Idler shaft cutting equipment with size adjustment structure
A technology for size adjustment and cutting equipment, which is applied in the direction of shearing machine equipment, metal processing equipment, shearing devices, etc., can solve the problems of high labor intensity, inaccurate feeding position, and potential safety hazards of accidents, so as to reduce potential safety hazards , Reduce the workload and improve the production effect
- Summary
- Abstract
- Description
- Claims
- Application Information
AI Technical Summary
Problems solved by technology
Method used
Image
Examples
Embodiment 1
[0036] like figure 1 , figure 2 and Figure 7 As shown, the idler shaft is placed on the feeding table 501, the idler shaft is in a static state under the action of the first limit block 503, the first electric push rod 504 is activated, and the telescopic end of the first electric push rod 504 drives the first electric push rod 504. The arc-shaped push plate 505 moves up and down in the slot 19, and cooperates with the second arc-shaped push plate 506 to push the idler shaft to the orientation plate 502, slides down to the bottom through the inclined surface on one side of the orientation plate 502, and passes through the third limit. The position block 509 limits the idler shaft. After the previous idler shaft is transported by the clamping and conveying assembly 6, the first electric push rod 504 drives the first arc-shaped push plate 505 to move downward, and the second arc-shaped pusher 505 moves downward. The push plate 506 is limited by the position of the idler shaf...
Embodiment 2
[0038] like figure 1 , image 3 , Image 6 and Figure 9 As shown, when the idler shaft is pushed by the feeding assembly 5 to the edge of the feeding table 501, the third drive motor 604 is activated, and the third drive motor 604 drives the second gear 605 to rotate, and cooperates with the third drive motor 606 connected to the first bracket 606. The gear 607 drives the drive chain 608 to rotate, and the drive chain 608 drives the plurality of horizontal plates 609 to move cyclically. When the second clamping claw 611 first contacts the idler shaft through the first chute 508, it is folded by the torsion spring 20 and continues Moving, the first clamping claw 610 contacts the idler shaft and lifts it up, and cooperates with the fourth limit block 612 installed at the bottom of the first clamping claw 610 and the second clamping claw 611 to effectively clamp the idler shaft The fourth limit block 612 can limit the folding angle of the first clamping claw 610 and the secon...
Embodiment 3
[0040] like Figure 1-5 and Figure 8 As shown, the position of the cutter 708 in the cutting assembly 7 is adjusted according to the actual processing requirements of the idler shaft. When setting, the second support plate 713 is fixed to the outside of the ring gear 703 by bolts according to the diameter of the idler shaft. On the threaded holes 709 opened, the first support plate 706 is fixed on the threaded holes 709 opened on the outside of the second support plate 713 by bolts, and then the adjustment of the cutter 708 is completed. After the idler shaft moves to the designated position, start The first drive motor 704 and the second drive motor 707, the first drive motor 704 drives the ring gear 703 to perform a circular motion outside the ring plate 702 through the first gear 705, and then drives the second drive motor 707 to perform a circular motion. While cutting the idler shaft, the first connecting rod 710 connected to the fixing frame 701 stably supports both en...
PUM
Login to View More Abstract
Description
Claims
Application Information
Login to View More 


