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    • 2. 发明申请
    • Glass optical element and method for manufacturing the same
    • 玻璃光学元件及其制造方法
    • US20080032137A1
    • 2008-02-07
    • US11888853
    • 2007-08-02
    • Shuji IkenagaToshiya Tomisaka
    • Shuji IkenagaToshiya Tomisaka
    • B32B17/06C03B11/08
    • C03B11/122C03B7/12C03B11/125C03B2215/07C03B2215/49
    • A glass optical element including: a first surface which is formed by transcription of the first transfer surface of the molding die; a second surface which is formed by transcription of the second transfer surface of the molding die and is facing the first surface; and a side surface of the outer periphery formed by transcription of the side transfer surface of the molding die; wherein the glass optical element is characterized by further containing: a first free surface which is formed without contacting with any of the surfaces of the molding die and is connecting the first surface and the side surface of the outer periphery; and a second free surface which is formed without contacting with any of the surfaces of the molding die and is connecting the aforementioned second surface and the side surface of the outer periphery.
    • 1.一种玻璃光学元件,包括:通过所述成型模具的第一转印面的转印而形成的第一表面; 第二表面,其通过所述成型模具的第二转印面的转印而形成并面向所述第一表面; 以及通过所述成形模的侧面转印面的转印而形成的所述外周的侧面; 其特征在于,所述玻璃光学元件的特征在于还包括:第一自由表面,其形成为不与所述成型模具的任何表面接触,并且连接所述外周边的所述第一表面和侧表面; 以及第二自由表面,其形成为不与成型模具的任何表面接触,并且连接上述第二表面和外周边的侧表面。
    • 3. 发明申请
    • MANUFACTURING METHOD OF ASPHERIC SURFACE LENS
    • 平面表面镜的制造方法
    • US20110215492A1
    • 2011-09-08
    • US13128808
    • 2009-11-13
    • Toshiya TomisakaKoichi Wakita
    • Toshiya TomisakaKoichi Wakita
    • B29D11/00
    • B24B13/0052C03B2215/49C03B2215/72G02B3/04
    • Provided is an aspheric lens manufacturing method by which an aspheric lens having a desired shape can be manufactured with high accuracy regardless of the shape of a glass molding without reducing productivity. The aspheric lens manufacturing method for forming the aspheric lens by pressing and machining a glass material includes a pressing step for pressing the glass material to thereby form the aspheric surface, the flat surface of the peripheral portion of the aspheric surface, and the side surface continuous to the flat surface at the same time and form the glass molding, a mounting step for mounting the glass molding in a work holder which holds and positions the glass molding by being in contact with the flat surface and the side surface of the glass molding formed in the pressing step, and a machining step for machining an other surface of the glass molding mounted in the work holder in the mounting step to thereby form the other surface into a predetermined surface shape.
    • 提供一种非球面透镜制造方法,通过该方法可以在不降低生产率的情况下以高精度制造具有期望形状的非球面透镜,而不管玻璃成型体的形状。 用于通过加压和加工玻璃材料形成非球面透镜的非球面透镜制造方法包括:压制玻璃材料的压制步骤,从而形成非球面,非球面的周边部分的平坦表面和侧表面连续 同时形成平坦表面,并形成玻璃模制件,用于将玻璃模制件安装在工件保持器中的安装步骤,该工件保持器通过与形成的玻璃模制件的平坦表面和侧表面接触而保持并定位玻璃模制件 在加压步骤中,以及加工步骤,用于在安装步骤中加工安装在工件保持器中的玻璃模制件的另一个表面,从而将另一个表面形成预定的表面形状。
    • 7. 发明申请
    • GLASS OPTICAL ELEMENT AND METHOD FOR MANUFACTURING THE SAME
    • 玻璃光学元件及其制造方法
    • US20120128936A1
    • 2012-05-24
    • US13288363
    • 2011-11-03
    • Ryosuke ImajimaToshiya Tomisaka
    • Ryosuke ImajimaToshiya Tomisaka
    • B32B3/30C03B11/08
    • C03B11/086C03B2215/16C03B2215/22C03B2215/49Y02P40/57Y10T428/24479
    • A method for manufacturing a glass optical element includes the steps of: feeding molten glass onto a lower mold part; and compression-molding the molten glass using an upper mold part and the lower mold part. The upper mold part is provided with a recess for forming a positioning protrusion of the glass optical element. A surface of the recess includes a first region where a protective film against the molten glass is formed, and a second region where the protective film is not formed and the upper mold part is exposed. In the step of compression-molding the molten glass, after the molten glass enters the recess, the molten glass is compression-molded in a state where a part of the molten glass and the second region do not contact each other, to thereby form the positioning protrusion of the glass optical element.
