A wire mesh framework pipe cutting device
By combining an electric push rod and a guide rod to form a fixing structure and a collection mechanism, the problems of unstable fixing and debris collection in the steel wire mesh skeleton tube cutting device are solved, achieving high-precision cutting and efficient debris handling, thereby improving production efficiency and product quality.
Patent Information
- Application Number
- CN202510058605.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-15
- Publication Date
- 2026-01-02
- Estimated Expiration
- 2045-01-15
AI Technical Summary
Existing steel wire mesh reinforced pipe cutting devices have poor fixation effects, affecting cutting accuracy and safety. At the same time, the debris generated during cutting is difficult to collect effectively, increasing the workload of workers.
The fixing structure adopts a combination of electric push rod and guide rod, and achieves multi-point fixing of the pipeline through the cooperation of spiral groove and threaded rod; a collection mechanism is set up to separate and collect debris using magnetic rollers and conveyor belt.
It improves cutting precision and stability, reduces pipe swaying, reduces the need for manual debris removal, and improves production efficiency and product quality.
Smart Images

Figure CN119772970B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application relates to the technical field of composite pipe processing equipment, in particular to a steel wire mesh skeleton pipe cutting device. BACKGROUND
[0002] The steel wire mesh skeleton pipe is widely applied to multiple industry fields such as building, petroleum, chemical industry, environmental protection, agriculture, water conservancy and traffic as a kind of composite pipe material with excellent performance. In the production and processing process, the steel wire mesh skeleton pipe needs to be cut to meet the length requirement of different application scenarios. At present, the steel wire mesh skeleton pipe cutting devices on the market are mainly divided into three categories: manual cutting device, semi-automatic cutting device and full-automatic cutting device. These cutting devices play an irreplaceable role in their respective application scenarios and jointly promote the development of the steel wire mesh skeleton pipe production and processing industry.
[0003] The steel wire mesh skeleton plastic composite pipe cutting machine with the announcement number CN213033773U extends the upper end of the cutting blade to the upper part outside the cavity through the rectangular through hole, and the outside of the cavity is sequentially provided with an air extractor and a dust collection box from top to bottom. The air extractor and the dust collection box are connected through a dust outlet pipe. The device has high flexibility and good use effect. However, in actual use, only the fixing device is used for fixing, the clamping effect is poor, the stability is insufficient, the cutting precision and safety are affected, and a large amount of debris is generated during cutting. Although the air extractor can collect the debris through the fan, part of the impurities will still scatter on the cavity on both sides of the cutting blade, and manual cleaning is needed, thereby increasing the workload of workers.
[0004] Therefore, the steel wire mesh skeleton pipe cutting device is proposed to solve the above problems. SUMMARY
[0005] The application aims to provide a steel wire mesh skeleton pipe cutting device to solve the problems that the clamping effect of the fixing device is poor, the cutting precision and safety are affected, and a large amount of debris generated during cutting cannot be collected conveniently, thereby increasing the workload of workers.
[0006] To achieve the above-mentioned purpose, the application provides the following technical scheme: a steel wire mesh skeleton pipe cutting device, comprising a frame body, a first electric push rod is fixedly connected to the upper end of the frame body, two fixed rods are symmetrically arranged on the frame body on the side of the first electric push rod, a moving piece is slidably connected to the outside of the two fixed rods, and the moving piece is fixedly connected to the output end of the first electric push rod.
[0007] Further comprising:
[0008] A second electric push rod is fixedly arranged at the top end of the moving part, and a bottom plate is fixedly connected to the output end of the second electric push rod, and a cutting device is fixedly connected to the bottom end of the bottom plate;
[0009] A guide rod is rotatably arranged at the bottom end of the moving part, a spiral groove is formed in the guide rod, the guide rod extends through the bottom plate at the bottom end, a connecting piece is arranged outside the extending end of the guide rod, a threaded rod is fixedly connected to the bottom end of the guide rod, an activity plate is movably connected in the connecting piece, one end of the activity plate extends through the connecting piece, and a plurality of rolling balls are rotatably connected to the extending end of the activity plate;
[0010] An auxiliary positioning assembly is arranged on the frame below the threaded rod to fix the pipeline;
[0011] A base is fixedly arranged on the frame, a main support table is fixedly connected to the base, a plurality of auxiliary support wheels are rotatably connected to the main support table, and a belt is arranged outside the shaft end of the auxiliary support wheel.
[0012] A collecting mechanism is arranged in the base to collect the cutting debris, and the auxiliary support wheel is drivingly connected to the collecting mechanism through the belt.
[0013] Preferably, two guide rods are symmetrically arranged relative to the bottom plate, and both of the guide rods are slidingly connected to the bottom plate.
[0014] Preferably, the connecting piece includes a sleeve, a protruding block, and a side plate.
[0015] Two sleeves are arranged, and the sleeves are correspondingly arranged outside the guide rods, and the top ends of the sleeves are fixedly connected to the bottom plate. The sleeves are fixedly connected to the protruding blocks, the protruding blocks correspond to the spiral grooves, one end of the protruding block extends into the spiral groove, and the protruding block is slidingly connected to the spiral groove. The spiral groove is composed of two parts, the upper part of the spiral groove is in a spiral shape, and the lower part of the spiral groove is in a straight line structure.
[0016] The side plate is fixedly arranged outside the sleeve, the activity plate is slidingly arranged in the side plate, the compression spring is connected between the side plate and the activity plate, and the side plate and the activity plate are elastically connected through the compression spring.
