Slotting device for cable bridge processing
By designing the moving and guide devices, combined with the laser cutter, the problem of large size and deformation of the cable tray processing equipment is solved, and convenient movement and high-quality grooved effect is achieved.
Patent Information
- Application Number
- CN202422389210.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-29
- Publication Date
- 2025-07-25
- Estimated Expiration
- 2034-09-29
AI Technical Summary
The existing cable tray processing equipment is large in size and is inconvenient for mobile use. The grooved mechanism is prone to deformation of the bridge and poor quality of the finished product.
A cable tray processing device including a mobile device, a guide device and a slotted device is designed to perform precise cutting using a laser cutter by reducing the machine volume and optimizing the slotted process.
It realizes convenient movement of equipment and high-quality groove processing, reduces deformation of bridges and improves the quality of finished products.
Smart Images

Figure CN223146293U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of bridge slotting equipment, in particular to a slotting device for cable bridge processing. Background Art
[0002] A cable bridge is a rigid structure made of metal to support cables, which needs to be slotted before use.
[0003] For example, in a class of existing technologies represented by the Chinese utility model patent for a cable bridge processing slotting device with the authorization announcement number CN217475023U, its main structure includes a conveying mechanism, a clamping mechanism and a slotting mechanism. The conveying mechanism transports the bridge, the clamping mechanism clamps the bridge, and the slotting mechanism performs slotting processing on the bridge.
[0004] However, the existing technical equipment still has the following problems when in use: the machine has a large volume, is not convenient to move and use, the usability of the machine is poor, and the existing slotting mechanism is likely to deform the thin-walled bridge when slotting it, resulting in poor finished product quality. Summary of the Utility Model
[0005] To solve the above technical problems, the utility model provides a slotting device for cable bridge processing, which reduces the volume of the machine, improves the usability of the machine, and by setting a slotting device, performs slotting processing on the bridge, reduces the deformation of the bridge, and improves the quality of the finished product.
[0006] A slotting device for cable bridge processing of the utility model includes a machine body; it further includes a moving device, two guiding devices and a slotting device, and the moving device, the two guiding devices and the slotting device are all installed on the machine body; the machine body provides support, the moving device drives the machine to move along the bridge, the guiding device guides the machine, and the slotting device cuts the bridge.
[0007] Preferably, the machine body includes a first bracket, a second bracket, a third bracket and two handles. The bottom end of the first bracket is provided with a plurality of first mounting grooves and a transmission groove, the rear end of the first bracket is provided with a second mounting groove, one side of the first bracket is provided with a first mounting hole and a plurality of through holes, the second bracket is installed on the top end of the first bracket, the top end of the second bracket is provided with a third mounting groove, the third bracket is installed on the first bracket and the second bracket, one ends of the two handles are both installed on the top end of the first bracket, and the other ends of the two handles are both installed on the top end of the third bracket; to provide support.
[0008] Preferably, the machine body further includes a camera and a display. The camera is installed at the bottom end of the second bracket, and the display is installed at the top end of the first bracket; the camera shoots the processing position of the slotting device, and the display shows the shooting picture, which is convenient for workers to locate the processing position of the machine.
[0009] Preferably, the mobile device includes a plurality of moving rollers, a first sprocket, a speed reducer, a second sprocket, a motor, and a chain. The plurality of moving rollers are respectively rotatably installed in a plurality of installation grooves one of the first bracket. The first sprocket is rotatably installed in the installation groove two of the first bracket. The speed reducer is fixedly installed at the rear end of the first bracket. The second sprocket is rotatably installed on the speed reducer. The motor is fixedly installed on the speed reducer. And the motor provides power to the second sprocket through the speed reducer. The chain is installed on the plurality of moving rollers, the first sprocket, and the second sprocket. The motor provides power, and the power is transmitted through the speed reducer, the second sprocket, and the first sprocket to drive the moving rollers to rotate. The rotation of the moving rollers drives the machine to move along the bridge frame.
[0010] Preferably, the guiding device includes an electric push rod, a plurality of guide posts, a fourth bracket, and a plurality of guiding rollers. The electric push rod is installed in the installation hole of the first bracket. The plurality of guide posts are respectively slidably installed in a plurality of through holes of the first bracket. The fourth bracket is installed on the electric push rod and the plurality of guide posts. A plurality of installation grooves four are provided on the fourth bracket. The plurality of guiding rollers are respectively rotatably installed in the plurality of installation grooves four. The two guiding devices are symmetrically installed on the first bracket. The electric push rod provides power to drive the guiding rollers to move left and right. When the two guiding rollers approach each other, they clamp the bridge frame to guide the machine.
