CN212762373U - Continuous feeding device of bar shearing machine - Google Patents

Continuous feeding device of bar shearing machine Download PDF

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Publication number
CN212762373U
CN212762373U CN202021862201.XU CN202021862201U CN212762373U CN 212762373 U CN212762373 U CN 212762373U CN 202021862201 U CN202021862201 U CN 202021862201U CN 212762373 U CN212762373 U CN 212762373U
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rotating shaft
material stirring
bar
support
continuous feeding
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李占旗
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Henan Aoyu Mining Machinery Co ltd
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Henan Aoyu Mining Machinery Co ltd
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Abstract

The utility model relates to the technical field of drilling tool processing, in particular to a continuous feeding device of a bar shearing machine, wherein a material shifting component comprises a material shifting bracket, a rotating shaft, a plurality of material shifting supporting plates and a driving device; the material stirring support is a U-shaped material stirring support, the two ends of the rotating shaft are rotatably connected with the U-shaped material stirring support, a plurality of material stirring supporting plates are uniformly and detachably connected in the rotating shaft, the rotating shaft is connected with a driving device, the material stirring supporting plates are perpendicular to the rotating shaft, the outer diameter of each material stirring supporting plate comprises four inner concave arc sections, and the four inner concave arc sections are uniformly arranged. The material stirring support is a U-shaped material stirring support, the two ends of the rotating shaft are connected with the U-shaped material stirring support in a rotating mode, the rotating shaft is uniformly connected with a plurality of material stirring supporting plates in a detachable mode, the rotating shaft is connected with a driving device, the material stirring supporting plates are perpendicular to the rotating shaft, the outer diameter of each material stirring supporting plate comprises four inner concave arc sections, the four inner concave arc sections are uniformly arranged, the rods can be stably transmitted, the sliding risk is reduced, continuous feeding can be carried out, and the machining efficiency is improved.

Description

Continuous feeding device of bar shearing machine
Technical Field
The utility model relates to a drilling tool processing technology field, concretely relates to continuous loading attachment of bar shearing machine.
Background
The rod material with proper length is a necessary raw material for manufacturing the drilling tool, when the rod-shaped short material section is manufactured and processed, a long rod material with the diameter of 16-60 mm and the length of 1.5-3 m is generally used, the long rod material is often cut by a rod material cutting machine to form a short rod material section by section, and most of the conditions of the feeding process are that the long rod material is manually placed at the feeding end of the rod material cutting machine, so that the material sections can continuously enter the equipment one by one, and the feeding is very inconvenient and the efficiency is extremely low due to the difficulty in carrying the long rod material.
In order to reduce the cost of labor, adopt hydraulic pressure dam device more, when the striker plate whereabouts, the rod is automatic to roll to current material loading frame that can automatic feeding, and the majority adopts the transportation bearing roller, but such material loading mode, very unstable, the rod has the risk of landing under the inertia effect of dead weight, causes equipment to shut down, influences machining efficiency.
Disclosure of Invention
In view of prior art's defect, the utility model provides a continuous loading attachment of bar clipper, it can steadily transmit the rod, reduces the risk of landing, can carry out continuous loading, improves machining efficiency.
In order to achieve the purpose, the technical scheme of the utility model is a continuous feeding device of a bar shearing machine, which comprises a feeding bracket, a material shifting component and a bar conveying component; the material shifting assembly comprises a material shifting bracket, a rotating shaft, a plurality of material shifting supporting plates and a driving device; the material loading support includes bottom sprag frame, inclined plane channel-section steel, and an inclined plane channel-section steel is respectively connected to bottom sprag frame upper portion both sides, and the inclined plane channel-section steel is to dialling material subassembly lopsidedness, and a plurality of bars are transversely placed between the inclined plane channel-section steel of both sides, and the material support is dialled to the installation of bottom sprag frame, dials the material support for the U type, and the material rotate bracket connection is dialled to pivot both ends and U type, evenly just can dismantle in the pivot and connect a plurality of material backup pads of dialling, and drive arrangement is connected in the pivot, dial material backup pad perpendicular to pivot, dial material backup pad external diameter and include four indent segmental.
Based on above-mentioned technical scheme, set up and dial the material subassembly, utilize the material backup pad of dialling that has four indent segmental arcs, carry out the transfer of bar, shortened the distance that bar oneself slideed, improve equipment operating stability. In addition, the material shifting support plate can be replaced according to different rod specifications and sizes, so that the material shifting support plate can be attached to the surface of the rod as much as possible to support the rod, the risk of slipping is reduced, continuous feeding can be performed, and the processing efficiency is improved.