[0017] Preferably, the auxiliary positioning assembly includes a connecting frame, a sliding groove, a sliding block, an auxiliary support frame, a circular groove, a first air bag, a top rod, a horizontal plate, a positioning plate, a positioning roller, a rectangular block, a connecting piece, and a second air bag.
[0018] Connecting frame, two, two said connecting frame symmetrically fixed on the side wall of the base, and two said connecting frame is provided with a sliding slot, the sliding slot is slidably connected with a sliding block, and the upper end of the sliding block is fixedly connected with an auxiliary support frame, and the auxiliary support frame is rotatably connected with a threaded rod, a circular groove is formed in the auxiliary support frame, a first air bag is fixedly connected in the circular groove, and a top rod is fixedly connected at the top end of the first air bag, the top rod penetrates through the auxiliary support frame, and a horizontal plate is fixedly connected at the top end of the top rod;
[0019] Positioning plate, rotationally arranged in the middle of the horizontal plate, a set of positioning rollers is symmetrically arranged on the upper end of the positioning plate;
[0020] Rectangular block, slidingly arranged in the horizontal plate below the positioning plate, an adapter is rotatably installed on the rectangular block;
[0021] Second air bag, fixedly arranged in the horizontal plate, and the side wall of the second air bag is fixedly connected with the side wall of the rectangular block.
[0022] Preferably, the bottom end of the threaded rod penetrates through the horizontal plate, and the horizontal plate is threadedly connected with the threaded rod, the horizontal plate is slidably connected with the auxiliary support frame, the top rod at the bottom end of the horizontal plate is slidably connected with the auxiliary support frame, the positioning roller is rotatably connected with the positioning plate, and the bottom end of the positioning plate is rotatably connected with the end of the adapter away from the rectangular block, and the second air bag is connected in communication with the first air bag through a pipeline.
[0023] Preferably, the auxiliary positioning assembly further comprises an end face plate, a fixed seat, a T-shaped sliding block, a compression wheel and an auxiliary air bag;
[0024] End face plate, fixedly arranged on the outer wall of the sleeve, the end face plate is located above the side plate, and a fixed seat is fixedly connected at the bottom end of the end face plate, the fixed seat is fixedly connected with an auxiliary air bag, and the bottom end of the auxiliary air bag is fixedly connected with a T-shaped sliding block, the bottom end of the T-shaped sliding block penetrates through the fixed seat, and the protruding end of the T-shaped sliding block is rotatably connected with a compression wheel.
[0025] Preferably, the protruding end of the T-shaped sliding block is provided in an arc shape, the compression wheel is symmetrically arranged on the T-shaped sliding block, and a jet head is formed on the side wall of the protruding end of the T-shaped sliding block, the jet head is connected in communication with the auxiliary air bag through a pipeline, and the jet head corresponds to the bottom end of the cutting device.
[0026] Preferably, the collecting mechanism comprises a placing table, a collecting box, a driving motor, a magnetic separation roller, a conveyor belt, a conveying roller, a rotating rod, a sleeve ring, a storage box, a filter plate, an elastic member, an air outlet, a shaft, a half gear, a rectangular frame, a tooth block, a piston cylinder, a piston sheet and a piston rod;
[0027] Placing table, fixedly arranged at the bottom end of the frame body, the collecting box is fixedly installed on the placing table, and the driving motor is fixedly installed on the placing table at the side of the collecting box;
[0028] A magnetic roller is rotatably installed in the collecting box, and a conveying belt is sleeved on the outside of the magnetic roller, and a group of conveying rollers are arranged in the conveying belt;
[0029] A rotating rod is rotatably installed in the collecting box, and a group of sleeves are sleeved on the outside of the rotating rod;
[0030] A storage box is slidably arranged in the collecting box below the conveying rollers, and is used for collecting separated debris;
[0031] A filter plate is slidably arranged in the collecting box, and a resilient member is fixedly connected to the bottom end of the filter plate, and an air outlet hole is formed in the side wall of the collecting box above the filter plate;
[0032] A shaft rod is rotatably installed in the side wall of the collecting box above the driving motor, a half gear is sleeved on the outside of the shaft rod, a rectangular frame is sleeved on the outside of the half gear, and a tooth block is fixedly connected to the inner wall of the rectangular frame;
[0033] A piston cylinder is fixedly arranged on the side wall of the frame body, a piston sheet is slidably connected in the piston cylinder, a piston rod is fixedly connected to the side wall of the piston sheet, and the end of the piston rod away from the piston sheet penetrates out of the piston cylinder and is fixedly connected with the rectangular frame.
[0034] Preferably, the rotating rod is arranged between the magnetic roller and the conveying roller, and the rotating rod and the sleeve are symmetrically arranged with two about the middle conveying roller, the two sleeves are fixedly connected with the rotating rod, the outer wall of the sleeve is matched with the conveying belt, a brush is arranged on the rotating rod between the two sleeves, and the brush is matched with the conveying belt.
[0035] Preferably, the driving motor and the rotating rod are drivingly connected with the auxiliary supporting wheel through a belt, one end of the rotating rod penetrates into the collecting box and is fixedly connected with the shaft end of the middle conveying roller, the rotating rod is fixedly connected with the half gear, the tooth block is arranged with a plurality of arrays, the tooth block is symmetrically arranged with two groups about the rectangular frame, the tooth block is engaged with the half gear, the piston rod of the side edge of the rectangular frame is slidably connected with the piston cylinder, the piston cylinder, the piston sheet and the piston rod are symmetrically arranged with two about the rectangular frame, the air inlet end of the two piston cylinders is communicated with the outside through a one-way flow pipeline, and the air outlet end of the piston cylinder is communicated with the air outlet hole through a one-way flow pipeline.
