Cutting mechanism with equidistant cutting function

By introducing isometric cutting components and spacing adjustment components into the cutting equipment, the precise isometric cutting of the car foot pads is achieved, which solves the problem of insufficient accuracy in traditional cutting equipment and improves production efficiency and cutting accuracy.

CN223115286UActive Publication Date: 2025-07-18LISHUI GREEN HORSE COIL CO LTD
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Patent Information

Application Number
CN202422122976.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-30
Publication Date
2025-07-18
Estimated Expiration
2034-08-30

AI Technical Summary

Technical Problem

During equidistant cutting, the measurement results are deviated due to the insufficient accuracy of the measurement tool during the existing automotive foot pad cutting, which is difficult to meet the speed requirements of large-scale production and affect production efficiency.

Method used

The equidistant cutting assembly and spacing adjustment assembly are adopted to accurately mesh the driving gear and driven gear through the motor drive to ensure the synchronous operation of the cutting blade. Combined with the design of the adjustment rod and the limit movable column, flexible adjustment and precise control of the cutting spacing are achieved to meet the cutting needs of different sizes.

Benefits of technology

Improves cutting accuracy and production efficiency, reduces deviations caused by manual measurement errors, and ensures consistent dimensions and neat edges of the cut car foot pads.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223115286U_ABST
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Abstract

The utility model provides a tailoring mechanism with an equidistant tailoring function, which relates to the field of cutting equipment and comprises a conveying part, a driving component fixedly connected to the outer side of the conveying part, an equidistant tailoring component rotatably connected to the outer side of the driving component, and a spacing adjusting component fixedly connected to the outer side of the driving component. The equidistant cutting assembly comprises a driving gear and a driven gear, positioning columns are fixedly connected to the outer sides of the driving gear and the driven gear, adjusting rods are slidably connected to the outer sides of the positioning columns, and a cutter groove block is slidably connected to one end of one adjusting rod, so that the whole device can accurately control the cutting distance, and it is ensured that the cutting quality is consistent; and meanwhile, the cutting requirements of materials with different sizes are met, the production efficiency and the cutting precision are improved, the problem of insufficient precision in traditional cutting equipment is effectively solved, the cutting precision is remarkably improved, and particularly, deviation caused by manual measurement errors is reduced under the large-scale production requirement.
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Description

Technical Field

[0001] The utility model relates to the field of cutting equipment, in particular to a cutting mechanism with an equidistant cutting function. Background Art

[0002] An automotive floor mat is a mat placed on the floor of a vehicle to protect the interior floor from dirt, grime, and liquids. They help keep the interior clean and are usually easy to remove and wash.

[0003] The existing patent CN208147171U discloses an automotive floor mat cutting device, including a workbench. A control switch is installed on the front surface of the workbench, and a crushing bin is installed on one side of the workbench. A through hole is opened on the upper surface of the workbench. A grille is installed above the workbench, and a slide rail is installed at a position close to one side of the grille above the workbench. A funnel is installed at the top end inside the workbench.

[0004] To solve the problem of not being able to remove the smoke smell generated during cutting, the smoke smell generated by suction cutting is inhaled into the through hole, transmitted to the purification chamber through the suction pipe, and thus absorbed and purified by the activated carbon adsorption layer, improving the air environment.

[0005] However, in actual use, there are still the following deficiencies. For example, when equidistant cutting is required, due to the low precision of the measuring tool, the measurement result may deviate. In this way, in the face of large-scale production requirements, traditional cutting methods often fail to meet the production speed requirements and are difficult to complete a large number of cutting tasks in a short time, thus affecting the overall production efficiency.

[0006] Therefore, the utility model provides a cutting mechanism with an equidistant cutting function. Summary of the Utility Model

[0007] The purpose of the utility model is to solve the deficiencies existing in the prior art and provide a cutting mechanism with an equidistant cutting function.