Furthermore, the two ends of the rotating shaft are connected to the material shifting support through double-row deep groove ball bearings respectively.
Furthermore, the rotating shaft is provided with external threads, the centers of the plurality of material stirring supporting plates are provided with internal threads, and the rotating shaft is in threaded connection with the material stirring supporting plates.
Based on above-mentioned technical scheme, can be convenient for changing the material backup pad of dialling, adopt the interior concave arc section that has different sizes to carry out the transportation of different specification bars.
Preferably, the inner concave arc section on the material stirring support plate is an arc end with the diameter of R1, and the diameter of R1 of the bar to be processed is larger than that of the bar to be processed, and the diameter of the bar to be processed is smaller than 1.5 times.
Further, the driving device comprises a speed reducer and a motor; the motor is connected to the speed reducer, and the speed reducer is connected to the pivot.
Furthermore, the driving device comprises a fixing plate, a speed reducer, a motor, a connecting shaft, a connecting rod, a shifting column and a rotating plate; the material stirring support is provided with a fixing plate, the rotating plate is rotationally connected to the fixing plate, the connecting shaft is rotationally connected to the fixing plate, and the rotating plate is connected to the rotating shaft; the external diameter of rotor plate includes indent segmental arc and the indent spout that the interval set up, the motor is connected to the speed reducer, and speed reducer output shaft is connected to connecting axle one end, and the connecting rod is connected perpendicularly to the connecting axle other end, and the post is dialled in the installation on the connecting rod, dial the post with the cooperation of indent spout, the motor drive connecting axle rotates, drives the connecting rod rotation, dials the post and slides in the indent spout, dials the rotor plate rotation.
Based on above-mentioned technical scheme, the motor drive connecting axle rotates on the fixed plate, and it is rotatory to drive the connecting rod, dials the post and uses the connecting axle to rotate as the centre of a circle, and this in-process dials the post and slides in the indent spout, constantly passes in and out four indent spouts in proper order, stirs the rotor plate rotation to the drive pivot rotates, carries out the bar and shifts. Every time the shifting column rotates for a circle, the rotating plate rotates for 90 degrees, and the movement of a bar can be completed, so that the driving is realized, not only can the continuous feeding be realized, but also a certain gap can be ensured between the fed bars.
Further, the shifting column is a cylindrical pin, and the concave sliding groove comprises a linear notch section and a semicircular notch section.
Based on above-mentioned technical scheme, it slides in the indent spout to be more convenient for dial the post.
Furthermore, the angle of the inclined plane channel steel is 5-10 degrees.
Further, the bar conveying assembly comprises a supporting wheel bracket, a supporting wheel main shaft and a supporting wheel; and a bar conveying assembly is arranged at the blanking edge of the material stirring supporting plate, a plurality of supporting roller supports are arranged on the bottom supporting frame, and the supporting rollers are connected with the supporting roller supports through supporting roller main shafts.
Based on the technical scheme, the supporting wheels convey the bar forward to the feeding end of the bar shearing machine under the action of the supporting wheel driving device.
Furthermore, one end of the inclined plane channel steel is rotatably connected with the bottom support frame, and the other end of the inclined plane channel steel is connected to the bottom support frame through the air cylinder.
The utility model discloses a working process: when the feeding bar is placed on the inclined channel steel, the bar at the front end is located on the plurality of material stirring supporting plates, the rotating shaft is driven to rotate, the first bar moves to the bar conveying assembly from the plurality of material stirring supporting plates, and the second bar falls into the next inward concave arc section in the process. The first bar stock is fed to the supporting wheel after the first stage feeding, and the supporting wheel driving device (adopting a driving mode in common knowledge) drives the supporting wheel to rotate so as to convey the bar stock forwards to the feeding end of the bar stock shearing machine.
The utility model has the advantages that: the bar can be stably conveyed, the risk of slipping is reduced, continuous feeding can be performed, and the processing efficiency is improved.
