CN223455300U - A multifunctional cutting component for a production line - Google Patents
A multifunctional cutting component for a production lineInfo
- Publication number
- CN223455300U CN223455300U CN202422991157.7U CN202422991157U CN223455300U CN 223455300 U CN223455300 U CN 223455300U CN 202422991157 U CN202422991157 U CN 202422991157U CN 223455300 U CN223455300 U CN 223455300U
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- China
- Prior art keywords
- fixed
- supporting
- motor
- production line
- sliding block
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Abstract
The utility model discloses a multifunctional cutting assembly for a production line, which comprises two groups of supporting seats, wherein a workbench is fixed between the two supporting seats, supporting mechanisms are fixed on the two supporting seats, reversing mechanisms are arranged on the side surfaces of the supporting mechanisms, each reversing mechanism comprises a first shell fixed on the supporting mechanism, a third motor is arranged in the first shell, an output shaft of the third motor penetrates through the side surface of the first shell and is connected with a rotary table, a lifting mechanism is fixed on the side surface of the rotary table, and a connecting plate is arranged at the bottom of the lifting mechanism. Compared with the prior art, the laser cutting device has the advantages that the supporting mechanism is arranged to be matched with the lifting mechanism to adjust the position and the height of the laser emitter, materials of a production line are conveniently cut according to requirements, meanwhile, the angle of the laser emitter is adjusted by the reversing mechanism, the cutting universality of the device is improved, and the use flexibility is very high.
Description
Technical Field
The utility model relates to the technical field of cutting assemblies, in particular to a multifunctional cutting assembly for a production line.
Background
The cutting production line (Cutting Production Line) is one of machine tools and is mainly used for cutting materials in the mechanical manufacturing industries of cold-rolled coiled sheets, hot-rolled coiled sheets, stainless steel coiled sheets, galvanized coiled sheets, electric appliances, automobiles and the like. The cutting production line is one of important equipment in the modern sheet metal processing industry, and has the remarkable advantages of high efficiency, high precision, flexibility and the like.
Existing cutting assemblies, particularly laser cutting assemblies, accomplish cutting of a workpiece by moving longitudinally and transversely. However, for such laser cutting devices, the laser head assembly can only move in the transverse and longitudinal directions, and the angle of the laser emitted by the laser head assembly is not adjustable, so that the laser cutting device cuts fewer kinds of workpieces and has low universality, and therefore, a multifunctional cutting assembly for production is provided.
Disclosure of utility model
The utility model aims to solve the defects in the prior art, and provides a multifunctional cutting assembly for a production line.
In order to achieve the above purpose, the present utility model adopts the following technical scheme:
The utility model provides a production line is with multi-functional cutting assembly, includes the supporting seat, the quantity of supporting seat is two sets of, be fixed with the workstation between the supporting seat, two be fixed with supporting mechanism on the supporting seat, supporting mechanism's side-mounting has reversing mechanism, reversing mechanism is including fixing the first casing on supporting mechanism, the internally mounted of first casing has the third motor, the output shaft of third motor runs through the side of first casing and is connected with the revolving stage, the side-mounting of revolving stage has elevating system, the connecting plate is installed to elevating system's bottom, laser emitter is installed to the bottom of connecting plate.
Preferably, the supporting mechanism comprises a first adjusting mechanism fixed on a supporting seat on one side and a second supporting frame fixed on a supporting seat on the other side, a guide shaft is fixed on the second supporting frame, a second sliding block is connected onto the guide shaft in a sliding manner, and a second adjusting mechanism is arranged on the first adjusting mechanism and the second sliding block.
Preferably, the first adjusting mechanism comprises a first supporting frame fixed on a supporting seat on one side, a first motor is installed on the side face of the first supporting frame, an output shaft of the first motor is inserted into the first supporting frame and connected with a first threaded column, a first sliding block is connected to the first threaded column through threads, and the second adjusting mechanism is fixed on the first sliding block.
