Runway Automatic Line Marking Overlay Film Magnetizer
By designing an automated runway scribe magnetizing machine, the combination of slip screws and cylinders is used to realize automatic scribe and magnetization of film, solving the problems of complex structure, high maintenance costs and high manual participation in the existing equipment, and improving the practicality and efficiency of the equipment.
Patent Information
- Application Number
- CN202310521294.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-05-10
- Publication Date
- 2025-07-01
- Estimated Expiration
- 2043-05-10
AI Technical Summary
The existing film production equipment has complex structure and high maintenance costs during the scribe and magnetization process, which requires manual participation and is prone to missed processing, which affects the practicality of the equipment.
A runway automatic scribing and stacking film charging machine is designed. The sliding lead screw is driven to rotate through the motor power set, and the sliding screw is used to cooperate with the sliding block to drive the movement of the scribing cylinder and the charging cylinder, realizing the scribing and charging processing without manual participation.
It has achieved simplification of the equipment structure, reduced maintenance costs, reduced manual participation, avoided missed processing, and improved the practicality of the equipment.
Smart Images

Figure CN116543999B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of scribing and magnetizing equipment, specifically an automatic scribing and stacked film magnetizing machine for a runway. Background Art
[0002] During the production process of films, scribing and magnetizing are required. Existing film production equipment can basically meet the daily processing and usage requirements, but there are still certain deficiencies. First, most of the scribing and magnetizing mechanisms of existing film production equipment are independently distributed, and the equipment needs to install two sets of displacement components to complete the entire scribing and magnetizing process, resulting in a complex structure and high maintenance cost of the equipment. Second, existing film production equipment needs to be combined with manual labor during the scribing and magnetizing process, thus increasing the labor cost of the equipment. Third, existing film production equipment is prone to the phenomenon of missed processing during the production process. Unprocessed products will be mixed in the finished products and difficult to screen after entering the discharge hopper, thus affecting the practicability of the equipment. Therefore, it is very necessary to design an automatic scribing and stacked film magnetizing machine for a runway. Summary of the Invention
[0003] The purpose of the present invention is to provide an automatic scribing and stacked film magnetizing machine for a runway to solve the problems raised in the above background art.
[0004] To achieve the above purpose, the present invention provides the following technical solution: An automatic scribing and stacked film magnetizing machine for a runway, including an equipment platform, a first support, a support table, a sliding processing component, a scribing and magnetizing component, a limiting and feeding component, a feeding guide rail, a vibrating feeding tray, a second support, a receiving hopper, a control box, a touch screen, a runway chain, a collecting hopper, and an optical counter body. A first support is provided at the bottom of the equipment platform, and support tables are symmetrically provided on one side of the top of the equipment platform. A feeding guide rail is provided on the top of the support table, and one end of the feeding guide rail is cooperatively connected to the vibrating feeding tray. The vibrating feeding tray is fixed on the second support, and a receiving hopper is provided on the vibrating feeding tray. The receiving hopper is located below the feeding guide rail. A control box is provided at a corner of the top of the equipment platform, and a touch screen is embedded and installed on the top of the control box. A sliding shell in the sliding processing component is provided on the other side of the top of the equipment platform.
[0005] Preferably, the sliding processing component is composed of a sliding shell, a sliding lead screw, a sliding block, a sliding table, a motor power group, and a sliding groove. The sliding lead screw is cooperatively connected to the sliding shell through a bearing. A sliding block is provided on the sliding lead screw, and a ball nut embedded in the sliding block is cooperatively connected to the sliding lead screw.
[0006] Preferably, a motor power group is provided on one side of the sliding shell, and the output end of the motor power group is cooperatively connected to one end of the sliding lead screw. The motor power group is fixed on the top of the equipment platform.
[0007] Preferably, a motor power unit is provided on one side of the sliding shell, and the output end of the motor power unit is cooperatively connected to one end of a sliding lead screw. The motor power unit is fixed on the top of the equipment platform.
[0008] Preferably, one end of a runway chain is cooperatively connected to the sliding table, and the other end of the runway chain is fixed on the equipment platform. Material receiving hoppers are symmetrically arranged at the bottom of the equipment platform.
[0009] Preferably, a scribing cylinder and a magnetizing cylinder in the scribing and magnetizing assembly are respectively arranged on one side of the sliding table. The scribing and magnetizing assembly is composed of a scribing cylinder, a magnetizing cylinder, a first fixing frame, a connecting sleeve, a fixing bolt, a scribing pen, a second fixing frame, and a magnetizer.
