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公开(公告)号:US20230242436A1
公开(公告)日:2023-08-03
申请号:US17768692
申请日:2022-01-29
Applicant: China Building Materials Academy
Inventor: Lei Zhang , Zhenbo Cao , Jinsheng Jia , Yun Wang , Yue Zhao , Xian Zhang , Xiaofeng Tang , Yu Shi , Jing Zhang , Zhiheng Fan , Huichao Xu , Haoyang Yu , Puguang Song , Aixin Wang , Changhua Hong
IPC: C03C13/04 , C03C3/068 , C03B5/08 , C03B5/18 , C03B5/225 , C03B37/012 , C03B37/027 , C03B25/02
CPC classification number: C03C13/045 , C03B5/08 , C03B5/18 , C03B5/225 , C03B25/02 , C03B37/027 , C03B37/01268 , C03C3/068 , C03C2213/00 , G02B6/06
Abstract: The present invention discloses a glass with high refractive index for fiber optic imaging elements with medium-expansion and fabrication method therefor, the glass comprising the following components in percentage by weight: SiO2 5-9%, Al2O3 0-1%, B2O3 23-28%, CaO 0-3%, BaO 6-12%, La2O3 30-34%, Nb2O5 4-8%, Ta2O5 0-1%, Y2O3 0-1%, ZnO 4-9%, TiO2 4-8%, ZrO2 4-6%, SnO2 0-1%. The present invention further provides a fabrication method for the glass with a high refractive index, comprising: putting raw materials quartz sand, aluminum hydroxide, boric acid or boric anhydride, calcium carbonate, barium carbonate or barium nitrate, lanthanum oxide, niobium oxide, tantalum oxide, yttrium oxide, zinc oxide, titanium dioxide, zirconium oxide and stannic oxide, etc. into a platinum crucible according to the requirement of dosing, melting at a high temperature, cooling and fining, leaking and casting to form a glass rod, and then annealing, cooling and chilling the molded glass rod.
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公开(公告)号:US20230212058A1
公开(公告)日:2023-07-06
申请号:US17766422
申请日:2022-01-29
Applicant: China Building Materials Academy
Inventor: Lei Zhang , Zhenbo Cao , Jinsheng Jia , Yun Wang , Yue Zhao , Xian Zhang , Xiaofeng Tang , Yu Shi , Jing Zhang , Zhiheng Fan , Huichao Xu , Haoyang Yu , Puguang Song , Aixin Wang , Changhua Hong
IPC: C03B37/028 , C03C13/04 , C03C3/068 , G02B6/06 , C03B37/15 , C03B37/012
CPC classification number: C03B37/028 , C03C13/046 , C03C3/068 , G02B6/06 , C03B37/15 , C03B37/0128 , C03B37/01214 , C03C2213/00 , C03B2203/40
Abstract: A fiber optic imaging element includes medium-expansion and a fabrication method including: (1) matching a core glass rod with a cladding glass tube to perform mono fiber drawing; (2) arranging the mono fibers into a mono fiber bundle rod, and then drawing the mono fiber bundle rod into a multi fiber; (3) arranging the multi fiber into a multi fiber bundle rod, and then drawing the multi fiber bundle rod into a multi-multi fiber; (4) cutting the multi-multi fiber, and then arranging the multi-multi fiber into a fiber assembly buddle, then putting the fiber assembly buddle into a mold of heat press fusion process, and performing the heat press fusion process to prepare a block of the fiber optic imaging element with medium-expansion; and (5) edged rounding, cutting and slicing,
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公开(公告)号:US11858846B2
公开(公告)日:2024-01-02
申请号:US17768692
申请日:2022-01-29
Applicant: China Building Materials Academy
Inventor: Lei Zhang , Zhenbo Cao , Jinsheng Jia , Yun Wang , Yue Zhao , Xian Zhang , Xiaofeng Tang , Yu Shi , Jing Zhang , Zhiheng Fan , Huichao Xu , Haoyang Yu , Puguang Song , Aixin Wang , Changhua Hong
IPC: C03C3/068 , C03C13/04 , C03B37/02 , C03B5/08 , C03B5/18 , C03B37/012 , C03B37/027 , C03B25/02 , C03B5/225 , G02B6/06
CPC classification number: C03C3/068 , C03B5/08 , C03B5/18 , C03B5/225 , C03B25/02 , C03B37/01268 , C03B37/027 , C03C13/045 , C03C2213/00 , G02B6/06
Abstract: The present invention discloses a glass with high refractive index for fiber optic imaging elements with medium-expansion and fabrication method therefor, the glass comprising the following components in percentage by weight: SiO2 5-9%, Al2O3 0-1%, B2O3 23-28%, CaO 0-3%, BaO 6-12%, La2O3 30-34%, Nb2O5 4-8%, Ta2O5 0-1%, Y2O3 0-1%, ZnO 4-9%, TiO2 4-8%, ZrO2 4-6%, SnO2 0-1%. The present invention further provides a fabrication method for the glass with a high refractive index, comprising: putting raw materials quartz sand, aluminum hydroxide, boric acid or boric anhydride, calcium carbonate, barium carbonate or barium nitrate, lanthanum oxide, niobium oxide, tantalum oxide, yttrium oxide, zinc oxide, titanium dioxide, zirconium oxide and stannic oxide, etc. into a platinum crucible according to the requirement of dosing, melting at a high temperature, cooling and fining, leaking and casting to form a glass rod, and then annealing, cooling and chilling the molded glass rod.
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公开(公告)号:US11802071B2
公开(公告)日:2023-10-31
申请号:US17766422
申请日:2022-01-29
Applicant: China Building Materials Academy
Inventor: Lei Zhang , Zhenbo Cao , Jinsheng Jia , Yun Wang , Yue Zhao , Xian Zhang , Xiaofeng Tang , Yu Shi , Jing Zhang , Zhiheng Fan , Huichao Xu , Haoyang Yu , Puguang Song , Aixin Wang , Changhua Hong
IPC: C03B37/028 , G02B6/06 , C03B37/012 , C03C13/04 , C03C3/068 , C03B37/15
CPC classification number: C03B37/028 , C03B37/0128 , C03B37/01214 , C03B37/15 , C03C3/068 , C03C13/046 , G02B6/06 , C03B2203/40 , C03C2213/00
Abstract: A fiber optic imaging element includes medium-expansion and a fabrication method including: (1) matching a core glass rod with a cladding glass tube to perform mono fiber drawing; (2) arranging the mono fibers into a mono fiber bundle rod, and then drawing the mono fiber bundle rod into a multi fiber; (3) arranging the multi fiber into a multi fiber bundle rod, and then drawing the multi fiber bundle rod into a multi-multi fiber; (4) cutting the multi-multi fiber, and then arranging the multi-multi fiber into a fiber assembly buddle, then putting the fiber assembly buddle into a mold of heat press fusion process, and performing the heat press fusion process to prepare a block of the fiber optic imaging element with medium-expansion; and (5) edged rounding, cutting and slicing, face grinding and polishing the prepared medium-expansion block into a billet.
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