Preferably, the second adjusting mechanism comprises a third supporting frame fixed on the first sliding block and the second sliding block, fixing plates are fixed at two ends of the front face of the third supporting frame, a second motor is installed on one side of the fixing plates, an output shaft of the second motor is inserted between the two fixing plates and is connected with a second threaded column, and the second threaded column is connected with the third sliding block through threads.
Preferably, the third sliding block is in sliding connection with the third supporting frame, and the reversing mechanism is fixed on the third sliding block.
Preferably, the lifting mechanism comprises a second shell fixed on the rotary table, a threaded sleeve is rotationally connected in the second shell, a first bevel gear is fixedly sleeved on the threaded sleeve, a third threaded column is connected in the threaded sleeve through threads, movable frames are fixed at two ends of the third threaded column, a fourth motor is mounted on the side face of the second shell, and an output shaft of the fourth motor is inserted into the second shell and connected with the second bevel gear.
Preferably, the first bevel gear and the second bevel gear are in meshed transmission, the movable frame is in sliding connection with the second shell, and the connecting plate is fixed at the bottom of the movable frame.
Compared with the prior art, the utility model has the beneficial effects that:
According to the utility model, the position and the height of the laser transmitter are adjusted by arranging the supporting mechanism and matching with the lifting mechanism, so that the material of the production line can be conveniently cut according to the requirement, meanwhile, the angle of the laser transmitter is adjusted by utilizing the reversing mechanism, the cutting universality of the device is improved, and the use flexibility is very high.
Drawings
FIG. 1 is a schematic diagram of a multifunctional cutting assembly for a production line according to the present utility model;
FIG. 2 is a cross-sectional view of the support mechanism of FIG. 1;
FIG. 3 is a cross-sectional view of the reversing mechanism of FIG. 1;
fig. 4 is a cross-sectional view of the lift mechanism of fig. 1.
In the figure, a supporting seat 1, a workbench 2, a supporting mechanism 3, a first adjusting mechanism 31, a first supporting frame 311, a first motor 312, a first screw column 313, a first sliding block 314, a second supporting frame 32, a guiding shaft 33, a second sliding block 34, a second adjusting mechanism 35, a third supporting frame 351, a fixed plate 352, a second motor 353, a second screw column 354, a third sliding block 355, a 4 reversing mechanism 41, a first shell 42, a third motor 43, a turntable, a 5 lifting mechanism 51, a second shell 51, a screw sleeve 52, a first bevel gear 53, a third screw column 54, a movable frame 55, a fourth motor 56, a second bevel gear 57, a 6 connecting plate 6 and a 7 laser transmitter.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments.
Referring to fig. 1 to 4, a multifunctional cutting assembly for a production line comprises two groups of supporting seats 1, a workbench 2 is fixed between the supporting seats 1, supporting mechanisms 3 are fixed on the two supporting seats 1, a reversing mechanism 4 is arranged on the side surface of the supporting mechanism 3, the supporting mechanism 3 comprises a first adjusting mechanism 31 fixed on one supporting seat 1 and a second supporting frame 32 fixed on the other supporting seat 1, a guide shaft 33 is fixed on the second supporting frame 32, a second sliding block 34 is slidingly connected on the guide shaft 33, a second adjusting mechanism 35 is arranged on the first adjusting mechanism 31 and the second sliding block 34, the first adjusting mechanism 31 comprises a first supporting frame 311 fixed on one supporting seat 1, a first motor 312 is arranged on the side surface of the first supporting frame 311, an output shaft of the first motor 312 is inserted into the first supporting frame 311 and is connected with a first threaded column 313, the first screw column 313 is connected with a first sliding block 314 through screw threads, the second adjusting mechanism 35 is fixed on the first sliding block 314, the second adjusting mechanism 35 comprises a third supporting frame 351 fixed on the first sliding block 314 and the second sliding block 34, both ends of the front face of the third supporting frame 351 are fixed with fixing plates 352, a second motor 353 is arranged on one side of the fixing plates 352, an output shaft of the second motor 353 is inserted between the two