CN220697822U - Device for rolling seamless tube of old pumping tube - Google Patents
Device for rolling seamless tube of old pumping tube Download PDFInfo
- Publication number
- CN220697822U CN220697822U CN202322212239.2U CN202322212239U CN220697822U CN 220697822 U CN220697822 U CN 220697822U CN 202322212239 U CN202322212239 U CN 202322212239U CN 220697822 U CN220697822 U CN 220697822U
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- wall surface
- rectangular
- rectangular plate
- plate body
- fixing block
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- 238000005086 pumping Methods 0.000 title claims abstract description 28
- 238000005096 rolling process Methods 0.000 title claims abstract description 20
- 238000005520 cutting process Methods 0.000 claims abstract description 24
- 238000010438 heat treatment Methods 0.000 description 4
- 238000000034 method Methods 0.000 description 3
- 230000008602 contraction Effects 0.000 description 2
- 238000003754 machining Methods 0.000 description 2
- 238000010586 diagram Methods 0.000 description 1
- 238000005553 drilling Methods 0.000 description 1
- 230000000694 effects Effects 0.000 description 1
- 238000005242 forging Methods 0.000 description 1
- 238000004519 manufacturing process Methods 0.000 description 1
- 239000002184 metal Substances 0.000 description 1
- 239000002994 raw material Substances 0.000 description 1
- 238000004064 recycling Methods 0.000 description 1
- 239000002699 waste material Substances 0.000 description 1
Abstract
The utility model discloses a device for rolling a seamless pipe of an old pumping pipe, which comprises a first rectangular plate body, wherein two pairs of first rectangular support columns are arranged on the lower wall surface of the first rectangular plate body, a reaming mechanism is arranged on the side wall surface of the first rectangular plate body, a first rectangular through hole is formed in the upper wall surface of the first rectangular plate body, a pumping rod limiting mechanism is arranged on the upper wall surface of the first rectangular plate body, a cutting mechanism is arranged at the upper end of the pumping rod limiting mechanism, a second rectangular plate body is arranged at one end, close to the first rectangular through hole, of the upper wall surface of the first rectangular plate body, a first circular groove is formed in the side wall surface of the second rectangular plate body, a first pipe body fixing mechanism is inserted into the first circular groove, and a second pipe body fixing mechanism is arranged at one end, close to the second rectangular plate body, of the upper wall surface of the first rectangular plate body.
Description
Technical Field
The utility model relates to the technical field of seamless tube processing, in particular to a device for rolling a seamless tube by an old oil pumping tube.
Background
The current method for manufacturing the seamless tube generally adopts deformation processing: rolling, forging, extruding, machining and deep hole drilling. The seamless pipe manufactured by deformation processing and machining firstly needs to be smelted into a spindle from a metal raw material, then the spindle is forged into a rod, then the spindle is deformed into a seamless pipe blank, and under the condition of recycling resources, the waste of the old pumping pipe can be recycled for processing the seamless pipe, so that recasting of the pumping rod can be avoided, the processing flow is reduced, and the use of the device for rolling the seamless pipe by the old pumping pipe is derived.
Disclosure of Invention
In order to achieve the above purpose, the utility model is realized by the following technical scheme: the utility model provides a device of old pumping pipe rolling seamless pipe, includes first rectangular plate body, two pairs of first rectangle support columns are installed to first rectangular plate body lower wall, install reaming mechanism on the lateral wall of first rectangular plate body, first rectangle through-hole has been seted up to first rectangular plate body upper wall, sucker rod stop gear is installed to first rectangular plate body upper wall, cutting mechanism is installed to sucker rod stop gear upper end, the second rectangular plate body is installed to first rectangular plate body upper wall's one end that is close to first rectangle through-hole, first circular recess has been seted up to second rectangular plate body lateral wall, first body fixed establishment is installed to first circular recess inside cartridge, second body fixed establishment is installed to first rectangular plate body upper wall's one end that is close to the second rectangular plate body.
Preferably, the fourth rectangular plate body of the sucker rod limiting mechanism is arranged on the side wall surface of the other end of the first rectangular plate body, the convex cylinder is inserted into the side wall surface of the fourth rectangular plate body, a fourth rectangular fixing block is arranged at one end, close to the convex cylinder, of the upper wall surface of the first rectangular plate body, semicircular through holes are formed in the side wall surface of the fourth rectangular fixing block, third rectangular fixing blocks are arranged on two sides, close to the fourth rectangular fixing block, of the upper wall surface of the first rectangular plate body, a pair of third rectangular plate bodies are arranged on the upper wall surface of the third rectangular fixing block, and the cutting mechanism is arranged on the upper wall surface of the third rectangular plate body.