[0036] Compared with the prior art, the steel wire mesh skeleton pipe cutting device can clamp and fix the pipe, effectively prevent cutting deviation caused by pipe shaking during cutting, make the cutting more accurate, improve the cutting efficiency and product quality, and can collect the debris generated during cutting, reduce the need for manual intervention, speed up the operation speed, improve the overall production efficiency, and the specific content is as follows:
[0037] 1. Equipped with a fixed base, a T-shaped slider, and a clamping roller, the fixed base drives the T-shaped slider and the clamping roller to move downwards synchronously during the cutting of the skeleton tube. This causes the clamping roller to first fit against the outer wall of the skeleton tube, thus pre-fixing the skeleton tube and ensuring the accuracy and quality of the cutting. At the same time, the T-shaped slider is squeezed, causing it to slide into the fixed base and compress the auxiliary airbag. This causes the auxiliary airbag to contract, thereby delivering the gas stored inside to the jet head. The jet head then sprays the gas onto the skeleton tube below the cutting device, pre-treating the skeleton tube, improving cutting efficiency and extending the service life of the cutting device.
[0038] 2. Equipped with a sleeve and a protruding block, the sleeve moves, causing the protruding block to slide downwards along the spiral groove, which in turn rotates the guide rod. The guide rod then rotates the threaded rod, causing the threaded rod to engage and move the horizontal plate upwards. This causes the horizontal plate to move the positioning roller, which then fits against the bottom end of the skeleton tube, providing further support and preventing the protruding end of the skeleton tube from shaking during cutting. This ensures stable cutting and further improves cutting efficiency.
[0039] 3. Equipped with magnetic separator rollers, a conveyor belt, and a conveyor roller, the chipping generated during cutting is collected in a collection box and falls onto the conveyor belt. Furthermore, a drive motor moves the belt, causing the auxiliary support wheel and shaft to rotate synchronously. The shaft drives the conveyor roller, which in turn moves the conveyor belt, thus transporting the chipping. The magnetic separator rollers separate the magnetic and non-magnetic chips for recycling, reducing environmental pollution. Attached Figure Description
[0040] Figure 1 This is a schematic diagram of the overall structure of the present invention;
[0041] Figure 2 This is a side view of the structure of the present invention;
[0042] Figure 3 For the present invention Figure 2 Enlarged structural diagram at point A in the middle;
[0043] Figure 4 This is an enlarged structural diagram of the moving part of the present invention;
[0044] Figure 5 For the present invention Figure 4 Enlarged structural diagram at point B;
[0045] Figure 6 For the present invention Figure 4 Enlarged structural diagram at point C;
[0046] Figure 7It is the casing main section structure schematic view of the application;
[0047] Figure 8 It is the casing main section structure schematic view of the application Figure 7 It is the casing main section structure schematic view of the application;
[0048] Figure 9 It is the casing main section structure schematic view of the application
[0049] Figure 10 It is the casing main section structure schematic view of the application
[0050] Figure 11 It is the casing main section structure schematic view of the application.
[0051] In the figure: 1, frame; 2, first electric push rod; 3, fixed rod; 4, moving piece; 5, second electric push rod; 6, bottom plate; 7, cutting device; 8, guide rod; 801, spiral groove; 9, connecting piece; 901, sleeve; 902, protruding block; 903, side plate; 10, threaded rod; 11, movable plate; 1101, compression spring; 12, ball; 13, auxiliary positioning assembly; 1301, connecting frame; 1302, sliding groove; 1303, sliding block; 1304, auxiliary support frame; 1305, circular groove; 1306, first air bag; 1307, jacking rod; 1308, cross plate; 1309, positioning plate; 1310, positioning roller; 1311, rectangular block; 1312, adapter; 1313, second air bag; 1314, end plate; 1315, fixed seat; 1316, T-shaped sliding block; 1317, pressing wheel; 1318, auxiliary air bag; 1319, air jet head; 14, base; 15, main support table; 16, auxiliary support wheel; 17, collecting mechanism; 1701, placing table; 1702, collecting box; 1703, driving motor; 1704, magnetic separation roller; 1705, conveyor belt; 1706, conveying roller; 1707, rotating rod; 1708, sleeve ring; 1709, storage box; 1710, filter plate; 1711, elastic piece; 1712, air outlet; 1713, shaft; 1714, half gear; 1715, rectangular frame; 1716, tooth block; 1717, piston cylinder; 1718, piston sheet; 1719, piston rod; 18, belt. DETAILED DESCRIPTION
[0052] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0053] Embodiment one: please refer to Figures 1-11As shown, the present application provides a technical scheme: a steel wire mesh skeleton pipe cutting device, including frame body 1, the upper end of frame body 1 is fixedly connected with first electric push rod 2, and two fixed rods 3 are symmetrically arranged on the frame body 1 on the side of first electric push rod 2, two fixed rods 3 are slidably connected with moving piece 4 on the outside, and moving piece 4 is fixedly connected with the output end of first electric push rod 2.
[0054] The technical scheme utilizes the arrangement of first electric push rod 2, in use, first, the device is placed on the flat and open ground, and then the steel wire mesh skeleton pipe to be cut is placed above the frame body 1, so that the steel wire mesh skeleton pipe can be cut by cutting device 7, and the arrangement of first electric push rod 2 enables first electric push rod 2 to push moving piece 4 to slide transversely along fixed rod 3 when working, so as to adjust the position of cutting device 7, so that cutting device 7 can cut different positions of the pipe, and the practicability of the device is improved.
