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公开(公告)号:US11963928B2
公开(公告)日:2024-04-23
申请号:US18310944
申请日:2023-05-02
Applicant: CORNING INCORPORATED
Inventor: James Ernest Webb , Sinue Gomez-Mower , Weirong Jiang , Joseph Michael Matusick , Christie Leigh McCarthy , Connor Thomas O'Malley , John Stephen Peanasky , Shivani Rao Polasani , Steven Edward DeMartino , Michael Clement Ruotolo, Jr. , Bryan James Musk , Jared Seaman Aaldenberg , Eric Lewis Allington , Douglas Miles Noni, Jr. , Amber Leigh Tremper , Kristen Dae Waight , Kevin Patrick McNelis , Patrick Joseph Cimo , Christy Lynn Chapman , Robert Anthony Schaut , Adam Robert Sarafian
CPC classification number: A61J1/1468 , B65D23/0821
Abstract: Disclosed herein are glass pharmaceutical vials having sidewalls of reduced thickness. In embodiments, the glass pharmaceutical vial may include a glass body comprising a sidewall enclosing an interior volume. An outer diameter D of the glass body is equal to a diameter d1 of a glass vial of size X as defined by ISO 8362-1, wherein X is one of 2R, 3R, 4R, 6R, 8R, 10R, 15R, 20R, 25R, 30R, 50R, and 100R as defined by ISO 8362-1. However, the sidewall of the glass pharmaceutical vial comprises an average wall thickness Ti that is less than or equal to 0.85*s1, wherein s1 is a wall thickness of the glass vial of size X as defined by ISO 8362-1 and X is one of 2R, 3R, 4R, 6R, 8R, 10R, 15R, 20R, 25R, 30R, 50R, and 100R as defined by ISO 8362-1.
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公开(公告)号:US20230301872A1
公开(公告)日:2023-09-28
申请号:US18310944
申请日:2023-05-02
Applicant: CORNING INCORPORATED
Inventor: James Ernest Webb , Sinue Gomez-Mower , Weirong Jiang , Joseph Michael Matusick , Christie Leigh McCarthy , Connor Thomas O’Malley , John Stephen Peanasky , Shivani Rao Polasani , Steven Edward DeMartino , Michael Clement Ruotolo, JR. , Bryan James Musk , Jared Seaman Aaldenberg , Eric Lewis Allington , Douglas Miles Noni, JR. , Amber Leigh Tremper , Kristen Dae Waight , Kevin Patrick McNelis , Patrick Joseph Cimo , Christy Lynn Chapman , Robert Anthony Schaut , Adam Robert Sarafian
CPC classification number: A61J1/1468 , B65D23/0821
Abstract: Disclosed herein are glass pharmaceutical vials having sidewalls of reduced thickness. In embodiments, the glass pharmaceutical vial may include a glass body comprising a sidewall enclosing an interior volume. An outer diameter D of the glass body is equal to a diameter d1 of a glass vial of size X as defined by ISO 8362-1, wherein X is one of 2R, 3R, 4R, 6R, 8R, 10R, 15R, 20R, 25R, 30R, 50R, and 100R as defined by ISO 8362-1. However, the sidewall of the glass pharmaceutical vial comprises an average wall thickness Ti that is less than or equal to 0.85*s1, wherein s1 is a wall thickness of the glass vial of size X as defined by ISO 8362-1 and X is one of 2R, 3R, 4R, 6R, 8R, 10R, 15R, 20R, 25R, 30R, 50R, and 100R as defined by ISO 8362-1.
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3.
公开(公告)号:US20190161381A1
公开(公告)日:2019-05-30
申请号:US16198041
申请日:2018-11-21
Applicant: CORNING INCORPORATED
Inventor: Lewis Kirk Klingensmith , Joseph Michael Matusick , Connor Thomas O'Malley , Matthew Daniel Trosa , Steven Robert Wagner
IPC: C03B23/045 , C03B23/09 , C03B23/043 , C03B35/26
Abstract: Systems for producing articles from glass tube include a converter having a base with a plurality of processing stations and a turret moveable relative to the base. The turret indexes a plurality of holders for holding the glass tubes successively through the processing stations. The systems further include a gas flow system or a suction system for producing a flow of gas through the glass tube during one or more heating, forming, separating or piercing operations. The flow of gas through the glass tube produced by the gas flow system or suction system may be sufficient to evacuate or purge volatile constituents of the glass from the glass tube and/or pierce a meniscus formed on the glass tube during separation, thereby reducing the Surface Hydrolytic Response (SHR) of the interior surface of the glass tube and articles made therefrom.
