CN212889042U - Glass fiber reinforced plastic fiber winding pultrusion machine for cable protective sleeve - Google Patents

Glass fiber reinforced plastic fiber winding pultrusion machine for cable protective sleeve Download PDF

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CN212889042U
CN212889042U CN202021569991.2U CN202021569991U CN212889042U CN 212889042 U CN212889042 U CN 212889042U CN 202021569991 U CN202021569991 U CN 202021569991U CN 212889042 U CN212889042 U CN 212889042U
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glass fiber
reinforced plastic
fiber reinforced
rotary connecting
rotary
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赵超
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Abstract

The utility model relates to a cable protection sleeve's processing equipment field specifically discloses a cable protection sleeve glass steel fiber winding pultrusion machine, including rotating shaft section of thick bamboo and drive rotating shaft section of thick bamboo pivoted drive block, its characterized in that still includes: a plurality of first rotary connecting arms and second rotary connecting arms which are arranged around the axis of the rotary shaft cylinder; an assembly gap is reserved between the first rotary connecting arm and the second rotary connecting arm, and the first rotary connecting arm and the second rotary connecting arm are connected with a glass fiber reinforced plastic yarn bobbin in a rotating shaft manner; the bottom wall or the side wall of the glass fiber reinforced plastic yarn cylinder is provided with a through hole for the glass fiber reinforced plastic fiber to penetrate through; because glass fiber reinforced plastic yarn section of thick bamboo passes through pivot connection structural connection with first swivelling joint arm and second swivelling joint arm, compares traditional fixed horizontal structure that sets up, and glass fiber reinforced plastic under this state is difficult to send the line in-process in the rotation winding to become in disorder.

