A fully automated laser cutting machine for one-piece false eyelashes
By designing an automated laser cutting machine for false eyelashes, the problems of low efficiency in manual loading and unloading and film tearing have been solved, achieving fully automated production, improving processing efficiency and safety, and adapting to the cutting needs of various specifications of materials.
Patent Information
- Application Number
- CN202510360295.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-25
- Publication Date
- 2025-11-14
- Estimated Expiration
- 2045-03-25
AI Technical Summary
Existing laser cutting equipment for false eyelashes requires manual feeding of the cut material and peeling of the film, which is inefficient and lacks automated production capabilities.
An integrated fully automated laser cutting machine for false eyelashes was designed, comprising a cross-shaped slide rail, a laser cutting machine body, a material fixing structure, a material tearing structure, and a material loading structure. It realizes automated material loading and unloading and film tearing. Through the cooperation of the picking component, the adsorption roller, and the agitator component, it completes the automatic fixing of materials, cutting, and automatic removal of waste.
It has achieved fully automated production of false eyelashes, reduced manual operation steps, improved processing efficiency, adapted to different specifications of materials, reduced the risk of workplace injuries, and improved the versatility and safety of the equipment.
Smart Images

Figure CN120115818B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of laser cutting equipment technology, specifically to an integrated fully automated laser cutting machine for false eyelashes. Background Technology
[0002] A laser eyelash cutting machine is a high-precision device specifically designed for cutting false eyelashes. It typically uses laser technology to achieve efficient and precise cutting. It utilizes the high energy density of a laser beam to cut the false eyelash material through a focused laser beam. The laser beam can heat the material to a vaporized or melted state in a very short time, thereby achieving precise cutting. However, existing equipment often requires manual feeding of the cut material, and after processing, manual picking up and tearing off the substrate are still necessary, leaving the cut eyelashes on the substrate, which is inefficient. Summary of the Invention
[0003] The technical problem to be solved by the present invention is to provide an integrated fully automated laser cutting machine for false eyelashes, which solves the problem of manual loading and unloading and realizes automated production, in order to address the shortcomings of the prior art.
[0004] To achieve the above objectives, the present invention provides the following technical solution: an integrated fully automated laser cutting machine for false eyelashes, comprising a base, a cross-shaped slide rail, a laser cutting machine body, a material fixing structure, a material tearing structure, and a material loading structure; the cross-shaped slide rail is fixedly disposed in the middle of the upper rear wall of the base, the laser cutting machine body is fixedly disposed on the cross-shaped slide rail, the material fixing structure is fixedly disposed in the middle of the front end of the base, and the material fixing structure is located below the processing end of the laser cutting machine body, the material tearing structure is fixedly disposed on the rear side of the material fixing structure, and the material loading structure is fixedly disposed on the base and located above the material fixing structure; the cross-shaped slide rail is used to drive the laser cutting machine body to move back and forth and left and right, the material loading structure is used to load several single pieces of material, the material fixing structure is used to automatically pick up the material in the material tearing structure and fix and limit its supply to the laser cutting machine body for processing, and the material tearing structure is used to remove excess raw materials after material processing.
[0005] Preferably, the solidification structure includes a main body, a guide platform, a first adsorption seat, an air pump, a four-way pipe, three solenoid valves, a pair of actuating components, and a pickup component. The main body is fixedly disposed at the center of the front end of the base, and a fitting opening is provided in the center of the upper wall of the main body. Actuating grooves are symmetrically provided on both the front and rear sides of the fitting opening. One end of the guide platform is fixedly disposed at the top of the left side wall of the main body and fits into the main body. The first adsorption seat is fixedly inserted into the top left end of the guide platform and is located to the left of the actuating groove. A plurality of first adsorption holes are equidistantly provided on the upper wall of the first adsorption seat. The air pump is fixedly disposed on the lower inner wall of the main body. One end of the four-way pipe is fixedly connected to the air pump's suction end. The three solenoid valves are respectively fixedly disposed on the other three ends of the four-way pipe. One of the solenoid valves is connected to the first adsorption seat. The pair of actuating components are symmetrically disposed on the upper inner wall of the main body and are respectively close to the actuating grooves. The pickup component is fixedly disposed on the main body and located at the fitting opening.
