Mineral cable production and processing equipment

By designing a structure that combines the protective cover and the collection box, the negative pressure collection box and the flow guide can be used to collect dust and debris, which solves the problem of difficulty in collecting dust and debris in the prior art, and improves the cutting and processing efficiency and the convenience of equipment cleaning.

CN120023275AInactive Publication Date: 2025-05-23FUJIAN RIRIHONG WIRE & CABLE CO LTD
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Patent Information

Application Number
CN202510505456.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-22
Publication Date
2025-05-23
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The dust and debris generated by existing mineral cable segment cutting equipment during the cutting process are difficult to effectively collect, causing dust to splash everywhere, affecting the health of the operators and the difficulty of cleaning the equipment.

Method used

A mineral cable production and processing equipment is designed, using a structure that combines a protective cover and a collection box. It drives the fan blade to rotate and generates negative pressure, and uses a diversion pipe and a collection net to collect and clean dust and debris.

Benefits of technology

It effectively reduces the splash of dust and debris everywhere, reduces the risk of dust inhalation by operators, simplifies the equipment cleaning process, and improves cutting and processing efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of mineral cable production, in particular to mineral cable production and processing equipment which comprises a mounting frame fixed to the upper end of a processing table, a hydraulic telescopic rod fixed in the mounting frame, a lifting plate fixed to the telescopic end of the hydraulic telescopic rod, and a cutting machine fixed to the end, away from the hydraulic telescopic rod, of the lifting plate. A first bevel gear and a second bevel gear of a driving motor enable a rotating shaft to drive fan blades to rotate, the fan blades rotate to generate suction force so that negative pressure can be generated in the collecting box, and under the action of the negative pressure, dust and chippings generated by cutting can be sucked into a connecting box, so that the dust and chippings are prevented from falling off. The dust and the chippings enter the collecting box through the flow guide pipe and are finally attached to the collecting net, so that dust and chippings are collected, flying around of the dust and the chippings can be reduced, suction of operators is reduced, and the problem that the dust and the chippings fall on the machining table and are difficult to clean is solved.
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Description

Technical Field

[0001] The present invention relates to the technical field of mineral cable production, and specifically to a mineral cable production and processing equipment. Background Art

[0002] Mineral cable is a fire-proof cable with inorganic mineral materials as insulation layer or sheath. It has the characteristics of fire resistance, high temperature resistance and explosion resistance. It is widely used in key scenarios such as fire protection systems and high-temperature industrial sites. During the production process of mineral cables, processing equipment is required to cut the mineral cables into sections to facilitate subsequent packaging and processing.

[0003] Most of the existing processing equipment for segmented cutting of mineral cables first places the cable to be cut on the processing table, and then uses a motor to drive the cutting blade to rotate at high speed to cut the cable to be cut. The entire cutting efficiency is high, the cutting position is accurate, and the cutting is smooth.

[0004] When using processing equipment to cut the cable into sections, some debris and dust will be generated after the high-speed rotating blade comes into contact with the cable. The debris and dust will splash and drift around under the centrifugal force of the high-speed rotating blade. The splashing and drifting dust will fall on the processing equipment and accumulate in the corners, which is not easy to clean. At the same time, the dust can be easily inhaled by the operators, causing certain effects on their health. Summary of the invention

[0005] In view of the deficiencies of the prior art, the present invention provides a mineral cable production and processing equipment, which has the function of collecting debris and dust generated during the cutting process and reducing the splashing and dispersion of the debris and dust.

