CN113635380B - Glass steel pipeline production processingequipment - Google Patents

Glass steel pipeline production processingequipment Download PDF

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Publication number
CN113635380B
CN113635380B CN202111196234.4A CN202111196234A CN113635380B CN 113635380 B CN113635380 B CN 113635380B CN 202111196234 A CN202111196234 A CN 202111196234A CN 113635380 B CN113635380 B CN 113635380B
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cutting
plate
opening
frame body
cutting wheel
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CN113635380A (en
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崔昌瑞
赵得智
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Jiangsu Zhongcheng Composite Material Co ltd
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Jiangsu Zhongcheng Composite Material Co ltd
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B26HAND CUTTING TOOLS; CUTTING; SEVERING
    • B26DCUTTING; DETAILS COMMON TO MACHINES FOR PERFORATING, PUNCHING, CUTTING-OUT, STAMPING-OUT OR SEVERING
    • B26D3/00Cutting work characterised by the nature of the cut made; Apparatus therefor
    • B26D3/16Cutting rods or tubes transversely
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B26HAND CUTTING TOOLS; CUTTING; SEVERING
    • B26DCUTTING; DETAILS COMMON TO MACHINES FOR PERFORATING, PUNCHING, CUTTING-OUT, STAMPING-OUT OR SEVERING
    • B26D7/00Details of apparatus for cutting, cutting-out, stamping-out, punching, perforating, or severing by means other than cutting
    • B26D7/01Means for holding or positioning work
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B26HAND CUTTING TOOLS; CUTTING; SEVERING
    • B26DCUTTING; DETAILS COMMON TO MACHINES FOR PERFORATING, PUNCHING, CUTTING-OUT, STAMPING-OUT OR SEVERING
    • B26D7/00Details of apparatus for cutting, cutting-out, stamping-out, punching, perforating, or severing by means other than cutting
    • B26D7/01Means for holding or positioning work
    • B26D2007/013Means for holding or positioning work the work being tubes, rods or logs

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  • Life Sciences & Earth Sciences (AREA)
  • Forests & Forestry (AREA)
  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Processing And Handling Of Plastics And Other Materials For Molding In General (AREA)
  • Moulding By Coating Moulds (AREA)

Abstract

The invention provides a glass fiber reinforced plastic pipeline production and processing device, and relates to the technical field of glass fiber reinforced plastic pipeline production and processing. Including the conveying part, the cutting part, the storage part, first backup pad, the conveying part includes first conveying subassembly, second conveying subassembly, the cutting part includes the second backup pad, first cutting subassembly, second cutting subassembly, first cutting subassembly, be connected through being equipped with first connecting piece between the second cutting subassembly, first connecting piece includes first ball, first connecting portion include first connecting block, the second connecting block, first cutting subassembly one end is equipped with the fixed part, the fixed part includes first fixed framework, first extrusion framework, the second connecting piece, be equipped with the first lifting unit who corresponds with storage part on the first backup pad. The invention provides a glass fiber reinforced plastic pipeline production and processing device which is good in cutting effect and convenient for cutting a glass fiber reinforced plastic pipeline with a large pipe diameter and storing the cut glass fiber reinforced plastic pipeline.

