Cutting device based on dense-mesh screen machining

By fixing the dense mesh with components such as clamping frames and electric push rods, and combining it with a motor-driven cutting disc and adjustment device, the problem of unstable cutting of dense mesh is solved, achieving efficient and stable cutting results and reducing labor intensity.

CN223456083UActive Publication Date: 2025-10-21SHANDONG BINZHOU HEXIN CHEM FIBER ROPE NET CO LTD
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Patent Information

Application Number
CN202422476650.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-14
Publication Date
2025-10-21
Estimated Expiration
2034-10-14

AI Technical Summary

Technical Problem

The existing fine mesh cutting method cannot effectively fix the cutting area, resulting in an uneven cutting line and high labor intensity, especially in the case of long-distance straight line cutting.

Method used

The device employs components such as a clamping frame, an electric push rod, a cutting disc, and an adjustment device. The electric push rod clamps and fixes the dense mesh, the cutting position is adjusted, and the motor drives the cutting disc for stable cutting. Combined with height adjustment and a sliding mechanism, it achieves cutting stability and positional accuracy.

Benefits of technology

It improves the stability and cutting effect of dense mesh cutting, reduces labor intensity, and ensures the straightness and cutting accuracy of the cutting line.

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Abstract

The utility model relates to the technical field of dense-mesh screen processing, in particular to a cutting device based on dense-mesh screen processing, which not only can support and fix a cutting area of a dense-mesh screen so as to ensure the cutting stability of the dense-mesh screen and improve the cutting effect of the dense-mesh screen, but also can improve the stability of a cutting disc, so that the cutting efficiency of the dense-mesh screen is improved. The labor intensity is also reduced; comprising a workbench, two sets of clamping frames, four sets of first electric push rods, four sets of clamping plates, a door-shaped frame, a rotating shaft, a cutting disc, a first motor, two sets of vertical plates, two sets of third electric push rods, a pressing device and an adjusting device, the two sets of vertical plates are installed on the left side and the right side of the top end of the workbench correspondingly, and the pressing device is installed at the top end of the workbench; the pressing device comprises two sets of first T-shaped sliding rails, two sets of T-shaped blocks, two sets of fixing frames, two sets of bolts, eight sets of second electric push rods and four sets of pressing strips, and the four sets of pressing strips are installed at the output ends of every two sets of corresponding second electric push rods correspondingly.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of dense mesh processing, particularly to a cutting device based on dense mesh processing. BACKGROUND

[0002] The dense mesh is a common protective net, mainly used for safety protection in construction engineering, preventing high-altitude falling objects and personnel falling accidents, and the dense mesh is named for its high-density weaving structure, which makes the mesh very small and dense, effectively blocking smaller objects.

[0003] The dense mesh needs to be cut during processing, and the existing method for cutting the dense mesh is to use a clamp to fix the dense mesh, and then manually hold a cutting device to cut the dense mesh.

[0004] However, this method cannot fix the cutting area of the dense mesh, and when the cutting head moves, the cutting part of the dense mesh may move with the cutting head, resulting in a curved cutting line, affecting the cutting effect, and manual cutting is also prone to curved cutting lines, especially for long straight-line cutting, and the labor intensity is high. UTILITY MODEL CONTENT

[0005] To solve the above technical problems, the utility model provides a cutting device based on dense mesh processing by setting the device, which can not only support and fix the cutting area of the dense mesh, ensuring the stability of the dense mesh cutting and improving the cutting effect, but also improve the stability of the cutting disc and reduce the labor intensity.

