Automatic part machining contour cutting equipment and working method thereof
Through the combination of mobile station, storage disk and motor drive, automatic adjustment of parts position and angle is achieved, combined with the precise positioning and contour acquisition of cutting tool components, the problem of cumbersome adjustment of parts angles in the existing technology is solved, and cutting accuracy and efficiency are improved.
Patent Information
- Application Number
- CN202510855536.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-25
- Publication Date
- 2025-08-19
AI Technical Summary
After the existing contour cutting equipment is processed on one side of the component, it needs to be lifted and adjusted. The operation is cumbersome, resulting in deviations from the tool and parts, reducing cutting accuracy and efficiency.
The combination of a mobile station, a storage disc, a first push rod and a third motor is adopted to realize automatic adjustment of the position and angle of the parts; combined with the first motor, the connecting seat, the cutting tool assembly and the second motor, the precise positioning and angle adjustment of the cutting tool assembly is achieved; the first and second industrial cameras are used for comprehensive contour acquisition to ensure cutting accuracy.
It improves the cutting efficiency and accuracy of parts, reduces operating steps, ensures accurate focus between parts and tools, and improves machining efficiency and accuracy.
Smart Images

Figure CN120502770A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of parts processing, and in particular to an automated parts processing contour cutting device and a working method thereof. Background Art
[0002] Automated parts processing is an important part of modern manufacturing. Its core lies in achieving high-precision and high-efficiency parts production through advanced CNC technology, intelligent programming and precision measurement methods. Contour cutting is a way of parts processing. Contour cutting is a key cutting mode in CNC processing. It is mainly used for processing the side walls or outer contours of parts. Its core lies in achieving high-precision processing of part contours by precisely controlling the tool path. It is a processing method that creates one or a specified number of tool paths and cuts along the side walls or outer contours of the part.
[0003] The Chinese patent publication number is CN118237614A, and the authorization announcement date is June 25, 2024. A metal parts processing contour cutting equipment includes: a mounting frame, two sets of linear modules and a lathe are fixedly installed on the upper surface of the mounting frame, a mounting block is fixedly installed on one end of the moving block of the linear module, a cross slide is fixedly installed between the two sets of mounting blocks, a fastening block is fixedly installed on the lower surface of the cross slide, a plug interface is provided on the lower surface of the fastening block, a cutter is inserted and installed in the plug interface, a water tank is fixedly installed on the upper surface of the cross slide, one end of the water tank is connected to a water outlet pipe, and the lower end of the outer surface of the water outlet pipe is in contact with an upper support component. This application enables the cutter to move horizontally in the X and Y axes through the design of the upper support component, the cross slide and the nozzle, so that the cutting path of the cutter can be accurately controlled, the accuracy of cutting the workpiece can be increased, and the excess length of the water outlet pipe can be pulled back from the bottom of the cross slide to the upper end, thereby achieving the effect of protecting the water outlet pipe.
[0004] Existing contour cutting equipment needs to be fixed. After the processing of one side of the component is completed, the fixing function of the component needs to be released first, and then the angle of the component needs to be readjusted. The operation is relatively cumbersome. Repeated adjustment of the component will cause deviations between the component and the tool, reducing the cutting accuracy of the component and the processing efficiency of the component, which cannot meet the use requirements. Summary of the Invention
[0005] The purpose of the present invention is to provide an automated component processing contour cutting equipment and a working method thereof, so as to solve the problem proposed in the above background technology that the existing contour cutting equipment needs to be fixed. After the processing of one side of the component is completed, it is necessary to first release the fixing effect of the component and then readjust the placement angle of the component. The operation is relatively cumbersome. Repeated adjustment of the component will cause deviations between the component and the tool, reduce the cutting accuracy of the component, reduce the processing efficiency of the component, and cannot meet the use requirements.
