Multi-station forging device for precision forging
Technical Field
The utility model relates to the technical field of forging devices, in particular to a multi-station forging device for a precision forging.
Background
The metal object can be manufactured through a forging process, and a forging die is a die used in the forging process, and the raw material is plastically deformed in the forging die under the action of external force, so that a part with a required shape and size can be obtained.
For this, china application number 202322132474.9 discloses a gear multi-station forging die, which comprises a bottom plate, wherein the surface of the bottom plate is rotationally connected with a rotating shaft, the upper end of the rotating shaft is fixedly connected with a rotating disc, the surface of the rotating disc is provided with a forging groove and a discharging hole, the surface of the forging groove is provided with a round hole, the inside of the round hole is rotationally connected with a rotating rod, the surface of the rotating rod is fixedly connected with a forging plate, and the surface of the bottom plate is fixedly connected with a first electric push rod. The novel electric forging device has the advantages that the first electric push rod is started, the movable end of the first electric push rod extends into the forging groove to push the forging plate in the forging groove, the forging plate rotates through rotary connection between the rotary rod and the round hole, after the forging plate is inclined, the gear slides off, the forged gear on the forging plate can slide out from the discharge hole and directly falls into the material receiving box, a worker does not need to clamp through a clamp or a mechanical arm, and the novel electric forging device is more convenient to use.
This mould can draw forth the article after the processing via the discharge gate through setting up the forging board that can overturn, but in the in-process of using, because limiting plate can only support one side of forging board bottom, when the part of article forges, can press forging board for the article that has not accomplished falls out, influences the use experience of device.
Thus, the improvement and improvement of the problems are needed to be solved.
Disclosure of utility model
The utility model aims to provide a multi-station forging device for a precision forging, which is used for solving the problems that in the prior art, a die is provided with a reversible forging plate and can lead out a processed object through a discharge hole, but in the using process, as a limiting plate can only support one side of the bottom of the forging plate, the forging plate can be pressed during partial forging of the object, so that the unfinished object falls out, and the using experience of the device is affected.
In order to achieve the aim, the utility model provides the technical scheme that the multi-station forging device for the precision forging comprises a bracket, a forging mechanism and a forging mechanism, wherein the forging mechanism is arranged on the top surface of the inner side of the bracket;
The inner side of support installs revolution mechanic, revolution mechanic includes the landing leg, landing leg fixed mounting is in the inboard bottom surface of support, the upper end of landing leg has the revolving stage through bearing movable mounting, put the silo has been seted up to the top surface of revolving stage, set up the blown down tank on the inner wall of putting the silo, the inboard of putting the silo has forging platform through pivot movable mounting, forging platform's bottom surface welding has half ring gear, the inside slidable mounting of revolving stage has rack board, the inboard fixed mounting of revolving stage has electric telescopic handle.
Preferably, the rotating structure is provided with a collecting structure, the collecting structure comprises a fixing rod, the fixing rod is fixedly welded on the outer side wall of the rotary table, a collecting box is arranged on the inner side of the fixing rod, a connecting lug is welded on the outer side wall of the collecting box, and a filter screen is integrally formed on the inner side of the collecting box.
Preferably, the forging mechanism is matched with the material placing groove.
Preferably, the discharge chute is provided obliquely, and the discharge chute is aligned with the collecting structure.
Preferably, the rack plate is meshed with the half-toothed ring, and the extending end of the electric telescopic rod is fixedly connected with the rack plate.
Preferably, the collecting box is mutually attached to the rotary table, and the fixing rod penetrates through the connecting lug.
Compared with the prior art, the utility model has the beneficial effects that through the matching of the rack plate and the electric telescopic rod, the angle of the forging table at the inner side of the material placing groove can be limited at the lower side, so that the top surface of an object is kept horizontal during processing, the forging effect of the object can be ensured, and the use experience of the device is further improved.
1. According to the utility model, the rotary structure is arranged on the inner side of the material placing groove, so that the object is positioned on the top surface of the forging table, the motor is started to drive the rotary table to rotate, the object can be moved to the lower side of the forging mechanism through the rotary table, the forging processing of the object in the material placing groove is facilitated through the forging mechanism, the rack plate is meshed with the half-toothed ring, the rack plate is matched with the half-toothed ring to limit the angle of the forging table in the material placing groove on the lower side, so that the forging table keeps a fixed angle, the object on the forging table is ensured to be horizontal, the forging effect on the object is ensured, the processed object moves to the front side along with the rotation of the rotary table, the electric telescopic rod is started, the rack plate can be driven to move, the rack plate can be driven to rotate through the half-toothed ring, the forging table is inclined, and impurities generated during the forging and the object and the forging process can fall down from the top surface of the forging table, so that the object and the impurities flow out through the discharging groove;
2. According to the utility model, the collecting structure is arranged, the objects and impurities flowing out through the discharging groove can move into the collecting structure, the filter screen can filter the objects and impurities, so that the objects are positioned on the upper side of the filter screen, the impurities can move to the lower side inside the collecting box, the separation of the objects and the impurities is realized, the collecting box is moved upwards, the connecting lugs can be separated from the fixing rods, and the collecting box is convenient to take down, so that the impurities in the collecting box are cleaned.
Drawings
FIG. 1 is a schematic diagram of the structure of the present utility model;
FIG. 2 is a schematic structural view of the forging mechanism and rotary structure of the present utility model;
FIG. 3 is a schematic cross-sectional elevation view of a turntable according to the present utility model;
FIG. 4 is an exploded schematic view of the front cross-sectional structure of the turntable and collection structure of the present utility model.