Description

Glass steel pipeline production processingequipment
Technical Field
The invention provides a glass fiber reinforced plastic pipeline production and processing device, and relates to the technical field of glass fiber reinforced plastic pipeline production and processing.
Background
The glass fiber reinforced plastic sand inclusion pipe is a novel composite material prepared by taking resin as a base material, glass fiber and products thereof as reinforcing materials and quartz sand as a filling material. The glass fiber reinforced plastic pipeline has the advantages of excellent corrosion resistance, excellent hydraulic characteristics, light weight, high strength, large conveying flow, convenience in installation, short construction period, low comprehensive investment and the like, becomes the best choice for chemical industry, drainage engineering and pipeline engineering, and the glass fiber reinforced plastic pipeline after production needs to be cut according to the length required by a user.
At present, patent No. CN202021353371.5 discloses a fiber reinforced plastic pipeline cutting device, in which the traveling wheels are movably mounted at the bottom of a bracket, the bracket is movably mounted on a guide rail through the traveling wheels, the first motor is fixedly mounted on the bracket, the first motor is in transmission connection with the traveling wheels, the ring sleeve is fixedly mounted on the bracket, the roller is movably mounted in the ring sleeve, a gear ring is arranged at the outer periphery of the roller, the second motor is fixedly mounted on the bracket, a gear is arranged on the output shaft of the second motor, the gear is engaged with the gear ring, the bracket is fixedly mounted at the front end of the roller, a guide post is arranged on the bracket, a limit hole and a screw hole are arranged on the slider, the slider is movably sleeved on the guide post through the limit hole, the cutting wheel also performs circular rotation when cutting the fiber reinforced plastic pipeline with a large pipe diameter, and the cutting cannot be continued after the end is cut, and the glass fiber reinforced plastic pipe after cutting cannot be automatically stored.
Disclosure of Invention
In order to solve the problems, the invention provides a glass fiber reinforced plastic pipeline production and processing device, which solves the defects and has the advantages of good cutting effect, reduced labor intensity of workers, improved cutting efficiency, and convenience in cutting a glass fiber reinforced plastic pipeline with a large pipe diameter and storing the cut glass fiber reinforced plastic pipe.
The invention provides a glass steel pipeline production processing device which comprises a conveying part, a cutting part, a storage part and a first supporting plate, wherein the conveying part comprises a first conveying assembly and a second conveying assembly, the cutting part is positioned at one end, close to the second conveying part, of the first supporting plate, the cutting part comprises a second supporting plate, a first cutting assembly and a second cutting assembly, the first cutting assembly and the second cutting assembly are respectively positioned at the upper end and the lower end of the second supporting plate, the first cutting assembly and the second cutting assembly are connected through a first connecting piece, the first cutting assembly and the second cutting assembly respectively comprise a first cutting wheel, a second cutting wheel, a third cutting wheel and a fourth cutting wheel, the first cutting wheel, the second cutting wheel, the third cutting wheel and the fourth cutting wheel are conveyed through a first motor, and the first connecting piece comprises a first ball screw rod, The first ball screw penetrates through the first cutting assembly and the second cutting assembly, the first connecting part comprises a first connecting block and a second connecting block, the first connecting block and the second connecting block are positioned at two ends of the first cutting part and the second cutting part, the second connecting block is connected with the first motor through a first connecting rod, one end of the first cutting assembly is provided with a fixing part, the fixing part comprises a first fixing frame body, a first extrusion frame body and a second connecting piece, one side of the first extrusion frame body is provided with a first extrusion plate and a sliding block, the first extrusion frame body penetrates through the first fixing frame body, the first fixing frame body is provided with a second extrusion plate corresponding to the first extrusion plate, the second extrusion plate is elastically connected with the first fixing frame body, and the first extrusion frame body is connected with the first connecting block through a second connecting piece, the second connecting piece is connected with the sliding block in a sliding mode, the storage portion is located at one end of the first supporting plate, a first lifting assembly corresponding to the storage portion is arranged on the first supporting plate, the first lifting assembly comprises a lifting plate and a pressing block, and the pressing block is connected with the lifting plate through a first rotating plate.