[0006] The utility model discloses a cutting device based on dense mesh processing, including work table, two sets of clamping frame, four sets of first electric push rod, four sets of clamping plate, door type frame, pivot, cutting disc, first motor, two sets of vertical board, two sets of third electric push rod, pressure device and adjusting device, two sets of vertical board are installed respectively in the left side and right side of work table top, two sets of third electric push rod are installed respectively in two sets of vertical board outer end, two sets of third electric push rod output end respectively passes two sets of vertical board and two sets of clamping frame outer end connection, four sets of first electric push rod are installed respectively in two sets of clamping frame inner top and bottom, four sets of clamping plate are installed respectively in four sets of first electric push rod output, adjusting device is installed in work table top, and door type frame is installed on adjusting device, and pivot rotation is installed in door type frame inner end, and cutting disc is installed on pivot, and first motor is installed in door type frame right -end, and first motor output end passes through door type frame right -end and is connected with pivot right -end, and pressure device is installed in work table top, and pressure device includes two sets of first T type slide rail, two sets of T type block, two sets of fixed frame, two sets of bolt, eight sets of second electric push rod and four sets of pressure strip, two sets of first T type slide rail are installed in the front side and rear side of work table top, two sets of T type block are slid in two sets of first T type slide rail respectively, and the outer end of two sets of first T type slide rail is all communicated and is provided with long hole, and the outer end of two sets of T type block is all provided with screw groove, and two sets of bolt are respectively screwed in the long hole of two sets of first T type slide rail and the screw groove of two sets of T type block, two sets of fixed frame are installed respectively in the left side and right side of two sets of T type block top, eight sets of second electric push rod are installed respectively in the front side and rear side of two sets of fixed frame inner top and bottom, and four sets of pressure strip are installed respectively in every two sets of corresponding second electric push rod output.

[0007] Preferably, the adjusting device includes two sets of fixed plates, two sets of first screws, two sets of sprockets, a chain, a second motor, a motor bracket, two sets of moving blocks, a height adjusting device, and a sliding mechanism. The height adjusting device is installed on the top of the workbench. The two sets of fixed plates are installed on the height adjusting device. The bottom ends of the two sets of fixed plates are provided with sliding grooves. The two sets of first screws are rotatably installed in the sliding grooves of the two sets of fixed plates. The right ends of the two sets of first screws extend to the outer sides of the two sets of fixed plates. The two sets of sprockets are installed on the right parts of the two sets of first screws. The two sets of sprockets are engaged with the chain. The output end of the second motor is connected with the right end of the first screw on the rear side. The second motor is installed in the inner end of the motor bracket. The motor bracket is installed on the top right side of the fixed plate on the rear side. The two sets of moving blocks slide in the sliding grooves of the two sets of fixed plates. The middle parts of the two sets of moving blocks are provided with threaded holes. The two sets of moving blocks are threadedly connected with the two sets of first screws. The sliding mechanism is installed on the bottom ends of the two sets of moving blocks. The door type frame is installed on the sliding mechanism.

[0008] Preferably, the height adjusting device comprises a support frame, two sets of threaded pipes, two sets of second screw rods, a lifting plate, two sets of first bevel gears, two sets of second bevel gears, a transmission shaft, two sets of support plates, a third motor, a motor base and two sets of gears, the support frame is installed at the rear side of the top end of the workbench, the two sets of threaded pipes are rotatably installed at the front and rear of the top end of the support frame, the two sets of second screw rods are in threaded connection with the two sets of threaded pipes respectively, the bottom ends of the two sets of second screw rods are rotatably installed at the front and rear of the top end of the lifting plate respectively, the two sets of fixed plates are installed at the front and rear of the bottom end of the lifting plate respectively, the two sets of first bevel gears are sleeved at the outer ends of the two sets of threaded pipes respectively, the two sets of first bevel gears are in engagement with the two sets of second bevel gears respectively, the two sets of second bevel gears are installed at the front and rear of the transmission shaft respectively, the transmission shaft is rotatably installed on the two sets of support plates, the two sets of support plates are installed at the top end of the support frame, the third motor is installed at the top end of the motor base, the motor base is installed at the top end of the support frame, and the two sets of gears are installed at the middle of the transmission shaft and the output end of the third motor respectively and in engagement.

[0009] Preferably, the sliding mechanism comprises a connecting plate, a second T-shaped sliding rail and a driving rod, the connecting plate is installed at the bottom end of the two sets of moving blocks, the second T-shaped sliding rail is installed at the bottom end of the connecting plate, the T-shaped sliding block slides in the second T-shaped sliding rail, the door-shaped frame is installed at the bottom end of the T-shaped sliding block, and the driving rod is connected with the T-shaped sliding block by penetrating through the front end of the second T-shaped sliding rail.

