IP Library Granted Patent US 12709564
Granted Patent B2
US 12709564 · App. 18/710,342 · Granted Aug 18, 2026

Glass manufacturing apparatus comprising a delivery conduit system with a low impedance drain assembly

Inventors: Gilbert De Angelis (Lindley, NY); Juan Camilo Isaza (Corning, NY)
Assignee: CORNING INCORPORATED
C03B5/1675C03B5/262C03B7/07C03B7/084
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 12709564
App. No.
18/710,342
Granted
Aug 18, 2026
Kind
B2
Abstract

A delivery conduit system for a glass manufacturing apparatus, the conduit system including a drain assembly configured to allow draining molten glass from the delivery conduit system. The drain assembly includes heating means and cooling means that can open a drain flow of molten glass from components of the conduit system and shut off flow to the forming body by selectively modifying the fluid impedance presented to the molten glass by the drain assembly.

Claims (34)

1 . A glass manufacturing apparatus, comprising:

a delivery conduit system configured to convey a flow of molten glass from a delivery vessel to a forming body, the delivery conduit system comprising:

an exit conduit extending from the delivery vessel;

an inlet conduit extending from the forming body;

a drain assembly coupled between the exit conduit and the inlet conduit, the drain assembly comprising a downward-extending drain tube comprising an inlet end and an outlet end, and comprising a first curved conduit section configured to direct the flow of molten glass from a first direction to a second direction different from the first direction;

a first cooling device disposed adjacent the delivery conduit system between the drain tube and the forming body; and

a heating device configured to heat the outlet end of the drain tube,

wherein the first curved conduit section comprises a first curved conduit portion and a second curved conduit portion, each of the first curved conduit portion and the second curved conduit portion configured to direct the flow of molten glass through a change in direction of 90 degrees,

wherein the first curved conduit section comprises a first straight conduit portion coupled between the first curved conduit portion and the second curved conduit portion, and

wherein the drain assembly further comprises a second curved conduit section connected to the first curved conduit section and disposed between the first curved conduit section and the inlet conduit.

2 . The glass manufacturing apparatus of claim 1 , wherein the heating device comprises a pair of electrical flanges attached to the drain tube.

3 . The glass manufacturing apparatus of claim 1 , wherein the drain tube is coupled to the first straight conduit portion.

4 . The glass manufacturing apparatus of claim 1 , wherein a second straight conduit portion is coupled between the second curved conduit portion and the second curved conduit section.

5 . The glass manufacturing apparatus of claim 4 , wherein the cooling device is positioned proximate the second straight conduit portion.

6 . The glass manufacturing apparatus of claim 1 , wherein the delivery conduit system comprises platinum.

7 . The glass manufacturing apparatus of claim 1 , wherein an inside diameter of the exit conduit is less than an inside diameter of the first curved conduit section.

8 . The glass manufacturing apparatus of claim 7 , wherein a first transition tube is coupled between the exit conduit and the first curved conduit section, an inside diameter of the first transition tube varying between the inside diameter of the exit conduit and the inside diameter of the first curved conduit section.

9 . The glass manufacturing apparatus of claim 7 , wherein a second transition tube is coupled between the inlet conduit and the second curved conduit section, an inside diameter of the second transition tube varying between the inside diameter of the inlet conduit and the inside diameter of the second curved conduit section.

10 . The glass manufacturing apparatus of claim 1 , wherein the second curved conduit section is coupled to the inlet conduit and an inside diameter of the inlet conduit is less than an inside diameter of the second curved conduit section.

11 . A glass manufacturing apparatus, comprising:

a delivery vessel, a forming body, and a delivery conduit system configured to convey a flow of molten glass from the delivery vessel toward the forming body, the delivery conduit system comprising:

an exit conduit extending downward from the delivery vessel;

an inlet conduit extending from the forming body;

a drain assembly coupled between the exit conduit and the inlet conduit, the drain assembly comprising a first curved conduit section and a second curved conduit section disposed downstream of the first curved conduit section relative to a flow direction of the molten glass;

a drain tube extending downward from the drain assembly, the drain tube comprising a proximal end attached to the drain assembly and a distal end opposite the proximal end;

a first cooling device disposed downstream from the first curved conduit section and configured to cool the at least a portion of the delivery conduit system downstream from the first curved conduit section; and

a heating device configured to heat the distal end of the drain tube,

wherein the first curved conduit section is configured to direct the flow of molten glass from a first direction to a second direction opposite the first direction, and

wherein the second curved conduit section is configured to direct the flow of molten glass from the second direction to a third direction intermediate the first direction and the second direction.

12 . The glass manufacturing apparatus of claim 11 , wherein an inside diameter of the exit conduit is less than an inside diameter of the first curved conduit section.

13 . The glass manufacturing apparatus of claim 11 , wherein an inside diameter of the inlet conduit is less than an inside diameter of the second curved conduit section.

14 . The glass manufacturing apparatus of claim 11 , wherein the first curved conduit section comprises a first curved conduit portion and a second curved conduit portion, each of the first curved conduit portion and the second curved conduit portion extending through an angle of 90 degrees.

15 . The glass manufacturing apparatus of claim 11 , wherein the first curved conduit section comprises a first curved conduit portion, a second curved conduit portion, and a first straight conduit portion disposed between the first curved conduit portion and the second curved conduit portion.

16 . The glass manufacturing apparatus of claim 11 , further comprising a second straight conduit portion coupled between the first curved conduit section and the second curved conduit section.