In the figure, 1, a bracket; 11, a forging mechanism, 2, a rotating structure, 21, supporting legs, 22, a rotary table, 23, a material placing groove, 24, a material discharging groove, 25, a forging table, 26, a half-toothed ring, 27, a rack plate, 28, an electric telescopic rod, 3, a collecting structure, 31, a fixed rod, 32, a collecting box, 33, a connecting lug and 34 and a filter screen.
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.
Referring to fig. 1-4, an embodiment of the present utility model is provided:
The motor and electric telescopic rod 28 used in the present application are commercially available products, and the principle and connection are well known to those skilled in the art, and will not be described in detail herein.
A multi-station forging device for a precision forging comprises a bracket 1, wherein a forging mechanism 11 is arranged on the top surface of the inner side of the bracket 1;
The inner side of the support 1 is provided with a rotating structure 2, the rotating structure 2 comprises supporting legs 21, the supporting legs 21 are fixedly arranged on the inner side bottom surface of the support 1, the upper ends of the supporting legs 21 are movably provided with rotating tables 22 through bearings, the top surfaces of the rotating tables 22 are provided with material placing grooves 23, the inner walls of the material placing grooves 23 are provided with forging tables 25 through rotating shafts, the bottom surfaces of the forging tables 25 are welded with half toothed rings 26, the inner side of the rotating tables 22 is slidably provided with rack plates 27, the inner side of the rotating tables 22 is fixedly provided with electric telescopic rods 28, and through the cooperation of the rack plates 27 and the electric telescopic rods 28, the angles of the forging tables 25 on the inner sides of the material placing grooves 23 can be limited, so that the top surfaces of objects can be kept horizontal during processing, the forging effect of the objects can be guaranteed, and the use experience of the device is improved.
Further, install collection structure 3 on the revolution mechanic 2, collection structure 3 includes dead lever 31, the fixed welding of dead lever 31 is on the lateral wall of revolving stage 22, collection box 32 is installed to the inboard of dead lever 31, the welding has engaging lug 33 on the lateral wall of collection box 32, the inboard integrated into one piece of collection box 32 has filter screen 34, article and impurity movable to collection structure 3 that flows out through the blown down tank 24 are interior, filter screen 34 can filter article and impurity, make the article be located filter screen 34 upside, and impurity movable to the inside downside of collection box 32, realize the separation of article and impurity, and upwards remove collection box 32, can separate engaging lug 33 and dead lever 31, be convenient for take off collection box 32, in order to clear up the impurity in the collection box 32.
Further, the forging mechanism 11 is engaged with the placement groove 23, and the forging mechanism 11 can forge the object in the placement groove 23.
Further, the spout 24 is inclined, the spout 24 is aligned with the collection structure 3, and the objects and impurities flowing out through the spout 24 can move into the collection structure 3.
Further, the rack plate 27 is meshed with the half-toothed ring 26, the extending end of the electric telescopic rod 28 is fixedly connected with the rack plate 27, the electric telescopic rod 28 provides power for the movement of the rack plate 27, and the rack plate 27 can be matched with the half-toothed ring 26 at the lower side to limit the angle of the forging table 25 at the inner side of the storage groove 23.
Further, the collecting box 32 is attached to the rotary table 22, the fixing rod 31 penetrates through the connecting lug 33, and the fixing rod 31 is matched with the connecting lug 33 to fix the collecting box 32 on the rotary table 22.
When the forging device is used, an object is placed on the inner side of the storage groove 23, so that the object is positioned on the top surface of the forging table 25, a motor is started to drive the rotary table 22 to rotate, the object can be moved to the lower side of the forging mechanism 11 through the rotary table 22, the forging processing of the object in the storage groove 23 is facilitated through the forging mechanism 11, the rack plate 27 is meshed with the half-toothed ring 26, the rack plate 27 cooperates with the half-toothed ring 26 to limit the angle of the forging table 25 in the storage groove 23 at the lower side, the forging table 25 is kept at a fixed angle, the object level on the forging table 25 is ensured, and the forging effect on the object is ensured;
The rotation of revolving stage 22 is followed to the object after the processing is accomplished moves to the front side, start electric telescopic handle 28, can drive rack board 27 and remove, rack board 27 accessible half ring gear 26 drives forging platform 25 rotation, forging platform 25 inclines promptly, be convenient for fall down the impurity that produces during object and the forging from forging platform 25 top surface for object and impurity flow out via blown down tank 24, can remove to in the collection structure 3, filter screen 34 can filter the object, make the object be located filter screen 34 upside, and impurity movable to the inside downside of collection box 32, realize the separation of object and impurity, and upwards remove collection box 32, can separate engaging lug 33 and dead lever 31, be convenient for take off collection box 32, in order to clear up the impurity in the collection box 32.
The foregoing description is only a preferred embodiment of the present utility model, and is not intended to limit the utility model in any way, and those skilled in the art may easily implement the present utility model as shown in the drawings and described above, but many modifications, adaptations and variations of the present utility model using the above disclosed technical matters will be equivalent to the embodiments of the present utility model without departing from the scope of the present utility model, and meanwhile, any equivalent changes, adaptations and variations of the above embodiments according to the essential technology of the present utility model are all within the scope of the technical matters of the present utility model.