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公开(公告)号:US20250082545A1
公开(公告)日:2025-03-13
申请号:US18955858
申请日:2024-11-21
Applicant: CORNING INCORPORATED
Inventor: Christy Lynn Chapman , Sinue Gomez-Mower , Weirong Jiang , Joseph Michael Matusick , Christie Leigh McCarthy , Connor Thomas O'Malley , John Stephen Peanasky , Shivani Rao Polasani , James Ernest Webb , Michael Clement Ruotolo, JR. , Bryan James Musk , Jared Seaman Aaldenberg , Eric Lewis Allington , Douglas Miles Noni, JR. , Amber Leigh Tremper , Kristen Dae Waight , Kevin Patrick McNelis , Patrick Joseph Cimo , Steven Edward DeMartino , Robert Anthony Schaut , Adam Robert Sarafian
Abstract: Disclosed herein are glass pharmaceutical vials having sidewalls of reduced thickness. In embodiments, the glass pharmaceutical vial may include a glass body comprising a sidewall enclosing an interior volume. An outer diameter D of the glass body is equal to a diameter d1 of a glass vial of size X as defined by ISO 8362-1, wherein X is one of 2R, 3R, 4R, 6R, 8R, 10R, 15R, 20R, 25R, 30R, 50R, and 100R as defined by ISO 8362-1. However, the sidewall of the glass pharmaceutical vial comprises an average wall thickness Ti that is less than or equal to 0.85*s1, wherein s1 is a wall thickness of the glass vial of size X as defined by ISO 8362-1 and X is one of 2R, 3R, 4R, 6R, 8R, 10R, 15R, 20R, 25R, 30R, 50R, and 100R as defined by ISO 8362-1.
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公开(公告)号:US20240366474A1
公开(公告)日:2024-11-07
申请号:US18775531
申请日:2024-07-17
Applicant: CORNING INCORPORATED
Inventor: Connor Thomas O'Malley , Sinue Gomez-Mower , Weirong Jiang , Joseph Michael Matusick , Christie Leigh McCarthy , Steven Edward DeMartino , John Stephen Peanasky , Shivani Rao Polasani , James Ernest Webb , Michael Clement Ruotolo, Jr. , Bryan James Musk , Jared Seaman Aaldenberg , Eric Lewis Allington , Douglas Miles Noni, Jr. , Amber Leigh Tremper , Kristen Dae Waight , Kevin Patrick McNelis , Patrick Joseph Cimo , Christy Lynn Chapman , Robert Anthony Schaut , Adam Robert Sarafian
Abstract: Disclosed herein are glass pharmaceutical vials having sidewalls of reduced thickness. In embodiments, the glass pharmaceutical vial may include a glass body comprising a sidewall enclosing an interior volume. An outer diameter D of the glass body is equal to a diameter di of a glass vial of size X as defined by ISO 8362-1, wherein X is one of 2R, 3R, 4R, 6R, 8R, 10R, 15R, 20R, 25R, 30R, 50R, and 100R as defined by ISO 8362-1. However, the sidewall of the glass pharmaceutical vial comprises an average wall thickness Ti that is less than or equal to 0.85*s1, wherein s1 is a wall thickness of the glass vial of size X as defined by ISO 8362-1 and X is one of 2R, 3R, 4R, 6R, 8R, 10R, 15R, 20R, 25R, 30R, 50R, and 100R as defined by ISO 8362-1.
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公开(公告)号:US20240294416A1
公开(公告)日:2024-09-05
申请号:US18658939
申请日:2024-05-08
Applicant: CORNING INCORPORATED
Inventor: Christelle Ruby Barnard , Joseph Michael Matusick , Kevin Patrick McNelis , Connor Thomas O'Malley
IPC: C03B23/043 , C03B23/045 , C03B23/09
CPC classification number: C03B23/043 , C03B23/045 , C03B23/09
Abstract: Methods for producing articles from a glass tube include securing a working end of the glass tube in a glass tube holder of a converter having a plurality of processing stations including a heating station and a forming station. An initial length of the glass tube includes a plurality of serial segments, each of the plurality of serial segments corresponding to one article and having an article number. The methods include heating the working end of the glass tube in the heating station, adjusting an amount of heating of the glass tube in the heating station based on the article number at the working end of the glass tube, and forming a feature of the article in the forming station. Adjusting the amount of heating based on the article number reduces variation in tube temperature, article dimensions, or both, from one article number to the next article number.