[0055] In the embodiment, the technical content disclosed in the embodiment is improved on the basis of the above-mentioned embodiment one, in actual use, the existing fixing device is only fixed, the clamping effect is poor, the stability is insufficient, and the cutting precision and safety are affected, and the technical scheme is as follows Figure 1 and Figures 4-8As shown, the fixed assembly of the cutting device is disclosed, which is provided with a second electric push rod 5 fixedly arranged at the top end of the moving piece 4, the output end of the second electric push rod 5 is fixedly connected with a bottom plate 6, the bottom end of the bottom plate 6 is fixedly connected with a cutting device 7, a guide rod 8 is rotationally arranged at the bottom end of the moving piece 4, a spiral groove 801 is formed in the guide rod 8, the bottom end of the guide rod 8 penetrates through and extends out of the bottom plate 6, a connecting piece 9 is sleeved outside the extending end of the guide rod 8, the bottom end of the guide rod 8 is fixedly connected with a threaded rod 10, a movable plate 11 is movably connected in the connecting piece 9, one end of the movable plate 11 penetrates through and extends out of the connecting piece 9, a rolling ball 12 is rotationally connected to the extending end of the movable plate 11, an auxiliary positioning assembly 13 is arranged on the frame 1 below the threaded rod 10 and is used for fixing the pipeline, a base 14 is fixedly arranged on the frame 1, the base 14 is fixedly connected with a main support table 15, a plurality of auxiliary supporting wheels 16 are rotationally connected to the main support table 15, the shaft end outside of the auxiliary supporting wheels 16 is sleeved with a belt 18, two guide rods 8 are symmetrically arranged about the bottom plate 6 and are slidably connected with the bottom plate 6, the connecting piece 9 comprises a sleeve 901, two sleeves 901 are arranged and are correspondingly sleeved outside the guide rods 8, the top ends of the two sleeves 901 are fixedly connected with the bottom plate 6, the two sleeves 901 are fixedly connected with protruding blocks 902, the protruding blocks 902 correspond to the spiral grooves 801, one end of the protruding blocks 902 extends into the spiral grooves 801 and is slidably connected with the spiral grooves 801, the spiral grooves 801 are composed of two parts, the upper part of the spiral grooves 801 is in a spiral shape, the lower part of the spiral grooves 801 is changed into a linear structure, a side plate 903 is fixedly arranged outside the sleeve 901, the movable plate 11 is slidably arranged in the side plate 903, a compression spring 1101 is connected between the side plate 903 and the movable plate 11, the side plate 903 and the movable plate 11 are elastically and telescopically connected through the compression spring 1101, the auxiliary positioning assembly 13 comprises a connecting frame 1301, two connecting frames 1301 are arranged and are fixedly arranged on the side walls of the base 14, slide grooves 1302 are formed in the two connecting frames 1301, slide blocks 1303 are slidably connected in the slide grooves 1302, auxiliary supporting frames 1304 are fixedly connected to the upper ends of the slide blocks 1303 and are rotationally connected with the threaded rod 10, circular grooves 1305 are formed in the auxiliary supporting frames 1304, first air bags 1306 are fixedly connected in the circular grooves 1305, top rods 1307 are fixedly connected to the top ends of the first air bags 1306, the top ends of the top rods 1307 penetrate through and extend out of the auxiliary supporting frames 1304, horizontal plates 1308 are fixedly connected to the extending ends of the top rods 1307, positioning plates 1309 are rotationally arranged in the middle parts of the horizontal plates 1308, a plurality of positioning rollers 1310 are symmetrically arranged on the upper end of the positioning plates 1309, a rectangular block 1311 is slidably arranged in the horizontal plate 1308 below the positioning plate 1309, an adapter 1312 is rotationally mounted on the rectangular block 1311, a second air bag 1313 is fixedly arranged in the horizontal plate 1308,And the second air bag 1313 side wall and rectangular block 1311 side wall fixedly connected, threaded rod 10 bottom end through the extension of the horizontal plate 1308, and the horizontal plate 1308 and threaded rod 10 threaded connection, horizontal plate 1308 and auxiliary support frame 1304 sliding connection, and the horizontal plate 1308 bottom end of the top rod 1307 and auxiliary support frame 1304 sliding connection, positioning roller 1310 and positioning plate 1309 rotationally connected, and the bottom end of the positioning plate 1309 and the adapter 1312 away from the one end of the rectangular block 1311 rotationally connected, the second air bag 1313 through the pipeline and the first air bag 1306 is communicated, the auxiliary positioning assembly 13 further includes an end face plate 1314, end face plate 1314, fixedly arranged on the outer wall of the sleeve 901, end face plate 1314 above the side plate 903, and the end face plate 1314 bottom end fixedly connected with the fixed seat 1315, the fixed seat 1315 is fixedly connected with the auxiliary air bag 1318, and the auxiliary air bag 1318 bottom end fixedly connected with T type sliding block 1316, T type sliding block 1316 bottom end through the extension of the fixed seat 1315, and the extension end of T type sliding block 1316 rotationally connected with the compression wheel 1317, the extension end of T type sliding block 1316 is arranged in arc structure, and the compression wheel 1317 is symmetrically provided with two about T type sliding block 1316, and the sidewall of the extension end of T type sliding block 1316 is provided with a jet head 1319, the jet head 1319 is communicated with the auxiliary air bag 1318 through the pipeline, and the jet head 1319 corresponds to the bottom end of the cutting device 7.