[0006] Preferably, the actuation assembly includes a first electric slide rail, a support, a lifting rod, a stop, and a first spring; the first electric slide rail is fixedly installed on the upper inner wall of the main body and located in front of the actuation groove; one end of the support is fixedly installed on the first electric slide rail, and the other end of the support is located below the actuation groove corresponding to it; one end of the lifting rod movably passes through the other end of the support, and the other end of the lifting rod is movably inserted into the actuation groove; the stop is fixedly installed on the other end of the lifting rod, and the stop is located above the actuation groove; the stop is movably embedded in the actuation groove; the left side wall of the stop is an arc-shaped wall; the first spring is movably fitted onto the lifting rod, and the first spring is located between the stop and the support.
[0007] Preferably, the pickup assembly includes a pair of electric push rods, a pair of slide rails, two pairs of first bolts, a pair of second electric slide rails, two pairs of flip seats, a pair of support arms, and a second suction seat; one end of each pair of electric push rods is fixedly mounted on the lower inner wall of the main body and located on the center line; the pair of slide rails are arranged parallel and symmetrically, with one slide rail fixedly mounted between the telescopic ends of the electric push rods, and the other slide rail movably passing through the mating opening; the two pairs of first bolts are respectively movably screwed onto both ends of the slide rails; and the pair of second electric slide rails are respectively arranged parallel to the slide rails. The second electric slide rails are staggered and correspond to each other. One end of one pair of the flip seats is movably inserted into the slide rail, and one end of the other pair of flip seats is fixedly set on the second electric slide rail. The two ends of one pair of support arms are inclined and movably set on the flip seats, and the pair of support arms are cross-corresponding. The middle of the pair of support arms is movably connected by a pin. The second adsorption seat is fixedly set on another slide rail, and the second adsorption seat is movably embedded in the fitting opening. The upper wall of the second adsorption seat is provided with several second adsorption holes at equal intervals, and the second adsorption seat is connected to the solenoid valve.
[0008] Preferably, the tearing structure includes a third electric slide rail, a roller frame, an adsorption roller, a motor, and a transfer pipe. The third electric slide rail is fixedly installed on the rear side wall of the main body, near the top. One end of the roller frame is fixedly installed on the third electric slide rail and can move left and right. The other end of the roller frame is located on the front side of the main body. The adsorption roller has a hollow roller structure, and its side wall is provided with a row of several third adsorption holes at equal intervals. The adsorption roller is movably installed on the other end of the roller frame and is attached to the upper wall of the main body. The motor is fixedly installed on the other end of the roller frame, and the motor drive end is connected to one end of the adsorption roller. One end of the transfer pipe is fixedly installed through the rear side wall of the roller frame and is movably inserted into the other end of the adsorption roller for communication. The other end of the transfer pipe is connected to a solenoid valve.
[0009] Preferably, the loading structure includes a pair of support rods, a material box, a mounting bracket, a second bolt, a baffle, and a pair of pressing units. One end of each pair of support rods is fixedly mounted on the upper wall of the base and located behind the main body. The material box is a rectangular box without an upper or right side wall, and a pickup opening is provided in the middle of the lower wall of the material box. The length and width of the material box are the same as those of the main body. The material box is fixedly mounted between the other ends of the support rods and is located above the main body. A first adjustment groove is provided along the upper left side of the material box, and a second adjustment groove is provided near the top of the rear side wall of the material box. The mounting bracket is movably inserted into the first adjustment groove. The second bolt is movably screwed onto one end of the mounting bracket and fits against the lower wall of the first adjustment groove. The baffle is fixedly mounted on the other end of the mounting bracket and is movably inserted into the material box. The pair of pressing units are detachably mounted at the second adjustment groove.
[0010] Preferably, the pressing unit includes a socket, an adjusting arm, a moving arm, a third bolt, a pressing rod, and a second spring; the socket is H-shaped and is movably inserted into the second adjusting groove; one end of the adjusting arm is fixedly mounted on the socket and located on the rear side of the material box; a cross-shaped feed groove is opened in the middle of the other end of the adjusting arm; one end of the moving arm is movably inserted into the feed groove, and the other end of the moving arm is located above the material box; the third bolt is movably screwed into one end of the moving arm and is tightened against the side wall of the adjusting arm; one end of the pressing rod movably passes through the other end of the moving arm; and the second spring is movably fitted into the middle of the pressing rod.
[0011] Preferably, a top block is provided near the other end side wall of the pressure rod, and the top block movably passes through the other end of the movable arm.
