CN215614300U - Hydraulic system of automatic pipe extruding machine - Google Patents
Hydraulic system of automatic pipe extruding machine Download PDFInfo
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- CN215614300U CN215614300U CN202121891344.8U CN202121891344U CN215614300U CN 215614300 U CN215614300 U CN 215614300U CN 202121891344 U CN202121891344 U CN 202121891344U CN 215614300 U CN215614300 U CN 215614300U
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Abstract
The utility model discloses a hydraulic system of an automatic pipe extruding machine, wherein the automatic pipe extruding machine is provided with a driving shaft group, an auxiliary shaft group and a driving assembly, and comprises a base, wherein the driving shaft group, the auxiliary shaft group and the driving assembly are arranged on the base; the hydraulic cylinder is arranged on the top surface of the base, arranged on the bottom surface of the auxiliary shaft group and used for pushing the auxiliary shaft group to move up and down; and the hydraulic station is arranged on the top surface of the base and connected with the hydraulic cylinder for driving the hydraulic cylinder. According to the automatic pipe extruding machine, the hydraulic cylinder is supplied with energy through the hydraulic station, and the auxiliary shaft group of the automatic pipe extruding machine is pushed to rapidly move to the clamping pipeline, so that the working efficiency of the automatic pipe extruding machine is greatly improved, and the automatic operation of the pipe extruding machine is realized. The hydraulic power supply has higher reliability, and ensures that the convex pipe operation has good effect.
Description
Technical Field
The utility model relates to the technical field of pipe extruding machines, in particular to a hydraulic system of an automatic pipe extruding machine.
Background
A pipeline is a device for transporting a gas, liquid or fluid with solid particles, connected by pipes, pipe couplings, valves, etc. In the production process of the pipeline, pipe protruding work is sometimes required to be carried out on the surface of the pipeline, and a large pipe protruding machine is often adopted to carry out the pipe protruding work on the pipeline in the prior art. The large-scale convex pipe machine has the problems of large volume and inconvenient transportation.
Therefore, the Chinese utility model patent CN212917156U discloses a hand formula protruding pipe machine, including work frame, pipeline and balanced support device, the right side of work frame is rotated and is connected with the rotation handle, the left side of rotating the handle and the right side fixed connection of drive gear, the top of work frame is rotated and is connected with the driven shaft, the surface fixed connection of driven shaft has the cam, the left side fixed connection at work frame top has the fixed block, the utility model relates to protruding pipe equipment technical field. This hand formula protruding pipe machine, through the setting of cross handle and sliding block for protruding pipe machine is when using, can be through rotatory cross handle, and a screw rod drives the concave wheel and reciprocates the clearance of adjusting with the cam and clip the pipeline, and the distance between concave wheel and the cam can be adjusted from top to bottom, satisfies the processing demand of the pipeline of different wall thicknesses, has reduced the production and processing degree of difficulty of the protruding pipe of pipeline, has reduced the pipeline simultaneously and has added the rejection rate man-hour, and has reduced the volume of protruding pipe machine.
But above-mentioned scheme uses cross handle and sliding block to press from both sides tight structure for hand is power, through hand cross handle, drives the concave wheel by the screw rod and reciprocates, thereby adjust the distance between concave wheel and the cam, satisfy the processing demand of the pipeline of different wall thicknesses, rotate cross handle many times usually, carry out the lift of slider, waste time and energy, the reliability of helicitic texture is relatively poor simultaneously, receives vibrations easily at the bulge pipe in-process and takes place the lax, influences the bulge pipe effect.
In view of this, it is urgently needed to improve the clamping structure of the pipe extruding machine in the prior art so as to improve the working efficiency of the automatic pipe extruding machine and improve the pipe extruding effect.
SUMMERY OF THE UTILITY MODEL
The technical problem to be solved by the utility model is that the clamping structure of the existing automatic pipe extruding machine is low in adjusting efficiency and poor in reliability.
