Spacer assembly mechanism for the production of escalator chains
A technology of assembly mechanism and spacer, applied in metal processing equipment, metal processing, manufacturing tools, etc., can solve the problem of time-consuming and labor-intensive
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Embodiment 1
[0034] See 1, Figure 2 to Figure 8 , a spacer assembly mechanism for producing escalator chains, including a slide plate 2 for the spacer 1 to slide in a row, limit side plates 3 located on opposite sides of the spacer 1, a positioning mechanism for positioning the spacer 1, and a The chute 4 on the limit side plate 3 for the edge of the spacer 1 to be embedded, the pushing and grasping mechanism capable of pushing the spacer 1 out from between the limit side plates 3 and grabbing the spacer 1 on the rotating shaft 5 .
[0035] The positioning mechanism includes a positioning assembly located on opposite sides of the spacer 1; the positioning assembly includes a guide sleeve 6 fixed on the limit side plate 3, a telescopic shaft 7 slidingly connected in the guide sleeve 6, and a return spring for resetting the telescopic shaft 7 8. The telescopic shaft 7 passes through the limiting side plate 3 and is slidably connected with the limiting side plate 3 . The end of the telescop...
Embodiment
[0038] Embodiment principle:
[0039] The spacer 1 is arranged and slides along the slide plate 2, the edge of the spacer 1 is located in the chute 4, and the spacer 1 at the end is against the telescopic shaft 7, see Figure 4 . In addition, there is a spacer 1 located between the rotating shaft 5 and the limit side plate 3, and the spacer 1 is named as the spacer to be clamped.
[0040] When assembling, a chain plate 35 has been assembled at one end of the rotating shaft, and the chain plate 35 is placed horizontally.
[0041] When this embodiment is in operation, the slider 10 slides, and the plug 13 moves to the spacer 1 abutting against the telescopic shaft 7. At this time, the manipulator 14 is located above the spacer to be clamped. See Figure 5 , then the first electric cylinder 11 and the second electric cylinder 12 run, the plug 13 is inserted into the corresponding spacer 1, the manipulator 14 clamps the spacer to be clamped, and then the second electric cylinder...
Embodiment 2
[0043] see Figure 9 to Figure 16 ; The difference between this embodiment and Embodiment 1 is to implement the grabbing mechanism.
[0044] The pushing and grabbing mechanism includes a cylinder body 15, a piston 16 slidingly connected in the cylinder body 15, a third electric cylinder 17 for lifting the cylinder body 15, a piston rod 18 affixed to the lower side of the piston 16, and a piston rod 18 sleeved on the piston rod. The limiting plate 19 on the 18, the clamping assembly for clamping the spacer 1 at the lower end of the cylinder 15, the air hole 20 at the upper end of the cylinder 15, and the moving device for moving the cylinder 15;
[0045] The piston rod 18 includes a thick section 21, a thin section 22 below the thick section 21, a frustum-shaped transition section 23 between the thick section 21 and the thin section 22; the outer diameter of the thick section 21 and the spacer The inner diameter of 1 is adapted; the inner diameter of the cylinder 15 is adapted...
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