Modular glass reference plate assembly
    1.
    发明申请
    Modular glass reference plate assembly 失效
    模块化玻璃参考板总成

    公开(公告)号:US20080138559A1

    公开(公告)日:2008-06-12

    申请号:US11634598

    申请日:2006-12-06

    摘要: Systems, methods, and apparatus relate to a glass reference plate panel; to a modular glass reference plate assembly; and to creation of the modular glass reference plate assembly, which may include providing a plurality of glass reference plate panels, arranging the plurality of glass reference plate panels into an array of adjoining glass reference plate panels, and adhering together the adjoining glass reference plate panels. One or more embodiments may include 6.8 mm-thick borosilicate glass, ground, and polished, with reference marks on a top side and a PVD aluminum coating on a bottom side, perforated with holes, arranged in a 4×4 array of 16 glass reference plate panels, each approximately 810 mm2 in size, abutting at interfaces formed by lap joints, and bonded together with a UV-curable adhesive into a contiguous piece.

    摘要翻译: 系统,方法和装置涉及玻璃参考板面板; 到模块化玻璃参考板组件; 以及模块化玻璃参考板组件的创建,其可以包括提供多个玻璃参考板面板,将多个玻璃参考板面板布置成相邻的玻璃参考板面板的阵列,并将邻接的玻璃参考板面板 。 一个或多个实施例可以包括6.8mm厚的硼硅酸盐玻璃,研磨和抛光,在顶侧具有参考标记,底侧上具有穿孔孔的PVD铝涂层,布置在具有16个玻璃参考板面板的4×4阵列中 每个大约810mm 2的尺寸,在由搭接接头形成的界面处邻接,并且用UV可固化粘合剂粘合在一起。

    Modular glass reference plate assembly
    2.
    发明授权
    Modular glass reference plate assembly 失效
    模块化玻璃参考板总成

    公开(公告)号:US07934435B2

    公开(公告)日:2011-05-03

    申请号:US11634598

    申请日:2006-12-06

    IPC分类号: G01N33/00 B32B17/00

    摘要: Systems, methods, and apparatus relate to a glass reference plate panel; to a modular glass reference plate assembly; and to creation of the modular glass reference plate assembly, which may include providing a plurality of glass reference plate panels, arranging the plurality of glass reference plate panels into an array of adjoining glass reference plate panels, and adhering together the adjoining glass reference plate panels. One or more embodiments may include 6.8 mm-thick borosilicate glass, ground, and polished, with reference marks on a top side and a PVD aluminum coating on a bottom side, perforated with holes, arranged in a 4×4 array of 16 glass reference plate panels, each approximately 810 mm2 in size, abutting at interfaces formed by lap joints, and bonded together with a UV-curable adhesive into a contiguous piece.

    摘要翻译: 系统,方法和装置涉及玻璃参考板面板; 到模块化玻璃参考板组件; 以及模块化玻璃参考板组件的创建,其可以包括提供多个玻璃参考板面板,将多个玻璃参考板面板布置成相邻的玻璃参考板面板的阵列,并将邻接的玻璃参考板面板 。 一个或多个实施方案可以包括6.8mm厚的硼硅酸盐玻璃,研磨和抛光,在顶侧具有参考标记,底侧上具有穿孔孔的PVD铝涂层以16×玻璃参考的4×4阵列排列 每个约810mm2的板面板,由搭接接头形成的界面处邻接,并用UV可固化粘合剂粘合在一起。

    METHOD OF PRODUCING UNIFORM LIGHT TRANSMISSION FUSION DRAWN GLASS
    3.
    发明申请
    METHOD OF PRODUCING UNIFORM LIGHT TRANSMISSION FUSION DRAWN GLASS 有权
    生产均匀光传输熔融玻璃的方法

    公开(公告)号:US20120111055A1

    公开(公告)日:2012-05-10

    申请号:US12943282

    申请日:2010-11-10

    IPC分类号: C03B17/00

    摘要: In a method of making a glass sheet using an overflow fusion downdraw process, a glass sheet quality metric level Q1 is selected, where Q1 is a measure of allowable retardation in the glass sheet. A glass ribbon temperature T1 at which a potential glass ribbon thermal artifact could occur in a glass ribbon while the glass ribbon is being drawn through a drawing machine enclosure is identified. A thermal artifact envelope E1 is determined, where E1 contains types of glass ribbon thermal artifacts allowable at T1 and Q1. A glass melt is overflowed from an isopipe to form a glass ribbon at the root of the isopipe. The glass ribbon is drawn below the root of the isopipe through the drawing machine enclosure to form the glass sheet. The drawing machine enclosure is altered at a location corresponding to where the glass ribbon would be at T1 such that during drawing of the glass ribbon the potential glass ribbon thermal artifact is not formed in the glass ribbon at T1 or, if the potential glass ribbon thermal artifact is formed in the glass ribbon at T1, the potential glass ribbon thermal artifact is within E1.