First conveying component includes the conveyer belt, second conveying component includes the gyro wheel, be equipped with respectively on the first backup pad with first conveying component, the corresponding first opening of second conveying component, second opening, the conveyer belt is located first opening, the gyro wheel is located the second opening, cutting portion is located second conveying component both ends.
The second cutting wheel and the third cutting wheel are hinged to the second supporting plate through second connecting rods and third connecting rods, and the first cutting wheel and the fourth cutting wheel are fixedly connected with the second connecting rods and the third connecting rods through fourth connecting rods.
The two ends of the first ball screw respectively penetrate through the second connecting rod and the third connecting rod, the thread turning directions of the two ends of the first ball screw are opposite, the first connecting portion is located at the two ends of the first ball screw and corresponds to the threads at the two ends, and the first connecting block and the second connecting block are located at the two ends of the second connecting rod and the third connecting rod respectively.
The first cutting wheel, the second cutting wheel, the fourth cutting wheel and the third cutting wheel are connected through a first synchronous belt, the second cutting wheel and the third cutting wheel are connected with a first motor through a second synchronous belt, the first motor is positioned at one end of a second supporting plate far away from a cutting part, the first motor is connected with the second supporting plate through a first fixing piece, the first fixing piece comprises a first fixing column and a second fixing column, the first fixing column is fixedly connected with the second supporting plate, the second fixing column penetrates through the first fixing column and is in sliding connection with the first fixing column, the second connecting block is positioned at one side, close to the inner side, of the cutting part at the two ends of the first ball screw, the first motor is positioned at one end of the second fixing column far away from the first fixing column, and the two ends of a first connecting rod are respectively hinged with the second connecting block and the second fixing column, and a third opening and a fourth opening which correspond to the second synchronous belt and the first connecting rod are respectively arranged on the second supporting plate.
The bottom of the first extrusion plate is hinged to the first extrusion frame body, a plurality of first bulges are arranged on the outer side of the first extrusion plate and are linearly distributed on the first extrusion plate, the inner side of the first extrusion plate is connected with the first extrusion frame body through a first spring, the first fixing frame body is hinged to the second supporting plate, one end, away from the second supporting plate, of the first fixing frame body is arc-shaped, a fifth opening corresponding to the second extrusion plate is arranged on the first fixing frame body, the second extrusion plate penetrates through the fifth opening, a second spring is arranged between the second extrusion plate and the first fixing frame body, a plurality of second bulges corresponding to the first bulges are arranged on the second extrusion plate, and the second bulges are linearly distributed on the second extrusion plate.
The sliding block and first stripper plate fixed connection, the sliding block is right trapezoid, the sliding block is close to second connecting piece one end and is the slope, the sliding block one end up is the osculum, the second connecting piece runs through first extrusion framework top and sliding block sliding connection, first extrusion framework one end is kept away from to the second connecting piece and is connected with the first connecting block on the first cutting subassembly.
The storage part is located first backup pad and keeps away from first transmission portion one end, the storage part includes the protection frame, first lifting unit is located first backup pad and is close to protection frame one end both sides central point and puts, be equipped with the slope between first lifting unit and the protection frame.
Be equipped with the sixth opening corresponding with first elevating assembly on the first backup pad, first elevating assembly is located the sixth opening, the press block is located the sixth opening and keeps away from cutting part one end, press block and sixth opening sliding connection, be equipped with the third spring between press block and the sixth opening bottom, the lifter plate is located the sixth opening and is close to cutting part one end, rotate with sixth opening both ends in the middle of the first rotor plate both ends and be connected, press block, lifter plate are located and are connected through being equipped with fifth connecting rod, fourth connecting rod between first rotor plate both ends and the first rotor plate, the lifter plate is half arc.
The invention has the beneficial effects that:
