and the vibration feeding disc (21) and the sensor (10) are electrically connected with the controller.
3. The full-automatic drilling, tapping and edge-covering all-in-one machine according to claim 1, wherein: the material moving assembly (4) comprises a material moving cylinder (41) and a material moving table (42) arranged at the output end of the material moving cylinder (41), the machine body (1) is fixed with a sliding rail (12) at the front side of the material discharging table (3), the material moving table (42) is in sliding fit with the sliding rail (12), a plurality of clamping blocks (43) are arranged on the material moving table (42) towards the material discharging table (3), and clamping grooves (431) matched with the appearance of a product are formed in the clamping blocks (43).
4. The full-automatic drilling, tapping and edge-covering all-in-one machine according to claim 1, wherein: the drilling machine comprises a first drilling mechanism (5) and a second drilling mechanism (7), wherein the first drilling mechanism and the second drilling mechanism both comprise a supporting seat (51), a driving motor box (52) is arranged on the supporting seat (51), two groups of drill bit spindles (53) are connected to the output end of the driving motor box (52), and a drill bit (54) is vertically downwards detachably connected to the bottom of each drill bit spindle (53).
5. The full-automatic drilling, tapping and edge-covering all-in-one machine according to claim 1, wherein: the edge removing mechanism (6) comprises an edge removing cylinder (61), a sliding seat (62) and an edge removing motor (63), wherein the edge removing cylinder (61) is obliquely and horizontally arranged between the first drilling mechanism (5) and the second drilling mechanism (7), the output end of the edge removing cylinder (61) is movably connected with the sliding seat (62), the edge removing motor (63) is connected with the sliding seat (62), the output end of the edge removing motor (63) is connected with an edge removing rotating rod (64), and the edge removing rotating rod (64) is aligned with the discharging table (3) from the side.
6. The full-automatic drilling, tapping and edge-covering all-in-one machine according to claim 1, wherein: the tapping mechanism (8) comprises a tapping mounting seat (81), a hydraulic cylinder is arranged on the tapping mounting seat (81), a tapping motor (82) is connected with the output end of the hydraulic cylinder, a tapping main shaft (83) is connected with the output end of the tapping motor (82), a screw tap (84) is vertically and downwards detachably connected with the bottom of the tapping main shaft (83), and the screw taps (84) are arranged in two groups in parallel.
7. The full-automatic drilling, tapping and edge-covering all-in-one machine according to claim 1, wherein: the center punching mechanism (9) comprises a fixed seat (91), a punching cylinder (92) arranged on the fixed seat (91) and a punch (93) connected with the output end of the punching cylinder (92), wherein the punch (93) is vertically downwards connected with the bottom of the punching cylinder (92).
8. The full-automatic drilling, tapping and edge-covering all-in-one machine according to claim 1, wherein: the machine body (1) is provided with a sliding door (13) at the front side of the machine cabin, an operation display screen (14) and operation buttons are arranged on the sliding door (13), and the operation display screen (14) is electrically connected with the controller.
CN202322528015.2U 2023-09-18 2023-09-18 Full-automatic drilling, tapping and edge-covering all-in-one machine Active CN221019683U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202322528015.2U CN221019683U (en) 2023-09-18 2023-09-18 Full-automatic drilling, tapping and edge-covering all-in-one machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202322528015.2U CN221019683U (en) 2023-09-18 2023-09-18 Full-automatic drilling, tapping and edge-covering all-in-one machine

Publications (1)

Publication Number Publication Date
CN221019683U true CN221019683U (en) 2024-05-28

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ID=91183756

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202322528015.2U Active CN221019683U (en) 2023-09-18 2023-09-18 Full-automatic drilling, tapping and edge-covering all-in-one machine

Country Status (1)

Country Link
CN (1) CN221019683U (en)

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