Side ejection mechanism
Technical Field
The utility model relates to the field of mechanical equipment, in particular to a side ejection mechanism.
Background
In the whole line equipment layout of factory production, the feeding and position adjustment of the component raw materials are needed to be realized in many times, but the functions of the inner side roof and lifting in the limited space are needed to be realized in consideration of the limited actual space, the extending distance is long, the lifting weight is large, the whole efficiency of a line body is further ensured, the existing side roof mechanism is heavy in structure, the mechanical structure is complex, and the side roof and lifting action process with good stability cannot be guaranteed.
Disclosure of utility model
The utility model aims to provide a side-ejection mechanism, which has the advantage of realizing the vertical and horizontal side-stable synchronous lifting adjustment function.
The technical aim of the utility model is realized by the following technical scheme: the utility model provides a side top mechanism, includes the support base, be equipped with braced frame on the support base, characterized by: the automatic feeding device is characterized in that a material carrying table is arranged in the supporting frame and comprises a sliding block seat which is matched with the supporting frame in a vertical sliding manner and a horizontal supporting block which is detachably arranged on the side part of the sliding block seat, a vertical lifting assembly which drives the sliding block seat to move vertically is arranged in the supporting frame, the vertical lifting assembly comprises a jacking cylinder and a deviation rectifying module, the bottom of the jacking cylinder is fixed with the supporting base, the top end of the jacking cylinder is fixed with the sliding block seat, the deviation rectifying module comprises a deviation rectifying groove block arranged in the supporting frame and guide groove blocks arranged on two sides of the sliding block seat, the deviation rectifying groove block is matched with the guide groove blocks in an inserting manner, a cavity is formed in the middle of the horizontal supporting block, a horizontal supporting block and a horizontal telescopic assembly which drives the horizontal supporting block to stretch out and draw back are arranged in the cavity, the horizontal telescopic assembly comprises a driving motor arranged in the cavity and a driving fluted disc matched with the driving motor, and a driving rack meshed with the driving fluted disc is arranged on the top end of the horizontal supporting block.
Preferably: the cavity is internally provided with a horizontal movable groove block, and the horizontal carrier block is inserted into the horizontal movable groove block.
Preferably: and the horizontal movable groove block is also connected with a plurality of adjusting bolts in a threaded manner.
Preferably: the one end that level riding block and slider seat contacted is equipped with the collar limit, all be equipped with the screw hole on collar limit and the slider seat, screw hole threaded connection has fixing bolt.
Preferably: and a limiting clamping block is arranged at the top end of the deviation rectifying groove block.
Preferably: the top of the sliding block seat is provided with a force-applying lifting lug block.
Preferably: the horizontal supporting block is provided with a plurality of reinforcing ribs
In summary, the utility model has the following beneficial effects:
through the independent setting of vertical lifting subassembly and horizontal telescopic assembly in braced frame, can ensure synchronous vertical and horizontal bearing feeding under single action process, improve side top mechanism's job stabilization and reliability, reduce the not smooth or slow situation of action response of current side top mechanism common, realized the mild and stable characteristic of side top process.
Drawings
FIG. 1 is a schematic view of the external structure of a side roof mechanism for use in a present embodiment;
FIG. 2 is a schematic diagram showing the operation of the side roof mechanism in an embodiment;
FIG. 3 is a schematic diagram of a driving motor and driving cog tool for use in the present embodiment;
FIG. 4 is an enlarged view of A in FIG. 1;
Fig. 5 is an enlarged view of B in fig. 1.
Reference numerals: 1. a support base; 2. a support frame; 3. a material carrying table; 4. a slider seat; 5. a horizontal support block; 6. jacking the air cylinder; 7. a deviation rectifying groove block; 8. a guide groove block; 9. a cavity; 10. a horizontal carrier block; 11. a driving motor; 12. driving the fluted disc; 13. a drive rack; 14. a horizontally movable trough block; 15. an adjusting bolt; 16. installing a ring edge; 17. a threaded hole; 18. a limit clamping block; 19. a force-applying lifting lug block; 20. reinforcing ribs.
Detailed Description
The present utility model will be described in further detail with reference to the accompanying drawings.