the invention provides a glass fiber reinforced plastic pipeline production and processing device, which can enable a plurality of cutting wheels to simultaneously cut glass fiber reinforced plastic pipes, can be suitable for glass fiber reinforced plastic pipes with various specifications, enables the glass fiber reinforced plastic pipes to be cut and formed at one time, can continuously fix the glass fiber reinforced plastic pipes in the cutting process without damaging the glass fiber reinforced plastic pipes, and can orderly discharge the cut glass fiber reinforced plastic pipes.
Drawings
FIG. 1 is a schematic view of the overall structure of a FRP pipe production processing apparatus of the present invention.
FIG. 2 is a schematic cross-sectional view of a FRP pipe production and processing apparatus of the present invention.
FIG. 3 is another schematic sectional view of the FRP pipe production and processing apparatus of the present invention.
Fig. 4 is a schematic sectional structure view of a first cutting assembly of the apparatus for producing and processing FRP pipes according to the present invention.
FIG. 5 is a schematic structural diagram of a first cutting assembly of the apparatus for producing and processing FRP pipes according to the present invention.
Fig. 6 is a schematic sectional view of a second supporting frame of the apparatus for producing and processing FRP pipes according to the present invention.
Fig. 7 is a schematic sectional structure view of a first lifting assembly of the apparatus for producing and processing glass fiber reinforced plastic pipeline of the present invention.
1. First supporting plate, 2, second supporting plate, 3, first cutting wheel, 4, second cutting wheel, 5, third cutting wheel, 6, fourth cutting wheel, 7, first motor, 8, first ball screw, 9, first connecting block, 10, second connecting block, 11, first connecting rod, 12, first fixed frame, 13, first extrusion frame, 14, first extrusion plate, 15, sliding block, 16, second extrusion plate, 17, second connecting piece, 18, lifting plate, 19, pressing block, 20, first rotating plate, 21, conveying belt, 22, roller, 23, second connecting rod, 24, third connecting rod, 25, fourth connecting rod, 26, second synchronous belt, 27, first fixed column, 28, second fixed column, 29, first bulge, 30, first spring, 31, second spring, 32, protective frame, 33, third spring, 34, fifth connecting rod, 35, Fourth connecting rod, 36, first synchronous belt)
Detailed Description
Preferred embodiments of the present invention will be described in detail below with reference to the accompanying drawings.
As shown in fig. 1 to 7, the invention provides a FRP pipe production processing device, which comprises a conveying part, a cutting part, a storage part and a first support plate 1, wherein the conveying part comprises a first conveying component and a second conveying component, the cutting part is positioned at one end of the first support plate 1 close to the second conveying part, the cutting part comprises a second support plate 2, a first cutting component and a second cutting component, the first cutting component and the second cutting component are respectively positioned at the upper end and the lower end of the second support plate 2, the first cutting component and the second cutting component are connected by a first connecting piece, the first cutting component and the second cutting component respectively comprise a first cutting wheel 3, a second cutting wheel 4, a third cutting wheel 5 and a fourth cutting wheel 6, the first cutting wheel 3, the second cutting wheel 4, the third cutting wheel 5 and the fourth cutting wheel 6 are conveyed by a first motor 7, the first connecting piece comprises a first ball screw 8 and a first connecting part, the first ball screw 8 penetrates through the first cutting assembly and the second cutting assembly, the first connecting part comprises a first connecting block 9 and a second connecting block 10, the first connecting block 9 and the second connecting block 10 are both positioned at two ends of the first cutting part and the second cutting part, the second connecting block 10 is connected with the first motor 7 through a first connecting rod 11, one end of the first cutting assembly is provided with a fixing part, the fixing part comprises a first fixing frame body 12, a first extruding frame body 13 and a second connecting piece, one side of the first extruding frame body 13 is provided with a first extruding plate 14 and a sliding block 15, the first extruding frame body 13 penetrates through the first fixing frame body 12, the first fixing frame body 12 is provided with a second extruding plate 16 corresponding to the first extruding plate 14, the second extrusion plate 16 is elastically connected with the first fixed frame body 12, the first extrusion frame body 13 is connected with the first connecting block 9 through a second connecting piece 17, the second connecting piece 17 is slidably connected with the sliding block 15, the storage part is arranged at one end of the first supporting plate 1, a first lifting assembly corresponding to the storage part is arranged on the first supporting plate 1, the first lifting assembly comprises a lifting plate 18 and a pressing block 19, and the pressing block 19 is connected with the lifting plate 18 through a first rotating plate 20.
The first conveying assembly comprises a conveying belt 21, the second conveying assembly comprises a roller 22, a first opening and a second opening which correspond to the first conveying assembly and the second conveying assembly are respectively arranged on the first supporting plate 1, the conveying belt 21 is located in the first opening, the roller 22 is located in the second opening, and the cutting portions are located at two ends of the second conveying assembly.