[0008] To achieve the above purpose, the utility model adopts the following technical scheme: A cutting mechanism with an equidistant cutting function, including a conveying member. A driving assembly is fixedly connected to the outside of the conveying member. An equidistant cutting assembly is rotatably connected to the outside of the driving assembly. A spacing adjustment assembly is fixedly connected to the outside of the driving assembly.

[0009] The equidistant cutting component includes a driving gear and a driven gear. Positioning columns are fixedly connected to the outer sides of both the driving gear and the driven gear. Adjusting rods are slidably connected to the outer sides of the positioning columns. One end of one of the adjusting rods is slidably connected to a tool groove block, and one end of the other adjusting rod is slidably connected to a cutting tool. A limiting movable column is movably connected inside the tool groove block and the cutting tool. One end of the limiting movable column is rotatably connected to a slider, and the slider is slidably connected to the outer side of a positioning plate.

[0010] As a preferred implementation, the spacing adjusting component includes a limiting sliding plate. A threaded sliding column is movably connected inside the limiting sliding plate. A movable ring is rotatably connected to the outer side of the threaded sliding column. A washer is slidably connected to the outer side of the threaded sliding column. A positioning bolt is threadedly connected to the outer side of the movable ring.

[0011] The technical effect of adopting the above technical solution is that the cutting action is made more stable and uniform, avoiding errors that may occur during traditional manual measurement and cutting. At the same time, the setting of the spacing adjusting component enables the cutting spacing to be flexibly adjusted to meet the cutting requirements of different sizes.

[0012] As a preferred implementation, the driving component includes a bracket. The outer side of the bracket is fixedly connected to the conveying part. The top end of the bracket is fixedly connected to a mounting plate, and a motor is mounted on the outer side of the mounting plate.

[0013] The technical effect of adopting the above technical solution is that the continuity and consistency of the cutting action are ensured, reducing the instability of manual operation.

[0014] As a preferred implementation, the driving end of the motor is fixedly connected to the driving gear, and the driving gear and the driven gear are meshed.

[0015] The technical effect of adopting the above technical solution is that precise transmission control is achieved, ensuring the gear synchronism during the cutting process.

[0016] As a preferred implementation, the outer sides of both the positioning column and the positioning plate are fixedly connected to the mounting plate.

[0017] The technical effect of adopting the above technical solution is that the positioning accuracy is improved, ensuring the accuracy of the cutting position, so that the sizes of the cut automotive foot pads are consistent.

[0018] As a preferred implementation, the outer side of the limiting sliding plate is fixedly connected to the mounting plate, and the outer side of the movable ring is movably connected inside the tool groove block and the cutting tool.

[0019] The technical effect of adopting the above technical solution is that the stability and precision during the cutting process are ensured, making the edges of the cut automotive foot pads neat and uniform.

[0020] Compared with the prior art, the advantages and positive effects of the present utility model are as follows:

[0021] By setting up the equidistant cutting component and the spacing adjustment component structure, the present utility model drives the driving gear through the motor, so that it meshes precisely with the driven gear, ensuring the synchronous operation of the cutting knives. The operator finely adjusts the cutting spacing through the adjusting rod to adapt to different material requirements. The connection of the limiting movable column and the slider ensures that the cutting knife moves flexibly and does not deviate from the track. The sliding of the slider on the positioning plate ensures that the cutting knife cuts along the predetermined path, realizing the stability and precision of the cutting process. The spacing adjustment component is adjusted through the limiting sliding plate and the threaded sliding column to adapt to different sizes of leather materials. The movable ring controls the position of the cutting knife and the knife groove block, and the positioning bolt is tightened to lock the cutting spacing. Such a design enables the entire device to precisely control the cutting spacing, ensure consistent cutting quality, and at the same time adapt to the cutting requirements of different sizes of materials, improving production efficiency and cutting precision, effectively solving the problem of insufficient precision in traditional cutting equipment, significantly improving the cutting precision, especially under the large-scale production demand, reducing the deviation caused by manual measurement errors. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] Figure 1 FIG. is a schematic structural diagram of a structure with an equidistant cutting function provided by the present utility model;

[0023] Figure 2 FIG. is a schematic structural diagram of a driving component with an equidistant cutting function provided by the present utility model;

[0024] Figure 3 FIG. is a schematic structural diagram of an equidistant cutting component with an equidistant cutting function provided by the present utility model;

[0025] Figure 4 FIG. is a schematic structural diagram of a spacing adjustment component with an equidistant cutting function provided by the present utility model.

