CN104416234A - Internal rotation type pipe beveling machine - Google Patents

Internal rotation type pipe beveling machine Download PDF

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Publication number
CN104416234A
CN104416234A CN201310396834.4A CN201310396834A CN104416234A CN 104416234 A CN104416234 A CN 104416234A CN 201310396834 A CN201310396834 A CN 201310396834A CN 104416234 A CN104416234 A CN 104416234A
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CN
China
Prior art keywords
beveling machine
directive wheel
bearing
circle
clamping device
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Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
CN201310396834.4A
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Chinese (zh)
Inventor
窦长林
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
RUIYIN STAINLESS STEEL PRODUCTS Co Ltd
Original Assignee
RUIYIN STAINLESS STEEL PRODUCTS Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Publication date
Application filed by RUIYIN STAINLESS STEEL PRODUCTS Co Ltd filed Critical RUIYIN STAINLESS STEEL PRODUCTS Co Ltd
Priority to CN201310396834.4A priority Critical patent/CN104416234A/en
Publication of CN104416234A publication Critical patent/CN104416234A/en
Pending legal-status Critical Current

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Abstract

The invention discloses an internal rotation type pipe beveling machine comprising a clamping device, a supporting device, a base, a length adjustment mechanism and a rotary bevel cutting mechanism. The length adjustment mechanism is connected between the base and the rotary bevel cutting mechanism and used for adjusting the length of a pipe to be machined, a nonskid felt us arranged on a clamping pad on the inner side of the clamping device, a tightening device of the clamping device is connected on a lower clamp ring, a clamping driving device is connected with the tightening device and drives the same, a cutting power device is connected with and drives a disc and a rotating shaft, a group of parallel sliding rails is fixed on the disc, two ends of each parallel sliding rail are connected with a cutter and a guide wheel respectively, the cutting power device drives the rotating shaft to perform axial feeding and drives the cutters to cut pipe bevels, and the guide wheels are used for performing radial feeding. The internal rotation type pipe beveling machine integrates the clamping and bevel cutting devices and is simple in structure, convenient to operate, small in size and space saving, and quality and efficiency of steel pipe bevel machining are improved.

