By Waltraud M. Kriven
This publication offers a state of the art number of papers offered on the 66th convention on Glass difficulties on the college of Illinois at Urbana-Champaign in October of 2005.
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Extra resources for 66th Conference on Glass Problems
For the cold end, a 'liquid' Sn/SnO2 reference mix (SnOl on an oxygen saturated tin melt inside the zirconia cell) can be used. This reference is more reactive in the low temperature range and more precise with respect to the detection of dross in the cold end. The probe's geometry and dimension is similar to that of a normal thermocouple (see Figirre 3) allowing simple replacement along the entire length of the float bath. 4htminu housing tithe. (4) Ceruniic nieusuring till. Insert: 4u) Zircoriia oxygen cell.
As shown in this figure, the final model has adapted to significantly different dead time and gain when compared to the initial estimate. The controller provides responsive control with no overshoot, using the final model for the third and fourth setpoint bumps. Figure 1: Model Based Control Step Tests during Teaching Phase 48 * 66th Conferenceon Glass Problems Breaking the Boundaries of PID In addition to adapting to changes, the model uses feed forward mputs to p d c t what will happen in the process and avoid problems before they occur.
17 ON-LINE OXYGEN SENSOR FOR THE TIN BATH IN FLOAT GLASS PRODUCTLON LINES Paul R. V. 5591 MZ Heeze. C. Box 6235,5600 HE Eindhoven. the Netherlands ABSTRACT A special oxygen sensor has been developed for the continuous measurement of the equilibrium oxygen pressure and oxygen content in the molten tin in the float bath of the float glass production line. The measuring principle and sensor design are explained. Float glass surface defects like tin pick-up, bloom, scum a i d tin drops are directly or indirectly caused by too high oxygen levels in the molten tin.
66th Conference on Glass Problems by Waltraud M. Kriven