Description

Glass fiber reinforced plastic fiber winding pultrusion machine for cable protective sleeve
Technical Field
The utility model belongs to the technical field of cable protection sleeve's processing equipment and specifically relates to a cable protection sleeve fiber reinforced plastic winding pultrusion machine.
Background
The cable sleeve is a novel sleeve material which is popularized and used in power engineering, is a pipeline for protecting wires and cable wiring in electrical installation, and allows the wires and the cables to penetrate and be replaced. Cable jackets are used in many applications, for example: the cable can be prevented from being corroded and extruded by building materials such as cement; the line replacement is convenient for later maintenance; corrosion resistance and long service life, and can be used in a humid saline-alkali zone; the flame retardant and heat resistant properties are good, and the flame retardant can be used at a high temperature of 130 ℃ for a long time without deformation and can not burn when meeting fire; high strength and rigidity
Because equipment needs to wind and wrap the outer surface of the cable protective sleeve through rotating, but the structure of the existing glass fiber reinforced plastic yarn bobbin is relatively rigid, and the yarn feeding bobbin usually rotates and winds in a reciprocating manner in a fixed transverse state, so that the glass fiber reinforced plastic yarn is easy to wind and disorder in the rotating process, and the processing efficiency and the wrapping quality of the cable protective sleeve are influenced.
SUMMERY OF THE UTILITY MODEL
In order to overcome the above defects and deficiencies of the prior art, the utility model aims to provide a cable protection sleeve glass fiber winding pultrusion machine which is reasonable in structure and the glass fiber reinforced plastic fiber is not easy to be disorderly in the rotating winding wire feeding process.
The utility model provides a technical scheme that its technical problem adopted is:
cable protection sleeve glass steel fiber winding pultrusion machine includes rotary shaft section of thick bamboo and drive rotary shaft section of thick bamboo pivoted drive block still includes:
a plurality of first rotary connecting arms and second rotary connecting arms which are arranged around the axis of the rotary shaft cylinder; an assembly gap is reserved between the first rotary connecting arm and the second rotary connecting arm, and the first rotary connecting arm and the second rotary connecting arm are connected with a glass fiber reinforced plastic yarn bobbin in a rotating shaft manner; the bottom wall or the side wall of the glass fiber reinforced plastic yarn cylinder is provided with a through hole for the glass fiber reinforced plastic fiber to penetrate through;
the traction machine is arranged on one side of the feeding direction of the rotating shaft barrel and is used for drawing the glass fiber reinforced plastic in the glass fiber reinforced plastic yarn barrel to move to one side;
and the cutting machine is arranged at the tail end of the feeding direction of the tractor and is used for cutting off operation.
Preferably, the driving block comprises a driving motor and a driving gear connected with the output end of the driving motor, and a driven gear capable of meshing with the driving gear is arranged on one side of the rotating shaft cylinder.
Preferably, the inner cavity of the rotary shaft barrel is suitable for a mold core column to pass through, and the mold core column is used for fixing the cable protection sleeve to be coated.
Preferably, the number of the first rotating connecting arms and the second rotating connecting arms is 4-8, and the first rotating connecting arms and the second rotating connecting arms are uniformly arranged around the axis of the rotating shaft barrel.
Preferably, one side of the feeding direction of the rotating shaft cylinder is provided with an immersing rotating disc.
Preferably, the soaking rotating disc comprises a connecting rod connected with the rotating shaft cylinder and an immersing rotating disc connected with the connecting rod, and a soaking pool is arranged below the immersing rotating disc.
Preferably, a plurality of rubber dipping hoppers are arranged on the immersion turntable.
Preferably, two sides of the rotating shaft cylinder are respectively provided with a coating bracket for coating the glass fiber felt on the outer surface of the cable protective sleeve.
Preferably, the coating support comprises a support rod, and a winding roller shaft for fixedly arranging the glass fiber mat is arranged at the upper end of the support rod.
Preferably, the drive block, the tractor and the cutting machine are all associated with a PLC control box for automatic control.
The utility model has the advantages that: the utility model discloses because be connected through pivot connection structure between glass fiber reinforced plastic yarn section of thick bamboo and first swivelling joint arm and the second swivelling joint arm, under the effect of gravity, a glass fiber reinforced plastic yarn section of thick bamboo all can keep vertical state throughout at rotatory in-process, compares traditional fixed horizontal structure that sets up, and glass fiber reinforced plastic under this state is difficult to send the line in-process in disorder at rotatory winding to be favorable to improving the efficiency of processing, guarantee the processingquality of product. The structure is more compact and reasonable, and the operation stability is relatively easier to guarantee.
Through the setting of first swivelling joint arm and second swivelling joint arm, can increase the work efficiency of equipment by a wide margin. Through the structural arrangement of the soaking rotating disc and the soaking hopper, the soaking process can be carried out more efficiently, and the soaking efficiency and effect are good.
Drawings
FIG. 1 is a schematic view of the overall installation structure of the present invention;
FIG. 2 is a schematic view of a partial structure of a rotary shaft cylinder part of the present invention;
FIG. 3 is a schematic structural view of the rotary shaft cylinder and the soaking rotary plate of the present invention;
FIG. 4 is a schematic view of the installation structure of the first rotary connecting arm and the glass fiber reinforced plastic bobbin of the present invention;
fig. 5 is a partially enlarged schematic view of the glass fiber reinforced plastic yarn bobbin of the present invention.
In the figure: 1. the device comprises a rotary shaft cylinder 2, a driving block 3, a first rotary connecting arm 4, a second rotary connecting arm 5, a mold 6, an assembly gap 7, a glass fiber yarn cylinder 8, a through hole 9, a tractor 10, a cutting machine 11, a driving motor 12, a driving gear 13, a driven gear 14, a mold core pipe column 15, a cable protective pipe 16, an immersion rotating disc 17, a connecting rod 18, an immersion turntable 19, an immersion tank 20, an immersion rubber bucket 21, a coating support 22, a supporting rod 23, a glass fiber felt 24, a winding roller shaft 25 and a PLC control box.