Description

A kind of inner-rotary type pipeline beveling machine
Technical field
The present invention relates to pipeline slope cutting machine field, particularly relate to a kind of inner-rotary type pipeline beveling machine.
Background technology
At present, the method of pipe grooving machine generally adopts lathe grinding processing or oxyacetylene metal-cutting and hand operated grinding wheel grinding, the former bulky, Heavy Weight, only be applicable to fixed location processing, fixed location processing is only adapted at for Large Diameter Pipeline steel pipe, but its processing surface quality poor, effect is low, and workpiece to be machined be heated after metal lattice can change.Corresponding material internal soundness changes, and causes workpiece heatproof, withstand voltage properties to reduce.
Summary of the invention
The object of the invention is the deficiency existed to solve above-mentioned background technology, provide a kind of structure simple, operating efficiency is high, machined surface quality, conveniently can install the pipe cutting groove machine of processing, can carry out cut processing and cut-out to large diameter steel pipe.
The technical solution adopted in the present invention is: a kind of inner-rotary type pipeline beveling machine, and described beveling machine includes clamping device, bracing or strutting arrangement, base, described clamping device, bracing or strutting arrangement is linked in sequence respectively on base, and described beveling machine also includes length adjustment mechanism, groove rotary cutting body, described length adjustment mechanism is connected between base and groove rotary cutting body, and described length adjustment mechanism regulates required process pipeline length, and described clamping device includes driving clamping device, upper fixture circle, lower clamping ring, clamp pad, slipmat, tightening device, described lower clamp circle is fixed on base, described upper fixture circle is connected also operationally pipeline described in fastening with lower clamp circle, described clamp pad is fixed on inside fixture circle and lower clamp circle, described clamp pad arranges anti-skidding felt, described tightening device is connected on lower clamp circle, and described driving clamping device connects and drives tightening device, and described groove rotary cutting body includes cutting propelling plant, rotating shaft, parallel sliding track, cutter, directive wheel, disk, described cutting propelling plant connects and driver plate and rotating shaft, described disk is fixed with one group of parallel sliding track, described parallel sliding track two ends are connected to cutter and directive wheel, described cutting propelling plant drive shaft axial feed also drives cutter to cut described tube groove, described directive wheel radial feed.
Described length adjustment mechanism includes length adjustment motor, sliding support, and described length adjustment motor connects and drives sliding support, and described sliding support is connected between the slide rail of base and the slide rail of groove rotary cutting body and slides.
Described cutter comprises vertical cutter, horizontal cutter, tool holder, and described vertical cutter is two panels, and described horizontal cutter is a slice.
Described groove rotary cutting body also includes bearing, axle sleeve, disk reinforcement, described bearing) bottom surface leaves chute, described sliding support is slidable adjustment duct length in this chute, described bearing is provided with cutting propelling plant, described axle sleeve connects bearing and disk, pullover rotating shaft in described axle sleeve, described disk reinforcement connecting bushing and disk, described disk reinforcement strengthens disk intensity.
Described groove rotary cutting body also includes directive wheel bearing, directive wheel adjusting bolt, described directive wheel bearing connects and supporting guide wheel, described directive wheel adjusting bolt connects directive wheel bearing, and described directive wheel adjusting bolt regulates the axial feed size of directive wheel.
Described groove rotary cutting body also includes screw mandrel, screw mandrel bearing, clamping bearing, tool holder, described screw mandrel is fixed on disk by screw mandrel bearing, described screw mandrel is positioned at parallel sliding track center and which is provided with two clamping bearings supporting with its screw thread, and described clamping bearing is equipped with directive wheel bearing and tool holder respectively.
Along the circumferential direction uniform the anti-skidding felt set up in described clamping device, described anti-skidding felt is flexible material and compressible, and described anti-skidding felt is bonded in clamp pad.
The upper fixture circle of described clamping device is connected by rotating shaft with lower clamp circle, the folding around the shaft of described lower clamp circle.
Described tightening device comprises bush support, push rod, gear, described top stem casing is in bush support, described gear is connected on fixture circle and lower clamp circle, and described driving clamping device drives push rod, and described push rod and gears meshing drive fixture circle clamp or unclamp described pipeline.
Described bracing or strutting arrangement comprises sloped footing and strut, and described strut is connected in sloped footing both ends of the surface, and described sloped footing is two vertex of a cone contacts and symmetrical fixed support, and described sloped footing supports process pipeline, described strut auxiliary clamp pipeline.
Compared with prior art, the invention has the beneficial effects as follows:
1. collect clamping device and cut slope and be installed on one, achieve the automation of steel pipe punching press beveling machine;
2. apparatus structure is simple, easy to operate, the disposable cutting completing steel pipe internal groove and outer groove;
3. device volume is little, takies processing space little, saves space;
4. improve steel pipe cut crudy and efficiency.
Accompanying drawing explanation
Fig. 1 is a kind of isometric view of inner-rotary type pipeline beveling machine;
Fig. 2 is a kind of front view of inner-rotary type pipeline beveling machine;
Fig. 3 is a kind of top view of inner-rotary type pipeline beveling machine;
Fig. 4 is a kind of rotating circular disk sectional view of inner-rotary type pipeline beveling machine.