    • 一种制造玻璃光学元件的方法包括以下步骤:将熔融玻璃供给到下模具部件上; 并使用上模具部分和下模具部件对熔融玻璃进行压缩成型。 上模具部件设置有用于形成玻璃光学元件的定位突起的凹部。 凹部的表面包括形成有抵抗熔融玻璃的保护膜的第一区域和未形成保护膜的第二区域以及上模具部件露出。 在熔融玻璃的压缩成型工序中,在熔融玻璃进入凹部之后,熔融玻璃在熔融玻璃和第二区域的一部分不会彼此接触的状态下被压缩成型,从而形成 玻璃光学元件的定位突起。
    • 9. 发明授权
    • Forming method of glass element
    • 玻璃元件成型方法
    • US6079228A
    • 2000-06-27
    • US122546
    • 1998-07-24
    • Toshiya Tomisaka
    • Toshiya Tomisaka
    • C03B11/08C03B11/12C03B11/16C03B11/05
    • C03B11/16C03B11/082C03B11/12C03B2215/412C03B2215/44C03B2215/80
    • A method of molding a glass element in which a glass material is heated and then press-molded between an upper mold and a lower mold when a temperature of the heated glass material reaches a predetermined temperature. A first cooling of the glass element is performed with the glass element in contact with the pair of molds until a temperature of the glass element is within a range of .+-.20.degree. C. of a glass transition point of the glass material while a pressure applied to the glass element by the upper and lower molds is gradually reduced until the pressure becomes 0 kg/cm.sup.2. Subsequently, a second cooling of the glass element is performed without the upper and lower molds contacting the patterned surface on the glass element. The upper mold has a bottom surface and a sidewall surface with a lowermost end portion of the side wall surface, adjacent the bottom surface, being inclined with respect to a central axis of the upper mold.
    • 当加热的玻璃材料的温度达到预定温度时,将玻璃材料加热然后在上模和下模之间进行压模的玻璃元件成型方法。 玻璃元件的第一次冷却是通过玻璃元件与一对模具接触进行的,直到玻璃元件的温度在玻璃材料的玻璃化转变点的+/- 20℃的范围内,而 通过上模和下模施加到玻璃元件的压力逐渐减小,直到压力变为0kg / cm2。 接着,进行玻璃元件的第二次冷却,而不会使上模和下模接触玻璃元件上的图案化表面。 上模具有底表面和侧壁表面,侧壁表面的最下端部分邻近底表面相对于上模具的中心轴线倾斜。
    • 10. 发明授权
    • Glass optical element and method for manufacturing the same
    • 玻璃光学元件及其制造方法
    • US07713630B2
    • 2010-05-11
    • US11888853
    • 2007-08-02
    • Shuji IkenagaToshiya Tomisaka
    • Shuji IkenagaToshiya Tomisaka
    • B32B17/06
    • C03B11/122C03B7/12C03B11/125C03B2215/07C03B2215/49
    • A glass optical element including: a first surface which is formed by transcription of the first transfer surface of the molding die; a second surface which is formed by transcription of the second transfer surface of the molding die and is facing the first surface; and a side surface of the outer periphery formed by transcription of the side transfer surface of the molding die; wherein the glass optical element is characterized by further containing: a first free surface which is formed without contacting with any of the surfaces of the molding die and is connecting the first surface and the side surface of the outer periphery; and a second free surface which is formed without contacting with any of the surfaces of the molding die and is connecting the aforementioned second surface and the side surface of the outer periphery.
    • 1.一种玻璃光学元件,包括:通过所述成型模具的第一转印面的转印而形成的第一表面; 第二表面,其通过所述成型模具的第二转印面的转印而形成并面向所述第一表面; 以及通过所述成形模的侧面转印面的转印而形成的所述外周的侧面; 其特征在于,所述玻璃光学元件的特征在于还包括:第一自由表面,其形成为不与所述成型模具的任何表面接触,并且连接所述外周边的所述第一表面和侧表面; 以及第二自由表面,其形成为不与成型模具的任何表面接触,并且连接上述第二表面和外周边的侧表面。