Cutting device for electronic equipment cable processing
By introducing a flattening frame and a limiting groove structure into the cutting device, combined with a motor and a hydraulic telescopic rod, the problem of cable bending affecting cutting accuracy is solved, and high-precision cable cutting is achieved.
Patent Information
- Application Number
- CN202422931474.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-29
- Publication Date
- 2025-12-19
- Estimated Expiration
- 2034-11-29
AI Technical Summary
Cables are prone to bending during storage and handling, which affects the cutting accuracy and leads to poor performance in subsequent use.
A cutting device comprising a support base plate, a cutting mechanism, a flattening frame, a limiting groove, and a coiling rod is designed. The flattening frame and the limiting groove are used to press and guide the cable, and a motor and a hydraulic telescopic rod are used to achieve high-precision cutting.
It improves the precision and consistency of cable cutting, ensuring the stability and efficiency of the cutting effect.
Smart Images

Figure CN223684345U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to electronic cable technical field, specifically point to a kind of cutting device for electronic equipment cable processing. BACKGROUND
[0002] In the electronic equipment cable processing process, the cable needs to be cut to meet different use requirements.
[0003] The traditional cutting device directly places the cable under the cutting mechanism during use, then pulls the cable to the required length, and the cutting mechanism cuts immediately after measuring, so that the required length of cable can be obtained. However, the bending phenomenon of the cable may occur due to the winding and transportation during storage, which affects the measurement accuracy and cutting effect, and has an adverse effect on subsequent use. Therefore, a high-precision cutting device for electronic equipment cable processing is needed. UTILITY MODEL CONTENT
[0004] The technical problem to be solved by the utility model is that the bending of the cable easily affects the cutting accuracy, thereby affecting subsequent use. The utility model provides a high-precision cutting device for electronic equipment cable processing.
[0005] To solve the above technical problems, the utility model provides a technical scheme: a cutting device for electronic equipment cable processing, comprising a support bottom plate, a cutting mechanism and a cable main body. The cutting mechanism is arranged above the support bottom plate. The cutting mechanism comprises a main blade and an auxiliary blade that cooperate with each other. The support bottom plate is provided with a flattening frame on one side of the top surface. The flattening frame is provided with a first pressing plate on the inner wall of the bottom end. The flattening frame is provided with a second pressing plate above the first pressing plate. The first pressing plate is uniformly provided with a plurality of first limiting grooves on the top surface. The second pressing plate is uniformly provided with a plurality of second limiting grooves that cooperate with the first limiting grooves on the bottom surface. The cable main body is arranged between the first limiting grooves and the second limiting grooves. The support bottom plate is provided with a group of L-shaped support plates on one side of the outer wall, which are close to the flattening frame. The first winding rod is rotatably arranged between the L-shaped support plates. The support bottom plate is provided with an inverted U-shaped plate on the other side of the flattening frame. The second winding rod is rotatably arranged in the inverted U-shaped plate. The cable main body is wound on the first winding rod. The end of the cable main body is fixed on the second winding rod through the first limiting grooves and the second limiting grooves. The flattening frame is provided with a fixed plate close to the first pressing plate on the outer wall close to the second winding rod. The flattening frame is provided with a moving plate above the fixed plate on the outer wall. The main blade is embedded in the moving plate. The auxiliary blade is embedded in the top surface of the fixed plate.
[0006] As improved, the top surface of the flattening frame is provided with a downward pressing cylinder, the output end of the downward pressing cylinder is connected with a downward pressing rod located in the flattening frame, the other end of the downward pressing rod is connected with the second pressing plate, the inner walls of the two sides of the flattening frame are provided with sliding grooves matched with the second pressing plate in sliding connection, so that the distance between the first pressing plate and the second pressing plate can be adjusted, thereby being suitable for limiting and guiding different cable bodies.
[0007] As improved, the bottom end of the downward pressing rod is connected with a connecting plate, the top surface of the second pressing plate is provided with a mounting plate matched with the connecting plate, a plurality of mounting bolts are connected between the mounting plate and the connecting plate, the inner wall of the bottom end of the flattening frame is provided with a mounting groove matched with the first pressing plate, and a plurality of fastening bolts are provided in the flattening frame in penetrating mode and are bolted with the first pressing plate, so that the first pressing plate and the second pressing plate can be conveniently mounted and dismounted.
