Cutting device for climbing button carabiner main body

By designing cutting devices for pressing and collecting fixtures, the problem of main body drop in the cutting device is solved, efficient cutting and safe collection of main body are achieved, cutting efficiency is improved and equipment damage risk is reduced.

CN223210574UActive Publication Date: 2025-08-12HUIZHOU CHUANGFENG TECH CO LTD
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Patent Information

Application Number
CN202422474010.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-14
Publication Date
2025-08-12
Estimated Expiration
2034-10-14

AI Technical Summary

Technical Problem

When the existing cutting device cuts the carabiner body, the cut body is prone to fall into the gap of the cutting device, resulting in loss and risk of damage to the equipment.

Method used

A cutting device including a pressing fixture, a feeding fixture and a saw blade is designed. The profile is clamped through a pressing drive member and a feeding drive member. The saw blade is cut between the pressing fixture and the feeding fixture, and after the cutting is completed, the cut body is pushed out through the feeding fixture to ensure that the main body does not fall.

Benefits of technology

It improves cutting efficiency, reduces loss of the main body, prevents equipment damage, and has a flat cutting edge, reducing subsequent trimming work.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a mountaineering buckle main body cutting device which comprises a working table, a material pressing clamp and a material collecting clamp are sequentially arranged on the working table, a material pressing driving seat is arranged on the material pressing clamp, a material pressing driving piece is arranged on the material pressing driving seat, and a material collecting device is arranged on the material collecting clamp. The driving end of the material pressing driving part is connected with a material pressing block used for pressing a sectional material to the material pressing clamp, the material pressing driving part drives the material pressing block to move in the direction close to or away from the material pressing clamp, and the distance between the material pressing clamp and the material collecting clamp is smaller than the thickness needed by the main body. A saw blade used for cutting the sectional materials is arranged between the material pressing clamp and the material collecting clamp in a sliding mode. The cutting device has the advantages of being high in cutting efficiency and preventing the main body from being lost.
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Description

Technical Field

[0001] The utility model relates to the technical field of cutting devices, in particular to a cutting device for a carabiner main body. Background Art

[0002] Currently, carabiners are increasingly being used. For example, they are being combined with electronic cigarettes to make them more portable. A carabiner typically consists of a main body and a lock attached to the main body. Opening or closing the lock secures or releases climbing equipment such as ropes and hooks.

[0003] The production process of the main body includes: producing profiles, cutting, vibration grinding, CNC, drilling, vibration grinding, sandblasting and oxidation. Among them, the profiles are long strips, and cutting is to cut the long strips of profiles to the required thickness of the main body.

[0004] To facilitate cutting of profiles, technicians developed a cutting device consisting of a rectangular cutting table, a pusher assembly for pushing the profile, and a saw blade for cutting. The saw blade moves along the width of the cutting table, while the pusher assembly pushes the profile along the length of the table. During cutting, the profile is distributed along the length of the cutting table and placed on the cutting table. The pusher assembly pushes the profile along the length of the cutting table, while the saw blade moves along the width of the table, thus performing the main cut.

[0005] However, since the cut body is small in size, the cut body is likely to fall into some gaps in the cutting device when using the cutting device in the related art, causing the body to be lost and difficult to remove, and there is a risk of damaging the equipment. Utility Model Content

[0006] In order to improve the existing problem that the cut body falls into some gaps of the cutting device and causes the body to be lost, the utility model provides a cutting device for the carabiner body which has high cutting efficiency and prevents the body from being lost.

[0007] The utility model provides a cutting device for a carabiner body, which adopts the following technical solutions:

[0008] A cutting device for a mountaineering buckle body comprises a workbench, on which a pressing clamp and a collecting clamp are sequentially arranged, a pressing driving seat is provided on the pressing clamp, a pressing driving member is provided on the pressing driving seat, a driving end of the pressing driving member is connected to a pressing block, the pressing block is used to press the profile against the pressing clamp, the pressing driving member drives the pressing block to move in a direction approaching or away from the pressing clamp, the spacing between the pressing clamp and the collecting clamp is less than the required thickness of the body, and a saw blade for cutting the profile is slidably arranged between the pressing clamp and the collecting clamp.

