Disclosure of utility model
In view of the above, the embodiment of the utility model provides a power tube cutting device, so as to solve the problem that the existing power tube cutting device cannot cut a large-size power tube at one time, so that the cut surface is uneven.
In order to achieve the above object, the embodiment of the present utility model provides the following technical solutions:
a power tube cutting device, comprising: the device comprises a base, a first fixing seat, a second fixing seat, a telescopic column, a mounting seat, a driving mechanism, a cutting disc, a speed reducer and a friction wheel;
The first fixing seat and the second fixing seat are arranged on the base in parallel, a cutting area is formed between the first fixing seat and the second fixing seat, and the first fixing seat and the second fixing seat are used for limiting the diameter of the power tube in the radial direction;
the telescopic column is arranged on the base and is positioned at one side of the cutting area;
the mounting seat is arranged at the extending end of the telescopic column, and the telescopic column is used for driving the mounting seat to lift;
The cutting disc and the friction wheel are rotatably arranged on the mounting seat, the driving mechanism is in transmission connection with the cutting disc and the friction wheel, and the telescopic column can drive the friction wheel to contact with the power tube so that the friction wheel drives the power tube to rotate along the central axis of the power tube and the cutting disc cuts the power tube;
the speed reducer is arranged between the cutting disc and the friction wheel.
Preferably, the telescopic column is a hydraulic cylinder.
Preferably, the cutting disc is arranged coaxially with the friction wheel.
Preferably, the first fixing base is the same as the second fixing base, and the first fixing base includes: the device comprises a base, a first bearing seat, a second bearing seat, a first limiting piece and a plurality of first adjusting rods;
The first bearing seat and the second bearing seat are arranged on the base, and the contact surfaces of the first bearing seat and the second bearing seat with the power tube are arc surfaces;
The first limiting piece is connected with the base through a plurality of first adjusting rods, the first limiting piece radially limits the power tube through the first bearing seat and the second bearing seat, and the first adjusting rods are used for adjusting the height of the limiting piece.
Preferably, the contact surface of the first limiting piece and the power tube is an arc-shaped surface.
Preferably, the method further comprises: the second adjusting rod is used for adjusting the distance between the first bearing seat and the second bearing seat.
Preferably, the method further comprises: a first slider and a second slider;
the second adjusting rod is a screw rod, wherein the screw rod comprises a first section and a second section, and the thread direction of the first section is opposite to that of the second section;
The upper end surface of the base is provided with a chute;
Through holes for the screws to pass through are formed in two sides of the base;
The first sliding block and the second sliding block are both arranged on the sliding groove in a sliding way;
The first bearing seat is arranged on the first sliding block, the second bearing seat is arranged on the second sliding block, the first sliding block is provided with a first screw hole matched with the first section, and the second sliding block is provided with a second screw hole matched with the second section.
Preferably, the method further comprises: the second limiting piece and the third limiting piece are arranged at two ends of the screw rod.
Preferably, the friction wheel is circumferentially coated with an elastic material.
Preferably, the drive mechanism is a motor.
Based on the electric power pipe cutting device provided by the utility model, the first fixing seat and the second fixing seat are arranged on the base in parallel, a cutting area is formed between the first fixing seat and the second fixing seat, and the first fixing seat and the second fixing seat are used for limiting the diameter of the electric power pipe in the radial direction; the telescopic column is arranged on the base and is positioned at one side of the cutting area; the mounting seat for driving the mounting seat to lift is arranged at the extending end of the telescopic column; the cutting disc and the friction wheel are rotatably arranged on the mounting seat, the driving mechanism is in transmission connection with the cutting disc and the friction wheel, and the telescopic column can drive the friction wheel to contact with the power tube so that the friction wheel drives the power tube to rotate along the central axis of the power tube and the cutting disc cuts the power tube; the speed reducer is arranged between the cutting disc and the friction wheel. According to the electric power pipe cutting device disclosed by the utility model, when the electric power pipe is required to be cut, the electric power pipe is fixed on the first fixing seat and the second fixing seat, then the friction wheel and the cutting disc are driven to move downwards through the telescopic column and play a role in driving mechanism, so that the driving mechanism drives the friction wheel and the cutting disc to rotate, when the cutting disc contacts with the electric power pipe, the cutting disc cuts the electric power pipe, and when the friction wheel contacts with the electric power pipe, the friction wheel drives the electric power pipe to rotate along the central shaft of the electric power pipe, and the cutting disc cuts the electric power pipe along the circumferential direction of the electric power pipe until the electric power pipe rotates for one circle.
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.