Drawings
Fig. 1 is a schematic structural view of the present invention;
FIG. 2 is a schematic structural view of the kick-off assembly;
FIG. 3 is a schematic view of the bar stock transport assembly;
FIG. 4 is a schematic structural view of a setting member in embodiment 2;
FIG. 5 is a schematic view showing a first state of rotation of the rotary plate in embodiment 2;
FIG. 6 is a schematic view showing a second state of the rotation of the rotary plate in embodiment 2;
FIG. 7 is a schematic view showing a third state of rotation of the rotary plate in embodiment 2;
FIG. 8 is a schematic view of the movement of the bar from the kick-off support plate to the bar transport assembly;
FIG. 9 is a schematic structural view of example 3;
in the figure:
1. the material loading support, 1.1, the bottom sprag frame, 1.2, the inclined plane channel-section steel, 2, group the material subassembly, 2.1, group the material support, 2.2, the pivot, 2.3, group the material backup pad, 2.3.1, interior concave arc section, 2.4, drive arrangement, 2.4.1, the speed reducer, 2.4.2, the motor, 2.4.3, the fixed plate, 2.4.4, the connecting axle, 2.4.5, the connecting rod, 2.4.6, the column plectrum, 2.4.7, the rotor plate, 2.4.7.1, interior concave arc section, 2.4.7.2, interior concave chute, 2.4.7.3, straight line notch section, 2.4.7.4, semicircle type notch section, 3, the bar conveying component, 3.1, riding wheel support, 3.2, riding wheel main shaft, 3.3, riding wheel, 4, the bar, 5, deep groove biserial ball bearing, 6, the cylinder.
Detailed Description
The technical solution of the present patent will be described in further detail with reference to the following embodiments.
Example 1
A continuous feeding device of a bar shearing machine comprises a feeding support 1, a material poking component 2 and a bar conveying component 3; the material shifting assembly 2 comprises a material shifting bracket 2.1, a rotating shaft 2.2, a plurality of material shifting support plates 2.3 and a driving device 2.4; the feeding support 1 comprises a bottom support frame 1.1, an inclined plane channel steel 1.2 is welded on each of two sides of the upper portion of the bottom support frame 1.1, the inclined plane channel steel 1.2 inclines to a material stirring component 2, a plurality of bars 4 are transversely placed between the inclined plane channel steels 1.2 on two sides, the material stirring support 2.1 is installed on the bottom support frame 1.1, the material stirring support 2.1 is a U-shaped material stirring support, two ends of a rotating shaft 2.2 are rotatably connected with the U-shaped material stirring support, a plurality of material stirring support plates 2.3 are uniformly and detachably connected on the rotating shaft 2.2, the rotating shaft 2.2 is connected with a driving device 2.4, the material stirring support plates 2.3 are perpendicular to the rotating shaft 2.2, the outer diameters of the material stirring support plates 2.3 comprise four inner concave arc sections 2.3.1, and the four inner concave arc.
Furthermore, two ends of the rotating shaft 2.2 are connected to the material shifting support 2.1 through double-row deep groove ball bearings 5 respectively.
Further, set up the external screw thread on the pivot 2.2, a plurality of material backup pads 2.3 centers of dialling set up the internal thread, pivot 2.2 with dial material backup pad 2.3 threaded connection.
Preferably, the concave arc section 2.3.1 on the material pulling support plate 2.3 is an arc end with the diameter of R1, and the diameter of R1 is larger than that of the bar 4 to be processed, and the diameter of the bar 4 to be processed is smaller than 1.5 times.
Further, the driving device 2.4 comprises a speed reducer 2.4.1 and a motor 2.4.2; the motor 2.4.2 is connected to the speed reducer 2.4.1, and the speed reducer 2.4.1 is connected to the rotating shaft 2.2.
Further, the driving device 2.4 comprises a fixed plate 2.4.3, a speed reducer 2.4.1, a motor 2.4.2, a connecting shaft 2.4.4, a connecting rod 2.4.5, a poking column 2.4.6 and a rotating plate 2.4.7; a fixed plate 2.4.3 is arranged on the material stirring bracket 2.1, the rotating plate 2.4.7 is rotationally connected to the fixed plate 2.4.3, the connecting shaft 2.4.4 is rotationally connected to the fixed plate 2.4.3, and the rotating plate 2.4.7 is connected to the rotating shaft 2.2; the outer diameter of the rotating plate 2.4.7 includes the indent arc section 2.4.7.1 and the indent spout 2.4.7.2 that the interval set up, motor 2.4.2 is connected to speed reducer 2.4.1, speed reducer 2.4.1 output shaft is connected to connecting axle 2.4.4 one end, the connecting axle 2.4.4 other end is connected with connecting rod 2.4.5 perpendicularly, install on connecting rod 2.4.5 and dial post 2.4.6, dial post 2.4.6 with the cooperation of indent spout 2.4.7.2, motor 2.4.2 drive connecting axle 2.4.4 rotates, drive connecting rod 2.4.5 is rotatory, dial post 2.4.6 and slide in indent spout 2.4.7.2, stir rotating plate 2.4.7 and rotate.