[0010] Preferably, the sliding mechanism further comprises a pulling handle, the pulling handle is installed at the front end of the driving rod.

[0011] Preferably, the sliding mechanism further comprises a handle, the handle is installed at the front end of the left fixed frame.

[0012] Preferably, the sliding mechanism further comprises two sets of first limiting plates and four sets of second limiting plates, the two sets of first limiting plates are installed at the top ends of the two sets of second screw rods respectively, and the four sets of second limiting plates are installed at the left and right ends of the two sets of first T-shaped sliding rails respectively.

[0013] Preferably, the inner ends of the clamping plates and the pressing strips are provided with antiskid rubber pads.

[0014] The utility model discloses the beneficial effect compared with prior art is: the close mesh net is placed between four groups of clamping plate, then opens two groups of third electric push rod, and two groups of third electric push rod drive two groups of clamping frame to move inwards, when close mesh net is located between four groups of clamping plate, opens four groups of first electric push rod, and four groups of first electric push rod drive four groups of clamping plate to hold and fix close mesh net, then the cutting position of cutting disc to close mesh net is adjusted through adjusting device, after cutting disc position adjustment is good, makes two groups of fixed frame drive two groups of T type block on two groups of first T type slide rail sliding, thereby making two groups of fixed frame remove to the cutting position of close mesh net, after rotating two groups of bolt, two groups of bolt then with two groups of T type block screw connection, and two groups of bolt then to two groups of first T type slide rail tight, thereby fixed two groups of fixed frame, then opens four groups of second electric push rod, and four groups of second electric push rod drive four groups of pressing bar to move downwards, and four groups of pressing bar then fix the area that close mesh net needs cutting, then through opening first motor, and first motor then drive cutting disc rotation through the shaft, simultaneously through adjusting device drive the cutting disc that rotates and moves downwards, when the cutting disc that rotates and cuts close mesh net, through adjusting device drive cutting disc longitudinal movement, thereby cutting close mesh net, through setting this equipment, not only can the cutting area of close mesh net be supported fixed, thereby guarantee the stability of close mesh net cutting, improve its cutting effect, and can improve the stability of cutting disc, also reduce the labor intensity. BRIEF DESCRIPTION OF DRAWINGS

[0015] Figure 1 It is the first visual angle structure schematic diagram of the utility model;

[0016] Figure 2 It is the second visual angle structure schematic diagram of the utility model;

[0017] Figure 3 It is Figure 1 The enlarged structure schematic diagram of A in;

[0018] Figure 4 It is Figure 2 The enlarged structure schematic diagram of B in;

[0019] Figure 5 It is Figure 1 The enlarged structure schematic diagram of C in;

[0020] Marked in the drawing: 1, workbench; 2, clamping frame; 3, first electric push rod; 4, clamping plate; 5, door frame; 6, rotating shaft; 7, cutting disc; 8, first motor; 9, first T-shaped slide rail; 10, T-shaped block; 11, fixed frame; 12, bolt; 13, second electric push rod; 14, pressing strip; 15, fixed plate; 16, first screw rod; 17, chain wheel; 18, chain; 19, second motor; 20, motor frame; 21, moving block; 22, vertical plate; 23, support frame; 24, threaded pipe; 25, second screw rod; 26, lifting plate; 27, first bevel gear; 28, second bevel gear; 29, transmission shaft; 30, support plate; 31, third motor; 32, motor base; 33, gear; 34, connecting plate; 35, second T-shaped slide rail; 36, driving rod; 37, pull handle; 38, handle; 39, first limiting plate; 40, second limiting plate; 41, third electric push rod. DETAILED DESCRIPTION

[0021] The specific embodiments of the present application will be further described in detail below with reference to the accompanying drawings and examples. The following examples are used to illustrate the present application, but are not used to limit the scope of the present application.