Preferably, the cutting mechanism comprises a second box body, a pair of third rod bodies are installed on the lower wall surface of the second box body, a pair of lower wall surfaces of the third rod bodies are all installed on the upper wall surface of the first rectangular plate body and located on two sides of the fourth rectangular fixing block, a second rectangular through hole is formed in one side of the lower wall surface of the second box body, a cylinder is installed on the upper wall surface inside the second box body, a second motor is installed on the lower wall surface of the telescopic end of the cylinder, a cutting disc is installed on the side wall surface of the driving end of the second motor, a second sliding block is installed on the side wall surface of the other end of the second motor, a second sliding groove is formed in the side wall surface inside the second box body, and the second sliding block is installed inside the second sliding groove.
Preferably, the first pipe body fixing mechanism comprises a second cylindrical fixing block, the second cylindrical fixing block is inserted into the first circular groove, the first cylindrical fixing block is installed on the side wall surface of the second cylindrical fixing block, and the annular groove is formed in the side wall surface of the first cylindrical fixing block.
Preferably, the second pipe fixing mechanism comprises a first rectangular fixing block, the first rectangular fixing block is installed on the upper wall surface of the first rectangular plate body, one end of the upper wall surface of the first rectangular fixing block is hinged with a second rectangular fixing block, second semicircular through holes are formed in the side wall surfaces of the first rectangular fixing block and the second rectangular fixing block, a first barrel is installed on the side wall surface of the first rectangular fixing block, a pair of second barrels are installed on the side wall surface of the second rectangular fixing block, a first rod body is inserted into the second barrels, and a handle is installed on the upper wall surface of the first rod body and located between the pair of second barrels.
Preferably, the reaming mechanism comprises a first box body, the first box body is arranged on the side wall surface of a first rectangular plate body, a pair of second rectangular supporting columns are arranged on the lower wall surface of the first box body, a pair of second sliding grooves are formed in the first box body, a pair of first sliding blocks are arranged in the second sliding grooves, a pair of first motors are arranged on the opposite side wall surfaces of the first sliding blocks, a second rod body is arranged at the telescopic end of each first motor from the back, an annular fixing block is inserted into the side wall surface of the first box body, the second rod body is inserted into the annular fixing block, and thread grooves are formed in the inner wall surface of the annular fixing block and the outer wall surface of the second rod body.
Advantageous effects
The utility model provides a device for rolling a seamless pipe from an old pumping pipe, which can complete the limit of the pumping rod through a pumping rod limit mechanism in the use process, can complete cutting through a cutting mechanism at the moment, can complete heating of the cut pumping rod through a heating mechanism at the moment, can complete the fixation of the heated pipe through a first pipe fixing mechanism and a second pipe fixing mechanism, and can complete the reaming operation of the pumping rod through a reaming mechanism at the moment, so that the seamless pipe is processed.
Drawings
Fig. 1 is a schematic front view of a device for rolling a seamless tube by using an old pumping tube according to the present utility model.
FIG. 2 is a schematic view of the handle structure of an apparatus for rolling seamless tubes from old pumping tubes according to the present utility model.
Fig. 3 is a schematic view of a first cylindrical fixed block structure of an apparatus for rolling a seamless tube from an old pumping tube according to the present utility model.
Fig. 4 is a schematic view of a first motor structure of an apparatus for rolling a seamless tube from an old pumping tube according to the present utility model.
Fig. 5 is a schematic diagram of a second motor structure of an apparatus for rolling a seamless tube from an old pumping tube according to the present utility model.
In the figure: 1. a first rectangular plate body; 2. a first rectangular support column; 3. a first case; 4. a second rectangular support column; 5. a first rectangular fixed block; 6. a second rectangular fixed block; 7. a first cylinder; 8. a second cylinder; 9. a first rod body; 10. a handle; 11. a second rectangular plate body; 12. a third rectangular plate body; 13. a third rectangular fixed block; 14. a fourth rectangular fixed block; 15. a fourth rectangular plate body; 16. a male cylinder; 17. a first motor; 18. a first slider; 19. an annular fixed block; 20. a second rod body; 21. a second case; 22. a third rod body; 23. a cylinder; 24. a second motor; 25. a second slider; 26. a cutting disc; 27. a first cylindrical fixed block; 28. and a second cylindrical fixing block.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Referring to fig. 1-5, the present utility model provides a technical solution: the utility model provides a device of old pumping pipe rolling seamless pipe, includes first rectangular plate body 1, two pairs of first rectangle support column 2 are installed to first rectangular plate body 1 lower wall, install reaming mechanism on the lateral wall of first rectangular plate body 1, first rectangle through-hole has been seted up to first rectangular plate body 1 upper wall, sucker rod stop gear is installed to first rectangular plate body 1 upper wall, cutting mechanism is installed to sucker rod stop gear upper end, second rectangular plate body 11 is installed to first rectangular plate body 1 upper wall near the one end of first rectangle through-hole, first circular recess has been seted up to second rectangular plate body 11 lateral wall, first circular recess inside cartridge has first body fixed establishment, second body fixed establishment is installed to first rectangular plate body 1 upper wall near the one end of second rectangular plate body 11.
