CN220029657U - Chamfering machine for steel pipe - Google Patents

Chamfering machine for steel pipe Download PDF

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Publication number
CN220029657U
CN220029657U CN202321649516.XU CN202321649516U CN220029657U CN 220029657 U CN220029657 U CN 220029657U CN 202321649516 U CN202321649516 U CN 202321649516U CN 220029657 U CN220029657 U CN 220029657U
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CN
China
Prior art keywords
feeding
plate
chamfering
groove
frame
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Active
Application number
CN202321649516.XU
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Chinese (zh)
Inventor
胡春高
何文太
杨瑞年
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Zhejiang Baofeng Special Materials Co ltd
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Zhejiang Baofeng Special Materials Co ltd
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P70/00Climate change mitigation technologies in the production process for final industrial or consumer products
    • Y02P70/10Greenhouse gas [GHG] capture, material saving, heat recovery or other energy efficient measures, e.g. motor control, characterised by manufacturing processes, e.g. for rolling metal or metal working

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Abstract

The utility model relates to a chamfering machine for steel pipes, which comprises a frame, wherein a chamfering mechanism is arranged on the frame, a feeding mechanism is arranged on the frame, the feeding mechanism comprises a storage plate and a support plate, the storage plate and the support plate are arranged on the frame, the storage plate is obliquely arranged on one side of the support plate, the lower end of the storage plate is close to the end part of the support plate, a feeding notch is formed in the lower end of the storage plate, a feeding through groove aligned with the feeding notch is formed in the support plate, a plurality of first positioning blocks with V-shaped grooves are respectively arranged on two sides of the feeding through groove on the support plate, a feeding plate capable of penetrating through the feeding through groove is arranged below the feeding through groove, a plurality of second positioning blocks with V-shaped grooves are arranged on the upper end face of the feeding plate, an electric cylinder sliding rail is arranged below the feeding plate on the frame, a lifting cylinder is arranged on a sliding seat of the electric cylinder sliding rail, and the feeding plate is connected to an output shaft of the lifting cylinder. The chamfering machine for the steel pipe can automatically finish the feeding of the steel pipe, saves labor and improves efficiency.