[0022] As Figures 1 to 5As shown, the utility model discloses a cutting device based on dense mesh processing, including work table 1, two sets of clamping frame 2, four sets of first electric push rod 3, four sets of clamping plate 4, door type frame 5, pivot 6, cutting disc 7, first motor 8, two sets of vertical board 22, two sets of third electric push rod 41, pressing device and adjusting device, two sets of vertical board 22 are installed respectively in the left side and right side of work table 1 top, two sets of third electric push rod 41 are installed respectively in two sets of vertical board 22 outer end, and the output end of two sets of third electric push rod 41 respectively passes through two sets of vertical board 22 and is connected with two sets of clamping frame 2 outer end, and four sets of first electric push rod 3 are installed respectively in two sets of clamping frame 2 inner top end and bottom end, and four sets of clamping plate 4 are installed respectively in four sets of first electric push rod 3 output end, and adjusting device is installed in work table 1 top, and door type frame 5 is installed on adjusting device, and pivot 6 is rotatably installed in door type frame 5 inner end, and cutting disc 7 is installed on pivot 6, and first motor 8 is installed in door type frame 5 right end, and the output end of first motor 8 passes through door type frame 5 right end and is connected with pivot 6 right end, and pressing device is installed in work table 1 top, and pressing device includes two sets of first T-shaped slide rail 9, two sets of T-shaped block 10, two sets of fixed frame 11, two sets of bolt 12, eight sets of second electric push rod 13 and four sets of pressing strip 14, two sets of first T-shaped slide rail 9 are installed in the front side and rear side of work table 1 top, two sets of T-shaped block 10 are slid in two sets of first T-shaped slide rail 9 respectively, and the outer end of two sets of first T-shaped slide rail 9 is all communicated and is provided with long hole, and the outer end of two sets of T-shaped block 10 is all provided with screw groove, and two sets of bolt 12 are respectively screwed with the screw groove of two sets of T-shaped block 10 through the long hole of two sets of first T-shaped slide rail 9, two sets of fixed frame 11 are installed respectively in the left side and right side of two sets of T-shaped block 10 top, eight sets of second electric push rod 13 are installed respectively in the front side and rear side of two sets of fixed frame 11 inner top end and bottom end, and four sets of pressing strip 14 are installed respectively in the output end of every two sets of corresponding second electric push rod 13,

[0023] The dense mesh is placed between the four sets of clamping plates 4, and then the two sets of third electric push rods 41 are opened, which drives the two sets of clamping frames 2 to move inward. When the dense mesh is located between the four sets of clamping plates 4, the four sets of first electric push rods 3 are opened, which drives the four sets of clamping plates 4 to clamp and fix the dense mesh. Then the cutting position of the cutting disc 7 on the dense mesh is adjusted by the adjusting device. After the cutting disc 7 position is adjusted, the two sets of fixed frames 11 drive the two sets of T-shaped blocks 10 to slide on the two sets of first T-shaped sliding rails 9, so that the two sets of fixed frames 11 move to the cutting position of the dense mesh. Then the two sets of bolts 12 are turned, which are screwed with the two sets of T-shaped blocks 10, and the two sets of bolts 12 are tightened on the two sets of first T-shaped sliding rails 9, so as to fix the two sets of fixed frames 11. Then the four sets of second electric push rods 13 are opened, which drives the four sets of pressing strips 14 to move downward, and the four sets of pressing strips 14 fix the area of the dense mesh that needs to be cut. Then the first motor 8 is opened, which drives the cutting disc 7 to rotate through the shaft 6, and at the same time drives the rotating cutting disc 7 to move downward through the adjusting device. When the rotating cutting disc 7 cuts the dense mesh, the cutting disc 7 moves longitudinally through the adjusting device, so as to cut the dense mesh. By setting this device, the cutting area of the dense mesh can be supported and fixed, which ensures the stability of the dense mesh cutting and improves the cutting effect. Moreover, the stability of the cutting disc 7 is improved, and the labor intensity is reduced.