Detailed description of the invention
In order to deepen the understanding of the present invention, below in conjunction with drawings and Examples, the present invention is further described, and this embodiment, only for explaining the present invention, not forming protection scope of the present invention and limiting.
As Figure 1-4, the present invention is a kind of inner-rotary type pipeline beveling machine, described beveling machine includes clamping device C, bracing or strutting arrangement D, base 21, described clamping device C, bracing or strutting arrangement D is linked in sequence respectively on base 21, described beveling machine also includes length adjustment mechanism A, groove rotary cutting body B, described length adjustment mechanism A is connected between base 21 and groove rotary cutting body B, described length adjustment mechanism A regulates required process pipeline length, described clamping device C includes driving clamping device 20, upper fixture circle 13, lower clamping ring 13a, clamp pad 15, slipmat 14, tightening device 18a, described lower clamp circle 13a is fixed on base 21, described upper fixture circle 13 is connected also operationally pipeline described in fastening with lower clamp circle 13a, described clamp pad 15 is fixed on inside fixture circle 13 and lower clamp circle 13a, described clamp pad 15 arranges anti-skidding felt 14, described tightening device 18a is connected on lower clamp circle 13a, described driving clamping device 20 connects and drives tightening device 18a, described groove rotary cutting body B includes cutting propelling plant 3, rotating shaft 5d, parallel sliding track 6, cutter 9a, directive wheel 12, disk 5, described cutting propelling plant 3 connects and driver plate 5a and rotating shaft 5d, described disk 5 is fixed with one group of parallel sliding track 6, described parallel sliding track 6 two ends are connected to cutter 8 and directive wheel 12, described cutting propelling plant 3 drive shaft 5d axial feed also drives cutter 6 to cut described tube groove, described directive wheel 12 radial feed.
Length adjustment mechanism A comprises length adjustment power 1, sliding support 2, and described length adjustment power 1 connects and drives sliding support 2, and described sliding support 2 is connected between the slide rail of base 21 and the slide rail of groove rotary cutting body B and slides.
Cutter 8 comprises vertical cutter 9, horizontal cutter 10, tool holder 8a, and described vertical cutter 9 is two panels, and described horizontal cutter 10 is a slice.
Groove rotary cutting body B also includes bearing 4, axle sleeve 5a, disk reinforcement 5e, chute is left in described bearing 4 bottom surface, described sliding support 2 slidable adjustment duct length in this chute, described bearing 4 is provided with cutting propelling plant 3, described axle sleeve 5a connects bearing 4 and disk 5, pullover rotating shaft 5d in described axle sleeve 5a, described disk reinforcement 5e connecting bushing 5a and disk 5, described disk reinforcement 5e strengthens disk 5 intensity.
Groove rotary cutting body B also includes directive wheel bearing 11, directive wheel adjusting bolt 5f, described directive wheel bearing 11 connects and supporting guide wheel 12, described directive wheel adjusting bolt 5f connects directive wheel bearing 11, and described directive wheel adjusting bolt 5f regulates the axial feed size of directive wheel 12.
Groove rotary cutting body B also includes screw mandrel 5b, screw mandrel bearing 5c, clamping bearing 7, tool holder 8, described screw mandrel 5b is fixed on disk 5 by screw mandrel bearing 5c, described screw mandrel 5b is positioned at parallel sliding track 6 center and which is provided with two clamping bearings 7 supporting with its screw thread, and described clamping bearing 7 is equipped with directive wheel bearing 11 and tool holder 8a respectively.
Along the circumferential direction uniformly in clamping device C set up 4 anti-skidding felts 14, described anti-skidding felt 14 is flexible material and compressible, described anti-skidding felt 14 is bonded in clamp pad 15, and the upper fixture circle 13 of clamping device C is connected by rotating shaft 16 with lower clamp circle 13a, described lower clamp circle 13a 16 foldings around the shaft.
Tightening device 18a comprises bush support 18, push rod 19, gear 17, described push rod 19 is enclosed within bush support 18, described gear 17 is connected on fixture circle 13 and lower clamp circle 13a, described driving clamping device 20 drives push rod 19, and described push rod 19 engages with gear 17 and drives fixture circle 13 clamp or unclamp described pipeline.
Bracing or strutting arrangement D comprises sloped footing 22 and strut 23, described strut 23 is connected in sloped footing 22 both ends of the surface, described sloped footing 22 is two vertex of a cone contacts and symmetrical fixed support, and described sloped footing 22 supports process pipeline, described strut 23 auxiliary clamp pipeline.
Beveling machine before use, directive wheel 12 regulates location by directive wheel adjusting bolt 5f, and use length adjustment power 1 to drive length adjustment mechanism A to adapt to pipeline clamping length, and clamping device C is started by it or electronic driving clamping device 20 drives fixture circle 13 in its tightening device 18a realization close or cover, with clamping pipe and to its processing.
During beveling machine work, use directive wheel 12 to guide machine direction, utilize cutting propelling plant 3 to drive the pipeline of groove rotary cutting body B to processing carry out axial feed and cut tube groove.
Compared with prior art, the invention has the beneficial effects as follows:
1. collect clamping device and cut slope and be installed on one, achieve the automation of steel pipe punching press beveling machine;
2. apparatus structure is simple, easy to operate, the disposable cutting completing steel pipe internal groove and outer groove;
3. device volume is little, takies processing space little, saves space;
4. improve steel pipe cut crudy and efficiency.
What embodiments of the invention were announced is preferred embodiment, but is not limited thereto, those of ordinary skill in the art; very easily according to above-described embodiment, understand spirit of the present invention, and make different amplifications and change; but only otherwise depart from spirit of the present invention, all in protection scope of the present invention.

