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    • 5. 发明授权
    • Method for treating an optical lens for the edging thereof
    • 用于处理光学透镜以用于其边缘的方法
    • US08562781B2
    • 2013-10-22
    • US13129364
    • 2009-11-10
    • Chefik Habassi
    • Chefik Habassi
    • B29C65/50B32B37/14B32B38/10B24B1/00B24B7/24
    • B29D11/00865B29D11/00432C09J7/22C09J7/255C09J7/38C09J2201/606C09J2401/006C09J2433/00C09J2467/006Y10T156/1062Y10T156/108Y10T428/2848
    • The present invention relates to a method for treating an optical lens coated on at least one of the main surfaces thereof with a hydrophobic and/or oleophobic external coating, to make it capable of undergoing an edging process, comprising a step of depositing onto at least one part of the hydrophobic and/or oleophobic external coating a temporary adhesive composite film, said adhesive composite film comprising a pre-formed film, one main surface of which is coated with a pressure-sensitive adhesive layer, said adhesive layer directly contacting the hydrophobic and/or oleophobic coating, the pre-formed film modulus of elasticity in tension E′ being higher than or equal to 4200 MPa, and the rupture stress of the assembly composed of said adhesive film bonded to a polycarbonate specimen coated with a fluorinated silane layer, measured under tensile stress in accordance with the shear strength evaluation standard NF EN 1465, being higher than or equal to 0.05 MPa.The present invention further relates to an edging method and to a lens capable of undergoing a successful edging process.
    • 本发明涉及一种用疏水性和/或疏油性外涂层处理其至少一个主表面上的光学透镜的方法,以使其能够进行修边工艺,该方法包括至少沉积至少 疏水和/或疏油外涂层的一部分是临时粘合剂复合膜,所述粘合剂复合膜包括预成形膜,其一个主表面涂覆有压敏粘合剂层,所述粘合剂层直接接触疏水性 和/或疏油涂层,预成型膜张力E'高于或等于4200MPa的弹性模量和由粘合到涂覆有氟化硅烷层的聚碳酸酯试样的粘合剂膜组成的组件的断裂应力 ,根据剪切强度评估标准NF EN 1465在拉伸应力下测量,高于或等于0.05MPa。 本发明还涉及一种磨边方法和能够经受成功磨边加工的透镜。
    • 8. 发明申请
    • Method for Treating an Optical Lens for the Edging Thereof
    • 用于处理其边缘的光学透镜的方法
    • US20110223418A1
    • 2011-09-15
    • US13129364
    • 2009-11-10
    • Chefik Habassi
    • Chefik Habassi
    • B32B7/12B32B37/12
    • B29D11/00865B29D11/00432C09J7/22C09J7/255C09J7/38C09J2201/606C09J2401/006C09J2433/00C09J2467/006Y10T156/1062Y10T156/108Y10T428/2848
    • The present invention relates to a method for treating an optical lens coated on at least one of the main surfaces thereof with a hydrophobic and/or oleophobic external coating, to make it capable of undergoing an edging process, comprising a step of depositing onto at least one part of the hydrophobic and/or oleophobic external coating a temporary adhesive composite film, said adhesive composite film comprising a pre-formed film, one main surface of which is coated with a pressure-sensitive adhesive layer, said adhesive layer directly contacting the hydrophobic and/or oleophobic coating, the pre-formed film modulus of elasticity in tension E′ being higher than or equal to 4200 MPa, and the rupture stress of the assembly composed of said adhesive film bonded to a polycarbonate specimen coated with a fluorinated silane layer, measured under tensile stress in accordance with the shear strength evaluation standard NF EN 1465, being higher than or equal to 0.05 MPa.The present invention further relates to an edging method and to a lens capable of undergoing a successful edging process.
    • 本发明涉及一种用疏水性和/或疏油性外涂层处理其至少一个主表面上的光学透镜的方法,以使其能够进行修边工艺,该方法包括至少沉积至少 疏水和/或疏油外涂层的一部分是临时粘合剂复合膜,所述粘合剂复合膜包括预成形膜,其一个主表面涂覆有压敏粘合剂层,所述粘合剂层直接接触疏水性 和/或疏油涂层,预成型膜张力E'高于或等于4200MPa的弹性模量和由粘合到涂覆有氟化硅烷层的聚碳酸酯试样的粘合剂膜组成的组件的断裂应力 ,根据剪切强度评估标准NF EN 1465在拉伸应力下测量,高于或等于0.05MPa。 本发明还涉及一种磨边方法和能够经受成功磨边加工的透镜。
    • 9. 发明申请
    • Method for Preparing the Surface of a Lens Including an Anti-Soiling Coating for Edging the Same
    • 用于制备包括用于擦边的防污涂层的透镜的表面的方法
    • US20100200541A1
    • 2010-08-12
    • US12678255
    • 2008-09-12
    • Chefik HabassiMarcel Yaigre
    • Chefik HabassiMarcel Yaigre
    • B29D11/00B05D5/06
    • C03C17/30B24B9/14C03C15/00C03C17/3405C03C19/00C03C23/0005C03C2217/75C03C2217/76C03C2218/355
    • The invention relates to a method for treating an optical lens coated onto at least one of the main surfaces thereof with an outer hydrophobic and/or oleophobic coating, and for making it capable of undergoing an edging process, comprising a step of treating the peripheral area of said coated main surface which results in the removal of the hydrophobic and/or oleophobic coating and/or in the modification of said coating that lowers the hydrophobic character thereof, and a step of depositing a temporary polymeric coating onto said main surface of the lens so as to cover at least partially the hydrophobic and/or oleophobic coating and the peripheral area treated during the previous step, in order to provide an optical lens having onto at least one of the main surfaces thereof an outer hydrophobic and/or oleophobic coating and, in direct contact with said hydrophobic and/or oleophobic coating, a temporary polymeric coating adhering to the surface of the coated lens. The invention also relates to an edging method and to a lens capable of undergoing an edging process.
    • 本发明涉及一种用外部疏水和/或疏油涂层处理涂覆在其至少一个主表面上的光学透镜的方法,并且使其能够进行边缘加工,其包括以下步骤:处理周边区域 的所述涂覆的主表面,其导致疏水和/或疏油涂层的去除和/或在所述涂层的改性中降低其疏水特性,以及将临时聚合物涂层沉积到透镜的主表面上的步骤 以便至少部分地覆盖在前一步骤期间处理的疏水和/或疏油涂层和周边区域,以便提供在至少一个主表面上具有外部疏水和/或疏油涂层的光学透镜,以及 与所述疏水和/或疏油涂层直接接触,附着在涂覆透镜的表面上的临时聚合物涂层。 本发明还涉及一种磨边方法以及能够进行磨边加工的透镜。