CN215199501U - Forging stock conveyer - Google Patents
Forging stock conveyer Download PDFInfo
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- CN215199501U CN215199501U CN202120382264.3U CN202120382264U CN215199501U CN 215199501 U CN215199501 U CN 215199501U CN 202120382264 U CN202120382264 U CN 202120382264U CN 215199501 U CN215199501 U CN 215199501U
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Abstract
The patent of the utility model belongs to the technical field of the flange forges, concretely relates to forging stock conveyer compares with prior art, the utility model discloses an advantage lies in with positive effect: compared with the prior art, the utility model discloses an advantage lies in with positive effect: (1) the transverse conveying roller way, the longitudinal conveying roller way and the transition conveying roller way in the forging stock conveying device are modularized independent operation units, different module assemblies and coordination can be carried out according to needs, and the efficiency is high; (2) in the process that the forging stock is discharged from a furnace door of the heating furnace to a specific forging machine, only a transverse conveying roller way, a longitudinal conveying roller way and a transition conveying roller way on a conveying path operate, and other conveying roller ways do not operate; after the forging stock is conveyed in place, the transverse conveying roller way, the longitudinal conveying roller way and the transition conveying roller way on the conveying path also stop running; can save a large amount of energy and reduce the production cost.
Description
Technical Field
The patent of the utility model belongs to the technical field of the flange forges, concretely relates to forging stock conveyer.
Background
In the prior art, in the flange forging process, a forged blank is discharged from a furnace and then reaches a forging machine (generally an oil press) through a conveying roller way, a plurality of conveying roller ways penetrate through a frame of the forging machine, and the condition that one heating furnace corresponds to a plurality of forging machines is difficult to realize by the structure.
In the prior art, the phenomenon that the conveying roller way still runs without a forged blank exists frequently, a large amount of energy is wasted, and the production cost is increased.
SUMMERY OF THE UTILITY MODEL
The utility model provides a to foretell problem, provide a forging stock conveyer.
In order to achieve the above object, the utility model discloses a technical scheme be: a forging stock conveying device comprises a plurality of transverse conveying roller ways, longitudinal conveying roller ways, a side pushing mechanism and transition conveying roller ways, wherein the transverse conveying roller ways, the longitudinal conveying roller ways and the transition conveying roller ways are modular independent operation units; the transverse conveying roller ways are arranged at the furnace outlet of the heating furnace, and each longitudinal conveying roller way corresponds to a forging machine working area; the transition conveying roller way is in a straight line with the butted longitudinal conveying roller way, and the transition conveying roller way is vertical to the butted transverse conveying roller way.
Preferably, the transverse conveying roller way, the longitudinal conveying roller way and the transition conveying roller way are all roller conveying roller ways.
Preferably, the longitudinal conveying roller way comprises a plurality of rollers, a gear, a chain wheel and a motor I, the rollers are parallelly installed on a rack of the longitudinal conveying roller way, one end of each roller is provided with the gear, and the chain is installed on the periphery of the gears of the longitudinal conveying roller way and matched with the gears; the first motor is arranged below the roller with a gear end, and the output end of the first motor is provided with a chain wheel which is matched with the chain.
Preferably, the side pushing mechanism is a linear expansion device or a gear rack mechanism.
Preferably, the side pushing mechanism is a gear rack mechanism and comprises a rack, a gear and a second motor, the gear is detachably connected to an output shaft of the second motor, the gear is meshed with the rack, the rack linearly moves along with the rotation of the gear, and the linear movement direction of the rack is perpendicular to the longitudinal conveying roller way; the lower surface of the rack is flush with the upper surface of the longitudinal conveying roller way.
Preferably, the system also comprises an industrial video monitoring system and a controller, wherein the industrial video monitoring system comprises a plurality of cameras and a display, and the cameras are respectively arranged at the positions corresponding to the furnace outlet of the heating furnace, the longitudinal conveying roller way and the side pushing mechanism; the output ends of the cameras are connected with a display through signal lines; and the driving motors of the transverse conveying roller way, the longitudinal conveying roller way and the transition conveying roller way are connected with the controller through signal lines.
Compared with the prior art, the utility model discloses an advantage lies in with positive effect:
(1) the longitudinal conveying roller table in the forging stock conveying device does not pass through the frame of the forging machine, but pushes the forging stock to the material waiting station of the forging machine by using the side pushing mechanism, so that one heating furnace can feed a plurality of forging machines;
(2) the transverse conveying roller way, the longitudinal conveying roller way and the transition conveying roller way in the forging stock conveying device are modularized independent operation units, different module assemblies and coordination can be carried out according to needs, and the efficiency is high;
(3) in the process that the forging stock is discharged from a furnace door of the heating furnace to a specific forging machine, only a transverse conveying roller way, a longitudinal conveying roller way and a transition conveying roller way on a conveying path operate, and other conveying roller ways do not operate; after the forging stock is conveyed in place, the transverse conveying roller way, the longitudinal conveying roller way and the transition conveying roller way on the conveying path also stop running; can save a large amount of energy and reduce the production cost.