[0012] Compared with the prior art, the beneficial effects of the present invention are as follows: the loading structure can accommodate single-piece materials of different widths and lengths, and multiple single-piece materials can be stacked and stored. In conjunction with the picking component, the single-piece material is automatically unloaded and fixed onto the main body, and then processed into eyelashes using a laser cutting machine. After processing, the material can be moved to the left by the toggle component to the first adsorption seat to fix one end of the material. Then, in conjunction with the tearing structure, the upper wall of the material is adsorbed by a rotatable adsorption roller, which engages with the lower wall of the first adsorption seat. As the adsorption roller moves to the right and rotates, the cut material is torn off. Finally, the toggle component pushes the material to the left for unloading, achieving full automation of loading, unloading, and tearing, saving manpower and improving processing efficiency. In summary, the present invention has the following effects:
[0013] 1. Automatic feeding: The components are automatically fed one piece at a time and fixed on the main body without manual intervention, reducing the tedious steps of manual operation.
[0014] 2. Automatic film tearing: The film tearing process is completed automatically through the cooperation of the adsorption roller and the first adsorption seat, avoiding the instability and low efficiency of manual film tearing.
[0015] 3. Automatic feeding: The toggle component enables automatic material movement and feeding, reducing the time and labor intensity of manual handling.
[0016] 4. High-efficiency processing: Automated processes reduce manual operation time and improve overall processing efficiency, especially in mass production.
[0017] 5. High adaptability: The loading structure can fit single pieces of material of different widths and lengths, adapting to the processing needs of various specifications of eyelashes and improving the versatility of the equipment.
[0018] 6. Improved safety: Automated equipment reduces human contact with machinery, lowering the risk of workplace injuries during operation. Attached Figure Description
[0019] Figure 1 This is a schematic diagram of the assembly structure of the present invention;
[0020] Figure 2 This is a schematic diagram of the main structure of the laser cutting machine of the present invention;
[0021] Figure 3 This is a schematic diagram of the solid material structure disassembled according to the present invention;
[0022] Figure 4 Schematic diagram of component splitting structure
[0023] Figure 5 This is a schematic diagram of the disassembled structure of the tearing structure of the present invention;
[0024] Figure 6 This is a schematic diagram of the disassembled loading structure of the present invention;
[0025] Figure 7 An enlarged schematic diagram of the down-pressing unit is shown below.
[0026] Figure 8 This is a magnified schematic diagram of the structure at point A.
[0027] Figure 9 This is a magnified schematic diagram of the structure at point B.
[0028] Figure 10 This is a magnified schematic diagram of the structure at point C.
[0029] Figure 11 This is a magnified schematic diagram of the structure at point D.
[0030] Figure 12 This is a magnified schematic diagram of the structure at point E.
[0031] In the diagram: 1. Base; 2. Cross-shaped slide rail; 3. Laser cutting machine body; 4. Material fixing structure; 41. Main body seat; 42. Guide table; 43. First suction seat; 44. Air pump; 45. Four-way pipe; 46. Solenoid valve; 47. Actuating assembly; 471. First electric slide rail; 472. Support; 473. Lifting rod; 474. Stop; 475. First spring; 48. Pick-up assembly; 481. Electric push rod; 482. Slide rail; 483. First bolt; 484. Second electric slide rail; 485. Flip 486. Rotary seat; 487. Support arm; 488. Second suction seat; 5. Tearing structure; 51. Third electric slide rail; 52. Roller frame; 53. Suction roller; 54. Motor; 55. Transfer pipe; 6. Loading structure; 61. Support rod; 62. Material box; 63. Card seat; 64. Second bolt; 65. Baffle; 66. Pressing unit; 661. Socket; 662. Adjusting arm; 663. Moving arm; 664. Third bolt; 665. Pressing rod; 666. Second spring; 7. Pick-up port; 8. Fitting port; 9. Top block. Detailed Implementation
[0032] The following will refer to the appendices in the embodiments of the present invention. Figures 1-12 For further details:
[0033] like Figure 1 and Figure 2The diagram shows an integrated fully automated laser cutting machine for false eyelashes, comprising a base 1, a cross-shaped slide rail 2, a laser cutting machine body 3, a material fixing structure 4, a material tearing structure 5, and a material loading structure 6. The cross-shaped slide rail 2 is fixedly installed in the middle of the upper rear wall of the base 1. The laser cutting machine body 3 is fixedly installed on the cross-shaped slide rail 2. The material fixing structure 4 is fixedly installed in the middle of the front end of the base 1, and is located below the processing end of the laser cutting machine body 3. The material tearing structure 5 is fixedly installed on the rear side of the material fixing structure 4. The material loading structure 6 is fixedly installed on the base 1 and is located above the material fixing structure 4. The cross-shaped slide rail 2 is used to drive the laser cutting machine body 3 to move back and forth and left and right. The material loading structure 6 is used to load several single pieces of material. The material fixing structure 4 is used to automatically pick up the material in the material tearing structure 5 and fix and limit its supply to the laser cutting machine body 3 for processing. The material tearing structure 5 is used to remove excess raw materials after material processing.