According to the invention, the second cutting wheel 4 and the third cutting wheel 5 are respectively hinged with the second support plate 2 through the arrangement of a second connecting rod 23 and a third connecting rod 24, and the first cutting wheel 3 and the fourth cutting wheel 6 are respectively fixedly connected with the second connecting rod 23 and the third connecting rod 24 through the arrangement of a fourth connecting rod 25.
According to the invention, two ends of a first ball screw 8 respectively penetrate through a second connecting rod 23 and a third connecting rod 24, the screw threads at two ends of the first ball screw 8 are opposite in rotating direction, a first connecting part is positioned at two ends of the first ball screw 8 and corresponds to the screw threads at two ends, and a first connecting block 9 and a second connecting block 10 are respectively positioned at two ends of the second connecting rod 23 and the third connecting rod 24.
According to the invention, a first cutting wheel 3, a second cutting wheel 4, a fourth cutting wheel 6 and a third cutting wheel 5 are connected through a first synchronous belt 36, the second cutting wheel 4, the third cutting wheel 5 and a first motor 7 are connected through a second synchronous belt 26, the first motor 7 is positioned at one end of a second supporting plate 2 far away from a cutting part, the first motor 7 and the second supporting plate 2 are connected through a first fixing piece, the first fixing piece comprises a first fixing column 27 and a second fixing column 28, the first fixing column 27 is fixedly connected with the second supporting plate 2, the second fixing column 28 penetrates through the first fixing column 27 and is in sliding connection with the first fixing column 27, a second connecting block 10 is positioned at one side of the cutting parts at two ends of a first ball screw 8, the first motor 7 is positioned at one end of the second fixing column 28 far away from the first fixing column 27, two ends of the first connecting rod 11 are respectively hinged to the second connecting block 10 and the second fixing column 28, and the second supporting plate 2 is respectively provided with a third opening and a fourth opening corresponding to the second synchronous belt 26 and the first connecting rod 11.
In the invention, the bottom of a first extrusion plate 14 is hinged with a first extrusion frame body 13, a plurality of first bulges 29 are arranged on the outer side of the first extrusion plate 14 and are positioned on the first extrusion plate 14 in a linear distribution, the inner side of the first extrusion plate 14 is connected with the first extrusion frame body 13 through a first spring 30, the first fixing frame 12 is hinged with the second support plate 2, one end of the first fixing frame 12 far away from the second support plate 2 is arc-shaped, a fifth opening corresponding to the second extrusion plate 16 is arranged on the first fixed frame 12, the second extrusion plate 16 penetrates through the fifth opening, a second spring 31 is arranged between the second extrusion plate 16 and the first fixed frame 12, a plurality of second protrusions corresponding to the first protrusions 29 are arranged on the second extrusion plate 16, and the plurality of second protrusions are linearly distributed on the second extrusion plate 16.
According to the cutting device, a sliding block 15 is fixedly connected with a first extrusion plate 14, the sliding block 15 is in a right trapezoid shape, one end, close to a second connecting piece 17, of the sliding block 15 is in a slope shape, a small opening is formed in the upward end of the sliding block 15, the second connecting piece 17 penetrates through the top of a first extrusion frame body 13 and is in sliding connection with the sliding block 15, and one end, far away from the first extrusion frame body 13, of the second connecting piece 17 is connected with a first connecting block 9 on a first cutting assembly.
According to the invention, the storage part is positioned at one end of the first support plate 1, which is far away from the first transmission part, the storage part comprises a protection frame 32, the first lifting assembly is positioned at the center positions of two sides of one end of the first support plate 1, which is close to the protection frame 32, and a slope is arranged between the first lifting assembly and the protection frame 32.
According to the invention, a sixth opening corresponding to the first lifting assembly is arranged on the first supporting plate 1, the first lifting assembly is positioned in the sixth opening, the pressing block 19 is positioned at one end, far away from the cutting part, of the sixth opening, the pressing block 19 is in sliding connection with the sixth opening, a third spring 33 is arranged between the pressing block 19 and the bottom of the sixth opening, the lifting plate 18 is positioned at one end, close to the cutting part, of the sixth opening, the middle of the two ends of the first rotating plate 20 is in rotating connection with the two ends of the sixth opening, the pressing block 19 and the lifting plate 18 are positioned between the two ends of the first rotating plate 20 and are connected through a fifth connecting rod 34 and a fourth connecting rod 35, and the lifting plate 18 is in a semi-arc shape.