In order to solve the technical problems, the technical scheme adopted by the utility model is as follows:
the utility model provides an automatic convex tube machine's hydraulic clamping system, automatic convex tube machine is last to be equipped with initiative axle group, supplementary axle group and drive assembly, includes:
the driving shaft group, the auxiliary shaft group and the driving assembly are arranged on the base;
the hydraulic cylinder is arranged on the top surface of the base, arranged on the bottom surface of the auxiliary shaft group and used for pushing the auxiliary shaft group to move up and down;
and the hydraulic station is arranged on the top surface of the base and connected with the hydraulic cylinder for driving the hydraulic cylinder.
In the above aspect, preferably, the base includes a base panel, and further includes:
the supporting legs are arranged on the bottom surfaces of the four corners of the base panel;
the object placing plate is arranged on the base panel and is parallel to the base panel; the supporting legs penetrate through the object placing plate.
In the above scheme, preferably, the landing leg is a telescopic landing leg, and comprises an upper landing leg and a lower landing leg, the upper landing leg is a hollow pipe body, the lower landing leg is inserted into the upper landing leg, the lower landing leg is provided with threads, and the lower landing leg is locked with the upper landing leg through a locking nut and the threads.
In the above solution, preferably, a foot is provided on a bottom surface of the lower leg, and the foot is detachably mounted on the lower leg.
In the above scheme, preferably, the base panel is provided with a hydraulic hole and a hydraulic pipe groove communicated with the hydraulic hole, and the hydraulic cylinder and the hydraulic station are arranged on the hydraulic hole and connected with the hydraulic pipe groove through the hydraulic hole.
In the above aspect, preferably, the hydraulic hole is provided on a top surface of the base panel, and the hydraulic pipe groove is provided on a bottom surface of the base panel.
In the above aspect, preferably, the hydraulic cylinder is provided in plurality in parallel.
In the above scheme, preferably, a main board and a rear vertical board are arranged on the top surface of the base panel and used for mounting the driving shaft set;
the automatic pipe extruding machine further comprises a driving assembly, and the driving assembly is installed on the rear end face of the rear vertical plate through an installation seat.
In the above scheme, preferably, the driving assembly includes a motor and a reduction gearbox, the base panel is provided with a motor groove, the motor is arranged in the motor groove and is mounted on the rear vertical plate through the reduction gearbox and the mounting seat.
In the above aspect, preferably, the storage plate is welded and fixed to the upper leg.
Compared with the prior art, the hydraulic system of the automatic pipe extruding machine provided by the utility model supplies energy to the hydraulic cylinder through the hydraulic station, and pushes the auxiliary shaft group of the automatic pipe extruding machine to move quickly, so that the working efficiency of the automatic pipe extruding machine is greatly improved, and the automatic operation of the pipe extruding machine is realized.
Drawings
FIG. 1 is a perspective view of a hydraulic system of an automatic pipe bender of the present invention;
FIG. 2 is a rear view of the hydraulic system of the automatic pipe bender of the present invention;
FIG. 3 is a perspective view of the base of the present invention;
FIG. 4 is a bottom view of the base of the present invention.
The correspondence between the names and reference numbers of the components in fig. 1 to 4 is as follows:
the driving shaft group 1, the auxiliary shaft group 2, the driving assembly 3, the base 4, the hydraulic cylinder 5, the hydraulic station 6, the base panel 41, the supporting leg 42, the object placing plate 43, the hydraulic hole 411, the hydraulic pipe groove 412, the main plate 44, the rear vertical plate 45, the motor 31, the reduction box 32, the motor groove 413, the mounting seat 33, the upper supporting leg 421, the lower supporting leg 422, the locking nut 423 and the supporting leg 424.
Detailed Description
The utility model provides a hydraulic system of an automatic pipe extruding machine, which pushes an auxiliary shaft group to move up and down through a hydraulic station and a hydraulic cylinder, and is matched with a driving shaft group to extrude a pipe, so that the hydraulic system has higher reliability, and the working efficiency and the pipe extruding effect of the pipe extruding machine are improved. The utility model is described in detail below with reference to the drawings and the detailed description.