[0006] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: a mineral cable production and processing equipment, comprising a processing table, a mounting frame is fixed to the upper end of the processing table, a hydraulic telescopic rod is fixed inside the mounting frame, a lifting plate is fixed to the telescopic end of the hydraulic telescopic rod, a cutting machine is fixed to the end of the lifting plate away from the hydraulic telescopic rod, a controller is fixed to the side of the mounting frame, a collecting box is fixed to the processing table, a protective cover is arranged on the side of the collecting box, a cutting groove is arranged on the protective cover, a connecting box is fixed to the lower end of the protective cover, the connecting box and the collecting box are connected by a guide pipe, a cover plate is fixed to the end of the collecting box away from the guide pipe, a collecting net is fixed inside the collecting box, a connecting plate is fixed inside the collecting box, a rotating shaft is rotatably connected to the connecting plate, a fan blade is fixed to the end of the rotating shaft, a driving assembly is arranged between the rotating shaft and the collecting box, and a cleaning assembly is arranged at one end of the protective cover; The cleaning assembly includes a dust suction ring installed on the upper end of the processing table, a dust suction port is opened inside the dust suction ring, cleaning rings are fixed on both sides of the dust suction ring, a cleaning brush is fixed inside the cleaning ring, a through hole is opened on the cleaning brush, a corrugated hose is fixed on the dust suction ring, one end of the corrugated hose away from the dust suction ring is fixedly connected to a collecting box, a transmission part is arranged between the dust suction ring and the collecting box, and a pushing part is arranged between the cleaning ring and the protective cover.

[0007] The driving assembly drives the rotating shaft and the fan blades to rotate to generate wind force, so that negative pressure is generated inside the dust collecting box. At the same time, the driving assembly drives the transmission parts to make the dust collection ring and the cleaning ring move back and forth.

[0008] Preferably, the driving assembly includes a driving motor fixed to the side of the collecting box, the output end of the driving motor extends into the interior of the collecting box and is rotatably connected to the collecting box, the output end of the driving motor is fixed with a bevel gear 1, and the end of the rotating shaft away from the fan blades is fixed with a bevel gear 2 meshing with the bevel gear 1.

[0009] Preferably, the transmission member includes a fixed plate fixed on the processing table, wherein a bidirectional ball screw is rotatably connected between the two fixed plates, a moving rod is fixed on the dust suction ring, a nut seat is fixed at the end of the moving rod, and the nut seat is sleeved on the bidirectional ball screw.

[0010] Preferably, a guide column is fixed between the other two fixing plates, a guide rod is fixed on the dust suction ring, and the guide rod is slidably sleeved on the guide column.

[0011] Preferably, a connecting shaft is fixed to one end of the bidirectional ball screw, and pulleys are fixed to the end of the connecting shaft and the output end of the driving motor, and the two pulleys are connected by a transmission belt.

[0012] Preferably, a barrier net is fixed at a position of the protective cover corresponding to the connection box, and a storage box is fixed at a position at both ends of the connection box at the lower end of the protective cover.

[0013] Preferably, the pushing member comprises a movable rod fixed on the side of the cleaning ring, the movable rod extends into the interior of the protective cover and is fixed with a pushing plate, a pushing brush is fixed at the lower end of the pushing plate, and the pushing brush is in contact with the barrier net.

[0014] Preferably, a clamping plate 1 is fixed to both ends of the protective cover, a clamping plate 2 is installed on the upper end of the clamping plate 1, and arc grooves are provided on the clamping plate 1 and the clamping plate.

[0015] Preferably, an electric telescopic rod is fixed on the processing table, the telescopic end of the electric telescopic rod is fixedly connected to the first pressing plate, a support rod is fixed on the processing table, and one end of the second pressing plate away from the electric telescopic rod is slidably sleeved on the support rod.

[0016] Preferably, two mounting plates are fixed on the upper end of the processing table, and conveying rollers are rotatably connected to the sides of the mounting plates.