[0008] As improved, the outer walls of the L-shaped supporting plate and the inverted U-shaped plate are both provided with motors for driving the first winding rod and the second winding rod respectively, so that the cutting operation of the cable body can be conveniently realized, the cutting process is tensioned, and the precision is improved.
[0009] As improved, the outer wall of the flattening frame near the second winding rod is embedded with a group of hydraulic telescopic rods for driving the moving plate, so that the quick cutting work can be realized.
[0010] As improved, the top surface of the supporting bottom plate is symmetrically provided with a group of fixing blocks located between the flattening frame and the second winding rod, the fixing blocks are rotatably provided with guide rollers, and the cable body extends to the second winding rod through the guide rollers, so that the cable body can be guided and prevented from being cut by the main blade during the transfer to the second winding rod.
[0011] Compared with the prior art, the first pressing plate and the second pressing plate are matched, the cable can be pressed during the cutting process, the cutting precision is improved, and the machining effect is ensured.
[0012] The first winding rod and the second winding rod are matched to tension the cable, and the cutting work is smoothly performed in cooperation with the pressing plate. BRIEF DESCRIPTION OF DRAWINGS
[0013] Figure 1 is the first perspective view of the cutting device for electronic equipment cable processing.
[0014] Figure 2 is the second perspective view of the cutting device for electronic equipment cable processing.
[0015] Figure 3 is the third perspective view of the cutting device for electronic equipment cable processing.
[0016] Figure 4 is a cross section perspective view of the cutting device for electronic equipment cable processing.
[0017] As shown in the figure: 1, support bottom plate; 2, cutting mechanism; 3, cable main body; 4, main blade; 5, auxiliary blade; 6, flattening frame; 7, first pressing plate; 8, second pressing plate; 9, first limiting groove; 10, second limiting groove; 11, L-shaped support plate; 12, first winding rod; 13, inverted U-shaped plate; 14, second winding rod; 15, fixed plate; 16, moving plate; 17, downward pressing cylinder; 18, downward pressing rod; 19, sliding groove; 20, connecting plate; 21, mounting plate; 22, mounting bolt; 23, mounting groove; 24, fastening bolt; 25, motor; 26, hydraulic telescopic rod; 27, fixed block; 28, guide roller. DETAILED DESCRIPTION
[0018] The utility model makes further detailed explanation in combination with the drawings.
[0019] In combination with the drawings Figures 1-4The utility model discloses a kind of electronic equipment cable processing cutting devices, including support base plate 1, cutting mechanism 2 and cable main body 3, the cutting mechanism 2 is located support base plate 1 top, the cutting mechanism 2 includes mutually matched main blade 4 and auxiliary blade 5, the support base plate 1 top surface one side is equipped with flattening frame 6, the flattening frame 6 bottom end inner wall is equipped with first pressing plate 7, the flattening frame 6 is equipped with second pressing plate 8 in first pressing plate 7 top, the first pressing plate 7 top surface is uniformly equipped with a plurality of first limiting slot 9, the second pressing plate 8 bottom surface is uniformly equipped with a plurality of second limiting slot 10 cooperation first limiting slot 9, the cable main body 3 is located first limiting slot 9 and second limiting slot 10 between setting, the support base plate 1 one side outer wall is symmetrically equipped with a group of L type support plate 11 close to flattening frame 6, first winding rod 12 is rotatably equipped between the L type support plate 11, the support base plate 1 top is equipped with inverted U type plate 13 in flattening frame 6 other side, second winding rod 14 is rotatably equipped in the inverted U type plate 13, the cable main body 3 is wound and set on first winding rod 12, the cable main body 3 end is fixed on second winding rod 14 through first limiting slot 9 and second limiting slot 10 between, the L type support plate 11 and inverted U type plate 13 outer wall are all equipped with motor 25 respectively driving first winding rod 12 and second winding rod 14, the support base plate 1 top is symmetrically equipped with a group of fixed block 27 between flattening frame 6 and second winding rod 14, guide roller 28 is rotatably equipped between the fixed block 27, the cable main body 3 passes through guide roller 28 and extends to second winding rod 14, the flattening frame 6 close to second winding rod 14 one side outer wall is fixedly equipped with fixed plate 15 close to first pressing plate 7, the flattening frame 6 outer wall is slidably equipped with moving plate 16 in fixed plate 15 top, the main blade 4 is embedded and set on moving plate 16, the auxiliary blade 5 is embedded and set on fixed plate 15 top surface, the flattening frame 6 close to second winding rod 14 one side outer wall is embedded with a group of hydraulic telescopic rod 26 driving moving plate 16;
