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Therefore to be able to adjust wire tension easily a co-axial tensioner shaft shown in Fig. 13 was devised as the input pulley.
In particular, an iterative learning sliding mode control scheme for wire tension control is developed in this paper, while a disturbance observer is employed to estimate the wire tension for the implementation of sensorless wire tension control.
tool electrode, current intensity, pulse on time, pulse off time, wire feed and wire tension.
Besides, the phenomena of wire deflection and vibration have a direct relationship with wire tension.
Firstly, the factors resulting in wire tension fluctuation are briefly introduced.
Results of the winding experiments verify the effectiveness of the proposed wire tension control scheme.
Experiment data indicate that this control system has good ability of controlling wire tension without obvious overshoot.
The corresponding parameters acting as the input are Current, Pulse on Time and Pulse off Time, Wire Tension.
Next, the wire tension control experiment and cutting experiment are carried out to evaluate the performance of this control system.
In this study, the machining variables investigated were pulse-peak current, pulse-on time, pulse-off time, and wire tension.
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What's striking is the high-wire tension Eggers maintains.
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