[0034] like Figure 3 As shown: The solid structure 4 includes a main body 41, a guide platform 42, a first adsorption seat 43, an air pump 44, a four-way pipe 45, three solenoid valves 46, a pair of actuating components 47, and a pickup component 48. The main body 41 is fixedly installed at the front center of the base 1, and a fitting opening 8 is provided in the middle of the upper wall of the main body 41. Actuating grooves are symmetrically provided on both the front and rear sides of the fitting opening 8. One end of the guide platform 42 is fixedly installed at the top of the left side wall of the main body 41 and fits into the main body 41. The first adsorption seat 43 is fixedly inserted into the top left end of the guide platform 42 and is located on the left side of the actuating groove. A number of first adsorption holes are equidistantly provided on the upper wall of the first adsorption seat 43. The air pump 44 is fixedly installed on the main body 41. 1. On the inner lower wall, one end of the four-way pipe 45 is fixedly connected to the air pump 44's suction end. Three solenoid valves 46 are respectively fixedly installed on the other three ends of the four-way pipe 45. One of the solenoid valves 46 is connected to the first adsorption seat 43. A pair of actuating components 47 are symmetrically arranged on the inner upper wall of the main body 41, and are respectively close to the actuating groove. The picking component 48 is fixedly installed on the main body 41 and located at the fitting port 8. The main body 41 carries the material, the first adsorption seat 43 fixes one end of the material, the air pump 44 generates suction, the four-way pipe 45 diverts the material, and the diverted material is controlled by the solenoid valve 46. The actuating component 47 is used to move the material, and the picking component 48 is used to unload the material.
[0035] like Figure 3 and Figure 8As shown: The actuating assembly 47 includes a first electric slide rail 471, a support 472, a lifting rod 473, a stop 474, and a first spring 475. The first electric slide rail 471 is fixedly installed on the upper inner wall of the main body 41 and is located in front of the actuating groove. One end of the support 472 is fixedly installed on the first electric slide rail 471, and the other end of the support 472 is located below the actuating groove. One end of the lifting rod 473 movably passes through the other end of the support 472, and the other end of the lifting rod 473 is movably inserted into the actuating groove. The stop 474 is fixed. The stop 474 is located on the other end of the lifting rod 473 and is positioned above the actuation groove. The stop 474 is movably fitted into the actuation groove. The left side wall of the stop 474 is an arc-shaped wall. The first spring 475 is movably fitted onto the lifting rod 473 and is located between the stop 474 and the support 472. The stop 474 is pushed from right to left by the first electric slide rail 471. When the stop 474 is under force, it can be lowered by the lifting rod 473 and compress the first spring 475 or reset by the first spring 475.