[0009] Through the above technical solution, when cutting, the profile is installed in the pressing clamp and the receiving clamp, and the pressing block is driven by the pressing driving member to move along the height direction of the workbench, so that the pressing block clamps multiple profiles to prevent the profile from shaking during the cutting process.

[0010] The saw blade is driven to cut between the pressure clamp and the receiving clamp. After the cut is completed, the saw blade resets. Because the distance between the pressure assembly and the receiving clamp is less than the required thickness of the main body, the saw blade applies cutting force to the profile, causing stress on the profile at the cut edge. When the saw blade resets, the incision area of the profile is squeezed and the stress generated by the cutting is released, which may cause a slight elastic reaction, causing the two sides of the cut profile to move outward. Because the pressure plate clamps the profile in the pressure clamp, the remaining profile will not move, but the cut body will move away from the saw blade, so that only a small part of the main body is located in the gap between the pressure assembly and the receiving clamp. When the next cut is made, the profile is pushed into the receiving clamp and the main body is pushed out. This prevents the main body from falling or getting stuck between the pressure assembly and the receiving clamp, thereby improving cutting efficiency while reducing the loss of the main body, which can prevent the lost main body from damaging the equipment.

[0011] Preferably, the workbench is also slidably provided with a feeding clamp, the feeding clamp is provided with a clamping drive seat, the clamping drive seat is provided with a clamping drive member, the driving end of the pressing drive member is connected to a feeding pressure block, the feeding pressure block is used to press the profile to the feeding clamp, the feeding clamp, the pressing clamp and the receiving clamp are distributed in sequence, the feeding clamp slides and cooperates with the workbench in the direction of approaching or moving away from the pressing clamp, and the workbench is also provided with a feeding drive member, and the driving end of the feeding drive member is connected to the feeding clamp.

[0012] Through the above technical solution, when the cutting is completed, the pressing plate is reset by the pressing driving member, so that the pressing plate is moved away from the pressing clamp, and the feeding clamp is driven to move by the feeding driving member, so that the feeding clamp moves a distance of the main body thickness along the length direction of the workbench, so that the profile is extended into the receiving clamp again, and the main body in the receiving clamp is pushed out to facilitate the next cutting.

[0013] Preferably, the feeding fixture is provided with a feeding installation groove, and the feeding installation groove includes a plurality of first installation units, the plurality of first installation units are closely arranged, and the first installation units are adapted to one side of the profile, and the profile is slidably fitted in the first installation unit. When the profile is installed in the feeding installation groove, two adjacent profiles abut against each other, and the profile near the edge abuts against the side wall of the feeding installation groove. The pressing fixture is provided with a pressing installation groove, and the pressing installation groove is consistent with the feeding installation groove.

[0014] With the above technical solution, when multiple profiles are installed in the feed installation slot, the profiles are installed one by one in the multiple first installation units, with adjacent profiles abutting each other and the profiles near the edge abutting the side wall of the feed installation slot, so that the multiple profiles are closely arranged. Similarly, another section of the multiple profiles is installed in the press installation slot. This supports and limits the multiple profiles, minimizes the gaps between adjacent profiles, improves space utilization, and increases cutting efficiency.

[0015] Preferably, the material receiving clamp is provided with a material receiving installation groove, and the material receiving installation groove includes a plurality of second installation units, the number of the second installation units is consistent with the number of the first installation units in the feeding installation groove, and the second installation units are adapted to the profile.

[0016] Through the above technical solution, the profiles are extended one by one into multiple second installation units, the bottom side of a single second installation unit supports a single profile, and the bent parts of two adjacent profiles abut against each other, so that the cut bodies are installed one by one to avoid scattered distribution of the bodies.

[0017] Preferably, a slide is provided in the workbench, and the slide slides along the cutting direction of the saw blade and fits on the workbench. A sliding drive member is also provided on the workbench, and the driving end of the sliding drive member is connected to the slide.

[0018] Through the above technical solution, the sliding drive member drives the slide to move along the cutting direction of the saw blade, thereby cutting multiple profiles. Since multiple profiles are closely arranged, it is beneficial to reduce the moving distance of the saw blade, thereby reducing the cutting time, and further helping to improve cutting efficiency.