[0026] LEGEND DESCRIPTION:

[0027] 1. Conveyor

[0028] 2. Driving component; 21. Bracket; 22. Mounting plate; 23. Motor

[0029] 3. Equidistant cutting component; 31. Driving gear; 32. Driven gear; 33. Positioning column; 34. Adjusting rod; 35. Knife groove block; 36. Cutting knife; 37. Limiting movable column; 38. Slider; 39. Positioning plate

[0030] 4. Spacing adjustment component; 41. Limiting sliding plate; 42. Threaded sliding column; 43. Movable ring; 44. Washer; 45. Positioning bolt. Detailed implementation manners

[0031] The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to 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. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without making creative efforts shall fall within the protection scope of the present invention.

[0032] As Figure 1 - Figure 3 shown, this embodiment provides a technical solution: a cutting mechanism with an equidistant cutting function, including a conveying member 1, a driving assembly 2 fixedly connected to the outside of the conveying member 1, an equidistant cutting assembly 3 rotatably connected to the outside of the driving assembly 2, and a spacing adjustment assembly 4 fixedly connected to the outside of the driving assembly 2.

[0033] The equidistant cutting component 3 includes a driving gear 31 and a driven gear 32. Positioning columns 33 are fixedly connected to the outer sides of both the driving gear 31 and the driven gear 32. An adjusting rod 34 is slidably connected to the outer side of the positioning column 33. One end of an adjusting rod 34 is slidably connected to a tool groove block 35, and one end of the other adjusting rod 34 is slidably connected to a cutting tool 36. A limiting movable column 37 is movably connected inside the tool groove block 35 and the cutting tool 36. One end of the limiting movable column 37 is rotatably connected to a slider 38. The outer side of the slider 38 is slidably connected to a positioning plate 39. The outer sides of the positioning column 33 and the positioning plate 39 are fixedly connected to the mounting plate 22. The conveying member 1 is the core foundation of the entire cutting device. It is responsible for accurately conveying the material to be cut to the cutting position. The equidistant cutting component 3 includes the driving gear 31 and the driven gear 32. These two gears mesh with each other to keep the cutting tools running synchronously. The driving gear 31 is directly connected to the driving component 2. After receiving the driving power, it drives the driven gear 32 to rotate together. The precise meshing of the gears ensures that the spacing of each cut is exactly the same during the cutting process, avoiding cutting deviations caused by manual measurement errors. On the outer sides of the driving gear 31 and the driven gear 32, positioning columns 33 are respectively fixedly connected. These positioning columns 33 provide a stable supporting force during the cutting process to ensure that the cutting tools move along a fixed trajectory. The adjusting rod 34 slidably connected to the outer side of the positioning column 33 allows the operator to finely adjust the cutting spacing according to actual needs, improving the adaptability and convenience of the device. The tool groove block 35 and the cutting tool 36 are slidably connected through the adjusting rod 34, forming the core part of the entire cutting system. The tool groove block 35 is movably connected to the cutting tool 36 through the limiting movable column 37. This design allows the cutting tool 36 to move flexibly during cutting but not deviate from the track, thus ensuring the accuracy of cutting. One end of the limiting movable column 37 is connected to the slider 38 by a rotational connection, and the slider 38 is slidably connected to the positioning plate 39. This connection method allows the slider 38 to move freely on the positioning plate 39 but is restricted by the track of the positioning plate 39 to ensure that the cutting tools cut along a predetermined path. The fixed connection of the positioning plate 39 ensures the stability of the entire cutting process and will not interfere with the cutting accuracy due to external factors.

