COATING WITH ADHESION LAYER FOR UV OPTICS
    13.
    发明申请
    COATING WITH ADHESION LAYER FOR UV OPTICS 审中-公开
    涂料用于UV光学胶粘剂层

    公开(公告)号:US20170052293A1

    公开(公告)日:2017-02-23

    申请号:US15229779

    申请日:2016-08-05

    Abstract: An optical assembly and a method for making the optical assembly. The optical assembly includes an optical element; an adhesion promoter; a blocking coating; a holder; and an adhesive configured to adhere the optical element to the holder. The blocking coating includes a light absorber that does not transmit light with wavelengths from greater than or equal to about 250 nm to less than or equal to about 400 nm; The light absorber is positioned such that light having a wavelength from greater than or equal to about 190 nm to less than or equal to about 500 nm is not incident to the adhesive. The adhesion promoter improves adhesion of the blocking coating to the optical element and reduces the likelihood of delamination during handling, operation, or clearing of the optical assembly.

    Abstract translation: 光学组件和制造光学组件的方法。 光学组件包括光学元件; 粘合促进剂; 阻挡涂层; 持有人 以及被配置为将光学元件粘附到保持器的粘合剂。 阻挡涂层包括不透射波长大于或等于约250nm至小于或等于约400nm的光的光吸收体; 定位光吸收体使得具有大于或等于约190nm至小于或等于约500nm的波长的光不会入射到粘合剂。 粘合促进剂改善了阻挡涂层对光学元件的粘附,并降低了在光学组件的处理,操作或清除期间分层的可能性。

    COATED GLASS ARTICLES AND PROCESSES FOR PRODUCING THE SAME

    公开(公告)号:US20220017408A1

    公开(公告)日:2022-01-20

    申请号:US17488397

    申请日:2021-09-29

    Abstract: According to one embodiment, a method for producing a coated glass article may include applying an anti-reflective coating onto a glass substrate. The glass substrate may include a first major surface, and a second major surface opposite the first major surface. The anti-reflective coating may be applied to the first major surface of the glass substrate. A substrate thickness may be measured between the first major surface and the second major surface. The glass substrate may have an aspect ratio of at least about 100:1. The coated glass article may have a reflectance of less than 2% for all wavelengths from 450 nanometers to 700 nanometers. The anti-reflective coating may include one or more layers. The cumulative layer stress of the anti-reflective coating may have an absolute value less than or equal to about 167,000 MPa nm.

    Coated glass articles and processes for producing the same

    公开(公告)号:US11161778B2

    公开(公告)日:2021-11-02

    申请号:US15808079

    申请日:2017-11-09

    Abstract: According to one embodiment, a method for producing a coated glass article may include applying an anti-reflective coating onto a glass substrate. The glass substrate may include a first major surface, and a second major surface opposite the first major surface. The anti-reflective coating may be applied to the first major surface of the glass substrate. A substrate thickness may be measured between the first major surface and the second major surface. The glass substrate may have an aspect ratio of at least about 100:1. The coated glass article may have a reflectance of less than 2% for all wavelengths from 450 nanometers to 700 nanometers. The anti-reflective coating may include one or more layers. The cumulative layer stress of the anti-reflective coating may have an absolute value less than or equal to about 167,000 MPa nm.

    Blocking coating with adhesion layer for ultraviolet optics

    公开(公告)号:US10578785B2

    公开(公告)日:2020-03-03

    申请号:US15229779

    申请日:2016-08-05

    Abstract: An optical assembly and a method for making the optical assembly. The optical assembly includes an optical element; an adhesion promoter; a blocking coating; a holder; and an adhesive configured to adhere the optical element to the holder. The blocking coating includes a light absorber that does not transmit light with wavelengths from greater than or equal to about 250 nm to less than or equal to about 400 nm; The light absorber is positioned such that light having a wavelength from greater than or equal to about 190 nm to less than or equal to about 500 nm is not incident to the adhesive. The adhesion promoter improves adhesion of the blocking coating to the optical element and reduces the likelihood of delamination during handling, operation, or clearing of the optical assembly.

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