[0019] Preferably, the saw blade is a circular saw blade, and a cutting drive member for driving the saw blade to rotate is provided on the slide seat, the driving end of the cutting drive member is connected to the saw blade, and the thickness of the saw blade is smaller than the distance between the pressing assembly and the material receiving clamp.

[0020] Through the above technical solution, the saw blade is driven to rotate by the cutting drive member, and the saw blade can perform cutting work by rotating. The circular saw blade can provide stable and continuous cutting action, and the cutting edge is relatively smooth, which reduces the post-processing finishing work.

[0021] Preferably, the distance between the saw blade and the material pressing fixture is equal to the distance between the saw blade and the material collecting fixture.

[0022] With the above technical solution, in order to maintain cutting quality and operational safety, it is necessary to leave sufficient clearance between the saw blade and the clamp.

[0023] Preferably, a collecting trough is further provided on the workbench, and the collecting trough is arranged at an angle, and the collecting trough is inclined downward from close to the material receiving fixture to away from the material receiving fixture, and the high end of the collecting trough abuts against the side of the material receiving fixture away from the material pressing fixture, and the collecting trough is located below the material receiving mounting trough.

[0024] Through the above technical solution, the main body can be conveniently collected to prevent the main body from falling into the gap between the collection trough and the material receiving clamp.

[0025] Compared with the prior art, the present invention has the following beneficial effects:

[0026] Since the distance between the pressing assembly and the receiving fixture is smaller than the required thickness of the main body, only a small part of the main body is located in the gap between the pressing assembly and the receiving fixture. When the next cutting is performed, the main body can be pushed out by pushing the profile into the receiving fixture, thereby preventing the main body from falling or getting stuck between the pressing assembly and the receiving fixture, thereby improving cutting efficiency and reducing the loss of the main body.

[0027] 2. When installing multiple profiles in the feeding installation groove, the profiles are installed one by one in multiple first installation units, and two adjacent profiles abut against each other, and the profiles close to the edge abut against the side wall of the feeding installation groove. The multiple profiles are arranged closely. Similarly, another section of the multiple profiles is installed in the pressing installation groove; thereby supporting and limiting the multiple profiles, and minimizing the gap between adjacent profiles, improving space utilization, and increasing cutting efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0028] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following briefly introduces the drawings required for use in the description of the embodiments. Obviously, the drawings described below are some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.

[0029] Figure 1 It is a schematic diagram of the overall structure of an embodiment of the present utility model.

[0030] Figure 2 It is a structural diagram of the profile and the main body in the embodiment of the utility model.

[0031] Figure 3 It is a cross-sectional view of a workbench in an embodiment of the present utility model.

[0032] Figure 4 It is a structural diagram of the feeding clamp and the feeding pressing block in the embodiment of the present utility model.

[0033] Figure 5It is a top view of the feeding block and the pressing block in the embodiment of the utility model.

[0034] Figure 6 It is a structural schematic diagram of the material receiving clamp in an embodiment of the present utility model.

[0035] Figure 7 It is a structural diagram of the slide in the embodiment of the present utility model.

[0036] Among them, the parts number description is: 1. Workbench; 2. Pressing fixture; 3. Receiving fixture; 4. Pressing block; 5. Saw blade; 6. Feeding fixture; 7. Feeding block; 8. Feeding mounting groove; 9. Receiving mounting groove; 10. Slide; 11. Sliding drive; 12. Cutting drive; 13. Collecting trough; 14. Profile; 141. Bending part; 142. Seat body; 143. Protrusion part; 15. Main body; 16. Saw groove. DETAILED DESCRIPTION

[0037] The following is a combination of the appended examples of the present invention Figures 1 to 7 The technical solutions in the embodiments of the present invention are clearly and completely described. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of them. All other embodiments derived by persons of ordinary skill in the art based on the embodiments of the present invention without creative effort are within the scope of protection of the present invention.

[0038] A cutting device for a carabiner body, referring to Figure 1 The workbench 1 is a rectangular parallelepiped, with one end of the workbench 1 being the front end and the other end being the rear end. The workbench 1 is provided with a feeding fixture 6, a pressing fixture 2 and a receiving fixture 3 in sequence from the front end to the rear end.