Examples: the utility model provides a side roof mechanism, is shown as fig. 1, including supporting base 1, is equipped with braced frame 2 on the supporting base 1, in the production line overall arrangement, through a pair of side roof mechanism that the subtend set up, can realize carrying the lifting and the centre gripping fastening of processing part on the production line, the supporting base 1 can realize the whole steady contact with the bottom surface of side roof mechanism.
As shown in fig. 1 and 2, a material carrying table 3 is arranged in the supporting frame 2 and used for realizing horizontal and vertical limiting support of components, the material carrying table 3 comprises a sliding block seat 4 which is matched with the supporting frame 2 in a vertical sliding manner and a horizontal supporting block 5 which is detachably arranged on the side part of the sliding block seat 4, one end of the horizontal supporting block 5, which is in contact with the sliding block seat 4, is provided with a mounting annular edge 16, threaded holes 17 are formed in the mounting annular edge 16 and the sliding block seat 4, fixing bolts are connected in the threaded holes 17 in a threaded manner, and the mounting and fixing of the horizontal supporting blocks 5 at different positions can be met through the adjustment of the threaded holes 17 and the fixing bolts.
The support frame 2 is internally provided with a vertical lifting assembly for driving the sliding block seat 4 to vertically move, the vertical lifting assembly comprises a jacking air cylinder 6 and a deviation rectifying module, the jacking air cylinder 6 can drive the sliding block seat 4 and the horizontal supporting block 5 to vertically lift and drive, the bottom of the jacking air cylinder 6 is fixed with the support base 1, the top end of the jacking air cylinder 6 is fixed with the sliding block seat 4, and the vertical position can be adjusted only by means of the telescopic progress of the jacking air cylinder 6; in order to further improve the stability and smoothness of the vertical progress under the action of bearing force, the deviation correcting module comprises a deviation correcting groove block 7 arranged in the supporting frame 2 and guide groove blocks 8 arranged on two sides of the sliding block seat 4, and the deviation correcting groove block 7 is in plug-in fit with the guide groove blocks 8, so that the displacement deviation of the vertical movement of the sliding block seat 4 is limited, and the possible slipping and skewing of the bearing force is reduced; the top of the deviation rectifying groove block 7 is provided with a limiting clamping block 18, so that the maximum displacement of the vertical movement can be limited, and the slipping possibly caused by excessive displacement is reduced.
The horizontal supporting block 5 is used for realizing horizontal bearing and lateral pressure application to components, a cavity 9 is arranged in the middle of the horizontal supporting block 5, a horizontal carrying block 10 and a horizontal telescopic component for driving the horizontal carrying block 10 to stretch out and draw back are arranged in the cavity 9, the horizontal telescopic component comprises a driving motor 11 (shown in figure 3) arranged in the cavity 9 and a driving fluted disc 12 (shown in figure 3) matched with the driving motor 11, the top end of the horizontal carrying block 10 is provided with a driving rack 13 (shown in figure 4) meshed with the driving fluted disc 12, namely, the driving fluted disc 12 is driven to rotate under the action of the driving motor 11, so that the driving fluted disc 12 and the driving rack 13 relatively move, a horizontal movable groove block 14 is further arranged in the cavity 9, the horizontal carrying block 10 is inserted into the horizontal movable groove block 14, and further horizontal feeding of the horizontal carrying block 10 is realized, and the force application clamping effect acting on the side part of a product is achieved.
As shown in fig. 1, 2 and 5, considering that the gear engagement effect is that the horizontal carrier block 10 moves relative to the empty horizontal movable groove block 14 in a large overload state, a plurality of adjusting bolts 15 are further connected to the horizontal movable groove block 14 in a threaded manner, and instantaneous locking fixation can be realized.
The top of the sliding block seat 4 in the device is provided with the force application lifting lug block 19, so that manual auxiliary deviation rectifying operation possibly needed in actual use is facilitated, the force application lifting lug block 19 is lifted by means of external lifting such as a crane, and meanwhile, the horizontal supporting block 5 is provided with a plurality of reinforcing ribs 20, so that the whole compression resistance and tensile structural strength of the device are improved, and the reliability and stability of the whole work of the device are ensured.
The present embodiment is only for explanation of the present utility model and is not to be construed as limiting the present utility model, and modifications to the present embodiment, which may not creatively contribute to the present utility model as required by those skilled in the art after reading the present specification, are all protected by patent laws within the scope of claims of the present utility model.