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41.
公开(公告)号:US20220388894A1
公开(公告)日:2022-12-08
申请号:US17891761
申请日:2022-08-19
Applicant: CORNING INCORPORATED
Inventor: Ryan Claude Andrews , Jill Marie Hall , Pascale Oram , Rostislav Vatchev Roussev , Vitor Marino Schneider , Ljerka Ukrainczyk
Abstract: A lithium containing glass article is provided. In aspects, the lithium containing glass article includes an intensity coupling profile including a plurality of coupling resonances. A first of the coupling resonances has a half-width half-maximum value that is at least 1.8 times greater than the half-width half-maximum value of a second of the coupling resonances. In aspects, the lithium containing glass article includes a smoothed intensity coupling profile including a plurality of coupling resonances. A second derivative of the smoothed intensity coupling profile at a first of the coupling resonances is at least 1.8 times greater than a second derivative of the smoothed coupling profile at a second of the coupling resonances.
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公开(公告)号:US20220112119A1
公开(公告)日:2022-04-14
申请号:US17499383
申请日:2021-10-12
Applicant: CORNING INCORPORATED
Inventor: Jaymin Amin , George Halsey Beall , Qiang Fu , Charlene Marie Smith , Ljerka Ukrainczyk
Abstract: Glass-based articles, such as glass-ceramic articles, and the properties thereof are disclosed. In embodiments, the glass-based article may comprise the glass-based article has a phase assemblage comprising petalite and lithium disilicate.
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公开(公告)号:US11208346B2
公开(公告)日:2021-12-28
申请号:US15813882
申请日:2017-11-15
Applicant: CORNING INCORPORATED
Inventor: Jill Marie Hall , Yuhui Jin , Timothy James Kiczenski , John Richard Ridge , Ljerka Ukrainczyk
IPC: C03C15/00 , C03B23/02 , C03B23/035 , C03C21/00 , C03C3/097
Abstract: A process for forming a textured 3-D glass-based substrate includes texturing a first surface of a glass-based substrate and shaping the glass-based substrate into a three-dimensional shape. The surface profile of the substrate is non-planar. In some embodiments, texturing the first surface of the glass-based substrate provides the first surface with an average roughness of 10 nm to 2000 nm.
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44.
公开(公告)号:US20210331965A1
公开(公告)日:2021-10-28
申请号:US17359790
申请日:2021-06-28
Applicant: CORNING INCORPORATED
Inventor: Ryan Claude Andrews , Jill Marie Hall , Pascale Oram , Rostislav Vatchev Roussev , Vitor Marino Schneider , Ljerka Ukrainczyk
Abstract: A method of reworking lithium containing ion exchanged glass articles is provided. The method includes a reverse ion exchange process that returns the glass article to approximately the composition of the glass from which the glass article was produced, before being subjected to ion exchange. The reworked glass articles exhibit a K2O concentration profile comprising a portion wherein a K2O concentration increases to a local K2O concentration maximum.
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公开(公告)号:US20210238083A1
公开(公告)日:2021-08-05
申请号:US17237272
申请日:2021-04-22
Applicant: CORNING INCORPORATED
Inventor: Carol Ann Click , James Howard Edmonston , Qiang Fu , Jill Marie Hall , Mathieu Gerard Jacques Hubert , Dhananjay Joshi , Andrew Peter Kittleson , Katherine Weber Kroemer , Galan Gregory Moore , Rohit Rai , John Richard Ridge , John Robert Saltzer, JR. , Charlene Marie Smith , Erika Lynn Stapleton , Matthew Daniel Trosa , Ljerka Ukrainczyk , Shelby Kerin Wilson , Bin Yang , Zheming Zheng
Abstract: A glass ceramic article including a lithium disilicate crystalline phase, a petalite crystalline phased, and a residual glass phase. The glass ceramic article has a warp (μm) 0.91×10(2−0.03t) of electromagnetic radiation wavelengths from 450 nm to 800 nm, where t is the thickness of the glass ceramic article in mm.