[0036] like Figure 4 , Figure 9 and Figure 10 As shown: The pickup assembly 48 includes a pair of electric push rods 481, a pair of slide rails 482, two pairs of first bolts 483, a pair of second electric slide rails 484, two pairs of flip seats 485, a pair of support arms 486, and a second suction seat 487. One end of each pair of electric push rods 481 is fixedly installed on the lower inner wall of the main body 41 and located on the center line. The pair of slide rails 482 are arranged in parallel and symmetrically, with one slide rail 482 fixedly installed between the telescopic ends of the electric push rods 481, and the other slide rail 482 movably passing through the fitting opening 8. The two pairs of first bolts 483 are movably screwed onto both ends of the slide rails 482. The pair of second electric slide rails 484 are arranged in parallel on the slide rails 482, and the second electric slide rails 484 are staggered and corresponding. One end of each pair of flip seats 485 is movably inserted into the slide rails 482, and the other pair of flip seats 485... One end of each arm is fixedly mounted on the second electric slide rail 484. The two ends of each pair of support arms 486 are movably mounted on the flipping seat 485, and the two support arms 486 are cross-corresponding. The middle of the two support arms 486 is movably connected by a pin. The second adsorption seat 487 is fixedly mounted on another slide rail 482, and the second adsorption seat 487 is movably embedded in the fitting opening 8. The upper wall of the second adsorption seat 487 is provided with several second adsorption holes at equal intervals, and the second adsorption seat 487 is connected to the solenoid valve 46. The second adsorption seat 487 is raised to a certain height by the electric push rod 481. Then, by means of the misalignment of the two second electric slide rails 484 and the reverse drive, the two ends of the cross-mounted support arms 486 are driven to move closer to each other. One end of the support arm 486 moves in the slide rail 482 by means of the flipping seat 485, thereby driving the second adsorption seat 487 to rise again.
[0037] like Figure 5 As shown: The tearing structure 5 includes a third electric slide rail 51, a roller frame 52, an adsorption roller 53, a motor 54, and an adapter pipe 55. The third electric slide rail 51 is fixedly installed on the rear side wall of the main body 41, near the top. One end of the roller frame 52 is fixedly installed on the third electric slide rail 51, and the roller frame 52 can move left and right. The other end of the roller frame 52 is located on the front side of the main body 41. The adsorption roller 53 is a hollow roller structure, and its side wall is provided with a row of several third adsorption holes at equal intervals. The adsorption roller 53 is movably installed on the other end of the roller frame 52, and the adsorption roller 53 is attached to the main body 41. 1. On the upper wall, the motor 54 is fixedly mounted on the other end of the roller frame 52, and the driving end of the motor 54 is connected to one end of the adsorption roller 53. One end of the adapter pipe 55 is fixedly inserted through the rear side wall of the roller frame 52, and the adapter pipe 55 is movably inserted into the other end of the adsorption roller 53 for communication. The other end of the adapter pipe 55 is connected to the solenoid valve 46. The roller frame 52 is moved from left to right by the third electric slide rail 51, and the adsorption roller 53 on the roller frame 52 is rotated by the motor 54. The adsorption roller 53 generates suction force to adsorb the material through the connection of the adapter pipe 55 with the adsorption roller 53 and the solenoid valve 46.
[0038] like Figure 6 As shown: The loading structure 6 includes a pair of support rods 61, a material box 62, a card holder 63, a second bolt 64, a baffle 65, and a pair of pressing units 66; one end of each pair of support rods 61 is fixedly mounted on the upper wall of the base 1 and located behind the main body 41. The material box 62 is a rectangular box without an upper wall or a right side wall, and a pickup port 7 is provided in the middle of the lower wall of the material box 62. The length and width of the material box 62 are the same as those of the main body 41. The material box 62 is fixedly mounted between the other ends of the support rods 61 and is located above the main body 41. A first adjustment groove is provided along the upper left side of the material box 62. The material box 62 has a second adjustment groove on its rear side wall near the top. The card holder 63 is movably inserted into the first adjustment groove. The second bolt 64 is movably screwed onto one end of the card holder 63 and fits against the lower wall of the first adjustment groove. The baffle 65 is fixedly set on the other end of the card holder 63 and is movably inserted into the material box 62. A pair of pressing units 66 are detachably installed at the second adjustment groove. The material box 62 is supported by the support rod 61, and the material box 62 carries multiple materials. The width of the materials is adjusted by the baffle 65, and the length of the materials is adjusted by the pressing units 66.
[0039] like Figure 7 , Figure 11 and Figure 12As shown: The pressing unit 66 includes a socket 661, an adjusting arm 662, a moving arm 663, a third bolt 664, a pressing rod 665, and a second spring 666. The socket 661 is H-shaped and is movably inserted into the second adjusting groove. One end of the adjusting arm 662 is fixedly mounted on the socket 661 and located behind the material box 62. A cross-shaped feed groove is opened in the middle of the other end of the adjusting arm 662. One end of the moving arm 663 is movably inserted into the feed groove, and the other end of the moving arm 663 is located in the material box 666. 2. Inside the upper part, the third bolt 664 is movably screwed into one end of the movable arm 663 and the third bolt 664 is pressed against the side wall of the adjusting arm 662. One end of the lower pressure rod 665 is movably inserted through the other end of the movable arm 663. The second spring 666 is movably fitted in the middle of the lower pressure rod 665. A top block 9 is provided near the other end side wall of the lower pressure rod 665. The top block 9 is movably inserted through the other end of the movable arm 663. When feeding materials, the lower pressure rod 665 is raised to cause the top block 9 to pass through the movable arm 663 and then rotate and lock.