Detailed Description
In order to make the technical problem, technical scheme and beneficial effect that the utility model solved more clearly understand, it is right below to combine the attached drawing and embodiment the utility model discloses do further explanation. It should be understood that the embodiments described herein are merely for the purpose of illustrating the invention and are not intended to limit the invention.
As shown in fig. 1-5
Cable protection sleeve glass steel fiber winding pultrusion machine includes rotary shaft section of thick bamboo 1 and drive 1 pivoted drive block 2 of rotary shaft section of thick bamboo, the main part still includes:
a plurality of first rotary connecting arms 3 and second rotary connecting arms 4 which are arranged around the axis of the rotary shaft cylinder 1; an assembly gap 6 is reserved between the first rotary connecting arm 3 and the second rotary connecting arm 4, wherein the first rotary connecting arm 3 and the second rotary connecting arm 4 are both connected with a glass fiber reinforced plastic yarn bobbin 7 in a rotating shaft manner; the bottom wall or the side wall of the glass fiber reinforced plastic yarn cylinder 7 is provided with a through hole 8 for the glass fiber reinforced plastic fiber to penetrate through.
The tractor 9 is arranged on one side of the feeding direction of the rotary shaft barrel 1 and used for dragging the glass fiber reinforced plastics in the glass fiber reinforced plastics yarn barrel 7 to move to one side for operation;
and the cutter 10 is arranged at the tail end of the tractor 9 in the feeding direction and used for cutting the cable protective sleeve and the glass fiber reinforced plastic fiber.
Three swivelling joint arms are connected through pivot connection structure between 5, and under the effect of gravity, glass steel fiber yarn section of thick bamboo 7 all can keep vertical state all the time at rotatory in-process, compares traditional fixed horizontal structure that sets up, and glass steel fiber under this state is difficult to send the line in-process in the rotation winding to become in disorder to be favorable to improving the efficiency of processing, guarantee the processingquality of product.
The tractor 9 is arranged on one side of the feeding direction of the rotary shaft barrel 1 and used for dragging the glass fiber reinforced plastics in the glass fiber reinforced plastics yarn barrel 7 to move to one side for operation;
and the cutter 10 is arranged at the tail end of the tractor 9 in the feeding direction and used for cutting the cable protective sleeve and the glass fiber reinforced plastic fiber.
As an embodiment, the driving block 2 includes a driving motor 11 and a driving gear 12 connected to an output end of the driving motor 11, and a driven gear 13 capable of engaging with the driving gear 12 is provided at one side of the rotary shaft tube 1. The drive motor 11 is a reduction motor with a reduction gear.
The inner cavity of the rotary shaft sleeve 1 is suitable for a mold core column 14 to penetrate through, and the mold core column 14 is used for fixing a cable protection sleeve 15 to be coated.
As an example, the number of the first and second rotating link arms 3 and 4 is 4 to 8, preferably 8, and is equally arranged around the axis of the rotating shaft cylinder 1. Through the setting of first swivelling joint arm 3 and second swivelling joint arm 4, can increase the work efficiency of equipment by a wide margin.
As an embodiment, one side of the feeding direction of the rotating shaft barrel 1 is provided with an immersing rotating disk 16. The soaking rotary disk 16 comprises a connecting rod 17 connected with the rotary shaft barrel 1 and a soaking rotary disk 18 connected with the connecting rod 17, and a soaking pool 19 is arranged below the soaking rotary disk 18. The immersion turntable 18 is provided with a plurality of dipping buckets 20. Through the structural arrangement of the soaking rotating disc 16 and the soaking hopper 20, the soaking process can be carried out more efficiently, and the soaking efficiency and effect are good.
As an embodiment, the two sides of the rotary shaft tube 1 are respectively provided with a coating bracket 21 for coating the glass fiber mat 23 on the outer surface of the cable protective sleeve 15. The coating bracket 21 comprises a support rod 22, and a winding roller shaft 24 for fixedly arranging a glass fiber felt 23 is arranged at the upper end of the support rod 22. The coating support 21 has a simple and reliable structure, and can carry out efficient winding and coating work on the glass fiber mat 23.
As an example, the drive block 2, the tractor 9 and the cutter 10 are each associated with a PLC control box 25 for automated control. Through PLC, can make cable protection sleeve glass steel fiber winding pultrusion machine operation more automatic to be favorable to improving the efficiency of control and processing, guarantee the processingquality of product.
In one embodiment, a heating mold 5 is further provided on the tractor 9 side for performing a heating process on the coated cable protection sleeve 15.
The utility model discloses because be connected through pivot connection structure between glass fiber reinforced plastic yarn section of thick bamboo 7 and first swivelling joint arm 3 and the second swivelling joint arm 4, under the effect of gravity, glass fiber reinforced plastic yarn section of thick bamboo 7 all can keep vertical state throughout rotatory in-process, compares traditional fixed horizontal structure that sets up, and glass fiber under this state is difficult to send the line in-process in disorder at rotatory winding to be favorable to improving the efficiency of processing, guarantee the processingquality of product. The structure is more compact and reasonable, and the operation stability is relatively easier to guarantee.
Through the setting of first swivelling joint arm 3 and second swivelling joint arm 4, can increase the work efficiency of equipment by a wide margin. Through the structural arrangement of the soaking rotating disc 16 and the soaking hopper 20, the soaking process can be carried out more efficiently, and the soaking efficiency and effect are good. Through PLC control, can make cable protection sleeve glass steel fiber winding pultrusion machine operation more automatic to be favorable to improving the efficiency of control and processing, guarantee the processingquality of product.
The foregoing is considered as illustrative of the preferred embodiments only, and it is understood that various changes, substitutions and alterations can be made herein without departing from the spirit and scope of the invention as defined by the appended claims.