[0011] Preferably, the grooving device includes a first linear motor, two fifth brackets, a first optical bar, a first slider, two sixth brackets, a second linear motor, a second optical bar, a second slider, a seventh bracket, and a laser cutter. The first linear motor is installed in the installation groove three of the second bracket. The two fifth brackets are respectively installed at the left and right ends inside the third bracket. The first optical bar is installed on the two fifth brackets. The first slider is slidably installed on the first optical bar. The two sixth brackets are respectively installed on the first linear motor and the first slider. The second linear motor and the second optical bar are both installed on the two sixth brackets. The second slider is slidably installed on the second optical bar. The seventh bracket is installed at the bottom ends of the second linear motor and the second slider. The laser cutter is installed at the bottom end of the seventh bracket. The first linear motor provides power to drive the second linear motor to move left and right. The second linear motor provides power to drive the laser cutter to move back and forth. The first linear motor and the second linear motor cooperate to drive the laser cutter to perform grooving processing on the bridge frame.
[0012] Compared with the prior art, the beneficial effects of the present utility model are as follows: The machine can be conveniently moved for use, and the usability of the machine is relatively high. And it can reduce the pressure generated on the bridge frame during grooving processing, and the quality of the finished product is relatively high. Description of the Drawings
[0013] Figure 1 is the axonometric structural schematic diagram of the present utility model;
[0014] Figure 2 is the axonometric structural schematic diagram of the fuselage;
[0015] Figure 3 is the axonometric structural schematic diagram of the fuselage;
[0016] Figure 4 It is an isometric structural schematic diagram of the second bracket and the camera;
[0017] Figure 5 It is an isometric structural schematic diagram of the mobile device;
[0018] Figure 6 It is an isometric structural schematic diagram of the guiding device;
[0019] Figure 7 It is an isometric structural schematic diagram of the grooving device.
[0020] Reference numerals in the drawings: 01, fuselage; 11, first bracket; 12, second bracket; 13, third bracket; 14, handle; 15, camera; 02, mobile device; 21, moving roller; 22, first sprocket; 23, reducer; 24, second sprocket; 25, motor; 26, chain; 03, guiding device; 31, electric push rod; 32, guide post; 33, fourth bracket; 34, guiding roller; 04, grooving device; 41, first linear motor; 42, fifth bracket; 43, first optical bar; 44, first slider; 45, sixth bracket; 46, second linear motor; 47, second optical bar; 48, second slider; 49, seventh bracket; 50, laser cutter. Detailed implementation manners
[0021] For the convenience of understanding the present invention, the present invention will be described more comprehensively below with reference to the relevant drawings. The present invention can be implemented in many different forms and is not limited to the embodiments described herein. On the contrary, these embodiments are provided so that the disclosure of the present invention is more thorough and comprehensive.
[0022] Embodiment 1
[0023] As Figure 1 shown, it includes a fuselage 01; it further includes a mobile device 02, two guiding devices 03 and a grooving device 04, and the mobile device 02, the two guiding devices 03 and the grooving device 04 are all installed on the fuselage 01; the fuselage 01 provides support, the mobile device 02 drives the machine to move along the bridge, the guiding device 03 guides the machine, and the grooving device 04 cuts the bridge;
[0024] As Figure 2 and Figure 3As shown in the figure, the fuselage 01 includes a first bracket 11, a second bracket 12, a third bracket 13 and two handles 14. The bottom end of the first bracket 11 is provided with a plurality of first mounting grooves and a transmission groove. The rear end of the first bracket 11 is provided with a second mounting groove. The side surface of the first bracket 11 is provided with a first mounting hole and a plurality of through holes. The second bracket 12 is mounted on the top end of the first bracket 11. The top end of the second bracket 12 is provided with a third mounting groove. The third bracket 13 is mounted on the first bracket 11 and the second bracket 12. One end of each of the two handles 14 is mounted on the top end of the first bracket 11, and the other end of each of the two handles 14 is mounted on the top end of the third bracket 13;
[0025] As Figure 5 shown in the figure, the moving device 02 includes a plurality of moving rollers 21, a first sprocket 22, a speed reducer 23, a second sprocket 24, a motor 25 and a chain 26. The plurality of moving rollers 21 are respectively rotatably mounted in the plurality of first mounting grooves of the first bracket 11. The first sprocket 22 is rotatably mounted in the second mounting groove of the first bracket 11. The speed reducer 23 is fixedly mounted on the rear end of the first bracket 11. The second sprocket 24 is rotatably mounted on the speed reducer 23. The motor 25 is fixedly mounted on the speed reducer 23, and the motor 25 provides power to the second sprocket 24 through the speed reducer 23. The chain 26 is mounted on the plurality of moving rollers 21, the first sprocket 22 and the second sprocket 24;