[0040] Working principle:
[0041] Step 1: The equipment is placed horizontally on the base 1. After the equipment is powered on, the laser cutting machine body 3 can be moved left and right and back and forth by driving the cross-shaped slide rail 2 to perform cutting processing.
[0042] Step 2: Before cutting, stack the sliced substrates and place them in the material box 62 supported by the support rod 61 above the main body 41 in the loading structure 6. Due to the different widths of the materials, the movable card seat 63 is fixed by the second bolt 64. The position of the baffle 65 in the material box 62 can be adjusted to a certain width range. The baffles 65 can be set symmetrically for use. Due to the different lengths of the materials, the position of the pressing unit 66 on the material box 62 and the relative distance between the pressing units 66 can be adjusted.
[0043] The movable socket 661 moves on the rear wall of the material box 62 to adjust the forward and backward position of the downward pressure. The movable arm 663 moves on the adjusting arm 662 to adjust the left and right position of the downward pressure. The movable arm 663 is fixed by the third bolt 664. Then, by pulling the downward pressure rod 665 upward, the downward pressure rod 665 rises on the movable arm 663. After the top block 9 passes through the movable arm 663, it rotates a certain angle and is locked and limited by the reverse force of the second spring 666. Then, the material is put into the material box 62 and the material is pressed down and limited by the downward pressure rod 665.
[0044] Step 3: Then, drive the push rod in the pickup assembly 48 to extend the second adsorption seat 487 out of the fitting port 8 and raise it to a certain height. At the same time, drive the symmetrically parallel second electric slide rail 484 to cause one end of the support arm 486 to move relative to each other, and drive the other end of the support arm 486 to move in the slide rail 482 with the help of the flipping seat 485. The flipping seat 485 is blocked in the slide rail 482 by the first bolt 483. This achieves the relative cross flipping of the support arm 486, raising the height of the second adsorption seat 487 again. The second adsorption seat 487 is raised and inserted into the pickup port 7 at the bottom of the material box 62 to adhere to the bottom material. The air pump 44 generates suction, which is diverted through the four-way pipe 45 and controlled by the solenoid valve 46. The second adsorption seat 487 adsorbs the material and causes it to reset, causing the material to detach from the material box 62. The material is a soft structure that can deform, so it can bend under force and detach from the material box 62.
[0045] Step 4: The material is driven to the upper wall of the main body seat 41 by the second adsorption seat 487 and then continuously adsorbed and fixed. Then, the laser cutting machine body 3 is driven by the cross-shaped slide rail 2 to perform cutting processing.
[0046] Step 5: After cutting and processing, drive the first electric slide rail 471 in the wave component to move the support 472 from right to left and push the material a certain distance, so that the left end of the material is located at the first adsorption seat 43; then drive the first adsorption seat 43 to connect with the air pump 44 to generate suction to fix the left end of the material.
[0047] Step 6: Then, the adsorption roller 53 in the tearing structure 5 is placed on the left end of the material, and the adsorption roller 53 is rotated on the roller frame 52 by the motor 54. The adsorption roller 53 is connected to the air pump 44 through the adapter pipe 55 so that it can adsorb the upper wall of the left end of the material. Then, the roller frame 52 is moved to the right by the third electric slide rail 51 and the adsorption roller 53 is rotated by the motor 54 to tear off the waste material after cutting and move it to the right end to detach.
[0048] Step 7: Then drive the first electric slide rail 471 again to move the support 472 to the left, and push the material to the left onto the guide table 42 through the stop 474; since the stop 474 is installed on the support 472 by means of the lifting rod 473, the stop 474 can be lowered by force to compress the spring, or pick up the pressure and reset by means of the spring.
[0049] In summary, materials of different lengths and widths are collected by the loading structure 6, and the single-piece material is automatically adsorbed and unloaded by the lifting component 48. After being processed by the laser cutting machine body 3, the material is moved to the left by the ground-moving component 47 in the fixing structure 4 and then fixed by the first adsorption seat 43. Next, the waste material is adsorbed and removed by the tearing structure 5, and then unloaded to the left again by the moving component 47.
