CN213507452U - Blank passing machine for insulating sleeve - Google Patents

Blank passing machine for insulating sleeve Download PDF

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Publication number
CN213507452U
CN213507452U CN202022427641.9U CN202022427641U CN213507452U CN 213507452 U CN213507452 U CN 213507452U CN 202022427641 U CN202022427641 U CN 202022427641U CN 213507452 U CN213507452 U CN 213507452U
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CN
China
Prior art keywords
gear
rubber roller
blank passing
motor
roller
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CN202022427641.9U
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Chinese (zh)
Inventor
尤晓强
贾中才
陈日红
李品兰
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Xuchang Yongteng New Material Technology Co ltd
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Xuchang Yongteng New Material Technology Co ltd
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Priority to CN202022427641.9U priority Critical patent/CN213507452U/en
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Abstract

The utility model discloses an insulating sleeve blank passing machine, which comprises a rubber roller A, a rubber roller B arranged below the rubber roller A in an inclined way and a hook-shaped blank passing mold arranged between the rubber roller A and the rubber roller B, wherein the input side of the rubber roller A is positioned below the blank passing mold leading-in part in an inclined way and is provided with a limit hook, and the output side of the rubber roller B is positioned below the blank passing mold expanding part in an inclined way and is provided with a photoelectric detection head; the rubber roller device is characterized by further comprising a motor and a controller, wherein the output end of the motor is provided with a gear A, the gear A is provided with a gear B through mutual meshing, the gear B is arranged above the gear A, the rotation directions of the gear A and the gear B are the same, the gear B is provided with a gear C through mutual meshing, the gear C and the rubber roller B are coaxially and fixedly arranged, the rotation directions of the gear B and the gear C are opposite, the gear B is provided with a roller A which is coaxially and fixedly connected, the rubber roller A is provided with a roller B which is coaxially and fixedly connected, and the roller A and the; the utility model has the advantages of simple structure, convenient later maintenance, high production efficiency and suitability for batch production.