[0024] As a preferred embodiment of the above, the adjusting device comprises two sets of fixed plates 15, two sets of first screws 16, two sets of chain wheels 17, a chain 18, a second motor 19, a motor frame 20, two sets of moving blocks 21, a height adjusting device, and a sliding mechanism. The height adjusting device is installed at the top end of the workbench 1, the two sets of fixed plates 15 are installed on the height adjusting device, the bottom end of each of the two sets of fixed plates 15 is provided with a sliding groove, the two sets of first screws 16 are respectively rotatably installed in the sliding grooves of the two sets of fixed plates 15, the right ends of the two sets of first screws 16 respectively extend to the outside of the right ends of the two sets of fixed plates 15, the two sets of chain wheels 17 are respectively installed on the right parts of the two sets of first screws 16, the two sets of chain wheels 17 are engaged with the chain 18, the output end of the second motor 19 is connected with the right end of the rear first screw 16, the second motor 19 is installed in the inner end of the motor frame 20, the motor frame 20 is installed at the top right side of the rear fixed plate 15, the two sets of moving blocks 21 slide in the sliding grooves of the two sets of fixed plates 15, the middle parts of the two sets of moving blocks 21 are respectively provided with threaded holes, the two sets of moving blocks 21 are screwed with the two sets of first screws 16, the sliding mechanism is installed at the bottom end of the two sets of moving blocks 21, and the door-shaped frame 5 is installed on the sliding mechanism.

[0025] By setting the fixed plate 15, the first screw rod 16, the chain wheel 17, the chain 18, the second motor 19, the motor frame 20, the moving block 21, the height adjusting device and the sliding mechanism, by opening the second motor 19, the second motor 19 drives the rear first screw rod 16 to rotate, the rear first screw rod 16 drives the rear chain wheel 17 to rotate, the rear chain wheel 17 is engaged with the chain 18, the chain 18 is engaged with the front chain wheel 17, the front chain wheel 17 drives the front first screw rod 16 to rotate, the two groups of first screw rods 16 rotate and are threadedly connected with the two groups of moving blocks 21, and the two groups of moving blocks 21 drive the cutting disc 7 to move transversely through the sliding mechanism, so that the cutting position of the cutting disc 7 on the dense mesh screen is adjusted.

[0026] As a preferred embodiment of the above, the height adjusting device comprises a support frame 23, two groups of threaded pipes 24, two groups of second screw rods 25, a lifting plate 26, two groups of first bevel gears 27, two groups of second bevel gears 28, a transmission shaft 29, two groups of support plates 30, a third motor 31, a motor base 32 and two groups of gears 33, the support frame 23 is installed at the top rear side of the workbench 1, the two groups of threaded pipes 24 are rotatably installed at the front and rear of the top of the support frame 23, the two groups of second screw rods 25 are threadedly connected with the two groups of threaded pipes 24 respectively, the bottom ends of the two groups of second screw rods 25 are rotatably installed at the front and rear of the top of the lifting plate 26 respectively, the two groups of fixed plates 15 are installed at the front and rear of the bottom of the lifting plate 26 respectively, the two groups of first bevel gears 27 are sleeved on the outer ends of the two groups of threaded pipes 24 respectively, the two groups of first bevel gears 27 are engaged with the two groups of second bevel gears 28 respectively, the two groups of second bevel gears 28 are installed at the front and rear of the transmission shaft 29 respectively, the transmission shaft 29 is rotatably installed on the two groups of support plates 30, the two groups of support plates 30 are installed at the top of the support frame 23, the third motor 31 is installed at the top of the motor base 32, the motor base 32 is installed at the top of the support frame 23, and the two groups of gears 33 are installed at the middle of the transmission shaft 29 and the output end of the third motor 31 respectively, and the two groups of gears 33 are engaged with each other.

[0027] By setting the support frame 23, the threaded pipe 24, the second screw rod 25, the lifting plate 26, the first bevel gear 27, the second bevel gear 28, the transmission shaft 29, the support plate 30, the third motor 31, the motor base 32 and the gear 33, by opening the third motor 31, the third motor 31 drives the two groups of vertical plates 22 to engage and drive the transmission shaft 29 to rotate, the transmission shaft 29 drives the two groups of second bevel gears 28 to engage with the two groups of first bevel gears 27, the two groups of first bevel gears 27 drive the two groups of threaded pipes 24 to threadedly connect with the two groups of second screw rods 25, and the two groups of second screw rods 25 drive the lifting plate 26 to lift as a whole, so that the cutting disc 7 can be stably lifted.

