CN213084382U - Pipe conveying tug assembly - Google Patents

Pipe conveying tug assembly Download PDF

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Publication number
CN213084382U
CN213084382U CN202022115586.XU CN202022115586U CN213084382U CN 213084382 U CN213084382 U CN 213084382U CN 202022115586 U CN202022115586 U CN 202022115586U CN 213084382 U CN213084382 U CN 213084382U
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CN
China
Prior art keywords
tug
mounting panel
gear
lead screw
gear wheel
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Active
Application number
CN202022115586.XU
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Chinese (zh)
Inventor
何海潮
牛谢谢
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Suzhou Jwell Machinery Co Ltd
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Suzhou Jwell Machinery Co Ltd
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Priority to CN202022115586.XU priority Critical patent/CN213084382U/en
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Publication of CN213084382U publication Critical patent/CN213084382U/en
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Abstract

The utility model relates to a tow boat subassembly is carried to tubular product, the tow boat subassembly is carried to tubular product includes the mounting panel, motor with mounting panel fixed connection, motor drive is connected with a gear wheel, gear wheel female connection has a lead screw, gear wheel upper portion is equipped with a gear cover plate, the lead screw has passed the mounting panel in proper order, gear wheel and gear cover plate, the gear wheel is connected through a pair of plane bearing and is lapped with mounting panel and gear between, lead screw upper portion is equipped with a guide pillar, the guide pillar top is equipped with a tow boat again, the up-and-down motion of lead screw drives the tow boat up-and-down motion of guide pillar and top together, simple structure sets up like this, the transform of position about the. The utility model discloses can change the tow boat height through automatically regulated, improve production efficiency.