Description

Chamfering machine for steel pipe
Technical Field
The utility model relates to the field of steel pipe production, in particular to a chamfering machine for a steel pipe.
Background
After the steel pipe is produced, the steel pipe is required to be cut into steel pipe sections with different length and size so as to meet the use requirements of different fields, burrs can remain at two ends of the steel pipe section after cutting, and chamfering and deburring are required to be carried out at two ends of the steel pipe section.
In the prior art, for example, the utility model patent: an automatic chamfering device for the end face of a stainless steel pipe (application number: 202222440950.9) discloses a device capable of clamping and fixing the steel pipe to chamfer the steel pipe, but in the device, the manual participation is needed to finish the feeding of the steel pipe, and the labor is wasted and the efficiency is low.
The present utility model has been made in view of the above problems.
Disclosure of Invention
The utility model provides a chamfering machine for a steel pipe, which solves the problems existing in the use process of the prior art.
The technical scheme of the utility model is realized as follows:
the chamfering machine for the steel pipes comprises a frame, a chamfering mechanism is arranged on the frame, a feeding mechanism is arranged on the frame, the feeding mechanism comprises a storage plate and a supporting plate, the storage plate is arranged on the frame, the storage plate is obliquely arranged on one side of the supporting plate, the lower end of the storage plate is close to the end part of the supporting plate, a feeding notch is formed in the lower end of the storage plate, a feeding through groove aligned with the feeding notch is formed in the supporting plate, a plurality of first positioning blocks with V-shaped grooves are respectively arranged on two sides of the feeding through groove on the supporting plate, a feeding plate capable of penetrating through the feeding through groove is arranged below the feeding through groove, a plurality of second positioning blocks with V-shaped grooves are arranged on the upper end face of the feeding plate, an electric cylinder sliding rail is arranged below the feeding plate on the frame, and a lifting cylinder is arranged on a sliding seat of the electric cylinder sliding rail, and the feeding plate is connected to an output shaft of the lifting cylinder.
Preferably, the chamfering mechanism comprises a chamfering motor, a pushing cylinder and a pressing cylinder, wherein the pushing cylinder is arranged on the two sides of the supporting plate in the frame, the output shaft of the pushing cylinder is connected with a mounting plate, the chamfering motor is arranged on the mounting plate, a chamfering grinding head connected with the output shaft of the chamfering motor is aligned with a V-shaped groove of the first positioning block, and the pressing cylinder is arranged above the feeding through groove and is connected with a pressing block on the output shaft of the pressing cylinder.
Preferably, a plurality of chamfer motors are arranged on the mounting plate in parallel.
Preferably, the pressing block is made of silica gel material.
Preferably, the lifting cylinders are arranged on the sliding seat of the electric cylinder sliding rail through the connecting seat, and the two lifting cylinders are symmetrically arranged on the connecting seat.
Preferably, the cross section of storage board along width direction is U type and has placed the regulating plate of arranging along storage board length direction on the bottom plate of storage board, be connected with the regulation pole on the regulating plate, the regulation pole passes the regulating block that sets up on the curb plate of storage board, the spiro union has the adjusting bolt who passes the regulating block and support on adjusting the pole on the regulating block.
In summary, the beneficial effects of the utility model are as follows: the steel pipe chamfering machine can automatically realize the feeding of the steel pipe, and simultaneously chamfer the two ends of the steel pipe, thereby saving manpower and improving efficiency.
Drawings
In order to more clearly illustrate the embodiments of the utility model or the technical solutions of the prior art, the drawings which are used in the description of the embodiments or the prior art will be briefly described, it being obvious that the drawings in the description below are only some embodiments of the utility model, and that other drawings can be obtained according to these drawings without inventive faculty for a person skilled in the art.
FIG. 1 is a schematic diagram of the structure of the present utility model;
FIG. 2 is a schematic structural view of a feeding mechanism in the present utility model;
fig. 3 is a schematic structural view of the chamfering mechanism in the present utility model.
Detailed Description
The technical solutions of the embodiments of the present utility model will be clearly and completely described below with reference to fig. 1 to 3 of the embodiments of the present utility model, and it is obvious that the described embodiments 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.
As shown in the figure, the chamfering machine for the steel pipe comprises a frame 1, wherein a chamfering mechanism and a feeding mechanism which are matched with each other are arranged on the frame.
Specifically, the feeding mechanism comprises a storage plate 21 and a support plate 22 which are arranged on the frame 1, the storage plate 21 is obliquely arranged on one side of the support plate 22, the lower end of the storage plate 21 is close to the end part of the support plate 22, a feeding notch 211 is formed in the lower end of the storage plate 21, a feeding through groove 221 aligned with the feeding notch 211 is formed in the support plate 22, a plurality of first positioning blocks 23 with V-shaped grooves are respectively arranged on two sides of the feeding through groove 221 on the support plate 22, the V-shaped grooves of the first positioning blocks 23 on two sides of the feeding through groove 221 are aligned one by one, a feeding plate 24 capable of penetrating through the feeding through groove 221 is arranged below the feeding through groove 221, a plurality of second positioning blocks 25 with V-shaped grooves are arranged on the upper end surface of the feeding plate 24, an electric cylinder sliding rail 26 is arranged below the feeding plate 24 on the frame 1, a lifting cylinder 27 is arranged on a sliding seat of the electric cylinder sliding rail 26, and the lifting plate 24 is connected to the lifting cylinder 27.