[0056] As shown in the technical scheme in the present application Figure 1 The convex block 902 and the side plate 903 are arranged, so that the sleeve 901 drives the side plate 903 to move when moving, the side plate 903 drives the movable plate 11 to move, the movable plate 11 is pressed to compress the compression spring 1101 to extend into the side plate 903, so that the ball 12 is attached to the sidewall of the pipeline, and the pipeline is limited and fixed by the elastic force of the compression spring 1101, so that the pipeline is prevented from shaking during cutting, and the stability of cutting is improved.
[0057] As shown in the technical scheme in the present application Figures 4-8The technical scheme shown, first in use, first place the pipeline on the auxiliary support wheel 16, and the pipeline on the cutting position is aligned with the cutting device 7, further start the second electric push rod 5, so that the second electric push rod 5 drives the bottom plate 6 to move, the bottom plate 6 will drive the cutting device 7 to move downward, at the same time the bottom plate 6 will drive the sleeve 901 to move, so that the sleeve 901 moves synchronously with the end face plate 1314 and the side plate 903, so that the pressing wheel 1317 below the end face plate 1314 first contacts the upper surface of the pipeline, further, the bottom plate 6 continues to move, so that the pressing wheel 1317 reversely extrudes the T-shaped slider 1316, the T-shaped slider 1316 will slide into the fixed seat 1315, extruding the auxiliary air bag 1318, so that the auxiliary air bag 1318 shrinks, and the gas stored therein is delivered to the air jet head 1319 through the pipeline, and then blown to the outer wall of the pipeline below the cutting device 7, to pretreat the pipeline, avoid the particles attached to the pipeline to reduce the service life of the cutting device 7, at the same time, the side plate 903 moves downward, which drives the movable plate 11 to move, so that the ball 12 on the movable plate 11 rolls against the side wall of the pipeline, thereby extruding the movable plate 11, so that the movable plate 11 slides into the side plate 903 while extruding the compression spring 1101 to shrink, thereby clamping and fixing the side wall of the pipeline, further improving the stability of the pipeline during cutting;
[0058] The sleeve 901 moves synchronously with the protruding block 902, so that the protruding block 902 first slides along the spiral groove 801, thereby driving the threaded rod 10 to rotate, the threaded rod 10 will engage to drive the horizontal plate 1308 to move upward, so that the horizontal plate 1308 drives the top rod 1307 to move upward, at this time the extruded first air bag 1306 resets, further, the horizontal plate 1308 moves while driving the positioning plate 1309 and the positioning roller 1310 to move, the positioning roller 1310 will be in close contact with the bottom end of the pipeline, thereby driving the positioning plate 1309 to rotate, the positioning plate 1309 drives the adapter 1312 to move, so that the adapter 1312 rotates while driving the rectangular block 1311 to move along the horizontal plate 1308, thereby making the positioning roller 1310 on the positioning plate 1309 tightly contact with the pipeline, for secondary fixation, when the positioning roller 1310 is in close contact with the pipeline, the protruding block 902 will move along the straight line segment of the spiral groove 801, preventing the horizontal plate 1308 from continuing to move;
[0059] After the cutting is completed, the transverse plate 1308 will be reset and moved under the drive of the second electric push rod 5, so that the protruding block 902 moves back along the spiral groove 801, thereby driving the guide rod 8 to rotate in reverse, and the guide rod 8 will drive the threaded rod 10 to reverse, so that the threaded rod 10 engages to drive the transverse plate 1308 to move downward, the transverse plate 1308 will drive the top rod 1307 to move, so that the top rod 1307 extrudes the first air bag 1306, thereby conveying the gas in the first air bag 1306 to the second air bag 1313 through the pipeline, and the second air bag 1313 will be inflated and enlarged, thereby pushing the rectangular block 1311, so that the rectangular block 1311 drives the adapter 1312 to move, and the adapter 1312 will push the positioning plate 1309 to rotate, so that the positioning plate 1309 drives the positioning roller 1310 to rotate, thereby pushing the cut pipeline to the filter plate 1710 for auxiliary discharging.
[0060] When adjusting the moving piece 4, the first electric push rod 2 will push the moving piece 4 to move, and the moving piece 4 will drive the sliding block 1303 to slide along the sliding groove 1302 when moving, thereby jumping the position of the auxiliary positioning assembly 13, and ensuring the stable operation of cutting.