[0039] In this embodiment, refer to Figure 2 The profile 14 comprises a long, strip-shaped bent portion 141, a base portion 142, and a protruding portion 143. The bent portion 141 has a cross-section that is approximately inverted J-shaped, with the end of the bent portion 141 away from the bend connected to the base portion 142. The protruding portion 143 has a square cross-section, with the base portion 142 connected to the protruding portion 143 on the side facing away from the bent portion 141. In this embodiment, the profile 14 is cut into a carabiner body 15 (hereinafter referred to as the body) with a thickness of 3.6 mm ± 0.1 mm.

[0040] Reference Figure 3 and Figure 4The feed fixture 6 is rectangular in shape and extends along the width of the workbench 1. A feed mounting slot 8 is defined on the top side of the feed fixture 6 and extends through two opposing long sides of the feed fixture 6. The feed mounting slot 8 includes a plurality of first mounting units, which are closely arranged along the length of the feed fixture 6. Each first mounting unit is used to mount a single profile 14. The first mounting unit and the bottom side of the profile 14 are mutually adapted, allowing the profile 14 to slide and fit within the first mounting unit. By installing the profiles 14 in a one-to-one correspondence within the multiple first mounting units, with the bottom side of each first mounting unit (at the bottom of the feed mounting slot 8) supporting the base portion 142 and protrusion 143 of each profile 14, the bent portion 141 of the profile 14 is positioned close to the top side of the feed fixture 6, with the bent portions 141 of two adjacent profiles 14 abutting each other, and the profiles 14 near the edges abutting the sidewalls of the feed mounting slot 8. This results in the profiles 14 being distributed along the width of the feed fixture 6 (and along the length of the workbench 1), and closely arranged along the length of the feed fixture 6. This supports and limits the profiles 14, minimizes gaps between adjacent profiles 14, and improves space utilization.

[0041] Reference Figure 3 and Figure 4 A feeding block 7 is slidingly provided on the top side of the feeding fixture 6. The feeding block 7 is rectangular and distributed along the length direction of the feeding fixture 6. The feeding fixture 6 is also provided with a clamping drive seat (not shown in the figure), and the clamping drive seat is also provided with a clamping drive member (not shown in the figure) for driving the feeding block 7 to move along the height direction of the workbench 1. The clamping drive member is a cylinder, and the driving end of the clamping drive member is connected to the feeding block 7. Thus, the feeding block 7 is driven to move along the height direction of the workbench 1 by the clamping drive member. When the feeding block 7 abuts against the feeding fixture 6, the feeding block 7 simultaneously abuts against the bending portion 141 of the profile 14, thereby clamping the multiple profiles 14 to prevent shaking.

[0042] Reference Figure 3 The pressing fixture 2 is rectangular and extends along the width of the workbench 1. A pressing groove is formed on the pressing fixture 2. The pressing groove is aligned with the feed groove 8 and is aligned with the feed groove 8 along the length of the workbench 1. When installing the profile 14, multiple profiles 14 are placed along the length of the feed fixture 6 in the feed groove 8 and the pressing groove. This allows the feed fixture 6 and the pressing fixture 2 to support and limit the profiles 14, making the support and limiting more stable.

[0043] Reference Figure 3 and Figure 5A pressing block 4 is slidingly provided on the top side of the pressing fixture 2. The structure and size of the pressing block 4 and the feeding clamp are also consistent. The pressing fixture 2 is also provided with a pressing drive seat (not shown in the figure). The pressing drive seat is also provided with a pressing drive member (not shown in the figure) for driving the pressing block 4 to move along the height direction of the workbench 1. The pressing drive member is a cylinder, and the driving end of the pressing drive member is connected to the pressing block 4. Thus, the pressing block 4 is driven by the pressing drive member to move along the height direction of the workbench 1. When the pressing block 4 abuts against the pressing fixture 2, the pressing block 4 simultaneously abuts against the bending portion 141 of the profile 14, thereby clamping multiple profiles 14 and further preventing shaking.

