Low iron high transmission glass with boron oxide for improved optics, durability and refining, and corresponding method
a transmission glass and high-efficiency technology, applied in the field of glass compositions, can solve the problems of increasing production costs, reducing thermal efficiency, and not providing, and achieve the effect of improving optical performance and durability
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[0028]Example glasses were made according to example embodiments of this invention. Glasses of this invention may be made from batch ingredients using well known glass melting and refining techniques, unless otherwise indicated. The compositions of the glasses according to the examples are set forth in FIGS. 1-2. All amounts of ingredients are in terms of weight percentage. In particular, in FIGS. 1-2 the glasses at DOE 1-6, 1-7, 1-8, and 1-9 represent Examples 1, 2 and 3 of this invention, respectively; whereas the other glasses in FIGS. 1-2 represent comparative examples.
[0029]FIG. 1 sets forth the glass melt descriptions of the various glasses including the make-up (constant glass yield=100 g per melt) of the glass melt and the USPX value of each glass. Meanwhile, FIG. 2 illustrates the measured XRF results matrix for each of the glasses made in accordance with FIG. 1. Boron oxide was added in Examples 1-3, but was not present in the comparative examples in FIGS. 1-2. It can be s...
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