[0006] 7. The swiftly and minutely adjusting device for a wood-planer working table as claimed in claim 1, wherein said linking rod and said adjusting base are pivotally connected to each other with a bolt, and said bolt has a round shank to contact with said linking rod. said linking rod has a round shank to contact with said linking rod. The support base is provided with a second telescopic cavity, and a U-shaped beam frame is provided above the support base, and the lower end of the U-shaped beam frame extends into the interior of the second telescopic cavity, and the U-shaped beam frame is slidably connected to the support base. A second electric push rod is provided inside the second telescopic cavity, and the second electric push rod is connected to the support base by screws, and the telescopic end of the second electric push rod is connected to the U-shaped beam frame, and a first mounting groove is provided on the top of the U-shaped beam frame, and a connecting seat is provided inside the first mounting groove, and the connecting seat is slidably connected to the U-shaped beam frame, and a rotating groove is provided at the lower end of the connecting seat, and a cutting knife assembly is provided below the connecting seat, and the upper end of the cutting knife assembly extends into the interior of the rotating groove, and a connecting shaft is provided between the cutting knife assembly and the connecting seat, and the connecting shaft is fixedly connected to the cutting knife assembly, and the connecting shaft is rotatably connected to the connecting seat, and an electric control box is provided on one side of the processing table, and the electric control box is connected to the processing table by screws.
[0007] Preferably, a first motor is provided on one side of the U-shaped beam, and the first motor is connected to the U-shaped beam by screws, a screw rod is provided inside the first mounting groove, and one end of the screw rod is connected to the output end of the first motor, the screw rod is threadedly connected to the connecting seat, and the screw rod is rotatably connected to the U-shaped beam, a second motor is provided on one side of the connecting seat, and the second motor is connected to the connecting seat by screws, and the output end of the second motor is connected to the connecting shaft.
[0008] Preferably, two second mounting cavities are provided on the processing table, and the two second mounting cavities are provided on both sides of the first mounting cavity, a movable seat is provided inside the second mounting cavity, and the movable seat is movably connected to the processing table, a second telescopic cavity is provided inside the movable seat, an L-shaped fixing frame is provided above the movable seat, the lower end of the L-shaped fixing frame extends to the inside of the second telescopic cavity, and the L-shaped fixing frame is slidably connected to the movable seat, a rubber pad is provided at the front end of the L-shaped fixing frame, and the rubber pad is connected to the L-shaped fixing frame as a whole, a third electric push rod is provided inside the second mounting cavity, and the third electric push rod is connected to the processing table by screws, and the telescopic end of the third electric push rod is connected to the movable seat.
[0009] Preferably, a second slide groove is provided on the inner wall of the second mounting cavity, a first slider is provided on both sides of the movable seat, and the first slider is fixedly connected to the movable seat, one end of the first slider extends to the inside of the second slide groove, and the first slider is slidably connected to the processing table, a fourth electric push rod is provided inside the second telescopic cavity, and the fourth electric push rod is connected to the movable seat by screws, and the telescopic end of the fourth electric push rod is connected to the L-shaped fixing frame.
[0010] Preferably, a cross bar is provided inside the blanking cavity, two cross bars are provided, and the cross bars are fixedly connected to the processing table. The two cross bars are provided on both sides of the third motor, and the cross bars are fitted with the lower end of the movable table. A material receiving box is provided below the blanking cavity, and the material receiving box is connected to the processing table by screws.
[0011] Preferably, a support frame is provided below both ends of the processing table, and the support frame is fixedly connected to the processing table, a dust hopper is provided above one end of the processing table, and the dust hopper is connected to the processing table by screws, the dust hopper is provided on one side above the blanking cavity, a dust collecting box and an exhaust fan are provided above the support frame, and the dust collecting box and the exhaust fan are connected to the support frame by screws, and the dust collecting box is connected to the dust hopper and the exhaust fan.
[0012] Preferably, an L-shaped frame is provided above one end of the processing table, and the L-shaped frame is fixedly connected to the processing table, a first industrial camera is provided on the top of the L-shaped frame, and the first industrial camera is connected to the L-shaped frame by screws, a second mounting groove is provided on the inner wall of the L-shaped frame, a second slider is provided inside the second mounting groove, and the second slider is slidably connected to the L-shaped frame, a second industrial camera is provided on one side of the second slider, and the second industrial camera is connected to the second slider by screws.
[0013] Preferably, a fifth electric push rod is provided inside the second mounting groove, and the fifth electric push rod is connected to the L-shaped frame by screws. The fifth electric push rod is provided above the second slider, and the telescopic end of the fifth electric push rod is connected to the second slider.
[0014] Preferably, a first slide groove is provided on the inner wall of the first mounting cavity, a slide rail is provided on both sides of the movable table, and the slide rail is fixedly connected to the movable table, one end of the slide rail extends to the inside of the first slide groove, and the slide rail is slidably connected to the processing table, and the lower end of the storage tray is circularly and equidistantly provided with a plurality of balls, the balls are in contact with the bottom of the third mounting cavity, and the balls are rollingly connected to the movable table and the storage tray.