[0044] Reference Figure 5 and Figure 6 The receiving fixture 3 is in the shape of a rectangular parallelepiped and is distributed along the width direction of the workbench 1. A receiving mounting groove 9 is provided on the side of the receiving fixture 3 facing the pressing fixture 2. The receiving mounting groove 9 passes through the receiving fixture 3, and the receiving mounting groove 9 and the feeding mounting groove 8 are aligned with each other along the length direction of the workbench 1. The receiving mounting groove 9 includes a plurality of second mounting units, and the number of the second mounting units is consistent with the number of the first mounting units in the feeding mounting groove 8. A single second mounting unit is adapted to the profile 14. By extending the profiles 14 into the plurality of second mounting units in a one-to-one correspondence, the bottom side of a single second mounting unit supports the bending portion 141, the seat portion 142 and the protrusion portion 143 of a single profile 14, and the bending portions 141 of two adjacent profiles 14 abut against each other, and the bending portion 141 away from the seat portion 142 abuts against the top side of the second mounting unit.

[0045] Thus, by installing the profile 14 on the feeding clamp 6 and the pressing clamp 2, and extending it into the receiving clamp 3, the profile 14 is pressed by the feeding block 7 and the pressing block 4, so that the profile 14 is fixed, and the profile 14 is cut from the gap between the pressing assembly and the receiving clamp 3, the cutting process can be made more stable.

[0046] It should be noted that, referring to Figure 5 The distance between the pressing assembly and the receiving fixture 3 is smaller than the thickness of the main body 15. In this embodiment, the distance between the pressing assembly and the receiving fixture 3 is 3 mm, so that the main body 15 cannot fall between the pressing assembly and the receiving fixture 3. The workbench 1 is further provided with a saw groove 16 between the pressing assembly and the receiving fixture 3. The saw groove 16 is long and runs along the width of the workbench 1. The saw groove 16 passes through the upper and lower surfaces of the workbench 1 and one long side of the workbench 1.

[0047] Reference Figure 7A slide 10 is provided in the workbench 1, and the slide 10 slides and fits in the workbench 1 along the width direction of the workbench 1. A cutting drive 12 is provided on the slide 10, and the cutting drive 12 is a motor. The driving end of the cutting drive 12 is connected to a saw blade 5, and the saw blade 5 adopts a circular saw blade 5. The circular saw blade 5 can provide stable and continuous cutting action, which is suitable for batch cutting. The cutting edge is relatively smooth, which reduces the post-processing trimming work. The thickness of the saw blade 5 is less than the distance between the pressing assembly and the receiving clamp 3. The thickness of the saw blade 5 is 1mm. One side of the saw blade 5 extends into the saw groove 16, and the distance between the saw blade 5 and the pressing clamp 2 and the distance between the saw blade 5 and the receiving clamp 3 are equal. Therefore, the saw blade 5 is driven to rotate by the cutting drive 12, and the saw blade 5 can perform cutting work when it rotates. The sliding direction of the slide 10 is the cutting direction of the saw blade 5. The workbench 1 is also provided with a sliding drive 11 that drives the slide 10 to slide along the cutting direction of the saw blade 5. The sliding drive 11 is a cylinder, and the driving end of the sliding drive 11 is connected to the slide 10.

[0048] The saw blade 5 is driven to rotate by the cutting drive 12, so that the saw blade 5 works, and the slide 10 is driven to move along the width direction of the workbench 1 by the sliding drive 11, that is, the saw blade 5 moves along the length direction of the saw groove 16, so that multiple profiles 14 are cut. Since multiple profiles 14 are closely arranged, it is beneficial to reduce the movement distance of the saw blade 5, thereby reducing the cutting time and improving the cutting efficiency. After the cutting is completed, the saw blade 5 is reset. Since the thickness of the cut body 15 is 3.6mm±0.1mm, the spacing between the pressing assembly and the receiving fixture 3 is 3mm, the thickness of the saw blade 5 is 1mm, the distance between the saw blade 5 and the pressing fixture 2 and the distance between the saw blade 5 and the receiving fixture 3 are equal, so that most of the cut body 15 is located in the receiving mounting groove 9, and the saw blade 5 applies a cutting force to the profile 14, causing the profile 14 to generate stress at the cutting edge. When the saw blade 5 is reset, the cutting area of the profile 14 is squeezed by the saw blade 5. The stress release caused by the cutting may cause a slight elastic reaction, causing the two sides of the cut profile 14 to move outward. Since the pressing plate clamps the profile 14 in the pressing fixture 2, the remaining profile 14 will not move, but the cut body 15 will move away from the saw blade 5, so that only a body 15 less than 1 mm is located in the gap between the pressing assembly and the receiving fixture 3, thereby preventing the body 15 from falling or getting stuck between the pressing assembly and the receiving fixture 3, thereby improving the cutting efficiency while reducing the loss of the body 15.