[0050] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention and are not intended to limit it. Any other modifications or equivalent substitutions made by those skilled in the art to the technical solutions of the present invention, as long as they do not depart from the spirit and scope of the technical solutions of the present invention, should be covered within the scope of the claims of the present invention.
Claims
1. A fully automated laser cutting machine for integrated false eyelashes, characterized in that, It includes a base (1), a cross-shaped slide rail (2), a laser cutting machine body (3), a material fixing structure (4), a material tearing structure (5), and a material loading structure (6); The cross-shaped slide rail (2) is fixedly installed in the middle of the upper rear wall of the base (1). The laser cutting machine body (3) is fixedly installed on the cross-shaped slide rail (2). The material fixing structure (4) is fixedly installed in the middle of the front end of the base (1) and is located below the processing end of the laser cutting machine body (3). The material tearing structure (5) is fixedly installed on the rear side of the material fixing structure (4). The material loading structure (6) is fixedly installed on the base (1) and located above the material fixing structure (4). The cross-shaped slide rail (2) is used to drive the laser cutting machine body (3) to move back and forth and left and right. The material loading structure (6) is used to load several single pieces of material. The material fixing structure (4) is used to automatically pick up the material in the material tearing structure (5) and fix and limit the supply to the laser cutting machine body (3) for processing. The material tearing structure (5) is used to remove excess raw materials after material processing. The solid structure (4) includes a main body (41), a guide table (42), a first adsorption seat (43), an air pump (44), a four-way pipe (45), three solenoid valves (46), a pair of actuating components (47), and a pickup component (48). The main body (41) is fixedly disposed at the front center of the base (1), and a fitting opening (8) is provided in the middle of the upper wall of the main body (41). Actuating grooves are symmetrically provided on both the front and rear sides of the fitting opening (8). One end of the guide platform (42) is fixedly disposed at the top of the left side wall of the main body (41) and the guide platform (42) fits into the main body (41). The first adsorption seat (43) is fixedly inserted into the top left end of the guide platform (42), and the first adsorption seat (43) is located to the left of the actuating groove. A plurality of first adsorption seats are equidistantly arranged on the upper wall of the first adsorption seat (43). The air pump (44) is fixedly installed on the lower inner wall of the main body (41). One end of the four-way pipe (45) is fixedly connected to the air pump (44) suction end. The three solenoid valves (46) are fixedly installed on the other three ends of the four-way pipe (45). One of the solenoid valves (46) is connected to the first adsorption seat (43). A pair of actuating components (47) are symmetrically installed on the upper inner wall of the main body (41) and are respectively close to the actuating groove. The picking component (48) is fixedly installed on the main body (41) and located at the mating opening (8). The actuating assembly (47) includes a first electric slide rail (471), a support (472), a lifting rod (473), a stop (474), and a first spring (475). The first electric slide rail (471) is fixedly installed on the inner upper wall of the main body (41) and located in front of the actuation groove. One end of the support (472) is fixedly installed on the first electric slide rail (471), and the other end of the support (472) is located below the actuation groove. One end of the lifting rod (473) is movably inserted through the other end of the support (472), and the other end of the lifting rod (473) is movably inserted into the actuation groove. The stop (474) is fixedly installed on the other end of the lifting rod (473), and the stop (474) is located above the actuation groove. The stop (474) is movably embedded in the actuation groove. The left side wall of the stop (474) is an arc-shaped wall. The first spring (475) is movably fitted on the lifting rod (473), and the first spring (475) is located between the stop (474) and the support (472). The pickup assembly (48) includes a pair of electric push rods (481), a pair of slide rails (482), two pairs of first bolts (483), a pair of second electric slide rails (484), two pairs of flip seats (485), a pair of support arms (486), and a second suction seat (487). One end of each pair of electric push rods (481) is fixedly mounted on the lower inner wall of the main body (41) and located on the center line. A pair of slide rails (482) are arranged parallel and symmetrically, with one slide rail (482) fixedly mounted between the telescopic ends of the electric push rods (481), and the other slide rail (482) movably passing through the fitting opening (8). Two pairs of first bolts (483) are movably screwed onto both ends of the slide rail. A pair of second electric slide rails (484) are arranged parallel to each other on the slide rails (482), and the second electric slide rails (484) are staggered and corresponding. One end of each pair of flip seats (485) is movably inserted into the slide rail (482). Inside 82), one end of the other pair of flip seats (485) is fixedly mounted on the second electric slide rail (484), and the two ends of the pair of support arms (486) are respectively inclined and movably mounted on the flip seats (485), and the pair of support arms (486) are cross-corresponding to each other. The middle of the pair of support arms (486) is movably connected by a pin. The second adsorption seat (487) is fixedly mounted on another slide rail (482), and the second adsorption seat (487) is movably embedded in the fitting opening (8). The upper wall of the second adsorption seat (487) is provided with a plurality of second adsorption holes at equal intervals, and the second adsorption seat (487) is connected to the solenoid valve (46).