[0061] In the third embodiment, the technology disclosed in the embodiment is further improved on the basis of the above-mentioned first and second embodiments. A large amount of debris will be generated during cutting, although the debris can be collected by the fan, but part of the impurities will still scatter in the cavity on both sides of the cutting blade, which needs to be manually cleaned, increasing the workload of workers. In order to further solve this technical problem, the technical solution is as follows: Figure 2 、 Figure 3 and Figures 9-11As shown, the collection assembly of the cutting device is disclosed, which is provided with a collection mechanism 17 arranged in the base 14 to realize the collection of the cuttings. The auxiliary supporting wheel 16 is in transmission connection with the collection mechanism 17 through the belt 18. The collection mechanism 17 comprises a placing table 1701 fixedly arranged at the bottom end of the frame body 1. The placing table 1701 is fixedly provided with a collection box 1702. A driving motor 1703 is fixedly arranged on the side of the placing table 1701 of the collection box 1702. A magnetic separation roller 1704 is rotatably arranged in the collection box 1702. A conveying belt 1705 is arranged outside the magnetic separation roller 1704. A group of conveying rollers 1706 is arranged in the conveying belt 1705. A rotating rod 1707 is rotatably arranged in the collection box 1702. A group of sleeve rings 1708 is arranged outside the rotating rod 1707. A storage box 1709 is slidably arranged in the collection box 1702 below the conveying rollers 1706 to collect the separated cuttings. A filter plate 1710 is slidably arranged in the collection box 1702. The bottom end of the filter plate 1710 is fixedly connected with an elastic element 1711. An air outlet hole 1712 is arranged in the sidewall of the collection box 1702 above the filter plate 1710. A shaft rod 1713 is rotatably arranged in the sidewall of the collection box 1702 above the driving motor 1703. A half gear 1714 is arranged outside the shaft rod 1713. A rectangular frame 1715 is arranged outside the half gear 1714. A plurality of tooth blocks 1716 are fixedly arranged on the inner wall of the rectangular frame 1715. A piston cylinder 1717 is fixedly arranged on the sidewall of the frame body 1. A piston sheet 1718 is slidably arranged in the piston cylinder 1717. The sidewall of the piston sheet 1718 is fixedly connected with a piston rod 1719. One end of the piston rod 1719 away from the piston sheet 1718 penetrates out of the piston cylinder 1717 and is fixedly connected with the rectangular frame 1715. The rotating rod 1707 is arranged between the magnetic separation roller 1704 and the conveying roller 1706. The rotating rod 1707 and the sleeve ring 1708 are symmetrically arranged with two groups about the middle conveying roller 1706. The two sleeve rings 1708 are fixedly connected with the rotating rod 1707. The sleeve ring 1708 is in contact with the conveying belt 1705. A brush is arranged on the rotating rod 1707 between the two sleeve rings 1708 and is in contact with the conveying belt 1705. The driving motor 1703 and the rotating rod 1707 are in transmission connection with the auxiliary supporting wheel 16 through the belt 18. One end of the rotating rod 1707 penetrates into the collection box 1702 and is fixedly connected with the shaft end of the middle conveying roller 1706. The rotating rod 1707 is fixedly connected with the half gear 1714. The tooth blocks 1716 are arrayed. Two groups of the tooth blocks 1716 are symmetrically arranged about the rectangular frame 1715 and are in meshing connection with the half gear 1714. The piston rod 1719 on the side of the rectangular frame 1715 is in sliding connection with the piston cylinder 1717. The piston cylinder 1717, the piston sheet 1718 and the piston rod 1719 are symmetrically arranged with two groups about the rectangular frame 1715. The air inlet ends of the two piston cylinders 1717 are in communication with the outside through the one-way flow pipeline.Furthermore, the outlet end of the piston cylinder 1717 is connected to the outlet port 1712 via a one-way flow pipe.
[0062] In this technical solution, as follows Figure 2 , Figure 4 As shown, the piston cylinder 1717, piston plate 1718, and piston rod 1719 are arranged so that the half gear 1714 meshes with the tooth block 1716 when rotating, thereby driving the rectangular frame 1715 to move back and forth. The rectangular frame 1715 drives the piston plate 1718 and piston rod 1719 to move synchronously, so that the outside gas is transported to the piston cylinder 1717 through a one-way flow pipe, and then transported to the air outlet 1712 through the piston cylinder 1717 through the one-way flow pipe. Then, the gas is blown onto the surface of the filter plate 1710 through the air outlet 1712, effectively removing impurities and particles from the surface of the filter plate 1710, extending the service life of the filter plate 1710, and reducing the cost of replacement and maintenance.
[0063] Its adoption is as follows Figures 9-11 The technical solution shown first involves turning on the drive motor 1703, which drives the belt 18 to rotate. This belt 18 then rotates the auxiliary support wheel 16 and the shaft 1713. The auxiliary support wheel 16 rotates the pipe, and the shaft 1713 rotates the conveyor roller 1706. This, in turn, moves the conveyor belt 1705. During cutting, the resulting debris falls onto the filter plate 1710, and then onto the conveyor belt 1705. By setting up the magnetic separator 1704, the magnetic separator 1704 can adsorb iron filings on the conveyor belt 1705, while the impurities that are not adsorbed will fall into the storage box 1709. As the conveyor belt 1705 continues to move, the iron filings adsorbed on the conveyor belt 1705 will fall into another area of another storage box 1709 as they move away from the magnetic separator 1704 due to the weakening or disappearance of the magnetic force, thus separating magnetic and non-magnetic debris and reducing the pollution of debris to the environment.
[0064] When the shaft 1713 rotates, it drives the half gear 1714 to rotate, which causes the half gear 1714 to mesh with the tooth block 1716 to drive the rectangular frame 1715 to move back and forth, thereby pulling the piston rod 1719 to move back and forth. This causes the piston rod 1719 to drive the piston plate 1718 to slide inside the piston cylinder 1717, thereby drawing outside air into the piston cylinder 1717, and then conveying it from the piston cylinder 1717 to the air outlet 1712 for spraying out, cleaning the filter plate 1710 and preventing debris residue.
[0065] By setting the elastic element 1711, when the cut pipe falls onto the filter plate 1710, the filter plate 1710 will press down on the elastic element 1711, thereby playing a buffering role and improving the service life of the filter plate 1710.