[0049] In addition, refer to Figure 7The feeding fixture 6 slides along the length of the workbench 1 and is fitted to the workbench 1. That is, by driving the feeding fixture 6 to slide along the length of the workbench 1, the feeding fixture 6 approaches or moves away from the pressing fixture 2. The workbench 1 is also provided with a feeding drive for driving the feeding fixture 6 to move. The feeding drive is a cylinder, and the driving end of the feeding drive is connected to the feeding fixture 6.

[0050] When the cutting is completed, the pressing plate is reset by the pressing driving member, so that the pressing plate is away from the pressing clamp 2, and the feeding clamp 6 is driven to move by the feeding driving member, so that the feeding clamp 6 moves along the length direction of the workbench 1 by a distance of the thickness of the main body 15, that is, in this embodiment, the feeding clamp 6 moves 3.6 mm along the length direction of the workbench 1, so that the profile 14 extends into the receiving clamp 3 again, and the main body 15 in the receiving clamp 3 is pushed out to facilitate the next cutting and conveniently collect the cut main body 15.

[0051] Replay Figure 1 A collecting trough 13 is also provided on the workbench 1. The collecting trough 13 is close to the rear end of the workbench 1 and is inclined. The collecting trough 13 is inclined downward from the material receiving fixture 3 to the rear end of the workbench 1, and the high end of the collecting trough 13 abuts against the side of the material receiving fixture 3 away from the pressing fixture 2 to prevent the main body 15 from falling into the gap between the collecting trough 13 and the material receiving fixture 3, and the collecting trough 13 is located below the material receiving mounting slot 9, so as to conveniently collect the main body 15.

[0052] The implementation principle of the present application is as follows: during cutting, multiple profiles 14 are installed on the feeding clamp 6 and the pressing clamp 2, and then extended into the receiving clamp 3. The pressing block 4 is driven by the pressing drive to move along the height direction of the workbench 1, so that the pressing block clamps the multiple profiles 14. The feeding block 7 is driven by the clamping drive to move along the height direction of the workbench 1, so that the feeding block 7 clamps the multiple profiles 14 to prevent shaking.

[0053] The saw blade 5 is driven to rotate by the cutting drive 12 to make the saw blade 5 work, and the slide 10 is driven to move along the cutting direction of the saw blade 5 by the sliding drive 11, so that multiple profiles 14 are cut. Since the multiple profiles 14 are closely arranged, it is beneficial to reduce the moving distance of the saw blade 5, thereby reducing the cutting time and improving the cutting efficiency. After the cutting is completed, the saw blade 5 is reset, and the distance between the pressing assembly and the receiving clamp 3 is smaller than the required thickness of the main body, and the saw blade 5 applies a cutting force to the profile 14, causing the profile 14 to generate stress at the cutting edge. When the saw blade 5 is reset, the incision area of the profile 14 may have a slight elastic reaction due to the release of the stress generated by the squeezing and cutting of the saw blade 5, thereby causing the two sides of the cut profile 14 to move outward. Since the pressing plate clamps the profile 14 in the pressing clamp 2, the remaining profile 14 will not move, but the cut main body 15 will move away from the saw blade 5, so that only less than 1 mm of the main body 15 is located in the gap between the pressing assembly and the receiving clamp 3, thereby preventing the main body 15 from falling or getting stuck between the pressing assembly and the receiving clamp 3, thereby improving the cutting efficiency while reducing the loss of the main body 15 and preventing the lost main body 15 from damaging the equipment.

[0054] When the cutting is completed, the pressing plate is reset by the pressing drive component, so that the pressing plate is away from the pressing clamp 2, and the feeding clamp 6 is driven to move by the feeding drive component, so that the feeding clamp 6 moves along the length direction of the workbench 1 by the thickness of the main body 15, so that the profile 14 is extended into the receiving clamp 3 again to facilitate the next cutting, and the main body 15 in the receiving clamp 3 is pushed out to the collecting trough 13, so that the cut main body 15 can be conveniently collected.

