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公开(公告)号:US20240045229A1
公开(公告)日:2024-02-08
申请号:US18257525
申请日:2021-12-17
Applicant: ESSILOR INTERNATIONAL
Inventor: Valérie SALLES , Bruno AMIR , Jean-Marc PADIOU , Eric GACOIN
CPC classification number: G02C5/126 , G02C13/005 , G02C7/027 , G02C2200/08
Abstract: Disclosed is a method, for example implemented by a computer, for determining the shape of a nose pad, to be part of an ophthalmic lens intended to be worn by a wearer, the method including: receiving lens shape data relating at least to the shape of an ophthalmic lens; receiving morphology data relating at least to the morphology of the nose of the wearer; and determining the shape of the nose pad intended to be part of the ophthalmic lens intended to be worn by the wearer based at least on the lens shape data and morphology data.
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公开(公告)号:US20220055325A1
公开(公告)日:2022-02-24
申请号:US17299549
申请日:2019-12-03
Applicant: ESSILOR INTERNATIONAL
Inventor: Olivier ROUSSEL , Jean-Marc PADIOU , Mathieu FEUILLADE , Alexandre GOURRAUD , Loïc QUERE
Abstract: A method for manufacturing an optical lens having at least a reference optical power at a given point is described. This method includes the steps of: selecting, among a fixed number of optical elements, one optical element to manufacture the optical lens, the step of selecting being executed as a function of the reference optical power at the given point of the optical lens, the step of selecting being executed such that the selected optical element has an optical power having an absolute value lower than or equal to the absolute value of the reference optical power at the given point of the optical lens; and manufacturing the optical lens using an additive manufacturing technology by depositing a complementary portion on the selected optical element. A manufacturing system for manufacturing an optical lens is also described.
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公开(公告)号:US20240231124A1
公开(公告)日:2024-07-11
申请号:US18558051
申请日:2022-05-13
Applicant: ESSILOR INTERNATIONAL
Inventor: Camille MERIDIANO , Jean-Marc PADIOU
CPC classification number: G02C7/02 , B29D11/00326 , B29D11/00355 , B29D11/00865 , G02C2202/16
Abstract: Disclosed is a method for manufacturing an optical article, including: providing a base-lens substrate having opposite first and second lens surfaces, and at least one optical element disposed on the second lens surface or embedded within the base-lens substrate, each optical element having a maximum height that is less than or equal to 0.5 mm, and a maximum width that is less than or equal to 2.0 mm, and performing a differentiate coating deposition on the second lens surface, wherein the second lens surface includes at least two areas defined according to their relative position with respect to at least one optical element, and the differentiate coating deposition includes changing at least one parameter of the coating deposition according to the considered area.
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公开(公告)号:US20220252902A1
公开(公告)日:2022-08-11
申请号:US17622084
申请日:2020-06-23
Applicant: ESSILOR INTERNATIONAL
Inventor: Enrique NAVA RUDIGER , Jean-Marc PADIOU
Abstract: This system for selecting at least one ophthalmic lens manufacturing process to be used for manufacturing an ophthalmic lens, the manufacturing including additive manufacturing, includes at least one processor configured to determine in an automated manner, on the basis of a set of input data, at least two ophthalmic lens manufacturing processes differing by at least one manufacturing operation, which can be used for manufacturing the ophthalmic lens. It further includes at least one processor configured to select at least one ophthalmic lens manufacturing process to be used for manufacturing the ophthalmic lens, among the determined at least two ophthalmic lens manufacturing processes.
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公开(公告)号:US20200050019A1
公开(公告)日:2020-02-13
申请号:US16607888
申请日:2018-04-11
Applicant: ESSILOR INTERNATIONAL
Inventor: Peiqi JIANG , Jean-Marc PADIOU
Abstract: Disclosed are glass and plastic hybrid ophthalmic lenses and methods of manufacture. The lenses include a first glass layer having a first base curve; a second adhesive layer; and a third plastic layer having a second base curve substantially similar to the first base curve, wherein the concave surface of the first glass layer is laminated to the convex surface of the third plastic layer, and wherein the optical power difference between the first glass layer and the third plastic layer is from 0 to 0.1 Diopter (D).
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公开(公告)号:US20150370089A1
公开(公告)日:2015-12-24
申请号:US14653623
申请日:2013-12-18
Inventor: Cyril GUILLOUX , Jean-Marc PADIOU
CPC classification number: G02C7/028 , B29C51/00 , B29D11/00451 , C03B23/0026 , G02C7/02 , G02C7/061 , G02C7/068
Abstract: A method of manufacturing an ophthalmic lens comprising: an ophthalmic lens data providing step (S1) during which ophthalmic lens data corresponding are provided, a semi-finished lens blank providing step (S2) during which a semi-finished lens blank is provided, a transfer function determining step (S3) during which the transfer function to be applied to the first optical surface of the ophthalmic lens so as to correspond to the first lens blank surface is determined, an one side lens data calculating step (S4) during which one side lens having second surface that corresponds to the second optical surface calculated by applying the transfer function, a machining step (S5) during which the semi-finished lens blank is machined according to the one side lens data, a deforming step (S6) during which the machined semi-finished lens blank is deformed so as to obtain the ophthalmic lens.