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公开(公告)号:US20200148591A1
公开(公告)日:2020-05-14
申请号:US16682143
申请日:2019-11-13
Applicant: CORNING INCORPORATED
Inventor: Ryan Claude Andrews , Albert Joseph Fahey , Lisa Marie Noni , Rostislav Vatchev Roussev , Charlene Marie Smith , Ljerka Ukrainczyk , Shelby Kerin Wilson
Abstract: Ion-exchanged glass ceramic articles described herein have a stress that decreases with increasing distance according to a substantially linear function from a depth of about 0.07 t to a depth of about 0.26 t from the outer surface of the ion-exchanged glass ceramic article from a compressive stress to a tensile stress. The stress transitions from the compressive stress to the tensile stress at a depth of from about 0.18 t to about 0.25 t from the outer surface of the ion-exchanged glass ceramic article. An absolute value of a maximum compressive stress at the outer surface of the ion-exchanged glass article is from 1.8 to 2.2 times an absolute value of a maximum central tension (CT) of the ion-exchanged glass article, and the glass ceramic article has a fracture toughness of 1 MPa√m or more as measured according to the double cantilever beam method.
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公开(公告)号:US10479052B2
公开(公告)日:2019-11-19
申请号:US15504133
申请日:2015-08-17
Applicant: CORNING INCORPORATED
Inventor: Ljerka Ukrainczyk , John Richard Ridge , Marianne Griesbach Park
IPC: C03B23/035 , B32B17/06
Abstract: A method of forming a 3D glass article from a glass sheet includes locating the glass sheet on a mold assembly including a mold surface with a 3D surface profile corresponding to that of the 3D glass article. The glass sheet is heated to a forming temperature. The forming temperature is greater than a temperature of the mold surface. The heated glass sheet is forced onto the mold surface by applying a pressurized gas to a first surface of the glass sheet opposite the mold surface to conform the glass sheet to the mold surface with the glass sheet at the forming temperature that is greater than the temperature of the mold surface.
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公开(公告)号:US10442160B2
公开(公告)日:2019-10-15
申请号:US15504133
申请日:2015-08-17
Applicant: CORNING INCORPORATED
Inventor: Ljerka Ukrainczyk , John Richard Ridge , Marianne Griesbach Park
IPC: C03B23/035 , B32B17/06
Abstract: A method of forming a 3D glass article from a glass sheet includes locating the glass sheet on a mold assembly including a mold surface with a 3D surface profile corresponding to that of the 3D glass article. The glass sheet is heated to a forming temperature. The forming temperature is greater than a temperature of the mold surface. The heated glass sheet is forced onto the mold surface by applying a pressurized gas to a first surface of the glass sheet opposite the mold surface to conform the glass sheet to the mold surface with the glass sheet at the forming temperature that is greater than the temperature of the mold surface.
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公开(公告)号:US20180134602A1
公开(公告)日:2018-05-17
申请号:US15872330
申请日:2018-01-16
Applicant: CORNING INCORPORATED
IPC: C03B23/035 , G06F1/16 , C03B23/023
CPC classification number: C03B23/0357 , C03B23/0235 , C03B2225/02 , G06F1/1626 , Y02P40/57 , Y10T428/24355 , Y10T428/24628
Abstract: A method of forming a shaped glass article includes placing a glass sheet on a mold such that a first glass area of the glass sheet corresponds to a first mold surface area of the mold and a second glass area of the glass sheet corresponds to a second mold surface area of the mold. The first glass area and the second glass area are heated such that the viscosity of the second glass area is 8 poise or more lower than the viscosity of the first glass area. A force is applied to the glass sheet to conform the glass sheet to the mold surface. During the heating of the second glass area, the first mold surface area is locally cooled to induce a thermal gradient on the mold.
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公开(公告)号:US09938179B2
公开(公告)日:2018-04-10
申请号:US15399112
申请日:2017-01-05
Applicant: CORNING INCORPORATED
IPC: C03B23/035 , C03B23/023 , G06F1/16
CPC classification number: C03B23/0357 , C03B23/0235 , C03B2225/02 , G06F1/1626 , Y02P40/57 , Y10T428/24355 , Y10T428/24628
Abstract: A method of forming a shaped glass article includes placing a glass sheet on a mold such that a first glass area of the glass sheet corresponds to a first mold surface area of the mold and a second glass area of the glass sheet corresponds to a second mold surface area of the mold. The first glass area and the second glass area are heated such that the viscosity of the second glass area is 8 poise or more lower than the viscosity of the first glass area. A force is applied to the glass sheet to conform the glass sheet to the mold surface. During the heating of the second glass area, the first mold surface area is locally cooled to induce a thermal gradient on the mold.
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