The working principle is as follows: when the glass fiber reinforced plastic tube cutting machine is used, a glass fiber reinforced plastic tube is placed on a conveyor belt 21, the conveyor belt 21 conveys the glass fiber reinforced plastic tube, one end of the glass fiber reinforced plastic tube is conveyed to a roller 22, the conveying of the conveyor belt 21 is controlled according to the cutting length, a first ball screw 8 starts to rotate during cutting to drive a second connecting rod 23 and a third connecting rod 24 to inwards gather to be in contact with the glass fiber reinforced plastic tube, the first cutting wheel 3 and a fourth cutting wheel 6 cut the upper end and the lower end of the glass fiber reinforced plastic tube, the second cutting wheel 4 and the third cutting wheel 5 cut the middle part of the glass fiber reinforced plastic tube, a first motor drives a second cutting wheel 4 and a third cutting wheel 5 to cut through a second synchronous belt 26, the second cutting wheel 4 and the third cutting wheel 5 drive a first cutting wheel 3 and a fourth cutting wheel 6 to cut through a first synchronous belt 36, and the first ball screw 8 rotates to drive a first connecting block 9, The second connecting block 10 is gathered inwards, so that the first connecting block 9 extrudes the second connecting rod 23 and the third connecting rod 24, the second connecting rod 23 and the third connecting rod 24 are gathered inwards, the second connecting block 10 extrudes the second fixing column 28 through the first connecting rod 11 when being gathered inwards, the second fixing column 28 drives the first motor 7 to slide along the first fixing column 27, so that the second synchronous belt 26 is always kept tensioned, the first connecting block 9 drives the second connecting piece 17 to move downwards when being gathered inwards, the second connecting piece 17 slides along the sliding block 15 and extrudes the first extrusion plate 14 in the downward moving process, the first protrusion 29 is in contact with the second protrusion to drive the first fixing frame body 12 to move downwards to be in contact with the glass fiber reinforced plastic pipe to extrude and fix the glass fiber reinforced plastic pipe, and when the first fixing frame body 12 is in contact with the glass fiber reinforced plastic pipe, the cutting part is still cutting the first connecting block 9 and continues to be gathered inwards The second protrusion continuously extrudes the first protrusion, the second spring 31 starts to be stressed, so that the second extrusion plate 16 is inwardly contracted to ensure that the first protrusion 29 enables the first fixed frame 12 to fix the glass reinforced plastic tube without damaging the glass reinforced plastic tube by extruding the second protrusion, after the glass reinforced plastic tube is cut, the first ball screw 8 reversely rotates the first connecting block 9 and the second connecting block 10 to move towards both ends of the first ball screw 8, the second connecting block 10 extrudes the second connecting rod 23 and the third connecting rod 24 to enable the second connecting rod 23 and the third connecting rod 24 to move outwards without contacting with the glass tube, meanwhile, the second connecting block 10 inwards pulls the first motor through the first connecting rod 11 to avoid the second synchronous belt 26 from being damaged, and the second connecting member 17 moves upwards under the driving of the first connecting block 9, the second connecting piece 17 slides upwards along the sliding block 15, the first spring 30 starts to bear force to pull the first extrusion plate 14 inwards, so that the first protrusion 29 is not extruding the second protrusion, the first fixing frame body 12 is not limiting the glass fiber reinforced plastic pipe, the conveyor belt 21 continues conveying the glass fiber reinforced plastic pipe, the cut glass fiber reinforced plastic pipe is extruded by the rear glass fiber reinforced plastic pipe to continue moving forwards, the pressing block 19 moves downwards when the front section of the cut glass fiber reinforced plastic pipe is in contact with the pressing block 19, the pressing block 34 extrudes the first rotating plate 20 to enable the first rotating plate to rotate anticlockwise, the lifting plate 18 is lifted up through the fourth connecting rod 35 to provide force for moving the glass pipeline to the storage part, the glass pipeline is orderly arranged along a slope, and the first lifting assembly can move the whole glass pipeline without swinging the head part of only one slope glass pipeline to cause the oblique tail part of the glass pipeline to swing, so as to cause the oblique disorderly division of the glass pipeline The condition of the cloth appears, the protection frame 32 is internally provided with a protection pad for preventing the glass pipeline from being damaged.
Without departing from the spirit of the invention, it is within the scope of the invention to suggest and appreciate that structural embodiments and examples similar to the technical solutions can be devised without inventing.