Abstract translation: 一种眼科镜片的制造方法,其特征在于,包括:眼镜镜片数据提供步骤(S1),在眼镜镜片数据提供步骤(S1)期间提供对应的眼镜镜片数据;半成品镜片毛坯提供步骤(S2),在该步骤中提供半成品镜片坯料, 确定要对眼科镜片的第一光学表面施加与第一透镜毛坯表面相对应的传递函数的传递函数确定步骤(S3),一侧透镜数据计算步骤(S4),其中一个 具有与通过施加传递函数计算的第二光学表面相对应的第二表面的侧面透镜,根据单面透镜数据加工半成品透镜毛坯的加工步骤(S5),期间的变形步骤(S6) 机加工的半成品镜片坯料变形以获得眼科镜片。
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公开(公告)号:US20230041524A1
公开(公告)日:2023-02-09
申请号:US17788031
申请日:2020-12-23
Applicant: Essilor International
Inventor: Maxime LECOMPERE , Pierre LEITE , Jean-Marc PADIOU , Manuel THEODET
IPC: B29C64/124 , B33Y10/00
Abstract: A method of manufacturing an optical component having at least one optical function, comprising: —manufacturing using an additive manufacturing process at least part of an optical element (40) by depositing a plurality of pre-determined volume elements (14) of polymerizable material, a part of the optical element (40) being configured to provide at least a part of the optical function of an optical component, said additively manufacturing being performed such that the optical element (40) comprises an unfinished peripheric surface (42), said unfinished peripheric surface (42) having a relief pattern (44) formed by traces of the additive manufacturing process and having at least one depression (18) with regard to another part of the peripheric surface (42), —coating said unfinished peripheric surface (42) with a layer (50) of coating liquid (46) configured to at least partially fill the at least one depression (18).
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公开(公告)号:US20200298512A1
公开(公告)日:2020-09-24
申请号:US16770361
申请日:2018-12-05
Applicant: Essilor International
Inventor: Jean-Marc PADIOU , Mathieu FEUILLADE , Alexandre GOURRAUD , Loïc QUERE , Olivier ROUSSEL
IPC: B29D11/00
Abstract: A method of manufacturing an ophthalmic lens, including: a step of providing a starting optical system (30) having a first optical function and a first main refractive index; a step of providing a transition layer (20) intended to be disposed between the starting optical system (30) and a complementary optical element (12) having a second main refractive index, the transition layer (20) aiming at reducing unwanted reflection caused by the mismatch between the first and the second main refractive index, the transition layer (20) having a transition optical function; and a step of additively manufacturing the complementary optical element (12) on the transition layer (20), the complementary optical element (12) having a second optical function, the second optical function being predetermined as a function of the first optical function and of the transition optical function.
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公开(公告)号:US20180354212A1
公开(公告)日:2018-12-13
申请号:US16002082
申请日:2018-06-07
Applicant: ESSILOR INTERNATIONAL
Inventor: Jean-Marc PADIOU , Jeanne MARCHAL , Jonathan SAULNY
CPC classification number: B29D11/00009 , B24B9/20 , B24B13/065 , B29D11/00961 , B29K2669/00 , G02B1/14 , G02C7/02 , G02C7/101 , G02C2202/08 , G02C2202/16
Abstract: Disclosed is a semi-finished lens that includes a blank formed in a first material having a first hardness, the blank having an outline, a first face and a second face configured to be surfaced so as to constitute a first optical face of the ophthalmic lens, and a top layer formed in a second material having a second hardness greater than the first hardness, the top layer having an outline, a first face and a second face, the second face of the top layer being arranged on the first face of the blank. The outline of the top layer is equal to or included in the outline of the blank, and satisfies to a predetermined dimensional selection criterion involving the final outline of the ophthalmic lens.
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10.
公开(公告)号:US20170235157A1
公开(公告)日:2017-08-17
申请号:US15515353
申请日:2015-09-25
Inventor: Jean-Marc PADIOU , Luis Ricardo CASTRO-MARTINEZ , Eric GACOIN , Mathieu MEYNEN , Alexandre GOURRAUD , Loic QUERE , Jerome MOINE
CPC classification number: G02C7/024 , B29C33/0038 , B29C33/68 , B29D11/00009 , B29D11/00557 , B29D11/00951 , B29L2011/0016 , B33Y80/00 , G02B27/0012 , G02C7/02 , G02C7/028 , G02C2202/08
Abstract: Disclosed is a method implemented by computer for determining a lens blank intended to be used for the manufacturing of a finished optical article. The method includes: —a virtual volume data determining step, during which virtual volume data are determined based at least on finished optical article data representative of the volume of the finished optical article and over-thickness data representative of over-thickness requirements, the virtual volume data are determined so that the virtual volume defined by the virtual volume data includes the volume of the finished optical article volume of the finished optical article and the over-thickness, —a lens blank determining step, during which a lens blank is determined based on the virtual volume data so as to include the virtual volume defined by the virtual volume data.
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