[0034] Furthermore, as Figure 1 - Figure 2As shown in the figure: The driving component 2 includes a bracket 21, the outer side of the bracket 21 is fixedly connected to the conveying member 1, the top end of the bracket 21 is fixedly connected with a mounting plate 22, a motor 23 is installed on the outer side of the mounting plate 22, the driving end of the motor 23 is fixedly connected to the driving gear 31, the driving gear 31 is meshed with the driven gear 32, the bracket 21 ensures that the driving component 2 does not shake or displace during operation, and guarantees the stability of the entire cutting process. The mounting plate 22 not only provides a mounting basis for other key components, but also ensures the precise alignment and stable installation between components through its precise design. The motor 23 is the core power source of the driving component 2, and its power is transmitted from the driving end of the motor 23 to the driving gear 31.

[0035] In order to make it applicable to leather materials of different sizes, such as Figure 1 , Figure 3 and Figure 4 As shown in the figure: In this solution, the spacing adjustment component 4 includes a limit sliding plate 41, the outer side of the limit sliding plate 41 is fixedly connected to the mounting plate 22, a threaded sliding column 42 is movably connected inside the limit sliding plate 41, a movable ring 43 is rotatably connected to the outer side of the threaded sliding column 42, the outer side of the movable ring 43 is movably connected inside the tool groove block 35 and the cutting tool 36, a washer 44 is slidably connected to the outer side of the threaded sliding column 42, a positioning bolt 45 is threadedly connected to the outer side of the movable ring 43. The limit sliding plate 41 provides a stable sliding support basis for the entire adjustment system and ensures its stable and precise movement track during the adjustment process. The design of the threaded sliding column 42 enables it to adjust its own position by rotation, thereby changing the spacing of the cutting device to adapt to leather materials of different sizes. The movable ring 43 can directly control the positions of the cutting tool 36 and the tool groove block 35. By adjusting the position of the movable ring 43, the position of the cutting tool 36 also changes accordingly, achieving the effect of adjusting the spacing, so as to realize the adaptive cutting of leather materials of different sizes. The function of the washer 44 is to provide a stable sliding surface, reduce the friction between the threaded sliding column 42 and the positioning bolt 45, and prevent the sudden movement after the adjustment from causing damage or error to the device. The positioning bolt 45 is used to fix the position of the movable ring 43. When adjusted to the appropriate cutting position, tightening the positioning bolt 45 can lock the movable ring 43 at the specified position.

[0036] Working principle:

[0037] Such as Figure 1 - Figure 4 As shown in the figure:

[0038] During use: The conveying member 1 accurately conveys the material to be cut to the cutting position, ensuring that the material is in the correct cutting position. Subsequently, the driving assembly 2 is started through the motor 23 inside it. The driving end of the motor 23 directly drives the active gear 31 connected to it to rotate. The rotation of the active gear 31 drives the driven gear 32 to rotate synchronously through the gear meshing relationship. When the active gear 31 and the driven gear 32 rotate, the positioning columns 33 fixed on their outer sides provide stable support, ensuring that the cutting knife 36 and the knife groove block 35 move along a fixed track. The adjusting rod 34 slidably connected to the outer side of the positioning column 33 enables fine adjustment of the cutting knife 36 and the knife groove block 35 according to requirements to adjust the cutting spacing. The knife groove block 35 and the cutting knife 36 are slidably connected to the adjusting rod 34 through the limit movable column 37. The design of the limit movable column 37 ensures that the cutting knife 36 can move flexibly during cutting but will not deviate from the track, thus ensuring the accuracy of cutting. One end of the limit movable column 37 is connected to the slider 38 in a rotating manner. The slider 38 is slidably connected to the positioning plate 39, enabling the cutting knife 36 to cut along a predetermined path and ensuring that the movement of the cutting scissors is controlled and will not shift. When adjusting the spacing, the spacing adjusting assembly 4 plays a key role. The limit sliding plate 41 is fixed on the mounting plate 22, providing stable support for the entire adjusting system. The threaded sliding column 42 can adjust its own position by rotation, and then drive the movable ring 43 to move. The movement of the movable ring 43 directly changes the positions of the knife groove block 35 and the cutting knife 36. By adjusting the movable ring 43, the position of the cutting knife 36 changes accordingly, and finally, the adaptive cutting of leather materials of different sizes is realized. Finally, the function of the washer 44 is to provide a stable sliding surface between the threaded sliding column 42 and the positioning bolt 45, reduce friction, and ensure that after the adjustment is completed, the device can maintain its position stable and will not move accidentally due to external forces or vibrations.