Specifically, the chamfering mechanism comprises a chamfering motor 31, a pushing cylinder 32 and a pressing cylinder 33, wherein the pushing cylinder 32 is respectively arranged on two sides of the supporting plate 22 on the frame 1, an output shaft of the pushing cylinder 32 is connected with a mounting plate 34, the chamfering motor 31 is arranged on the mounting plate 34, a chamfering grinding head 311 connected with the output shaft of the chamfering motor 31 is aligned with a V-shaped groove of the first positioning block 23, and the pressing cylinder 33 is arranged above the feeding through groove 332 and is connected with a pressing block 35 on the output shaft of the pressing cylinder 33.
In the above embodiment, the steel pipes to be chamfered are placed on the storage plate 21, the steel pipes are arranged in a row on the storage plate 21 in a rolling manner, the steel pipe at the lowest end is located above the feeding notch 211 and abuts against the two first positioning blocks 23 closest to the storage plate 21, when feeding is performed, the lifting cylinder 27 drives the feeding plate 24 and the second positioning blocks 25 to descend, then the cylinder slide rail 26 drives the feeding plate 24 and the second positioning blocks 25 to move towards the direction close to the storage plate 21, the second positioning blocks 25 at the upper end of the feeding plate 24 are located below the feeding notch 211, then the lifting cylinder 27 drives the feeding plate 24 and the second positioning blocks 25 to ascend, the second positioning blocks 25 at the upper end of the feeding plate 24 penetrate through the feeding notch 211 to support the steel pipe located above the feeding notch 211, at the moment, the height of the steel pipe is higher than the upper end of the first positioning blocks 23, then the electric cylinder slide rail 26 drives the feeding plate 24 and the second positioning block 25 to move towards the direction far away from the material storage plate 21, so that the steel pipe on the second positioning block 25 is positioned above the V-shaped groove of the first positioning block 23, then the lifting cylinder 27 drives the feeding plate 24 and the second positioning block 25 to descend, so that the steel pipe falls into the V-shaped groove of the first positioning block 23 and is kept on the first positioning block 23, the feeding of one steel pipe is completed, then the process is repeated, so that the second positioning block 25 supports the next steel pipe and simultaneously supports the last steel pipe positioned on the first positioning block 23, the next steel pipe is fed on the first positioning block 23, and simultaneously the last steel pipe is moved to the adjacent first positioning block 23, so that the automatic feeding of the steel pipes can be completed, the steel pipe on the material storage plate 21 is moved to the first positioning block 23, after the steel pipes are fed on the first positioning blocks 23, the pressing cylinder 33 drives the pressing block 35 to move downwards to press the steel pipe positioned on the first positioning block 23, meanwhile, the two pushing cylinders 32 simultaneously drive the chamfering motors 31 on the two mounting plates 34 to move towards the two ends of the steel pipe pressed on the first positioning block 23, so that the chamfering grinding heads 211 simultaneously chamfer the two ends of the steel pipe, after chamfering is finished, the pressing cylinder 33 drives the pressing block 35 to loosen the pressing of the steel pipe, the second positioning block 25 continuously drives the steel pipe with the finished chamfering to move backwards, and chamfering operation of the steel pipe can be finished automatically. In the chamfering operation process of the steel pipe, the steel pipe can be automatically fed, chamfering operation is performed on the two ends of the steel pipe, manpower is saved, and efficiency is improved.
Preferably, a plurality of chamfering motors 31 are arranged on the mounting plate 34 in parallel, so that the chamfering motors 31 on the mounting plate 34 can simultaneously chamfer two ends of a plurality of steel pipes, the chamfering efficiency is further improved, and the length of the pressing block 35 is also required to be adaptively prolonged in order to press the plurality of steel pipes on the first positioning block 23.
Preferably, the pressing block 35 is made of silica gel, so that the surface of the steel pipe is prevented from being damaged while enough friction force exists between the pressing block 35 and the steel pipe to press and fix the steel pipe on the first positioning block 23.
Preferably, the lifting cylinders 27 are arranged on the sliding seat of the electric cylinder sliding rail 26 through the connecting seat 28, two lifting cylinders 27 are symmetrically arranged on the connecting seat, and the two symmetrically arranged lifting cylinders 27 synchronously work to drive the feeding plate 24 to lift, so that the stability of the feeding plate 24 during lifting is ensured, and the stability during feeding is ensured.
Further, the cross section of the storage plate 21 along the width direction is in a U shape, an adjusting plate 212 arranged along the length direction of the storage plate 21 is placed on the bottom plate of the storage plate 21, an adjusting rod 213 is connected to the adjusting plate 212, the adjusting rod 213 passes through an adjusting block 214 arranged on the side plate of the storage plate 21, and an adjusting bolt which passes through the adjusting block 214 and abuts against the adjusting rod 212 is screwed to the adjusting block 214.
In the above preferred embodiment, the adjusting rod 213 slides in the adjusting block 214 by loosening the adjusting bolt, and the adjusting plate 212 slides on the bottom plate of the storage plate 21, so that the width of the steel pipe can be adjusted on the storage plate 21, so as to adapt to the steel pipes with different lengths, and the steel pipes with different lengths can be orderly and rollingly arranged in a row on the storage plate 21, thereby ensuring the accuracy of the positions of the steel pipes when being fed to the first positioning block 23, and having better applicability.
The foregoing description of the preferred embodiments of the utility model is not intended to be limiting, but rather is intended to cover all modifications, equivalents, alternatives, and improvements that fall within the spirit and scope of the utility model.