[0015] A working method of an automated component processing contour cutting device comprises the following steps: Step 1: Place the component on the storage tray, drive the first electric push rod to drive the moving platform to move in the first installation cavity, move the component to the bottom of the first industrial camera, turn on the first industrial camera to shoot from above the component, turn on the second industrial camera to shoot from the side of the component, drive the fifth electric push rod to drive the second industrial camera to move up and down, change the height of the second industrial camera, turn on the third motor to drive the storage tray to rotate, and as the storage tray rotates, the component rotates horizontally, and the overall shape of the component is captured to achieve the contour collection of the component; Step 2: After the component contour is collected, the first electric push rod is driven to drive the movable platform to move in the first installation cavity, and the third motor is turned on to drive the component to rotate horizontally, and the cutting part of the component is moved to the top of the blanking cavity; Step 3: According to the specifications of the component, drive the fourth electric push rod to drive the L-shaped fixing frame to move up and down, adjust the L-shaped fixing frame to one side of the component fixing position, drive the third electric push rod to drive the moving base to move along the second installation cavity, and use the L-shaped fixing frame to clamp and fix the component from both sides; Step 4: Select a suitable cutting blade assembly and install it on the connecting seat. Turn on the first motor to drive the connecting seat to move along the first installation groove, move the cutting blade assembly to the top of the cutting part of the component, turn on the second motor to drive the cutting blade assembly to rotate, change the installation angle of the cutting blade assembly, drive the second electric push rod to drive the U-shaped beam frame to descend, and as the U-shaped beam frame descends, the cutting blade assembly falls to contact the component to achieve component contour cutting; Step 5: When cutting, turn on the exhaust fan to generate strong suction on one side of the dust hopper. Under the action of suction, the debris generated by cutting is sucked into the dust collection box and the debris is collected in a centralized manner; Step 6: After the cutting is completed, the contour of the parts is collected again in the process of step 1 to determine whether the parts meet the standards after cutting, thereby indirectly ensuring the cutting accuracy of the parts.
[0016] Compared with the prior art, the present invention has the following beneficial effects: The device of the invention is provided with a movable table, a first electric push rod, a storage tray and a third motor. The movable table is movably connected to the processing table. The first electric push rod applies a push-pull force to the movable table, driving the first electric push rod to move in the first installation cavity, thereby changing the position of the component. The storage tray is rotationally connected to the movable table. The third motor drives the storage tray to rotate. As the storage tray rotates, the component rotates horizontally, which can adjust the cutting position of the component and improve the cutting efficiency of the component. The device of the invention is provided with a first motor, a connecting seat, a cutting blade assembly, a connecting shaft, a second motor and a screw rod. The first motor drives the screw rod to rotate. As the screw rod rotates, a push-pull force is applied to the connecting seat, driving the connecting seat to move along the first mounting groove, moving the cutting blade assembly above the cutting portion of the component. The second motor drives the connecting shaft to rotate. As the connecting shaft rotates, the cutting blade assembly is driven to rotate, changing the installation angle of the cutting blade assembly. The angle of the cutting blade assembly can be fine-tuned according to the cutting angle of the component, thereby improving cutting applicability. The device of the invention is equipped with a first industrial camera, a fifth electric push rod and a second industrial camera. The first industrial camera shoots from above the component, the second industrial camera shoots from the side of the component, the fifth electric push rod drives the second industrial camera to rise and fall, changes the height of the second industrial camera, and cooperates with the third motor to drive the component to rotate horizontally to fully shoot the component's appearance and realize the contour collection of the component. Contour collection before cutting can more accurately issue cutting instructions, and contour collection after cutting is completed can determine whether the component meets the standards, thereby indirectly improving the cutting accuracy of the component. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 It is a schematic diagram of the overall structure of the present invention; Figure 2 is a side view of the present invention; Figure 3 For the present invention Figure 1 A partial enlarged view of area A; Figure 4 A three-dimensional diagram showing the connection between the L-shaped fixing frame and the movable base of the present invention; Figure 5 A three-dimensional diagram showing the connection between the storage tray and the mobile platform of the present invention; Figure 6 This is a diagram showing the connection relationship between the U-shaped beam frame, the support base and the connecting base of the present invention; Figure 7 A diagram showing the connection between the movable table, the processing table and the storage tray of the present invention; Figure 8 This is a diagram showing the connection between the movable base and the processing table of the present invention; Figure 9 This is a diagram showing the connection between the first industrial camera, the second industrial camera and the L-shaped stand of the present invention.
