Left and right yaw feeder working principle

Jun 20, 2019

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The reason why the left and right yaw feeders can be selected by customers is that its unique back-and-forth yaw shifting feeding mode can minimize the scraps generated during stamping production, improve production efficiency and improve material utilization. Especially suitable for the production of wafers.

The working principle of the left and right yaw feeder is as follows: the material head of the material rack is unrolled and the leveling machine is leveled, and passes through the feeder rack, the feeding drum and the discharging plate, and then enters into the punching mold, and the left and right yaw feeding machine After setting the feeding length, the feeding width, the diameter of the wafer and the number of yaws on the touch screen, the left and right yaw feeders are automatically operated, and the servo motor controls the punching action of the punching continuous die through the lifting control device while conveying the material through the material. The device controls the distance and speed of the conveyed material while controlling the lateral translation distance of the material by the lateral translation drive. In this way, when the first punching is completed on the sheet, the servo motor of the left and right yaw feeder can drive the lateral movement of the movable frame through the lateral translation driving device, thereby driving the sheet to laterally translate the appropriate distance, so that the stamping continuous die first edge The sheets are stamped one by one in the direction of the lateral arrangement. After the first row of stamping is completed, the lateral translation driving device drives the movable frame and the material to laterally translate an appropriate distance, and after the material forward conveying device takes the animal material forward by an appropriate distance, the punching continuous die is followed by the second row of punching work. Depending on the size of the punched aperture and the width of the sheet, by accurately calculating the distance and/or the distance of each lateral translation, the gap between the individual punched holes formed on the sheet can be minimized, maximizing material utilization. Rate, reducing material waste


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