New PDF release: 75th Conference on Glass Problems : Ceramic Engineering and

New PDF release: 75th Conference on Glass Problems : Ceramic Engineering and

By S. K. Sundaram

The 75th Glass challenge convention is prepared in accordance with the next issues: Glass Melting, Forming, Energy and Environmental, Refractories, Sensors and keep watch over, Modeling

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Read or Download 75th Conference on Glass Problems : Ceramic Engineering and Science Proceedings, Volume 36, Issue 1 PDF

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Extra info for 75th Conference on Glass Problems : Ceramic Engineering and Science Proceedings, Volume 36, Issue 1

Sample text

The characteristic shape and the high birefringence indicated that the nodules were likely zirconia. SEM analysis revealed irregularly shaped nodules, as shown in Figure 7(c). EDX showed that the nodules were composed of zirconia. Between the nodules, the composition was 75th Conference on Glass Problems · 19 Comparison of SEM/EDX Analysis to Petrographic Techniques an alumina rich glassy matrix (Figures 7(d) and 7(e)). The SEM/EDX analysis showed definitively that the nodules were zirconia. In addition, the areas between the nodules were alumina rich.

The remaining area of the interior of the stone was composed primarily of silica with a lesser amount of alumina (10(e)). Both the SEM/EDX and the petrographic concluded the primary stone was an alumino silicate clay. EDX identified the grains at the perimeter as being composed of silica; however, petrographically they were incorrectly identified as corundum. The stone source was likely a ceramic cullet contaminant such as a tableware item. 75th Conference on Glass Problems · 23 Comparison of SEM/EDX Analysis to Petrographic Techniques (a) Photograph (b) Thin Section Photographs (c) SEM Photomicrograph (d) EDX of Grains (e) EDX of Stone Center Figure 10.

Figure 10 shows field trial results from one section of an actual machine in the field, illustrating how the closed plunger dwell times are driven smoothly to the desired setpoint value (left hand panel) after the control is turned on. It is notable that the pressure level (P2) required to achieve these dwell times (right hand panel) is different for each cavity. This could be due, for example, to differences in the friction situation for the different cavities. To arrive at a uniform dwell time for all of the cavities without a closed loop would be quite difficult.

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