IP Library Granted Patent US 8,499,584
Granted Patent B2
US 8,499,584 · App. 13/469,218 · Granted Aug 6, 2013

Molten glass delivery apparatus for optical quality glass

Inventor: Richard B. Pitbladdo (Naples, FL)
Assignee: Corning Incorporated
C03B5/1875
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 8,499,584
App. No.
13/469,218
Granted
Aug 6, 2013
Kind
B2
Abstract

A molten glass delivery system is modified to match it with the overflow downdraw process. A substantial number of defects not removed by the finer are diverted to the unusable inlet and distal edges of the sheet. In one embodiment, the stirring device is relocated from the outlet to the inlet of the finer. In another embodiment, the basic shape of the finer is preferably changed from a cylindrical shape to a Double Apex (or Gull Wing) shaped cross-section, whereby the apexes of the finer contain the glass that will form the unusable inlet end of the glass sheet. The finer vent or vents are preferably located at these apexes such that any homogeneity defects caused by the vents are diverted to the unusable inlet end of the glass sheet. The finer cross-section has a high aspect ratio for increased fining efficiency as compared to a cylindrical finer.

Claims (20)

1. A molten glass delivery system comprising:

a melting furnace configured to contain a quantity of molten glass with a free surface, and

a stirring device that comprises at least one stirrer configured for pumping action to provide hydrostatic pressure to move glass against gravitational forces from the melting furnace to a greater elevation relative to the free surface of the molten glass in the melting furnace to a glass forming process.

2. The molten glass delivery system of claim 1 , wherein the stirrer is positioned to be located below the free surface in a forebay of the melting furnace.

3. The molten glass delivery system of claim 2 , wherein a bottom of a casing of the stirring device is positioned to be located below the glass free surface in the forebay.

4. The molten glass delivery system of claim 2 , wherein a bottom of a casing of the stirring device is positioned to be located above the glass free surface in the forebay.

5. A molten glass delivery system comprising:

a) a stirring device configured to receive molten glass from a melting furnace, wherein the stirring device is configured for pumping action and configured to homogenize the glass;

b) a finer configured to receive molten glass from the stirring device;

c) a cooling and conditioning section configured to receive glass from the finer; and

d) a transition section configured to receive the glass from the cooling and conditioning section;

wherein a bottom of the cooling and conditioning section is positioned to be located above a level of glass in the melting furnace and the stirring device is configured such that the pumping action of the stirring device moves glass into an overflow downdraw process; and

wherein the stirring device is configured to provide hydrostatic pressure to move glass against gravitational forces from the melting furnace to a greater elevation relative to the level of glass in the melting furnace.

6. A molten glass system comprising:

a) a melting furnace comprising a forebay configured to contain a quantity of molten glass with a free surface;

b) a stirring device configured to receive the glass from the forebay of the melting furnace, comprising at least one stirrer configured for pumping action, wherein the stirrer is positioned to be located below the free surface of the glass in the forebay; and

c) a finer , wherein a bottom of the finer is positioned to be elevated with respect to the free surface;

wherein the stirrer is configured to provide hydrostatic pressure to move glass upward against gravitational forces from the melting furnace to a greater elevation relative to the free surface of the molten glass in the melting furnace, through the finer, and to a glass forming process.

7. The molten glass system of claim 6 , wherein a bottom of a casing of the stirring device is positioned to be located below the free surface of the glass in the forebay.

8. The stirring device of claim 6 , wherein the bottom of casing of the stirring device is positioned to be located above the free surface of the glass in the forebay.

Continuity (4)
Division 12057697 · Mar 28, 2008
Provisional Application 60954622 · Aug 8, 2007
Provisional Application 60957007 · Aug 21, 2007
Related Publication 20120216577A1 · Aug 30, 2012