    摘要翻译: 在使用溢流熔融下拉法制造玻璃板的方法中,选择玻璃板质量度量级Q1,其中Q1是玻璃板中允许的延迟的量度。 鉴定玻璃带温度T1,当玻璃带通过拉丝机外壳被拉出时,在玻璃带中可能发生潜在玻璃带热伪影的玻璃带温度T1。 确定热伪影包络E1,其中E1包含在T1和Q1允许的玻璃带热伪影类型。 玻璃熔体从等压管溢出,在等压槽的根部形成玻璃带。 玻璃带通过拉丝机外壳拉到等压槽的根部下方,形成玻璃板。 在对应于玻璃带将处于T1的位置处的拉丝机外壳被改变,使得在拉制玻璃带期间,在T1处不会在玻璃带中形成潜在的玻璃带热伪影,或者如果潜在的玻璃带热 在T1的玻璃带中形成人造物,潜在的玻璃带热伪影在E1内。

    Method of producing uniform light transmission fusion drawn glass
    8.
    发明授权
    Method of producing uniform light transmission fusion drawn glass 有权
    均匀透光融合拉制玻璃的制造方法

    公开(公告)号:US08210001B2

    公开(公告)日:2012-07-03

    申请号:US12943282

    申请日:2010-11-10

    IPC分类号: C03B17/00 C03B17/06

    摘要: In a method of making a glass sheet using an overflow fusion downdraw process, a glass sheet quality metric level Q1 is selected, where Q1 is a measure of allowable retardation in the glass sheet. A glass ribbon temperature T1 at which a potential glass ribbon thermal artifact could occur in a glass ribbon while the glass ribbon is being drawn through a drawing machine enclosure is identified. A thermal artifact envelope E1 is determined, where E1 contains types of glass ribbon thermal artifacts allowable at T1 and Q1. A glass melt is overflowed from an isopipe to form a glass ribbon at the root of the isopipe. The glass ribbon is drawn below the root of the isopipe through the drawing machine enclosure to form the glass sheet. The drawing machine enclosure is altered at a location corresponding to where the glass ribbon would be at T1 such that during drawing of the glass ribbon the potential glass ribbon thermal artifact is not formed in the glass ribbon at T1 or, if the potential glass ribbon thermal artifact is formed in the glass ribbon at T1, the potential glass ribbon thermal artifact is within E1.

    摘要翻译: 在使用溢流熔融下拉法制造玻璃板的方法中,选择玻璃板质量度量级Q1,其中Q1是玻璃板中允许的延迟的量度。 鉴定玻璃带温度T1,当玻璃带通过拉丝机外壳被拉出时,在玻璃带中可能发生潜在玻璃带热伪影的玻璃带温度T1。 确定热伪影包络E1,其中E1包含在T1和Q1允许的玻璃带热伪影类型。 玻璃熔体从等压管溢出,在等压槽的根部形成玻璃带。 玻璃带通过拉丝机外壳拉到等压槽的根部下方,形成玻璃板。 在对应于玻璃带将处于T1的位置处的拉丝机外壳被改变,使得在拉制玻璃带期间,在T1处不会在玻璃带中形成潜在的玻璃带热伪影,或者如果潜在的玻璃带热 在T1的玻璃带中形成人造物,潜在的玻璃带热伪影在E1内。

    GLASS-PLASTIC LAMINATE DEVICE, PROCESSING LINE AND METHODS THEREFOR
    10.
    发明申请
    GLASS-PLASTIC LAMINATE DEVICE, PROCESSING LINE AND METHODS THEREFOR 有权
    玻璃 - 塑料层压装置,加工线及其方法

    公开(公告)号:US20140132132A1

    公开(公告)日:2014-05-15

    申请号:US14118781

    申请日:2012-05-15

    摘要: A laminate including a glass sheet (10) and a first polymer layer (20) laminated to a first surface of the glass sheet. The glass sheet has a thickness of from 5 to 500 microns, and the first polymer layer provides a coating factor (F) to the glass sheet, wherein the coating factor (F) is defined by the following formula F=(1−γβ2)/(1+γβ2), wherein γ=[Ep1 (1−vg2)]/[Eg (1−vp12)], [β=tp1/tg, Ep1=Young's Modulus of the first polymer, tp1=thickness of the first polymer, vp1=Poisson's Ratio of the first polymer, Eg=Young's Modulus of the glass, tg=thickness of the glass, and vg=Poisson's Ratio of the glass. The laminate is curved so that a second surface of the glass sheet is disposed in a concave shape; and the coating factor (F) is less than 1. A second polymer layer (30) may be disposed on the second surface of the glass sheet, and its properties may be chosen relative to those of the first polymer layer so as to reduce the maximum principle stress-due to a bending moment-in the glass as compared to a bare glass sheet.

    摘要翻译: 一种层压体,其包括层压到玻璃板的第一表面上的玻璃板(10)和第一聚合物层(20)。 玻璃板的厚度为5至500微米,第一聚合物层向玻璃板提供涂层因子(F),其中涂层因子(F)由下式定义:F =(1-γ&bgr; 2)/(1 +γ&bgr; 2)其中γ= [Ep1(1-vg2)] / [Eg(1-vp12)],[&bgr; = tp1 / tg,Ep1 =第一聚合物的杨氏模量,tp1 =第一聚合物的厚度,vp1 =第一聚合物的泊松比,Eg =玻璃的杨氏模量,tg =玻璃的厚度,vg =玻璃的泊松比。 层压体是弯曲的,使得玻璃板的第二表面被设置成凹形; 并且涂层因子(F)小于1.第二聚合物层(30)可以设置在玻璃板的第二表面上,并且可以相对于第一聚合物层的性质选择其性质,以便减少 与裸露的玻璃板相比,玻璃中的弯矩的最大主应力。