Claims (9)

1. The glass fiber reinforced plastic pipeline production and processing device is characterized in that: the cutting device comprises a conveying part, a cutting part, a storage part and a first supporting plate, wherein the conveying part comprises a first conveying assembly and a second conveying assembly, the cutting part is positioned at one end, close to the second conveying part, of the first supporting plate, the cutting part comprises a second supporting plate, a first cutting assembly and a second cutting assembly, the first cutting assembly and the second cutting assembly are respectively positioned at the upper end and the lower end of the second supporting plate, the first cutting assembly and the second cutting assembly are connected through a first connecting piece, the first cutting assembly and the second cutting assembly respectively comprise a first cutting wheel, a second cutting wheel, a third cutting wheel and a fourth cutting wheel, the first cutting wheel, the second cutting wheel, the third cutting wheel and the fourth cutting wheel are conveyed through a first motor, the first connecting piece comprises a first ball screw and a first connecting part, and the first ball screw penetrates through the first cutting assembly, A second cutting component, wherein the first connecting part comprises a first connecting block and a second connecting block, the first connecting block and the second connecting block are positioned at two ends of the first cutting part and the second cutting part, the second connecting block is connected with the first motor through a first connecting rod, one end of the first cutting component is provided with a fixing part, the fixing part comprises a first fixing frame body, a first extruding frame body and a second connecting piece, one side of the first extruding frame body is provided with a first extruding plate and a sliding block, the first extruding frame body penetrates through the first fixing frame body, the first fixing frame body is provided with a second extruding plate corresponding to the first extruding plate, the second extruding plate is elastically connected with the first fixing frame body, the first extruding frame body is connected with the first connecting block through a second connecting piece, and the second connecting piece is slidably connected with the sliding block, the storage part is located one end of a first supporting plate, a first lifting assembly corresponding to the storage part is arranged on the first supporting plate, the first lifting assembly comprises a lifting plate and a pressing block, and the pressing block is connected with the lifting plate through a first rotating plate.
2. The FRP pipe production and processing device as claimed in claim 1, wherein: first conveying component includes the conveyer belt, second conveying component includes the gyro wheel, be equipped with respectively on the first backup pad with first conveying component, the corresponding first opening of second conveying component, second opening, the conveyer belt is located first opening, the gyro wheel is located the second opening, cutting portion is located second conveying component both ends.
3. The FRP pipe production and processing device as claimed in claim 1, wherein: the second cutting wheel and the third cutting wheel are hinged to the second supporting plate through second connecting rods and third connecting rods, and the first cutting wheel and the fourth cutting wheel are fixedly connected with the second connecting rods and the third connecting rods through fourth connecting rods.
4. The FRP pipe production and processing device as claimed in claim 3, wherein: the two ends of the first ball screw respectively penetrate through the second connecting rod and the third connecting rod, the thread turning directions of the two ends of the first ball screw are opposite, the first connecting portion is located at the two ends of the first ball screw and corresponds to the threads at the two ends, and the first connecting block and the second connecting block are located at the two ends of the second connecting rod and the third connecting rod respectively.
5. The FRP pipe production and processing device as claimed in claim 1, wherein: the first cutting wheel, the second cutting wheel, the fourth cutting wheel and the third cutting wheel are connected through a first synchronous belt, the second cutting wheel and the third cutting wheel are connected with a first motor through a second synchronous belt, the first motor is positioned at one end of a second supporting plate far away from a cutting part, the first motor is connected with the second supporting plate through a first fixing piece, the first fixing piece comprises a first fixing column and a second fixing column, the first fixing column is fixedly connected with the second supporting plate, the second fixing column penetrates through the first fixing column and is in sliding connection with the first fixing column, the second connecting block is positioned at one side, close to the inner side, of the cutting part at the two ends of the first ball screw, the first motor is positioned at one end of the second fixing column far away from the first fixing column, and the two ends of a first connecting rod are respectively hinged with the second connecting block and the second fixing column, and a third opening and a fourth opening which correspond to the second synchronous belt and the first connecting rod are respectively arranged on the second supporting plate.
6. The FRP pipe production and processing device as claimed in claim 1, wherein: the bottom of the first extrusion plate is hinged to the first extrusion frame body, a plurality of first bulges are arranged on the outer side of the first extrusion plate and are linearly distributed on the first extrusion plate, the inner side of the first extrusion plate is connected with the first extrusion frame body through a first spring, the first fixing frame body is hinged to the second supporting plate, one end, away from the second supporting plate, of the first fixing frame body is arc-shaped, a fifth opening corresponding to the second extrusion plate is arranged on the first fixing frame body, the second extrusion plate penetrates through the fifth opening, a second spring is arranged between the second extrusion plate and the first fixing frame body, a plurality of second bulges corresponding to the first bulges are arranged on the second extrusion plate, and the second bulges are linearly distributed on the second extrusion plate.
7. The FRP pipe production and processing device as claimed in claim 1, wherein: the sliding block and first stripper plate fixed connection, the sliding block is right trapezoid, the sliding block is close to second connecting piece one end and is the slope, the sliding block one end up is the osculum, the second connecting piece runs through first extrusion framework top and sliding block sliding connection, first extrusion framework one end is kept away from to the second connecting piece and is connected with the first connecting block on the first cutting subassembly.
8. The FRP pipe production and processing device as claimed in claim 1, wherein: the storage part is located first backup pad and keeps away from first transmission portion one end, the storage part includes the protection frame, first lifting unit is located first backup pad and is close to protection frame one end both sides central point and puts, be equipped with the slope between first lifting unit and the protection frame.
9. The FRP pipe production and processing device as claimed in claim 1, wherein: be equipped with the sixth opening corresponding with first elevating assembly on the first backup pad, first elevating assembly is located the sixth opening, the press block is located the sixth opening and keeps away from cutting part one end, press block and sixth opening sliding connection, be equipped with the third spring between press block and the sixth opening bottom, the lifter plate is located the sixth opening and is close to cutting part one end, rotate with sixth opening both ends in the middle of the first rotor plate both ends and be connected, press block, lifter plate are located and are connected through being equipped with fifth connecting rod, fourth connecting rod between first rotor plate both ends and the first rotor plate, the lifter plate is half arc.
CN202111196234.4A 2021-10-14 2021-10-14 Glass steel pipeline production processingequipment Active CN113635380B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202111196234.4A CN113635380B (en) 2021-10-14 2021-10-14 Glass steel pipeline production processingequipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202111196234.4A CN113635380B (en) 2021-10-14 2021-10-14 Glass steel pipeline production processingequipment

