CN209954860U - Full-automatic high-efficiency six-sided drill - Google Patents
Full-automatic high-efficiency six-sided drill Download PDFInfo
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- CN209954860U CN209954860U CN201920287347.7U CN201920287347U CN209954860U CN 209954860 U CN209954860 U CN 209954860U CN 201920287347 U CN201920287347 U CN 201920287347U CN 209954860 U CN209954860 U CN 209954860U
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Abstract
A full-automatic efficient six-side drill comprises a lathe bed, wherein a feeding assembly, an executing assembly and a control assembly are arranged on the lathe bed, the feeding assembly is used for conveying a plate to the position of the executing assembly, the executing assembly is used for drilling the plate, the control assembly is used for controlling the feeding assembly and the executing assembly to perform corresponding actions, the plate is driven to move on a box body through mutual matching of a driving motor, a clamp and a synchronous belt, and the plate is moved to a specified processing position through the control action of a computer; the lifting assembly is matched with the reinforcing assembly, so that the drilling position of the drill bit is more accurate, and the punching effect of the plate is ensured; cooperate through translation subassembly and fluting drill bit, carry out fluting processing to panel, mutually support between 6 drive shafts and 1 auxiliary shaft, improve the drilling machining efficiency of panel, guarantee the processing effect of panel, have degree of automation height, safe efficient advantage.
Description
The technical field is as follows:
the utility model relates to a six brill of full-automatic high efficiency.
Background art:
the six-sided drill is equipment for solving the hole site process in the production of the plate-type furniture, and is a common numerical control six-sided drill, and the six-sided drill can clamp a machined part at one time and can finish machining of the front and back surfaces of the machined part and all hole sites of four side holes at one time; the six-sided drill is mainly used for punching and grooving in wardrobe and cupboard production in a plate furniture factory, and replaces the traditional gang drill.
The existing common gang drill needs manual positioning for punching in the machining process, and the working mode has the disadvantages of complicated steps, high labor intensity, low precision and easy occurrence of large deviation in the operation process, thereby influencing the drilling effect and simultaneously having some potential safety hazards.
The utility model has the following contents:
the embodiment of the utility model provides a six bores of full-automatic high efficiency, structural design is reasonable, adopts full-automatic computer control, and the CAD punches automatic optimization after drawing, can accomplish the processing of panel by automatic efficient, easy operation, the precision is high, and safe and reliable has solved the problem that exists among the prior art.
The utility model discloses a solve the technical scheme that above-mentioned technical problem adopted and be:
a full-automatic high-efficiency six-sided drill comprises a lathe bed, wherein a feeding assembly, an executing assembly and a control assembly are arranged on the lathe bed, the feeding assembly is used for conveying a plate to the position of the executing assembly, the executing assembly is used for drilling the plate, the control assembly is used for controlling the feeding assembly and the executing assembly to perform corresponding actions, the feeding assembly comprises a driving motor, a conveying belt is arranged on an output shaft of the driving motor, two clamps are arranged on the conveying belt at intervals, a distance adjusting cylinder is respectively arranged on each clamp and used for adjusting the clamping height of the clamps, distance adjusting motors are arranged on the two clamps and used for adjusting the clamping length of the clamps, the executing assembly comprises a lifting assembly, the lifting assembly comprises a lifting cylinder, and a first horizontal-direction gang drill and a second horizontal-direction gang drill are arranged on the lifting cylinder, first horizontal direction gang drill and second horizontal direction gang drill mutually perpendicular set up, executive component includes the third direction gang drill, the third direction gang drill sets up along vertical direction, executive component still includes and bores first reinforcement component and the second reinforcement component of matched with first horizontal direction gang drill and second horizontal direction gang drill, control component includes the main control system, the main control system loops through the wire and links to each other respectively with driving motor, roll adjustment cylinder, roll adjustment motor and lift cylinder.
The lifting assembly further comprises a slotting assembly, and the slotting assembly is used for slotting on the plates.
The auxiliary clamping assembly is arranged on the lathe bed and used for reinforcing the plate during drilling and machining on the side face, the auxiliary clamping assembly comprises an auxiliary clamping plate, and a driving assembly is arranged on the auxiliary clamping plate.
The driving assembly is a motor or an air cylinder and is used for driving the auxiliary clamping plate to move along the horizontal direction.
The number of the drill bits of the third-direction gang drill is 9-12.
The number of the drill bits of the second horizontal directional gang drill is 2-4.
The number of the drill bits of the first horizontal directional gang drill is 2-4.
The bottom of the lathe bed is provided with a bearing seat.
The utility model adopts the structure, the plate is driven to move on the box body through the mutual matching of the driving motor, the clamp and the synchronous belt, and the plate is moved to the appointed processing position under the control action of the computer; the lifting assembly is matched with the reinforcing assembly, so that the drilling position of the drill bit is more accurate, and the punching effect of the plate is ensured; cooperate through translation subassembly and fluting drill bit, carry out fluting processing to panel, mutually support between 6 drive shafts and 1 auxiliary shaft, improve the drilling machining efficiency of panel, guarantee the processing effect of panel, have degree of automation height, safe efficient advantage.