[0010] Preferably, the output ends of the scribing cylinder and the magnetizing cylinder are respectively connected to the first fixing frame and the second fixing frame. A magnetizer is arranged on the second fixing frame, a connecting sleeve is arranged on the first fixing frame, a scribing pen is slidably connected in the connecting sleeve, and a fixing bolt is cooperatively connected in a threaded groove opened on one side of the connecting sleeve. One end of the fixing bolt abuts against the scribing pen.
[0011] Preferably, a limiting bracket in the limiting and locking assembly is arranged on one side at the bottom of the feeding guide rail. The limiting and locking assembly is composed of a limiting bracket, a locking cylinder, a locking block, and a discharging sliding table. A locking cylinder is arranged in the limiting bracket, the output end of the locking cylinder is provided with a locking block, the locking block is slidably connected in a through groove on the feeding guide rail, and a discharging sliding table is arranged at one end of the feeding guide rail. A photoelectric door is arranged on the feeding guide rail, and the photoelectric door is cooperatively connected to a photoelectric counter body. The photoelectric counter body is fixed on the equipment platform.
[0012] Compared with the prior art, the beneficial effects of the present invention are as follows: for this runway automatic scribing, laminating, and magnetizing machine, the motor power unit drives the sliding lead screw to rotate, and then, by the mutual cooperation of the sliding lead screw and the sliding block, the scribing cylinder and the magnetizing cylinder on the sliding table are driven to move. One set of displacement components can complete two processing processes of scribing and magnetizing. The structure of the equipment is simple and the maintenance cost is low. During the processing, the original products in the vibrating feeding tray are pushed forward along the feeding guide rail. At the same time, the sliding processing component drives the scribing cylinder and the magnetizing cylinder to reciprocate. At the same time, the scribing cylinder and the magnetizing cylinder respectively drive the scribing pen and the magnetizer downward to respectively perform scribing and magnetizing processing on the products on the two feeding guide rails, without manual participation in the processing process, thereby reducing the labor cost of equipment production; during the processing, the photoelectric counter body counts the number of products passing through the feeding guide rail. After the processing is completed, the locking cylinder drives the locking block to move downward to disengage from the feeding guide rail, and then the products fall into the material receiving hopper through the discharging sliding table, preventing unprocessed products from entering the material receiving hopper and being difficult to screen out among the finished products, thereby improving the practicability of the equipment. Description of the Drawings
[0013] Figure 1 It is a three-dimensional view of the overall structure of the present invention;
[0014] Figure 2 It is Figure 1 a partial enlarged view of area A in
[0015] Figure 3 It is Figure 1 a partial enlarged view of area B in
[0016] Figure 4 It is Figure 1 a partial enlarged view of area C in
[0017] Figure 5 It is a top view of the overall structure of the present invention;
[0018] Figure 6 It is Figure 5 a partial enlarged view of area D in
[0019] Figure 7 It is a rear view of the overall structure of the present invention;
[0020] Figure 8 It is a three-dimensional view of the local structure of the present invention;
[0021] Figure 9 It is a top view sectional view of a part of the structure of the present invention;
[0022] In the figure: 1, equipment platform; 2, first bracket; 3, support table; 4, slip processing assembly; 5, scribing and magnetizing assembly; 6, limiting and locking material assembly; 7, feeding guide rail; 8, vibrating feeding tray; 9, second bracket; 10, receiving hopper; 11, control box; 12, touch screen; 13, runway chain; 14, collecting hopper; 15, photoelectric counter body; 41, slip housing; 42, slip lead screw; 43, slip block; 44, slip table; 45, motor power group; 46, slip groove; 51, scribing cylinder; 52, magnetizing cylinder; 53, first fixing frame; 54, connecting sleeve; 55, fixing bolt; 56, scribing pen; 57, second fixing frame; 58, magnetizer; 61, limiting bracket; 62, locking material cylinder; 63, locking material block; 64, discharging slide table. Specific embodiments
[0023] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.