[0017] Compared with the prior art, the present invention has the following beneficial effects: 1. The present invention can limit the dispersion range of dust and debris generated during the cutting process through the protective cover, reduce the dispersion of dust and debris, and drive the motor to drive the bevel gear 1 and the bevel gear 2 to drive the fan blades to rotate. The rotation of the fan blades generates suction to generate negative pressure inside the collection box. Under the action of the negative pressure, the dust and debris generated by the cutting will enter the inside of the connection box, and then enter the inside of the collection box through the guide pipe, and finally adhere to the collection net, so as to collect the dust and debris, reduce the dispersion of dust and debris, reduce the inhalation of operators, and reduce the problem of difficulty in cleaning caused by dust and debris falling on the processing table; 2. When the motor is driven to drive the rotating shaft and the fan blades to collect dust and debris under negative pressure, the two-way ball screw, the moving rod and other structures are driven to make the dust collection ring and the cleaning ring move back and forth. The dust generated during the cable cutting process and attached to the cable segment can be cleaned through the cleaning ring. After cleaning, the dust enters the inside of the dust collection ring through the through hole under the action of negative pressure, and enters the inside of the dust collection ring through the dust suction port, and finally enters the inside of the collection box through the corrugated hose, so as to clean and collect the dust attached to the cable surface, improve the dust collection effect of the collection box, and further reduce the dust from floating around. At the same time, the surface of the cable segment is cleaned during the collection of the dust and debris generated during the cutting process, which can reduce the steps of cleaning the cut cable separately during the whole cutting process, and improve the cutting efficiency of the cable; 3. At the same time, when the dust suction ring and the cleaning ring move back and forth, the push brush will be driven to move back and forth, which can clean the large pieces of scraps that fall on the barrier net during the cable cutting process into the storage box. After the cutting is completed, it is convenient to centrally process the large pieces of scraps, improve convenience, and reduce the accumulation of large pieces of scraps on the barrier net. It can reduce the influence of the accumulation of large pieces of scraps on the barrier net on the negative pressure collection of dust and debris, thereby ensuring the permeability of the barrier net, allowing the airflow to pass smoothly, and then can improve the effect of negative pressure collection of dust and debris in the collection box. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 It is an overall schematic diagram of the processing device of the present invention.

[0019] Figure 2 It is a schematic diagram of the internal structure of the collection box of the present invention.

[0020] Figure 3 It is a cross-sectional view of the processing device of the present invention.

[0021] Figure 4 It is a schematic diagram of the matching structure of the collection box and the protective cover of the present invention.

[0022] Figure 5 For the present invention Figure 2 A partial enlarged schematic diagram in the middle.

[0023] Figure 6 For the present invention Figure 3 A partial enlarged schematic diagram of point B in the middle.

[0024] Figure 7 For the present invention Figure 3 A partial enlarged schematic diagram of point C in the middle.

[0025] Figure 8 It is a side view of the processing device of the present invention.

[0026] Fig. 9 For the present invention Figure 8 A partial enlarged schematic diagram of point D in the middle.

[0027] Fig.10 For the present invention Figure 1 A partial enlarged schematic diagram of point E in the middle.

[0028] In the figure: 1. Processing table; 11. Mounting frame; 12. Hydraulic telescopic rod; 13. Lifting plate; 14. Cutting machine; 15. Mounting plate; 16. Conveyor roller; 17. Controller; 2. Collection box; 21. Protective cover; 211. Cutting groove; 212. Connecting box; 213. Barrier net; 214. Diversion pipe; 215. Storage box; 22. Cover plate; 23. Collection net; 24. Rotating shaft; 25. Fan blade; 26. Drive assembly; 261. Drive motor; 262. Bevel gear 1; 263. Bevel gear 2; 3. Cleaning assembly ; 31. Dust suction ring; 32. Cleaning ring; 33. Cleaning brush; 34. Dust suction port; 35. Corrugated hose; 36. Transmission member; 361. Fixed plate; 362. Bidirectional ball screw; 363. Moving rod; 364. Guide column; 365. Guide rod; 366. Connecting shaft; 367. Pulley; 368. Transmission belt; 37. Pushing member; 371. Movable rod; 372. Pushing plate; 373. Pushing brush; 38. Through hole; 4. Pressing plate one; 41. Pressing plate two; 42. Electric telescopic rod; 43. Support rod. DETAILED DESCRIPTION