Further, the poking column 2.4.6 is a cylindrical pin, and the concave sliding groove 2.4.7.2 includes a linear notch section 2.4.7.3 and a semicircular notch section 2.4.7.4.
Further, the angle of the inclined plane channel steel 1.2 is 5-10 degrees.
Further, the bar conveying component 3 comprises a riding wheel bracket 3.1, a riding wheel spindle 3.2 and a riding wheel 3.3; the blanking edge of the material stirring supporting plate 2.3 is provided with a bar conveying assembly, a plurality of riding wheel supports 3.1 are arranged on the bottom supporting frame 1.1, and the riding wheels 3.3 are connected with the riding wheel supports 3.1 through riding wheel main shafts 3.2.
Example 2
A continuous feeding device of a bar shearing machine comprises a feeding support 1, a material poking component 2 and a bar conveying component 3; the material shifting assembly 2 comprises a material shifting bracket 2.1, a rotating shaft 2.2, a plurality of material shifting support plates 2.3 and a driving device 2.4; the feeding support 1 comprises a bottom support frame 1.1, an inclined plane channel steel 1.2 is welded on each of two sides of the upper portion of the bottom support frame 1.1, the inclined plane channel steel 1.2 inclines to a material stirring component 2, a plurality of bars 4 are transversely placed between the inclined plane channel steels 1.2 on two sides, the material stirring support 2.1 is installed on the bottom support frame 1.1, the material stirring support 2.1 is a U-shaped material stirring support, two ends of a rotating shaft 2.2 are rotatably connected with the U-shaped material stirring support, a plurality of material stirring support plates 2.3 are uniformly and detachably connected on the rotating shaft 2.2, the rotating shaft 2.2 is connected with a driving device 2.4, the material stirring support plates 2.3 are perpendicular to the rotating shaft 2.2, the outer diameters of the material stirring support plates 2.3 comprise four inner concave arc sections 2.3.1, and the four inner concave arc.
Furthermore, two ends of the rotating shaft 2.2 are connected to the material shifting support 2.1 through double-row deep groove ball bearings 5 respectively.
Further, set up the external screw thread on the pivot 2.2, a plurality of material backup pads 2.3 centers of dialling set up the internal thread, pivot 2.2 with dial material backup pad 2.3 threaded connection.
Preferably, the concave arc section 2.3.1 on the material pulling support plate 2.3 is an arc end with the diameter of R1, and the diameter of R1 is larger than that of the bar 4 to be processed, and the diameter of the bar 4 to be processed is smaller than 1.5 times.
Further, the driving device 2.4 comprises a speed reducer 2.4.1 and a motor 2.4.2; the motor 2.4.2 is connected to the speed reducer 2.4.1, and the speed reducer 2.4.1 is connected to the rotating shaft 2.2.
Further, the driving device 2.4 comprises a fixed plate 2.4.3, a speed reducer 2.4.1, a motor 2.4.2, a connecting shaft 2.4.4, a connecting rod 2.4.5, a poking column 2.4.6 and a rotating plate 2.4.7; a fixed plate 2.4.3 is arranged on the material stirring bracket 2.1, the rotating plate 2.4.7 is rotationally connected to the fixed plate 2.4.3, the connecting shaft 2.4.4 is rotationally connected to the fixed plate 2.4.3, and the rotating plate 2.4.7 is connected to the rotating shaft 2.2; the outer diameter of the rotating plate 2.4.7 includes the indent arc section 2.4.7.1 and the indent spout 2.4.7.2 that the interval set up, motor 2.4.2 is connected to speed reducer 2.4.1, speed reducer 2.4.1 output shaft is connected to connecting axle 2.4.4 one end, the connecting axle 2.4.4 other end is connected with connecting rod 2.4.5 perpendicularly, install on connecting rod 2.4.5 and dial post 2.4.6, dial post 2.4.6 with the cooperation of indent spout 2.4.7.2, motor 2.4.2 drive connecting axle 2.4.4 rotates, drive connecting rod 2.4.5 is rotatory, dial post 2.4.6 and slide in indent spout 2.4.7.2, stir rotating plate 2.4.7 and rotate.
Further, the poking column 2.4.6 is a cylindrical pin, and the concave sliding groove 2.4.7.2 includes a linear notch section 2.4.7.3 and a semicircular notch section 2.4.7.4.