[0024] Please refer toFigures 1-9, an embodiment provided by the present invention: a runway automatic scribing and film magnetizing machine, which includes an equipment platform 1, a first bracket 2, a support platform 3, a sliding processing component 4, a scribing and magnetizing component 5, a limiting and material locking component 6, a feeding guide rail 7, a vibrating feeding tray 8, a second bracket 9, a receiving hopper 10, a control box 11, a touch screen 12, a runway chain 13, a receiving hopper 14 and an optical counter body 15. A first bracket 2 is provided at the bottom of the equipment platform 1, and support platforms 3 are symmetrically arranged on one side of the top of the equipment platform 1. A feeding guide rail 7 is provided on the top of the support platform 3, and one end of the feeding guide rail 7 is connected to the vibrating feeding tray 8 in a matching manner. The vibrating feeding tray 8 is fixed on the second bracket 9, and a receiving hopper 10 is arranged on the vibrating feeding tray 8. The receiving hopper 10 is located below the feeding guide rail 7. A control box 11 is arranged at a corner of the top of the equipment platform 1, and a touch screen 12 is embedded and installed on the top of the control box 11. A sliding shell 41 in the sliding processing component 4 is arranged on the other side of the top of the equipment platform 1. The sliding processing component 4 is composed of a sliding shell 41, a sliding lead screw 42, a sliding block 43, a sliding table 44, a motor power group 45 and a sliding groove 46. The sliding lead screw 42 is connected to the sliding shell 41 through a bearing in a matching manner. A sliding block 43 is arranged on the sliding lead screw 42, and the ball nut embedded in the sliding block 43 is connected to the sliding lead screw 42 in a matching manner. A motor power group 45 is arranged on one side of the sliding shell 41, and the output end of the motor power group 45 is connected to one end of the sliding lead screw 42 in a matching manner. The motor power group 45 is fixed on the top of the equipment platform 1. The sliding block 43 is slidably connected in the sliding groove 46 opened on one side of the sliding shell 41, and the top of the sliding block 43 is fixed to the bottom of the sliding table 44. The sliding table 44 is slidably connected to the top of the sliding shell 41. One end of the runway chain 13 is connected to the sliding table 44 in a matching manner, and the other end of the runway chain 13 is fixed on the equipment platform 1. Receiving hoppers 14 are symmetrically arranged at the bottom of the equipment platform 1. A scribing cylinder 51 and a magnetizing cylinder 52 in the scribing and magnetizing component 5 are respectively arranged on one side of the sliding table 44. The scribing and magnetizing component 5 is composed of a scribing cylinder 51, a magnetizing cylinder 52, a first fixing frame 53, a connecting sleeve 54, a fixing bolt 55, a scribing pen 56, a second fixing frame 57 and a magnetizer 58. The output ends of the scribing cylinder 51 and the magnetizing cylinder 52 are respectively connected to the first fixing frame 53 and the second fixing frame 57. A magnetizer 58 is arranged on the second fixing frame 57. A connecting sleeve 54 is arranged on the first fixing frame 53. A scribing pen 56 is slidably connected in the connecting sleeve 54, and a fixing bolt 55 is connected to the threaded groove opened on one side of the connecting sleeve 54 in a matching manner. One end of the fixing bolt 55 is attached to the scribing pen 56. A limiting bracket 61 in the limiting and material locking component 6 is arranged on one side of the bottom of the feeding guide rail 7. The limiting and material locking component 6 is composed of a limiting bracket 61, a material locking cylinder 62, a material locking block 63 and a discharging slide table 64. A material locking cylinder 62 is arranged in the limiting bracket 61, and a material locking block 63 is arranged at the output end of the material locking cylinder 62. The material locking block 63 is slidably connected in the through groove on the feeding guide rail 7.A discharge slide 64 is provided at one end of the feeding guide rail 7, a photoelectric door is provided on the feeding guide rail 7, and the photoelectric door is connected to the photoelectric counter body 15, and the photoelectric counter body 15 is fixed on the equipment platform 1. The discharge slide 64 is provided to facilitate the processing of the product to the receiving hopper 14.
[0025] Working principle: When in use, the motor power group 45 drives the sliding screw 42 to rotate, and then the sliding screw 42 and the sliding block 43 cooperate with each other to drive the marking cylinder 51 and the magnetizing cylinder 52 on the sliding table 44 to move. A set of displacement components can complete the two processing processes of marking and magnetizing. The structure of the equipment is simple and the maintenance cost is low. During the processing, the original product in the vibrating feeding tray 8 is pushed forward along the feeding guide rail 7, and at the same time, the sliding processing component 4 drives the marking cylinder 51 and the magnetizing cylinder 52 to move back and forth. At the same time, the marking cylinder 51 and the magnetizing cylinder 52 are separated. The cloth drives the marking pen 56 and the magnetizer 58 downward to mark and magnetize the products on the two feeding guide rails 7. There is no need for human participation in the processing process, thereby reducing the labor cost of equipment production. During the processing, the photoelectric counter body 15 is used to count the number of products passing through the feeding guide rail 7. After the processing is completed, the locking cylinder 62 drives the locking block 63 downward to separate from the feeding guide rail 7. Then the product passes through the discharge slide 64 and falls into the receiving hopper 14, avoiding unprocessed products from entering the receiving hopper 14 and mixing with the finished products, which is difficult to screen, thereby improving the practicability of the equipment.