[0039] The above is only the preferred embodiment of the present invention, and it is not a limitation of the present invention in other forms. Any person skilled in the art may use the disclosed technical content to make changes or modifications into equivalent embodiments with equivalent changes and apply them to other fields. However, as long as it does not depart from the technical solution content of the present invention, any simple modification, equivalent change, and modification made to the above embodiments based on the technical essence of the present invention still belong to the protection scope of the technical solution of the present invention.

Claims

1. A cutting mechanism with an equidistant cutting function, including a conveying member (1), characterized in that, A driving component (2) is fixedly connected to the outer side of the conveying part (1), an equidistant cutting component (3) is rotatably connected to the outer side of the driving component (2), and a spacing adjusting component (4) is fixedly connected to the outer side of the driving component (2); The equidistant cutting component (3) includes a driving gear (31) and a driven gear (32). Positioning columns (33) are fixedly connected to the outer sides of both the driving gear (31) and the driven gear (32). An adjusting rod (34) is slidably connected to the outer sides of the positioning columns (33). One end of one of the adjusting rods (34) is slidably connected to a tool groove block (35), and one end of the other adjusting rod (34) is slidably connected to a cutting tool (36). A limiting movable column (37) is movably connected inside the tool groove block (35) and the cutting tool (36). One end of the limiting movable column (37) is rotatably connected to a slider (38), and the outer side of the slider (38) is slidably connected to a positioning plate (39).

2. The cutting mechanism with an equidistant cutting function according to claim 1, characterized in that: The spacing adjusting component (4) includes a limiting sliding plate (41). A threaded sliding column (42) is movably connected inside the limiting sliding plate (41). A movable ring (43) is rotatably connected to the outer side of the threaded sliding column (42). A washer (44) is slidably connected to the outer side of the threaded sliding column (42). A positioning bolt (45) is threadedly connected to the outer side of the movable ring (43).

3. A cutting mechanism with an equidistant cutting function according to claim 2, characterized in that: The driving component (2) includes a bracket (21). The outer side of the bracket (21) is fixedly connected to the conveying part (1). The top end of the bracket (21) is fixedly connected to a mounting plate (22). A motor (23) is mounted on the outer side of the mounting plate (22).

4. A cutting mechanism with an equidistant cutting function according to claim 3, characterized in that: The driving end of the motor (23) is fixedly connected to the driving gear (31), and the driving gear (31) and the driven gear (32) are meshed.

5. A cutting mechanism with an equidistant cutting function according to claim 3, characterized in that: The outer sides of the positioning columns (33) and the positioning plate (39) are both fixedly connected to the mounting plate (22).

6. The cutting mechanism with an equidistant cutting function according to claim 3, characterized in that: The outer side of the limiting sliding plate (41) is fixedly connected to the mounting plate (22), and the outer side of the movable ring (43) is movably connected inside the tool groove block (35) and the cutting tool (36).

Citation Information

Patent Citations

  • Car callus on sole cutting equipment

    CN208147171U