41.
    发明专利
    未知

    公开(公告)号:AT301623T

    公开(公告)日:2005-08-15

    申请号:AT02738273

    申请日:2002-05-17

    Applicant: ESSILOR INT

    Abstract: A method that allows trimming glass comprising a hydrophobic and/or oil-repellent surface coating, where a temporary protective layer is coated on the surface of said glass and the temporary protective layer imparts to the glass a surface energy of at least 15 mJ/m2.

    42.
    发明专利
    未知

    公开(公告)号:BR0313401A

    公开(公告)日:2005-07-12

    申请号:BR0313401

    申请日:2003-07-02

    Applicant: ESSILOR INT

    Abstract: The treatment of an ophthalmic glass, with two principal surfaces of which at least one incorporates an external organic or mineral layer coated with a temporary protective layer of MgF 2, comprises: (a) chemical treatment by a liquid of the temporary protective layer, leading to the formation of a layer of MgO on the temporary protective layer; (b) deposition of at least one metal oxide and/or at least one non-fluoride metal hydroxide on the temporary protective layer by transfer or from an electrostatic film or by evaporation under vacuum or directly on the temporary protective layer; and (c) the deposition of the temporary protective layer of MgF 2 on the external layer by evaporation under vacuum at a speed of less than or equal to 0.5 nm/second. An independent claim is included for an ophthalmic lens treated as above.

    METHOD FOR TREATING A LENS APT TO TRIMMING

    公开(公告)号:AU2003246355A1

    公开(公告)日:2005-01-04

    申请号:AU2003246355

    申请日:2003-07-02

    Applicant: ESSILOR INT

    Abstract: The treatment of an ophthalmic glass, with two principal surfaces of which at least one incorporates an external organic or mineral layer coated with a temporary protective layer of MgF 2, comprises: (a) chemical treatment by a liquid of the temporary protective layer, leading to the formation of a layer of MgO on the temporary protective layer; (b) deposition of at least one metal oxide and/or at least one non-fluoride metal hydroxide on the temporary protective layer by transfer or from an electrostatic film or by evaporation under vacuum or directly on the temporary protective layer; and (c) the deposition of the temporary protective layer of MgF 2 on the external layer by evaporation under vacuum at a speed of less than or equal to 0.5 nm/second. An independent claim is included for an ophthalmic lens treated as above.

    METHOD FOR OBTAINING A MARK ON A LOW SURFACE ENERGY OPHTHALMIC LENS

    公开(公告)号:AU2003290168A1

    公开(公告)日:2004-06-15

    申请号:AU2003290168

    申请日:2003-11-07

    Applicant: ESSILOR INT

    Abstract: The application of a mark on the surface of an ophthalmic glass of the type with an external hydrophobic and/or oleophobic coating with a low surface energy on a substrate or a coating with a high surface energy comprises: (a) positioning a mask, with a configuration complementary to the desired mark, between the surface to be marked and an energizing discharge source able to eliminate the external coating to reveal the underlying substrate or high energy coating; and (b) depositing on the outer coating, a temporary protective coating having a surface energy higher than that of the external coating and a thickness of less than 5 nm in order to allow the discharge to act on the external coating across the temporary protective coating.

    46.
    发明专利
    未知

    公开(公告)号:DE69900314D1

    公开(公告)日:2001-10-31

    申请号:DE69900314

    申请日:1999-02-23

    Applicant: ESSILOR INT

    Abstract: A distribution mask including at least two separate blanking panels (22), one of which is mounted mobile. The two blanking panels (22) are substantially coplanar, and, controlled by a common control unit (23), both mounted continuously mobile between two extreme positions, namely, a close position, and for which the space (E) between them is minimal, and a spaced position, for which the space (E) is on the contrary at its maximum. The invention is particularly applicable to antiglare treatment of ophthalmic lenses.

    Artículo óptico revestido con un revestimiento antirreflectante o reflectante que comprende una capa eléctricamente conductora a base de óxido de estaño y procedimiento de fabricación

    公开(公告)号:ES2701377T3

    公开(公告)日:2019-02-21

    申请号:ES17150894

    申请日:2010-03-26

    Applicant: ESSILOR INT

    Abstract: Artículo óptico con propiedades antiestáticas y antirreflectantes o reflectantes, que comprende un sustrato que tiene al menos una superficie principal revestida de un revestimiento antirreflectante o reflectante, comprendiendo dicho revestimiento al menos una capa eléctricamente conductora, en el que - el depósito de dicha capa eléctricamente conductora se ha realizado bajo asistencia iónica bombardeando la superficie del sustrato con un haz de iones emitidos por un cañón de iones, y - dicho sustrato tiene un porcentaje de recogida de agua superior o igual al 0,6% en masa con respecto a la masa total de dicho sustrato, siendo el porcentaje de recogida de agua medido después del secado previo de dicho sustrato y después del almacenamiento de este sustrato durante 800 horas en un recinto a 50ºC bajo una humedad relativa del 100% y a presión atmosférica, caracterizado por que: a capa eléctricamente conductora según la presente invención comprende al menos un 30% en masa de óxido de estaño (SnO2) con respecto a la masa total de la capa eléctricamente conductora.

    Ophthalmic filter
    48.
    发明专利

    公开(公告)号:AU2018203487A1

    公开(公告)日:2018-06-07

    申请号:AU2018203487

    申请日:2018-05-17

    Abstract: An optical device comprising: an optical substrate provided with selective optical filtering means configured to selectively inhibit transmission, through the optical substrate of at least one selected range of wavelengths of incident light in the visible light spectrum at an inhibition rate of at least 5%, the selective optical filtering means being further configured to transmit at least 8% of incident light of the visible spectrum outside the at least one selected range of wavelengths; wherein the at least one selected range of wavelengths has a bandwidth in a range of from 1Onm to 70nm, preferably 1Onm to 60nm centered on a wavelength within a range of between 430nm and 465 nm. cc U) o (NI C

    ПРИМЕНЕНИЕ ЭЛЕКТРОПРОВОДЯЩЕГО СЛОЯ НА ОСНОВЕ ОКСИДА ОЛОВА В АНТИБЛИКОВОМ ИЛИ ОТРАЖАЮЩЕМ ПОКРЫТИИ ОПТИЧЕСКОГО ИЗДЕЛИЯ

    公开(公告)号:EA027776B1

    公开(公告)日:2017-08-31

    申请号:EA201500603

    申请日:2010-03-26

    Abstract: Объектомнастоящегоизобретенияявляетсяприменениеэлектропроводящегослоя, содержащегопоменьшеймере 30 мас.% оксидаолова (SnO) поотношениюк общеймассеэлектропроводящегослоя, вантистатическомантибликовомилиотражающемпокрытии, нанесенномнапоменьшеймереоднуглавнуюповерхностьподложкиоптическогоизделия, котораяимееткоэффициентпоглощениявлагипоменьшеймере 0,6 мас.% поотношениюк общеймассеуказаннойподложки, приэтомуказанныйкоэффициентпоглощениявлагиизмеренпослепредварительнойсушкиуказаннойподложкии последующейвыдержкиэтойподложкив течение 800 чв закрытойкамерепри 50°C, относительнойвлажности 100% иатмосферномдавлении, вкачествесредствадлясохраненияпрозрачностиуказанногопокрытияилипредупрежденияпоявлениякосметическихдефектовв оптическомизделии.

Patent Agency Ranking