[0020] Through the above structure, the cable main body 3 needing cutting is first wound on first winding rod 12, then one end of the cable main body 3 is fixed on second winding rod 14 through first limiting slot 9 and second limiting slot 10 between first pressing plate 7 and second pressing plate 8, before fixing, the cable main body 3 passes below guide roller 28, then during cutting, first winding rod 12 is driven by motor 25 to release the cable main body 3, and the cable main body 3 is wound by second winding rod 14, the cable main body 3 between first limiting slot 9 and second limiting slot 10 is flattened by first pressing plate 7 cooperating with second pressing plate 8 during cable transfer, and guide roller 28 avoids the cable main body 3 from contacting the main blade 4, after the cable main body 3 transferred to second winding rod 14 reaches the required length, hydraulic telescopic rod 26 is opened to push moving plate 16 to slide downwards, so that the main blade 4 cooperates with the auxiliary blade 5 to cut the cable main body 3, and high-precision cutting work is completed;
[0021] The top surface of the flattening frame 6 is provided with a downward pressing cylinder 17, the output end of the downward pressing cylinder 17 is connected with a downward pressing rod 18 located in the flattening frame 6, the other end of the downward pressing rod 18 is connected with the second pressing plate 8, the inner walls on both sides of the flattening frame 6 are provided with sliding grooves 19 matched with the sliding connection of the second pressing plate 8, the bottom end of the downward pressing rod 18 is connected with a connecting plate 20, the top surface of the second pressing plate 8 is provided with a mounting plate 21 matched with the connecting plate 20, a plurality of mounting bolts 22 are connected between the mounting plate 21 and the connecting plate 20, the bottom end inner wall of the flattening frame 6 is provided with a mounting groove 23 matched with the first pressing plate 7, and a plurality of fastening bolts 24 are provided on the flattening frame 6 and are bolted with the first pressing plate 7;
[0022] Through the above structure, when the cable body 3 is assembled, the cable body 3 is placed in the first limiting groove 9 in sequence, the downward pressing cylinder 17 drives the second pressing plate 8 to move downward to tightly adhere to the top surface of the cable body 3 in the second limiting groove 10, so that the limiting and clamping operation of different cable bodies 3 is completed, and the flattening work of different cable bodies 3 is realized. When necessary, the first pressing plate 7 and the second pressing plate 8 can be disassembled and repaired by removing the fastening bolts 24 and the mounting bolts 22.
[0023] In the specific implementation of the utility model, firstly, the cable body 3 to be cut is placed in the first limiting groove 9 in sequence, the downward pressing cylinder 17 drives the second pressing plate 8 to move downward to tightly adhere to the top surface of the cable body 3 in the second limiting groove 10, so that the limiting and clamping operation of different cable bodies 3 is completed, and then one end of the cable body 3 is fixed on the second winding rod 14 through the first limiting groove 9 and the second limiting groove 10 between the first pressing plate 7 and the second pressing plate 8, and the cable body 3 passes under the guide roller 28 before being fixed.
[0024] Then during cutting, the first winding rod 12 is driven by the motor 25 to release the cable body 3, the second winding rod 14 is used to wind the cable body 3, the first pressing plate 7 cooperates with the second pressing plate 8 to flatten the cable body 3 between the first limiting groove 9 and the second limiting groove 10 during the cable transfer process, the guide roller 28 avoids the contact between the cable body 3 and the main blade 4, after the cable body 3 transferred to the second winding rod 14 reaches the required length, the hydraulic telescopic rod 26 is started to drive the moving plate 16 to slide downward, so that the main blade 4 cooperates with the auxiliary blade 5 to cut the cable body 3, the high-precision cutting work of different cable bodies 3 is realized, and when necessary, the first pressing plate 7 and the second pressing plate 8 can be disassembled and repaired by removing the fastening bolts 24 and the mounting bolts 22.