[0055] The above description is merely a specific embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any person skilled in the art can easily conceive of various equivalent modifications or substitutions within the technical scope disclosed in the present invention, and such modifications or substitutions are intended to be within the scope of protection of the present invention. Therefore, the scope of protection of the present invention shall be subject to the scope of protection of the claims.

Claims

1. A cutting device for a carabiner body, comprising a workbench (1), characterized in that: The workbench (1) is provided with a material pressing fixture (2) and a material receiving fixture (3) in sequence, the material pressing fixture (2) is provided with a material pressing driving seat, the material pressing driving member is provided with a material pressing block (4) at the driving end of the material pressing driving member, the material pressing block (4) is used to press the profile against the material pressing fixture (2), the material pressing driving member drives the material pressing block (4) to move in a direction close to or away from the material pressing fixture (2), the distance between the material pressing fixture (2) and the material receiving fixture (3) is less than the thickness required by the main body, and a saw blade (5) for cutting the profile is slidably provided between the material pressing fixture (2) and the material receiving fixture (3).

2. A cutting device for a carabiner body according to claim 1, characterized in that: The workbench (1) is also provided with a feeding clamp (6) in a sliding manner, a pressing drive seat is provided on the feeding clamp (6), a pressing drive member is provided on the pressing drive seat, a feeding pressing block (7) is connected to the driving end of the pressing drive member, and the feeding pressing block (7) is used to press the profile on the feeding clamp (6). The feeding clamp (6), the pressing clamp (2) and the receiving clamp (3) are distributed in sequence, and the feeding clamp (6) slides in the direction of approaching or moving away from the pressing clamp (2) to cooperate with the workbench (1). The workbench (1) is also provided with a feeding drive member, and the driving end of the feeding drive member is connected to the feeding clamp (6).

3. A cutting device for a carabiner body according to claim 2, characterized in that: The feeding fixture (6) is provided with a feeding installation groove (8), and the feeding installation groove (8) includes a plurality of first installation units, the plurality of first installation units are closely arranged, and the first installation units are adapted to one side of the profile, and the profile is slidably fitted in the first installation unit. When the profile is installed in the feeding installation groove (8), two adjacent profiles abut against each other, and the profile near the edge abuts against the side wall of the feeding installation groove (8). The pressing fixture (2) is provided with a pressing installation groove, and the pressing installation groove is consistent with the feeding installation groove (8).

4. A cutting device for a carabiner body according to claim 3, characterized in that: The receiving clamp is provided with a receiving installation groove (9), and the receiving installation groove (9) includes a plurality of second installation units, the number of the second installation units is consistent with the number of the first installation units in the feeding installation groove (8), and the second installation units are adapted to the profile.

5. The cutting device for a carabiner body according to claim 1, characterized in that: A slide seat (10) is provided in the workbench (1), and the slide seat (10) slides along the cutting direction of the saw blade (5) to fit on the workbench (1). A sliding drive member (11) is also provided on the workbench (1), and a driving end of the sliding drive member (11) is connected to the slide seat (10).

6. A cutting device for a carabiner body according to claim 5, characterized in that: The saw blade (5) is a circular saw blade (5), and a cutting drive member (12) for driving the saw blade (5) to rotate is provided on the slide seat (10), and a driving end of the cutting drive member (12) is connected to the saw blade (5), and the thickness of the saw blade (5) is smaller than the distance between the pressing assembly and the material receiving clamp (3).

7. A cutting device for a carabiner body according to claim 6, characterized in that: The distance between the saw blade (5) and the material pressing fixture (2) is equal to the distance between the saw blade (5) and the material receiving fixture (3).

8. The cutting device for a carabiner body according to claim 4, characterized in that: The workbench (1) is further provided with a collecting trough (13), which is arranged in an inclined manner. The collecting trough (13) is inclined downward from close to the material receiving fixture (3) to away from the material receiving fixture (3), and the high end of the collecting trough (13) abuts against the side of the material receiving fixture (3) away from the material pressing fixture (2), and the collecting trough (13) is located below the material receiving installation trough (9).