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公开(公告)号:US12076297B2
公开(公告)日:2024-09-03
申请号:US18310951
申请日:2023-05-02
Applicant: CORNING INCORPORATED
Inventor: Joseph Michael Matusick , Sinue Gomez-Mower , Weirong Jiang , Steven Edward DeMartino , Christie Leigh McCarthy , Connor Thomas O'Malley , John Stephen Peanasky , Shivani Rao Polasani , James Ernest Webb , Michael Clement Ruotolo, Jr. , Bryan James Musk , Jared Seaman Aaldenberg , Eric Lewis Allington , Douglas Miles Noni, Jr. , Amber Leigh Tremper , Kristen Dae Waight , Kevin Patrick McNelis , Patrick Joseph Cimo , Christy Lynn Chapman , Robert Anthony Schaut , Adam Robert Sarafian
CPC classification number: A61J1/1468 , B65D23/0821
Abstract: Disclosed herein are glass pharmaceutical vials having sidewalls of reduced thickness. In embodiments, the glass pharmaceutical vial may include a glass body comprising a sidewall enclosing an interior volume. An outer diameter D of the glass body is equal to a diameter d1 of a glass vial of size X as defined by ISO 8362-1, wherein X is one of 2R, 3R, 4R, 6R, 8R, 10R, 15R, 20R, 25R, 30R, 50R, and 100R as defined by ISO 8362-1. However, the sidewall of the glass pharmaceutical vial comprises an average wall thickness Ti that is less than or equal to 0.85*s1, wherein s1 is a wall thickness of the glass vial of size X as defined by ISO 8362-1 and X is one of 2R, 3R, 4R, 6R, 8R, 10R, 15R, 20R, 25R, 30R, 50R, and 100R as defined by ISO 8362-1.
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公开(公告)号:US12006244B2
公开(公告)日:2024-06-11
申请号:US17400167
申请日:2021-08-12
Applicant: CORNING INCORPORATED
Inventor: Christelle Ruby Barnard , Joseph Michael Matusick , Kevin Patrick McNelis , Connor Thomas O'Malley
IPC: C03B23/043 , C03B23/045 , C03B23/09
CPC classification number: C03B23/043 , C03B23/045 , C03B23/09
Abstract: Methods for producing articles from a glass tube include securing a working end of the glass tube in a glass tube holder of a converter having a plurality of processing stations including a heating station and a forming station. An initial length of the glass tube includes a plurality of serial segments, each of the plurality of serial segments corresponding to one article and having an article number. The methods include heating the working end of the glass tube in the heating station, adjusting an amount of heating of the glass tube in the heating station based on the article number at the working end of the glass tube, and forming a feature of the article in the forming station. Adjusting the amount of heating based on the article number reduces variation in tube temperature, article dimensions, or both, from one article number to the next article number.
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9.
公开(公告)号:US11970417B2
公开(公告)日:2024-04-30
申请号:US17738637
申请日:2022-05-06
Applicant: CORNING INCORPORATED
Inventor: Lewis Kirk Klingensmith , Joseph Michael Matusick , Connor Thomas O'Malley , Matthew Daniel Trosa , Steven Robert Wagner
IPC: C03B23/045 , C03B23/043 , C03B23/049 , C03B23/09 , C03B23/11 , C03B35/26
CPC classification number: C03B23/045 , C03B23/043 , C03B23/049 , C03B23/09 , C03B23/092 , C03B23/11 , C03B35/26
Abstract: Systems for producing articles from glass tube include a converter having a base with a plurality of processing stations and a turret moveable relative to the base. The turret indexes a plurality of holders for holding the glass tubes successively through the processing stations. The systems further include a gas flow system or a suction system for producing a flow of gas through the glass tube during one or more heating, forming, separating or piercing operations. The flow of gas through the glass tube produced by the gas flow system or suction system may be sufficient to evacuate or purge volatile constituents of the glass from the glass tube and/or pierce a meniscus formed on the glass tube during separation, thereby reducing the Surface Hydrolytic Response (SHR) of the interior surface of the glass tube and articles made therefrom.
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10.
公开(公告)号:US11339079B2
公开(公告)日:2022-05-24
申请号:US16198041
申请日:2018-11-21
Applicant: CORNING INCORPORATED
Inventor: Lewis Kirk Klingensmith , Joseph Michael Matusick , Connor Thomas O'Malley , Matthew Daniel Trosa , Steven Robert Wagner
IPC: C03B23/045 , C03B23/09 , C03B23/043 , C03B35/26 , C03B23/11 , C03B23/049
Abstract: Systems for producing articles from glass tube include a converter having a base with a plurality of processing stations and a turret moveable relative to the base. The turret indexes a plurality of holders for holding the glass tubes successively through the processing stations. The systems further include a gas flow system or a suction system for producing a flow of gas through the glass tube during one or more heating, forming, separating or piercing operations. The flow of gas through the glass tube produced by the gas flow system or suction system may be sufficient to evacuate or purge volatile constituents of the glass from the glass tube and/or pierce a meniscus formed on the glass tube during separation, thereby reducing the Surface Hydrolytic Response (SHR) of the interior surface of the glass tube and articles made therefrom.
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