IP Library Granted Patent US 10,435,322
Granted Patent B2
US 10,435,322 · App. 15/647,943 · Granted Oct 8, 2019

Method of filling a mould and system for filling a mould

Inventor: Joop Dalstra (Haren, NL)
Assignee: Centrum Voor Technische Informatica B. V.
C03B7/16C03B7/005
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 10,435,322
App. No.
15/647,943
Granted
Oct 8, 2019
Kind
B2
Abstract

Method of filling a mold with a glass gob through an opening of the mold, for forming a glass product in the mold, by using a delivery system for delivering the glass gob to the opening of the mold. The delivery system has an inlet, an outlet, and guiding means for guiding the glass gob through the delivery system. The method includes observing the glass gob, at at least one moment and/or during at least one period after the glass gob has passed the inlet of the delivery system, by using an optical imaging device. The method includes determining a glass gob observation result that includes a glass gob velocity, for predicting a glass distribution of the glass product formed in the mold and/or for controlling a next glass gob.

Claims (24)

1. Method of filling a mould with a glass gob through an opening of the mould, for forming a glass product in the mould, by using a delivery system for delivering the glass gob to the opening of the mould, the delivery system having an inlet, an outlet, and guiding means including at least one of a funnel or a trough for guiding the glass gob through the delivery system, the method including the steps:

a) depositing the glass gob in the inlet of the delivery system;

b) guiding the glass gob by using the guiding means towards the outlet of the delivery system;

c) depositing the glass gob from the outlet of the delivery system in the opening of the mould;

d) observing the glass gob, at at least one moment and/or during at least one period after the glass gob has passed the inlet of the delivery system, by using an optical imaging device;

e1) determining, based on the observing in step d), a glass gob observation result that includes a glass gob velocity, for; and

e.2) controlling, using a predetermined relation between glass gob velocity and a distribution of the glass product formed in the mould according to at least the glass gob velocity of the glass gob observation result, at least one of the depositing as in step a), the guiding as in step b), or the depositing as in step c), of a next glass gob that is formed later than the glass gob, wherein the glass gob observation result further includes a group of variables including a glass gob trajectory, a glass gob shape and a glass gob orientation wherein controlling in step e) is further based on these variables.

2. Method according to claim 1 , wherein the glass gob velocity includes a magnitude of the glass gob velocity.

3. Method according to claim 1 , wherein the glass gob velocity includes a direction of the glass gob velocity.

4. Method according to claim 1 , wherein the glass gob observation result further includes at least one of a second group of variables including a change in the glass gob shape, and a change in the glass gob orientation, and wherein controlling in step e) is further based on the at least one variable of the second group.

5. Method according to claim 1 , wherein observing in step d) is carried out at at least one moment and/or during at least one period after the glass gob has, at least partly and optionally completely, passed the outlet of the delivery system.

6. Method according to claim 1 , wherein observing in step d) is carried out at at least one moment and/or during at least one period after the glass gob has, at least partly, entered the opening of the mould.

7. Method according to claim 1 , wherein the optical imaging device includes at least two cameras, each camera having an optical axis, wherein observing in step d) is carried out with the optical axes of the at least two cameras having mutually distinct directions, preferably mutually transverse directions.

8. Method according to claim 1 , wherein the glass gob velocity is a three-dimensional glass gob velocity.

9. Method according to claim 1 , including the steps:

f) forming the glass gob, by detaching the glass gob from a liquid glass reservoir; and

g) using the glass gob observation result for controlling forming the next glass gob that is formed later than the glass gob formed in step f).

10. Method according to claim 9 , wherein controlling in step g) is based on at least the glass gob velocity of the glass gob observation result.

11. Method according to claim 1 , wherein controlling, in step e), of guiding as in step b) of the next glass gob includes adjusting lubrication of the guiding means.

12. Method according to claim 1 , wherein controlling, in step e), of depositing as in step a) of the next glass gob includes adjusting a mutual position difference of the inlet and a formation position at which the glass gob is formed.

13. Method according to claim 1 , wherein controlling, in step e), of depositing as in step c) of the next glass gob includes adjusting a mutual position difference of the outlet and the opening of the mould.

14. Method according to claim 1 , wherein the guiding means include a scoop funnel forming the inlet, a trough, and a deflector funnel forming the outlet, wherein guiding the glass gob in step b) includes guiding the glass gob by means of the scoop funnel towards the trough, and further includes guiding the glass gob by means of the trough towards the deflector funnel, and wherein depositing the glass gob in step c) includes depositing the glass gob by means of the deflector funnel in the opening of the mould, wherein controlling, in step e), of guiding as in step b) of the next glass gob includes adjusting a mutual position of at least two of the scoop funnel, the trough, and the deflector funnel.

15. Method according to claim 1 , wherein controlling, in step e), of depositing as in step a) of the next glass gob includes adjusting air supply to an accelerator for the next glass gob, which accelerator is positioned before the inlet.

16. Method according to claim 1 , including repeating steps a)-e) for a plurality of glass gobs.

Assignments (2)
CHANGE OF ADDRESS Recorded Aug 1, 2019
From: CENTRUM VOOR TECHNISCHE INFORMATICA B.V.
To: CENTRUM VOOR TECHNISCHE INFORMATICA B.V.
Reel/Frame 049934/0177 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 31, 2017
From: DALSTRA, JOOP
To: CENTRUM VOOR TECHNISCHE INFORMATICA B.V.
Reel/Frame 043995/0844 →
Continuity (2)
Division 13125082
Related Publication 20180065878A1 · Mar 8, 2018