Further, the angle of the inclined plane channel steel 1.2 is 5-10 degrees.
Further, the bar conveying component 3 comprises a riding wheel bracket 3.1, a riding wheel spindle 3.2 and a riding wheel 3.3; the blanking edge of the material stirring supporting plate 2.3 is provided with a bar conveying assembly, a plurality of riding wheel supports 3.1 are arranged on the bottom supporting frame 1.1, and the riding wheels 3.3 are connected with the riding wheel supports 3.1 through riding wheel main shafts 3.2.
Example 3
A continuous feeding device of a bar shearing machine comprises a feeding support 1, a material poking component 2 and a bar conveying component 3; the material shifting assembly 2 comprises a material shifting bracket 2.1, a rotating shaft 2.2, a plurality of material shifting support plates 2.3 and a driving device 2.4; the feeding support 1 comprises a bottom support frame 1.1 and an inclined plane channel steel 1.2, wherein two sides of the upper portion of the bottom support frame 1.1 are respectively connected with an inclined plane channel steel 1.2, the inclined plane channel steel 1.2 inclines to a material stirring component 2, a plurality of bars 4 are transversely placed between the inclined plane channel steels 1.2 of the two sides, the bottom support frame 1.1 is provided with a material stirring support 2.1, the material stirring support 2.1 is a U-shaped material stirring support, two ends of a rotating shaft 2.2 are rotatably connected with the U-shaped material stirring support, a plurality of material stirring support plates 2.3 are uniformly and detachably connected on the rotating shaft 2.2, the rotating shaft 2.2 is connected with a driving device 2.4, the material stirring support plates 2.3 are perpendicular to the rotating shaft 2.2, the outer diameters of the material stirring support plates 2.3 comprise four inner concave arc sections 2.3.1, and the four inner concave.
Furthermore, two ends of the rotating shaft 2.2 are connected to the material shifting support 2.1 through double-row deep groove ball bearings 5 respectively.
Further, set up the external screw thread on the pivot 2.2, a plurality of material backup pads 2.3 centers of dialling set up the internal thread, pivot 2.2 with dial material backup pad 2.3 threaded connection.
Preferably, the concave arc section 2.3.1 on the material pulling support plate 2.3 is an arc end with the diameter of R1, and the diameter of R1 is larger than that of the bar 4 to be processed, and the diameter of the bar 4 to be processed is smaller than 1.5 times.
Further, the driving device 2.4 comprises a speed reducer 2.4.1 and a motor 2.4.2; the motor 2.4.2 is connected to the speed reducer 2.4.1, and the speed reducer 2.4.1 is connected to the rotating shaft 2.2.
Further, the driving device 2.4 comprises a fixed plate 2.4.3, a speed reducer 2.4.1, a motor 2.4.2, a connecting shaft 2.4.4, a connecting rod 2.4.5, a poking column 2.4.6 and a rotating plate 2.4.7; a fixed plate 2.4.3 is arranged on the material stirring bracket 2.1, the rotating plate 2.4.7 is rotationally connected to the fixed plate 2.4.3, the connecting shaft 2.4.4 is rotationally connected to the fixed plate 2.4.3, and the rotating plate 2.4.7 is connected to the rotating shaft 2.2; the outer diameter of the rotating plate 2.4.7 includes the indent arc section 2.4.7.1 and the indent spout 2.4.7.2 that the interval set up, motor 2.4.2 is connected to speed reducer 2.4.1, speed reducer 2.4.1 output shaft is connected to connecting axle 2.4.4 one end, the connecting axle 2.4.4 other end is connected with connecting rod 2.4.5 perpendicularly, install on connecting rod 2.4.5 and dial post 2.4.6, dial post 2.4.6 with the cooperation of indent spout 2.4.7.2, motor 2.4.2 drive connecting axle 2.4.4 rotates, drive connecting rod 2.4.5 is rotatory, dial post 2.4.6 and slide in indent spout 2.4.7.2, stir rotating plate 2.4.7 and rotate.
Further, the poking column 2.4.6 is a cylindrical pin, and the concave sliding groove 2.4.7.2 includes a linear notch section 2.4.7.3 and a semicircular notch section 2.4.7.4.
Further, the angle of the inclined plane channel steel 1.2 is 5-10 degrees.
Further, the bar conveying component 3 comprises a riding wheel bracket 3.1, a riding wheel spindle 3.2 and a riding wheel 3.3; the blanking edge of the material stirring supporting plate 2.3 is provided with a bar conveying assembly, a plurality of riding wheel supports 3.1 are arranged on the bottom supporting frame 1.1, and the riding wheels 3.3 are connected with the riding wheel supports 3.1 through riding wheel main shafts 3.2.
