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公开(公告)号:EP4041691A1
公开(公告)日:2022-08-17
申请号:EP20793476.1
申请日:2020-10-08
申请人: Guardian Glass, LLC
发明人: XU, Yongli , BOYCE, Brent , BOUSSAAD, Salah , LINGLE, Philip , LAO, Jingyu , VERNHES, Richard
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2.
公开(公告)号:EP3793959A1
公开(公告)日:2021-03-24
申请号:EP19772854.6
申请日:2019-07-16
申请人: Guardian Glass, LLC
发明人: XU, Yongli , BOYCE, Brent , BOUSSAAD, Salah , LINGLE, Philip J. , LAO, Jingyu , VERNHES, Richard
IPC分类号: C03C17/36
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3.
公开(公告)号:EP3922615A3
公开(公告)日:2022-04-20
申请号:EP21188011.7
申请日:2019-12-16
申请人: Guardian Glass, LLC
发明人: XU, Yongli , BOYCE, Brent , BOUSSAAD, Salah , LINGLE, Philip , LAO, Jingyu , VERNHES, Richard
IPC分类号: C03C17/36
摘要: A low-E coating has good color stability (a low ΔE* value) upon heat treatment (HT). Thermal stability may be improved by the provision of an as-deposited crystalline or substantially crystalline layer of or including zinc oxide, doped with at least one dopant (e.g., Sn), immediately under an infrared (IR) reflecting layer of or including silver; and/or by the provision of at least one dielectric layer of or including at least one of: (a) an oxide of silicon and zirconium, (b) an oxide of zirconium, and (c) an oxide of silicon. These have the effect of significantly improving the coating's thermal stability (i.e., lowering the ΔE* value).
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4.
公开(公告)号:EP3894365A1
公开(公告)日:2021-10-20
申请号:EP19835761.8
申请日:2019-12-16
申请人: Guardian Glass, LLC
发明人: XU, Yongli , BOYCE, Brent , BOUSSAAD, Salah , LINGLE, Philip , LAO, Jingyu , VERNHES, Richard
IPC分类号: C03C17/36
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公开(公告)号:EP3271169A1
公开(公告)日:2018-01-24
申请号:EP16716955.6
申请日:2016-03-15
发明人: DING, Guowen , BOYCE, Brent , CHENG, Jeremy , IMRAN, Muhammad , LAO, Jingyu , LE, Mihn, Huu , SCHWEIGERT, Daniel , WEN SUN, Zhi-wen , WANG, Yu , XU, Yongli , ZHANG, Guizhen
CPC分类号: B32B15/08 , C03C17/36 , C03C17/3644 , C03C17/3652 , C03C17/366 , C23C14/185 , G02B5/208 , G02B5/285
摘要: A method for making low emissivity panels, including control the composition of a barrier layer formed on a thin conductive silver layer. The barrier structure can include a ternary alloy of nickel, titanium, and niobium, which showed improvements in overall performance than those from binary barrier results. The percentage of nickel can be between 5 and 15 wt%. The percentage of titanium can be between 30 and 50 wt%. The percentage of niobium can be between 40 and 60 wt%.
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6.
公开(公告)号:EP3922615A2
公开(公告)日:2021-12-15
申请号:EP21188011.7
申请日:2019-12-16
申请人: Guardian Glass, LLC
发明人: XU, Yongli , BOYCE, Brent , BOUSSAAD, Salah , LINGLE, Philip , LAO, Jingyu , VERNHES, Richard
IPC分类号: C03C17/36
摘要: A low-E coating has good color stability (a low ΔE* value) upon heat treatment (HT). Thermal stability may be improved by the provision of an as-deposited crystalline or substantially crystalline layer of or including zinc oxide, doped with at least one dopant (e.g., Sn), immediately under an infrared (IR) reflecting layer of or including silver; and/or by the provision of at least one dielectric layer of or including at least one of: (a) an oxide of silicon and zirconium, (b) an oxide of zirconium, and (c) an oxide of silicon. These have the effect of significantly improving the coating's thermal stability (i.e., lowering the ΔE* value).
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公开(公告)号:EP3941886A1
公开(公告)日:2022-01-26
申请号:EP20716208.2
申请日:2020-03-17
申请人: Guardian Glass, LLC
发明人: XU, Yongli , BOYCE, Brent , BOUSSAAD, Salah , LINGLE, Philip , LAO, Jingyu , VERNHES, Richard
IPC分类号: C03C17/36
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公开(公告)号:EP2969546B1
公开(公告)日:2019-02-13
申请号:EP14773952.8
申请日:2014-03-12
申请人: Guardian Glass, LLC
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公开(公告)号:EP2969994B1
公开(公告)日:2018-04-25
申请号:EP14780065.0
申请日:2014-03-12
申请人: Guardian Glass, LLC
发明人: DING, Guowen , BOYCE, Brent , CHENG, Jeremy , IMRAN, Muhammed , LAO, Jingyu , LE, Minh, Huu , SCHWEIGERT, Daniel , SUN, Zhi-Wen , WANG, Yu , XU, Yongli , ZHANG, Guizhen
CPC分类号: C23C14/083 , C03C17/3615 , C03C17/3618 , C03C17/3644 , C03C17/366 , C23C14/0036 , C23C14/08 , C23C14/185 , C23C14/3464 , G02B5/0875 , G02B5/208 , Y10T428/12611
摘要: A method for making low emissivity panels, including control the composition of a barrier layer formed on a thin conductive silver layer. The barrier structure can include a ternary alloy of titanium, nickel and niobium, which showed improvements in overall performance than those from binary barrier results. The percentage of titanium can be between 5 and 15 wt %. The percentage of nickel can be between 30 and 50 wt %. The percentage of niobium can be between 40 and 60 wt %.
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