[0028] As a preferred of the above embodiment, the sliding mechanism comprises a connecting plate 34, a second T-shaped sliding rail 35 and a driving rod 36, the connecting plate 34 is installed at the bottom end of the two groups of moving blocks 21, the second T-shaped sliding rail 35 is installed at the bottom end of the connecting plate 34, a T-shaped sliding block is installed in the second T-shaped sliding rail 35, the door-shaped frame 5 is installed at the bottom end of the T-shaped sliding block, and the driving rod 36 is connected with the T-shaped sliding block through the front end of the second T-shaped sliding rail 35;

[0029] By setting the connecting plate 34, the second T-shaped sliding rail 35 and the driving rod 36, the driving rod 36 drives the door-shaped frame 5 to slide longitudinally from back to front as a whole through the T-shaped sliding block by pulling the driving rod 36, so that the cutting disc 7 rotatingly cuts the dense mesh, which facilitates the cutting disc 7 to cut the dense mesh along a straight line and improves the cutting effect.

[0030] As a preferred of the above embodiment, it further comprises a pull handle 37, the pull handle 37 is installed at the front end of the driving rod 36;

[0031] By setting the pull handle 37, the driving rod 36 is facilitated to be operated.

[0032] As a preferred of the above embodiment, it further comprises a handle 38, the handle 38 is installed at the front end of the left fixed frame 11;

[0033] By setting the handle 38, the positions of the two groups of fixed frames 11 are facilitated to be adjusted.

[0034] As a preferred of the above embodiment, it further comprises two groups of first limiting plates 39 and four groups of second limiting plates 40, the two groups of first limiting plates 39 are respectively installed at the top end of the two groups of second screw rods 25, and the four groups of second limiting plates 40 are respectively installed at the left end and the right end of the two groups of first T-shaped sliding rails 9;

[0035] By setting the first limiting plates 39 and the second limiting plates 40, the second screw rods 25 and the T-shaped blocks 10 are limited.

[0036] As a preferred of the above embodiment, the inner end of the clamping plate 4 and the pressing strip 14 is provided with an antiskid rubber pad;

[0037] The friction with the dense mesh can be increased, so that the fixing effect on the dense mesh is improved.

[0038] The utility model is a cutting device based on dense mesh processing. When working, the dense mesh is first placed between the four groups of clamping plates 4, and then the two groups of third electric push rods 41 are opened. The two groups of third electric push rods 41 drive the two groups of clamping frames 2 to move inward. When the dense mesh is located between the four groups of clamping plates 4, the four groups of first electric push rods 3 are opened. The four groups of first electric push rods 3 drive the four groups of clamping plates 4 to clamp and fix the dense mesh. Then the second motor 19 is turned on. The second motor 19 drives the rear first screw 16 to rotate. The rear first screw 16 The rear sprocket 17 is driven to rotate, the rear sprocket 17 is engaged with the chain 18, the chain 18 is engaged with the front sprocket 17, the front sprocket 17 drives the front first screw 16 to rotate, the two sets of first screws 16 are threadedly connected with the two sets of moving blocks 21 when they rotate, and the two sets of moving blocks 21 drive the cutting disc 7 to move horizontally through the connecting plate 34. After the position of the cutting disc 7 is adjusted, the two sets of fixing frames 11 drive the two sets of T-blocks 10 to slide on the two sets of first T-shaped slide rails 9, so that the two sets of fixing frames 11 move to the position where the dense mesh needs to be cut. Then, the two sets of bolts 12 are rotated, and the two sets of bolts 12 are threadedly connected with the two sets of T-blocks 10. The two sets of bolts 12 tighten the two sets of first T-shaped slide rails 9, thereby fixing the two sets of fixing frames 11. Then, the four sets of second electric push rods 13 are turned on, and the four sets of second electric push rods 13 drive the four sets of pressure strips 14 to move downward. The four sets of pressure strips 14 fix the area where the dense mesh needs to be cut. Then, by turning on the first motor 8, the first motor 8 drives the cutting disc 7 to rotate through the rotating shaft 6, and at the same time, the third motor 31 is turned on. The two sets of vertical plates 22 are meshed to drive the transmission shaft 29 to rotate, and the transmission shaft 29 drives the two sets of second bevel gears 28 to mesh with the two sets of first bevel gears 27. The two sets of first bevel gears 27 drive the two sets of threaded tubes 24 to be threadedly connected with the two sets of second screws 25. The two sets of second screws 25 drive the lifting plate 26 to move downward. When the rotating cutting disc 7 cuts the dense mesh, the driving rod 36 drives the T-shaped slider to slide longitudinally from back to front in the second T-shaped slide rail 35 to drive the cutting disc 7 to move longitudinally, thereby cutting the dense mesh.