fixing plates 352 and connected with a second screw column 354, the second screw column 354 is connected with a third sliding block 355 through screw threads, the third sliding block 355 is in sliding connection with the third supporting frame 351, the reversing mechanism 4 is fixed on the third sliding block 355, the reversing mechanism 4 comprises a first shell 41 fixed on the supporting mechanism 3, a third motor 42 is arranged in the first shell 41, the output shaft of the third motor 42 penetrates through the side face of the first shell 41 and is connected with a turntable 43, the elevating system 5 is fixed with in the side of revolving stage 43, elevating system 5 installs connecting plate 6 in the bottom of elevating system 5, elevating system 5 is including the second casing 51 of fixing on revolving stage 43, the inside rotation of second casing 51 is connected with thread bush 52, fixed first bevel gear 53 of cup jointing on the thread bush 52, the inside of thread bush 52 has third screw thread post 54 through threaded connection, the both ends of third screw thread post 54 are fixed with movable frame 55, the fourth motor 56 is installed to the side of second casing 51, the output shaft of fourth motor 56 inserts the inside of second casing 51 and is connected with second bevel gear 57, first bevel gear 53 and second bevel gear 57 are engaged transmission, movable frame 55 and second casing 51 are sliding connection, connecting plate 6 is fixed in the bottom of movable frame 55, laser emitter 7 is installed to the bottom of connecting plate 6, through setting up supporting mechanism cooperation elevating system to laser emitter's position and height are adjusted, the material of conveniently cutting the production line as required, utilize the switching-over mechanism to adjust the angle of laser emitter simultaneously, improve the flexibility of device cutting, it is very high to use.
When the device is used, the device is connected with a power supply, the supporting seat 1 is fixed on a production line, a mechanical arm is utilized to convey a workpiece in the production line to the workbench 2, the first motor 312 and the second motor 353 are started, the output shaft of the first motor 312 drives the first threaded column 313 to rotate, the first threaded column 313 drives the second adjusting mechanism 35, the reversing mechanism 4, the lifting mechanism 5, the connecting plate 6 and the laser emitter 7 to longitudinally move through threaded transmission with the first sliding block 314, the output shaft of the second motor 353 drives the second threaded column 354 to rotate, the second threaded column 354 drives the third sliding block 355 through threaded transmission with the third sliding block 355, the third sliding block 355 drives the reversing mechanism 4, the lifting mechanism 5, the connecting plate 6 and the laser emitter 7 to transversely move, the laser emitter 7 is utilized to cut the workpiece, meanwhile, the output shaft of the third motor 42 drives the rotary table 43 to rotate, the rotary table 43 drives the lifting mechanism 5, the connecting plate 6 and the laser emitter 7 to adjust the irradiation angle of the laser emitter 7, the output shaft of the fourth motor 56 drives the second bevel gear 57 to rotate, the second bevel gear 57 drives the second bevel gear 57 to drive the second bevel gear 55 to be meshed with the first bevel gear 53 and the first bevel gear 55 to drive the laser emitter 7 to the second bevel gear 55 to be meshed with the movable frame 55, and the movable frame 55 is convenient to drive the workpiece is meshed with the movable frame 55, and the movable frame 55 is meshed with the movable frame 55, and the movable frame is meshed with the movable frame 55.
In summary, compared with the prior art, the laser cutting device has the advantages that the supporting mechanism is arranged to be matched with the lifting mechanism to adjust the position and the height of the laser emitter, so that the material of the production line can be conveniently cut according to the requirement, meanwhile, the angle of the laser emitter is adjusted by the reversing mechanism, the cutting universality of the device is improved, and the use flexibility is very high.
The foregoing is only a preferred embodiment of the present utility model, but the scope of the present utility model is not limited thereto, and any person skilled in the art, who is within the scope of the present utility model, should make equivalent substitutions or modifications according to the technical scheme of the present utility model and the inventive concept thereof, and should be covered by the scope of the present utility model.