[0029] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention. Embodiment 1

[0030] See also Figures 1 to 8 , which is the first embodiment of the present invention, provides a technical solution: a mineral cable production and processing equipment, including a processing table 1, a support frame is fixed at the lower end of the processing table 1, a mounting frame 11 is fixed at the upper end of the processing table 1, a hydraulic telescopic rod 12 is fixed inside the mounting frame 11, a lifting plate 13 is fixed at the telescopic end of the hydraulic telescopic rod 12, a cutting machine 14 is fixed at the end of the lifting plate 13 away from the hydraulic telescopic rod 12, a controller 17 is fixed on the side of the mounting frame 11, a collecting box 2 is fixed on the processing table 1, and a protective cover 21 is arranged on the side of the collecting box 2. The protective cover 21 is a high-definition transparent glass cover, which can visually see the cutting when the cable is cut. The protective cover 21 is fixedly connected to the processing table 1, and a cutting groove 211 is provided on the protective cover 21. The cutting groove 211 is adapted to the cutting blade of the cutting machine 14. When the cutting machine 14 cuts the cable, the blade of the cutting machine 14 can pass through the cutting groove 211 to cut the cable entering the protective cover 21, so that the protective cover 21 will not affect the normal cutting of the cable during the dust and splash prevention process. A connecting box 212 is fixed at the lower end of the protective cover 21, and the connecting box 212 is connected to the collecting box 2 through a guide tube 214. One end of the guide tube 214 is connected to the connecting box 212, and the other end is connected to the collecting box 2 is connected, a cover plate 22 is fixed at one end of the collection box 2 away from the guide tube 214, and a through hole is opened on the cover plate 22, so that air can pass through when the fan blade 25 rotates, thereby realizing negative pressure collection of dust and debris, and a collection net 23 is fixed inside the collection box 2, and the collection net 23 is used to collect dust and debris entering the collection box 2, and at the same time, it can reduce the contact between dust and structures such as the fan blade 25, which is more conducive to the long-term use of the fan blade 25, and a cleaning port is opened at the side of the collection box 2 corresponding to the collection net 23, and a blocking plate is installed at the cleaning port. When the collection net 23 needs to be cleaned, the blocking plate is opened, and the cleaning port can be used to clean the collection net 23. The inside of the collection box 2 and the surface of the collection net 23 are cleaned. A connecting plate is fixed inside the collection box 2. A rotating shaft 24 is rotatably connected to the connecting plate. A fan blade 25 is fixed at the end of the rotating shaft 24. A driving component 26 is arranged between the rotating shaft 24 and the collection box 2. A cleaning component 3 is arranged at one end of the protective cover 21. Two mounting plates 15 are fixed on the upper end of the processing table 1. Conveying rollers 16 are rotatably connected to the sides of the mounting plates 15. The conveying rollers 16 are symmetrical in pairs. A motor is fixed on the side of the mounting plate 15 away from the conveying rollers 16. The output end of the motor is fixedly connected to one of the conveying rollers 16. The conveying rollers 16 are driven to rotate by the motor, thereby realizing the conveying of the cable. The cleaning assembly 3 includes a dust suction ring 31 installed at the upper end of the processing table 1. The dust suction ring 31 is hollow and is connected to the collection box 2 through a corrugated hose 35. A dust suction port 34 is provided inside the dust suction ring 31. There are multiple dust suction ports 34 arranged in a ring shape. The dust suction port 34 can collect dust swept from the cable surface. The multiple dust suction ports 34 arranged in a ring shape increase the dust suction range, thereby improving the cleaning effect of dust attached to the cable surface. Cleaning rings 32 are fixed on both sides of the dust suction ring 31. A cleaning brush 33 is fixed inside the cleaning ring 32. The cleaning brush 33 is a sponge brush. A through hole 38 is provided on the cleaning brush 33. The cut cable passes through the cleaning brush 33. The cleaning brush 33 can clean the dust generated during the cable cutting process and attached to the cable segment. The dust entering the dust suction ring enters the dust suction ring through the through hole 38 under the action of negative pressure. The dust suction ring 31 can be used to collect the dust on the cable, reduce the dust on the cable, and reduce the step of cleaning the cut cable separately during the entire cutting process. A corrugated hose 35 is fixed on the dust suction ring 31. The end of the corrugated hose 35 away from the dust suction ring 31 is fixedly connected to the collection box 2. When the cleaning ring 32 reciprocates to clean the dust attached to the surface of the cable, the corrugated hose 35 can follow the movement, and the dust suction failure will not be caused by the movement of the cleaning ring 32. One end of the corrugated hose 35 is connected to the dust suction ring 31, and the other end is connected to the collection box 2. A transmission member 36 is arranged between the dust suction ring 31 and the collection box 2, and a pushing member 37 is arranged between the cleaning ring 32 and the protective cover 21.