At this time, the sucker rod is inserted into the convex cylinder 16 on the side wall surface of the fourth rectangular plate body 15, at this time, the semicircular groove of the fourth rectangular fixing block 14 is used for conveying, at this time, the cylinder 23 inside the second box body 21 on the upper wall surface of the third rectangular plate body 12 is started, the second motor 24 is driven to move up and down through the expansion and contraction of the expansion end of the cylinder 23, at this time, the second slider 25 is driven to move in the inside of the chute in an auxiliary manner, at this time, the driving end of the second motor 24 rotates to drive the cutting disc 26 to complete cutting of the sucker rod through the cutting disc 26, at this time, the cut sucker rod falls through the first rectangular through hole, at this time, the second cylindrical fixing block 28 is inserted into the inside of the first circular groove, at this time, the sucker rod is fixed through the annular groove of the first cylindrical fixing block 27, at this time, the sucker rod after heating is placed inside the semicircular through hole on the upper wall surface of the first rectangular fixing block 5, the second rectangular fixing block 6 is closed, at this time, the first rod body 9 is driven to move in the inside of the chute 8 through the moving handle 10, at this time, the first rod body 9 is inserted into the inside the first cylinder body 7, the first rod body 7 is completed, the cutting disc 26 is driven to rotate through the first cylindrical motor 7, the first rod body 3 is driven to move in the inside the first cylindrical body 17 through the first cylindrical fixing block 17, at this time, the first cylindrical body 17 is driven through the inside the first cylindrical body 17, the rotating body 20 is completed, at this time, the first rotary body 20 is driven through the driving end is driven through the first rotary 3, at this time, the driving end is 20, at this time, and at least 3 is left end is completed, and can be driven through the driving end 20, and can be driven through inside the driving 3 and can be driven.
The embodiment is further configured in that the fourth rectangular plate 15 of the sucker rod limiting mechanism, the fourth rectangular plate 15 is installed on the side wall surface of the other end of the first rectangular plate 1, the convex cylinder 16 is inserted into the side wall surface of the fourth rectangular plate 15, the fourth rectangular fixing block 14 is installed at one end, close to the convex cylinder 16, of the upper wall surface of the first rectangular plate 1, a semicircular through hole is formed in the side wall surface of the fourth rectangular fixing block 14, the third rectangular fixing blocks 13 are installed on two sides, close to the fourth rectangular fixing block 14, of the upper wall surface of the first rectangular plate 1, the third rectangular plate 12 is installed on the upper wall surface of the third rectangular fixing block 13, and the cutting mechanism is installed on the upper wall surface of the third rectangular plate 12.
The embodiment is further configured in that the cutting mechanism comprises a second box 21, a pair of third rod bodies 22 are installed on the lower wall surface of the second box 21, a pair of third rod bodies 22 are installed on the upper wall surface of the first rectangular plate body 1 and located at two sides of the fourth rectangular fixing block 14, a second rectangular through hole is formed in one side of the lower wall surface of the second box 21, an air cylinder 23 is installed on the upper wall surface inside the second box 21, a second motor 24 is installed on the lower wall surface of the telescopic end of the air cylinder 23, a cutting disc 26 is installed on the side wall surface of the driving end of the second motor 24, a second sliding block 25 is installed on the side wall surface of the other end of the second motor 24, a second sliding groove is formed in the side wall surface inside the second box 21, and the second sliding block 25 is installed inside the second sliding groove.
The embodiment is further configured in that the first pipe body fixing mechanism comprises a second cylindrical fixing block 28, the second cylindrical fixing block 28 is inserted into the first circular groove, a first cylindrical fixing block 27 is installed on the side wall surface of the second cylindrical fixing block 28, and an annular groove is formed in the side wall surface of the first cylindrical fixing block 27.