Description

Pipe conveying tug assembly
Technical Field
The utility model belongs to tubular product processing equipment field, in particular to tug subassembly is carried to tubular product.
Background
Among the tubular product processing equipment, the below needs to have a tubular product to carry the tow boat subassembly and be used for holding the tubular product when producing and cooling when tubular product production, position control about prior art's tubular product is carried the tow boat subassembly and is needed the manual work to carry out, and because the setting of tubular product transport tow boat subassembly is in processing equipment, to manual regulation, it is troublesome to adjust, the operation is laboursome, regulating efficiency is low, today more and more popularized at modern automatic production, the tow boat subassembly is carried to the tubular product of this inefficiency can not keep up with the demand of times, consequently, it is necessary to provide a simple structure, the novel tubular product of convenient operation carries the tow boat subassembly.
SUMMERY OF THE UTILITY MODEL
In order to solve the technical problem, the utility model aims at providing a make things convenient for manual operation, simple structure's pipe conveying tug subassembly.
In order to realize the purpose of the utility model, the utility model adopts the following technical scheme:
the utility model provides a tow boat subassembly is carried to tubular product, it is including being used for mounting panel, fixed connection of fixed connection in the frame the mounting panel on motor, with gear wheel, threaded connection that the motor transmission is connected the lead screw of gear wheel inner circle, rotate and connect the tow boat at lead screw top, the mounting panel on still fixedly connected with gear closing cap, the gear wheel rotate through a pair of flat bearing and connect the mounting panel with the gear closing cap between, the lead screw pass in proper order mounting panel, gear wheel and gear closing cap, just lead screw, gear wheel and flat bearing's axial lead coincidence.
In the technical scheme, the screw rod is provided with a guide sliding groove extending along the axial direction, the mounting plate and the gear sealing cover are provided with guide keys matched with the guide sliding groove, and the guide keys are inserted into the guide sliding groove.
In the technical scheme, the upper end of the screw rod is also coaxially and fixedly connected with a guide pillar, the guide pillar is connected with a guide pillar sliding sleeve in a sliding fit manner, and the guide pillar sliding sleeve is fixedly connected with a fixed mounting plate which is used for being locked and connected on the rack.
In the technical scheme, the top of the guide pillar is fixedly connected with a tug bracket, and the tug is rotatably connected to the tug bracket through a tug shaft.
In the technical scheme, the mounting plate is also fixedly connected with a scale, and the screw rod or the guide pillar is fixedly connected with a pointer.
In the technical scheme, the mounting plate is provided with the trigger, and the screw rod or the guide post is provided with the inductive switch.
Compared with the prior art, the utility model obtain following beneficial effect: the utility model discloses an input signal of motor drives the motor and is clockwise rotation or anticlockwise rotation, and the motor drives the gear wheel that its transmission is connected, and the lead screw that the inner circle was equipped with is given with kinetic energy to the gear wheel, and the displacement about the lead screw is done to the tow boat motion that drives the lead screw top, simple structure setting like this, the simple mechanical energy transmission of application has replaced manual operation, has improved tubular product production efficiency, lets the life of tubular product transport tow boat mechanism can improve.
Drawings
FIG. 1 is a cross-sectional view of the operational relationship of a pipe transfer tug assembly in a pipe production facility;
FIG. 2 is a first schematic structural diagram of a pipe conveying tug assembly;
FIG. 3 is a cross-sectional view A-A of FIG. 2;
FIG. 4 is a second schematic structural view of a pipe conveying tug assembly;
wherein: 100. a pipe conveying tug assembly; 200. a pipe; 1. mounting a plate; 2. a motor; 3. a bull gear; 4. a pinion gear; 5. a screw rod; 6. a tug; 7. a gear cover; 8. a flat bearing; 9. a guide chute; 10. a guide key; 11. a guide post; 12. a guide pillar sliding sleeve; 13. a tug bracket; 14. a trailing axle; 15. a graduated scale; 16. a pointer; 17. a trigger; 18. an inductive switch; 19. and fixing the mounting plate. 20. And a frame.
Detailed Description
For the purpose of explaining the technical content, the structural features, the achieved objects and the effects of the present invention in detail, the following description will be made in conjunction with the embodiments and the accompanying drawings, wherein the "up" and "down" positional relationships in the present specification correspond to the up and down directions in the accompanying fig. 2, respectively.
As shown in the attached figure 1, the pipe processing equipment comprises a plurality of pipe conveying tug wheel assemblies 100, and the pipe conveying tug wheel assemblies 100 are arranged on a rack 20 through a mounting plate 1 and a fixed mounting plate 19. The tug 6 supports the pipe 200 above, and transmits the pipe 200 in the pipe processing equipment.
As shown in fig. 2 and fig. 3, the pipe conveying tug assembly 100 comprises a mounting plate 1, a motor 2 fixedly connected to the mounting plate 1, and a gearwheel 3 and a gear cover 7 arranged above the mounting plate 1. The inner ring of the big gear 3 is connected with a screw rod 5 in a threaded manner, and a tug 6 is rotatably connected above the screw rod 5.
The motor 2 is meshed with a gearwheel 3 through a pinion 4 arranged on the motor, and the gearwheel 3 is connected between the mounting plate 1 and a gear cover 7 in a steering mode through a pair of plane bearings 8. The large gear 3 is in threaded connection with a screw rod 5, the screw rod 5 sequentially penetrates through the mounting plate 2, the large gear 3 and the gear sealing cover 7, and axial leads of the screw rod 5, the large gear 3 and the plane bearing 8 are overlapped. The screw 5 is provided with a sliding guide groove 9 in the up-down direction, a guide key 10 is arranged in the sliding guide groove 9, and the mounting plate 1 and the gear sealing cover 7 are in sliding fit in the sliding guide groove 9 through the guide key 10.
The upper end of the screw rod 5 is coaxially and fixedly connected with a guide post 11, a trigger 17 is arranged at the joint of the guide post 11 and the screw rod 5, and the trigger 17 moves up and down along with the screw rod 5. A guide column sliding sleeve 12 is matched on the guide column 11 in a sliding manner, the upper part and the lower part of the guide column sliding sleeve 12 are respectively provided with a fixed mounting plate 19, and the fixed mounting plates 19 are fixedly connected on a rack 20. The upper end of the guide post 11 is fixedly connected with a tug bracket 13, and the inside of the tug bracket 13 is rotatably connected with a tug 6 through a tug shaft 14 and used for supporting the pipe 200. Because of the structural design, when the lead screw 5 displaces in a long distance, the guide post 11 can be protected in the axial direction, so that the transmission connection structure is firmer, and the transmission of kinetic energy is more stable.
As shown in fig. 4, the mounting plate 1 is fixedly connected with a trigger 17 and a graduated scale 15, the screw rod 5 or the guide post 11 is also fixedly connected with a pointer 16, and the pointer 16 points to the graduated scale 15. The fixed connection part of the screw rod 5 and the guide post 11 is provided with an inductive switch 18, when the screw rod 5 moves upwards, the inductive switch 18 is provided with an upper limit position, and when the screw rod 5 moves downwards, the inductive switch 18 is provided with a lower limit position.
The working principle of the pipe conveying tug assembly 100 is described as follows:
when the motor 2 receives an input signal and rotates clockwise, the small gear 4 of the motor 2 transmits kinetic energy to the large gear 3, the large gear 3 drives the screw rod 5 to move upwards, when the inductive switch 18 is close to the upper limit position, the inductive switch 18 sends a signal to the trigger 17, the trigger 17 sends a stop signal to the motor 2, the motor 2 stops running, and the screw rod 5 stops moving upwards.
When the motor 2 obtains another input signal, the motor 2 rotates anticlockwise, the small gear 4 of the motor 2 transmits kinetic energy to the large gear 3, the large gear 3 drives the screw rod 5 to move downwards, when the inductive switch 18 is close to the lower limit position, the inductive switch 18 sends a signal to the trigger 17, the trigger 17 sends a stop signal to the motor, the motor 2 stops running, and the screw rod 5 stops moving downwards.
When the specification of the pipe is determined, the position which needs to be adjusted can also be determined. After motor 2 obtains the input signal, let lead screw 5 drive upper portion tow boat 6 and do upwards or downstream, when the position after the motion of inductive switch 18 is close to preset position, inductive switch 18 signals for trigger 17, let trigger 17 send stop signal for motor 2, motor 2 stall, inductive switch 18 comes preset position, the position before the staff observes pointer 16 motion begins, compare the position of pointer 16 after the motion, through the scale numerical value contrast of pointer 16 fore-and-aft position, judge that the position that tow boat 6 was located this moment can the bearing need the tubular product 200 of transmission. When the height at which the tug 6 is located is the demand height, the pipe processing equipment can be enabled to start to operate, the pipe 200 is conveyed to the pipe conveying tug assembly through the traction machine (not shown in the figure), the outer pipe wall of the pipe 200 is in contact with the tug 6, and the rotating tug 6 enables the transmission of the pipe to smoothly operate. The transmission work of pipes with different specifications can be met by repeating the operation.
The foregoing shows and describes the general principles, essential features, and advantages of the invention. It will be understood by those skilled in the art that the present invention is not limited to the embodiments described above, which are given by way of illustration only, and that various changes and modifications may be made without departing from the spirit and scope of the invention as defined by the appended claims, specification and equivalents thereof.