[0026] As Figure 6 shown in the figure, the guiding device 03 includes an electric push rod 31, a plurality of guide posts 32, a fourth bracket 33 and a plurality of guide rollers 34. The electric push rod 31 is mounted in the mounting hole of the first bracket 11. The plurality of guide posts 32 are respectively slidably mounted in the plurality of through holes of the first bracket 11. The fourth bracket 33 is mounted on the electric push rod 31 and the plurality of guide posts 32. The fourth bracket 33 is provided with a plurality of fourth mounting grooves. The plurality of guide rollers 34 are respectively rotatably mounted in the plurality of fourth mounting grooves. The two guiding devices 03 are symmetrically mounted on the first bracket 11;
[0027] As Figure 7 shown in the figure, the grooving device 04 includes a first linear motor 41, two fifth brackets 42, a first optical bar 43, a first slider 44, two sixth brackets 45, a second linear motor 46, a second optical bar 47, a second slider 48, a seventh bracket 49 and a laser cutter 50. The first linear motor 41 is mounted in the third mounting groove of the second bracket 12. The two fifth brackets 42 are respectively mounted at the left and right ends inside the third bracket 13. The first optical bar 43 is mounted on the two fifth brackets 42. The first slider 44 is slidably mounted on the first optical bar 43. The two sixth brackets 45 are respectively mounted on the first linear motor 41 and the first slider 44. The second linear motor 46 and the second optical bar 47 are both mounted on the two sixth brackets 45. The second slider 48 is slidably mounted on the second optical bar 47. The seventh bracket 49 is mounted at the bottom ends of the second linear motor 46 and the second slider 48. The laser cutter 50 is mounted at the bottom end of the seventh bracket 49;
[0028] First, place the machine on the bridge to be grooved. Then, turn on the electric push rod 31. The electric push rod 31 provides power to drive the guide rollers 34 to move left and right. When the two guide rollers 34 approach each other, they clamp the bridge to guide the machine. Then, turn on the motor 25. The motor 25 provides power, and the power is transmitted through the reducer 23, sprocket two 24, and sprocket one 22 to drive the moving roller 21 to rotate. The rotation of the moving roller 21 drives the machine to move along the bridge to the processing position. After that, turn on the linear motor one 41, linear motor two 46, and laser cutter 50. The linear motor one 41 provides power to drive the linear motor two 46 to move left and right. The linear motor two 46 provides power to drive the laser cutter 50 to move back and forth. The linear motor one 41 and the linear motor two 46 cooperate to drive the laser cutter 50 to groove the bridge.
[0029] Embodiment 2
[0030] On the basis of Embodiment 1, it further includes:
[0031] As Figure 4 shown, the fuselage 01 further includes a camera 15 and a display. The camera 15 is installed at the bottom end of the bracket two 12, and the display is installed at the top end of the bracket one 11;
[0032] First, place the machine on the bridge to be grooved. Then, turn on the electric push rod 31. The electric push rod 31 provides power to drive the guide rollers 34 to move left and right. When the two guide rollers 34 approach each other, they clamp the bridge to guide the machine. Then, turn on the motor 25. The motor 25 provides power, and the power is transmitted through the reducer 23, sprocket two 24, and sprocket one 22 to drive the moving roller 21 to rotate. The rotation of the moving roller 21 drives the machine to move along the bridge to the processing position. During the movement, the camera 15 captures the processing position of the grooving device 04, and the display shows the captured image, which is convenient for the worker to locate the processing position of the machine. After that, turn on the linear motor one 41, linear motor two 46, and laser cutter 50. The linear motor one 41 provides power to drive the linear motor two 46 to move left and right. The linear motor two 46 provides power to drive the laser cutter 50 to move back and forth. The linear motor one 41 and the linear motor two 46 cooperate to drive the laser cutter 50 to groove the bridge.
[0033] As Figures 1 to 7As shown in the figure, a grooving device for processing cable trays of the present utility model, when working, first place the machine on the cable tray to be grooved, and then turn on the electric push rod 31. The electric push rod 31 provides power to drive the guide rollers 34 to move left and right. When the two guide rollers 34 approach each other, they clamp the cable tray to guide the machine. Then turn on the motor 25. The motor 25 provides power, and the power is transmitted through the speed reducer 23, sprocket two 24 and sprocket one 22 to drive the moving roller 21 to rotate. The rotation of the moving roller 21 drives the machine to move along the cable tray to the processing position. During the movement, the camera 15 takes pictures of the processing position of the grooving device 04, and the display shows the captured pictures to facilitate the worker to locate the processing position of the machine. Then turn on the linear motor one 41, linear motor two 46 and laser cutter 50. The linear motor one 41 provides power to drive the linear motor two 46 to move left and right. The linear motor two 46 provides power to drive the laser cutter 50 to move back and forth. The linear motor one 41 and the linear motor two 46 cooperate to drive the laser cutter 50 to groove the cable tray.