Description

Blank passing machine for insulating sleeve
Technical Field
The utility model belongs to the technical field of the insulation support production, concretely relates to blank machine is led to insulation support.
Background
The blank passing machine is used for carrying out tube passing and loosening on the woven insulating sleeve so as to facilitate subsequent processes of gluing, drying and shaping the inner wall and the outer wall of the insulating sleeve. The existing blank passing machine is not reasonable in design, has a slightly complex structure and is not beneficial to batch production; in order to solve the problems, the development of an insulating sleeve blank-passing machine is necessary.
SUMMERY OF THE UTILITY MODEL
The utility model aims at overcoming the not enough of prior art, and provide a simple structure, later maintenance convenience, production efficiency height, be suitable for batch production's insulating sleeve to lead to embryo machine.
The purpose of the utility model is realized like this: an insulating sleeve blank passing machine comprises a rubber roller A, a rubber roller B arranged obliquely below the rubber roller A and a hook-shaped blank passing mold erected between the rubber roller A and the rubber roller B, wherein a limiting hook is arranged on the input side of the rubber roller A, which is positioned obliquely below a blank passing mold introduction part, and a photoelectric detection head is arranged on the output side of the rubber roller B, which is positioned obliquely below a blank passing mold expansion part; still include motor and controller, the output of motor is equipped with gear A, gear A is equipped with gear B just through intermeshing gear B locates gear A's top, gear A with gear B rotates the direction the same, gear B is equipped with gear C just through intermeshing gear C with the coaxial fixed setting of rubber roll B, gear B with gear C rotates opposite direction, gear B is equipped with coaxial fixed gyro wheel A that links to each other, rubber roll A is equipped with coaxial fixed gyro wheel B that links to each other, gyro wheel A with gyro wheel B passes through the belt and links to each other, the controller with photoelectric detection head electric connection, the controller with motor electric connection.
Preferably, still include the frame, the motor gear B rubber roll A from the bottom up locates in proper order in the frame, the motor is located the frame outside, gear B with rubber roll A locates the frame is inboard.
Further preferably, the rack is provided with a fixed disc at the outer side of the gear B, the fixed disc is positioned at one side of the gear C and is fixedly connected with a supporting rod through a fastener in a detachable manner, and the other end of the supporting rod is fixedly connected with the gear C.
Preferably, the frame is provided with a fixing plate at the outer side of the rubber roller A, the other end of the fixing plate is provided with a connecting rod, and the lower end of the connecting rod is connected with the supporting rod through a tension spring.
Further preferably, a containing frame is arranged on the input side of the frame.
Owing to adopted above technical scheme, the beneficial effects of the utility model are that: the utility model adopts the rubber roller A, the rubber roller B and the hook-shaped blank passing mold arranged between the rubber roller A and the rubber roller B, the rubber roller A rotates clockwise under the driving of the roller belt transmission mechanism, and the rubber roller B rotates anticlockwise under the driving of the gear transmission mechanism, thereby leading the insulating sleeve after being woven to smoothly pass through the blank passing mold to complete blank passing, and having simple structure and convenient later maintenance; the utility model adopts the limit hook at the input end, ensures that the insulating sleeve smoothly enters the blank passing mold after weaving is finished, and simultaneously adopts the photoelectric detection head at the output end to carry out online state detection on the insulating sleeve after blank passing is finished through the controller, thereby finding faults in time, avoiding production accidents, automatically and continuously completing blank passing, and having high production efficiency; the design structure of the utility model adopts the flow production line mode, which is convenient for integrating production after a plurality of flow production lines are arranged in parallel, further improves the production efficiency and is suitable for batch production; generally, the utility model has the advantages of simple structure, later maintenance are convenient, production efficiency is high, be suitable for batch production.
Drawings
Fig. 1 is a schematic view of the structure of the present invention.
Fig. 2 is a schematic view of the local main view structure of the present invention.
Figure 3 is the side view structure schematic diagram of the rubber roller A/rubber roller B of the utility model.
Fig. 4 is a schematic view of the overlooking structure of the utility model used in batch production after being placed side by side.
In the figure: 1. the device comprises a containing frame 2, a woven insulating sleeve 3, a motor 4, a gear A5, a roller A6, a gear B7, a belt 8, a limiting hook 9, a roller B10, a rubber roller A11, a gear C12, a rubber roller B13, a blank passing mold 14, a photoelectric detector head 15, a blank passing finished insulating sleeve 16, a support 17, a fixing plate 18, a connecting rod 19, a tension spring 20, a supporting rod 21, a fixing plate 22 and a groove.
Detailed Description
The technical scheme of the utility model is further explained in detail with the attached drawings.
As shown in fig. 1, fig. 2 and fig. 3, the utility model provides an insulating sleeve blank-passing machine, including rubber roll A10, locate rubber roll B12 below the rubber roll A10 is oblique and set up in rubber roll A10 and rubber roll B12 between the crook type blank-passing mould 13. Specifically, grooves 22 are formed in the rubber roller A and the rubber roller B, the guiding part of the blank passing mold 13 is hung in the groove 22 of the rubber roller A10, the guiding part of the blank passing mold 13 is arranged in the groove 22 of the rubber roller B on the same side of the rubber roller A10, and the groove 22 is used for limiting and moving the insulating sleeve, so that the insulating sleeve can be conveyed smoothly when passing through the blank.
The input side of the rubber roller A10 is provided with a limit hook 8 obliquely below the leading-in part of the blank passing die 13, so that the insulating sleeve 2 can be smoothly sent into the leading-in part of the blank passing die 13 after weaving is finished.
The output side of the rubber roller B12 is located at the oblique lower part of the expansion part of the blank passing die 13 and is provided with a photoelectric detection head 14, the photoelectric detection head 14 can detect the online state of the insulating sleeve 15 after the blank passing is completed, a certain pulling force is provided when the insulating sleeve 15 after the blank passing is directly and automatically sent to the subsequent gluing process, the pulling force enables the insulating sleeve 15 after the blank passing is completed to be always in the detection range of the photoelectric detection head 14, when a fault is found, the insulating sleeve 15 naturally falls under the action of gravity due to the loss of the pulling force after the blank passing is completed and does not fall into the detection range of the photoelectric detection head 14 any more, the photoelectric detection head 14 generates a feedback signal to the controller, the controller controls the motor 3 to stop rotating, the automatic continuous sending of the insulating sleeve 2 after the weaving is completed is stopped, and the maintenance of workers.
The automatic feeding device is characterized by further comprising a motor 3 and a controller (not shown in the figure), a gear A4 is arranged at the output end of the motor 3, a gear B6 is arranged on a gear A4 through mutual meshing, a gear B6 is arranged above the gear A4, the rotation directions of the gear A4 and the gear B6 are the same, a gear C11 is arranged on a gear B6 through mutual meshing, a gear C11 and a rubber roller B12 are coaxially and fixedly arranged, the rotation directions of the gear B6 and the gear C11 are opposite, a roller A5 which is coaxially and fixedly connected is arranged on a gear B6, a roller B9 which is coaxially and fixedly connected is arranged on a rubber roller A10, and the roller A5 and the roller B9 are. Specifically, the rubber roller a10 is driven by the roller a5, the roller B9 and the belt 7 to rotate in the same direction as the output rotation direction of the motor 3, the rubber roller B12 is driven by the gear a4, the gear B6 and the gear C11 to rotate in the opposite direction to the output rotation direction of the motor 3, and the rubber roller a10 and the rubber roller B12 which rotate in opposite directions enable the insulating sleeve 2 to smoothly pass through the blank passing die 13 after weaving to complete blank passing input and output.
The controller is electrically connected with the photoelectric detection head 14 and the motor 3. Specifically, the motor 2 is controlled by the controller to rotate when the insulation sleeve is detected by the photodetector head 14, and the motor 2 is controlled by the controller to stop rotating when the insulation sleeve is not detected by the photodetector head 14.
Preferably, the device further comprises a frame 16, the motor 3, the gear B6 and the rubber roller A10 are sequentially arranged on the frame 16 from bottom to top, the motor 3 is arranged on the outer side of the frame 16, and the gear B6 and the rubber roller A10 are arranged on the inner side of the frame 16. Specifically, the motor 3 is fixedly connected to the outside of the frame 16, and the gear a4 is fixedly connected to the output shaft of the motor 3 after passing through the frame 16.
Further preferably, a fixing plate 21 is disposed on the frame 16 and located outside the gear B6, a support rod 20 is detachably and fixedly connected to one side of the fixing plate 21 located on the gear C6 through a fastener, and a gear C11 is fixedly connected to the other end of the support rod 20. Specifically, the inclination angle of the support rod 20 can be adjusted by detaching the fastener, so that the relative inclination angle of the rubber roller B12 relative to the rubber roller A10 is adjusted, and smooth passing of the insulating sleeve is guaranteed.
More preferably, a fixing plate 17 is arranged on the frame 16 and located outside the rubber roller a10, a connecting rod 18 is arranged at the other end of the fixing plate 17, and the lower end of the connecting rod 18 is connected with the supporting rod 20 through a tension spring 19. Specifically, the connecting rod 18 and the tension spring 19 can be used in cooperation for adjusting the relative inclination angle of the rubber roller B12 with respect to the rubber roller A10.
Further preferably, the input side of the frame 16 is provided with a containing frame 1 for storing the braided insulating sleeve 2.
As shown in FIG. 4, the utility model discloses during the in-service use, flow production line design can make it put side by side and carry out the integrated production after, and many flow production lines can carry out the logical embryo to many insulation support simultaneously, are applicable to batch production, improve production efficiency.
The above description is only a preferred embodiment of the present invention, and is not intended to limit the present invention, and any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention should be included within the protection scope of the present invention.