[0039] The utility model is a cutting device for processing a dense mesh, and its installation method, connection method or setting method are all common mechanical methods, and can be implemented as long as they can achieve their beneficial effects; the utility model is a cutting device for processing a dense mesh, and the second electric push rod 13, the second motor 19 and the third motor 31 are purchased on the market. Technical personnel in this industry only need to install and operate them according to the accompanying instruction manual.

[0040] The above is only a preferred embodiment of the present invention. It should be pointed out that for ordinary technicians in this technical field, several improvements and modifications can be made without departing from the technical principles of the present invention. These improvements and modifications should also be regarded as the scope of protection of the present invention.

Claims

1. A cutting device for processing based on a dense mesh, characterized by, The utility model provides a cutting device for cutting plate, including workbench (1), two groups of clamping frame (2), four groups of first electric push rod (3), four groups of clamping plate (4), door type frame (5), pivot (6), cutting disc (7), first motor (8), two groups of vertical plate (22), two groups of third electric push rod (41), pressing device and adjusting device, two groups of vertical plate (22) are installed respectively left side and right side at workbench (1) top, two groups of third electric push rod (41) are installed respectively at two groups of vertical plate (22) outer end, two groups of third electric push rod (41) output respectively pass two groups of vertical plate (22) with two groups of clamping frame (2) outer end connection, four groups of first electric push rod (3) are installed respectively at two groups of clamping frame (2) inner top and bottom, four groups of clamping plate (4) are installed respectively at four groups of first electric push rod (3) output, adjusting device is installed at workbench (1) top, door type frame (5) is installed on adjusting device, pivot (6) rotation is installed at door type frame (5) inner end, cutting disc (7) is installed on pivot (6), first motor (8) is installed at door type frame (5) right end, and first motor (8) output passes through door type frame (5) right end and is connected with pivot (6) right end, and pressing device is installed at workbench (1) top, and the pressing device includes two groups of first T type slide rail (9), two groups of T type block (10), two groups of fixed frame (11), two groups of bolt (12), eight groups of second electric push rod (13) and four groups of pressure strip (14), two groups of first T type slide rail (9) are installed at the front side and rear side of workbench (1) top, two groups of T type block (10) are in the sliding of two groups of first T type slide rail (9) respectively, and the outer end of two groups of first T type slide rail (9) is uniformly provided with long hole, and the outer end of two groups of T type block (10) is provided with screw groove, and two groups of bolt (12) are respectively passed through the long hole of two groups of first T type slide rail (9) and are in screw thread connection with the screw groove of two groups of T type block (10), two groups of fixed frame (11) are installed respectively at the left side and right side of two groups of T type block (10) top, eight groups of second electric push rod (13) are installed respectively at the front side and rear side of two groups of fixed frame (11) inner top and bottom, and four groups of pressure strip (14) are installed respectively at every two groups corresponding second electric push rod (13) output.