Claims (6)

1. The utility model provides a tug subassembly is carried to tubular product which characterized in that: it is including being used for mounting panel (1), fixed connection of fixed connection in frame (20) mounting panel (1) on motor (2), with motor (2) transmission gear wheel (3), threaded connection be connected gear wheel (3) inner circle lead screw (5), rotate and connect and be in lead screw (5) top tow boat (6), mounting panel (1) on still fixedly connected with gear closing cap (7), gear wheel (3) rotate through a pair of flat bearing (8) and connect mounting panel (1) with gear closing cap (7) between, lead screw (5) pass in proper order mounting panel (1), gear wheel (3) and gear closing cap (7), just lead screw (5), the axial lead coincidence of gear wheel (3) and flat bearing (8).
2. The pipe-conveying tug assembly of claim 1 further characterized by: lead screw (5) on seted up along axial extension's direction spout (9), mounting panel (1) with gear closing cap (7) on have with direction spout (9) matched with direction key (10), direction key (10) insert in direction spout (9).
3. The pipe-conveying tug assembly of claim 1 further characterized by: the upper end of the screw rod (5) is also coaxially and fixedly connected with a guide pillar (11), the guide pillar (11) is connected with a guide pillar sliding sleeve (12) in a sliding fit manner, and the guide pillar sliding sleeve (12) is fixedly connected with a fixed mounting plate (19) which is used for being locked and connected on the rack.
4. The pipe-conveying tug assembly of claim 3 further characterized by: the top of the guide post (11) is fixedly connected with a tug bracket (13), and the tug (6) is rotatably connected on the tug bracket (13) through a tug shaft (14).
5. The pipe-conveying tug assembly of claim 3 further characterized by: the mounting plate (1) is also fixedly connected with a scale (15), and the screw rod (5) or the guide post (11) is fixedly connected with a pointer (16).
6. The pipe-conveying tug assembly of claim 5 further characterized by: the mounting plate (1) is provided with a trigger (17), and the screw rod (5) or the guide post (11) is provided with an inductive switch (18).
CN202022115586.XU 2020-09-24 2020-09-24 Pipe conveying tug assembly Active CN213084382U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022115586.XU CN213084382U (en) 2020-09-24 2020-09-24 Pipe conveying tug assembly

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022115586.XU CN213084382U (en) 2020-09-24 2020-09-24 Pipe conveying tug assembly

Publications (1)

Publication Number Publication Date
CN213084382U true CN213084382U (en) 2021-04-30

Family

ID=75613590

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022115586.XU Active CN213084382U (en) 2020-09-24 2020-09-24 Pipe conveying tug assembly

Country Status (1)

Country Link
CN (1) CN213084382U (en)

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