As shown in fig. 1 and 2, the automatic pipe extruding machine provided by the utility model is provided with a driving shaft group 1, an auxiliary shaft group 2 and a driving assembly 3, and the hydraulic system of the automatic pipe extruding machine comprises a base 4, a hydraulic cylinder 5 and a hydraulic station 6. The driving shaft group 1, the auxiliary shaft group 2 and the driving assembly 3 are arranged on the base 4.
The base 4 comprises a base panel 41, supporting legs 42 and a storage plate 43, a hydraulic hole 411 and a hydraulic pipe groove 412 are arranged on the base panel 41, the hydraulic hole 411 is arranged on the top surface of the base panel 41, the hydraulic pipe groove 412 is arranged on the bottom surface of the base panel 41, and the hydraulic hole 411 is communicated with the hydraulic pipe groove 412.
The hydraulic cylinder 5 and the hydraulic station 6 are arranged on the top surface of the base panel 41, the hydraulic cylinder 5 and the hydraulic station 6 are arranged above the hydraulic hole 411, and a hydraulic pipe passes through the hydraulic hole 411 and is arranged in the hydraulic pipe groove 412 to connect the hydraulic cylinder 5 and the hydraulic station 6. The pneumatic cylinder 5 is a plurality of that set up side by side, and pneumatic cylinder 5 sets up in the below of auxiliary shaft group 2 for promote auxiliary shaft group 2 and reciprocate, with the cooperation of initiative shaft group 1 and carry out the protruding pipe operation.
A main plate 44 and a rear vertical plate 45 are further arranged on the top surface of the base panel 41 and used for installing the driving shaft group 1 and the auxiliary shaft group 2, and the auxiliary shaft group 2 is slidably arranged on the main plate 44. The driving assembly 3 comprises a motor 31 and a reduction gearbox 32, a motor groove 413 is formed in the base panel 41, the motor 31 is arranged in the motor groove 413, is fixedly installed on the rear vertical plate 45 through the installation seat 33, and is connected with the driving shaft group 1 through the reduction gearbox 32.
The storage plate 43 is provided on the base panel 41 in parallel with the base panel 41. The supporting leg 42 is disposed through the object placing plate 43, and the object placing plate 43 is welded and fixed to the upper supporting leg 421.
The working process of the utility model is as follows:
when the pipe is extruded, the pipeline that needs the pipe is sleeved on the driving shaft group 1, the hydraulic pipes of the hydraulic station 6 and the hydraulic cylinder 5 pass through the hydraulic hole 411 and are arranged in the hydraulic pipe groove 412, the hydraulic station 6 supplies energy to the hydraulic cylinder 52 through the hydraulic pipes, and the auxiliary shaft group 2 is pushed to move up and down to be matched with the driving shaft group 1 to clamp the pipeline. The motor 31 drives the driving shaft group 1 to extrude the pipeline. Compared with the prior art, the hydraulic system of the automatic pipe extruding machine provided by the utility model supplies energy to the hydraulic cylinder through the hydraulic station arranged on the base, pushes the auxiliary shaft group to move up and down, is matched with the driving shaft group to extrude the pipe, does not need to manually adjust the auxiliary shaft group, and greatly improves the working efficiency of the pipe extruding machine. The hydraulic system has higher reliability, and can not be loosened due to the fact that the pipeline needing to be subjected to the convex pipe operation is too thick or the pipe diameter is large, so that the effect of the convex pipe is prevented from being influenced.
In the scheme, the supporting legs of the base are telescopic supporting legs, the lower supporting leg is provided with threads and is locked with the upper supporting leg through the threads and the locking nut, and the height of the base can be conveniently adjusted according to construction requirements; still be equipped with on the landing leg and put the thing board, conveniently place debris such as pipeline, improve the convenience of construction.