An embodiment of the present utility model provides a power tube cutting device, referring to fig. 1 to 4, fig. 1 is a schematic structural diagram of the power tube cutting device, and the power tube cutting device includes: the device comprises a base 1, a first fixed seat 2, a second fixed seat 3, a telescopic column 4, a mounting seat 5, a driving mechanism 6, a cutting disc 7, a speed reducer 8 and a friction wheel 9;
The first fixing seat 2 and the second fixing seat 3 are arranged on the base 1 in parallel, a cutting area is formed between the first fixing seat 2 and the second fixing seat 3, and the first fixing seat 2 and the second fixing seat 3 are used for radially limiting the power tube 13;
The telescopic column 4 is arranged on the base 1 and is positioned on one side of the cutting area;
The mounting seat 5 is arranged at the extending end of the telescopic column 4, and the telescopic column 4 is used for driving the mounting seat 5 to ascend and descend;
The cutting disc 7 and the friction wheel 9 are rotatably arranged on the mounting seat 5, the driving mechanism 6 is in transmission connection with the cutting disc 7 and the friction wheel 9, and the telescopic column 4 can drive the friction wheel 9 to be in contact with the power tube 13, so that the friction wheel 9 drives the power tube 13 to rotate along the central axis thereof, and the cutting disc 7 cuts the power tube 13;
The decelerator 8 is disposed between the cutting disc 7 and the friction wheel 9.
The first fixing seat 2 and the second fixing seat 3 limit the electric power tube 13, and when the friction wheel 9 rotates, the friction wheel 9 can drive the electric power tube 13 to rotate, so that the cutting disc 7 can cut the electric power tube 13 circumferentially.
The speed reducer 8 is provided between the cutting disc 7 and the friction wheel 9, so that the rotation speed of the cutting disc 7 can be made larger than the rotation speed of the friction wheel 9, and the friction wheel 9 can slowly drive the power pipe 13 to rotate.
In the embodiment of the utility model, the first fixing seat 2 and the second fixing seat 3 are arranged on the base 1 in parallel, a cutting area is formed between the first fixing seat 2 and the second fixing seat 3, and the first fixing seat 2 and the second fixing seat 3 are used for radially limiting the power tube 13; the telescopic column 4 is arranged on the base 1 and is positioned at one side of the cutting area; the mounting seat 5 for driving the mounting seat 5 to lift is arranged at the extending end of the telescopic column 4; the cutting disc 7 and the friction wheel 9 are rotatably arranged on the mounting seat 5, the driving mechanism 6 is in transmission connection with the cutting disc 7 and the friction wheel 9, and the telescopic column 4 can drive the friction wheel 9 to be in contact with the power tube 13, so that the friction wheel 9 drives the power tube 13 to rotate along the central axis thereof, and the cutting disc 7 cuts the power tube 13; the decelerator 8 is disposed between the cutting disc 7 and the friction wheel 9. Through the above disclosed power tube cutting device, when the power tube 13 needs to be cut, the power tube 13 is fixed on the first fixing seat 2 and the second fixing seat 3, then the friction wheel 9 and the cutting disc 7 are driven to move downwards through the telescopic column 4 and play a role in driving mechanism 6, so that the driving mechanism 6 drives the friction wheel 9 and the cutting disc 7 to rotate, when the cutting disc 7 contacts with the power tube 13, the cutting disc 7 cuts the power tube 13, and when the friction wheel 9 contacts with the power tube 13, the friction wheel 9 drives the power tube 13 to rotate along the central axis of the power tube 13 and cuts the cutting disc 7 along the circumferential direction of the power tube 13 until the power tube 13 rotates for one circle.
Preferably, the mounting 5 is provided with a first seat for mounting the cutting disc 7 and a first seat for mounting the friction wheel 9.
Specifically, the telescopic column 4 is a hydraulic cylinder.
It should be noted that the telescopic column 4 may be a hydraulic cylinder, or may be other mechanisms capable of driving the cutting disc 7 and the friction wheel 9 to lift, such as an electric push rod, an air cylinder, etc., and those skilled in the art may select according to actual needs.
Preferably, the number of telescopic columns 4 is 2.
It should be noted that the number of the telescopic columns 4 may be 2 or 1, and those skilled in the art may select according to the requirements.
Further, the cutting disc 7 is arranged coaxially with the friction wheel 9.
It should be noted that the cutting disc 7 and the friction wheel 9 may be coaxially disposed or non-coaxially disposed, and those skilled in the art may select according to the requirements.
Specifically, the first fixing base 2 is the same as the second fixing base 3, and the first fixing base 2 includes: the device comprises a base 21, a first bearing seat 22, a second bearing seat 23, a first limiting piece 24 and a plurality of first adjusting rods 25;
the first bearing seat 22 and the second bearing seat 23 are both arranged on the base 21, and the contact surfaces of the first bearing seat 22 and the second bearing seat 23 with the power tube 13 are arc-shaped surfaces;
The first limiting piece 24 is connected with the base 21 through a plurality of first adjusting rods 25, the first limiting piece 24 radially limits the power tube 13 with the first bearing seat 22 and the second bearing seat 23, and the first adjusting rods 25 are used for adjusting the height of the limiting piece.
It should be noted that, the first bearing seat 22 and the second bearing seat 23 are both disposed on the base 21, and the contact surfaces of the first bearing seat 22 and the second bearing seat 23 with the power tube 13 are arc surfaces, so that the power tube 13 can be better radially limited, radial displacement during cutting of the power tube 13 is reduced, the first limiting member 24 is connected with the base 21 through the plurality of first adjusting rods 25, the first limiting member 24 and the first bearing seat 22 and the second bearing seat 23 radially limit the power tube 13, and the height of the limiting member is adjusted through the set first adjusting rods 25, so that the power tube 13 with different sizes can be fixed.