The embodiment is further configured in that the second pipe fixing mechanism comprises a first rectangular fixing block 5, the first rectangular fixing block 5 is installed on the upper wall surface of the first rectangular plate body 1, one end of the upper wall surface of the first rectangular fixing block 5 is hinged with a second rectangular fixing block 6, second semicircular through holes are formed in the side wall surfaces of the first rectangular fixing block 5 and the second rectangular fixing block 6, a first cylinder 7 is installed on the side wall surface of the first rectangular fixing block 5, a pair of second cylinders 8 are installed on the side wall surface of the second rectangular fixing block 6, a first rod body 9 is inserted into the second cylinders 8, and a handle 10 is installed on the upper wall surface of the first rod body 9 and located between the pair of second cylinders 8.
The embodiment is further configured in that the reaming mechanism comprises a first box body 3, the first box body 3 is mounted on the side wall surface of the first rectangular plate body 1, a pair of second rectangular support columns 4 are mounted on the lower wall surface of the first box body 3, a pair of second sliding grooves are formed in the first box body 3, a pair of first sliding blocks 18 are mounted in the second sliding grooves, a pair of first motors 17 are mounted on the opposite side wall surfaces of the first sliding blocks 18, second rod bodies 20 are mounted at telescopic ends of the first motors 17 from the back, annular fixing blocks 19 are inserted into the side wall surfaces of the first box body 3, the second rod bodies 20 are inserted into the annular fixing blocks 19, and thread grooves are formed in the inner wall surfaces of the annular fixing blocks 19 and the outer wall surfaces of the second rod bodies 20.
The detailed connection means are known in the art, and the following mainly describes the working principle and process, and the specific work is as follows.
Examples: at this time, the sucker rod is inserted into the convex cylinder 16 on the side wall surface of the fourth rectangular plate body 15, at this time, the semicircular groove of the fourth rectangular fixing block 14 is used for conveying, at this time, the cylinder 23 inside the second box body 21 on the upper wall surface of the third rectangular plate body 12 is started, the second motor 24 is driven to move up and down through the expansion and contraction of the expansion end of the cylinder 23, at this time, the second slider 25 is driven to move in the inside of the chute in an auxiliary manner, at this time, the driving end of the second motor 24 rotates to drive the cutting disc 26 to complete cutting of the sucker rod through the cutting disc 26, at this time, the cut sucker rod falls through the first rectangular through hole, at this time, the second cylindrical fixing block 28 is inserted into the inside of the first circular groove, at this time, the sucker rod is fixed through the annular groove of the first cylindrical fixing block 27, at this time, the sucker rod after heating is placed inside the semicircular through hole on the upper wall surface of the first rectangular fixing block 5, the second rectangular fixing block 6 is closed, at this time, the first rod body 9 is driven to move in the inside of the chute 8 through the moving handle 10, at this time, the first rod body 9 is inserted into the inside the first cylinder body 7, the first rod body 7 is completed, the cutting disc 26 is driven to rotate through the first cylindrical motor 7, the first rod body 3 is driven to move in the inside the first cylindrical body 17 through the first cylindrical fixing block 17, at this time, the first cylindrical body 17 is driven through the inside the first cylindrical body 17, the rotating body 20 is completed, at this time, the first rotary body 20 is driven through the driving end is driven through the first rotary 3, at this time, the driving end is 20, at this time, and at least 3 is left end is completed, and can be driven through the driving end 20, and can be driven through inside the driving 3 and can be driven.
It is noted that relational terms such as first and second, and the like are used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions.
Claims (6)
1. The utility model provides a device of old pumping pipe rolling seamless pipe, includes first rectangular plate body (1), its characterized in that, two pairs of first rectangle support column (2) are installed to wall under first rectangular plate body (1), install reaming mechanism on the lateral wall of first rectangular plate body (1), first rectangle through-hole has been seted up to wall on first rectangular plate body (1), sucker rod stop gear is installed to wall on first rectangular plate body (1), cutting mechanism is installed to sucker rod stop gear upper end, second rectangular plate body (11) are installed to the one end that wall is close to first rectangle through-hole on first rectangular plate body (1), first circular recess has been seted up to second rectangular plate body (11) lateral wall, first circular recess inside cartridge has first body fixed establishment, second body fixed establishment is installed to the one end that wall is close to second rectangular plate body (11) on first rectangular plate body (1).