In this scheme, be equipped with the stabilizer blade on the bottom surface of lower landing leg, stabilizer blade detachably installs under on the landing leg, and the stabilizer blade can be changed for the universal wheel to improve automatic protruding pipe machine's mobility, make things convenient for automatic protruding pipe machine's turnover.
The present invention is not limited to the above-mentioned preferred embodiments, and any structural changes made under the teaching of the present invention shall fall within the scope of the present invention, which is similar or similar to the technical solutions of the present invention.
Claims (10)
1. The utility model provides an automatic convex pipe machine's hydraulic system is equipped with initiative axle group, supplementary axle group and drive assembly on the automatic convex pipe machine, its characterized in that includes:
the driving shaft group, the auxiliary shaft group and the driving assembly are arranged on the base;
the hydraulic cylinder is arranged on the top surface of the base, arranged on the bottom surface of the auxiliary shaft group and used for pushing the auxiliary shaft group to move up and down;
and the hydraulic station is arranged on the top surface of the base and connected with the hydraulic cylinder for driving the hydraulic cylinder.
2. The automated pipe bender hydraulic system as claimed in claim 1, wherein said base includes a base panel, further comprising:
the supporting legs are arranged on the bottom surfaces of the four corners of the base panel;
the object placing plate is arranged on the base panel and is parallel to the base panel; the supporting legs penetrate through the object placing plate.
3. The hydraulic system of an automatic pipe extruding machine according to claim 2, wherein the support legs are telescopic support legs and comprise an upper support leg and a lower support leg, the upper support leg is a hollow pipe body, the lower support leg is inserted into the upper support leg, threads are arranged on the lower support leg, and the lower support leg is locked with the upper support leg through a locking nut and the threads.
4. The hydraulic system of an automatic pipe extruding machine according to claim 3, wherein a foot is provided on a bottom surface of the lower leg, and the foot is detachably mounted on the lower leg.
5. The hydraulic system of an automatic pipe extruding machine according to claim 2, wherein the base panel is provided with a hydraulic hole and a hydraulic pipe groove communicated with the hydraulic hole, and the hydraulic cylinder and the hydraulic station are arranged on the hydraulic hole and connected with the hydraulic pipe groove through the hydraulic hole.
6. The hydraulic system of an automatic pipe extruding machine according to claim 5, wherein the hydraulic hole is provided on a top surface of the base panel, and the hydraulic pipe groove is provided on a bottom surface of the base panel.
7. The hydraulic system of an automatic pipe extruding machine according to claim 1, wherein the hydraulic cylinder is a plurality of cylinders arranged side by side.
8. The hydraulic system of an automatic pipe extruding machine according to claim 2, wherein a main plate and a rear vertical plate are arranged on the top surface of the base panel and used for mounting the driving shaft group and the auxiliary shaft group;
the driving assembly is installed on the rear end face of the rear vertical plate through the installation seat.
9. The hydraulic system of an automatic pipe extruding machine according to claim 8, wherein the driving assembly comprises a motor and a reduction gearbox, the base panel is provided with a motor groove, the motor is arranged in the motor groove and is mounted on the rear vertical plate through the reduction gearbox and a mounting seat.
10. The hydraulic system of an automatic pipe extruding machine according to claim 3, wherein the object placing plate is welded and fixed with the upper supporting leg.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202121891344.8U CN215614300U (en) | 2021-08-12 | 2021-08-12 | Hydraulic system of automatic pipe extruding machine |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202121891344.8U CN215614300U (en) | 2021-08-12 | 2021-08-12 | Hydraulic system of automatic pipe extruding machine |
Publications (1)
Publication Number | Publication Date |
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CN215614300U true CN215614300U (en) | 2022-01-25 |
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Family Applications (1)
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CN202121891344.8U Active CN215614300U (en) | 2021-08-12 | 2021-08-12 | Hydraulic system of automatic pipe extruding machine |
Country Status (1)
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CN (1) | CN215614300U (en) |
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2021
- 2021-08-12 CN CN202121891344.8U patent/CN215614300U/en active Active
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