[0031] When the cable is cut, the protective cover 21 is used to limit the dispersion range of cutting dust and debris, and the driving component 26 drives the rotating shaft 24 and the fan blades 25 to rotate to generate wind force, so that negative pressure is generated inside the dust collecting box. At the same time, the driving component 26 drives the transmission part 36 to make the dust collection ring 31 and the cleaning ring 32 move back and forth to collect dust.

[0032] The driving assembly 26 includes a driving motor 261 fixed to the side of the collecting box 2. The driving motor 261 is used to drive the fan blades 25 to rotate and the bidirectional screw to rotate, providing power for dust collection and movement of the dust suction ring 31. The output end of the driving motor 261 extends into the collecting box 2 and is rotatably connected to the collecting box 2. A bevel gear 262 is fixed to the output end of the driving motor 261, and a bevel gear 263 meshing with the bevel gear 262 is fixed to the end of the rotating shaft 24 away from the fan blades 25. The driving motor 261 drives the bevel gear 262 to rotate when it works, and the rotation of the bevel gear 262 drives the bevel gear 263 to rotate, thereby rotating the rotating shaft 24. The rotation of the rotating shaft 24 drives the fan blades 25 to rotate, thereby generating suction. In conjunction with the collecting box 2, the collecting net 23 and other structures, dust and debris can be collected and the splashing and dispersion of dust and debris can be reduced.

[0033] A barrier net 213 is fixed at a position corresponding to the protective cover 21 and the connecting box 212. The barrier net 213 is used to block larger pieces of scraps cut off during the cutting process, so as to prevent the larger pieces of scraps from entering the guide tube 214 and clogging the guide tube 214, resulting in poor dust collection effect. The lower end of the protective cover 21 is located at the two ends of the connecting box 212 and is fixed with a storage box 215. The storage box 215 is used to collect large pieces of scraps that fall on the barrier net 213.

[0034] During use, when cutting the cable, one end of the cable is passed through the conveying roller 16 away from the cleaning ring 32, so that the cable is between the upper and lower conveying rollers 16, and the conveying roller 16 is driven by the motor to rotate to move the cable, and the moved cable enters the protective cover 21 and passes through the protective cover 21, and then passes through the cleaning ring 32, and enters between another group of conveying rollers 16. As the cable moves, when the cutting position is below the cutting machine 14, the motor is turned off to stop the rotation of the conveying roller 16, and then the hydraulic telescopic rod 12 works, and the hydraulic telescopic rod 12 extends downward to drive the lifting plate 13 to move downward, and start the cutting machine 14, so that the blade of the cutting machine 14 enters the cutting groove 211 and contacts the cable to achieve the cutting of the cable. When a section of the cable is cut, the telescopic end of the hydraulic telescopic rod 12 contracts to lift the cutting machine 14, and then the motor works to cooperate with the conveying roller 16 to send the cut cable out of the processing table 1, and the uncut cable continues to be transported, and the above cable transportation process is repeated until the cutting position is below the cutting machine 14.

[0035] During the cutting process, the driving motor 261 works, and the driving motor 261 drives the bevel gear 1 262 to rotate, and the rotation of the bevel gear 1 262 drives the bevel gear 2 263 to rotate, so that the rotating shaft 24 drives the fan blades 25 to rotate, and the rotation of the fan blades 25 generates suction to generate negative pressure inside the collecting box 2. Under the action of the negative pressure, the dust and debris generated by the cutting will enter the inside of the connecting box 212, and then enter the inside of the collecting box 2 through the guide tube 214, and finally adhere to the collecting net 23, so as to collect the dust and debris, reduce the dust and debris from flying around, reduce the inhalation of the operators, and reduce the dust and debris falling on the processing table 1, which makes it difficult to clean.