[0034] The camera 15, display, sprocket one 22, speed reducer 23, sprocket two 24, motor 25, chain 26, two electric push rods 31, linear motor one 41, linear motor two 46 and laser cutter 50 of the present utility model are purchased on the market. Those skilled in the art only need to install and operate according to the attached user manual, without the need for creative labor from those skilled in the art.
[0035] The main functions achieved by the present utility model are: by reducing the volume of the machine, improving the usability of the machine, and by setting the grooving device 04 to groove the cable tray, reducing the deformation of the cable tray and improving the finished product quality; solving the existing technical problems that the machine has a large volume, is not easy to move and use, the usability of the machine is poor, and the existing grooving mechanism is easy to deform the thin-walled cable tray during grooving processing, resulting in poor finished product quality.
[0036] The above are only the preferred embodiments of the present utility model. It should be noted that for those of ordinary skill in the art, without departing from the technical principle of the present utility model, several improvements and modifications can be made, and these improvements and modifications should also be regarded as the protection scope of the present utility model.
Claims
1. A grooving device for cable tray processing, comprising a fuselage (01); characterized in that, It also includes a mobile device (02), two guiding devices (03) and a grooving device (04). The mobile device (02), the two guiding devices (03) and the grooving device (04) are all installed on the fuselage (01). The fuselage (01) provides support. The mobile device (02) drives the machine to move along the bridge. The guiding device (03) guides the machine, and the grooving device (04) cuts the bridge.
2. The grooving device for cable tray processing according to claim 1, wherein The fuselage (01) includes a first bracket (11), a second bracket (12), a third bracket (13) and two handles (14). A plurality of first mounting grooves and a transmission groove are provided at the bottom end of the first bracket (11). A second mounting groove is provided at the rear end of the first bracket (11). A first mounting hole and a plurality of through holes are provided on the side of the first bracket (11). The second bracket (12) is installed at the top end of the first bracket (11). A third mounting groove is provided at the top end of the second bracket (12). The third bracket (13) is installed on the first bracket (11) and the second bracket (12). One end of each of the two handles (14) is installed at the top end of the first bracket (11), and the other end of each of the two handles (14) is installed at the top end of the third bracket (13).
3. The grooving device for cable tray processing according to claim 2, wherein, The fuselage (01) further includes a camera (15) and a display. The camera (15) is installed at the bottom end of the second bracket (12), and the display is installed at the top end of the first bracket (11).
4. A grooving device for processing cable trays according to claim 2, characterized in that, The mobile device (02) includes a plurality of moving rollers (21), a first sprocket (22), a reducer (23), a second sprocket (24), a motor (25) and a chain (26). The plurality of moving rollers (21) are respectively rotatably installed in the plurality of first mounting grooves of the first bracket (11). The first sprocket (22) is rotatably installed in the second mounting groove of the first bracket (11). The reducer (23) is fixedly installed at the rear end of the first bracket (11). The second sprocket (24) is rotatably installed on the reducer (23). The motor (25) is fixedly installed on the reducer (23), and the motor (25) provides power to the second sprocket (24) through the reducer (23). The chain (26) is installed on the plurality of moving rollers (21), the first sprocket (22) and the second sprocket (24).
5. The grooving device for cable tray processing according to claim 2, wherein, The guiding device (03) includes an electric push rod (31), a plurality of guide posts (32), a fourth bracket (33) and a plurality of guiding rollers (34). The electric push rod (31) is installed in the mounting hole of the first bracket (11). The plurality of guide posts (32) are respectively slidably installed in the plurality of through holes of the first bracket (11). The fourth bracket (33) is installed on the electric push rod (31) and the plurality of guide posts (32). A plurality of fourth mounting grooves are provided on the fourth bracket (33). The plurality of guiding rollers (34) are respectively rotatably installed in the plurality of fourth mounting grooves. The two guiding devices (03) are symmetrically installed on the first bracket (11).
6. The grooving device for cable tray processing according to claim 2, characterized in that, The grooving device (04) comprises a linear motor one (41), two supports five (42), a lead screw one (43), a slider one (44), two supports six (45), a linear motor two (46), a lead screw two (47), a slider two (48), a support seven (49) and a laser cutter (50). The linear motor one (41) is installed in the installation groove three of the support two (12). The two supports five (42) are respectively installed at the left and right ends inside the support three (13). The lead screw one (43) is installed on the two supports five (42). The slider one (44) is slidably installed on the lead screw one (43). The two supports six (45) are respectively installed on the linear motor one (41) and the slider one (44). The linear motor two (46) and the lead screw two (47) are both installed on the two supports six (45). The slider two (48) is slidably installed on the lead screw two (47). The support seven (49) is installed at the bottom ends of the linear motor two (46) and the slider two (48). The laser cutter (50) is installed at the bottom end of the support seven (49).
Citation Information
Patent Citations
Grooving device for cable bridge processing
CN217475023U