Description of the drawings:
fig. 1 is a schematic structural diagram of the present invention.
Fig. 2 is a side view of fig. 1.
Fig. 3 is a schematic structural view of the clamp of the present invention.
Fig. 4 is a schematic diagram of the internal structure of the present invention.
Fig. 5 is a top view of fig. 4.
Fig. 6 is a side view of fig. 4.
In the figure, the machine tool comprises a machine tool body 1, a machine tool body 2, a driving motor 3, a conveyor belt 4, a clamp 5, a distance adjusting motor 6, a lifting cylinder 7, a first horizontal directional gang drill 8, a second horizontal directional gang drill 9, a third directional gang drill 10, a first reinforcing component 11, a second reinforcing component 12, a control host 13, a slotting component 14, an auxiliary clamping component 15 and a bearing seat.
The specific implementation mode is as follows:
in order to clearly illustrate the technical features of the present invention, the present invention is explained in detail by the following embodiments in combination with the accompanying drawings.
As shown in fig. 1 to 6, a full-automatic high-efficiency six-sided drill comprises a lathe bed 1, wherein a feeding assembly, an execution assembly and a control assembly are arranged on the lathe bed 1, the feeding assembly is used for conveying a plate to the position of the execution assembly, the execution assembly is used for drilling the plate, the control assembly is used for controlling the feeding assembly and the execution assembly to perform corresponding actions, the feeding assembly comprises a driving motor 2, a conveying belt 3 is arranged on an output shaft of the driving motor 2, two clamps 4 are arranged on the conveying belt 2 at intervals, a distance adjusting cylinder is respectively arranged on each clamp 4 and used for adjusting the clamping height of the clamp 4, a distance adjusting motor 5 is arranged on the two clamps, the distance adjusting motor 5 is used for adjusting the clamping length of the clamp 4, the execution assembly comprises a lifting assembly, the lifting assembly comprises a lifting cylinder 6, be equipped with first horizontal direction gang drill 7 and second horizontal direction gang drill 8 on lift cylinder 6, first horizontal direction gang drill 7 and the setting of second horizontal direction gang drill 8 mutually perpendicular, executive component includes third direction gang drill 9, third direction gang drill 9 sets up along vertical direction, executive component still includes and consolidates subassembly 10 and second with first horizontal direction gang drill 7 and second horizontal direction gang drill 8 matched with first reinforcement subassembly 11, control component includes main control system 12, main control system 12 loops through the wire and links to each other respectively with driving motor 2, roll adjustment cylinder, roll adjustment motor 5 and lift cylinder 6.
The lifting assembly further comprises a slotting assembly 13, and the slotting assembly 13 is used for slotting on the plates.
The auxiliary clamping assembly 14 is arranged on the lathe bed 1, the auxiliary clamping assembly 14 is used for reinforcing plates during drilling and machining on the side face, the auxiliary clamping assembly 14 comprises an auxiliary clamping plate, and a driving assembly is arranged on the auxiliary clamping plate.
The driving assembly is a motor or an air cylinder and is used for driving the auxiliary clamping plate to move along the horizontal direction.
The number of the drill bits of the third direction gang drill 9 is 9-12.
The number of the drill bits of the second horizontal gang drill 8 is 2-4.
The number of the drill bits of the first horizontal gang drill 7 is 2-4.
The bottom of the bed body 1 is provided with a bearing seat 15.
When the device is used, a plate to be processed is placed on the lathe bed 1, the plate is fixed through the two clamps 4 arranged at intervals, the distance adjusting cylinder and the distance adjusting motor 5 can be adjusted according to the length and the thickness of the plate, and the plate is firmly clamped on the clamps 4 by selecting proper sizes; after the plate is fixed, inputting a corresponding control program into the control host 12, and starting the execution assembly to process the plate; the driving motor 2 and the conveyor belt 3 act to drive the plate to the position of the execution assembly, the lifting cylinder 6 acts to drive the first horizontal gang drill 7 and the first reinforcing assembly 10 to simultaneously descend to the position of the plate, the first reinforcing assembly 10 tightly presses the plate on the lathe bed 1, and the first horizontal gang drill 7 drills the front end of the plate to complete the machining of the front end of the plate; the plate continues to move forwards, according to the same steps, the lifting cylinder 6 drives the second horizontal gang drill 8 to descend, the side face of the plate is drilled, and the lifting cylinder 6 can precisely slide on a cross beam of the lathe bed 1 under the action of the translation motor and the lead screw, so that the first horizontal gang drill 7 and the second horizontal gang drill 8 can adjust a drill bit and positions according to the width of the plate, and the universality of the six-face drill is improved; after the side face drilling is finished, the third directional gang drill 9 acts to drill the top and the bottom of the plate, and the auxiliary clamping assembly 14 arranged on the lathe bed 1 can further fix the position of the plate in the plate machining process; the slotting component 13 on the device can carry out slotting process treatment on the plate, and the function diversity of the device is improved; the number of the drill bits of the third-direction gang drill 9 is 9-12, the number of the drill bits of the second horizontal-direction gang drill 8 is 2-4, and the number of the drill bits of the first horizontal-direction gang drill 7 is 2-4, so that the device can be suitable for different processing requirements and environments, and the bearing seat 15 at the bottom of the lathe bed 1 can reduce the shake brought in the processing process and increase the processing precision; the control host 12 can modify the operation program internally, change the processing sequence or the number of the drill bits, and can meet different processing requirements of users.