[0026] It will be apparent to those skilled in the art that the invention is not limited to the details of the exemplary embodiments described above and that the invention can be implemented in other specific forms without departing from the spirit or essential features of the invention. Therefore, the embodiments should be considered exemplary and non-limiting in all respects, and the scope of the invention is defined by the appended claims rather than the foregoing description, and it is intended that all variations falling within the meaning and scope of the equivalent elements of the claims be included in the invention. Any reference numeral in a claim should not be considered as limiting the claim to which it relates.
Claims
1. The automatic runway marking laminated film magnetizer includes an equipment platform (1), a first bracket (2), a support table (3), a sliding processing component (4), a marking and magnetizing component (5), a limiting and material locking component (6), a feeding guide rail (7), a vibrating feeding tray (8), a second bracket (9), a receiving hopper (10), a control box (11), a touch screen (12), a runway chain (13), a receiving hopper (14) and an optical counter body (15), and is characterized in that: A first support (2) is provided at the bottom of the device platform (1), and support platforms (3) are symmetrically arranged on one side of the top of the device platform (1). A feeding guide rail (7) is provided on the top of the support platform (3), and one end of the feeding guide rail (7) is connected to a vibrating feeding tray (8) in a matching manner. The vibrating feeding tray (8) is fixed on a second support (9), and a receiving hopper (10) is provided on the vibrating feeding tray (8). The receiving hopper (10) is located below the feeding guide rail (7). A control box (11) is provided at a corner of the top of the device platform (1), and a touch screen (12) is embedded in the top of the control box (11). A sliding housing (41) of a sliding processing assembly (4) is provided on the other side of the top of the device platform (1). The sliding processing assembly (4) is composed of a sliding housing (41), a sliding lead screw (42), a sliding block (43), a sliding table (44), a motor power group (45), and a sliding groove (46). The sliding lead screw (42) is connected to the sliding housing (41) through a bearing in a matching manner. A sliding block (43) is provided on the sliding lead screw (42), and a ball nut embedded in the sliding block (43) is connected to the sliding lead screw (42) in a matching manner. The sliding block (43) is slidably connected to a sliding groove (46) opened on one side of the sliding housing (41), and the top of the sliding block (43) is fixed to the bottom of the sliding table (44). The sliding table (44) is slidably connected to the top of the sliding housing (41). One end of a runway chain (13) is connected to the sliding table (44) in a matching manner, and the other end of the runway chain (13) is fixed to the device platform (1). Receiving hoppers (14) are symmetrically arranged at the bottom of the device platform (1). A scribing cylinder (51) and a magnetizing cylinder (52) of a scribing and magnetizing assembly (5) are respectively arranged on one side of the sliding table (44). The scribing and magnetizing assembly (5) is composed of a scribing cylinder (51), a magnetizing cylinder (52), a first fixing frame (53), a connecting sleeve (54), a fixing bolt (55), a scribing pen (56), a second fixing frame (57), and a magnetizer (58). The output ends of the scribing cylinder (51) and the magnetizing cylinder (52) are respectively connected to the first fixing frame (53) and the second fixing frame (57). A magnetizer (58) is provided on the second fixing frame (57). A connecting sleeve (54) is provided on the first fixing frame (53). A scribing pen (56) is slidably connected in the connecting sleeve (54), and a fixing bolt (55) is connected to a threaded groove opened on one side of the connecting sleeve (54) in a matching manner. One end of the fixing bolt (55) is attached to the scribing pen (56).
2. The automatic runway marking laminated film magnetizer according to claim 1, wherein: A motor power group (45) is provided on one side of the sliding housing (41), and the output end of the motor power group (45) is connected to one end of the sliding lead screw (42) in a matching manner. The motor power group (45) is fixed to the top of the device platform (1).
3. The automatic runway marking film laminating and magnetizing machine according to claim 1, characterized in that: One side of the bottom of the feeding guide rail (7) is provided with a limit bracket (61) in the material locking and restricting assembly (6). The material locking and restricting assembly (6) is composed of a limit bracket (61), a material locking cylinder (62), a material locking block (63) and a discharge slide (64). The limit bracket (61) is provided with the material locking cylinder (62), and the output end of the material locking cylinder (62) is provided with the material locking block (63). The material locking block (63) is slidably connected in a through groove on the feeding guide rail (7), and one end of the feeding guide rail (7) is provided with the discharge slide (64). A photoelectric door is arranged on the feeding guide rail (7), and the photoelectric door is cooperatively connected to the photoelectric counter body (15). The photoelectric counter body (15) is fixed on the equipment platform (1).
Citation Information
Patent Citations
Damping film production equipment
CN214725828U
Manufacturing method of pattern forming apparatus, pattern forming method and coating composition used therein
KR1020070100148A