Drawings
In order to more clearly illustrate the technical solution of the embodiment of the present invention, the drawings required to be used in the description of the embodiment will be briefly introduced below, fig. 1 is a schematic view of a forging stock conveying device provided in embodiment 1, fig. 2 is a top view of a longitudinal conveying roller table in the forging stock conveying device, fig. 3 is a side view of the longitudinal conveying roller table in the forging stock conveying device, and fig. 4 is a schematic view of a side pushing mechanism in the forging stock conveying device.
1-transverse conveying roller way, 2-longitudinal conveying roller way, 3-transition conveying roller way, 4-side pushing mechanism, 21-roller, 22-gear, 23-chain, 24-motor I, 25-chain wheel, 41-rack, 42-gear, 43-motor II.
Detailed Description
In order to make the above objects, features and advantages of the present invention more clearly understood, the present invention will be further described with reference to the accompanying drawings and examples.
In the following description, numerous specific details are set forth in order to provide a thorough understanding of the present invention, however, the present invention may be practiced in other ways than those specifically described herein, and therefore the present invention is not limited to the limitations of the specific embodiments of the present disclosure.
Example 1
The present invention will be further described with reference to fig. 1-4, and as shown in fig. 1, a forging stock conveying apparatus includes a plurality of transverse conveying roller ways 1, a longitudinal conveying roller way 2, a side pushing mechanism 4, and a transition conveying roller way 3. The transverse conveying roller way 1, the longitudinal conveying roller way 2 and the transition conveying roller way 3 are all modularized independent operation units.
As shown in fig. 1, a transverse conveying roller way 1 is arranged at the furnace outlet of the heating furnace, and each longitudinal conveying roller way 2 corresponds to a forging machine working area; the transition conveying roller way 3 is in a straight line with the butted longitudinal conveying roller way 2, and the transition conveying roller way 3 is vertical to the butted transverse conveying roller way 1.
The transverse conveying roller way 1, the longitudinal conveying roller way 2 and the transition conveying roller way 3 are all roller conveying roller ways.
As shown in fig. 2 and 3, the longitudinal conveying roller way 2 comprises rollers 21, gears 22, chains 23, chain wheels 25 and a first motor 24, wherein a plurality of rollers 21 are installed on a rack of the longitudinal conveying roller way 2 in parallel, one end of each roller 21 is provided with the gear 22, and the chains 23 are installed on the peripheries of the plurality of gears 22 of the longitudinal conveying roller way 2 and are matched with the gears 22; the first motor 24 is arranged below the end, provided with the gear 22, of the roller 21, and the output end of the first motor 24 is provided with a chain wheel 25, and the chain wheel 25 is matched with the chain 23.
The transverse conveying roller way 1, the transition conveying roller way 3 and the longitudinal conveying roller way 2 have the same structure, but the number of the rollers is different, and the number of the rollers of the transition conveying roller way 3 is less. The transverse conveying roller way 1, the transition conveying roller way 3 and the longitudinal conveying roller way 2 can rotate positively and negatively.
As shown in fig. 4, the side pushing mechanism 4 is a rack-and-pinion mechanism, and includes a rack 41, a pinion 42 and a second motor 43, the pinion 42 is detachably connected to an output shaft of the second motor 43, the pinion 42 is engaged with the rack 41, the rack 41 rotates with the pinion 42 to perform linear motion, and the linear motion direction of the rack 41 is perpendicular to the longitudinal conveying roller way 2; the lower surface of the rack 41 is flush with the upper surface of the longitudinal conveyor table 2.
The industrial video monitoring system comprises a plurality of cameras and a display, and the cameras are respectively arranged at the outlet furnace door of the heating furnace, at the corresponding positions of the longitudinal conveying roller way 2 and the side pushing mechanism 4; the output ends of the cameras are connected with a display through signal lines; and the driving motors of the transverse conveying roller way 1, the longitudinal conveying roller way 2 and the transition conveying roller way 3 are connected with a controller through signal lines.
The utility model discloses a forging stock conveyer theory of operation:
(1) when a forging stock is to be transferred from a heating furnace (such as a first furnace) to a forging machine (such as a third forging machine), a transfer path is manually selected, generally according to the principle of shortest distance;
(2) when an operator sees the forged blank discharging from the furnace through a monitoring picture, the driving motors of the transverse conveying roller way 1, the longitudinal conveying roller way 2 and the transition conveying roller way 3 on the conveying path are started until the operator sees that the forged blank reaches the position (in a specific forging machine area) corresponding to the longitudinal conveying roller way 2 and the side pushing mechanism 4;
(3) starting a second motor 43 of the side pushing mechanism 4, extending the rack 41 to push the forging stock on the longitudinal conveying roller bed 2 to a material waiting station of the specific forging machine, and then retracting the rack 41;
(4) the transfer process of the forging stock is completed, and the transverse transfer roller way 1, the longitudinal transfer roller way 2 and the transition transfer roller way 3 on the transfer path stop rotating.