[0036] At the same time, when the driving motor 261 drives the rotating shaft 24 to rotate, it can drive the transmission member 36 to work, so that the dust collection ring 31 and the cleaning ring 32 move back and forth. When the cut cable segment is sent out of the processing table 1 area, the cleaning ring 32 can clean the dust generated and attached to the cable segment during the cable cutting process, and enter the dust collection ring 31 through the through hole 38, and then enter the dust collection ring 31 through the dust suction port 34, and finally enter the collection box 2 through the corrugated hose 35, so as to clean and collect the dust attached to the surface of the cable, improve the dust collection effect, and at the same time reduce the step of cleaning the cut cable separately during the entire cutting process, thereby improving the cutting efficiency of the processing equipment for the cable. Embodiment 2

[0037] See also Figures 7 to 10 , which is the second embodiment of the present invention, and this embodiment is different from the first embodiment in that: The transmission member 36 includes a fixed plate 361 fixed on the processing table 1. There are four fixed plates 361, which are symmetrical to each other and distributed on both sides of the dust suction ring 31. They are used to install a bidirectional ball screw 362 and a guide column 364. The bidirectional ball screw 362 is rotatably connected between the two fixed plates 361. A moving rod 363 is fixed on the dust suction ring 31. A nut seat is fixed at the end of the moving rod 363. The nut seat is sleeved on the bidirectional ball screw 362. When the bidirectional ball screw rotates, the nut seat is forced to reciprocate on the bidirectional ball screw 362, and cooperates with the guide column 364 and the guide rod 365 to realize the reciprocating movement of the dust suction ring 31 and the cleaning ring 32, thereby cleaning the cable surface.

[0038] A guide column 364 is fixed between the other two fixing plates 361, and a guide rod 365 is fixed on the dust suction ring 31. The guide rod 365 is slidably sleeved on the guide column 364. When the dust suction ring 31 and the cleaning ring 32 move, the guide rod 365 slides on the guide column 364 to play a guiding and limiting role, so that the dust suction ring 31 and the cleaning ring 32 move smoothly.

[0039] A connecting shaft 366 is fixed to one end of the bidirectional ball screw 362, and a pulley 367 is fixed to the end of the connecting shaft 366 and the output end of the driving motor 261. The two pulleys 367 are connected by a transmission belt 368. When the driving motor 261 is working, it drives the pulley 367 fixed at its output end to rotate, and then the pulley 367 fixed on the connecting shaft 366 is rotated under the action of the transmission belt 368, thereby driving the connecting shaft 366 to rotate. The rotation of the connecting shaft 366 causes the bidirectional ball screw 362 to rotate, thereby playing a transmission role.

[0040] The pushing member 37 includes a movable rod 371 fixed to the side of the cleaning ring 32, the movable rod 371 is slidably arranged with the clamping plate 4, the movable rod 371 extends into the interior of the protective cover 21 and is fixed with a pushing plate 372, and a pushing brush 373 is fixed to the lower end of the pushing plate 372, and the pushing brush 373 is used to clean the barrier net 213, and the pushing brush 373 contacts the barrier net 213. The movement of the cleaning ring 32 drives the pushing rod to move, so that the pushing plate 372 moves, and the movement of the pushing plate 372 causes the pushing brush 373 to move, and the large pieces of scraps fallen on the barrier net 213 are pushed into the storage box 215, thereby realizing the concentration of the large pieces of scraps, which is convenient for subsequent centralized processing. At the same time, after the large pieces of scraps are cleaned up, the influence of the large pieces of scraps falling on the barrier net 213 on the negative pressure collection of dust and debris can be reduced.

[0041] During use, when the driving motor 261 drives the fan blades 25 to rotate, the pulley 367 fixed at the output end of the driving motor 261 will rotate accordingly, and under the action of the transmission belt 368, the pulley 367 at the end of the connecting shaft 366 will rotate accordingly, thereby driving the connecting shaft 366 to rotate. When the connecting shaft 366 rotates, the bidirectional ball screw 362 rotates. At this time, the nut seat at the end of the moving rod 363 is subjected to force, and is restricted by the guide rod 365 and the guide column 364, so that the dust suction ring 31 and the cleaning ring 32 move back and forth. Through the reciprocating movement of the dust suction ring 31 and the cleaning ring 32, the surface of the cut cable can be cleaned, and the dust attached to the cable can be swept down and enter the dust suction ring 31 through the dust suction port 34, and finally enter the collection box 2, which is beneficial to the subsequent packaging of the cable and other operations.