Claims (10)

1. an inner-rotary type pipeline beveling machine, described beveling machine includes clamping device (C), bracing or strutting arrangement (D), base (21), described clamping device (C), bracing or strutting arrangement (D) is linked in sequence respectively on base (21), it is characterized in that: described beveling machine also includes length adjustment mechanism (A), groove rotary cutting body (B), described length adjustment mechanism (A) is connected between base (21) and groove rotary cutting body (B), described length adjustment mechanism (A) regulates required process pipeline length, described clamping device (C) includes driving clamping device (20), upper fixture circle (13), lower clamping ring (13a), clamp pad (15), slipmat (14), tightening device (18a), described lower clamp circle (13a) is fixed on base (21), described upper fixture circle (13) is connected also operationally pipeline described in fastening with lower clamp circle (13a), described clamp pad (15) is fixed on fixture circle (13) and lower clamp circle (13a) inner side, described clamp pad (15) is arranged anti-skidding felt (14), described tightening device (18a) is connected on lower clamp circle (13a), described driving clamping device (20) connects and drives tightening device (18a), described groove rotary cutting body (B) includes cutting propelling plant (3), rotating shaft (5d), parallel sliding track (6), cutter (9a), directive wheel (12), disk (5), described cutting propelling plant (3) connects and driver plate (5a) and rotating shaft (5d), described disk (5) is fixed with one group of parallel sliding track (6), described parallel sliding track (6) two ends are connected to cutter (8) and directive wheel (12), described cutting propelling plant (3) drive shaft (5d) axial feed also drives cutter (6) to cut described tube groove, described directive wheel (12) radial feed.
2. a kind of inner-rotary type pipeline beveling machine according to claim 1, it is characterized in that: described length adjustment mechanism (A) includes length adjustment motor (1), sliding support (2), described length adjustment motor (1) connects and drives sliding support (2), and described sliding support (2) is connected between the slide rail of base (21) and the slide rail of groove rotary cutting body (B) and slides.
3. a kind of inner-rotary type pipeline beveling machine according to claim 1, it is characterized in that: described cutter (8) comprises vertical cutter (9), horizontal cutter (10), tool holder (8a), described vertical cutter (9) is two panels, and described horizontal cutter (10) is a slice.
4. a kind of inner-rotary type pipeline beveling machine according to claim 1, it is characterized in that: described groove rotary cutting body (B) also includes bearing (4), axle sleeve (5a), disk reinforcement (5e), chute is left in described bearing (4) bottom surface, described sliding support (2) slidable adjustment duct length in this chute, described bearing (4) is provided with cutting propelling plant (3), described axle sleeve (5a) connects bearing (4) and disk (5), pullover rotating shaft (5d) in described axle sleeve (5a), described disk reinforcement (5e) connecting bushing (5a) and disk (5), described disk reinforcement (5e) strengthens disk (5) intensity.
5. a kind of inner-rotary type pipeline beveling machine according to claim 1, it is characterized in that: described groove rotary cutting body (B) also includes directive wheel bearing (11), directive wheel adjusting bolt (5f), described directive wheel bearing (11) connects and supporting guide wheel (12), described directive wheel adjusting bolt (5f) connects directive wheel bearing (11), and described directive wheel adjusting bolt (5f) regulates the axial feed size of directive wheel (12).
6. a kind of inner-rotary type pipeline beveling machine according to claim 1, it is characterized in that: described groove rotary cutting body (B) also includes screw mandrel (5b), screw mandrel bearing (5c), clamping bearing (7), tool holder (8), described screw mandrel (5b) is fixed on disk (5) by screw mandrel bearing (5c), described screw mandrel (5b) is positioned at parallel sliding track (6) center and which is provided with two clamping bearings (7) supporting with its screw thread, and described clamping bearing (7) is equipped with directive wheel bearing (11) and tool holder (8a) respectively.
7. a kind of inner-rotary type pipeline beveling machine according to claim 1, it is characterized in that: along the circumferential direction uniformly in described clamping device (C) set up 4 anti-skidding felts (14), described anti-skidding felt (14) is compressible for flexible material, and described anti-skidding felt (14) is bonded in clamp pad (15).
8. a kind of inner-rotary type pipeline beveling machine according to claim 1, it is characterized in that: the upper fixture circle (13) of described clamping device (C) is connected by rotating shaft (16) with lower clamp circle (13a), (16) folding around the shaft of described lower clamp circle (13a).
9. a kind of inner-rotary type pipeline beveling machine according to claim 1, it is characterized in that: described tightening device (18a) comprises bush support (18), push rod (19), gear (17), described push rod (19) is enclosed within bush support (18), described gear (17) is connected on fixture circle (13) and lower clamp circle (13a), described driving clamping device (20) drives push rod (19), and described push rod (19) engages with gear (17) and drives fixture circle (13) clamp or unclamp described pipeline.
10. a kind of inner-rotary type pipeline beveling machine according to claim 1, it is characterized in that: described bracing or strutting arrangement (D) comprises sloped footing (22) and strut (23), described strut (23) is connected in sloped footing (22) both ends of the surface, described sloped footing (22) is two vertex of a cone contacts and symmetrical fixed support, described sloped footing (22) supports process pipeline, described strut (23) auxiliary clamp pipeline.
CN201310396834.4A 2013-09-04 2013-09-04 Internal rotation type pipe beveling machine Pending CN104416234A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201310396834.4A CN104416234A (en) 2013-09-04 2013-09-04 Internal rotation type pipe beveling machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201310396834.4A CN104416234A (en) 2013-09-04 2013-09-04 Internal rotation type pipe beveling machine