It should be noted that, the contact surfaces of the first bearing seat 22 and the second bearing seat 23 with the power tube 13 are arc-shaped, so that scratches on the outer surface of the power tube 13 can be reduced when the friction wheel 9 drives the power tube 13 to rotate.
It should be noted that, in the present application, a plurality of first limiting members 24 may be further disposed on the base 21, and the power tube 13 may be better radially limited by matching the plurality of first limiting members 24 with the base 21, as shown in fig. 1 to 3.
Preferably, the first adjusting lever 25 is a bolt;
The upper end face of the base 21 is provided with a screw hole matched with the bolt.
The distance between the first limiting member 24 and the base 21 can be adjusted by the threaded engagement of the bolt with the screw hole, and the height of the first limiting member 24 can be further adjusted.
Specifically, the contact surface of the first limiting member 24 and the power tube 13 is an arc surface.
The contact surface of the first limiting member 24 and the power tube 13 is an arc surface, so that the scratch of the first limiting member 24 to the outer surface of the power tube 13 can be reduced when the friction wheel 9 drives the power tube 13 to rotate.
Further, the power tube cutting device further includes: the second adjusting lever 10 is used for adjusting the distance between the first bearing seat 22 and the second bearing seat 23.
It should be noted that, by setting the second adjusting rod 10 for adjusting the distance between the first bearing seat 22 and the second bearing seat 23, the distance between the first bearing seat 22 and the second bearing seat 23 can be adjusted according to the power tube 13 with different sizes, so that the first bearing seat 22 and the second bearing seat 23 can better limit and support the power tube 13, so as to avoid displacement of the power tube 13 in the cutting process.
Further, the power tube cutting device further includes: a first slider 11 and a second slider 12;
The second adjusting rod 10 is a screw rod, wherein the screw rod comprises a first section and a second section, and the thread direction of the first section is opposite to that of the second section;
the upper end surface of the base 21 is provided with a chute 211;
both sides of the base 21 are provided with through holes for the screw to pass through;
the first sliding block 11 and the second sliding block 12 are both arranged in the sliding groove 211 in a sliding way;
The first bearing seat 22 is arranged on the first sliding block 11, the second bearing seat 23 is arranged on the second sliding block 12, the first sliding block 11 is provided with a first screw hole matched with the first section, and the second sliding block 12 is provided with a second screw hole matched with the second section.
The second adjusting rod 10 is a screw, and the thread of the first section of the screw is opposite to the thread of the second section of the screw; and a chute 211 is formed on the upper end surface of the base 21; both sides of the base 21 are provided with through holes for the screw to pass through; the first sliding block 11 and the second sliding block 12 are both arranged in the sliding groove 211 in a sliding way; the first bearing seat 22 is arranged on the first sliding block 11, the second bearing seat 23 is arranged on the second sliding block 12, the first sliding block 11 is provided with a first screw hole matched with the first section, and the second sliding block 12 is provided with a second screw hole matched with the second section. Through the scheme disclosed above, the efficiency of adjusting the distance between the first bearing seat 22 and the second bearing seat 23 by the operator can be improved.
Further, the power tube cutting device further includes: second and third stoppers 14 provided at both ends of the screw.
It should be noted that, by arranging the second limiting member and the third limiting member 14 at two ends of the screw, the screw can be prevented from driving the first bearing seat 22 and the second bearing seat 23 to shake during the cutting process of the power tube 13.
It should be further noted that, the present application may limit the axial movement of the screw by arranging the second limiting member and the third limiting member 14 at two ends of the screw, or may limit the axial movement of the screw by arranging the second limiting member and the third limiting member 14 at any one end of the screw, specifically, the second limiting member is located in the sliding slot 211, the third limiting member 14 is located outside the sliding slot 211, and one end of the screw may be rotatably arranged at one end of the sliding slot 211, so that the axial movement of the screw may be avoided.
Further, the friction wheel 9 is circumferentially coated with an elastic material.
By coating the elastic material around the friction wheel 9, it is possible to prevent the friction wheel 9 or the power pipe 13 from being damaged by being pressed against each other, and it is also possible to ensure the contact surface between the friction wheel 9 and the power pipe 13, so that the friction wheel 9 can drive the power pipe 13 to rotate.
Specifically, the driving mechanism 6 is a motor.
It should be noted that the driving mechanism 6 of the present application may be a motor, or may be other power mechanisms capable of driving the friction wheel 9 and the cutting disc 7 to rotate, and those skilled in the art may select according to requirements.
The previous description of the disclosed embodiments is provided to enable any person skilled in the art to make or use the present utility model. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the generic principles defined herein may be applied to other embodiments without departing from the spirit or scope of the utility model. Thus, the present utility model is not intended to be limited to the embodiments shown herein but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.