[0042] When the dust suction ring 31 and the cleaning ring 32 move back and forth, the movable rod 371 will be driven to move back and forth. When the movable rod 371 moves back and forth, the pushing plate 372 drives the pushing brush 373 to move back and forth. When the pushing brush 373 moves back and forth, the large pieces of scraps that fall on the barrier net 213 can be swept into the storage box 215. After the cutting is completed, it is convenient to centrally process the large pieces of scraps, which improves convenience. At the same time, it can reduce the accumulation of large pieces of scraps on the barrier net 213, and can reduce the influence of the accumulation of large pieces of scraps on the barrier net 213 on the negative pressure of the negative pressure collection of dust and debris, thereby ensuring the permeability of the barrier net 213 and the smooth passage of airflow, thereby improving the effect of negative pressure collection of dust and debris.

[0043] The remaining structures are the same as those of Example 1. Embodiment 3

[0044] See also Figure 1 and Figure 4 , which is the third embodiment of the present invention. This embodiment is different from the first and second embodiments in that: A clamping plate 4 is fixed at both ends of the protective cover 21, and a clamping plate 2 41 is installed on the upper end of the clamping plate 4. The clamping plate 4 cooperates with the clamping plate 2 41 and other structures to clamp the cable, reduce the shaking when the cable is cut, and make the cable cutting process more stable. At the same time, in the process of clamping the cable, the clamping plate 4 cooperates with the clamping plate 2 41 to seal the two ends of the protective cover 21, thereby reducing the dust from the inside of the protective cover 21. The dust collection box 2 collects the dust more thoroughly and improves the collection effect. The clamping plate 4 and the clamping plate are both provided with arc grooves. When the cable is clamped, the cable is located inside the arc grooves on the clamping plate 4 and the clamping plate 2 41.

[0045] An electric telescopic rod 42 is fixed on the processing table 1, and the electric telescopic rod 42 is electrically connected to the controller 17. The controller 17 can accurately control the extension and retraction of the electric telescopic rod 42, so as to facilitate the compression of the cable and the sealing of the two ends of the protective cover 21. The telescopic end of the electric telescopic rod 42 is fixedly connected to the clamping plate 1 4. The contraction of the electric telescopic rod 42 drives the clamping plate 2 41 to move downward, and cooperates with the clamping plate 1 4 to achieve the compression of the cable. A support rod 43 is fixed on the processing table 1, and one end of the clamping plate 2 41 away from the electric telescopic rod 42 is slidably sleeved on the support rod 43, and the support rod 43 can support the clamping plate 2 41 to rise and fall smoothly.

[0046] During use, when the position where the cable needs to be cut corresponds to the cutting machine 14 and the cable is stopped, the telescopic end of the electric telescopic rod 42 begins to shrink, so that the pressing plate 41 moves downward until the pressing plate 41 contacts the cable. The two ends of the cable to be cut can be restricted by the pressing plate 1 4 and the pressing plate 2 41, so that the cable can be in a stable state during cutting and will not shake at will, thereby improving the cutting effect. At the same time, the pressing plate 1 4 and the pressing plate 2 41 can block the two ends of the protective cover 21, limit the range of dust and debris, effectively reduce the dust and debris flying out from the two ends of the protective cover 21, and further reduce the dust and debris splashing everywhere. The blocked dust and debris enter the collection box 2 under the action of the negative pressure inside the collection box 2, which is more conducive to the collection of dust and debris by the collection box 2, and improves the collection effect.

[0047] The remaining structures are the same as those of embodiments 1 and 2.