[0018] Figure: 1, processing table; 2, support frame; 3, electric control box; 4, first mounting cavity; 5, moving table; 6, first electric push rod; 7, L-shaped stand; 8, second mounting cavity; 9, moving seat; 10, blanking cavity; 11, cross bar; 12, dust hopper; 13, support base; 14, U-shaped beam; 15, second electric push rod; 16, first motor; 17, dust box; 18, exhaust fan; 19, material collection box; 20, third electric push rod; 21, connecting seat; 22, cutting tool assembly; 23, first industrial camera; 24 , rotating groove; 25, connecting shaft; 26, second motor; 27, first slider; 28, second telescopic cavity; 29, L-shaped fixing frame; 30, rubber pad; 31, fourth electric push rod; 32, slide rail; 33, third mounting cavity; 34, third motor; 35, storage tray; 36, first mounting groove; 37, screw rod; 38, second telescopic cavity; 39, ball bearing; 40, first slide groove; 41, second slide groove; 42, second slider; 43, second mounting groove; 44, fifth electric push rod; 45, second industrial camera. DETAILED DESCRIPTION
[0019] The technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments.
[0020] See also Figure 1-9, an embodiment of the present invention provides: an automated component processing contour cutting device, including a processing table 1, a first mounting cavity 4 and a blanking cavity 10 are provided on the processing table 1, and the blanking cavity 10 is connected to the first mounting cavity 4, a movable table 5 is provided inside the first mounting cavity 4, and the movable table 5 is movably connected to the processing table 1, a first electric push rod 6 is provided on one side of the movable table 5, and the first electric push rod 6 is connected to the processing table 1 by screws, the telescopic end of the first electric push rod 6 is connected to the movable table 5, a third mounting cavity 33 is provided at the center of the upper end of the movable table 5, a storage tray 35 is provided inside the third mounting cavity 33, and the storage tray 35 is rotatably connected to the movable table 5, a third motor 34 is provided below the movable table 5, and the third motor 34 is connected to the movable table 5 is connected by screws, the output end of the third motor 34 is connected to the lower end of the storage tray 35, a support base 13 is provided above the processing table 1, two support bases 13 are provided, and the support base 13 is fixedly connected to the processing table 1, a second telescopic cavity 38 is provided inside the support base 13, a U-shaped beam 14 is provided above the support base 13, the lower end of the U-shaped beam 14 extends into the interior of the second telescopic cavity 38, and the U-shaped beam 14 is slidably connected to the support base 13, a second electric push rod 15 is provided inside the second telescopic cavity 38, and the second electric push rod 15 is connected to the support base 13 by screws, the telescopic end of the second electric push rod 15 is connected to the U-shaped beam 14, a first mounting groove 36 is provided on the top of the U-shaped beam 14, and a connecting groove 36 is provided inside the first mounting groove 36. The connecting seat 21 is slidingly connected to the U-shaped beam frame 14, and a rotating groove 24 is provided at the lower end of the connecting seat 21. A cutting tool assembly 22 is provided below the connecting seat 21, and the upper end of the cutting tool assembly 22 extends to the inside of the rotating groove 24. A connecting shaft 25 is provided between the cutting tool assembly 22 and the connecting seat 21, and the connecting shaft 25 is fixedly connected to the cutting tool assembly 22. The connecting shaft 25 is rotatably connected to the connecting seat 21. An electric control box 3 is provided on one side of the processing table 1, and the electric control box 3 is connected to the processing table 1 by screws. A first motor 16 is provided on one side of the U-shaped beam frame 14, and the first motor 16 is connected to the U-shaped beam frame 14 by screws. A screw rod 37 is provided inside the first mounting groove 36, and one end of the screw rod 37 is connected to the first motor 16. The output end is connected, the screw rod 37 is threadedly connected to the connecting seat 21, and the screw rod 37 is rotatably connected to the U-shaped beam 14. A second motor 26 is provided on one side of the connecting seat 21, and the second motor 26 is connected to the connecting seat 21 by screws. The output end of the second motor 26 is connected to the connecting shaft 25. A first slide groove 40 is provided on the inner wall of the first mounting cavity 4. A slide rail 32 is provided on both sides of the movable table 5, and the slide rail 32 is fixedly connected to the movable table 5. One end of the slide rail 32 extends to the inside of the first slide groove 40, and the slide rail 32 is slidably connected to the processing table 1. The lower end of the storage tray 35 is circular and equidistantly provided with a plurality of balls 39. The balls 39 are in contact with the bottom of the third mounting cavity 33, and the balls 39 are rollingly connected to the movable table 5 and the storage tray 35.