Claims (7)
1. The utility model provides a production line is with multi-functional cutting assembly, includes supporting seat (1), its characterized in that, the quantity of supporting seat (1) is two sets of, be fixed with workstation (2) between supporting seat (1), two be fixed with supporting mechanism (3) on supporting seat (1), reversing mechanism (4) are installed to the side-mounting of supporting mechanism (3), reversing mechanism (4) are including fixing first casing (41) on supporting mechanism (3), the internally mounted of first casing (41) has third motor (42), the output shaft of third motor (42) runs through the side of first casing (41) and is connected with revolving stage (43), the side of revolving stage (43) is fixed with elevating system (5), connecting plate (6) are installed to the bottom of elevating system (5), laser emitter (7) are installed to the bottom of connecting plate (6).
2. The multifunctional cutting assembly for the production line according to claim 1, wherein the supporting mechanism (3) comprises a first adjusting mechanism (31) fixed on the supporting seat (1) on one side and a second supporting frame (32) fixed on the supporting seat (1) on the other side, a guide shaft (33) is fixed on the second supporting frame (32), a second sliding block (34) is connected on the guide shaft (33) in a sliding manner, and a second adjusting mechanism (35) is installed on the first adjusting mechanism (31) and the second sliding block (34).
3. The multifunctional cutting assembly for the production line according to claim 2, wherein the first adjusting mechanism (31) comprises a first supporting frame (311) fixed on a supporting seat (1) at one side, a first motor (312) is installed on the side face of the first supporting frame (311), an output shaft of the first motor (312) is inserted into the first supporting frame (311) and connected with a first threaded column (313), a first sliding block (314) is connected to the first threaded column (313) through threads, and the second adjusting mechanism (35) is fixed on the first sliding block (314).
4. A multifunctional cutting assembly for a production line according to claim 3, characterized in that the second adjusting mechanism (35) comprises a third supporting frame (351) fixed on the first slider (314) and the second slider (34), both ends of the front face of the third supporting frame (351) are fixed with fixing plates (352), a second motor (353) is installed on one side of the fixing plates (352), an output shaft of the second motor (353) is inserted between the two fixing plates (352) and is connected with a second threaded column (354), and the second threaded column (354) is connected with a third slider (355) through threads.
5. The multifunctional cutting assembly for the production line according to claim 4, wherein the third sliding block (355) is in sliding connection with the third supporting frame (351), and the reversing mechanism (4) is fixed on the third sliding block (355).
6. The multifunctional cutting assembly for the production line according to claim 1, wherein the lifting mechanism (5) comprises a second shell (51) fixed on the rotary table (43), a threaded sleeve (52) is rotatably connected to the inside of the second shell (51), a first bevel gear (53) is fixedly sleeved on the threaded sleeve (52), a third threaded column (54) is connected to the inside of the threaded sleeve (52) through threads, movable frames (55) are fixed to two ends of the third threaded column (54), a fourth motor (56) is installed on the side face of the second shell (51), and an output shaft of the fourth motor (56) is inserted into the inside of the second shell (51) and is connected with a second bevel gear (57).
7. The multifunctional cutting assembly for the production line according to claim 6, wherein the first bevel gear (53) and the second bevel gear (57) are in meshed transmission, the movable frame (55) and the second shell (51) are in sliding connection, and the connecting plate (6) is fixed at the bottom of the movable frame (55).
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202422991157.7U CN223455300U (en) | 2024-12-04 | 2024-12-04 | A multifunctional cutting component for a production line |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202422991157.7U CN223455300U (en) | 2024-12-04 | 2024-12-04 | A multifunctional cutting component for a production line |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN223455300U true CN223455300U (en) | 2025-10-21 |
Family
ID=97357130
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN202422991157.7U Active CN223455300U (en) | 2024-12-04 | 2024-12-04 | A multifunctional cutting component for a production line |
Country Status (1)
| Country | Link |
|---|---|
| CN (1) | CN223455300U (en) |
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2024
- 2024-12-04 CN CN202422991157.7U patent/CN223455300U/en active Active
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