Publications (2)

Publication Number Publication Date
CN113635380A CN113635380A (en) 2021-11-12
CN113635380B true CN113635380B (en) 2022-03-11

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CN115890797B (en) * 2023-02-20 2023-05-23 浙江华丰新材料股份有限公司 Cutting device for continuously winding glass fiber reinforced plastic pipeline

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CN112440313A (en) * 2020-12-09 2021-03-05 合肥域柝科技有限公司 Cutting processing method of polypropylene fiber pipe
CN213381788U (en) * 2020-09-17 2021-06-08 张家港市远创塑料机械有限公司 Annular cutting machine for large-specification plastic pipes
CN213615638U (en) * 2020-10-28 2021-07-06 江西欧密特精密制造有限公司 Glass steel sandpipe trimming device

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Publication number Priority date Publication date Assignee Title
EP0168334B1 (en) * 1984-06-08 1988-06-01 Georges Sireix Apparatus for cutting carton tubes and the like
KR101793811B1 (en) * 2016-01-14 2017-11-20 박영세 Log cutting device
CN208697510U (en) * 2018-08-29 2019-04-05 昆明耀龙塑胶有限公司 A kind of modified polypropene double-wall corrugated pipe circular cutter
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CN213381788U (en) * 2020-09-17 2021-06-08 张家港市远创塑料机械有限公司 Annular cutting machine for large-specification plastic pipes
CN213615638U (en) * 2020-10-28 2021-07-06 江西欧密特精密制造有限公司 Glass steel sandpipe trimming device
CN112440313A (en) * 2020-12-09 2021-03-05 合肥域柝科技有限公司 Cutting processing method of polypropylene fiber pipe

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Denomination of invention: A production and processing device for fiberglass pipes

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