The above-mentioned specific embodiments can not be regarded as the restriction to the scope of protection of the utility model, to technical personnel in this technical field, it is right the utility model discloses any replacement improvement or transform that embodiment made all fall within the scope of protection of the utility model.
The parts of the present invention not described in detail are the known techniques of those skilled in the art.
Claims (8)
1. The utility model provides a six brill of full-automatic high efficiency which characterized in that: the plate drilling machine comprises a machine body, wherein a feeding assembly, an executing assembly and a control assembly are arranged on the machine body, the feeding assembly is used for conveying plates to the executing assembly, the executing assembly is used for drilling the plates, the control assembly is used for controlling the feeding assembly and the executing assembly to perform corresponding actions, the feeding assembly comprises a driving motor, a conveying belt is arranged on an output shaft of the driving motor, two clamps are arranged on the conveying belt at intervals, a distance adjusting cylinder is arranged on each clamp respectively and used for adjusting the clamping height of the clamps, distance adjusting motors are arranged on the two clamps and used for adjusting the clamping length of the clamps, the executing assembly comprises a lifting assembly, the lifting assembly comprises a lifting cylinder, a first horizontal directional gang drill and a second horizontal directional gang drill are arranged on the lifting cylinder, and the first horizontal directional gang drill and the second horizontal directional gang drill are arranged vertically, the executive component comprises a third-direction gang drill, the third-direction gang drill is arranged along the vertical direction, the executive component further comprises a first reinforcing component and a second reinforcing component which are matched with the first horizontal-direction gang drill and the second horizontal-direction gang drill, the control component comprises a control host, and the control host is sequentially connected with the driving motor, the distance adjusting cylinder, the distance adjusting motor and the lifting cylinder through wires.
2. The hexahedral drill according to claim 1, characterized in that: the lifting assembly further comprises a slotting assembly, and the slotting assembly is used for slotting on the plates.
3. The hexahedral drill according to claim 1, characterized in that: the auxiliary clamping assembly is arranged on the lathe bed and used for reinforcing the plate during drilling and machining on the side face, the auxiliary clamping assembly comprises an auxiliary clamping plate, and a driving assembly is arranged on the auxiliary clamping plate.
4. A six-sided drill according to claim 3, characterized in that: the driving assembly is a motor or an air cylinder and is used for driving the auxiliary clamping plate to move along the horizontal direction.
5. The hexahedral drill according to claim 1, characterized in that: the number of the drill bits of the third-direction gang drill is 9-12.
6. The hexahedral drill according to claim 1, characterized in that: the number of the drill bits of the second horizontal directional gang drill is 2-4.
7. The hexahedral drill according to claim 1, characterized in that: the number of the drill bits of the first horizontal directional gang drill is 2-4.
8. The hexahedral drill according to claim 1, characterized in that: the bottom of the lathe bed is provided with a bearing seat.
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CN201920287347.7U CN209954860U (en) | 2019-03-07 | 2019-03-07 | Full-automatic high-efficiency six-sided drill |
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CN201920287347.7U CN209954860U (en) | 2019-03-07 | 2019-03-07 | Full-automatic high-efficiency six-sided drill |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN109719805A (en) * | 2019-03-07 | 2019-05-07 | 济南佳梆数控设备有限公司 | A kind of six face of full automatic high efficiency brill |
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2019
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN109719805A (en) * | 2019-03-07 | 2019-05-07 | 济南佳梆数控设备有限公司 | A kind of six face of full automatic high efficiency brill |
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GR01 | Patent grant | ||
GR01 | Patent grant | ||
TR01 | Transfer of patent right |
Effective date of registration: 20210429 Address after: 250000 No.9 workshop in the characteristic equipment manufacturing industrial park of Shanghe Economic Development Zone, Jinan City, Shandong Province Patentee after: Jinan Zigui CNC Equipment Co.,Ltd. Address before: Room 810-1, Building 1, 15612 Century Avenue, Jinan High-tech Zone, Shandong Province, 250000 Patentee before: JINAN IGOLDEN CNC EQUIPMENT Co.,Ltd. |
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TR01 | Transfer of patent right |