Method and lift jet floatation system for shaping thin glass
US-2015274575-A1 · Oct 1, 2015 · US
US9809485B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9809485-B2 |
| Application number | US-201514929799-A |
| Country | US |
| Kind code | B2 |
| Filing date | Nov 2, 2015 |
| Priority date | Nov 2, 2015 |
| Publication date | Nov 7, 2017 |
| Grant date | Nov 7, 2017 |
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A lift device for lifting a glass sheet in a glass processing system includes a lift jet array having peripheral lift jet outlets and inner lift jet outlets disposed inwardly of the peripheral lift jet outlets. Furthermore, each lift jet outlet is operable to allow gas to flow toward the glass sheet. The lift device also includes a control unit for controlling operation of the lift jet outlets, and the control unit is configured to commence operation of at least one of the inner lift jet outlets prior to commencing operation of at least one of the peripheral lift jet outlets.
Opening claim text (preview).
What is claimed is: 1. A lift device for lifting a glass sheet in a glass processing system that includes a conveyor system having a plurality of rollers for conveying the glass sheet, the lift device comprising: a lift jet array including peripheral lift jet outlets and inner lift jet outlets disposed inwardly of the peripheral lift jet outlets, the peripheral lift jet outlets and the inner lift jet outlets being disposed below the rollers when the lift device is used with the glass processing system, and each lift jet outlet being operable to allow gas to flow toward the glass sheet; and a control unit for controlling operation of the lift jet outlets, the control unit being configured to commence operation of at least one of the inner lift jet outlets prior to commencing operation of at least one of the peripheral lift jet outlets. 2. The lift device of claim 1 wherein the at least one peripheral lift jet outlet is configured to be positioned outwardly of the glass sheet when the glass sheet is positioned above the lift jet array, and the at least one peripheral lift jet outlet is angled toward a central plane of the lift jet array. 3. The lift device of claim 2 wherein at least one of the inner lift jet outlets positioned proximate the at least one peripheral lift jet outlet is angled away from the central plane of the lift jet array. 4. The lift device of claim 3 wherein at least another one of the inner lift jet outlets positioned proximate the at least one peripheral lift jet outlet is angled toward the central plane of the lift jet array. 5. The lift device of claim 1 wherein the at least one peripheral lift jet outlet is configured to be positioned outwardly of the glass sheet when the glass sheet is positioned above the lift jet array, the at least one peripheral lift jet outlet is angled toward a central plane of the lift jet array, and at least one of the inner lift jet outlets positioned on a same side of the central plane as the at least one peripheral lift jet outlet is angled away from the central plane. 6. The lift device of claim 5 wherein at least another one of the inner lift jet outlets positioned on a same side of the central plane as the at least one peripheral lift jet outlet is angled toward the central plane. 7. The lift device of claim 1 wherein multiple peripheral lift jet outlets are configured to be positioned outwardly of the glass sheet when the glass sheet is positioned above the lift jet array, and each of the multiple peripheral lift jet outlets is angled toward a central plane of the lift jet array. 8. The lift device of claim 7 wherein the multiple peripheral lift jet outlets include at least two peripheral lift jet outlets at each end of the lift jet array. 9. The lift device of claim 1 wherein the peripheral lift jet outlets define an outline that is different than a periphery of the glass sheet when the glass sheet is positioned above the lift jet array and in an un-lifted state. 10. A glass processing system comprising: a glass sheet bending station including a conveyor system having multiple conveyor rollers for conveying a heated glass sheet, and a lift device according to claim 1 positioned beneath the conveyor rollers for lifting the glass sheet off of the conveyor rollers. 11. The lift device of claim 1 further comprising a first supply conduit for supplying gas to the at least one inner lift jet outlet, a second supply conduit for supplying gas to the at least one peripheral lift jet outlet, a pressurized gas source connected to the first and second supply conduits, and first and second controllable valves associated with the first and second supply conduits, respectively, wherein the control unit is operable to open the first controllable valve prior to opening the second controllable valve so that a jet stream emitted from the at least one peripheral lift jet outlet contacts the glass sheet after a jet stream emitted from the at least one inner lift jet outlet contacts the glass sheet. 12. The lift device of claim 1 wherein the inner lift jet outlets are provided in four separately controllable zones, and the peripheral lift jet outlets are provided in a fifth zone that is separately controllable relative to the four zones, and wherein the lift device further comprises a pressurized gas source, five supply conduits that are each configured to supply gas from the pressurized gas source to one of the zones, and five controllable valves that are each associated with one of the supply conduits, and wherein the control unit is operable to open the controllable valves associated with the supply conduits for the four zones prior to opening the controllable valve associated with the supply conduit for the fifth zone. 13. A lift device for lifting a glass sheet in a glass processing system that includes a conveyor system having a plurality of rollers for conveying the glass sheet, the lifting device comprising: a lift jet array including multiple peripheral lift jet outlets and multiple inner lift jet outlets disposed inwardly of the peripheral lift jet outlets, wherein at least one peripheral lift jet outlet is angled toward a central plane of the lift jet array, and at least one inner lift jet outlet proximate the at least one peripheral lift jet outlet is angled away from the central plane, and wherein the peripheral lift jet outlets and the inner lift jet outlets are disposed below the rollers when the lift device is used with the glass processing system. 14. The lift device of claim 13 wherein at least another one of the inner lift jet outlets positioned proximate the at least one peripheral lift jet outlet is angled toward the central plane of the lift jet array. 15. The lift device of claim 13 wherein the lift jet outlets are each configured to allow gas to flow between conveyor rollers of the glass processing system. 16. The lift device of claim 13 wherein the at least one peripheral lift jet outlet includes a first peripheral lift jet outlet configured to provide a gas jet angled toward the central plane for contacting a first portion of the glass sheet, and the at least one inner lift jet outlet includes a first inner lift jet outlet configured to provide a gas jet angled away from the central plane for contacting the first portion of the glass sheet. 17. A glass processing system comprising: a glass sheet forming station including a conveyor system having multiple conveyor rollers for conveying a heated glass sheet, and a lift device according to claim 13 positioned beneath the conveyor rollers for lifting the glass sheet off of the conveyor rollers. 18. The lift device of claim 13 wherein the peripheral lift jet outlets and the inner lift jet outlets each comprise a nozzle, each nozzle has a single outlet opening, and the nozzles are spaced apart from each other. 19. The lift device of claim 18 wherein each nozzle is configured to provide a single gas jet in a single direction. 20. A method of lifting a glass sheet off of conveyor rollers in a glass processing system, the method comprising: positioning the glass sheet above a lift jet array including multiple peripheral lift jet outlets and multiple inner lift jet outlets disposed inwardly of the peripheral lift jet outlets, wherein the peripheral lift jet outlets and the inner lift jet outlets are disposed below the conveyor rollers; commencing operation of at least one of the inner lift jet outlets such that gas flows from the at least one inner lift jet outlet toward the glass sheet; and commencing operati
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