The utility model discloses a horizontal transfer roll table among the forging stock conveyer, vertical transfer roll table and transition transfer roll table are modular independent operation unit, can carry out different module equipment and cooperation as required, and is efficient.
In the process that the forging stock is discharged from a furnace door of the heating furnace to a specific forging machine, only a transverse conveying roller way, a longitudinal conveying roller way and a transition conveying roller way on a conveying path operate, and other conveying roller ways do not operate; after the forging stock is conveyed in place, the transverse conveying roller way, the longitudinal conveying roller way and the transition conveying roller way on the conveying path also stop running; can save a large amount of energy and reduce the production cost.
Example 2
The difference between this example and example 1 is:
the side pushing mechanism 4 is a linear telescopic device, such as a cylinder, a hydraulic cylinder or an electric telescopic rod.
The above description is only a preferred embodiment of the present invention, and is not intended to limit the present invention in other forms, and any person skilled in the art may use the above-mentioned technical contents to change or modify the equivalent embodiments into equivalent variations to apply to other fields, but all the modifications and equivalent variations that do not depart from the technical contents of the present invention are still within the scope of the present invention.
Claims (6)
1. A forging stock conveying device comprises a plurality of transverse conveying roller ways (1), a longitudinal conveying roller way (2) and a side pushing mechanism (4), and is characterized by further comprising a transition conveying roller way (3),
the transverse conveying roller way (1), the longitudinal conveying roller way (2) and the transition conveying roller way (3) are all modularized independent operation units;
the transverse conveying roller ways (1) are arranged at the furnace outlet of the heating furnace, and each longitudinal conveying roller way (2) corresponds to a forging machine working area; the transition conveying roller way (3) is in a straight line with the butted longitudinal conveying roller way (2), and the transition conveying roller way (3) is vertical to the butted transverse conveying roller way (1).
2. A transfer device of a forged blank according to claim 1, wherein said transverse transfer roller table (1), longitudinal transfer roller table (2) and transition transfer roller table (3) are roller transfer roller tables.
3. The forging stock conveying device according to claim 2, wherein the longitudinal conveying roller way (2) comprises rollers (21), first gears (22), a chain (23), a chain wheel (25) and a first motor (24), a plurality of rollers (21) are parallelly installed on a frame of the longitudinal conveying roller way (2), one end of each roller (21) is provided with the first gear (22), and the chain (23) is installed on the periphery of the first gears (22) of the longitudinal conveying roller way (2) and is matched with the first gear (22); the first motor (24) is arranged below the end, provided with the first gear (22), of the roller (21), the output end of the first motor (24) is provided with a chain wheel (25), and the chain wheel (25) is matched with the chain (23).
4. A billet transfer apparatus according to claim 1, characterized in that the side-push mechanism (4) is a linear telescopic device or a rack and pinion mechanism.
5. The forging stock conveying device according to claim 4, wherein the side pushing mechanism (4) is a gear-rack mechanism and comprises a rack (41), a second gear (42) and a second motor (43), the second gear (42) is detachably connected to an output shaft of the second motor (43), the second gear (42) is meshed with the rack (41), the rack (41) linearly moves along with the rotation of the second gear (42), and the linear movement direction of the rack (41) is perpendicular to the longitudinal conveying roller way (2); the lower surface of the rack (41) is flush with the upper surface of the longitudinal conveying roller way (2).
6. The forging stock conveying device according to claim 1, further comprising an industrial video monitoring system and a controller, wherein the industrial video monitoring system comprises a plurality of cameras and a display, the cameras are respectively arranged at a furnace outlet of the heating furnace and at positions where the longitudinal conveying roller way (2) corresponds to the side pushing mechanism (4); the output ends of the cameras are connected with a display through signal lines; and the driving motors of the transverse conveying roller way (1), the longitudinal conveying roller way (2) and the transition conveying roller way (3) are connected with the controller through signal lines.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202120382264.3U CN215199501U (en) | 2021-02-20 | 2021-02-20 | Forging stock conveyer |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202120382264.3U CN215199501U (en) | 2021-02-20 | 2021-02-20 | Forging stock conveyer |
Publications (1)
Publication Number | Publication Date |
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CN215199501U true CN215199501U (en) | 2021-12-17 |
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Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN202120382264.3U Active CN215199501U (en) | 2021-02-20 | 2021-02-20 | Forging stock conveyer |
Country Status (1)
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CN (1) | CN215199501U (en) |
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2021
- 2021-02-20 CN CN202120382264.3U patent/CN215199501U/en active Active
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