Publications (1)

Publication Number Publication Date
CN104416234A true CN104416234A (en) 2015-03-18

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106180898A (en) * 2016-07-28 2016-12-07 曹淅 Beveling machine
CN110090970A (en) * 2019-06-14 2019-08-06 福建晋江热电有限公司 A kind of beveling machine
CN112756986A (en) * 2021-01-30 2021-05-07 河南新开源石化管道有限公司 Cutting device for inner and outer grooves of pipeline
CN114799654A (en) * 2022-06-29 2022-07-29 常州市科怡机械有限公司 Intelligent robot beveling machine

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106180898A (en) * 2016-07-28 2016-12-07 曹淅 Beveling machine
CN110090970A (en) * 2019-06-14 2019-08-06 福建晋江热电有限公司 A kind of beveling machine
CN110090970B (en) * 2019-06-14 2023-10-20 福建晋江热电有限公司 Beveling machine
CN112756986A (en) * 2021-01-30 2021-05-07 河南新开源石化管道有限公司 Cutting device for inner and outer grooves of pipeline
CN112756986B (en) * 2021-01-30 2024-03-08 河南新开源石化管道有限公司 Cutting device for inner and outer grooves of pipeline
CN114799654A (en) * 2022-06-29 2022-07-29 常州市科怡机械有限公司 Intelligent robot beveling machine

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Application publication date: 20150318

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