[0025] The above has described the utility model and its implementation mode, which is not restrictive, and the drawings only show one of the implementation modes of the utility model, and the actual structure is not limited thereto. In summary, if a person skilled in the art is inspired thereby, without departing from the creative purpose of the utility model, similar structural modes and embodiments are not creatively designed, which should belong to the protection scope of the utility model.
Claims
1. An electronic device cable processing cutting device, comprising a support base plate (1), a cutting mechanism (2) and a cable main body (3), the cutting mechanism (2) is arranged above the support base plate (1), the cutting mechanism (2) comprises a main blade (4) and an auxiliary blade (5) matched with each other, characterized in that: The top surface of the support base plate (1) is provided with a flattening frame (6), the inner wall of the bottom end of the flattening frame (6) is provided with a first pressing plate (7), the flattening frame (6) is provided with a second pressing plate (8) above the first pressing plate (7), the top surface of the first pressing plate (7) is uniformly provided with a plurality of first limiting grooves (9), the bottom surface of the second pressing plate (8) is uniformly provided with a plurality of second limiting grooves (10) matched with the first limiting grooves (9), the cable main body (3) is arranged between the first limiting grooves (9) and the second limiting grooves (10), the outer wall of one side of the support base plate (1) is symmetrically provided with a group of L-shaped support plates (11) close to the flattening frame (6), the first winding rod (12) is rotatably arranged between the L-shaped support plates (11), the top surface of the support base plate (1) is provided with an inverted U-shaped plate (13) located on the other side of the flattening frame (6), the second winding rod (14) is rotatably arranged in the inverted U-shaped plate (13), the cable main body (3) is wound on the first winding rod (12), the end of the cable main body (3) is fixed on the second winding rod (14) through the first limiting grooves (9) and the second limiting grooves (10), the outer wall of the side of the flattening frame (6) close to the second winding rod (14) is fixedly provided with a fixed plate (15) close to the first pressing plate (7), the outer wall of the flattening frame (6) is slidably provided with a moving plate (16) above the fixed plate (15), the main blade (4) is embedded on the moving plate (16), and the auxiliary blade (5) is embedded on the top surface of the fixed plate (15).
2. The cutting device for processing electronic device cable according to claim 1, characterized in that: The top surface of the flattening frame (6) is provided with a pressing cylinder (17), the output end of the pressing cylinder (17) is connected with a pressing rod (18) located in the flattening frame (6), the other end of the pressing rod (18) is connected with the second pressing plate (8), and the inner walls of the two sides of the flattening frame (6) are provided with sliding grooves (19) matched with the second pressing plate (8) in sliding connection.
3. The cutting device for processing electronic device cable according to claim 2, characterized in that: The bottom end of the pressing rod (18) is connected with a connecting plate (20), the top surface of the second pressing plate (8) is provided with a mounting plate (21) matched with the connecting plate (20), a plurality of mounting bolts (22) are connected between the mounting plate (21) and the connecting plate (20), the inner wall of the bottom end of the flattening frame (6) is provided with a mounting groove (23) matched with the first pressing plate (7), and a plurality of fastening bolts (24) are penetratingly arranged on the flattening frame (6) and bolted connected with the first pressing plate (7).
4. The cutting device for processing electronic device cable according to claim 1, characterized in that: The outer walls of the L-shaped support plates (11) and the inverted U-shaped plate (13) are respectively provided with motors (25) for driving the first winding rod (12) and the second winding rod (14).
5. The cutting apparatus for processing electronic device cables according to claim 1, characterized by: The outer wall of the side of the flattening frame (6) close to the second winding rod (14) is embedded with a group of hydraulic telescopic rods (26) for driving the moving plate (16).
6. The cutting apparatus for processing electronic device cables according to claim 1, characterized by: The support bottom plate (1) top surface is symmetrically provided with a group of fixed blocks (27) between the flattening frame (6) and the second winding rod (14), the fixed blocks (27) are rotatably provided with guide rollers (28), and the cable main body (3) extends to the second winding rod (14) through the guide rollers (28).