Claims (6)

1. The utility model provides a beveler for steel pipe, includes frame (1), be provided with chamfering mechanism on frame (1), its characterized in that: the feeding mechanism comprises a storage plate (21) and a support plate (22) which are arranged on the frame (1), wherein the storage plate (21) is obliquely arranged on one side of the support plate (22) and the lower end of the storage plate is close to the end part of the support plate (22), a feeding notch (211) is formed in the lower end of the storage plate (21), a feeding through groove (221) aligned with the feeding notch (211) is formed in the support plate (22), a plurality of first positioning blocks (23) with V-shaped grooves are respectively arranged on two sides of the feeding through groove (221) on the support plate (22), a feeding plate (24) capable of penetrating through the feeding through groove (221) is arranged below the feeding through groove (221), a plurality of second positioning blocks (25) with V-shaped grooves are arranged on the upper end surface of the feeding plate (24), an electric cylinder sliding rail (26) is arranged below the feeding plate (24) on the frame (1), and an air cylinder lifting slide (27) is arranged on the lifting cylinder sliding seat (27).
2. A chamfering machine for steel pipes as set forth in claim 1, characterized in that: the chamfering mechanism comprises a chamfering motor (31), a pushing cylinder (32) and a pressing cylinder (33), wherein the pushing cylinder (32) is arranged on the frame (1) and positioned on two sides of the supporting plate (22), a mounting plate (34) is connected to an output shaft of the pushing cylinder (32), the chamfering motor (31) is arranged on the mounting plate (34), a chamfering grinding head (311) connected to the output shaft of the chamfering motor (31) is aligned with a V-shaped groove of the first positioning block (23), and the pressing cylinder (33) is arranged above the feeding through groove (221) and is connected with a pressing block (35) on the output shaft of the pressing cylinder (33).
3. A chamfering machine for steel pipes as set forth in claim 2, characterized in that: a plurality of chamfering motors (31) are arranged on the mounting plate (34) in parallel.
4. A chamfering machine for steel pipes as set forth in claim 3, characterized in that: the pressing block (35) is made of silica gel materials.
5. A chamfering machine for steel pipes as set forth in claim 1, characterized in that: the lifting cylinders (27) are arranged on the sliding seat of the electric cylinder sliding rail (26) through the connecting seat (28), and the two lifting cylinders (27) are symmetrically arranged on the connecting seat (28).
6. A chamfering machine for steel pipes as set forth in claim 1, characterized in that: the cross-section of storage board (21) along width direction is U type and has placed regulating plate (212) of arranging along storage board length direction on the bottom plate of storage board (21), be connected with regulation pole (213) on regulating plate (212), regulating rod (213) pass regulating block (214) that set up on the curb plate of storage board (21), the spiro union has on regulating block (214) to pass regulating block (214) and support the adjusting bolt on regulating rod (213).
CN202321649516.XU 2023-06-26 2023-06-26 Chamfering machine for steel pipe Active CN220029657U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321649516.XU CN220029657U (en) 2023-06-26 2023-06-26 Chamfering machine for steel pipe

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321649516.XU CN220029657U (en) 2023-06-26 2023-06-26 Chamfering machine for steel pipe

Publications (1)

Publication Number Publication Date
CN220029657U true CN220029657U (en) 2023-11-17

Family

ID=88721590

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321649516.XU Active CN220029657U (en) 2023-06-26 2023-06-26 Chamfering machine for steel pipe

Country Status (1)

Country Link
CN (1) CN220029657U (en)

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