[0066] When the conveying belt 1705 moves, the sleeve ring 1708 rotates, and since the sleeve ring 1708 is fixedly connected with the rotating rod 1707, the sleeve ring 1708 drives the rotating rod 1707 to rotate synchronously, and the brush on the rotating rod 1707 can clean the surface of the conveying belt 1705, so as to scrape off the impurities attached to the conveying belt 1705, and prevent the debris from being attached to the surface of the conveying belt 1705.
[0067] The contents not described in detail in the specification belong to the prior art known to those skilled in the art.
[0068] Although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art can make modifications to the technical solutions recorded in the foregoing embodiments, or make equivalent replacements to part of the technical features, and any modification, equivalent replacement, improvement, etc. made within the spirit and principles of the present application shall be included in the protection scope of the present application.
Claims
1. A steel wire mesh framework pipe cutting device, comprising a frame body (1), a first electric push rod (2) is fixedly connected to the upper end of the frame body (1), two fixed rods (3) are symmetrically arranged on the frame body (1) on the side of the first electric push rod (2), a moving piece (4) is slidably connected to the outer side of the two fixed rods (3), and the moving piece (4) is fixedly connected to the output end of the first electric push rod (2); characterized in that Further comprising: a second electric push rod (5) fixedly arranged at the top end of the moving piece (4), a bottom plate (6) fixedly connected to the output end of the second electric push rod (5), and a cutting device (7) fixedly connected to the bottom end of the bottom plate (6); a guide rod (8) rotatably arranged at the bottom end of the moving piece (4), a spiral groove (801) is formed in the guide rod (8), the guide rod (8) extends through the bottom plate (6) at the bottom end, a connecting piece (9) is arranged on the outer side of the extending end of the guide rod (8), a threaded rod (10) is fixedly connected to the bottom end of the guide rod (8), a movable plate (11) is movably connected in the connecting piece (9), one end of the movable plate (11) extends out of the connecting piece (9), and a ball (12) is rotatably connected to the extending end of the movable plate (11); an auxiliary positioning assembly (13) arranged on the frame body (1) below the threaded rod (10) for fixing the pipe; a base (14) fixedly arranged on the frame body (1), a main support table (15) fixedly connected to the base (14), a group of auxiliary support wheels (16) rotatably connected to the main support table (15), and a belt (18) arranged on the outer side of the shaft end of the auxiliary support wheels (16); a collecting mechanism (17) arranged in the base (14) for collecting the cutting debris, and the auxiliary support wheels (16) are in transmission connection with the collecting mechanism (17) through the belt (18); two guide rods (8) are symmetrically arranged relative to the bottom plate (6), and both of the guide rods (8) are in sliding connection with the bottom plate (6); the connecting piece (9) comprises a sleeve (901), a protruding block (902) and a side plate (903); two sleeves (901) are arranged, one-to-one corresponding to the outer side of the guide rod (8), and the top ends of the two sleeves (901) are fixedly connected with the bottom plate (6); both of the sleeves (901) are fixedly connected with the protruding block (902), the protruding block (902) corresponds to the spiral groove (801), one end of the protruding block (902) extends into the spiral groove (801) and is in sliding connection with the spiral groove (801), and the spiral groove (801) is composed of two parts, the upper part of the spiral groove (801) is in a spiral shape, and the lower part of the spiral groove (801) is in a straight line structure. The side plate (903) is fixedly arranged on the outer wall of the sleeve (901), the movable plate (11) is slidably arranged in the side plate (903), and the compression spring (1101) is arranged between the side plate (903) and the movable plate (11).
2. A wire fabric carcass pipe cutting device according to claim 1, characterized in that: The auxiliary positioning assembly (13) comprises connecting frames (1301), sliding grooves (1302), sliding blocks (1303), auxiliary support frames (1304), circular grooves (1305), first air bags (1306), jacks (1307), horizontal plates (1308), positioning plates (1309), positioning rollers (1310), rectangular blocks (1311), connecting pieces (1312) and second air bags (1313). The connecting frames (1301) are symmetrically and fixedly arranged on the side walls of the base (14), and the sliding grooves (1302) are formed in the connecting frames (1301). The sliding blocks (1303) are slidably connected in the sliding grooves (1302), and the auxiliary support frames (1304) are fixedly connected to the upper ends of the sliding blocks (1303). The auxiliary support frames (1304) are rotationally connected with the threaded rods (10), and the circular grooves (1305) are formed in the auxiliary support frames (1304). The first air bags (1306) are fixedly connected in the circular grooves (1305), and the jacks (1307) are fixedly connected to the top ends of the first air bags (1306). The jacks (1307) protrude out of the auxiliary support frames (1304), and the horizontal plates (1308) are fixedly connected to the protruding ends of the jacks (1307). The positioning plates (1309) are rotationally arranged in the middle portions of the horizontal plates (1308), and the positioning rollers (1310) are symmetrically arranged on the upper ends of the positioning plates (1309). The rectangular blocks (1311) are slidably arranged in the horizontal plates (1308) below the positioning plates (1309), and the connecting pieces (1312) are rotationally arranged on the rectangular blocks (1311). The second air bags (1313) are fixedly arranged in the horizontal plates (1308), and the side walls of the second air bags (1313) are fixedly connected with the side walls of the rectangular blocks (1311). The bottom ends of the threaded rods (10) protrude out of the horizontal plates (1308), and the horizontal plates (1308) are threadedly connected with the threaded rods (10). The horizontal plates (1308) are slidably connected with the auxiliary support frames (1304), and the jacks (1307) at the bottom ends of the horizontal plates (1308) are slidably connected with the auxiliary support frames (1304). The positioning rollers (1310) are rotationally connected with the positioning plates (1309), and the bottom ends of the positioning plates (1309) are rotationally connected with the ends, away from the rectangular blocks (1311), of the connecting pieces (1312). The second air bags (1313) are connected with the first air bags (1306) through pipelines.