[0021] During use: place the parts on the storage tray 35, drive the first electric push rod 6 to drive the moving platform 5 to move in the first installation cavity 4, turn on the third motor 34 to drive the storage tray 35 to rotate, and as the storage tray 35 rotates, the parts are driven to rotate horizontally, and the cutting part of the part is moved above the blanking cavity 10, turn on the first motor 16 to drive the screw rod 37 to rotate, and as the screw rod 37 rotates, a push-pull force is applied to the connecting seat 21, driving the connecting seat 21 to move along the first installation groove 36, and moving the cutting tool assembly 22 above the cutting part of the part, turn on the second motor 26 to drive the connecting shaft 25 to rotate according to the cutting angle of the part, and as the connecting shaft 25 rotates, the cutting tool assembly 22 is driven to rotate, and the installation angle of the cutting tool assembly 22 is changed, and the second electric push rod 15 is driven to drive the U-shaped beam 14 to descend, and as the U-shaped beam 14 descends, the cutting tool assembly 22 falls and contacts the part to achieve part contour cutting.
[0022] See also Figure 1 、 Figure 4 and Figure 8 , two second mounting cavities 8 are provided on the processing table 1, and the two second mounting cavities 8 are provided on both sides of the first mounting cavity 4, a movable seat 9 is provided inside the second mounting cavity 8, and the movable seat 9 is movably connected to the processing table 1, a second telescopic cavity 28 is provided inside the movable seat 9, an L-shaped fixing frame 29 is provided above the movable seat 9, the lower end of the L-shaped fixing frame 29 extends to the inside of the second telescopic cavity 28, and the L-shaped fixing frame 29 is slidably connected to the movable seat 9, a rubber pad 30 is provided at the front end of the L-shaped fixing frame 29, and the rubber pad 30 is connected to the L-shaped fixing frame 29 as a whole, a third electric push rod 20 is provided inside the second mounting cavity 8, and the third electric push rod 20 is connected to the processing table 1 by screws, the telescopic end of the third electric push rod 20 is connected to the movable seat 9, the second mounting cavity 8 A second slide groove 41 is provided on the inner wall, and a first slider 27 is provided on both sides of the movable seat 9, and the first slider 27 is fixedly connected to the movable seat 9, one end of the first slider 27 extends to the inside of the second slide groove 41, and the first slider 27 is slidably connected to the processing table 1, and a fourth electric push rod 31 is provided inside the second telescopic cavity 28, and the fourth electric push rod 31 is connected to the movable seat 9 by screws, and the telescopic end of the fourth electric push rod 31 is connected to the L-shaped fixing frame 29, and the fourth electric push rod 31 drives the L-shaped fixing frame 29 to rise and fall, and adjusts the L-shaped fixing frame 29 to one side of the fixed position of the component, and drives the third electric push rod 20 to drive the movable seat 9 to move along the second mounting cavity 8, and uses the L-shaped fixing frame 29 to clamp and fix the component from both sides to ensure the stability of the component cutting process.
[0023] See also Figure 1 and Figure 2, a cross bar 11 is provided inside the blanking cavity 10, two cross bars 11 are provided, and the cross bars 11 are fixedly connected to the processing table 1, the two cross bars 11 are provided on both sides of the third motor 34, and the cross bars 11 are fitted with the lower end of the movable table 5, a material receiving box 19 is provided below the blanking cavity 10, and the material receiving box 19 is connected to the processing table 1 by screws, a support frame 2 is provided below both ends of the processing table 1, and the support frame 2 is fixedly connected to the processing table 1, a dust hopper 12 is provided above one end of the processing table 1, and the dust hopper 12 is connected to the processing table 1 The dust hopper 12 is connected by screws and is arranged on one side above the blanking chamber 10. A dust box 17 and an exhaust fan 18 are provided above the support frame 2, and the dust box 17 and the exhaust fan 18 are connected to the support frame 2 by screws. The dust box 17 is connected to the dust hopper 12 and the exhaust fan 18. The cross bar 11 supports the movable platform 5, and the cutting debris falls into the collecting box 19 for collection. The exhaust fan 18 is turned on to generate a strong suction force on one side of the dust hopper 12. Under the action of the suction force, the debris generated by the cutting is sucked into the dust box 17, and the debris is collected in a centralized manner.