2. The device for rolling the seamless pipe by using the old pumping pipe according to claim 1, wherein the fourth rectangular plate body (15) of the pumping rod limiting mechanism is arranged on the side wall surface of the other end of the first rectangular plate body (1), the convex cylinder (16) is inserted into the side wall surface of the fourth rectangular plate body (15), a fourth rectangular fixing block (14) is arranged at one end, close to the convex cylinder (16), of the upper wall surface of the first rectangular plate body (1), semicircular through holes are formed in the side wall surface of the fourth rectangular fixing block (14), third rectangular fixing blocks (13) are arranged on two sides, close to the fourth rectangular fixing block (14), of the upper wall surface of the first rectangular plate body (1), a pair of third rectangular plate bodies (12) are arranged on the upper wall surface of the third rectangular fixing blocks (13), and the cutting mechanism is arranged on the upper wall surface of the third rectangular plate bodies (12).
3. The device for rolling the seamless pipe by using the old pumping pipe according to claim 1, wherein the cutting mechanism comprises a second box body (21), a pair of third rod bodies (22) are installed on the lower wall surface of the second box body (21), the lower wall surfaces of the third rod bodies (22) are installed on the upper wall surface of the first rectangular plate body (1) and located on two sides of a fourth rectangular fixing block (14), a second rectangular through hole is formed in one side of the lower wall surface of the second box body (21), a cylinder (23) is installed on the upper wall surface in the second box body (21), a second motor (24) is installed on the lower wall surface of the telescopic end of the cylinder (23), a cutting disc (26) is installed on the side wall surface of the driving end of the second motor (24), a second sliding block (25) is installed on the side wall surface of the other end of the second motor (24), a second sliding groove is formed in the inner side wall surface of the second box body (21), and the second sliding block (25) is installed in the second sliding groove.
4. The device for rolling seamless pipes by using old oil pumping pipes according to claim 1, wherein the first pipe body fixing mechanism comprises a second cylindrical fixing block (28), the second cylindrical fixing block (28) is inserted into the first circular groove, a first cylindrical fixing block (27) is installed on the side wall surface of the second cylindrical fixing block (28), and an annular groove is formed on the side wall surface of the first cylindrical fixing block (27).
5. The device for rolling seamless pipes by using old oil pumping pipes according to claim 1, wherein the second pipe fixing mechanism comprises a first rectangular fixing block (5), the first rectangular fixing block (5) is installed on the upper wall surface of the first rectangular plate body (1), one end of the upper wall surface of the first rectangular fixing block (5) is hinged with a second rectangular fixing block (6), second semicircular through holes are formed in the side wall surfaces of the first rectangular fixing block (5) and the second rectangular fixing block (6), a first cylinder body (7) is installed on the side wall surface of the first rectangular fixing block (5), a pair of second cylinder bodies (8) are installed on the side wall surface of the second rectangular fixing block (6), a first rod body (9) is inserted into the second cylinder bodies (8), and a handle (10) is installed on the upper wall surface of the first rod body (9) and located between the pair of second cylinder bodies (8).
6. The device for rolling the seamless pipe by using the old pumping pipe according to claim 1, wherein the reaming mechanism comprises a first box body (3), the first box body (3) is installed on the side wall surface of the first rectangular plate body (1), a pair of second rectangular supporting columns (4) are installed on the lower wall surface of the first box body (3), a pair of second sliding grooves are formed in the first box body (3), first sliding blocks (18) are installed in the pair of second sliding grooves, a first motor (17) is installed on the opposite side wall surfaces of the first sliding blocks (18), a second rod body (20) is installed at the telescopic end of the first motor (17) from the back, an annular fixed block (19) is inserted into the side wall surface of the first box body (3), and the second rod body (20) is inserted into the annular fixed block (19), and thread grooves are formed in the inner wall surface of the annular fixed block (19) and the outer wall surface of the second rod body (20).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202322212239.2U CN220697822U (en) | 2023-08-16 | 2023-08-16 | Device for rolling seamless tube of old pumping tube |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202322212239.2U CN220697822U (en) | 2023-08-16 | 2023-08-16 | Device for rolling seamless tube of old pumping tube |
Publications (1)
Publication Number | Publication Date |
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CN220697822U true CN220697822U (en) | 2024-04-02 |
Family
ID=90445605
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN202322212239.2U Active CN220697822U (en) | 2023-08-16 | 2023-08-16 | Device for rolling seamless tube of old pumping tube |
Country Status (1)
Country | Link |
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CN (1) | CN220697822U (en) |
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2023
- 2023-08-16 CN CN202322212239.2U patent/CN220697822U/en active Active
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