Claims (10)

1. Cable protection sleeve glass steel fiber winding pultrusion machine includes rotary shaft section of thick bamboo and drive rotary shaft section of thick bamboo pivoted drive block, its characterized in that still includes:
a plurality of first rotary connecting arms and second rotary connecting arms which are arranged around the axis of the rotary shaft cylinder; wherein the first rotary connecting arm and the second rotary connecting arm are both connected with a glass fiber reinforced plastic yarn bobbin in a rotating shaft manner; the bottom wall or the side wall of the glass fiber reinforced plastic yarn cylinder is provided with a through hole for the glass fiber reinforced plastic fiber to penetrate through;
the traction machine is arranged on one side of the feeding direction of the rotating shaft barrel and is used for drawing the glass fiber reinforced plastic in the glass fiber reinforced plastic yarn barrel to move to one side;
and the cutting machine is arranged at the tail end of the feeding direction of the tractor and is used for cutting off operation.
2. The cable protective sleeve fiberglass fiber winding pultrusion machine of claim 1, wherein: the driving block comprises a driving motor and a driving gear connected with the output end of the driving motor, and a driven gear capable of being meshed with the driving gear is arranged on one side of the rotating shaft cylinder.
3. The cable protective sleeve fiberglass fiber winding pultrusion machine of claim 2, wherein: the inner cavity of the rotary shaft barrel is suitable for a mold core tubular column to penetrate through, and the mold core tubular column is used for fixing a cable protection sleeve to be coated.
4. The cable protective sleeve fiberglass fiber winding pultrusion machine of claim 1, wherein: the number of the first rotary connecting arms and the second rotary connecting arms is 4-8, and the first rotary connecting arms and the second rotary connecting arms are uniformly arranged around the axis of the rotary shaft cylinder.
5. The cable protective sleeve fiberglass fiber winding pultrusion machine of claim 1, wherein: and one side of the feeding direction of the rotary shaft cylinder is provided with a soaking rotary disk.
6. The cable protection sleeve fiberglass fiber winding pultrusion machine of claim 5, wherein: the soaking rotating disc comprises a connecting rod connected with the rotating shaft cylinder and an immersing rotating disc connected with the connecting rod, and a soaking pool is arranged below the immersing rotating disc.
7. The cable protection sleeve fiberglass fiber winding pultrusion machine of claim 6, wherein: the immersion turntable is provided with a plurality of immersion rubber hoppers.
8. The cable protective sleeve fiberglass fiber winding pultrusion machine of claim 1, wherein: and coating supports for coating the glass fiber felt on the outer surface of the cable protection sleeve are respectively arranged on two sides of the rotary shaft cylinder.
9. The cable protective sleeve fiberglass fiber winding pultrusion machine of claim 8, wherein: the cladding support include the bracing piece, the upper end of bracing piece is equipped with the rolling roller that is used for fixed arrangement glass fiber mat.
10. The cable protective sleeve fiberglass fiber winding pultrusion machine of claim 1, wherein: and the driving block, the tractor and the cutting machine are all associated with a PLC control box for automatic control.
CN202021569991.2U 2020-07-31 2020-07-31 Glass fiber reinforced plastic fiber winding pultrusion machine for cable protective sleeve Active CN212889042U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021569991.2U CN212889042U (en) 2020-07-31 2020-07-31 Glass fiber reinforced plastic fiber winding pultrusion machine for cable protective sleeve

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021569991.2U CN212889042U (en) 2020-07-31 2020-07-31 Glass fiber reinforced plastic fiber winding pultrusion machine for cable protective sleeve

Publications (1)

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CN212889042U true CN212889042U (en) 2021-04-06

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CN202021569991.2U Active CN212889042U (en) 2020-07-31 2020-07-31 Glass fiber reinforced plastic fiber winding pultrusion machine for cable protective sleeve

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114798359A (en) * 2022-05-18 2022-07-29 浙江宏途电气科技有限公司 Impregnation method of continuous glass fiber tube

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114798359A (en) * 2022-05-18 2022-07-29 浙江宏途电气科技有限公司 Impregnation method of continuous glass fiber tube

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