[0024] See also Figure 1 and Figure 9 An L-shaped stand 7 is provided above one end of the processing table 1, and the L-shaped stand 7 is fixedly connected to the processing table 1. A first industrial camera 23 is provided on the top of the L-shaped stand 7, and the first industrial camera 23 is connected to the L-shaped stand 7 by screws. A second mounting groove 43 is provided on the inner wall of the L-shaped stand 7, and a second slider 42 is provided inside the second mounting groove 43, and the second slider 42 is slidably connected to the L-shaped stand 7. A second industrial camera 45 is provided on one side of the second slider 42, and the second industrial camera 45 is connected to the second slider 42 by screws. A fifth electric push rod 4 is provided inside the second mounting groove 43. 4, and the fifth electric push rod 44 is connected to the L-shaped stand 7 by screws, the fifth electric push rod 44 is arranged above the second slider 42, and the telescopic end of the fifth electric push rod 44 is connected to the second slider 42, the component is moved to the bottom of the first industrial camera 23, the first industrial camera 23 shoots from above the component, and the second industrial camera 45 shoots from the side of the component, the fifth electric push rod 44 drives the second industrial camera 45 to rise and fall, changes the height of the second industrial camera 45, and cooperates with the third motor 34 to fully shoot the shape of the component, realize the contour collection of the component, and indirectly improve the cutting accuracy of the component.
[0025] A working method of an automated component processing contour cutting device comprises the following steps: Step 1: Place the component on the storage tray 35, drive the first electric push rod 6 to drive the moving platform 5 to move in the first installation cavity 4, move the component to the bottom of the first industrial camera 23, turn on the first industrial camera 23 to shoot from above the component, turn on the second industrial camera 45 to shoot from the side of the component, drive the fifth electric push rod 44 to drive the second industrial camera 45 to move up and down, change the height of the second industrial camera 45, turn on the third motor 34 to drive the storage tray 35 to rotate, and as the storage tray 35 rotates, the component rotates horizontally, and the component's appearance is fully photographed to achieve component contour collection; Step 2: After the component contour is collected, the first electric push rod 6 is driven to drive the movable platform 5 to move in the first mounting cavity 4, and the third motor 34 is turned on to drive the component to rotate horizontally, so as to move the cutting part of the component to the top of the blanking cavity 10; Step 3: According to the specifications of the component, the fourth electric push rod 31 is driven to drive the L-shaped fixing frame 29 to move up and down, and the L-shaped fixing frame 29 is adjusted to one side of the component fixing position. The third electric push rod 20 is driven to drive the movable seat 9 to move along the second mounting cavity 8, and the component is clamped and fixed from both sides by the L-shaped fixing frame 29; Step 4: Select a suitable cutting blade assembly 22 and install it on the connecting base 21, turn on the first motor 16 to drive the connecting base 21 to move along the first installation groove 36, move the cutting blade assembly 22 above the cutting part of the component, turn on the second motor 26 to drive the cutting blade assembly 22 to rotate, change the installation angle of the cutting blade assembly 22, drive the second electric push rod 15 to drive the U-shaped beam 14 to descend, and as the U-shaped beam 14 descends, the cutting blade assembly 22 falls to contact the component, realizing the contour cutting of the component; Step 5: During cutting, the exhaust fan 18 is turned on to generate a strong suction force on one side of the dust hopper 12. Under the action of the suction force, the debris generated by the cutting is sucked into the dust collection box 17 and the debris is collected; Step 6: After the cutting is completed, the contour of the parts is collected again in the process of step 1 to determine whether the parts meet the standards after cutting, thereby indirectly ensuring the cutting accuracy of the parts.
[0026] The contents not described in detail in this specification belong to the prior art known to those skilled in the art.
[0027] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.