3. A wire fabric carcass pipe cutting device according to claim 2, characterised in that: The auxiliary positioning assembly (13) further comprises end face plates (1314), fixing bases (1315), T-shaped sliding blocks (1316), pressing wheels (1317) and auxiliary air bags (1318). The end face plate (1314) is fixedly arranged on the outer wall of the sleeve (901), is located above the side plate (903), and the bottom end of the end face plate (1314) is fixedly connected with a fixing seat (1315), the fixing seat (1315) is fixedly connected with an auxiliary air bag (1318) inside, and the bottom end of the auxiliary air bag (1318) is fixedly connected with a T-shaped sliding block (1316), the bottom end of the T-shaped sliding block (1316) penetrates through the fixing seat (1315) and extends out, and the extended end of the T-shaped sliding block (1316) is rotatably connected with a compression wheel (1317).
4. A wire fabric carcass pipe cutting device according to claim 3, wherein: The extended end of the T-shaped sliding block (1316) is arranged in an arc-shaped structure, two compression wheels (1317) are symmetrically arranged about the T-shaped sliding block (1316), and a jet head (1319) is formed in the side wall of the extended end of the T-shaped sliding block (1316), the jet head (1319) is connected with the auxiliary air bag (1318) through a pipeline, and the jet head (1319) corresponds to the bottom end of the cutting device (7).
5. A wire fabric reinforcement tube cutting device according to claim 1, characterized in that: The collecting mechanism (17) comprises a placing table (1701), a collecting box (1702), a driving motor (1703), a magnetic separation roller (1704), a conveyor belt (1705), a conveying roller (1706), a rotating rod (1707), a sleeve ring (1708), a storage box (1709), a filter plate (1710), an elastic member (1711), an air outlet (1712), a shaft (1713), a half gear (1714), a rectangular frame (1715), a tooth block (1716), a piston cylinder (1717), a piston sheet (1718) and a piston rod (1719). The placing table (1701) is fixedly arranged at the bottom end of the frame body (1), and the collecting box (1702) is fixedly installed on the placing table (1701). The magnetic separation roller (1704) is rotatably installed in the collecting box (1702), the magnetic separation roller (1704) is sleeved with the conveyor belt (1705) outside, and a group of conveying rollers (1706) are arranged in the conveyor belt (1705). The rotating rod (1707) is rotatably installed in the collecting box (1702), and a group of sleeve rings (1708) are sleeved outside the rotating rod (1707). The storage box (1709) is slidably arranged in the collecting box (1702) below the conveying roller (1706) and is used for collecting separated debris. The filter plate (1710) is slidably arranged in the collecting box (1702), the filter plate (1710) is fixedly connected with the elastic member (1711) at the bottom end, and the air outlet (1712) is formed in the side wall of the collecting box (1702) above the filter plate (1710). The shaft rod (1713) is rotatably installed on the side wall of the collecting box (1702) above the driving motor (1703), the outer side of the shaft rod (1713) is sleeved with a half gear (1714), the outer side of the half gear (1714) is sleeved with a rectangular frame (1715), and the inner wall of the rectangular frame (1715) is fixedly connected with a tooth block (1716); The piston cylinder (1717) is fixedly arranged on the side wall of the frame body (1), the piston sheet (1718) is slidably connected in the piston cylinder (1717), the side wall of the piston sheet (1718) is fixedly connected with the piston rod (1719), one end of the piston rod (1719) away from the piston sheet (1718) penetrates out of the piston cylinder (1717) and is fixedly connected with the rectangular frame (1715); The rotating rod (1707) is arranged between the magnetic separation roller (1704) and the conveying roller (1706), the rotating rod (1707) and the sleeve ring (1708) are symmetrically provided with two about the middle conveying roller (1706), the two sleeve rings (1708) are fixedly connected with the rotating rod (1707), the outer wall of the sleeve ring (1708) is attached to the conveying belt (1705), the rotating rod (1707) between the two sleeve rings (1708) is provided with a brush, and the brush is attached to the conveying belt (1705); The driving motor (1703) and the rotating rod (1707) are drivingly connected with the auxiliary supporting wheel (16) through the belt (18), one end of the rotating rod (1707) penetrates into the collecting box (1702) and is fixedly connected with the shaft end of the middle conveying roller (1706), the rotating rod (1707) is fixedly connected with the half gear (1714), the tooth block (1716) is arranged in an array, the tooth block (1716) is symmetrically provided with two groups about the rectangular frame (1715), and the tooth block (1716) is engaged with the half gear (1714), the piston rod (1719) of the side edge of the rectangular frame (1715) is slidably connected with the piston cylinder (1717), the piston cylinder (1717), the piston sheet (1718) and the piston rod (1719) are symmetrically provided with two about the rectangular frame (1715), the air inlet end of the two piston cylinders (1717) is communicated with the outside through a one-way flow pipeline, and the air outlet end of the piston cylinder (1717) is communicated with the air outlet hole (1712) through a one-way flow pipeline.
Citation Information
Patent Citations
Steel wire mesh framework plastic composite pipe cutting machine
CN213033773U
Cutting device for building decoration construction
CN222155725U
Pipe cutting apparatus
US20120024120A1