[0048] Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A mineral cable production and processing equipment, comprising a processing table, characterized in that: A mounting frame is fixed to the upper end of the processing table, a hydraulic telescopic rod is fixed inside the mounting frame, a lifting plate is fixed to the telescopic end of the hydraulic telescopic rod, a cutting machine is fixed to the end of the lifting plate away from the hydraulic telescopic rod, a controller is fixed to the side of the mounting frame, a collecting box is fixed to the processing table, a protective cover is arranged on the side of the collecting box, a cutting groove is arranged on the protective cover, a connecting box is fixed to the lower end of the protective cover, the connecting box and the collecting box are connected by a guide pipe, a cover plate is fixed to the end of the collecting box away from the guide pipe, a collecting net is fixed inside the collecting box, a connecting plate is fixed inside the collecting box, a rotating shaft is rotatably connected to the connecting plate, a fan blade is fixed to the end of the rotating shaft, a driving assembly is arranged between the rotating shaft and the collecting box, and a cleaning assembly is arranged at one end of the protective cover; The cleaning assembly comprises a dust suction ring installed on the upper end of the processing table, a dust suction port is provided inside the dust suction ring, cleaning rings are fixed on both sides of the dust suction ring, a cleaning brush is fixed inside the cleaning ring, a through hole is provided on the cleaning brush, a corrugated hose is fixed on the dust suction ring, one end of the corrugated hose away from the dust suction ring is fixedly connected to a collection box, a transmission member is provided between the dust suction ring and the collection box, and a pushing member is provided between the cleaning ring and the protective cover; The driving assembly drives the rotating shaft and the fan blades to rotate to generate wind force, so that negative pressure is generated inside the dust collecting box. At the same time, the driving assembly drives the transmission parts to make the dust collection ring and the cleaning ring move back and forth.

2. A mineral cable production and processing equipment according to claim 1, characterized in that: The driving assembly includes a driving motor fixed to the side of the collection box, the output end of the driving motor extends into the collection box and is rotatably connected to the collection box, the output end of the driving motor is fixed with a bevel gear 1, and the end of the rotating shaft away from the fan blades is fixed with a bevel gear 2 meshing with the bevel gear 1.

3. The mineral cable production and processing equipment according to claim 2, characterized in that: The transmission member includes a fixed plate fixed on the processing table, wherein a bidirectional ball screw is rotatably connected between the two fixed plates, a moving rod is fixed on the dust suction ring, a nut seat is fixed at the end of the moving rod, and the nut seat sleeve is arranged on the bidirectional ball screw.

4. The mineral cable production and processing equipment according to claim 3, characterized in that: A guide column is fixed between the other two fixing plates, a guide rod is fixed on the dust suction ring, and the guide rod is slidably sleeved on the guide column.

5. The mineral cable production and processing equipment according to claim 4, characterized in that: A connecting shaft is fixed at one end of the bidirectional ball screw, and pulleys are fixed at the connecting shaft, the end and the output end of the driving motor, and the two pulleys are connected by a transmission belt.

6. The mineral cable production and processing equipment according to claim 1, characterized in that: A barrier net is fixed at a position of the protective cover corresponding to the connection box, and a storage box is fixed at a position at both ends of the connection box at the lower end of the protective cover.

7. The mineral cable production and processing equipment according to claim 1, characterized in that: The push member comprises a movable rod fixed on the side of the cleaning ring, the movable rod extends into the interior of the protective cover and is fixed with a push plate, a push brush is fixed at the lower end of the push plate, and the push brush is in contact with the barrier net.

8. The mineral cable production and processing equipment according to claim 1, characterized in that: A clamping plate 1 is fixed at both ends of the protective cover, a clamping plate 2 is installed at the upper end of the clamping plate 1, and arc grooves are formed on the clamping plate 1 and the clamping plate.

9. The mineral cable production and processing equipment according to claim 8, characterized in that: An electric telescopic rod is fixed on the processing table, and the telescopic end of the electric telescopic rod is fixedly connected to the first pressing plate. A support rod is fixed on the processing table, and one end of the second pressing plate away from the electric telescopic rod is slidably sleeved on the support rod.

10. The mineral cable production and processing equipment according to claim 1, characterized in that: Two mounting plates are fixed on the upper end of the processing table, and the sides of the mounting plates are rotatably connected with conveying rollers.

Citation Information

Patent Citations

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