Claims
1. An automated component processing contour cutting device, comprising a processing table (1), characterized in that: The processing table (1) is provided with a first installation cavity (4) and a blanking cavity (10), and the blanking cavity (10) is connected to the first installation cavity (4). A movable table (5) is provided inside the first installation cavity (4), and the movable table (5) is movably connected to the processing table (1). A first electric push rod (6) is provided on one side of the movable table (5), and the first electric push rod (6) is connected to the processing table (1) by screws. The telescopic end of the first electric push rod (6) is connected to the movable table (5). A third installation cavity (33) is provided at the center of the upper end of the movable table (5). The third installation cavity (33) is provided at the center of the upper end of the movable table (5). A storage tray (35) is provided inside, and the storage tray (35) is rotatably connected to the moving platform (5). A third motor (34) is provided below the moving platform (5), and the third motor (34) is connected to the moving platform (5) by screws. The output end of the third motor (34) is connected to the lower end of the storage tray (35). A support seat (13) is provided above the processing platform (1). Two support seats (13) are provided, and the support seat (13) is fixedly connected to the processing platform (1). A second telescopic cavity (38) is provided inside the support seat (13), and a U-shaped The beam frame (14) is provided with a first mounting groove (36) at the top of the U-shaped beam frame (14), and a connecting seat (21) is provided inside the first mounting groove (36), and the connecting seat (21) is connected to the U-shaped beam frame (14). 14) Sliding connection, the lower end of the connecting seat (21) is provided with a rotating groove (24), the lower end of the connecting seat (21) is provided with a cutting knife assembly (22), the upper end of the cutting knife assembly (22) extends to the inside of the rotating groove (24), a connecting shaft (25) is provided between the cutting knife assembly (22) and the connecting seat (21), and the connecting shaft (25) is fixedly connected to the cutting knife assembly (22), the connecting shaft (25) is rotatably connected to the connecting seat (21), and an electric control box (3) is provided on one side of the processing table (1), and the electric control box (3) is connected to the processing table (1) by screws.
2. The automated component processing contour cutting equipment according to claim 1, characterized in that: A first motor (16) is provided on one side of the U-shaped beam (14), and the first motor (16) is connected to the U-shaped beam (14) by screws. A screw rod (37) is provided inside the first mounting groove (36), and one end of the screw rod (37) is connected to the output end of the first motor (16). The screw rod (37) is threadedly connected to the connecting seat (21), and the screw rod (37) is rotatably connected to the U-shaped beam (14). A second motor (26) is provided on one side of the connecting seat (21), and the second motor (26) is connected to the connecting seat (21) by screws. The output end of the second motor (26) is connected to the connecting shaft (25).
3. The automated component processing contour cutting equipment according to claim 2, characterized in that: Two second mounting cavities (8) are provided on the processing table (1), and the two second mounting cavities (8) are provided on both sides of the first mounting cavity (4); a movable seat (9) is provided inside the second mounting cavity (8), and the movable seat (9) is movably connected to the processing table (1); a second telescopic cavity (28) is provided inside the movable seat (9); an L-shaped fixing frame (29) is provided above the movable seat (9); the lower end of the L-shaped fixing frame (29) extends to the inside of the second telescopic cavity (28), and the L-shaped fixing frame (29) is slidably connected to the movable seat (9); a rubber pad (30) is provided at the front end of the L-shaped fixing frame (29), and the rubber pad (30) is connected to the L-shaped fixing frame (29) as a whole; a third electric push rod (20) is provided inside the second mounting cavity (8), and the third electric push rod (20) is connected to the processing table (1) by screws, and the telescopic end of the third electric push rod (20) is connected to the movable seat (9).
4. The automated component processing contour cutting equipment according to claim 3, characterized in that: A second slide groove (41) is provided on the inner wall of the second mounting cavity (8), a first slider (27) is provided on both sides of the movable seat (9), and the first slider (27) is fixedly connected to the movable seat (9), one end of the first slider (27) extends to the inside of the second slide groove (41), and the first slider (27) is slidably connected to the processing table (1), a fourth electric push rod (31) is provided inside the second telescopic cavity (28), and the fourth electric push rod (31) is connected to the movable seat (9) by screws, and the telescopic end of the fourth electric push rod (31) is connected to the L-shaped fixing frame (29).
5. The automated component processing contour cutting equipment according to claim 4, characterized in that: A cross bar (11) is provided inside the blanking cavity (10), two cross bars (11) are provided, and the cross bars (11) are fixedly connected to the processing table (1), the two cross bars (11) are provided on both sides of the third motor (34), and the cross bars (11) are in contact with the lower end of the movable table (5), and a material receiving box (19) is provided below the blanking cavity (10), and the material receiving box (19) is connected to the processing table (1) by screws.