2. The cutting apparatus for processing based on the dense mesh according to claim 1, wherein The adjusting device comprises two sets of fixed plates (15), two sets of first screw rods (16), two sets of chain wheels (17), a chain (18), a second motor (19), a motor frame (20), two sets of moving blocks (21), a height adjusting device and a sliding mechanism. The height adjusting device is installed at the top end of the workbench (1). The two sets of fixed plates (15) are installed on the height adjusting device. The bottom ends of the two sets of fixed plates (15) are provided with sliding grooves. The two sets of first screw rods (16) are rotatably installed in the sliding grooves of the two sets of fixed plates (15) respectively. The right ends of the two sets of first screw rods (16) penetrate through the right ends of the two sets of fixed plates (15) and extend to the outer sides of the two sets of fixed plates (15). The two sets of chain wheels (17) are installed on the right parts of the two sets of first screw rods (16) respectively. The two sets of chain wheels (17) are engaged with the chain (18). The output end of the second motor (19) is connected with the right end of the rear first screw rod (16). The second motor (19) is installed at the inner end of the motor frame (20). The motor frame (20) is installed at the top right side of the rear fixed plate (15). The two sets of moving blocks (21) slide in the sliding grooves of the two sets of fixed plates (15). The middle parts of the two sets of moving blocks (21) are continuously provided with threaded holes. The two sets of moving blocks (21) are threadedly connected with the two sets of first screw rods (16). The sliding mechanism is installed at the bottom ends of the two sets of moving blocks (21). The door-shaped frame (5) is installed on the sliding mechanism.

3. The cutting apparatus for processing based on the dense mesh according to claim 2, wherein The height adjusting device comprises a support frame (23), two sets of threaded pipes (24), two sets of second screw rods (25), a lifting plate (26), two sets of first bevel gears (27), two sets of second bevel gears (28), a transmission shaft (29), two sets of support plates (30), a third motor (31), a motor base (32) and two sets of gears (33). The support frame (23) is installed at the top rear side of the workbench (1). The two sets of threaded pipes (24) are rotatably installed at the front and rear parts of the top end of the support frame (23). The two sets of second screw rods (25) are threadedly connected with the two sets of threaded pipes (24) respectively. The bottom ends of the two sets of second screw rods (25) are rotatably installed at the top front side and rear side of the lifting plate (26) respectively. The two sets of fixed plates (15) are installed at the bottom front side and rear side of the lifting plate (26) respectively. The two sets of first bevel gears (27) are sleeved on the outer ends of the two sets of threaded pipes (24) respectively. The two sets of first bevel gears (27) are engaged with the two sets of second bevel gears (28) respectively. The two sets of second bevel gears (28) are installed at the front and rear ends of the transmission shaft (29) respectively. The transmission shaft (29) is rotatably installed on the two sets of support plates (30). The two sets of support plates (30) are installed at the top end of the support frame (23). The third motor (31) is installed at the top end of the motor base (32). The motor base (32) is installed at the top end of the support frame (23). The two sets of gears (33) are installed at the middle part of the transmission shaft (29) and the output end of the third motor (31) respectively. The two sets of gears (33) are engaged.

4. The cutting apparatus for processing based on the dense mesh according to claim 3, wherein The sliding mechanism comprises a connecting plate (34), a second T-shaped sliding rail (35) and a driving rod (36), the connecting plate (34) is installed at the bottom end of the two groups of moving blocks (21), the second T-shaped sliding rail (35) is installed at the bottom end of the connecting plate (34), the T-shaped sliding block slides in the second T-shaped sliding rail (35), the door-shaped frame (5) is installed at the bottom end of the T-shaped sliding block, and the driving rod (36) is connected with the T-shaped sliding block by penetrating through the front end of the second T-shaped sliding rail (35).

5. The cutting apparatus for processing based on the dense mesh according to claim 4, wherein A pull handle (37) is further included and installed at the front end of the driving rod (36).

6. The cutting apparatus for processing based on the dense mesh according to claim 5, wherein A handle (38) is further included and installed at the front end of the left fixed frame (11).

7. The cutting apparatus for processing based on the dense mesh according to claim 6, wherein Two groups of first limiting plates (39) and four groups of second limiting plates (40) are further included, the two groups of first limiting plates (39) are respectively installed at the top end of the two groups of second screw rods (25), and the four groups of second limiting plates (40) are respectively installed at the left end and the right end of the two groups of first T-shaped sliding rails (9).

8. The cutting apparatus for processing based on the dense mesh according to claim 7, wherein The inner end of the clamping plate (4) and the pressing strip (14) is provided with an antiskid rubber pad.