Furthermore, one end of the inclined plane channel steel 1.2 is rotatably connected with the bottom support frame 1.1, and the other end of the inclined plane channel steel 1.2 is connected to the bottom support frame 1.1 through the air cylinder 6.
Although the preferred embodiments of the present patent have been described in detail, the present patent is not limited to the above embodiments, and various changes can be made without departing from the spirit of the present patent within the knowledge of those skilled in the art.

Claims (9)

1. A continuous feeding device of a bar shearing machine comprises a feeding support, a material poking assembly and a bar conveying assembly; the method is characterized in that: the material shifting assembly comprises a material shifting bracket, a rotating shaft, a plurality of material shifting supporting plates and a driving device; the material loading support includes bottom sprag frame, inclined plane channel-section steel, and an inclined plane channel-section steel is respectively connected to bottom sprag frame upper portion both sides, and the inclined plane channel-section steel is to dialling material subassembly lopsidedness, and a plurality of bars are transversely placed between the inclined plane channel-section steel of both sides, and the material support is dialled to the installation of bottom sprag frame, dials the material support for the U type, and the material rotate bracket connection is dialled to pivot both ends and U type, evenly just can dismantle in the pivot and connect a plurality of material backup pads of dialling, and drive arrangement is connected in the pivot, dial material backup pad perpendicular to pivot, dial material backup pad external diameter and include four indent segmental.
2. The continuous feeding device of the bar shearing machine according to claim 1, characterized in that: the two ends of the rotating shaft are connected to the material shifting support through double-row deep groove ball bearings respectively.
3. The continuous feeding device of the bar shearing machine according to claim 1, characterized in that: the rotating shaft is provided with external threads, the centers of the plurality of material stirring supporting plates are provided with internal threads, and the rotating shaft is in threaded connection with the material stirring supporting plates.
4. The continuous feeding device of the bar shearing machine according to claim 1, characterized in that: the inner concave arc section on the material stirring supporting plate is an arc end with the diameter of R1, and the diameter of R1 of the inner concave arc section is larger than that of the bar to be processed, and the diameter of the inner concave arc section is smaller than 1.5 times that of the bar to be processed.
5. A continuous feeding device of a bar cutter according to any one of claims 1 to 4, characterized in that: the driving device comprises a speed reducer and a motor; the motor is connected to the speed reducer, and the speed reducer is connected to the pivot.
6. A continuous feeding device of a bar cutter according to any one of claims 1 to 4, characterized in that: the driving device comprises a fixed plate, a speed reducer, a motor, a connecting shaft, a connecting rod, a shifting column and a rotating plate; the material stirring support is provided with a fixing plate, the rotating plate is rotationally connected to the fixing plate, the connecting shaft is rotationally connected to the fixing plate, and the rotating plate is connected to the rotating shaft; the external diameter of rotor plate includes indent segmental arc and the indent spout that the interval set up, the motor is connected to the speed reducer, and speed reducer output shaft is connected to connecting axle one end, and the connecting rod is connected perpendicularly to the connecting axle other end, and the post is dialled in the installation on the connecting rod, dial the post with the cooperation of indent spout, the motor drive connecting axle rotates, drives the connecting rod rotation, dials the post and slides in the indent spout, dials the rotor plate rotation.
7. The continuous feeding device of the bar shearing machine according to claim 6, characterized in that: the shifting column is a cylindrical pin, and the concave sliding groove comprises a linear notch section and a semicircular notch section.
8. A continuous feeding device of a bar cutter according to any one of claims 1 to 4 and 7, characterized in that: the angle of the inclined plane channel steel is 5-10 degrees.
9. A continuous feeding device of a bar cutter according to any one of claims 1 to 4 and 7, characterized in that: one end of the inclined plane channel steel is rotatably connected with the bottom support frame, and the other end of the inclined plane channel steel is connected to the bottom support frame through the air cylinder.
CN202021862201.XU 2020-08-31 2020-08-31 Continuous feeding device of bar shearing machine Active CN212762373U (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115876051A (en) * 2023-03-08 2023-03-31 临沂金正阳管业有限公司 Outer diameter detection equipment for manufacturing seamless steel pipe

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115876051A (en) * 2023-03-08 2023-03-31 临沂金正阳管业有限公司 Outer diameter detection equipment for manufacturing seamless steel pipe

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