Claims (5)

1. The utility model provides an insulating sleeve leads to embryo machine which characterized in that: the device comprises a rubber roller A, a rubber roller B arranged obliquely below the rubber roller A and a hook-shaped blank passing die erected between the rubber roller A and the rubber roller B, wherein a limiting hook is arranged on the input side of the rubber roller A and obliquely below the blank passing die leading-in part, and a photoelectric detection head is arranged on the output side of the rubber roller B and obliquely below the blank passing die expanding part; still include motor and controller, the output of motor is equipped with gear A, gear A is equipped with gear B just through intermeshing gear B locates gear A's top, gear A with gear B rotates the direction the same, gear B is equipped with gear C just through intermeshing gear C with the coaxial fixed setting of rubber roll B, gear B with gear C rotates opposite direction, gear B is equipped with coaxial fixed gyro wheel A that links to each other, rubber roll A is equipped with coaxial fixed gyro wheel B that links to each other, gyro wheel A with gyro wheel B passes through the belt and links to each other, the controller with photoelectric detection head electric connection, the controller with motor electric connection.
2. The insulation sleeve blank passing machine according to claim 1, characterized in that: still include the frame, the motor gear B rubber roll A from the bottom up locates in proper order in the frame, the motor is located the frame outside, gear B with rubber roll A locates the frame is inboard.
3. The insulation sleeve blank passing machine according to claim 2, characterized in that: the rack is provided with a fixed disc on the outer side of the gear B, the fixed disc is positioned on one side of the gear C and is fixedly connected with a supporting rod through a fastener in a detachable mode, and the other end of the supporting rod is fixedly connected with the gear C.
4. The insulation sleeve blank passing machine according to claim 3, characterized in that: the rubber roll A is arranged on the frame, the outer side of the rubber roll A is provided with a fixing plate, the other end of the fixing plate is provided with a connecting rod, and the lower end of the connecting rod is connected with the supporting rod through a tension spring.
5. The insulation sleeve blank passing machine according to claim 2, characterized in that: and a containing frame is arranged at the input side of the rack.
CN202022427641.9U 2020-10-28 2020-10-28 Blank passing machine for insulating sleeve Active CN213507452U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022427641.9U CN213507452U (en) 2020-10-28 2020-10-28 Blank passing machine for insulating sleeve

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022427641.9U CN213507452U (en) 2020-10-28 2020-10-28 Blank passing machine for insulating sleeve

Publications (1)

Publication Number Publication Date
CN213507452U true CN213507452U (en) 2021-06-22

Family

ID=76411317

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022427641.9U Active CN213507452U (en) 2020-10-28 2020-10-28 Blank passing machine for insulating sleeve

Country Status (1)

Country Link
CN (1) CN213507452U (en)

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