2. The fully automated laser cutting machine for integrated false eyelashes according to claim 1, characterized in that, The tearing structure (5) includes a third electric slide rail (51), a roller frame (52), an adsorption roller (53), a motor (54), and a transfer tube (55); The third electric slide rail (51) is fixedly installed on the rear side wall of the main body (41) and close to the top. One end of the roller frame (52) is fixedly installed on the third electric slide rail (51) and the roller frame (52) moves left and right. The other end of the roller frame (52) is located on the front side of the main body (41). The adsorption roller (53) is a hollow roller structure and its side wall is provided with a row of several third adsorption holes at equal intervals. The adsorption roller (53) is movably installed on the other end of the roller frame (52) and the adsorption roller (53) is attached to the upper wall of the main body (41). The motor (54) is fixedly installed on the other end of the roller frame (52) and the driving end of the motor (54) is connected to one end of the adsorption roller (53). One end of the adapter pipe (55) is fixedly inserted through the rear side wall of the roller frame (52) and the adapter pipe (55) is movably inserted into the other end of the adsorption roller (53) and connected. The other end of the adapter pipe (55) is connected to the solenoid valve (46).
3. The fully automated laser cutting machine for integrated false eyelashes according to claim 2, characterized in that, The loading structure (6) includes a pair of support rods (61), a material box (62), a card seat (63), a second bolt (64), a baffle (65), and a pair of pressing units (66); One end of each of the pair of support rods (61) is fixedly mounted on the upper wall of the base (1) and located behind the main body (41). The material box (62) is a rectangular box without an upper wall or a right side wall, and a pickup opening (7) is provided in the middle of the lower wall of the material box (62). The length and width of the material box (62) are the same as those of the main body (41). The material box (62) is fixedly mounted between the other ends of the support rods (61) and is located above the main body (41). The upper wall of the left end of the material box (62) is... A first adjustment groove is provided along the material box (62), and a second adjustment groove is provided on the rear side wall near the top. The card seat (63) is movably inserted into the first adjustment groove. The second bolt (64) is movably screwed onto one end of the card seat (63) and fits against the lower wall of the first adjustment groove. The baffle (65) is fixedly set on the other end of the card seat (63) and is movably inserted into the material box (62). A pair of pressing units (66) are detachably installed at the second adjustment groove.
4. The fully automated laser cutting machine for integrated false eyelashes according to claim 3, characterized in that, The pressing unit (66) includes a socket (661), an adjusting arm (662), a moving arm (663), a third bolt (664), a pressing rod (665), and a second spring (666). The socket (661) is H-shaped and is movably inserted into the second adjustment groove. One end of the adjustment arm (662) is fixedly set on the socket (661) and located on the rear side of the material box (62). A cross-shaped feed groove is opened in the middle of the other end of the adjustment arm (662). One end of the moving arm (663) is movably inserted into the feed groove, and the other end of the moving arm (663) is located in the upper part of the material box (62). The third bolt (664) is movably screwed into one end of the moving arm (663) and the third bolt (664) is pressed against the side wall of the adjustment arm (662). One end of the lowering rod (665) movably passes through the other end of the moving arm (663). The second spring (666) is movably fitted in the middle of the lowering rod (665).
5. The fully automated laser cutting machine for integrated false eyelashes according to claim 4, characterized in that, The pressure rod (665) is provided with a top block (9) near the other side wall, and the top block (9) is movable through the other end of the movable arm (663).
Citation Information
Patent Citations
Doll eyelash laser cutting equipment
CN118204644A
Cited By
Preparation method of false eyelashes with split eyelash stems
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