6. The automated component processing contour cutting equipment according to claim 5, characterized in that: A support frame (2) is provided below both ends of the processing table (1), and the support frame (2) is fixedly connected to the processing table (1). A dust hopper (12) is provided above one end of the processing table (1), and the dust hopper (12) is connected to the processing table (1) by screws. The dust hopper (12) is provided on one side above the blanking cavity (10). A dust collecting box (17) and an exhaust fan (18) are provided above the support frame (2), and the dust collecting box (17) and the exhaust fan (18) are connected to the support frame (2) by screws. The dust collecting box (17) is connected to the dust hopper (12) and the exhaust fan (18).
7. The automated component processing contour cutting equipment according to claim 6, characterized in that: An L-shaped stand (7) is provided above one end of the processing table (1), and the L-shaped stand (7) is fixedly connected to the processing table (1); a first industrial camera (23) is provided on the top of the L-shaped stand (7), and the first industrial camera (23) is connected to the L-shaped stand (7) by screws; a second mounting groove (43) is provided on the inner wall of the L-shaped stand (7); a second slider (42) is provided inside the second mounting groove (43), and the second slider (42) is slidably connected to the L-shaped stand (7); a second industrial camera (45) is provided on one side of the second slider (42), and the second industrial camera (45) is connected to the second slider (42) by screws.
8. The automated component processing contour cutting equipment according to claim 7, characterized in that: A fifth electric push rod (44) is provided inside the second mounting groove (43), and the fifth electric push rod (44) is connected to the L-shaped stand (7) by screws. The fifth electric push rod (44) is provided above the second slider (42), and the telescopic end of the fifth electric push rod (44) is connected to the second slider (42).
9. The automated component processing contour cutting equipment according to claim 1, characterized in that: A first slide groove (40) is provided on the inner wall of the first installation cavity (4), a slide rail (32) is provided on both sides of the movable table (5), and the slide rail (32) is fixedly connected to the movable table (5), one end of the slide rail (32) extends to the interior of the first slide groove (40), and the slide rail (32) is slidably connected to the processing table (1), and a plurality of balls (39) are equidistantly provided in a circular shape at the lower end of the storage tray (35), the balls (39) are in contact with the bottom of the third installation cavity (33), and the balls (39) are rollingly connected to the movable table (5) and the storage tray (35).
10. The working method of the automated component processing contour cutting equipment according to claim 8, characterized in that: The following steps are involved: Step 1: Place the component on the storage tray (35), drive the first electric push rod (6) to drive the moving platform (5) to move in the first installation cavity (4), move the component to the bottom of the first industrial camera (23), turn on the first industrial camera (23) to shoot from above the component, turn on the second industrial camera (45) to shoot from the side of the component, drive the fifth electric push rod (44) to drive the second industrial camera (45) to move up and down, change the height of the second industrial camera (45), turn on the third motor (34) to drive the storage tray (35) to rotate, and drive the component to rotate horizontally as the storage tray (35) rotates, and comprehensively shoot the appearance of the component to achieve the contour collection of the component; Step 2: After the component contour is collected, the first electric push rod (6) is driven to drive the moving platform (5) to move in the first installation cavity (4), and the third motor (34) is turned on to drive the component to rotate horizontally, so as to move the cutting part of the component to the top of the blanking cavity (10); Step 3: according to the specifications of the component, the fourth electric push rod (31) is driven to drive the L-shaped fixing frame (29) to move up and down, the L-shaped fixing frame (29) is adjusted to one side of the fixing portion of the component, and the third electric push rod (20) is driven to drive the movable seat (9) to move along the second mounting cavity (8), and the component is clamped and fixed from both sides by the L-shaped fixing frame (29); Step 4: Select a suitable cutting blade assembly (22) and install it on the connecting seat (21), turn on the first motor (16) to drive the connecting seat (21) to move along the first installation groove (36), move the cutting blade assembly (22) to the top of the cutting part of the component, turn on the second motor (26) to drive the cutting blade assembly (22) to rotate, change the installation angle of the cutting blade assembly (22), drive the second electric push rod (15) to drive the U-shaped beam frame (14) to descend, and as the U-shaped beam frame (14) descends, the cutting blade assembly (22) falls to contact the component, thereby achieving component contour cutting; Step 5: When cutting, the exhaust fan (18) is turned on to generate a strong suction force on one side of the dust hopper (12), and the debris generated by the cutting is sucked into the dust collection box (17) under the action of the suction force, and the debris is collected in a centralized manner; Step 6: After the cutting is completed, the contour of the parts is collected again in the process of step 1 to determine whether the parts meet the standards after cutting, thereby indirectly ensuring the cutting accuracy of the parts.
Citation Information
Patent Citations
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